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H Series Open loop Current Sensor

Open loop hall effect current sensor measure DC, AC and complex current wave forms with galvanic isolation. The advantages include low cost, small size, lightweight and low power consumption and are especially advantageous when measuring high currents.

  • Open loop current sensor using Hall effect 
  • Current range:50A-5000A 
  • Small size
  • Galvanic separation between primary and sencondary
  • No insertion loss

H Series Open loop Current Sensor

Product No Primary nominal RMS current(A) Measuring range(A) Supply voltage (V) Secondary output Accuracy(%) Output bandwidth(kHz) Operating Temp.(°C) Copper busbar(mm) PCB Others
Wide Input/Output Range High Accuracy Current Transducer
HR1M 100 H00

  • True rms output 4-20mA
  • Primary hole:Φ35mm
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • Very low offset drift over temperature
  • No insertion loss
  • Standards:IEC 61010-1: 2000,UL 508: 2010

AC/DC measuring range 100A-500A current sensor true rms output  4-20mA and primary hole Φ35mm high accuracy Long life for wide applications

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Industrial Current Sensors True RMS output 4-20mA
HR1M 200 H00

  • True rms output 4-20mA
  • Primary hole:Φ35mm
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • Very low offset drift over temperature
  • No insertion loss
  • Standards:IEC 61010-1: 2000,UL 508: 2010

Hall Effect Sensors utilize the Hall effect principle, where a voltage is induced across a conductor placed in a magnetic field.  Hall effect sensors can measure both AC and DC currents and are known for their high accuracy and fast response times, making them suitable for applications like motor control and power electronics

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Through-hole Current transducer 4-20ma output
HR1M 300 H00

  • True rms output 4-20mA
  • Primary hole:Φ35mm
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • Very low offset drift over temperature
  • No insertion loss
  • Standards:IEC 61010-1: 2000,UL 508: 2010

How to choose a current sensor?
current sensor for Charging Piles

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Good Linearity Hall Current Transducer Sensor for Charging Piles
HR1M 400 H00

  • True rms output 4-20mA
  • Primary hole:Φ35mm
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • Very low offset drift over temperature
  • No insertion loss
  • Standards:
  • IEC 61010-1: 2000
  • UL 508: 2010

 For Charging Piles Hall Effect Current Sensors Primary hole:Φ35mm True rms output is 4-20mA Supply Voltage 24V

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Hall Effect Current Sensors Products
HR1M 500 H00

  • True rms output 4-20mA
  • Primary hole:Φ35mm
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • Very low offset drift over temperature
  • No insertion loss
  • Standards:
  • IEC 61010-1: 2000
  • UL 508: 2010

Hall current sensors measure current based on the Hall effect principle, enabling non-contact current measurement and featuring high precision and excellent electrical isolation characteristics.
Work process
Current input: The measured current passes through the main circuit of the sensor, generating a corresponding magnetic field.
Hall potential generation: Hall elements generate Hall potential under the influence of a magnetic field.
Signal processing: The signal processing circuit amplifies the Hall potential and converts it into an output signal proportional to the measured current.
The final output voltage signal can be directly read and processed by various acquisition devices, such as AD, DSP, PLC, etc

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Industrial manufacturers through-hole current sensor
HR1V 100 H01

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion loss
  • Small size
  • Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010

Current sensors rely on open-loop Hall effect technology. The sensors are designed and manufactured for use in a variety of industrial applications.

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Application of Hall Current Sensor in Battery Monitoring System
HR1V 200 H01

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion loss
  • Small size
  • Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010

Current transducers are devices that convert electrical current into a measurable signal, commonly used in various applications for monitoring and control.

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Hall effect current sensor working principle
HR1V 300 H01

  • 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

Directly measures the magnetic field with the Hall sensor and amplifies the voltage
Offering higher accuracy and dynamic range

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Original Professional High Quality Hall Effect Current Sensors 400A AC-DC
HR1V 400 H01

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion loss
  • Small size
  • Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010

New and Original Customizable 50A 100A 200A 300A 400A 500A Hall Open Loop Current Sensor 400A  Ambient Operating Temperature -40℃~85℃

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High Accuracy Current Sensing Techniques
HR1V 50 H01

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion loss
  • Small size
  • Standards:EN50178: 1997, IEC 61010-1: 2000, UL 508: 2010

DC Current Transducer Hall Effect adopts the hall effect to measure the AC and DC current of the power grid in real time.  Using precision constant current technology and linear temperature compensation technology, DC Current Transducer Hall Effect is converted to standard current output, and the characteristics of DC current general-purpose, strong overload capacity and high isolation.

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Hall Current Sensor (500A)
HR1V 500 H01

  • 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

What is Hall Effect Sensor
Hall current sensor is a current measurement device based on the Hall effect principle, featuring high precision and low drift. They indirectly measure current by measuring Hall potential and are suitable for various applications, such as motor control and power management. Hall current sensors can provide high working voltages and are suitable for various environmental conditions, ensuring precise measurements even under changes in temperature and time

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HS1V 100 H00
HS1V 100 H00

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS1V 100 H02
HS1V 100 H02

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS1V 100 H03
HS1V 100 H03

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS1V 100 H04
HS1V 100 H04

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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Hall current sensor transducer 100AMP
HS1V 100 H05

  • Open loop sensor using the Hall Effect
  • Output voltage is proportional to supply voltage
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion loss
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

Current sensors are essential components in various electrical and electronic systems, detecting and measuring electric current. Sensors play a crucial role in monitoring, control, and protection of electrical equipment

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HS1V 100 H06
HS1V 100 H06

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS1V 100 H08
HS1V 100 H08

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS1V 100 H09
HS1V 100 H09

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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Open loop wide measuring range 50A-600A  current sensor using the Hall effect
HS1V 200 H00

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

Factory Sale  Open loop Capacitive Sensor for the electronic measurement of current supply voltage ± 12V ± 15V and 50kHz Molex 5045-04A Connection 

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HS1V 200 H02
HS1V 200 H02

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS1V 200 H03
HS1V 200 H03

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS1V 200 H04
HS1V 200 H04

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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Hall Current Transducer Ac Dc 50A 100A 200A 300A 400A 500A 600A
HS1V 200 H05

  • Open loop sensor using the Hall Effect
  • Output voltage is proportional to supply voltage
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion loss
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010


Square perforation, mainly measure copper conductor current.
Easy mounting
Low power consumption
One design for a wide range of current ratings
High immunity to external interference

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HS1V 200 H06
HS1V 200 H06

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS1V 200 H08
HS1V 200 H08

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS1V 200 H09
HS1V 200 H09

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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Hall effect open loop current sensor circuit diagram in AC variable speed
HS1V 300 H00

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

Battery management: Supply voltage ±12V ±15V  Primary hole 20.4 mm×10.4mm ,  measures electrical current (AC or DC) by detecting the magnetic field it generates, using the Hall effect principle

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HS1V 300 H02
HS1V 300 H02

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS1V 300 H03
HS1V 300 H03

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS1V 300 H04
HS1V 300 H04

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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Hall effect current sensor AC/DC 50A-600A datasheet
HS1V 300 H05

  • Open loop sensor using the Hall Effect
  • Output voltage is proportional to supply voltage
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion loss
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

Construction and working of hall effect current sensor ,providing non-contact, isolated measurement with a voltage output proportional to the current, common in EVs, inverters, and industrial controls for safety and accuracy

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HS1V 300 H06
HS1V 300 H06

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS1V 300 H08
HS1V 300 H08

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

more...
HS1V 300 H09
HS1V 300 H09

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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Factory Direct Sale 400A Current Sensor
HS1V 400 H00

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

Direct Factory Hall Effect Current Sensor Open Loop Series for Current Detection for Power Supplies for Welding Applications -40℃~105℃ Supply volyage ± 12V ± 15V

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HS1V 400 H02
HS1V 400 H02

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS1V 400 H03
HS1V 400 H03

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS1V 400 H04
HS1V 400 H04

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

more...
HS1V 400 H05
HS1V 400 H05

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

more...
HS1V 400 H06
HS1V 400 H06

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

more...
HS1V 400 H08
HS1V 400 H08

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

more...
HS1V 400 H09
HS1V 400 H09

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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DC 4V Open Loop Hall Effect Current Transducer with Thru-Hole 20.4mm×10.4mm
HS1V 50 H00

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

Industrial  Current Transducer products with high accuracy, linearity & stability, and low temperature drift and zero drift features
Providing services to our customers with the top performance and effective cost.

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HS1V 50 H02
HS1V 50 H02

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

more...
HS1V 50 H03
HS1V 50 H03

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

more...
HS1V 50 H04
HS1V 50 H04

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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China High-precision Current Sensing Transformers
HS1V 50 H05

  • Open loop sensor using the Hall Effect
  • Output voltage is proportional to supply voltage
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion loss
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010


Ipn 50A, 100A, 200A, 300A, 400A, 500A, 600A
Measure range about 4*ipn
Working voltage(supply voltage of the sensor): DC ±12V or ±15V
Output: ±4V 
Linearity: class 0.5 (±0.5%)
Accuracy: class1 (±1%)
Square perforation, mainly measure copper conductor current.
Advantage:
Non-contact measuring way, excellent accuracy, low power consumption, good current overload capability, easy use, high reliability and long term usage with your system.
We can customize different sensor according to the users requirements.

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HS1V 50 H06
HS1V 50 H06

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

more...
HS1V 50 H08
HS1V 50 H08

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

more...
HS1V 50 H09
HS1V 50 H09

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

more...
HS1V 500 H00
HS1V 500 H00

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

more...
HS1V 500 H02
HS1V 500 H02

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

more...
HS1V 500 H03
HS1V 500 H03

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

more...
HS1V 500 H04
HS1V 500 H04

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

more...
HS1V 500 H05
HS1V 500 H05

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

more...
HS1V 500 H06
HS1V 500 H06

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

more...
HS1V 500 H08
HS1V 500 H08

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

more...
HS1V 500 H09
HS1V 500 H09

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

more...
50A-600A Hall Effect Current Sensor Block Diagram
HS1V 600 H00

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:
  • IEC 60664-1:2020
  • IEC 61800-5-1:2022
  • IEC 62109-1:2010

Current sensor used detects and measures the flow of electric current in a conductor and converts it into a proportional, measurable signal (voltage, current, or digital output) for monitoring, control, or protection purposes. 
Current sensors are used across various sectors to ensure safety, efficiency, and proper operation of electrical systems

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HS1V 600 H02
HS1V 600 H02

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

more...
HS1V 600 H03
HS1V 600 H03

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

more...
HS1V 600 H04
HS1V 600 H04

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

more...
HS1V 600 H05
HS1V 600 H05

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS1V 600 H06
HS1V 600 H06

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS1V 600 H08
HS1V 600 H08

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS1V 600 H09
HS1V 600 H09

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS2V 1000 H01
HS2V 1000 H01

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS2V 1000 H02
HS2V 1000 H02

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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High hall effect current transducer
HS2V 1000 H05

  • Open loop sensor using the Hall Effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL94-V0
  • No insertion loss
  • Small size
  • Standards:
  • IEC 60664-1:2020
  • IEC 61800-5-1:2022
  • IEC 62109-1:2010

A current sensor is a device that detects electric current in a wire and generates a signal proportional to that current. The generated signal could be analog voltage or current or a digital output.

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HS2V 1200 H00
HS2V 1200 H00

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS2V 1200 H01
HS2V 1200 H01

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS2V 1200 H02
HS2V 1200 H02

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS2V 1500 H01
HS2V 1500 H01

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS2V 1500 H02
HS2V 1500 H02

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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Current Sensing Circuit Test DC Current Sensor Transformer
HS2V 1500 H05

  • Open loop sensor using the Hall Effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL94-V0
  • No insertion loss
  • Small size
  • Standards:
  • IEC 60664-1:2020
  • IEC 61800-5-1:2022
  • IEC 62109-1:2010

The Hall current sensor is a current measurement device based on the Hall effect principle. It indirectly measures the current by applying a magnetic field in the Hall element and measuring the Hall potential. Hall current sensors feature high precision and low drift, making them suitable for a wide range of applications, such as motor control and telecommunication rectifiers. They can measure the current of voltage rails up to 1,100V and ensure the safety of other system electronic components through enhanced isolation

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HS2V 200 H01
HS2V 200 H01

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS2V 200 H02
HS2V 200 H02

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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Current Sensors for industrial applications
HS2V 200 H05

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

Easy mounting
Low power consumption
One design for a wide range of current ratings
High immunity to external interference
Tailored for various industrial scenarios, enhancing system integration and measurement reliability.

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HS2V 400 H00
HS2V 400 H00

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS2V 400 H01
HS2V 400 H01

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS2V 400 H02
HS2V 400 H02

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS2V 500 H01
HS2V 500 H01

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS2V 500 H02
HS2V 500 H02

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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High Accuracy Low Voltage Wide Measuring Range 200A-1500A Current Sensor
HS2V 500 H05

  • Open loop sensor using the Hall Effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL94-V0
  • No insertion loss
  • Small size
  • Standards:
  • IEC 60664-1:2020
  • IEC 61800-5-1:2022
  • IEC 62109-1:2010

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HS2V 600 H01
HS2V 600 H01

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

more...
HS2V 600 H02
HS2V 600 H02

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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Current Transducer Supplier Low Voltage Current Sensor
HS2V 600 H05

  • Open loop sensor using the Hall Effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL94-V0
  • No insertion loss
  • Small size
  • Standards:
  • IEC 60664-1:2020
  • IEC 61800-5-1:2022
  • IEC 62109-1:2010

Current sensor offers galvanic isolation, measures a wide frequency rang 200A-1500A, available in open-loop (cost-effective) and open-loop (high accuracy) designs

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HS2V 800 H00
HS2V 800 H00

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS2V 800 H01
HS2V 800 H01

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS2V 800 H02
HS2V 800 H02

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS3V 1000 H00
HS3V 1000 H00

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

more...
HS3V 1000 H01
HS3V 1000 H01

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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Open loop hall effect current sensor 1500A
HS3V 1500 H00

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:
  • IEC 60664-1:2020
  • IEC 61800-5-1:2022
  • IEC 62109-1:2010

High Voltage 500-3000A Current measurement Sensor

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HS3V 1500 H01
HS3V 1500 H01

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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Open Loop Mode Hall Effect Current Sensor - Analog Output and Primary hole: 64*21mm
HS3V 2000 H00

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:
  • IEC 60664-1:2020
  • IEC 61800-5-1:2022
  • IEC 62109-1:2010

The current sensor series can perform electronic measurement of direct current, alternating current or pulse current, while ensuring electrical isolation between the primary and secondary circuits.
The instantaneous voltage output range of these sensors is +/-4 V, and they are powered by a +/-15 V bipolar power supply. The DC bandwidth is 25 KHz.
Current sensor is designed based on the Hall effect open-loop technology and is specifically tailored for industrial applications.

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HS3V 2000 H01
HS3V 2000 H01

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS3V 2500 H00
HS3V 2500 H00

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS3V 2500 H01
HS3V 2500 H01

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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Current transducer hall effect 3000AMP to 4V
HS3V 3000 H00

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:
  • IEC 60664-1:2020
  • IEC 61800-5-1:2022
  • IEC 62109-1:2010

Current sensor Measurement of 500A 600A 800A 1000A 1500A 2000A 2500A 3000A 15V power supply 4V

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HS3V 3000 H01
HS3V 3000 H01

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS3V 500 H00
HS3V 500 H00

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

more...
HS3V 500 H01
HS3V 500 H01

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

more...
HS3V 600 H00
HS3V 600 H00

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

more...
HS3V 600 H01
HS3V 600 H01

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

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HS3V 800 H00 open loop hall current sensor
HS3V 800 H00

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:
  • IEC 60664-1:2020
  • IEC 61800-5-1:2022
  • IEC 62109-1:2010

How Hall Sensors Work
A current sensor is a device that detects electric current in a conductor and generates a signal proportional to that current, enabling monitoring and control in various applications.

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HS3V 800 H01
HS3V 800 H01

  • Open loop current sensor using the Hall effect
  • Galvanic separation between primary and secondary
  • Insulating plastic case recognized according to UL 94-V0
  • No insertion losses
  • Small size
  • Standards:IEC 60664-1:2020, IEC 61800-5-1:2022, IEC 62109-1:2010

more...