| HK5V 600 H20 |
±600 |
±900 |
±12...15 |
±4V |
±1.0 |
20 |
-25~85 |
16mm×64mm |
|
2EDG-4P-3.81 |
- Open loop sensor using the Hall Effect
- Galvanic insulation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Double Hall design
- Open installation
- Battery pack current detection
- Smart power grid
- Standards:
- IEC 60664-1:2020
- IEC 62109-1:2010
- IEC 61800-5-1:2022
Wide temperature split‑core current sensor for energy monitoring system
more...
|
| HK5V 800 H20 |
±800 |
±1200 |
±12...15 |
±4V |
±1.0 |
20 |
-25~85 |
16mm×64mm |
|
2EDG-4P-3.81 |
- Open loop sensor using the Hall Effect
- Galvanic insulation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Double Hall design
- Open installation
- Battery pack current detection
- Smart power grid
- Standards:
- IEC 60664-1:2020
- IEC 62109-1:2010
- IEC 61800-5-1:2022
Easy install 12V 15V pulse output split‑core current sensor with analog signal
more...
|
| HK5V 200 H20 |
±200 |
±300 |
±12...15 |
±4V |
±1.0 |
20 |
-25~85 |
16mm×64mm |
|
2EDG-4P-3.81 |
- Open loop sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Double Hall design
- Open installation
- Standards:
- IEC 60664-1:2020
- IEC 62109-1:2010
- IEC 61800-5-1:2022
Hall current sensor internal analog output proportional to primary AC DC current
more...
|
| HK5V 400 H20 |
±400 |
±600 |
±12...15 |
±4V |
±1.0 |
20 |
-25~85 |
16mm×64mm |
|
2EDG-4P-3.81 |
- Open loop sensor using the Hall Effect
- Galvanic insulation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Double Hall design
- Open installation
- Battery pack current detection
- Smart power grid
- Standards:
- IEC 60664-1:2020
- IEC 62109-1:2010
- IEC 61800-5-1:2022
Factory supply smart grid battery pack current monitoring hall current transducer
more...
|
| HK4V 5000 H00 |
5000 |
±6000 |
±15 |
5V |
±1.0 |
DC...40 |
-40~85 |
112mm x 30mm |
|
2EDG-4P-3.81 |
- Open loop sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
12V 15V power supply accuracy 1% no insertion loss measure current with arduino split core current CT
more...
|
| HK4V 2000 H00 |
2000 |
±4000 |
±15 |
4V |
±1.0 |
DC...40 |
-40~85 |
112mm x 30mm |
|
2EDG-4P-3.81 |
- Open loop sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Industrial high di/dt open loop current sensor for welding power supply
more...
|
| HK4V 3000 H00 |
3000 |
±5500 |
±15 |
4V |
±1.0 |
DC...40 |
-40~85 |
112mm×30mm |
|
2EDG-4P-3.81 |
- Open loop sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
AC/DC 3000 A range hall sensor high accuracy sensor for power analyzers
more...
|
| CN1A 25 PB00 |
25 |
±36 |
±15 |
±25mA |
±0.5 |
150 |
-40~85 |
NA |
+ |
|
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Industrial Hall effect current sensors for UPS
more...
|
| HK3V 100 H20 |
±100 |
±200 |
±12...15 |
±4V |
±1.0 |
DC |
-25~85 |
Ø21.6 |
|
KF2EDGV-3.81-4P |
- Open loop sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Double hall effect design
- Open mounting
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
Split core AC/DC pulsed current sensor for energy storage BESS cabinet
more...
|
| HK3A 100 H20 |
±100 |
±100 |
12 |
4...20mA |
±1.0 |
DC |
-25~85 |
Ø21.6 |
|
KF2EDGV-3.81-4P |
- Open loop sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Output 12±8mA
- 12V(DC)Power supply
- Proportional output
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Split core current transformer clamp CT sensor
more...
|
| CN2A 40 PB01 |
40 |
±110 |
±12...15 |
±20mA |
±0.5 |
200 |
-40~85 |
NA |
+ |
|
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:
- IEC 60664-1:2020 IEC 61800-5-1:2022 IEC 62109-1:2010
- Premium made in China DC hall effect current tranducer
more...
|
| CS3A 50 P01 |
50 |
±90 |
±12...15 |
±50...90mA |
±0.3 |
200 |
-40~85 |
13.5 x 10 mm |
+ |
|
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- High quality good linearity PCB mount type current sensor
more...
|
| CS3A 50 P51 |
50 |
±90 |
±12...15 |
±50...90mA |
±0.3 |
150 |
-20~75 |
13.5 x 10 mm |
+ |
|
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Closed loop Hall effect AC/DC current sensor power supply±12V ~ ±15V
more...
|
| CN2A 50 PB01 |
50 |
±110 |
±12...15 |
±25mA |
±0.5 |
200 |
-40~85 |
NA |
+ |
|
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Measurement:Current Nominal Value:50A
- Measuring Range:110A
- Supply voltage range:12-15V
- Accuracy:0.5%
- Technology:Closed loop Hall effect
- Mounting:PCB
Measurement current 50A supply voltage :12V-15V closed loop hall effect PCB mounting
more...
|
| CN2A 80 PB01 |
80 |
±160 |
±12...15 |
±40mA |
±0.5 |
200 |
-40~85 |
NA |
+ |
|
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Closed-loop current sensors high-precision measurement for industries such as manufacturing, energy and rail transit.
more...
|
| CN2A 100 PB01 |
100 |
±160 |
±12...15 |
±50mA |
±0.5 |
200 |
-40~85 |
NA |
+ |
|
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- A Hall current sensor measures electrical current for electric vehicles and industrial machines.
more...
|
| CR1A 100 H00 |
100 |
±200 |
±12...15 |
±50...100mA |
±0.5 |
200 |
-40~85 |
Ø23 |
|
MOLEX 5045-04A |
- Closed loop(compensated)current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion losses
- Standards:IEC 60664-1: 2020, IEC 61800-5-1: 2022, IEC 62109-1: 2010
- Hall effect current sensors are mainly used in industrial automation output 50mA power supply ±12V ±15V
more...
|
| CR1A 100 H01 |
100 |
±200 |
±12...15 |
±50...100mA |
±0.5 |
200 |
-40~85 |
Ø23 |
|
JK126-500-3P |
- Closed loop(compensated)current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion losses
- Standards:IEC 60664-1: 2020, IEC 61800-5-1: 2022, IEC 62109-1: 2010
- Supply voltage ±12V·±15V JK126-500-3P connection
- Low voltage hall effect based linear current sensor
more...
|
| CS3A 100 P00 |
100 |
±150 |
±12...15 |
±100...150mA |
±0.3 |
150 |
-40~85 |
13.5 x 10 mm |
+ |
|
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- High accuracy hall effect current tranducer primary busbar 13.5x10.0mm based on PCB mount type
more...
|
| CS3A 100 P01 |
100 |
±160 |
±12...15 |
±100...160mA |
±0.3 |
200 |
-40~85 |
13.5 x 10 mm |
+ |
|
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- High sensitivity, supply voltage ±12V ±15V best current sensor modules for hobbyist electronics projects
more...
|
| CS3A 125 P00 |
125 |
±200 |
±12...15 |
±125...200mA |
±0.3 |
150 |
-40~85 |
13.5 x 10 mm |
+ |
|
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- High bandwidth current sensor and low offset drift over temperature PCB installation
more...
|
| CR1A 200 H00 |
200 |
±400 |
±12...15 |
±100...200mA |
±0.5 |
200 |
-40~85 |
Ø23 |
|
MOLEX 5045-04A |
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Magnetic current sensors suppliers supply voltage: 12 - 15V output100 mA
more...
|
| CR1A 200 H01 |
200 |
±400 |
±12...15 |
±100...200mA |
±0.5 |
200 |
-40~85 |
Ø23 |
|
JK126-500-3P |
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- 200A hall effect analog current sensor very good linearity for measurements
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Hall effect analog current sensor very good linearity for measurements
-
more...
|
| CM1A 200 H00 |
200 |
±420 |
±12...15 |
±100...210mA |
±0.2 |
100 |
-40~85 |
Ø15.6 |
|
Molex 6410 |
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- China professional high-frequency current transducers factory
more...
|
| CR1A 300 H00 |
300 |
±500 |
±12...15 |
±150...250mA |
±0.5 |
200 |
-40~85 |
Ø23 |
|
MOLEX 5045-04A |
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Low voltage high accuracy wide input range 100A-300A through hole type current transducer
more...
|
| CR1A 300 H01 |
300 |
±500 |
±12...15 |
±150...250mA |
±0.5 |
200 |
-40~85 |
Ø23 |
|
JK126-500-3P |
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- High accurate hall effect AC/DC power supply ±12 V ~ ±15V through-hole type current sensor
more...
|
| CR1A 300 H02 |
300 |
±500 |
±12...15 |
±150...250mA |
±0.5 |
200 |
-40~85 |
Ø23 |
|
HX39600-3Y |
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Hall effect sensors analog circuit design measure Current Using Current Sensors
-
more...
|
| CM2A 300 H00 |
300 |
±500 |
±12...20 |
±150...250mA |
±0.3 |
100 |
-40~85 |
Ø20 |
|
Molex 6410 |
- Closed loop(compensated)current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion losses
- Standards:IEC 60664-1: 2020, IEC 61800-5-1: 2022, IEC 62109-1: 2010
- Hall effect current transducersupply voltage ±12 ±20V input 300A CT
more...
|
| CR2A 400 H00 |
400 |
±600 |
±15...24 |
±100...150mA |
±0.5 |
100 |
-40~85 |
Ø35.0 |
|
JK126-500-3P |
- Closed loop(compensated)current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Measuring range 300A-500A ±15V ±24Vcurrent transducer
more...
|
| CR2A 500 H00 |
500 |
±800 |
±15...24 |
±100...160mA |
±0.5 |
100 |
-40~85 |
Ø35.0 |
|
JK126-500-3P |
- Closed loop(compensated)current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Low voltage high accuracy current measurement device 500A closed-loop current sensors
more...
|
| CM3A 500 H00 |
500 |
±800 |
±15...24 |
±100...160mA |
±0.5 |
100 |
-40~85 |
Ø30 |
|
Molex 6410 |
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Current sensor CT measures direct current flow using the hall effect renewable energy, electric vehicles, and power monitoring
more...
|
| CM3A 500 H01 |
500 |
±800 |
±15...24 |
±100...160mA |
±0.5 |
100 |
-40~85 |
Ø30 |
|
JST B3P VH |
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Hall current measurement device 500A low current consumption
more...
|
| CM4A 1000 H00 |
1000 |
±2100 |
±15...24 |
±200...420mA |
±0.3 |
150 |
-40~85 |
Ø38 |
|
Molex 6410 |
- Closed loop(compensated)current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Closed-loop current transducers supplier low voltage measuring 1000A
more...
|
| CM4A 1000 H03 |
1200 |
±1800 |
±24 |
±300...450mA |
±0.4 |
150 |
-40~85 |
Ø38 |
|
JST B3P VH |
- Closed loop(compensated)current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- High accuracy wide applications fileds closed-loop hall effect current sensor 1000A supply voltage ±24
more...
|
| CM4A 1000 H05 |
1000 |
±2100 |
±15...24 |
±200...420mA |
±0.3 |
150 |
-40~85 |
Ø38 |
|
JST B3P VH |
- Closed loop(compensated)current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Professional current transducer supplier for rail transit system
more...
|
| HK1A 200 H00 |
200 |
±240 |
12 |
4...20mA |
±1.0 |
DC |
-25~85 |
Ø41.3 |
|
2EDGV-3.81-4P |
- Open loop sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Bidirectional easy assembly split core AC DC pulse current measuring sensor CHCS-EKF 200A for battery management system BMS SMPS UPS
more...
|
| CM5A 2000 H20 |
2000 |
±4250 |
±15...24 |
±400...850mA |
±0.3 |
150 |
-40~85 |
Ø57.5 |
|
JST B3P VH |
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Hall effect DC current measurement device high accuracy reliable current transducer
more...
|
| HS1V 50 H00 |
50 |
±150 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20x10 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Industrial current transducer products high accuracystability top performance and effective cost
more...
|
| HS1V 50 H05 |
50 |
±150 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20x10 mm |
|
MOLEX 5045-04A |
- Open loop sensor using the Hall Effect
- Output voltage is proportional to supply voltage
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Excellent accuracy easy use, high reliability output ±4V 50A, 100A, 200A, 300A, 400A, 500A, 600A current sensor
more...
|
| HR1V 50 H01 |
50 |
±100 |
±12...15 |
±5V |
±1.0 |
20 |
-40~85 |
Ø20 |
|
JK2EDG-5.08-4P |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Small size
- Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- DC Current transducer using precision constant current technology DC current general-purpose, strong overload capacity and high isolation.
more...
|
| HS1V 100 H05 |
100 |
±300 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20x10 mm |
|
MOLEX 5045-04A |
- Open loop sensor using the Hall Effect
- Output voltage is proportional to supply voltage
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Current sensors measuring electric current for protection of electrical equipment
more...
|
| HR1V 100 H01 |
100 |
±200 |
±12...15 |
±5V |
±1.0 |
20 |
-40~85 |
Ø20 |
|
JK2EDG-5.08-4P |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Small size
- Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Current sensors rely on open-loop hall effect technology
more...
|
| FR1C 700 H2152A |
700 |
±760 |
24 |
CAN |
±0.3~0.5 |
|
-40~85 |
Φ24.4 mm |
|
TE 1473672-1 |
- Current sensor using Fluxgate technology for automotive use,BMS, SOC, SOH, SOF.
- Overcurrent detection mechanism
- Panel mounting
- Unipolar +24V battery power supply
- Output signal: High speed CAN (up to 500 kBps)
- Configurable internal digital low-pass frequency filter
- Configurable CAN speed/CAN ID
- UL508 compliant
- Ingress Protection - IP42 level.
more...
|
| HS1V 200 H00 |
200 |
±600 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20x10 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Factory sale open loop capacitive sensor for electronic measurement of current supply voltage ± 12V ± 15V
more...
|
| HS1V 200 H05 |
200 |
±600 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20x10 mm |
|
MOLEX 5045-04A |
- Open loop sensor using the Hall Effect
- Output voltage is proportional to supply voltage
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Open-loop easy mounting small size and saves space hall current sensor
more...
|
| HS2V 200 H05 |
200 |
±600 |
±15 |
±4V |
±1.0 |
25 |
-40~105 |
40.5x32.5 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Easy mounting small size
- open-loop Hall effect technology for industrial scenarios
more...
|
| HR1V 200 H01 |
200 |
±400 |
±12...15 |
±5V |
±1.0 |
20 |
-40~85 |
Ø20 |
|
JK2EDG-5.08-4P |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Small size
- Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Current transducers for monitoring and control.
more...
|
| FR1C 500 H2152A |
500 |
±530 |
24 |
CAN |
±0.3~0.5 |
|
-40~85 |
Φ24.4 mm |
|
TE 1473672-1 |
- Current sensor using Fluxgate technology for automotive use,BMS, SOC, SOH, SOF.
- Overcurrent detection mechanism
- Panel mounting
- Unipolar +24V battery power supply
- Output signal: High speed CAN (up to 500 kBps)
- Configurable internal digital low-pass frequency filter
- Configurable CAN speed/CAN ID
- UL508 compliant
- Ingress Protection - IP42 level.
more...
|
| HS1V 300 H00 |
300 |
±900 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20x10 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Hall effect principle supply voltage ±12V ±15V measures electrical currentfor battery management
more...
|
| HS1V 300 H05 |
300 |
±900 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20x10 mm |
|
MOLEX 5045-04A |
- Open loop sensor using the Hall Effect
- Output voltage is proportional to supply voltage
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Hall effect current sensor in EVs, inverters, and industrial controls for safety and accuracy
more...
|
| HR1V 300 H01 |
300 |
±600 |
±12...15 |
±5V |
±1.0 |
20 |
-40~85 |
Ø20 |
|
JK2EDG-5.08-4P |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Small size
- Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Hall sensor offering higher accuracy and dynamic range
more...
|
| FR1C 300 H2152A |
300 |
±400 |
24 |
CAN |
±0.3~0.5 |
|
-40~85 |
Φ24.4 mm |
|
TE 1473672-1 |
- Current sensor using Fluxgate technology for automotive use,BMS, SOC, SOH, SOF.
- Overcurrent detection mechanism
- Panel mounting
- Unipolar +24V battery power supply
- Output signal: High speed CAN (up to 500 kBps)
- Configurable internal digital low-pass frequency filter
- Configurable CAN speed/CAN ID
- UL508 compliant
- Ingress Protection - IP42 level.
more...
|
| HS1V 400 H00 |
400 |
±900 |
±12...15 |
±4V |
+1.0 |
50 |
-40~105 |
20x10 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Direct factory Hall effect current sensor open loop series for welding applications
more...
|
| HR1V 400 H01 |
400 |
±800 |
±12...15 |
±5V |
±1.0 |
20 |
-40~85 |
Ø20 |
|
JK2EDG-5.08-4P |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Small size
- Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- New and original customizable 50A 100A 200A 300A 400A 500A Hall open loop current sensor
more...
|
| FR1C 500 H1152A |
500 |
±530 |
12 |
CAN |
±0.3~0.5 |
|
-40~85 |
Φ24.4 mm |
|
TE 1473672-1 |
- Current sensor using Fluxgate technology for automotive use,BMS, SOC, SOH, SOF.
- Overcurrent detection mechanism
- Panel mounting
- Unipolar +12V battery power supply
- Output signal: High speed CAN (up to 500 kBps)
- Configurable internal digital low-pass frequency filter
- Configurable CAN speed/CAN ID
- UL508 compliant
- Ingress Protection - IP42 level.
more...
|
| HS2V 500 H05 |
500 |
±1500A |
±15 |
±4V |
+1.0 |
25 |
-40~105 |
40.5x32.5 mm |
|
MOLEX 5045-04A |
- Open loop sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL94-V0
- No insertion loss
- Small size
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
- Different types current sensors
Detection range 200A-1500A, working voltage ±15V
more...
|
| HR1V 500 H01 |
500 |
±900 |
±12...15 |
±5V |
+1.0 |
20 |
-40~85 |
Ø20 |
|
JK2EDG-5.08-4P |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Small size
- Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- High precision and low drift hall current sensor
more...
|
| FR1C 700 H1152A |
700 |
±760 |
12 |
CAN |
±0.3~0.5 |
|
-40~85 |
Φ24.4 mm |
|
TE 1473672-1 |
- Current sensor using Fluxgate technology for automotive use,BMS, SOC, SOH, SOF.
- Overcurrent detection mechanism
- Panel mounting
- Unipolar +12V battery power supply
- Output signal: High speed CAN (up to 500 kBps)
- Configurable internal digital low-pass frequency filter
- Configurable CAN speed/CAN ID
- UL508 compliant
- Ingress Protection - IP42 level.
more...
|
| HS1V 600 H00 |
600 |
±900 |
±12...15 |
±4V |
+1.0 |
50 |
-40~105 |
20x10 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
- Current sensor used detects and measuresensure safety, efficiency, and proper operation of electrical systems
more...
|
| HS2V 600 H05 |
600 |
±1800 |
±15 |
±4V |
+1.0 |
25 |
-40~105 |
40.5x32.5 mm |
|
MOLEX 5045-04A |
- Open loop sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL94-V0
- No insertion loss
- Small size
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
- Wide frequency cost-effective open-loop high accuracy current sensor
more...
|
| HS3V 800 H00 |
800 |
+2400 |
±15 |
±4V |
+1.0 |
25 |
-40~85 |
64 x 21 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
- Current sensor detects electric current enabling monitoring and control
more...
|
| HS2V 1000 H05 |
1000 |
±2500 |
±15 |
±4V |
+1.0 |
25 |
-40~105 |
40.5x32.5 mm |
|
MOLEX 5045-04A |
- Open loop sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL94-V0
- No insertion loss
- Small size
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
- Analog output voltage current sensor for New market HVDC
more...
|
| HS2V 1500 H05 |
1500 |
±2500 |
±15 |
±4V |
±1.0 |
25 |
-40~105 |
40.5x32.5 mm |
|
MOLEX 5045-04A |
- Open loop sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL94-V0
- No insertion loss
- Small size
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
- Hall current sensor for motor control and telecommunication rectifiers
more...
|
| HS3V 1500 H00 |
1500 |
±4500 |
±15 |
±4V |
±1.0 |
25 |
-40~85 |
64 x 21 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
- High voltage 500-3000A current measurement sensor
more...
|
| HS3V 2000 H00 |
2000 |
±5500 |
±15 |
±4V |
±1 |
25 |
-40~85 |
64 x 21 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
- Hall effect open-loop technology current sensor for industrial applications
more...
|
| HS3V 3000 H00 |
3000 |
±5500 |
±15 |
±4V |
±1.0 |
25 |
-40~85 |
64 x 21 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
- Current sensor Measurement of 500A 600A 800A 1000A 1500A 2000A 2500A 3000A 15V power supply 4V
more...
|
| AN5V 30 PB00 |
30 |
±90 |
±12...15 |
±4V |
±1.0 |
50 |
-40~85 |
NA |
+ |
|
- 30A open loop current sensor using the Hall Effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion loss.
- Small size.
- Standards:
- EN50178: 1997
- IEC 61010-1: 2000
- UL 508: 2010
- Small size current sensors employed in solar inverters and battery management systems
more...
|
| AN5V 10 PB00 |
10 |
±30 |
±12...15 |
±4V |
±1.0 |
50 |
-40~85 |
NA |
+ |
|
- 10A open loop current sensor using the Hall Effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion loss.
- Small size.
- Standards:
- EN50178: 1997
- IEC 61010-1: 2000
- UL 508: 2010
- AC and DC currents sensor in automotive and industrial applications
more...
|
| AN3V 10 PB50 |
10 |
±25 |
5 |
2.5±2V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+5V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
- Very low power consumption open loop current sensors
more...
|
| AN5V 15 PB00 |
15 |
±45 |
±12...15 |
±4V |
±1.0 |
50 |
-40~85 |
NA |
+ |
|
- 15A open loop current sensor using the Hall Effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion loss.
- Small size.
- Standards:
- EN50178: 1997
- IEC 61010-1: 2000
- UL 508: 2010
- Easy to use and simpler design ASIC current sensor
more...
|
| AN3V 16 PB50 |
16 |
±40 |
5 |
2.5±2V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+5V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
- Supply voltage 5V Electrical Measuring Analog Module Small AC Current Transducer 10A 16A 20A 32A 40A 50A
more...
|
| AN5V 20 PB00 |
20 |
±60 |
±12...15 |
±4V |
±1.0 |
50 |
-40~85 |
NA |
+ |
|
- 20A open loop current sensor using the Hall Effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion loss.
- Small size.
- Standards:
- EN50178: 1997
- IEC 61010-1: 2000
- UL 508: 2010
- High-performance transducers for track motor control
more...
|
| AN3V 20 PB50 |
20 |
±50 |
5 |
2.5±2V |
±1 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+5V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
- ASIC current sensors for HVDC application area
more...
|
| AN5V 25 PB00 |
25 |
±75 |
±12...15 |
±4V |
±1 |
50 |
-40~85 |
NA |
+ |
|
- 25A open loop current sensor using the Hall Effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion loss.
- Small size.
- Standards:
- EN50178: 1997
- IEC 61010-1: 2000
- UL 508: 2010
- Low sensitivity error ASIC sensors
more...
|
| AS1V 30 H05 |
30 |
±30 |
5 |
2.5±0.625V |
+1 |
50 |
-40~105 |
20.5x10.5 mm |
|
RVVP 3×0.3mm×0.3mm-1000 |
- Open loop current sensor using the Hall Effect.
- Output voltage is proportional to the supply voltage
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- Supply voltage: +5V
- No insertion loss.
- Small size
- Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Current sensor with primary nominal rms current ±30A,Supply voltage 5V
more...
|
| AN3V 32 PB50 |
32 |
±80 |
5 |
2.5±2V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+5V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
- Small size PCB mounting open loop current sensor
more...
|
| AN3V 40 PB50 |
40 |
±100 |
5 |
2.5±2V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+5V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
- Electronic components hall effect current sensor
more...
|
| AN5V 50 PB00 |
50 |
±150 |
±12...15 |
±4V |
±1.0 |
50 |
-40~85 |
NA |
+ |
|
- Open loop current sensor using the Hall Effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion loss.
- Small size.
- Standards:
- EN50178: 1997
- IEC 61010-1: 2000
- UL 508: 2010
- Hall effect sensor working principle and applications
more...
|
| AN1V 50 PB511 |
50 |
±50 |
5 |
2.5±2V |
±1.0 |
250 |
-40~150 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- ASIC Technology.
- Maintain output proportional to changes in the power supply(include offset and sensitivity).
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Small size.
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
- Hall effect sensors series current sensor manufactured by factory for battery management
more...
|
| AN1V 50 PB512 |
50 |
±50 |
5 |
2.5±2V |
±1.0 |
250 |
-40~150 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- ASIC Technology.
- Maintain output proportional to changes in the power supply(include offset and sensitivity).
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Small size.
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
- Current sensor for both AC and DC current detection DC-DC converter control
more...
|
| AN1V 50 PB501 |
50 |
50 |
5 |
0.55...4.55V |
±1.0 |
250 |
-40~150 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- ASIC Technology.
- Maintain output proportional to changes in the power supply(include offset and sensitivity).
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Small size.
- Standards: IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Current sensors for uninterruptible power supply
more...
|
| AN1V 50 PB502 |
50 |
50 |
5 |
0.55...4.55V |
±1.0 |
250 |
-40~150 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- ASIC Technology.
- Maintain output proportional to changes in the power supply(include offset and sensitivity).
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Small size.
- Standards: IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Current sensors designed for EV traction and auxiliary inverters, DC-DC converters, on-board chargers, solar inverters
more...
|
| AN1V 50 PB311 |
50 |
±50 |
3.3 |
1.65±1.32V |
±1.0 |
250 |
-40~150 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- ASIC Technology.
- Maintain output proportional to changes in the power supply(include offset and sensitivity).
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Small size.
- Standards: IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Small size open loop current sensor unidirectional power supply voltage 3.3V for PCB mounting
more...
|
| AN1V 50 PB312 |
50 |
±50 |
3.3 |
1.65±1.32V |
±1.0 |
250 |
-40~150 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- ASIC Technology.
- Maintain output proportional to changes in the power supply(include offset and sensitivity).
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Small size.
- Standards: IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- High quality open loop current sensor with respect to applicable standards for wide applications in industry
more...
|
| AN3V 50 PB30 |
50 |
±125 |
3.3 |
1.65±1.15V |
+1.0 |
250 |
-40~150 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+3.3V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
- Hall effect current sensor for new energy industrial automation
more...
|
| AN3V 50 PB50 |
50 |
±125 |
5 |
2.5±2V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+5V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
- Supply voltage 5V current sensor for Servo Motor
more...
|
| AS1V 50 H00 |
50 |
±50 |
5 |
2.5±2V |
±1.0 |
50 |
-40~105 |
20.5x10.5 mm |
MOLEX 5045-04A |
|
- Open loop current sensor using the Hall Effect.
- Output voltage is proportional to the supply voltage
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- Supply voltage: +5V
- No insertion loss.
- Small size
- Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- High performance current sensor for EV HEV BMS
more...
|
| AS1V 50 H01 |
50 |
±150 |
5 |
2.5±0.625V |
±1.0 |
50 |
-40~105 |
20.5x10.5 mm |
MOLEX 5045-04A |
|
- Open loop current sensor using the Hall Effect.
- Output voltage is proportional to the supply voltage
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- Supply voltage: +5V
- No insertion loss.
- Small size
- Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Industrial grade bidirectional current sensor for AI data center industrial internet
more...
|
| AN3V 80 PB55 |
80 |
±200 |
5 |
2.5±2V |
+1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- ASIC Technology.
- Maintain output proportional to changes in the power supply(include offset and sensitivity).
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Small size.
- Standards: IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Current sensor for renewable energy systems
more...
|
| AN1V 100 PB511 |
100 |
±100 |
5 |
2.5±2V |
±1.0 |
250 |
-40~150 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- ASIC Technology.
- Maintain output proportional to changes in the power supply(include offset and sensitivity).
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Small size.
- Standards: IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Current sensors for various applications
more...
|
| AN1V 100 PB512 |
100 |
±100 |
5 |
2.5±2V |
±1.0 |
250 |
-40~150 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- ASIC Technology.
- Maintain output proportional to changes in the power supply(include offset and sensitivity).
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Small size.
- Standards: IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Durable high power DC/AC current sensor for industrial electronic devices
more...
|
| AN1V 100 PB501 |
100 |
100 |
5 |
0.55...4.55V |
±1.0 |
250 |
-40~150 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- ASIC Technology.
- Maintain output proportional to changes in the power supply(include offset and sensitivity).
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Small size.
- Standards: IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Industrial grade current sensor with high sensitivity real-time monitoring for hybrid electric vehicle
more...
|
| AN1V 100 PB502 |
100 |
100 |
5 |
0.55...4.55V |
±1.0 |
250 |
-40~150 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- ASIC Technology.
- Maintain output proportional to changes in the power supply(include offset and sensitivity).
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Small size.
- Standards: IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- 50A-300A High precision current sensor for fast detection, current monitoring and protection
more...
|
| AN1V 100 PB311 |
100 |
±100 |
3.3 |
1.65±1.32V |
±1.0 |
250 |
-40~150 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- ASIC Technology.
- Maintain output proportional to changes in the power supply(include offset and sensitivity).
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Small size.
- Standards: IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- 3.3V high sensitivity current sensor for PCB board mounting battery powered
more...
|
| AN1V 100 PB312 |
100 |
±100 |
3.3 |
1.65±1.32V |
±1.0 |
250 |
-40~150 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- ASIC Technology.
- Maintain output proportional to changes in the power supply(include offset and sensitivity).
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Small size.
- Standards: IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- high frequency Supply voltage 3.3V open loop current sensor for AC variable speed
more...
|
| AN3V 100 PB55 |
100 |
±250 |
5 |
2.5±2V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+5V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
- Hall effect current sensor supply voltage 5V high sensitivity low noise for combining manifolds Electronic Equipment
more...
|
| AS1V 100 H00 |
100 |
±100A |
5 |
2.5±2 |
±1.0 |
50 |
-40~105 |
20.5 x 10.5 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall Effect.
- Output voltage is proportional to the supply voltage
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- Supply voltage: +5V
- No insertion loss.
- Small size
- Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Battery powered 5V portable industrial grade current sensor wide measurement range for Industrial application fields
more...
|
| AS1V 100 H01 |
100 |
±300 |
5 |
2.5±0.625V |
±1.0 |
50 |
-40~105 |
20.5 x 10.5 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall Effect.
- Output voltage is proportional to the supply voltage
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- Supply voltage: +5V
- No insertion loss.
- Small size
- Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Current sensor for industrial environment
more...
|
| AS1V 100 H07 |
100 |
±100 |
5 |
2.5±0.625V |
±1.0 |
50 |
-40~105 |
20.5 x 10.5 mm |
|
RVVP 3 x 0.3mmx 0.3mm -600 |
- Open loop current sensor using the Hall Effect
Galvanic separation between primary and secondary Insulating plastic case recognized according to UL 94-V0 Supply voltage:+5V No insertion loss Small size Standards: IEC 60664-1:2020 IEC 61800-5-1:2022 IEC 62109-1:2010 - Current sensors for various applications
more...
|
| AR1A 100 H00 |
100 |
±100 |
±12...15 |
±20mA |
±1.0 |
5 |
-40~85 |
Ø20.0 |
|
JK2EDG-5.08-4P |
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- Nominal output current 20mA
- Good linearity
- High accuracy
- Very low offset drift over temperature.
- Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010100A
- Current transducer for Testing and measuring equipment
more...
|
| AR1A 100 H01 |
100 |
±100 |
±12...15 |
±100mA |
±1.0 |
5 |
-40~85 |
Ø20.0 |
|
JK2EDG-5.08-4P |
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- Nominal output current 100mA
- Good linearity
- High accuracy
- Very low offset drift over temperature.
- Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Current sensor measured current for smart grids, electric vehicles
more...
|
| AN3V 120 PB55 |
120 |
±300 |
5 |
2.5±2V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+5V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
- Current sensor for monitoring, control, or protection.
more...
|
| AN1V 150 PB511 |
150 |
±150 |
5 |
2.5±2V |
±1.0 |
250 |
-40~125 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- ASIC Technology.
- Maintain output proportional to changes in the power supply(include offset and sensitivity).
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Small size.
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
- How to use ACS758 Current Sensor with arduino for 50A to 200A
more...
|
| AN1V 150 PB512 |
150 |
±150 |
5 |
2.5±2V |
±1.0 |
250 |
-40~125 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- ASIC Technology.
- Maintain output proportional to changes in the power supply(include offset and sensitivity).
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Small size.
- Standards: IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Current sensors in power supplies
more...
|
| AN1V 150 PB501 |
150 |
150 |
5 |
0.55...4.55V |
±1.0 |
250 |
-40~125 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- ASIC Technology.
- Maintain output proportional to changes in the power supply(include offset and sensitivity).
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Small size.
- Standards: IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Hall effect current transducer
more...
|
| AN1V 150 PB502 |
150 |
150 |
5 |
0.55...4.55V |
±1.0 |
250 |
-40~125 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- ASIC Technology.
- Maintain output proportional to changes in the power supply(include offset and sensitivity).
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Small size.
- Standards: IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- High accuracy hall effect current sensors
more...
|
| AN1V 150 PB311 |
150 |
±150 |
3.3 |
1.65±1.32V |
±1.0 |
250 |
-40~125 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- ASIC Technology.
- Maintain output proportional to changes in the power supply(include offset and sensitivity).
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Small size.
- Standards: IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Widely used Current transducers for industrial automotive
more...
|
| AN1V 150 PB312 |
150 |
±150 |
3.3 |
1.65+1.32V |
±1.0 |
250 |
-40~125 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- ASIC Technology.
- Maintain output proportional to changes in the power supply(include offset and sensitivity).
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Small size.
- Standards: IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Bidirectional proportional output ASIC technology current sensor
more...
|
| AN1V 200 PB511 |
200 |
±200 |
5 |
2.5±2V |
±1.0 |
250 |
-40~85 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- ASIC Technology.
- Maintain output proportional to changes in the power supply(include offset and sensitivity).
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Small size.
- Standards: IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- 200A High sensitivity current transducer for Hybrid electric vehicle
more...
|
| AN1V 200 PB512 |
200 |
±200 |
5 |
2.5±2V |
±1.0 |
250 |
-40~85 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- ASIC Technology.
- Maintain output proportional to changes in the power supply(include offset and sensitivity).
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Small size.
- Standards: IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Small size sensors low noise for motor control
more...
|
| AN1V 200 PB501 |
200 |
200 |
5 |
0.55...4.55V |
±1.0 |
250 |
-40~85 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- ASIC Technology.
- Maintain output proportional to changes in the power supply(include offset and sensitivity).
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Small size.
- Standards: IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- High frequency high reliability current sensor for smart electronic systems and fast detection
more...
|
| AN1V 200 PB502 |
200 |
0-200 |
5 |
0.55+4V |
±1.0 |
250 |
-40~85 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- ASIC Technology.
- Maintain output proportional to changes in the power supply(include offset and sensitivity).
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Small size.
- Standards: IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- 50A~300A current sensor for current monitoring and protection
more...
|
| AN1V 200 PB311 |
200 |
±200 |
3.3 |
1.65±1.32V |
±1.0 |
250 |
-40~85 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- ASIC Technology.
- Maintain output proportional to changes in the power supply(include offset and sensitivity).
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Small size.
- Standards: IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Open loop current sensor supply voltage 3.3V wide measurement PCB mouting
more...
|
| AN1V 200 PB312 |
200 |
±200 |
3.3 |
1.65±1.32V |
±1.0 |
250 |
-40~85 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- ASIC Technology.
- Maintain output proportional to changes in the power supply(include offset and sensitivity).
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Small size.
- Standards: IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Multifunctional high-linearity resistant current sensor for for home appliance
more...
|
| AS1V 200 H00 |
200 |
±200 |
5 |
2.5±2V |
±1.0 |
50 |
-40~105 |
20.5x10.5 mm |
|
Molex 5045-04A |
- Open loop current sensor using the Hall Effect.
- Output voltage is proportional to the supply voltage
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- Supply voltage: +5V
- No insertion loss.
- Small size
- Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- How the current sensor works in robotics
more...
|
| AS1V 200 H01 |
200 |
±600 |
5 |
2.5±0.625V |
±1.0 |
50 |
-40~105 |
20.5x10.5 mm |
|
Molex 5045-04A |
- Open loop current sensor using the Hall Effect.
- Output voltage is proportional to the supply voltage
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- Supply voltage: +5V
- No insertion loss.
- Small size
- Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Electric current sneosr current sensing circuit diagram
more...
|
| AS1V 200 H07 |
200 |
±200 |
5 |
2.5±0.625V |
±1.0 |
50 |
-40~105 |
20.5x10.5 mm |
|
RVVP 3 x 0.3mm x 0.3mm -600 |
- Open loop current sensor using the Hall Effect
Galvanic separation between primary and secondary Insulating plastic case recognized according to UL 94-V0 Supply voltage:+5V No insertion loss Small size Standards: IEC 60664-1:2020 IEC 61800-5-1:2022 IEC 62109-1:2010 - High accuracy current sensor core electronic component for Battery Management System
more...
|
| AR1A 200 H00 |
200 |
±200 |
±12...15 |
±20mA |
±1.0 |
5 |
-40~85 |
Ø20.0 |
|
JK2EDG-5.08-4P |
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- Nominal output current 20mA
- Good linearity
- High accuracy
- Very low offset drift over temperature.
- Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- High precision AC DC current transducer for welding equipment
more...
|
| AR1A 200 H01 |
200 |
±200 |
±12...15 |
±100mA |
±1.0 |
5 |
-40~85 |
Ø20 |
|
JK2EDG-5.08-4P |
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- Nominal output current 100mA
- Good linearity
- High accuracy
- Very low offset drift over temperature.
- Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Wide bandwidth current sensor for laser welding machine
more...
|
| AS1V 300 H00 |
300 |
±300 |
5 |
2.5±2V |
±1.0 |
50 |
-40~105 |
20.5 x 10.5 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall Effect.
- Output voltage is proportional to the supply voltage
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- Supply voltage: +5V
- No insertion loss.
- Small size
- Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Welding power supply current sampling hall sensor
more...
|
| AS1V 300 H01 |
300 |
±900 |
5 |
2.5±0.625V |
±1.0 |
50 |
-40~105 |
20.5 x 10.5 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall Effect.
- Output voltage is proportional to the supply voltage
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- Supply voltage: +5V
- No insertion loss.
- Small size
- Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Open-loop current sensor for electric vehicle charging station
more...
|
| AS1V 400 H00 |
400 |
±400 |
5 |
2.5±2V |
±1.0 |
50 |
-40~105 |
20.5 x 10.5 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall Effect.
- Output voltage is proportional to the supply voltage
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- Supply voltage: +5V
- No insertion loss.
- Small size
- Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Hall effect DC and AC current transducer for overcurrent protection circuit
more...
|
| AS1V 400 H01 |
400 |
±900 |
5 |
2.5±0.625V |
±1.0 |
50 |
-40~105 |
20.5 x 10.5 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall Effect.
- Output voltage is proportional to the supply voltage
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- Supply voltage: +5V
- No insertion loss.
- Small size
- Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Current sensor component for industrial control
more...
|
| AS1V 500 H00 |
500 |
±500 |
5 |
2.5±2V |
±1.0 |
50 |
-40~105 |
20.5 x 10.5 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall Effect.
- Output voltage is proportional to the supply voltage
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- Supply voltage: +5V
- No insertion loss.
- Small size
- Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Current sensor for monitor the operating conditions of the motors
more...
|
| AS1V 500 H01 |
500 |
±900 |
5 |
2.5±0.625V |
±1.0 |
50 |
-40~105 |
20.5 x 10.5 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall Effect.
- Output voltage is proportional to the supply voltage
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- Supply voltage: +5V
- No insertion loss.
- Small size
- Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Primary hole type currrent sensor with fast response, supply voltage+5V, real-time monitoring
more...
|
| AS1V 600 H00 |
600 |
±600 |
5 |
2.5±2V |
±1.0 |
50 |
-40~105 |
20.5 x 10.5 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall Effect.
- Output voltage is proportional to the supply voltage
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- Supply voltage: +5V
- No insertion loss.
- Small size
- Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Lightweight low loss motor control open loop high precision current sensor for AC variable speed
more...
|
| AS1V 600 H01 |
600 |
±900 |
5 |
2.5±0.625V |
±1.0 |
50 |
-40~105 |
20.5 x 10.5 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall Effect.
- Output voltage is proportional to the supply voltage
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- Supply voltage: +5V
- No insertion loss.
- Small size
- Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Panel mounted current sensors
more...
|
| AS1V 700 H00 |
700 |
±700 |
5 |
2.5±2V |
±1.0 |
50 |
-40~105 |
20.5 x 10.5 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall Effect.
- Output voltage is proportional to the supply voltage
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- Supply voltage: +5V
- No insertion loss.
- Small size
- Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Current sensor HASS 700-S +5V
more...
|
| AS1V 800 H00 |
800 |
±800 |
5 |
2.5±2V |
±1.0 |
50 |
-40~105 |
20.5 x 10.5 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall Effect.
- Output voltage is proportional to the supply voltage
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- Supply voltage: +5V
- No insertion loss.
- Small size
- Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Hall effect sensor for electric scooter motor uninterruptible power supplies
more...
|
| TR1V 0.01 H00 |
10mA |
15mA |
±12...15 |
5V |
±1.0 |
50 |
-10~70 |
Ø20.0 |
|
JK2EDG-5.08-4P |
- Ac current sensor based on transformer technology
- DC voltage output
- Insulating plastic case recognized according to UL 94-V0(Blue)
- High accuracy
- Very low offset drift over temperature
- Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Board‑Mount Leakage Current Sensors
more...
|
| TR1V 0.02 H00 |
20mA |
30mA |
±12...15 |
5V |
±1.0 |
50 |
-10~70 |
Ø20.0 |
|
JK2EDG-5.08-4P |
- Ac current sensor based on transformer technology
- DC voltage output
- Insulating plastic case recognized according to UL 94-V0(Blue)
- High accuracy
- Very low offset drift over temperature
- Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Fast Response time high frequency AC current monitoring sensor
more...
|
| TR1V 0.05 H00 |
50mA |
75mA |
±12...15 |
5V |
±1.0 |
50 |
-10~70 |
Ø20.0 |
|
JK2EDG-5.08-4P |
- Ac current sensor based on transformer technology
- DC voltage output
- Insulating plastic case recognized according to UL 94-V0(Blue)
- High accuracy
- Very low offset drift over temperature
- Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Through hole hall current sensor for Industrial control
more...
|
| TR1V 0.1 H00 |
100mA |
150mA |
±12...15 |
5V |
±1.0 |
50 |
-10~70 |
Ø20.0 |
|
JK2EDG-5.08-4P |
- Ac current sensor based on transformer technology
- DC voltage output
- Insulating plastic case recognized according to UL 94-V0(Blue)
- High accuracy
- Very low offset drift over temperature
- Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Current sensor use residual current in electrical systems
more...
|
| TR1V 0.2 H00 |
200mA |
250mA |
±12...15 |
5V |
±1.0 |
50 |
-10~70 |
Ø20.0 |
|
JK2EDG-5.08-4P |
- Ac current sensor based on transformer technology
- DC voltage output
- Insulating plastic case recognized according to UL 94-V0(Blue)
- High accuracy
- Very low offset drift over temperature
- Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- An energy and leakage current monitoring current sensor for abnormality detection
more...
|
| FR7V 0.005 H00 |
0.005 |
±0.007 |
±15 |
±5V |
±1.0 |
DC |
-10~70 |
Ø12 |
|
KF2EDG 3.81MM 4P |
- Current sensor based on fluxgate technology
- Output voltage
- Insulating plastic case recognized according to UL 94-V0(Blue)
- High linearity
- Very low zero temperature drift
- Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Current sensor fluxgate technology for residual current measurement
more...
|
| FR2V 0.01 H00 |
0.01 |
±0.015 |
±12...15 |
±5V |
+1.0 |
DC |
-10~70 |
Ø20.0 |
|
JK2EDG-5.08-4P |
- Current sensor based on fluxgate technology
- Output Voltage
- Insulating plastic case recognized according to UL 94-V0.(Black)
- High linearity
- Very low zero temperature drift
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Good quality fluxgate current sensor
more...
|
| FR5V 0.01 H00 |
0.01 |
±0.015 |
±12...15 |
±5V |
±1.0 |
DC |
-10~70 |
Ø40.5 |
|
JK2EDG-5.08-4P |
- Current sensor based on fluxgate technology
- Output Voltage
- Insulating plastic case recognized according to UL94-V0(Black)
- High linearity
- Very low zero temperature drift
- Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- High measurement accuracy DC leakage current sensor
more...
|
| FR2V 0.02 H00 |
0.02 |
±0.03 |
±12...15 |
±5V |
±1.0 |
DC |
-10~70 |
Ø20.0 |
|
JK2EDG-5.08-4P |
- Current sensor based on fluxgate technology
- Output Voltage
- Insulating plastic case recognized according to UL 94-V0.(Black)
- High linearity
- Very low zero temperature drift
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- DC leakage current sensor designed for electrical safety protection panel mount
more...
|
| FR5V 0.02 H00 |
0.02 |
±0.03 |
±12...15 |
±5V |
±1.0 |
DC |
-10~70 |
Ø40.5 |
|
JK2EDG-5.08-4P |
- Current sensor based on fluxgate technology
- Output Voltage
- Insulating plastic case recognized according to UL94-V0(Black)
- High linearity
- Very low zero temperature drift
- Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- High-Accuracy portable fluxgate technology leakage current sensor
more...
|
| FR2V 0.05 H00 |
0.05 |
±0.075 |
±12...15 |
±5V |
±1.0 |
DC |
-10~70 |
Ø20.0 |
|
JK2EDG-5.08-4P |
- Current sensor based on fluxgate technology
- Output Voltage
- Insulating plastic case recognized according to UL 94-V0.(Black)
- High linearity
- Very low zero temperature drift
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- DC leakage current sensor for PV leakage current measurement
more...
|
| FR5V 0.05 H00 |
0.05 |
±0.075 |
±12...15 |
±5V |
±1.0 |
DC |
-10~70 |
Ø40.5 |
|
JK2EDG-5.08-4P |
- Current sensor based on fluxgate technology
- Output Voltage
- Insulating plastic case recognized according to UL94-V0(Black)
- High linearity
- Very low zero temperature drift
- Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Good quality fluxgate current sensor
more...
|
| FR2V 0.1 H00 |
0.1 |
±0.15 |
±12...15 |
±5V |
±1.0 |
DC |
-10~70 |
Ø20.0 |
|
JK2EDG-5.08-4P |
- Current sensor based on fluxgate technology
- Output Voltage
- Insulating plastic case recognized according to UL 94-V0.(Black)
- High linearity
- Very low zero temperature drift
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- AC and DC leakage current detection current sensor
more...
|
| FR5V 0.1 H00 |
0.1 |
±0.15 |
±12...15 |
±5V |
±1.0 |
DC |
-10~70 |
Ø40.5 |
|
JK2EDG-5.08-4P |
- Current sensor based on fluxgate technology
- Output Voltage
- Insulating plastic case recognized according to UL94-V0(Black)
- High linearity
- Very low zero temperature drift
- Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Leakage current sensor for industrial automation
more...
|
| FR2V 0.3 H00 |
0.3 |
±0.36 |
±12...15 |
±5V |
±1.0 |
DC |
-10~70 |
Ø20.0 |
|
JK2EDG-5.08-4P |
- Current sensor based on fluxgate technology
- Output Voltage
- Insulating plastic case recognized according to UL 94-V0.(Black)
- High linearity
- Very low zero temperature drift
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Leakage current sensor for AI data center power supply and HPC systems
more...
|
| VN2A 25 P01 |
5mA |
7mA |
24 |
±25mA |
±0.8 |
|
-40~85 |
NA |
+ |
|
- Closed loop (compensated) voltage sensor using the Hall Effect
- Insulating plastic case recognized according to UL94-V0
- Single power supply:+24V
- No insertion loss
- Small size
- High accuracy
- Very good linearity
- Very low offset drift over temperature
- High output frequency bandwidth
- Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Voltage sensor with good temperature stability
more...
|
| VN2A 25 P00 |
10mA |
±14mA |
±15 |
±25mA |
±0.6 |
|
-40~85 |
NA |
+ |
|
- Closed loop (compensated) voltage sensor using the Hall Effect.
- Insulating plastic case recognized according to UL94-V0.
- No insertion loss.
- Small size.
- High accuracy.
- Very good linearity.
- Very low offset drift over temperature.
- High output frequency bandwidth.
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Isolated voltage sensor for welding machine power control
more...
|
| VN2A 25 P02 |
10mA |
±14mA |
24 |
±25mA |
±0.8 |
|
-40~85 |
NA |
+ |
|
- Closed loop (compensated) voltage sensor using the Hall Effect
- Insulating plastic case recognized according to UL94-V0
- No insertion loss
- Small size
- High accuracy
- Very good linearity
- Very low offset drift over temperature
- High output frequency bandwidth
- Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Compact small size closed loop voltage sensor for PCB mount
more...
|
| VN2A 400 PB02 |
400V |
±400V |
±12 |
±5V |
±0.6 |
|
-40~85 |
NA |
|
3 Faston 6.3 x 0.8mm |
- Closed loop (compensated) voltage sensor using the Hall Effect
- Insulating plastic case recognized according to UL94-V0
- Small size
- High accuracy
- Supply voltage +12V
- Very good linearity
- Very low offset drift over temperature.
- Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Voltage sensor factory wholesale for power electronics
more...
|
| VN2A 800 PB00 |
800V |
±1400V |
±12...15 |
±25mA |
±0.6 |
|
-40~85 |
NA |
|
3 Faston 6.3 x 0.8mm |
- Closed loop (compensated) voltage sensor using the Hall Effect
- Insulating plastic case recognized according to UL94-V0
- Small size
- High accuracy
- Very good linearity
- Very low offset drift over temperature
- Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Voltage sensor ±12V ±15V ±0.6% accuracy closed loop hall effect for Industrial drives
more...
|
| VN2A 800 PB01 |
800V |
±1400V |
24 |
4V |
±0.6 |
|
-40~85 |
NA |
|
3 Faston 6.3 x 0.8mm |
- Closed loop (compensated) voltage sensor using the Hall Effect
- Insulating plastic case recognized according to UL94-V0
- Small size
- High accuracy
- Supply voltage +24V
- Very good linearity
- Very low offset drift over temperature.
- Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Wide range voltage sensor for power monitoring
more...
|
| VN2A 1100 PB00 |
1100V |
±1500V |
±12...15 |
±25mA |
±0.6 |
|
-40~85 |
NA |
|
3 Faston 6.3 x 0.8mm |
- Closed loop (compensated) voltage sensor using the Hall Effect
- Insulating plastic case recognized according to UL94-V0
- Small size
- High accuracy
- Very good linearity
- Very low offset drift over temperature
- Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Replacement voltage sensor same pin to pin for energy storage PCS
more...
|
| VN2A 1100 PB03 |
1100V |
±1500V |
±15 |
±4V |
±0.6 |
|
-40~85 |
NA |
|
3 Faston 6.3 x 0.8mm |
- Closed loop (compensated) voltage sensor using the Hall Effect
- Insulating plastic case recognized according to UL 94-V0
- Small size
- High accuracy
- Supply voltage:±15V
- Very good linearity
- Very low offset drift over temperature
- Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Voltage sensor circuit diagram
more...
|
| VN2A 1100 PB20 |
1100V |
±1100V |
±12 |
±4V |
±0.6 |
|
-40~85 |
NA |
|
XH-3A |
- Closed loop (compensated) voltage sensor using the Hall Effect
- Insulating plastic case recognized according to UL94-V0
- Small size
- High accuracy
- Very good linearity
- Very low offset drift over temperature
- Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
- Industrial voltage sensor for power supply monitoring system
more...
|
| FR1C 300 H2252A |
300 |
±400 |
24 |
CAN |
±0.3~0.5 |
|
-40~85 |
Φ24.4 mm |
|
TE 1473672-1 |
- Current sensor using Fluxgate technology for automotive use,BMS, SOC, SOH, SOF.
- Overcurrent detection mechanism
- Panel mounting
- Unipolar +24V battery power supply
- Output signal: High speed CAN (up to 500 kBps)
- Configurable internal digital low-pass frequency filter
- Configurable CAN speed/CAN ID
- UL508 compliant
- Ingress Protection - IP42 level.
more...
|
| HK1V 200 H00 |
200 |
±400 |
±12...15 |
±4V |
±1.0 |
10 |
-40~85 |
Ø40.5 |
|
15EDGVC-3.5-04P |
- Open loop sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- High voltage power distribution 200A current transducer
more...
|
| HK1V 400 H00 |
400 |
±800 |
±12...15 |
±4V |
±1.0 |
10 |
-40~85 |
Ø40.5 |
|
15EDGVC-3.5-04P |
- Open loop sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Industrial current sensor for power supply monitoring system
more...
|
| HK1V 600 H00 |
600 |
±1200 |
±12...15 |
±4V |
±1.0 |
10 |
-40~85 |
Ø40.5 |
|
15EDGVC-3.5-04P |
- Open loop sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Wide range open loop split core current sensor suitable for energy storage
more...
|
| HK1V 800 H00 |
800 |
±1600 |
±12...15 |
±4V |
±1.0 |
10 |
-40~85 |
Ø40.5 |
|
15EDGVC-3.5-04P |
- Open loop sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- No power-off installation split core current sensor
more...
|
| HK1V 1000 H00 |
1000 |
±2000 |
±12...15 |
±4V |
±1.0 |
10 |
-40~85 |
Ø40.5 |
|
15EDGVC-3.5-04P |
- Open loop sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Factory price open loop hall effect current sensor for distribution cabinet
more...
|
| HK1V 2000 H00 |
2000 |
±4000 |
±12...15 |
±4V |
±1.0 |
10 |
-40~85 |
Ø40.5 |
|
15EDGVC-3.5-04P |
- Open loop sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- AC current measurement, 0-5V / 4-20mA output available split core current sensor
more...
|
| HK1V 200 H01 |
200 |
±400 |
±12...15 |
±5V |
±1.0 |
10 |
-40~85 |
Ø40.5 |
|
15EDGVC-3.5-04P |
- Open loop sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- China open loop current sensor manufacturer
more...
|
| HK1V 400 H01 |
400 |
±800 |
±12...15 |
±5V |
±1.0 |
10 |
-40~85 |
Ø40.5 |
|
15EDGVC-3.5-04P |
- Open loop sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Compact small size current sensor
more...
|
| HK1V 600 H01 |
600 |
±1200 |
±12...15 |
±5V |
±1.0 |
10 |
-40~85 |
Ø40.5 |
|
15EDGVC-3.5-04P |
- Open loop sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Split structure current sensor for energy storage PCS
more...
|
| HK1V 800 H01 |
800 |
±1600 |
±12...15 |
±5V |
±1.0 |
10 |
-40~85 |
Ø40.5 |
|
15EDGVC-3.5-04P |
- Open loop sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Low drift voltage transducer IEC61010 CE RoHS
more...
|
| HK1V 1000 H01 |
1000 |
±2000 |
±12...15 |
±5V |
±1.0 |
10 |
-40~85 |
Ø40.5 |
|
15EDGVC-3.5-04P |
- Open loop sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Measure AC/DC split core Hall current sensor 200A 400A 500A 600A 800A 1000A 2000A linearity and accuracy ±1 %
more...
|
| HK1V 2000 H01 |
2000 |
±4000 |
±12...15 |
±5V |
±1.0 |
10 |
-40~85 |
Ø40.5 |
|
15EDGVC-3.5-04P |
- Open loop sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Hot selling open type wide range current transducer supplier
more...
|
| HK3V 50 H20 |
±50 |
±100 |
±12...15 |
±4V |
±1.0 |
DC |
-25~85 |
Ø21.6 |
|
KF2EDGV-3.81-4P |
- Open loop sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Double hall effect design
- Open mounting
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
Split core type current transformer design, operation, & applications
more...
|
| HS1V 50 H02 |
50 |
±150 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Electronically measuring DC, AC, various industrial applications current transducer
more...
|
| HS1V 50 H03 |
50 |
±150 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
RVV4*0.2mm*0.2mm - 500mm |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Low temperature drift closed loop current sensor
more...
|
| HS1V 50 H04 |
50 |
±150 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
XH2.54-4P |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Low temperature drift closed loop current sensor
more...
|
| HS1V 50 H06 |
50 |
±150 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
XH-4A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Open-loop vs Closed-loop current sensor comparison
more...
|
| HS1V 50 H08 |
50 |
±150 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
RVV4*0.2mm*0.2mm + HC-VH-T |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Low zero drift, customized service current sensor for PCS
more...
|
| HS1V 50 H09 |
50 |
±150 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
RVV4*0.2mm*0.2mm - 700mm |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- High accuracy current sensors stable performance over full temperature range
more...
|
| HS1V 100 H00 |
100 |
±300 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- China's open-loop current sensor for welding machine
more...
|
| HS1V 100 H02 |
100 |
±300 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Wide range AC DC measurement
more...
|
| HS1V 100 H03 |
100 |
±300 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
RVV4*0.2mm*0.2mm - 500mm |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
- Current sensor used in HVDC application
more...
|
| HS1V 100 H04 |
100 |
±300 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
XH2.54-4P |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Hall-effect sensors (isolated, non-contact) and resistive shunt sensors (direct measurement)
more...
|
| HS1V 100 H06 |
100 |
±300 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
XH-4A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
DC current measuring device
more...
|
| HS1V 100 H08 |
100 |
±300 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
RVV4*0.2mm*0.2mm + HC-VH-T |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Types of Hall Effect DC Current Sensors in automotive, industrial, and power systems
more...
|
| HS1V 100 H09 |
100 |
±300 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
RVV4*0.2mm*0.2mm - 700mm |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
High accuracy current sensors used for measuring current with cable 700mm primary hole 20.4mm×10.4mm
more...
|
| HS1V 200 H02 |
200 |
±600 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
What are the main types of current sensors?
more...
|
| HS1V 200 H03 |
200 |
±600 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
RVV4*0.2mm*0.2mm - 500mm |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
How electric current sensor technology works?
more...
|
| HS1V 200 H04 |
200 |
±600 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
XH2.54-4P |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
3μs Fast response ±12V ±15V hall current sensor 50kHz bandwidth low drift hall current sensor for industrial application
more...
|
| HS1V 200 H06 |
200 |
±600 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
XH-4A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
±1% Accuracy supply voltage ±12V ±15V current sensor -40℃ to 105℃ , 6.6kV impulse withstand current sensor
more...
|
| HS1V 200 H08 |
200 |
±600 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
RVV4*0.2mm*0.2mm + HC-VH-T |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Easy install compact current sensor output wire length 700±20mm for energy storage system
more...
|
| HS1V 200 H09 |
200 |
±600 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
RVV4*0.2mm*0.2mm - 700mm |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
OEM current sensor with wire from professional hall current sensor supplier
more...
|
| HS2V 200 H01 |
200 |
±600 |
±15 |
±4V |
±1.0 |
25 |
-40~105 |
40.5x32.5 mm |
|
RVVP 4*0.3mm*0.3mm- 1500mm |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Open loop current sensor supply voltage+4V,output line length 150m for Static converters for DC motor drives
more...
|
| HS2V 200 H02 |
200 |
±600 |
±15 |
±4V |
±1.0 |
25 |
-40~105 |
40.5x32.5 mm |
|
XH-4A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Primary hole 40.5mm×32.5mm current transformer used for charge integration and condition monitoring of rechargeable batteries
more...
|
| HS1V 300 H02 |
300 |
±900 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
The type of output used by a current sensor depends on the desired application and operating environment
more...
|
| HS1V 300 H03 |
300 |
±900 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
RVV4*0.2mm*0.2mm - 500mm |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Types of Current Sensors and Their Advantages and Disadvantages
more...
|
| HS1V 300 H04 |
300 |
±900 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
XH2.54-4P |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Measurement Range 50A to 600A compact design for panel mounting and integration into existing systems.
more...
|
| HS1V 300 H06 |
300 |
±900 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
XH-4A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
±150A to ±900A primary current measuring range12V 15V supply voltage (±5%) ±4V analog output voltage current transformer
more...
|
| HS1V 300 H08 |
300 |
±900 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
RVV4*0.2mm*0.2mm + HC-VH-T |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
±4V output open loop Hall effect current sensor 50A to 600A bidirectional measurement
more...
|
| HS1V 300 H09 |
300 |
±900 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
RVV4*0.2mm*0.2mm - 700mm |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Fast response RoHS CE compliant current sensor for welding power supply and SMPS,output voltage is proportional to the supply voltage
more...
|
| HS1V 400 H02 |
400 |
±900 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Types and Characteristics of Current Sensors
more...
|
| HS1V 400 H03 |
400 |
±900 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
RVV4*0.2mm*0.2mm - 500mm |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Current measurement methods
more...
|
| HS1V 400 H04 |
400 |
±900 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
XH2.54-4P |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
High precision current transducer high reliability current sensor Φ4.5 mm through hole for harsh environment -40℃ to 105℃
more...
|
| HS1V 400 H05 |
400 |
±900 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Reinforced insulation current sensor miniature current sensor Φ4.5 mm through-hole for space‑constrained power module
more...
|
| HS1V 400 H06 |
400 |
±900 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
XH-4A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Power Supply current sensor ±12V ±15V supply reliable and precise solution for industrial current measurement
more...
|
| HS1V 400 H08 |
400 |
±900 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
RVV4*0.2mm*0.2mm + HC-VH-T |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Wholesale open loop current sensor China manufacturers, suppliers, factory
more...
|
| HS1V 400 H09 |
400 |
±900 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
RVV4*0.2mm*0.2mm - 700mm |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Power Supply current sensor ±12V ±15V supply reliable and precise solution for industrial current measurement
more...
|
| HS2V 400 H00 |
400 |
±1200 |
±15 |
±4V |
±1.0 |
25 |
-40~105 |
40.5x32.5 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Wholesale open loop current sensor China manufacturers, suppliers, factory
more...
|
| HS2V 400 H01 |
400 |
±1200 |
±15 |
±4V |
±1.0 |
25 |
-40~105 |
40.5x32.5 mm |
|
RVVP 4*0.3mm*0.3mm- 1500mm |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Compact current transducers AC and DC currents ranging from 200 A to 1500 A
more...
|
| HS2V 400 H02 |
400 |
±1200 |
±15 |
±4V |
±1.0 |
25 |
-40~105 |
40.5x32.5 mm |
|
XH-4A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Current transducer measurement range 200A to 1500A Easy installation bipolar power supply ±15V for Power supplies for welding applications
more...
|
| HS1V 500 H00 |
500 |
±900 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Low temperature drift ±4V output analog current sensor for BMS UPS SMPS
more...
|
| HS1V 500 H02 |
500 |
±900 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Molex connector 50kHz bandwidth current sensor for AC DC pulsed current for easy PCB installation
more...
|
| HS1V 500 H03 |
500 |
±900 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
RVV4*0.2mm*0.2mm - 500mm |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
How to choose a current sensor for EV inverter and custom current sensor solution
more...
|
| HS1V 500 H04 |
500 |
±900 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
XH2.54-4P |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Compatible alternative open cloop 500A current sensor isolated for EV, solar inverter and industrial automation
more...
|
| HS1V 500 H05 |
500 |
±900 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Open loop hall effect current sensor 50A~600A with galvanic isolation for EV, BESS & solar inverterapplications
more...
|
| HS1V 500 H06 |
500 |
±900 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
XH-4A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
High accuracy hall current sensor module 500A analog output ±4V for battery energy storage systems (BESS)
more...
|
| HS1V 500 H08 |
500 |
±900 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
RVV4*0.2mm*0.2mm + HC-VH-T |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
-
- Closed loop and open loop hall effect current sensor
more...
|
| HS1V 500 H09 |
500 |
±900 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
RVV4*0.2mm*0.2mm - 700mm |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
CHIPSENSE Open loop hall sensor factory AC/DC 500A current input 4V output for meters
more...
|
| HS2V 500 H01 |
500 |
±1500 |
±15 |
±4V |
±1.0 |
25 |
-40~105 |
40.5x32.5 mm |
|
RVVP 4*0.3mm*0.3mm- 1500mm |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
DC 4V hall current detection sensor 500A
more...
|
| HS2V 500 H02 |
500 |
±1500 |
±15 |
±4V |
±1.0 |
25 |
-40~105 |
40.5x32.5 mm |
|
XH-4A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Solar panel battery charge controller using current sensor
more...
|
| HS3V 500 H00 |
500 |
±1500 |
±15 |
±4V |
±1.0 |
25 |
-40~85 |
64 x 21 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Hall effect open loop current sensor manufacturer for high efficiency power electronics
more...
|
| HS3V 500 H01 |
500 |
±1500 |
±15 |
±4V |
±1.0 |
25 |
-40~85 |
64 x 21 mm |
|
XH-4A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Industrial current transducer supplier for energy storage PCS,BMS
more...
|
| HS1V 600 H02 |
600 |
±900 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Open loop current sensor 600a hall effect linear use case for multi-phase inverters
more...
|
| AN3V 10 PB30 |
10 |
±25 |
3.3 |
1.65±1.15V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+3.3V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
High permeability Hall effect transducer measure AC/DC current for EV charging pile
more...
|
| AN3V 10 PB31 |
10 |
±25 |
3.3 |
1.65±1.15V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+3.3V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
HLSR current transducer in power electronics, motor drives, and renewable energy systems.
more...
|
| AN3V 10 PB51 |
10 |
±25 |
5 |
2.5±2V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+5V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
SMD PCB mount current sensor for industrial
more...
|
| AN3V 16 PB30 |
16 |
±40 |
3.3 |
1.65±1.15V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+3.3V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
Professional hall effect current sensor manufacturer for fast switching applications
more...
|
| AN3V 16 PB31 |
16 |
±40 |
3.3 |
1.65±1.15V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+3.3V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
Small size renewable energy current transducer 10A-120A for high efficiency SMPS
more...
|
| AN3V 16 PB51 |
16 |
±40 |
5 |
2.5±2V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+5V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
Industrial current transducer alternative supplier current transducer for VFD systems
more...
|
| AN3V 20 PB30 |
20 |
±50 |
3.3 |
1.65±1.15V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+3.3V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
Cost effective Hall effect current sensor for AI server PSU
more...
|
| AN3V 20 PB31 |
20 |
±50 |
3.3 |
1.65±1.15V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+3.3V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
Current Sensor 20A 3.3V 2.5us PCB HLSR-P
more...
|
| AN3V 20 PB51 |
20 |
±50 |
5 |
2.5±2V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+5V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
HLSR Industrial Current Sensors
more...
|
| AN3V 32 PB30 |
32 |
±80 |
3.3 |
1.65±1.15V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+3.3V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
The different types of available current sensors and their typical use cases
more...
|
| AN3V 32 PB31 |
32 |
±80 |
3.3 |
1.65±1.15V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+3.3V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
Current sensor selection guide for motor control applications and how to test current sensor
more...
|
| AN3V 32 PB51 |
32 |
±80 |
5 |
2.5±2V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+5V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
Hall effect sensor ensure for battery efficiency and protecting against current overloads
more...
|
| AN3V 40 PB30 |
40 |
±100 |
3.3 |
1.65±1.15V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+3.3V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
How to replace a hall effect transducer for current measurement
more...
|
| AN3V 40 PB31 |
40 |
±100 |
3.3 |
1.65±1.15V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+3.3V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
Small size open cloop supply voltage 3.3V linearity ±0.5 for 250khz for industrial applications
more...
|
| AN3V 40 PB51 |
40 |
±100 |
5 |
2.5±2V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+5V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
Electronic components PCB board mounting open cloop hall current sensor for SMPS and UPS
more...
|
| AN3V 50 PB31 |
50 |
±125 |
3.3 |
1.65±1.15V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+3.3V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
Supply voltage+3.3V open loop current sensor based on Hall effect PCB installation
more...
|
| AN3V 50 PB51 |
50 |
±125 |
5 |
2.5±2V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+5V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
Good Iinear variable differential current sensor active speed sensor wide measure range10A 16A 20A 32A 40A 50A 80A 100A 120A
more...
|
| AN3V 80 PB35 |
80 |
±200 |
3.3 |
1.65±1.15V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+3.3V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
How integrated current sensors can open new perspectives for system
more...
|
| AN3V 80 PB31 |
80 |
±200 |
3.3 |
1.65±1.15V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+3.3V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
UPS power HLSR current sensor price
more...
|
| AN3V 80 PB51 |
80 |
±200 |
5 |
2.5±2V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+5V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
Small size height 8.7mm open loop 250kHz bandwidth supply voltage+5V for MPPT
more...
|
| AN3V 100 PB35 |
100 |
±250 |
3.3 |
1.65±1.15V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+3.3V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
Supply voltage 3.3V hall effect current sensor for combining manifolds
more...
|
| AN3V 100 PB31 |
100 |
±250 |
3.3 |
1.65±1.15V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+3.3V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
High precision magnetic sensor interfacing ASIC
more...
|
| AN3V 100 PB51 |
100 |
±250 |
5 |
2.5±2V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+5V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
How integrated current sensors can open new perspectives for system design.
more...
|
| AN3V 120 PB35 |
120 |
±300 |
3.3 |
1.65±1.15V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+3.3V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
Hall current sensor 80-200A AC/DC Input/output suitable for industrial power supply with an aperture of ±0.3 mm
more...
|
| AN3V 120 PB31 |
120 |
±300 |
3.3 |
1.65±1.15V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+3.3V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
Hall current sensor 3.3V AC/DC 10A 16A 20A 32A 40A 50A 80A 100A 120A electrical Current Transducer analog output
more...
|
| AN3V 120 PB51 |
120 |
±300 |
5 |
2.5±2V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+5V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
Current transducer sensor 120A range 80mV/A sensitivity PCB mount for motor drives UPS
more...
|
| HS1V 600 H08 |
600 |
±900 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
RVV4*0.2mm*0.2mm + HC-VH-T |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
AC frequency transducer capacitive open loop hall busbar sensor
more...
|
| HS1V 600 H06 |
600 |
±900 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
XH-4A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
High precision open loop linear variable differential transformer current sensor ±1%
more...
|
| HS1V 600 H05 |
600 |
±900 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
How to use a current sensor?
more...
|
| HS1V 600 H03 |
600 |
±900 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
RVV4*0.2mm*0.2mm - 500mm |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Electronic components current sensor 600A 1 channel hall effect open loop bidirectional For AC/DC through hole 20.4mm×10.4mm
more...
|
| HS1V 600 H04 |
600 |
±900 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
XH2.54-4P |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
How electric current senso works?
more...
|
| HS1V 600 H09 |
600 |
±900 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
20.4x10.4 mm |
|
RVV4*0.2mm*0.2mm - 700mm |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
High efficiency 600A current sensor for solar wind hybrid inverter
more...
|
| HS2V 600 H01 |
600 |
±1800 |
±15 |
±4V |
±1.0 |
25 |
-40~105 |
40.5x32.5 mm |
|
RVVP 4*0.3mm*0.3mm- 1500mm |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Smart grid 600A hall effect current transducer for renewable energy
more...
|
| HS2V 600 H02 |
600 |
±1800 |
±15 |
±4V |
±1.0 |
25 |
-40~105 |
40.5x32.5 mm |
|
XH-4A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Automation and controls sensors and switches for automation current sensors
more...
|
| HS3V 600 H00 |
600 |
±1800 |
±15 |
±4V |
±1.0 |
25 |
-40~85 |
64 x 21 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Hybrid Battery Pack Current Sensing DC4V Hall Effect Current Sensor
more...
|
| HS3V 600 H01 |
600 |
±1800 |
±15 |
±4V |
±1.0 |
25 |
-40~85 |
64 x 21 mm |
|
XH-4A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
AC current sensor factory price 600A output current sensor from China current sensor supplier
more...
|
| HS2V 800 H00 |
800 |
±2400 |
±15 |
±4V |
±1.0 |
25 |
-40~105 |
40.5x32.5 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Customizable high reliability compliant industrial output analog 800A current sensor for industrial applications
more...
|
| HS2V 800 H01 |
800 |
±2400 |
±15 |
±4V |
±1.0 |
25 |
-40~105 |
40.5x32.5 mm |
|
RVVP 4*0.3mm*0.3mm- 1500mm |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
800-S Hall effect open loop current sensor ±15V 20mA Bidirectional chassis mount
more...
|
| HS2V 800 H02 |
800 |
±2400 |
±15 |
±4V |
±1.0 |
25 |
-40~105 |
40.5x32.5 mm |
|
XH-4A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Replacement HAT 800-S HAT series current transformer, 800A input, 40.5mm×32.5mm, 15 V for wind energy inverter
more...
|
| HS3V 800 H01 |
800 |
±2400 |
±15 |
±4V |
±1.0 |
25 |
-40~85 |
64 x 21 mm |
|
XH-4A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
High-performance open loop Hall effect current sensors designed for industrial power electronics and renewable energy systems
more...
|
| HS2V 1000 H01 |
1000 |
±3000 |
±15 |
±4V |
±1.0 |
25 |
-40~105 |
40.5x32.5 mm |
|
RVVP 4*0.3mm*0.3mm- 1500mm |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Wide current range 200-1500A core components of power conversion equipment
more...
|
| HS2V 1000 H02 |
1000 |
±3000 |
±15 |
±4V |
±1.0 |
25 |
-40~105 |
40.5x32.5 mm |
|
XH-4A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Primary nominal rms current 1000 A ±15 V supply ±4 V output −40 °C to +105 °C CT current transformer
more...
|
| HS3V 1000 H00 |
1000 |
±3000 |
±15 |
±4V |
±1.0 |
25 |
-40~85 |
64 x 21 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
High resistance 500 A to 3000 A primary hole 64mm×21mm ±4 V output 1000A current sensor
more...
|
| HS3V 1000 H01 |
1000 |
±3000 |
±15 |
±4V |
±1.0 |
25 |
-40~85 |
64 x 21 mm |
|
XH-4A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Professional current sensors supplier
more...
|
| HS2V 1200 H00 |
1200 |
±2500 |
±15 |
±4V |
±1.0 |
25 |
-40~105 |
40.5x32.5 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Buy reliable current sensors. compact design, high accuracy, wide application in power supply, inverter and industrial fields. factory direct wholesale.
more...
|
| HS2V 1200 H01 |
1200 |
±3000 |
±15 |
±4V |
±1.0 |
25 |
-40~105 |
40.5x32.5 mm |
|
RVVP 4*0.3mm*0.3mm- 1500mm |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Industrial AC DC pulse current sensor 200A to 1500A IEC standard current transducer RVVP 4×0.3mm² shielded wire
more...
|
| HS2V 1200 H02 |
1200 |
±3000 |
±15 |
±4V |
±1.0 |
25 |
-40~105 |
40.5x32.5 mm |
|
XH-4A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Open loop 200A-1500A current sensor secondary connection XH-4A cost-effective alternative to HAT-S series
more...
|
| HS2V 1500 H01 |
1500 |
±3000 |
±15 |
±4V |
±1.0 |
25 |
-40~105 |
40.5x32.5 mm |
|
RVVP 4*0.3mm*0.3mm- 1500mm |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Industrial grade easy installation current sensor AC DC current transducer output line length 1500 ±20mm
more...
|
| HS2V 1500 H02 |
1500 |
±3000 |
±15 |
±4V |
±1.0 |
25 |
-40~105 |
40.5x32.5 mm |
|
XH-4A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Compact current sensor module precise current transducer 200A -1500A for renewable energy systems
more...
|
| HS3V 1500 H01 |
1500 |
±4500 |
±15 |
±4V |
±1.0 |
25 |
-40~85 |
64 x 21 mm |
|
XH-4A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
In solar and wind power generation systems, current sensors are used to optimize energy conversion and ensure system safety.
more...
|
| HS3V 2000 H01 |
2000 |
±5500 |
±15 |
±4V |
±1.0 |
25 |
-40~85 |
64 x 21 mm |
|
XH-4A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Original factory agent of current sensor offers domestic alternative design solution services.
more...
|
| HS3V 2500 H00 |
2500 |
±5500 |
±15 |
±4V |
±1.0 |
25 |
-40~85 |
64 x 21 mm |
|
MOLEX 5045-04A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
What are major types of current sensors
more...
|
| HS3V 2500 H01 |
2500 |
±5500 |
±15 |
±4V |
±1.0 |
25 |
-40~85 |
64 x 21 mm |
|
XH-4A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
AC/DC current transducer
more...
|
| HS3V 3000 H01 |
3000 |
±5500 |
±15 |
±4V |
±1.0 |
25 |
-40~85 |
64 x 21 mm |
|
XH-4A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
3000A current sensor for large-scale energy storage projects and industrial power systems
more...
|
| CS1V 200 P00 |
200 |
±450 |
5 |
2.5±0.625V |
<1.1 |
>200 |
-40~85 |
NA |
+ |
|
- Closed loop (compensated) multi-range current sensor using the Hall Effect
- Voltage output
- Unipolar supply voltage 5V
- PCB-mount isolated current transducer for ac and dc up to 300A
- Aperture for primary conductor
- Galvanic insulation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:
- IEC 60664-1: 2020
- IEC 61800-5-1: 2022
- IEC 62109-1: 2010
- UL listed
more...
|
| CS1V 150 P00 |
150 |
±270 |
5 |
2.5±0.625V |
<1 |
>200 |
-40~85 |
NA |
+ |
|
- Closed loop (compensated) multi-range current sensor using the Hall Effect
- Voltage output
- Unipolar supply voltage 5V
- PCB-mount isolated current transducer for ac and dc up to 300A
- Aperture for primary conductor
- Galvanic insulation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:
- IEC 60664-1: 2020
- IEC 61800-5-1: 2022
- IEC 62109-1: 2010
- UL listed
more...
|
| CS1V 100 P00 |
100 |
±270 |
5 |
2.5±0.625V |
<1 |
>200 |
-40~85 |
NA |
+ |
|
- Closed loop (compensated) multi-range current sensor using the Hall Effect
- Voltage output
- Unipolar supply voltage 5V
- PCB-mount isolated current transducer for ac and dc up to 300A
- Aperture for primary conductor
- Galvanic insulation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:
- IEC 60664-1: 2020
- IEC 61800-5-1: 2022
- IEC 62109-1: 2010
- UL listed
more...
|
| CS1V 80 P00 |
80 |
±270 |
5 |
0.25...4.75V |
<1 |
>200 |
-40~85 |
NA |
+ |
|
- Closed loop (compensated) multi-range current sensor using the Hall Effect
- Voltage output
- Unipolar supply voltage 5V
- PCB-mount isolated current transducer for ac and dc up to 300A
- Aperture for primary conductor
- Galvanic insulation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:
- IEC 60664-1: 2020
- IEC 61800-5-1: 2022
- IEC 62109-1: 2010
- UL listed
more...
|
| CR1V 6 PB02 |
6 |
±12 |
5 |
1.65±1.25V |
±0.4 |
200 |
-40~85 |
NA |
+ |
|
- Closed loop(compensated)current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion losses
- Standards:IEC 60664-1: 2020, IEC 61800-5-1: 2022, IEC 62109-1: 2010
Reliable data output voltage current sensor to ensure accurate system status monitoring and stable operation
more...
|
| CR1V 6 PB03 |
6 |
±12 |
5 |
1.62±1.25V |
±0.7 |
200 |
-40~85 |
NA |
+ |
|
- Closed loop(compensated)current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion losses
- Standards:IEC 60664-1: 2020, IEC 61800-5-1: 2022, IEC 62109-1: 2010
IEC 60664-1 certified current transducer PCB mount current sensor for industrial test equipment
more...
|
| CR1V 6 PB04 |
6 |
±20 |
5 |
2.5±1.875V |
±0.8 |
200 |
-40~105 |
NA |
+ |
|
- Closed loop(compensated)current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion losses
- Standards:IEC 60664-1: 2020, IEC 61800-5-1: 2022, IEC 62109-1: 2010
CAT III reinforced insulation current transducer compact PCB mount isolated current sensor for BMS manufacturer
more...
|
| CR1V 15 PB02 |
15 |
±30 |
5 |
1.65±1.25V |
±0.4 |
200 |
-40~85 |
NA |
+ |
|
- Closed loop(compensated)current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion losses
- Standards:IEC 60664-1: 2020, IEC 61800-5-1: 2022, IEC 62109-1: 2010
Factory direct high precision measurement CTs
more...
|
| CR1V 15 PB03 |
15 |
±30 |
5 |
1.62±1.25V |
±0.7 |
200 |
-40~85 |
NA |
+ |
|
- Closed loop(compensated)current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion losses
- Standards:IEC 60664-1: 2020, IEC 61800-5-1: 2022, IEC 62109-1: 2010
Current sensor CL 15A AC/DC compact design, easy to install PCB for servo motor drives
more...
|
| CR1V 15 PB04 |
15 |
±51 |
5 |
2.5±1.875V |
±0.8 |
200 |
-40~105 |
NA |
+ |
|
- Closed loop(compensated)current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion losses
- Standards:IEC 60664-1: 2020, IEC 61800-5-1: 2022, IEC 62109-1: 2010
China supplier single power supply 5V hall effect DC/AC 6-50A current sensor for welding machine power supply
more...
|
| CR1V 25 PB02 |
25 |
±50 |
5 |
1.65±1.25V |
±0.4 |
200 |
-40~85 |
NA |
+ |
|
- Closed loop(compensated)current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion losses
- Standards:IEC 60664-1: 2020, IEC 61800-5-1: 2022, IEC 62109-1: 2010
China factory price hall effect current measurement 500A closed loop DC AC hallcurrent sensor manufacturer
more...
|
| HK1A 400 H00 |
400 |
±480 |
12 |
4...20mA |
±1.0 |
DC |
-25~85 |
Ø41.3 |
|
2EDGV-3.81-4P |
- Open loop sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Clamp-on current transformer
more...
|
| HK3A 50 H20 |
±50 |
±50 |
12 |
4...20mA |
±1.0 |
DC |
-25~85 |
Ø21.6 |
|
KF2EDGV-3.81-4P |
- Open loop sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Output 12±8mA
- 12V(DC)Power supply
- Proportional output
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
50A current transducer clamp type for battery pack current detection HVAC
more...
|
| CR1V 25 PB04 |
25 |
±85 |
5 |
2.5±1.875V |
±0.8 |
200 |
-40~105 |
NA |
+ |
|
- Closed loop(compensated)current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion losses
- Standards:IEC 60664-1: 2020, IEC 61800-5-1: 2022, IEC 62109-1: 2010
High precision hall effect current sensor for new energy combiner box measurement
more...
|
| CR1V 50 PB03 |
50 |
±100 |
5 |
1.62±1.25V |
±0.7 |
200 |
-40~85 |
NA |
+ |
|
- Closed loop(compensated)current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion losses
- Standards:IEC 60664-1: 2020, IEC 61800-5-1: 2022, IEC 62109-1: 2010
Hall effect current transducer PCB type for EV Charger PV Solar Motor UPS PLC DSP
more...
|
| CR1V 50 PB04 |
50 |
±150 |
5 |
2.5±1.875V |
±0.8 |
200 |
-40~105 |
NA |
+ |
|
- Closed loop(compensated)current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion losses
- Standards:IEC 60664-1: 2020, IEC 61800-5-1: 2022, IEC 62109-1: 2010
Understanding basics current sensing circuits
more...
|
| CR1V 75 PB05 |
75 |
±180 |
5 |
2.5V |
±1.0 |
200 |
-40~105 |
NA |
+ |
|
- Closed loop(compensated)current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion losses
- Standards:IEC 60664-1: 2020, IEC 61800-5-1: 2022, IEC 62109-1: 2010
Current sensor circuit diagram
more...
|
| CN1A 25 PB01 |
25 |
±36 |
±12 |
±25mA |
±0.5 |
150 |
-40~85 |
NA |
+ |
|
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Alternative supplier for current transducers LA 25-np series
more...
|
| AR1A 50 H00 |
50 |
±50 |
±12...15 |
±20mA |
±1.0 |
5 |
-40~85 |
Ø20.0 |
|
JK2EDG-5.08-4P |
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- Nominal output current 20mA
- Good linearity
- High accuracy
- Very low offset drift over temperature.
- Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
Current sensor module connection current transformer in single line diagram
more...
|
| AR1A 50 H01 |
50 |
±50 |
±12...15 |
±100mA |
±1.0 |
5 |
-40~85 |
Ø20 |
|
JK2EDG-5.08-4P |
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- Nominal output current 100mA
- Good linearity
- High accuracy
- Very low offset drift over temperature.
- Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
Current sensor circuit for microcontroller current sensor 50A working principle current sensor pinout
more...
|
| AN1V 300 PB501 |
300 |
±300 |
5 |
0.55-4.55V |
±1.0 |
250 |
-40~85 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- ASIC Technology.
- Maintain output proportional to changes in the power supply(include offset and sensitivity).
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Small size.
- Standards: IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
New original Hall sensor available in stock replace ACS758 current sensor
more...
|
| AN1V 300 PB502 |
300 |
±300 |
5 |
0.55-4.55V |
±1.0 |
250 |
-40~85 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- ASIC Technology.
- Maintain output proportional to changes in the power supply(include offset and sensitivity).
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Small size.
- Standards: IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Bidirectional AC/DC +/-300 amp isolated current sensor module ACS758 +/-300A
more...
|
| CS3A 200 P21 |
200 |
±300 |
±12...15 |
±100...150mA |
±0.3 |
150 |
-40~85 |
13.5 x 10 mm |
+ |
|
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Professional manufacturer equivalent to S25P150D15Y board mount closed-loop hall effectcurrent sensor for AI data center and power electronics
more...
|
| CN2A 25 PB02 |
25 |
±55 |
±12...15 |
±25mA |
±0.5 |
200 |
-40~85 |
NA |
+ |
|
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Main application fields of closed loop current snesor for UPS, BMS, servo, wind inverter
more...
|
| CN2A 40 PB02 |
40 |
±90 |
±12...15 |
±40mA |
±0.5 |
200 |
-40~85 |
NA |
+ |
|
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
PCB mount hall sensor equivalent to LAH-P high linearity hall transducer for battery management system BMS fast response 0.5μs
more...
|
| CN2A 50 PB02 |
50 |
±90 |
±12...15 |
±50mA |
±0.5 |
200 |
-40~85 |
NA |
+ |
|
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Panel mounted EV battery BMS tester current sensor
more...
|
| CR1A 50 H00 |
50 |
±70 |
±12...15 |
±50...100mA |
±0.5 |
200 |
-40~85 |
Ø23 |
|
MOLEX 5045-04A |
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
AC DC current transducer for inverter
more...
|
| CR1A 100 H02 |
100 |
±200 |
±12...15 |
±50...100mA |
±0.5 |
200 |
-40~85 |
Ø23 |
|
HX39600-3Y |
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Isolated hall effect current sensor primary current 100A for new energy vehicle
more...
|
| CR1A 100 H04 |
100 |
±200 |
±12...15 |
±50...100mA |
±0.5 |
200 |
-40~85 |
Ø23 |
|
Molex9652048 3.96-A4A |
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Special through-core current transformer for frequency converter
more...
|
| CR1A 200 H02 |
200 |
±400 |
±12...15 |
±100...200mA |
±0.5 |
200 |
-40~85 |
Ø23 |
|
HX39600-3Y |
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Domestic high precision current transducer 300±20mm RVV cable current transducer alternative to LT x08-S7 series
more...
|
| CR1A 200 H04 |
200 |
±400 |
±12...15 |
±100...200mA |
±0.5 |
200 |
-40~85 |
Ø23 |
|
Molex9652048 3.96-A4A |
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Molex connector closed loop hall current sensor ±200A fast response 0.5μs for industrial converter
more...
|
| CR1A 300 H04 |
300 |
±500 |
±12...15 |
±150...250mA |
±0.5 |
200 |
-40~85 |
Ø23 |
|
Molex9652048 3.96-A4A |
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Compact mountable 300A hall current sensor with molex connector swapable LT x08-S7 series
more...
|
| CM1A 100 H01 |
100 |
±200 |
±12...15 |
±100...200mA |
±0.2 |
100 |
-40~85 |
Ø15.6 |
|
Molex 6410 |
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Primary busbar through hole alternative LF 205/210-Series 100A current sensor easy installation
more...
|
| CM1A 200 H02 |
200 |
±420 |
±12...15 |
±100...200mA |
±0.2 |
100 |
-40~85 |
Ø15.6 |
|
Molex Minifit 5566 |
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Primary hole Φ15.6 mm global leader in current measurement solutions
more...
|
| CM4A 1000 H06 |
1000 |
±2700 |
±15...24 |
±200...540mA |
±0.3 |
150 |
-40~85 |
Ø38 |
|
Molex 6410 |
- Closed loop(compensated)current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
Choosing the right current sensor type depends on the application’s requirements for accuracy, range, installation method, and integration needs
more...
|
| CM5A 2000 H01 |
2000 |
±3850 |
±15...24 |
±400...770mA |
±0.3 |
150 |
-40~85 |
Ø57.5 |
|
5566-4A |
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Low thermal drift compatible LF 2005/2010-series hall effect current sensor 100kHz bandwidth SMPS application ±2000A 6kV isolation 150kHz bandwidth
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|
| CM5A 2000 H21 |
2000 |
±4250 |
±15...24 |
±400...850mA |
±0.3 |
150 |
-40~85 |
Ø57.5 |
|
2EDGV-5.08-3P |
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Drop-in replacement LF 2005/2010-series hall effect transducers for MW UPS & large scale energy storage
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|
| FR7V 0.01 H00 |
0.01 |
±0.017 |
±15 |
±5V |
±1.0 |
DC |
-10~70 |
Ø12 |
|
KF2EDG 3.81MM 4P |
- Current sensor based on fluxgate technology
- Output voltage
- Insulating plastic case recognized according to UL 94-V0(Blue)
- High linearity
- Very low zero temperature drift
- Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010
Very low offset drift over temperature photovoltaic inverter (no transformer type) leakage current measurement current transducer
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|
| CS3A 50 P00 |
50 |
±90 |
±12...15 |
±50...90mA |
±0.3 |
150 |
-40~85 |
13.5 x 10 mm |
+ |
|
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Electrical parameter table accuracy ±0.3% 150kHz bandwidth response time 0.5μs mechanical dimension drawing primary busbar 13.5x10mm outline size
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|
| CS3A 50 P21 |
50 |
±100 |
±12...15 |
±25...37.5mA |
±0.3 |
150 |
-40~85 |
13.5 x 10 mm |
+ |
|
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Current sensor dimension diagram secondary pin layout recommended PCB hole Φ1.0mm mounted on energy storage PCS DC busbar current detection
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|
| CS3A 100 P21 |
100 |
±150 |
±12...15 |
±50...75mA |
±0.3 |
150 |
-40~85 |
13.5 x 10 mm |
+ |
|
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Recommended PCB hole high accuracy primary nominal rms current ±100A for battery management frequency bandwidth 150 kHz for power supplies for welding applications
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|
| CS3A 100 P51 |
100 |
±150 |
±12...15 |
±100...150mA |
±0.3 |
150 |
-40~85 |
13.5 x 10 mm |
+ |
|
- Closed loop (compensated) current sensor using the Hall Effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Current transducer components in stock
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|
| CS1V 100 PB00 |
100 |
±270 |
5 |
2.5±0.625 |
<0.95 |
>200 |
-40~85 |
4 x φ5.2 mm |
+ |
|
- Closed loop (compensated) multi-range current sensor using the Hall Effect
- Voltage output
- Unipolar supply voltage 5V
- Integrated primary conductor for PCB soldering
- Galvanic insulation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:
- IEC 60664-1: 2020
- IEC 61800-5-1: 2022
- IEC 62109-1: 2010
- UL listed
more...
|
| CS1V 150 PB00 |
150 |
±270 |
5 |
2.5±0.625 |
<0.95 |
>200 |
-40~85 |
4 x φ5.2 mm |
+ |
|
- Closed loop (compensated) multi-range current sensor using the Hall Effect
- Voltage output
- Unipolar supply voltage 5V
- Integrated primary conductor for PCB soldering
- Galvanic insulation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:
- IEC 60664-1: 2020
- IEC 61800-5-1: 2022
- IEC 62109-1: 2010
- UL listed
more...
|
| CS1V 200 PB00 |
200 |
±450 |
5 |
2.5±0.625V |
<1.1 |
>200 |
-40~85 |
4 x φ5.2 mm |
+ |
|
- Closed loop (compensated) multi-range current sensor using the Hall Effect
- Voltage output
- Unipolar supply voltage 5V
- Integrated primary conductor for PCB soldering
- Galvanic insulation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:
- IEC 60664-1: 2020
- IEC 61800-5-1: 2022
- IEC 62109-1: 2010
- UL listed
more...
|
| AN3V 150 PB55 |
150 |
±375 |
5 |
2.5±2V |
+1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- ASIC Technology.
- Maintain output proportional to changes in the power supply(include offset and sensitivity).
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Small size.
- Standards: IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Primary current direction marking diagram open loop bidirectional current sensor for general power electronics
more...
|
| AN3V 180 PB55 |
180 |
±375 |
5 |
2.5±2V |
+1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- ASIC Technology.
- Maintain output proportional to changes in the power supply(include offset and sensitivity).
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Small size.
- Standards: IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Customized current automotive grade current sensor for circuit breaker
more...
|
| AN3V 200 PB55 |
200 |
±375 |
5 |
2.5±2V |
+1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- ASIC Technology.
- Maintain output proportional to changes in the power supply(include offset and sensitivity).
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Small size.
- Standards: IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
Open loop current sensor transducer 200A
more...
|
| AN3V 150 PB35 |
150 |
±375 |
3.3 |
1.65±1.15V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+3.3V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
Industrial combining manifold current measurement hall sensor alternative to LA17P S05 open loop current transducer for industrial converters
more...
|
| AN3V 180 PB35 |
180 |
±375 |
3.3 |
1.65±1.15V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+3.3V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
250kHz bandwidth 2.5µs fast response time current transducer alternative HLSR
more...
|
| AN3V 200 PB35 |
200 |
±375 |
3.3 |
1.65±1.15V |
±1.0 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall effect.
- Galvanic separation between primary and secondary.
- Insulating plastic case recognized according to UL 94-V0.
- No insertion losses.
- Supply voltage:+3.3V
- Small size.
- h=8.7mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
200A Ultra thin HLSR 8.7mm height galvanic isolated current detector -40 to 105℃ wide temperature
more...
|
| HK5V 1000 H20 |
±1000 |
±1500 |
±12...15 |
±4V |
±1.0 |
20 |
-25~85 |
16mm×64mm |
|
2EDG-4P-3.81 |
- Open loop sensor using the Hall Effect
- Galvanic insulation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Double Hall design
- Open installation
- Battery pack current detection
- Smart power grid
- Standards:
- IEC 60664-1:2020
- IEC 62109-1:2010
- IEC 61800-5-1:2022
Fast response 5μs analog output current sensor for wind energy inverter
more...
|
| VN4A 500 M15 |
500V |
±750V |
±15...24 |
50mA |
±1.0 |
14 |
-40~85 |
NA |
|
M5 thread screw |
- Closed loop (compensated) voltage sensor using the Hall Effect.
- Galvanic insulation between the primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Good linearity
- Very low offset drift over temperature
- Resistant to strong external interference
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
- EN 50155:2017
Good linearity ±0.5% voltage transducer for single phase industrial inverter monitoring
more...
|
| VN4A 750 M15 |
750V |
±1125V |
±15...24 |
50mA |
±1.0 |
14 |
-40~85 |
NA |
|
M5 thread screw |
- Closed loop (compensated) voltage sensor using the Hall Effect.
- Galvanic insulation between the primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Good linearity
- Very low offset drift over temperature
- Resistant to strong external interference
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
- EN 50155:2017
No insertion loss primary busbar ±12V ±24V current sensor for battery management system
more...
|
| VN4A 1500 M15 |
1500V |
±2250V |
±15...24 |
50mA |
±1.0 |
14 |
-40~85 |
NA |
|
M5 thread screw |
- Closed loop (compensated) voltage sensor using the Hall Effect.
- Galvanic insulation between the primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Good linearity
- Very low offset drift over temperature
- Resistant to strong external interference
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
- EN 50155:2017
Optimized delay time high precision voltage sensor for battery chargers
more...
|
| VN4A 2000 M15 |
2000V |
±3000V |
±15...24 |
50mA |
±1.0 |
14 |
-40~85 |
NA |
|
M5 thread screw |
- Closed loop (compensated) voltage sensor using the Hall Effect.
- Galvanic insulation between the primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Good linearity
- Very low offset drift over temperature
- Resistant to strong external interference
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
- EN 50155:2017
Supply voltage 15V 24V wide frequency bandwidth voltage transducer
more...
|
| AT4V 50 H00 |
50 |
±150 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
10 x 12mm(Three holes) |
|
HX PZ2.54-1X6P WZ |
- Three-phase open loop current sensor using the Hall effect
- Operating temperature range:-40℃~ 105℃
- Insulating plastic case recognized according to UL 94-V0
- Voltage ratio output
- Very good linearity
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
more...
|
| AT4V 75 H00 |
75 |
±225 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
10 x 12mm(Three holes) |
|
HX PZ2.54-1X6P WZ |
- Three-phase open loop current sensor using the Hall effect
- Operating temperature range:-40℃~ 105℃
- Insulating plastic case recognized according to UL 94-V0
- Voltage ratio output
- Very good linearity
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
more...
|
| AT4V 100 H00 |
100 |
±300 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
10 x 12mm(Three holes) |
|
HX PZ2.54-1X6P WZ |
- Three-phase open loop current sensor using the Hall effect
- Operating temperature range:-40℃~ 105℃
- Insulating plastic case recognized according to UL 94-V0
- Voltage ratio output
- Very good linearity
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
more...
|
| AT4V 150 H00 |
150 |
±450 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
10 x 12mm(Three holes) |
|
HX PZ2.54-1X6P WZ |
- Three-phase open loop current sensor using the Hall effect
- Operating temperature range:-40℃~ 105℃
- Insulating plastic case recognized according to UL 94-V0
- Voltage ratio output
- Very good linearity
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
more...
|
| AT4V 200 H00 |
200 |
±600 |
±12...15 |
±4V |
±1.0 |
50 |
-40~105 |
10 x 12mm(Three holes) |
|
HX PZ2.54-1X6P WZ |
- Three-phase open loop current sensor using the Hall effect
- Operating temperature range:-40℃~ 105℃
- Insulating plastic case recognized according to UL 94-V0
- Voltage ratio output
- Very good linearity
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
more...
|
| CS1V 250 P00 |
250 |
±380 |
5 |
2.5±0.625V |
<1.1 |
>200 |
-40~85 |
21x11.5 mm |
+ |
|
- Closed loop (compensated) multi-range current sensor using the Hall Effect
- Voltage output
- Unipolar supply voltage 5V
- PCB-mount isolated current transducer for ac and dc up to 300A
- Aperture for primary conductor
- Galvanic insulation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:
- IEC 60664-1: 2020
- IEC 61800-5-1: 2022
- IEC 62109-1: 2010
- UL listed
more...
|
| CS1V 300 P00 |
300 |
±600 |
5 |
2.5±0.9375V |
<0.8 |
>200 |
-40~85 |
21x11.5 mm |
+ |
|
- Closed loop (compensated) multi-range current sensor using the Hall Effect
- Voltage output
- Unipolar supply voltage 5V
- PCB-mount isolated current transducer for ac and dc up to 300A
- Aperture for primary conductor
- Galvanic insulation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:
- IEC 60664-1: 2020
- IEC 61800-5-1: 2022
- IEC 62109-1: 2010
- UL listed
more...
|
| CS1V 80 PB00 |
80 |
±270 |
5 |
2.5±0.625V |
<1 |
200 |
-40~85 |
NA |
+ |
|
- Closed loop (compensated) multi-range current sensor using the Hall Effect
- Voltage output
- Unipolar supply voltage 5V
- Integrated primary conductor for PCB soldering
- Galvanic insulation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:
- IEC 60664-1: 2020
- IEC 61800-5-1: 2022
- IEC 62109-1: 2010
- UL listed
more...
|
| FR1C 300 H1252A |
300 |
±400 |
12 |
CAN |
±0.3~0.5 |
|
-40~85 |
Φ24.4 mm |
|
TE 1473672-1 |
- Current sensor using Fluxgate technology for automotive use,BMS, SOC, SOH, SOF.
- Overcurrent detection mechanism
- Panel mounting
- Unipolar +12V battery power supply
- Output signal: High speed CAN (up to 500 kBps)
- Configurable internal digital low-pass frequency filter
- Configurable CAN speed/CAN ID
- UL508 compliant
- Ingress Protection - IP42 level.
more...
|
| FR1C 500 H1252A |
500 |
±600 |
12 |
CAN |
±0.3~0.5 |
|
-40~85 |
Φ24.4mm |
|
TE 1473672-1 |
- Current sensor using Fluxgate technology for automotive use,BMS, SOC, SOH, SOF.
- Overcurrent detection mechanism
- Panel mounting
- Unipolar +12V battery power supply
- Output signal: High speed CAN (up to 500 kBps)
- Configurable internal digital low-pass frequency filter
- Configurable CAN speed/CAN ID
- UL508 compliant
- Ingress Protection - IP42 level.
more...
|
| FR1C 300 H1152A |
300 |
±400 |
12 |
CAN |
±0.3~0.5 |
|
-40~85 |
Φ24.4 mm |
|
TE 1473672-1 |
- Current sensor using Fluxgate technology for automotive use,BMS, SOC, SOH, SOF.
- Overcurrent detection mechanism
- Panel mounting
- Unipolar +12V battery power supply
- Output signal: High speed CAN (up to 500 kBps)
- Configurable internal digital low-pass frequency filter
- Configurable CAN speed/CAN ID
- UL508 compliant
- Ingress Protection - IP42 level.
more...
|
| CM9A 1500 H00 |
1500 |
±2250 |
±15...24 |
±300mA |
±0.3 |
100 |
-40~85 |
Φ94mm or 95mm×25mm |
|
JST-B3PS-VH |
- Closed loop(compensated)current sensor using the Hall effect
- Galvanic Insulation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
more...
|
| FR1C 700 H2252A |
700 |
±760 |
24 |
CAN |
±0.3~0.5 |
|
-40~85 |
Φ24.4mm |
|
TE 1473672-1 |
- Current sensor using Fluxgate technology for automotive use,BMS, SOC, SOH, SOF.
- Overcurrent detection mechanism
- Panel mounting
- Unipolar +24V battery power supply
- Output signal: High speed CAN (up to 500 kBps)
- Configurable internal digital low-pass frequency filter
- Configurable CAN speed/CAN ID
- UL508 compliant
- Ingress Protection - IP42 level.
more...
|
| CM9A 3500 H00 |
3500 |
±4500 |
±15...24 |
±700mA |
±0.3 |
100 |
-40~85 |
Φ94mm or 95mm×25mm |
|
JST-B3PS-VH |
- Closed loop(compensated)current sensor using the Hall effect
- Galvanic Insulation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
more...
|
| CM9A 5000 H00 |
5000 |
±5500 |
±24 |
±1000mA |
±0.3 |
100 |
-40~85 |
Φ94mm or 95mm×25mm |
|
JST-B3PS-VH |
- Closed loop(compensated)current sensor using the Hall effect
- Galvanic Insulation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
more...
|
| CM9A 5000 H01 |
5000 |
±5500 |
±24 |
±1000mA |
±0.1 |
100 |
-40~85 |
Φ94mm or 95mm×25mm |
|
JST-B3PS-VH |
- Closed loop(compensated)current sensor using the Hall effect
- Galvanic Insulation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- High accuracy
- Very low offset drift over temperature
- No insertion loss
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
more...
|
| CR8A 500 M00 |
500 |
±750 |
±15...24 |
±100mA |
±0.3 |
100 |
-45~85 |
Ø120 |
|
M6 |
- High accuracy 500A closed loop HALL current sensor
- Very good linearity
- High Frequency bandwidth
- No insertion loss
- Strong anti-interference ability
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
more...
|
| CR8A 1000 M00 |
1000 |
±1500 |
±15...24 |
±200mA |
±0.3 |
100 |
-45~85 |
Ø120 |
|
M6 |
- High accuracy 1000A closed loop Hall current sensor
- Very good linearity
- High Frequency bandwidth
- No insertion loss
- Strong anti-interference ability
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
more...
|
| CR8A 2000 M00 |
2000 |
±3000 |
±15...24 |
±400mA |
±0.3 |
100 |
-45~85 |
Ø120 |
|
M6 |
- High accuracy 2000A closed loop Hall current sensor
- Very good linearity
- High Frequency bandwidth
- No insertion loss
- Strong anti-interference ability
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
more...
|
| CR8A 4000 M00 |
4000 |
±6000 |
±15...24 |
±800mA |
±0.3 |
100 |
-45~85 |
Ø120 |
|
M6 |
- High accuracy 4000A closed loop Hall current sensor
- Very good linearity
- High Frequency bandwidth
- No insertion loss
- Strong anti-interference ability
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
more...
|
| CR8A 5000 M00 |
5000 |
±6000 |
±24 |
±1000mA |
±0.3 |
100 |
-45~85 |
Ø120 |
|
M6 |
- High accuracy 5000A closed loop Hall current sensor
- Very good linearity
- High Frequency bandwidth
- No insertion loss
- Strong anti-interference ability
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
more...
|
| AN5V 60 PB00 |
60 |
±180 |
±12...15 |
±4V |
±1 |
50 |
-40~85 |
NA |
+ |
|
- 60A open loop current sensor using the Hall Effect
- Supply voltage ±12...±15V
- Galvanic insulation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Small size
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
more...
|
| FR1C 500 H1352A |
500 |
±530 |
12 |
CAN |
±0.3~0.5 |
|
-40~85 |
Φ24.4 mm |
|
TE 1473672-1 |
- Current sensor using Fluxgate technology for automotive use,BMS, SOC, SOH, SOF.
- Overcurrent detection mechanism
- Panel mounting
- Unipolar +12V battery power supply
- Output signal: High speed CAN (up to 500 kBps)
- Configurable internal digital low-pass frequency filter
- Configurable CAN speed/CAN ID
- UL508 compliant
- Ingress Protection - IP42 level.
more...
|
| FR1C 300 H1352A |
300 |
±400 |
12 |
CAN |
±0.3~0.5 |
|
-40~85 |
Φ24.4 mm |
|
TE 1473672-1 |
- Current sensor using Fluxgate technology for automotive use,BMS, SOC, SOH, SOF.
- Overcurrent detection mechanism
- Panel mounting
- Unipolar +12V battery power supply
- Output signal: High speed CAN (up to 500 kBps)
- Configurable internal digital low-pass frequency filter
- Configurable CAN speed/CAN ID
- UL508 compliant
- Ingress Protection - IP42 level.
more...
|
| CM5A 2000 H41 |
2000 |
±3500 |
±15...24 |
±400mA |
±0.5 |
100 |
-40~85 |
Φ57.5mm or 61mm◊21mm |
|
M6 |
- 2000A high accuracy current sensor
- Closed loop(compensated)current sensor using the Hall effect
- Galvanic insulation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- Very good linearity
- Very low offset drift over temperature
- No insertion loss
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
more...
|
| CM8A 1000 H01 |
1000 |
±2400 |
±15...24 |
±200mA |
±0.4 |
DC...100 |
-40~85 |
Φ42mm |
|
M6 |
- Closed loop(compensated)current sensor using theHall effect
- Galvanic insulation between primary and secondary
- Insulating plastic case recognized according to UL94-V0
- Very good linearity
- Very low offset drift over temperature
- No insertion loss
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
more...
|
| FR1C 500 H2252A |
500 |
±530 |
24 |
CAN |
±0.3~0.5 |
|
-40~85 |
Φ24.4 mm |
|
TE 1473672-1 |
- Current sensor using Fluxgate technology for automotive use,BMS, SOC, SOH, SOF.
- Overcurrent detection mechanism
- Panel mounting
- Unipolar +24V battery power supply
- Output signal: High speed CAN (up to 500 kBps)
- Configurable internal digital low-pass frequency filter
- Configurable CAN speed/CAN ID
- UL508 compliant
- Ingress Protection - IP42 level.
more...
|
| AN6V 20 PB50 |
20 |
±50 |
5 |
±2V |
±0.8 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall Effect
- Galvanic insulation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Supply voltage: +5V
- Height h=10.15mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
more...
|
| AN6V 32 PB50 |
32 |
±80 |
5 |
±2V |
±0.8 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall Effect
- Galvanic insulation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Supply voltage: +5V
- Height h=10.15mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
more...
|
| AN6V 40 PB50 |
40 |
±100 |
5 |
±2V |
±0.8 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall Effect
- Galvanic insulation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Supply voltage: +5V
- Height h=10.15mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
more...
|
| AN6V 50 PB50 |
50 |
±125 |
5 |
±2V |
±0.8 |
250 |
-40~105 |
NA |
+ |
|
- Open loop current sensor using the Hall Effect
- Galvanic insulation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Supply voltage: +5V
- Height h=10.15mm
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
more...
|
| TR3V 0.005 P01 |
5mA |
8mA |
±12...15V |
3.3V |
±0.5 |
50 |
-40~85 |
Φ12mm |
+ |
|
- AC current sensor based on transformer technology
- DC voltage output 3.3V
- Insulating plastic case recognized according to UL94-V0
- High Accuracy
- Very low offset drift over temperature
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
more...
|
| TR3V 0.01 P01 |
10mA |
15mA |
±12...15V |
3.3V |
±0.5 |
50 |
-40~85 |
Φ12mm |
+ |
|
- AC current sensor based on transformer technology
- DC voltage output 3.3V
- Insulating plastic case recognized according to UL94-V0
- High Accuracy
- Very low offset drift over temperature
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
more...
|
| TR3V 0.05 P01 |
50mA |
75mA |
±12...15 |
3.3V |
±0.5 |
50 |
-40~85 |
Φ12mm |
+ |
|
- AC current sensor based on transformer technology
- DC voltage output 3.3V
- Insulating plastic case recognized according to UL94-V0
- High Accuracy
- Very low offset drift over temperature
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
more...
|
| TR3V 0.005 P02 |
5mA |
8mA |
±12...15 |
5V |
±0.5 |
50 |
-40~85 |
Φ12mm |
+ |
|
- AC current sensor based on transformer technology
- DC voltage output 5V
- Insulating plastic case recognized according to UL94-V0
- High Accuracy
- Very low offset drift over temperature
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
more...
|
| TR3V 0.01 P02 |
10mA |
15mA |
±12...15 |
5V |
±0.5 |
50 |
-40~85 |
Φ12mm |
+ |
|
- AC current sensor based on transformer technology
- DC voltage output 5V
- Insulating plastic case recognized according to UL94-V0
- High Accuracy
- Very low offset drift over temperature
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
more...
|
| TR3V 0.05 P02 |
50mA |
80mA |
±12...15 |
5V |
±0.5 |
50 |
-40~85 |
Φ12mm |
+ |
|
- AC current sensor based on transformer technology
- DC voltage output 5V
- Insulating plastic case recognized according to UL94-V0
- High Accuracy
- Very low offset drift over temperature
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
more...
|
| TR3V 0.20 P02 |
200mA |
250mA |
±12...15 |
5V |
±0.5 |
50 |
-40~85 |
Φ12mm |
+ |
|
- AC current sensor based on transformer technology
- DC voltage output 5V
- Insulating plastic case recognized according to UL94-V0
- High Accuracy
- Very low offset drift over temperature
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
more...
|
| FR1C 700 H1252A |
700 |
±760 |
12 |
CAN |
±0.3~0.5 |
|
-40~85 |
Φ24.4 mm |
|
TE 1473672-1 |
- Current sensor using Fluxgate technology for automotive use,BMS, SOC, SOH, SOF.
- Overcurrent detection mechanism
- Panel mounting
- Unipolar +12V battery power supply
- Output signal: High speed CAN (up to 500 kBps)
- Configurable internal digital low-pass frequency filter
- Configurable CAN speed/CAN ID
- UL508 compliant
- Ingress Protection - IP42 level.
more...
|
| AR4V 200 P00 |
200 |
±300 |
5 |
Vref±1.25*IPN/ IPN |
±1.0 |
240 |
-40~105 |
Φ 22 |
+ |
|
- Open loop(compensated)current sensor using the Hall effect
- Galvanic insulation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Supply voltage :+5V
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
more...
|
| AR4V 400 P00 |
400 |
±600 |
5 |
Vref±1.25*IPN/ IPN |
±1.0 |
240 |
-40~105 |
Φ 22 |
+ |
|
- Open loop(compensated)current sensor using the Hall effect
- Galvanic insulation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Supply voltage :+5V
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
more...
|
| AR4V 600 P00 |
600 |
±900 |
5 |
Vref±1.25*IPN/ IPN |
±1.0 |
240 |
-40~105 |
Ø22 |
+ |
|
- Open loop(compensated)current sensor using the Hall effect
- Galvanic insulation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Supply voltage :+5V
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
more...
|
| AR4V 800 P00 |
800 |
±1200 |
5 |
Vref±1.25*IPN/ IPN |
±1.0 |
240 |
-40~105 |
Ø22 |
+ |
|
- Open loop(compensated)current sensor using the Hall effect
- Galvanic insulation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion loss
- Supply voltage :+5V
- Standards:
- IEC 60664-1:2020
- IEC 61800-5-1:2022
- IEC 62109-1:2010
more...
|
| HS3V 1200 H01 |
1200 |
±3600 |
±15 |
±4V |
±1.0 |
25 |
-40~85 |
64 x 21 mm |
|
XH-4A |
- Open loop current sensor using the Hall effect
- Galvanic separation between primary and secondary
- Insulating plastic case recognized according to UL 94-V0
- No insertion losses
- Small size
- Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010
In solar and wind power generation systems, current sensors are used to optimize energy conversion and ensure system safety.
more...
|
| FR1C 700 H1352A |
700 |
±760 |
12 |
CAN |
±0.3~0.5 |
|
-40~85 |
Φ24.4 mm |
|
TE 1473672-1 |
- Current sensor using Fluxgate technology for automotive use,BMS, SOC, SOH, SOF.
- Overcurrent detection mechanism
- Panel mounting
- Unipolar +12V battery power supply
- Output signal: High speed CAN (up to 500 kBps)
- Configurable internal digital low-pass frequency filter
- Configurable CAN speed/CAN ID
- UL508 compliant
- Ingress Protection - IP42 level.
more...
|
| FR1C 300 H1352B |
300 |
±400 |
12 |
CAN |
±0.3~0.5 |
|
-40~85 |
Φ24.4 mm |
|
TE 1473672-1 |
- Current sensor using Fluxgate technology for automotive use,BMS, SOC, SOH, SOF.
- Overcurrent detection mechanism
- Panel mounting
- Unipolar +12V battery power supply
- Output signal: High speed CAN (up to 500 kBps)
- Configurable internal digital low-pass frequency filter
- Configurable CAN speed/CAN ID
- UL508 compliant
- Ingress Protection - IP42 level.
more...
|
| FR1C 500 H1352B |
500 |
±530 |
12 |
CAN |
±0.3~0.5 |
|
-40~85 |
Φ24.4 mm |
|
TE 1473672-1 |
- Current sensor using Fluxgate technology for automotive use,BMS, SOC, SOH, SOF.
- Overcurrent detection mechanism
- Panel mounting
- Unipolar +12V battery power supply
- Output signal: High speed CAN (up to 500 kBps)
- Configurable internal digital low-pass frequency filter
- Configurable CAN speed/CAN ID
- UL508 compliant
- Ingress Protection - IP42 level.
more...
|
| FR1C 700 H1352B |
700 |
±760 |
12 |
CAN |
±0.3~0.5 |
|
-40~85 |
Φ24.4 mm |
|
TE 1473672-1 |
- Current sensor using Fluxgate technology for automotive use,BMS, SOC, SOH, SOF.
- Overcurrent detection mechanism
- Panel mounting
- Unipolar +12V battery power supply
- Output signal: High speed CAN (up to 500 kBps)
- Configurable internal digital low-pass frequency filter
- Configurable CAN speed/CAN ID
- UL508 compliant
- Ingress Protection - IP42 level.
more...
|
| FR1C 300 H2352A |
300 |
±400 |
24 |
CAN |
±0.3~0.5 |
|
-40~85 |
Φ24.4 mm |
|
TE 1473672-1 |
- Current sensor using Fluxgate technology for automotive use,BMS, SOC, SOH, SOF.
- Overcurrent detection mechanism
- Panel mounting
- Unipolar +24V battery power supply
- Output signal: High speed CAN (up to 500 kBps)
- Configurable internal digital low-pass frequency filter
- Configurable CAN speed/CAN ID
- UL508 compliant
- Ingress Protection - IP42 level.
more...
|
| FR1C 500 H2352A |
500 |
±530 |
24 |
CAN |
±0.3~0.5 |
|
-40~85 |
Φ24.4 mm |
|
TE 1473672-1 |
- Current sensor using Fluxgate technology for automotive use,BMS, SOC, SOH, SOF.
- Overcurrent detection mechanism
- Panel mounting
- Unipolar +24V battery power supply
- Output signal: High speed CAN (up to 500 kBps)
- Configurable internal digital low-pass frequency filter
- Configurable CAN speed/CAN ID
- UL508 compliant
- Ingress Protection - IP42 level.
more...
|
| FR1C 700 H2352A |
700 |
±760 |
24 |
CAN |
±0.3~0.5 |
|
-40~85 |
Φ24.4 mm |
|
TE 1473672-1 |
- Current sensor using Fluxgate technology for automotive use,BMS, SOC, SOH, SOF.
- Overcurrent detection mechanism
- Panel mounting
- Unipolar +24V battery power supply
- Output signal: High speed CAN (up to 500 kBps)
- Configurable internal digital low-pass frequency filter
- Configurable CAN speed/CAN ID
- UL508 compliant
- Ingress Protection - IP42 level.
more...
|
| FR1C 300 H2322C |
300 |
±400 |
24 |
CAN |
±0.3~0.5 |
|
-40~85 |
Φ24.4 mm |
|
TE 1473672-1 |
- Current sensor using Fluxgate technology for automotive use,BMS, SOC, SOH, SOF.
- Overcurrent detection mechanism
- Panel mounting
- Unipolar +24V battery power supply
- Output signal: High speed CAN (up to 250 kBps)
- Configurable internal digital low-pass frequency filter
- Configurable CAN speed/CAN ID
- UL508 compliant
- Ingress Protection - IP42 level.
more...
|
| FR1C 500 H2322C |
500 |
±530 |
24 |
CAN |
±0.3~0.5 |
|
-40~85 |
Φ24.4 mm |
|
TE 1473672-1 |
- Current sensor using Fluxgate technology for automotive use,BMS, SOC, SOH, SOF.
- Overcurrent detection mechanism
- Panel mounting
- Unipolar +24V battery power supply
- Output signal: High speed CAN (up to 250 kBps)
- Configurable internal digital low-pass frequency filter
- Configurable CAN speed/CAN ID
- UL508 compliant
- Ingress Protection - IP42 level.
more...
|
| FR1C 700 H2322C |
700 |
±760 |
24 |
CAN |
±0.3~0.5 |
|
-40~85 |
Φ24.4 mm |
|
TE 1473672-1 |
- Current sensor using Fluxgate technology for automotive use,BMS, SOC, SOH, SOF.
- Overcurrent detection mechanism
- Panel mounting
- Unipolar +24V battery power supply
- Output signal: High speed CAN (up to 250 kBps)
- Configurable internal digital low-pass frequency filter
- Configurable CAN speed/CAN ID
- UL508 compliant
- Ingress Protection - IP42 level.
more...
|