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Product No Primary nominal RMS current(A) Measuring range(A) Supply voltage (V) Secondary output Accuracy(%) Output bandwidth Operating Temp.(°C) Copper busbar(mm) PCB Others
CN1A 25 PB00
CN1A 25 PB00

  • 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

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CN2A 40 PB01
CN2A 40 PB01

  • 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

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CS3A 50 P01
CS3A 50 P01

  • 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

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CS3A 50 P51
CS3A 50 P51

  • 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

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CN2A 50 PB01
CN2A 50 PB01

  • 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

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CN2A 80 PB01
CN2A 80 PB01

  • 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.

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CN2A 100 PB01
CN2A 100 PB01

  • 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.

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CR1A 100 H00
CR1A 100 H00

  • 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 

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CR1A 100 H01
CR1A 100 H01

  • 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

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CS3A 100 P00
CS3A 100 P00

  • 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

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CS3A 100 P01
CS3A 100 P01

  • 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

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CS3A 125 P00
CS3A 125 P00

  • 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

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CR1A 200 H00
CR1A 200 H00

  • 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

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CR1A 200 H01
CR1A 200 H01

  • 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
  •  

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CM1A 200 H00
CM1A 200 H00

  • 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

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CR1A 300 H00
CR1A 300 H00

  • 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

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CR1A 300 H01
CR1A 300 H01

  • 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

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CR1A 300 H02
CR1A 300 H02

  • 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
  •  

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CM2A 300 H00
CM2A 300 H00

  • 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 

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CR2A 400 H00
CR2A 400 H00

  • 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

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CR2A 500 H00
CR2A 500 H00

  • 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

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CM3A 500 H00
CM3A 500 H00

  • 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

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CM3A 500 H01
CM3A 500 H01

  • 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

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CM4A 1000 H00
CM4A 1000 H00

  • 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

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CM4A 1000 H03
CM4A 1000 H03

  • 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  

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CM4A 1000 H05
CM4A 1000 H05

  • 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

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CM5A 2000 H20
CM5A 2000 H20

  • 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

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AN5V 30 PB00
AN5V 30 PB00

  • 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

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AN5V 10 PB00
AN5V 10 PB00

  • 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

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AN3V 10 PB50
AN3V 10 PB50

  • 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

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AN5V 15 PB00
AN5V 15 PB00

  • 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

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AN3V 16 PB50
AN3V 16 PB50

  • 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

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AN5V 20 PB00
AN5V 20 PB00

  • 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

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AN3V 20 PB50
AN3V 20 PB50

  • 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

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AN5V 25 PB00
AN5V 25 PB00

  • 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 

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AS1V 30 H05
AS1V 30 H05

  • 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

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AN3V 32 PB50
AN3V 32 PB50

  • 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 

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AN3V 40 PB50
AN3V 40 PB50

  • 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 

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AN5V 50 PB00
AN5V 50 PB00

  • 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

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AN3V 50 PB30
AN3V 50 PB30

  • 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

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AN3V 50 PB50
AN3V 50 PB50

  • 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 

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AS1V 50 H00
AS1V 50 H00

  • 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 

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AS1V 50 H01
AS1V 50 H01

  • 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

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AN3V 80 PB55
AN3V 80 PB55

  • 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

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AN3V 100 PB55
AN3V 100 PB55

  • 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

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AS1V 100 H00
AS1V 100 H00

  • 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

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AS1V 100 H01
AS1V 100 H01

  • 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

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AS1V 100 H07
AS1V 100 H07

  • 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

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AN3V 120 PB55
AN3V 120 PB55

  • 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...
AS1V 200 H00
AS1V 200 H00

  • 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

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AS1V 200 H01
AS1V 200 H01

  • 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

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AS1V 200 H07
AS1V 200 H07

  • 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

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AS1V 300 H00
AS1V 300 H00

  • 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

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AS1V 300 H01
AS1V 300 H01

  • 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

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AS1V 400 H00
AS1V 400 H00

  • 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

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AS1V 400 H01
AS1V 400 H01

  • 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

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AS1V 500 H00
AS1V 500 H00

  • 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

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AS1V 500 H01
AS1V 500 H01

  • 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 

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AS1V 600 H00
AS1V 600 H00

  • 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

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AS1V 600 H01
AS1V 600 H01

  • 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

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AS1V 700 H00
AS1V 700 H00

  • 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

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AS1V 800 H00
AS1V 800 H00

  • 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

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AN3V 10 PB31
AN3V 10 PB31

  • 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.

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AN3V 10 PB51
AN3V 10 PB51

  • 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

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AN3V 16 PB30
AN3V 16 PB30

  • 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

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AN3V 16 PB31
AN3V 16 PB31

  • 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

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AN3V 16 PB51
AN3V 16 PB51

  • 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

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AN3V 20 PB30
AN3V 20 PB30

  • 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

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AN3V 20 PB31
AN3V 20 PB31

  • 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

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AN3V 20 PB51
AN3V 20 PB51

  • 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

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AN3V 32 PB30
AN3V 32 PB30

  • 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

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AN3V 32 PB31
AN3V 32 PB31

  • 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

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AN3V 32 PB51
AN3V 32 PB51

  • 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

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AN3V 40 PB30
AN3V 40 PB30

  • 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

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AN3V 40 PB31
AN3V 40 PB31

  • 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 

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AN3V 40 PB51
AN3V 40 PB51

  • 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

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AN3V 50 PB31
AN3V 50 PB31

  • 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

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AN3V 50 PB51
AN3V 50 PB51

  • 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 

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AN3V 80 PB35
AN3V 80 PB35

  • 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

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AN3V 80 PB31
AN3V 80 PB31

  • 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

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AN3V 80 PB51
AN3V 80 PB51

  • 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 

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AN3V 100 PB35
AN3V 100 PB35

  • 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

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AN3V 100 PB31
AN3V 100 PB31

  • 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

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AN3V 100 PB51
AN3V 100 PB51

  • 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.

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AN3V 120 PB35
AN3V 120 PB35

  • 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

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AN3V 120 PB31
AN3V 120 PB31

  • 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 

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AN3V 120 PB51
AN3V 120 PB51

  • 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

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CR1V 75 PB05
CR1V 75 PB05

  • 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

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CR1V 6 PB02
CR1V 6 PB02

  • 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

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CR1V 6 PB03
CR1V 6 PB03

  • 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

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CR1V 6 PB04
CR1V 6 PB04

  • 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

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CR1V 15 PB02
CR1V 15 PB02

  • 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 

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CR1V 15 PB03
CR1V 15 PB03

  • 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

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CR1V 15 PB04
CR1V 15 PB04

  • 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

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CR1V 25 PB02
CR1V 25 PB02

  • 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

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CR1V 25 PB04
CR1V 25 PB04

  • 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

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CR1V 50 PB03
CR1V 50 PB03

  • 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

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CR1V 50 PB04
CR1V 50 PB04

  • 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

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CS3A 50 P00
CS3A 50 P00

  • 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
CS3A 50 P21

  • 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
CS3A 100 P21

  • 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
CS3A 100 P51

  • 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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CN1A 25 PB01
CN1A 25 PB01

  • 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

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CN2A 25 PB02
CN2A 25 PB02

  • 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

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CN2A 40 PB02
CN2A 40 PB02

  • 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 

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CN2A 50 PB02
CN2A 50 PB02

  • 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

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CR1A 50 H00
CR1A 50 H00

  • 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

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CR1A 100 H02
CR1A 100 H02

  • 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

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CR1A 100 H04
CR1A 100 H04

  • 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

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CR1A 200 H02
CR1A 200 H02

  • 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

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CR1A 200 H04
CR1A 200 H04

  • 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

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CR1A 300 H04
CR1A 300 H04

  • 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

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CM1A 100 H01
CM1A 100 H01

  • 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

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CM1A 200 H02
CM1A 200 H02

  • 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

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CM4A 1000 H06
CM4A 1000 H06

  • 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

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CM5A 2000 H01
CM5A 2000 H01

  • 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
CM5A 2000 H21

  • 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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CS3A 200 P21
CS3A 200 P21

  • 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 

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AN3V 150 PB55
AN3V 150 PB55

  • 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

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AN3V 180 PB55
AN3V 180 PB55

  • 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

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AN3V 200 PB55
AN3V 200 PB55

  • 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

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AN3V 150 PB35
AN3V 150 PB35

  • 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

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AN3V 180 PB35
AN3V 180 PB35

  • 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

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AN3V 200 PB35
AN3V 200 PB35

  • 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

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HK1A 200 H00
HK1A 200 H00

  • 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

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AN5V 60 PB00
AN5V 60 PB00

  • 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

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AN6V 20 PB50
AN6V 20 PB50

  • 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

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AN6V 32 PB50
AN6V 32 PB50

  • 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

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AN6V 40 PB50
AN6V 40 PB50

  • 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

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AN6V 50 PB50
AN6V 50 PB50

  • 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

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