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Transient Peak Sensing Hall Effect Current Transformer
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Transient Peak Sensing Hall Effect Current Transformer

The open-loop Hall current sensor, with its advantages of high precision, wide range, fast response, miniaturization, and high reliability, is widely used in various fields such as power, industrial control, energy, automotive, and home appliances. For instance, in electric vehicles, the open-loop Hall current sensor can be used to measure the battery current, assisting drivers in understanding the charging status and power consumption of the battery.
Availability:
  • 50000

  • T/T, Western Union, Paypal

  • Shanghai, China


PRODUCT OVERVIEW

The sensor works on the principle of direct measurement Hall detection. The magnetic flux generated by the primary current is gathered in the magnetic circuit, and the Hall voltage signal is detected by the Hall device. After amplification by the amplifier, the voltage signal accurately reflects the primary current.

Product Features

Measures AC, DC and pulsed signals

Strong resistance to external interference, high common mode rejection ratio

Low temperature drift, low power consumption, wide frequency band

K/D structure, easy installation

Scope of Application

AC frequency conversion speed regulation

Servo motor traction

Uninterruptible power supply(UPS)

Welding machine, battery power supply

Technical Parameter

Specification 50A/4V 200A/4V 500A/4V Unit
IPN Primary Rated Input Current 50 200 500 A
IP Primary Current Measurement Range 0~100 0~400 0~750 A
VSN Secondary rated output voltage 4 V
VC The Power Supply Voltage ±12~15(±5%) V
IC Current Consumption <20 mA
Vd Insulation Voltage Between primary and secondary circuits:5kV/50Hz/1min
εL Linearity <1 %FS
X Precision TA=25℃:≤±1 %
V0 Offset Voltage TA=25℃:≤±20 mV
VOM Magnetic Offset Voltage IP=0 after 3*IPN:≤±20 mV
VOT Offset voltage temperature drift IP=0TA=-40~+80℃:≤±1 mV/℃
Tr Response time ≤20 μS
f Bandwidth(-3dB) DC~20 kHz
TA Working Temperature -40~+80
TS Storage Temperature -45~+85
RL Load Resistance TA=25℃:≥10


Shape and Installation Dimensions

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Circuit link diagram

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Note:

IPN:Primary current input direction
Red :Positive 12V/15V power supply
Black :Negative 12/15V power supply
Green :Secondary signal output
Yellow :Power ground
OFS:Zero adjustment
GIN:Amplitude adjustment

Installation Precautions

The sensor should be wired correctly, otherwise it may damage the internal components of the sensor

Dynamic performance (DI/DT and response time) is best when the input current row is fully filled with the primary perforation







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