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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
CR1V 6 PB00

<ul><li>Closed loop(compensated)current sensor using the Hall effect</li><li>Galvanic separation between primary and secondary</li><li>Insulating plastic case recognized according to UL 94-V0</li><li>Very good linearity</li><li>High accuracy</li><li>Very low offset drift over temperature</li><li>No insertion losses</li><li>Standards:IEC 60664-1: 2020, IEC 61800-5-1: 2022, IEC 62109-1: 2010</li></ul>

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CR1V 6 PB01

<ul><li>Closed loop(compensated)current sensor using the Hall effect</li><li>Galvanic separation between primary and secondary</li><li>Insulating plastic case recognized according to UL 94-V0</li><li>Very good linearity</li><li>High accuracy</li><li>Very low offset drift over temperature</li><li>No insertion losses</li><li>Standards:IEC 60664-1: 2020, IEC 61800-5-1: 2022, IEC 62109-1: 2010</li></ul>

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CR1V 15 PB00

<ul><li>Closed loop(compensated)current sensor using the Hall effect</li><li>Galvanic separation between primary and secondary</li><li>Insulating plastic case recognized according to UL 94-V0</li><li>Very good linearity</li><li>High accuracy</li><li>Very low offset drift over temperature</li><li>No insertion losses</li><li>Standards:IEC 60664-1: 2020, IEC 61800-5-1: 2022, IEC 62109-1: 2010</li></ul>

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CR1V 15 PB01

<ul><li>Closed loop(compensated)current sensor using the Hall effect</li><li>Galvanic separation between primary and secondary</li><li>Insulating plastic case recognized according to UL 94-V0</li><li>Very good linearity</li><li>High accuracy</li><li>Very low offset drift over temperature</li><li>No insertion losses</li><li>Standards:IEC 60664-1: 2020, IEC 61800-5-1: 2022, IEC 62109-1: 2010</li></ul>

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CN1A 25 PB00

<ul><li>Closed loop (compensated) current sensor using the Hall Effect</li><li>Galvanic separation between primary and secondary</li><li>Insulating plastic case recognized according to UL94-V0</li><li>Very good linearity</li><li>High accuracy</li><li>Very low offset drift over temperature</li><li>No insertion loss</li><li>Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010</li></ul>

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CR1V 25 PB00

<ul><li>Closed loop(compensated)current sensor using the Hall effect</li><li>Galvanic separation between primary and secondary</li><li>Insulating plastic case recognized according to UL 94-V0</li><li>Very good linearity</li><li>High accuracy</li><li>Very low offset drift over temperature</li><li>No insertion losses</li><li>Standards:IEC 60664-1: 2020, IEC 61800-5-1: 2022, IEC 62109-1: 2010</li></ul>

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CR1V 25 PB01

<ul><li>Closed loop(compensated)current sensor using the Hall effect</li><li>Galvanic separation between primary and secondary</li><li>Insulating plastic case recognized according to UL 94-V0</li><li>Very good linearity</li><li>High accuracy</li><li>Very low offset drift over temperature</li><li>No insertion losses</li><li>Standards:IEC 60664-1: 2020, IEC 61800-5-1: 2022, IEC 62109-1: 2010</li></ul>

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CN2A 40 PB01

<ul><li>Closed loop (compensated) current sensor using the Hall Effect</li><li>Galvanic separation between primary and secondary</li><li>Insulating plastic case recognized according to UL94-V0</li><li>Very good linearity</li><li>High accuracy</li><li>Very low offset drift over temperature</li><li>No insertion loss</li><li>Standards:</li><li>IEC 60664-1:2020  IEC 61800-5-1:2022  IEC 62109-1:2010</li></ul>

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CS3A 50 P01

<ul><li>Closed loop (compensated) current sensor using the Hall Effect</li><li>Galvanic separation between primary and secondary</li><li>Insulating plastic case recognized according to UL 94-V0</li><li>Very good linearity</li><li>High accuracy</li><li>Very low offset drift over temperature</li><li>No insertion loss</li><li>Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010</li></ul>

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CS3A 50 P51

<ul><li>Closed loop (compensated) current sensor using the Hall Effect</li><li>Galvanic separation between primary and secondary</li><li>Insulating plastic case recognized according to UL 94-V0</li><li>Very good linearity</li><li>High accuracy</li><li>Very low offset drift over temperature</li><li>No insertion loss</li><li>Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010</li></ul>

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CN2A 50 PB01

<ul><li>Closed loop (compensated) current sensor using the Hall Effect</li><li>Galvanic separation between primary and secondary</li><li>Insulating plastic case recognized according to UL 94-V0</li><li>Very good linearity</li><li>High accuracy</li><li>Very low offset drift over temperature</li><li>No insertion loss</li><li>Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010</li></ul>

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CN2A 80 PB01

<ul><li>Closed loop (compensated) current sensor using the Hall Effect</li><li>Galvanic separation between primary and secondary</li><li>Insulating plastic case recognized according to UL 94-V0</li><li>Very good linearity</li><li>High accuracy</li><li>Very low offset drift over temperature</li><li>No insertion loss</li><li>Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010</li></ul>

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CN2A 100 PB01

<ul><li>Closed loop (compensated) current sensor using the Hall Effect</li><li>Galvanic separation between primary and secondary</li><li>Insulating plastic case recognized according to UL 94-V0</li><li>Very good linearity</li><li>High accuracy</li><li>Very low offset drift over temperature</li><li>No insertion loss</li><li>Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010</li></ul>

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CR1A 100 H00

<ul><li>Closed loop(compensated)current sensor using the Hall effect</li><li>Galvanic separation between primary and secondary</li><li>Insulating plastic case recognized according to UL 94-V0</li><li>Very good linearity</li><li>High accuracy</li><li>Very low offset drift over temperature</li><li>No insertion losses</li><li>Standards:IEC 60664-1: 2020, IEC 61800-5-1: 2022, IEC 62109-1: 2010</li></ul>

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CR1A 100 H01

<ul><li>Closed loop(compensated)current sensor using the Hall effect</li><li>Galvanic separation between primary and secondary</li><li>Insulating plastic case recognized according to UL 94-V0</li><li>Very good linearity</li><li>High accuracy</li><li>Very low offset drift over temperature</li><li>No insertion losses</li><li>Standards:IEC 60664-1: 2020, IEC 61800-5-1: 2022, IEC 62109-1: 2010</li></ul>

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CS3A 100 P00

<ul><li>Closed loop (compensated) current sensor using the Hall Effect</li><li>Galvanic separation between primary and secondary</li><li>Insulating plastic case recognized according to UL 94-V0</li><li>Very good linearity</li><li>High accuracy</li><li>Very low offset drift over temperature</li><li>No insertion loss</li><li>Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010</li></ul>

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CS3A 100 P01

<ul><li>Closed loop (compensated) current sensor using the Hall Effect</li><li>Galvanic separation between primary and secondary</li><li>Insulating plastic case recognized according to UL 94-V0</li><li>Very good linearity</li><li>High accuracy</li><li>Very low offset drift over temperature</li><li>No insertion loss</li><li>Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010</li></ul>

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CS3A 125 P00

<ul><li>Closed loop (compensated) current sensor using the Hall Effect</li><li>Galvanic separation between primary and secondary</li><li>Insulating plastic case recognized according to UL 94-V0</li><li>Very good linearity</li><li>High accuracy</li><li>Very low offset drift over temperature</li><li>No insertion loss</li><li>Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010</li></ul>

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CR1A 200 H00

<ul><li>Closed loop (compensated) current sensor using the Hall Effect</li><li>Galvanic separation between primary and secondary</li><li>Insulating plastic case recognized according to UL 94-V0</li><li>Very good linearity</li><li>High accuracy</li><li>Very low offset drift over temperature</li><li>No insertion loss</li><li>Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010</li></ul>

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CR1A 200 H01

<ul><li>Closed loop (compensated) current sensor using the Hall Effect</li><li>Galvanic separation between primary and secondary</li><li>Insulating plastic case recognized according to UL 94-V0</li><li>Very good linearity</li><li>High accuracy</li><li>Very low offset drift over temperature</li><li>No insertion loss</li><li>Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010</li></ul>

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CM1A 200 H00

<ul><li>Closed loop (compensated) current sensor using the Hall Effect</li><li>Galvanic separation between primary and secondary</li><li>Insulating plastic case recognized according to UL 94-V0</li><li>Very good linearity</li><li>High accuracy</li><li>Very low offset drift over temperature</li><li>No insertion loss</li><li>Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010</li></ul>

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CR1A 300 H00

<ul><li>Closed loop (compensated) current sensor using the Hall Effect</li><li>Galvanic separation between primary and secondary</li><li>Insulating plastic case recognized according to UL 94-V0</li><li>Very good linearity</li><li>High accuracy</li><li>Very low offset drift over temperature</li><li>No insertion loss</li><li>Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010</li></ul>

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CR1A 300 H01

<ul><li>Closed loop (compensated) current sensor using the Hall Effect</li><li>Galvanic separation between primary and secondary</li><li>Insulating plastic case recognized according to UL 94-V0</li><li>Very good linearity</li><li>High accuracy</li><li>Very low offset drift over temperature</li><li>No insertion loss</li><li>Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010</li></ul>

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CR1A 300 H02

<ul><li>Closed loop (compensated) current sensor using the Hall Effect</li><li>Galvanic separation between primary and secondary</li><li>Insulating plastic case recognized according to UL 94-V0</li><li>Very good linearity</li><li>High accuracy</li><li>Very low offset drift over temperature</li><li>No insertion loss</li><li>Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010</li></ul>

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CM2A 300 H00

<ul><li>Closed loop(compensated)current sensor using the Hall effect</li><li>Galvanic separation between primary and secondary</li><li>Insulating plastic case recognized according to UL 94-V0</li><li>Very good linearity</li><li>High accuracy</li><li>Very low offset drift over temperature</li><li>No insertion losses</li><li>Standards:IEC 60664-1: 2020, IEC 61800-5-1: 2022, IEC 62109-1: 2010</li></ul>

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CR2A 400 H00

<ul><li>Closed loop(compensated)current sensor using the Hall Effect</li><li>Galvanic separation between primary and secondary</li><li>Insulating plastic case recognized according to UL 94-V0</li><li>Very good linearity</li><li>High accuracy</li><li>Very low offset drift over temperature</li><li>No insertion loss</li><li>Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010</li></ul>

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CR2A 500 H00

<ul><li>Closed loop(compensated)current sensor using the Hall Effect</li><li>Galvanic separation between primary and secondary</li><li>Insulating plastic case recognized according to UL 94-V0</li><li>Very good linearity</li><li>High accuracy</li><li>Very low offset drift over temperature</li><li>No insertion loss</li><li>Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010</li></ul>

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CM3A 500 H00

<ul><li>Closed loop (compensated) current sensor using the Hall Effect</li><li>Galvanic separation between primary and secondary</li><li>Insulating plastic case recognized according to UL 94-V0</li><li>Very good linearity</li><li>High accuracy</li><li>Very low offset drift over temperature</li><li>No insertion loss</li><li>Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010</li></ul>

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CM3A 500 H01

<ul><li>Closed loop (compensated) current sensor using the Hall Effect</li><li>Galvanic separation between primary and secondary</li><li>Insulating plastic case recognized according to UL 94-V0</li><li>Very good linearity</li><li>High accuracy</li><li>Very low offset drift over temperature</li><li>No insertion loss</li><li>Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010</li></ul>

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CM4A 1000 H00

<ul><li>Closed loop(compensated)current sensor using the Hall Effect</li><li>Galvanic separation between primary and secondary</li><li>Insulating plastic case recognized according to UL 94-V0</li><li>Very good linearity</li><li>High accuracy</li><li>Very low offset drift over temperature</li><li>No insertion loss</li><li>Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010</li></ul>

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CM4A 1000 H03

<ul><li>Closed loop(compensated)current sensor using the Hall Effect</li><li>Galvanic separation between primary and secondary</li><li>Insulating plastic case recognized according to UL 94-V0</li><li>Very good linearity</li><li>High accuracy</li><li>Very low offset drift over temperature</li><li>No insertion loss</li><li>Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010</li></ul>

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CM4A 1000 H05

<ul><li>Closed loop(compensated)current sensor using the Hall Effect</li><li>Galvanic separation between primary and secondary</li><li>Insulating plastic case recognized according to UL 94-V0</li><li>Very good linearity</li><li>High accuracy</li><li>Very low offset drift over temperature</li><li>No insertion loss</li><li>Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010</li></ul>

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CM5A 2000 H20

<ul><li>Closed loop (compensated) current sensor using the Hall Effect</li><li>Galvanic separation between primary and secondary</li><li>Insulating plastic case recognized according to UL 94-V0</li><li>Very good linearity</li><li>High accuracy</li><li>Very low offset drift over temperature</li><li>No insertion loss</li><li>Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010</li></ul>

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AN5V 5 PB00

<ul><li>Open loop current sensor using the Hall Effect.</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>No insertion loss.</li><li>Small size.</li><li>Standards:</li><li>EN50178: 1997</li><li>IEC 61010-1: 2000</li><li>UL 508: 2010</li></ul>

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AN5V 10 PB00

<ul><li>Open loop current sensor using the Hall Effect.</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>No insertion loss.</li><li>Small size.</li><li>Standards:</li><li>EN50178: 1997</li><li>IEC 61010-1: 2000</li><li>UL 508: 2010</li></ul>

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AN3V 10 PB50

<ul><li>Open loop current sensor using the Hall effect.</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>No insertion losses.</li><li>Supply voltage:+5V</li><li>Small size.</li><li>h=8.7mm</li><li>Standards:</li><li>IEC 60664-1:2020</li><li>IEC 61800-5-1:2022</li><li>IEC 62109-1:2010</li></ul>

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AN5V 15 PB00

<ul><li>Open loop current sensor using the Hall Effect.</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>No insertion loss.</li><li>Small size.</li><li>Standards:</li><li>EN50178: 1997</li><li>IEC 61010-1: 2000</li><li>UL 508: 2010</li></ul>

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AN3V 16 PB50

<ul><li>Open loop current sensor using the Hall effect.</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>No insertion losses.</li><li>Supply voltage:+5V</li><li>Small size.</li><li>h=8.7mm</li><li>Standards:</li><li>IEC 60664-1:2020</li><li>IEC 61800-5-1:2022</li><li>IEC 62109-1:2010</li></ul>

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AN5V 20 PB00

<ul><li>Open loop current sensor using the Hall Effect.</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>No insertion loss.</li><li>Small size.</li><li>Standards:</li><li>EN50178: 1997</li><li>IEC 61010-1: 2000</li><li>UL 508: 2010</li></ul>

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AN3V 20 PB50

<ul><li>Open loop current sensor using the Hall effect.</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>No insertion losses.</li><li>Supply voltage:+5V</li><li>Small size.</li><li>h=8.7mm</li><li>Standards:</li><li>IEC 60664-1:2020</li><li>IEC 61800-5-1:2022</li><li>IEC 62109-1:2010</li></ul>

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AN5V 25 PB00

<ul><li>Open loop current sensor using the Hall Effect.</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>No insertion loss.</li><li>Small size.</li><li>Standards:</li><li>EN50178: 1997</li><li>IEC 61010-1: 2000</li><li>UL 508: 2010</li></ul>

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AS1V 30 H05

<ul><li>Open loop current sensor using the Hall Effect.</li><li>Output voltage is proportional to the supply voltage</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>Supply voltage: +5V</li><li>No insertion loss.</li><li>Small size</li><li>Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010</li></ul>

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AN3V 32 PB50

<ul><li>Open loop current sensor using the Hall effect.</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>No insertion losses.</li><li>Supply voltage:+5V</li><li>Small size.</li><li>h=8.7mm</li><li>Standards:</li><li>IEC 60664-1:2020</li><li>IEC 61800-5-1:2022</li><li>IEC 62109-1:2010</li></ul>

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AN3V 40 PB50

<ul><li>Open loop current sensor using the Hall effect.</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>No insertion losses.</li><li>Supply voltage:+5V</li><li>Small size.</li><li>h=8.7mm</li><li>Standards:</li><li>IEC 60664-1:2020</li><li>IEC 61800-5-1:2022</li><li>IEC 62109-1:2010</li></ul>

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AN5V 50 PB00

<ul><li>Open loop current sensor using the Hall Effect.</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>No insertion loss.</li><li>Small size.</li><li>Standards:</li><li>EN50178: 1997</li><li>IEC 61010-1: 2000</li><li>UL 508: 2010</li></ul>

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AN3V 50 PB30

<ul><li>Open loop current sensor using the Hall effect.</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>No insertion losses.</li><li>Supply voltage:+3.3V</li><li>Small size.</li><li>h=8.7mm</li><li>Standards:</li><li>IEC 60664-1:2020</li><li>IEC 61800-5-1:2022</li><li>IEC 62109-1:2010</li></ul>

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AN3V 50 PB50

<ul><li>Open loop current sensor using the Hall effect.</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>No insertion losses.</li><li>Supply voltage:+5V</li><li>Small size.</li><li>h=8.7mm</li><li>Standards:</li><li>IEC 60664-1:2020</li><li>IEC 61800-5-1:2022</li><li>IEC 62109-1:2010</li></ul>

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AS1V 50 H00

<ul><li>Open loop current sensor using the Hall Effect.</li><li>Output voltage is proportional to the supply voltage</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>Supply voltage: +5V</li><li>No insertion loss.</li><li>Small size</li><li>Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010</li></ul>

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AS1V 50 H01

<ul><li>Open loop current sensor using the Hall Effect.</li><li>Output voltage is proportional to the supply voltage</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>Supply voltage: +5V</li><li>No insertion loss.</li><li>Small size</li><li>Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010</li></ul>

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AN3V 80 PB50

<ul><li>Open loop current sensor using the Hall effect.</li><li>ASIC Technology.</li><li>Maintain output proportional to changes in the power supply(include offset and sensitivity).</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>No insertion losses.</li><li>Small size.</li><li>Standards: IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010</li></ul>

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AN3V 100 PB50

<ul><li>Open loop current sensor using the Hall effect.</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>No insertion losses.</li><li>Supply voltage:+5V</li><li>Small size.</li><li>h=8.7mm</li><li>Standards:</li><li>IEC 60664-1:2020</li><li>IEC 61800-5-1:2022</li><li>IEC 62109-1:2010</li></ul>

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AS1V 100 H00

<ul><li>Open loop current sensor using the Hall Effect.</li><li>Output voltage is proportional to the supply voltage</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>Supply voltage: +5V</li><li>No insertion loss.</li><li>Small size</li><li>Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010</li></ul>

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AS1V 100 H01

<ul><li>Open loop current sensor using the Hall Effect.</li><li>Output voltage is proportional to the supply voltage</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>Supply voltage: +5V</li><li>No insertion loss.</li><li>Small size</li><li>Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010</li></ul>

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AS1V 100 H07

<ul><li>Open loop current sensor using the Hall Effect.</li><li>Output voltage is proportional to the supply voltage</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>Supply voltage: +5V</li><li>No insertion loss.</li><li>Small size</li><li>Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010</li></ul>

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AN3V 120 PB50

<ul><li>Open loop current sensor using the Hall effect.</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>No insertion losses.</li><li>Supply voltage:+5V</li><li>Small size.</li><li>h=8.7mm</li><li>Standards:</li><li>IEC 60664-1:2020</li><li>IEC 61800-5-1:2022</li><li>IEC 62109-1:2010</li></ul>

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AS1V 200 H00

<ul><li>Open loop current sensor using the Hall Effect.</li><li>Output voltage is proportional to the supply voltage</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>Supply voltage: +5V</li><li>No insertion loss.</li><li>Small size</li><li>Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010</li></ul>

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AS1V 200 H01

<ul><li>Open loop current sensor using the Hall Effect.</li><li>Output voltage is proportional to the supply voltage</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>Supply voltage: +5V</li><li>No insertion loss.</li><li>Small size</li><li>Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010</li></ul>

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AS1V 200 H07

<ul><li>Open loop current sensor using the Hall Effect.</li><li>Output voltage is proportional to the supply voltage</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>Supply voltage: +5V</li><li>No insertion loss.</li><li>Small size</li><li>Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010</li></ul>

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AS1V 300 H00

<ul><li>Open loop current sensor using the Hall Effect.</li><li>Output voltage is proportional to the supply voltage</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>Supply voltage: +5V</li><li>No insertion loss.</li><li>Small size</li><li>Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010</li></ul>

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AS1V 300 H01

<ul><li>Open loop current sensor using the Hall Effect.</li><li>Output voltage is proportional to the supply voltage</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>Supply voltage: +5V</li><li>No insertion loss.</li><li>Small size</li><li>Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010</li></ul>

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AS1V 400 H00

<ul><li>Open loop current sensor using the Hall Effect.</li><li>Output voltage is proportional to the supply voltage</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>Supply voltage: +5V</li><li>No insertion loss.</li><li>Small size</li><li>Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010</li></ul>

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AS1V 400 H01

<p>Open loop current sensor using the Hall Effect.</p><ul><li>Output voltage is proportional to the supply voltage</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>Supply voltage: +5V</li><li>No insertion loss.</li><li>Small size</li><li>Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010</li></ul>

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AS1V 500 H00

<ul><li>Open loop current sensor using the Hall Effect.</li><li>Output voltage is proportional to the supply voltage</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>Supply voltage: +5V</li><li>No insertion loss.</li><li>Small size</li><li>Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010</li></ul>

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AS1V 500 H01

<ul><li>Open loop current sensor using the Hall Effect.</li><li>Output voltage is proportional to the supply voltage</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>Supply voltage: +5V</li><li>No insertion loss.</li><li>Small size</li><li>Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010</li></ul>

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AS1V 600 H00

<ul><li>Open loop current sensor using the Hall Effect.</li><li>Output voltage is proportional to the supply voltage</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>Supply voltage: +5V</li><li>No insertion loss.</li><li>Small size</li><li>Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010</li></ul>

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AS1V 600 H01

<ul><li>Open loop current sensor using the Hall Effect.</li><li>Output voltage is proportional to the supply voltage</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>Supply voltage: +5V</li><li>No insertion loss.</li><li>Small size</li><li>Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010</li></ul>

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AS1V 700 H00

<ul><li>Open loop current sensor using the Hall Effect.</li><li>Output voltage is proportional to the supply voltage</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>Supply voltage: +5V</li><li>No insertion loss.</li><li>Small size</li><li>Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010</li></ul>

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AS1V 800 H00

<ul><li>Open loop current sensor using the Hall Effect.</li><li>Output voltage is proportional to the supply voltage</li><li>Galvanic separation between primary and secondary.</li><li>Insulating plastic case recognized according to UL 94-V0.</li><li>Supply voltage: +5V</li><li>No insertion loss.</li><li>Small size</li><li>Standards: EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010</li></ul>

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