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AHLC Series DC Leakage Hall Effect Sensor
Hall Effect Sensor
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AHLC Series DC Leakage Hall Effect Sensor

  • Input DC 0~(10mA~2A)
  • Output ±5V
  • Power supply DC±15V
  • Internal Dimension Φ 20 / 40 / 60mm

OVERVIEW

The Hall current sensor is mainly suitable for the isolation and conversion of complex signals such as AC, DC, and pulse.
It is suitable for current signal acquisition and feedback control of current monitoring and battery applications, inverter power supply and solar power management systems, DC panels and DC motor drives, electroplating, welding applications, inverters, UPS servo control and other systems.

MAIN PARAMETERS

 Parameters

Index

AHLC-LTA

AHLC-EA

AHLC-EB

Rated Input Current(DC)

DC 0~(10mA~2A)

Rated Output Voltage

±5V

Accuracy Class

1.0

Power Voltage

DC±15V(±20%)

Zero Offset Voltage

±20mV

Offset Voltage Drift

≤±1.0mV/℃

Linearity

≤0.3%FS

Response Time

≤300ms

Isolation Voltage

2.5kV/50Hz/1min

Operating Temperature

-40℃~85℃

Storage Temperature

-40℃~85℃

Consumption

≤0.5W

DIMENSION

dimension-1

APPLICATION SCENARIOS

● System control and detection of electrical equipment in electric power
● Petroleum, coal mine, chemical industry
● Railway, communication, building automation industries
● Power supplies for welding application

图片1

WIRING DIAGRAM

wiring-1

+15V—— power supply+15V 
-15V ——power supply-15V (Note that power positive and negative poles cannot be inversely connected.) 
M —— signal output end positive pole 
G —— power ground and signal output end negative pole 
Note: The specific wiring is subject to the terminal no. of object shell. 

INSTALLATION INSTRUCTION

● When the Hall current sensor is working normally, the auxiliary power supply cannot be more than ±20% of calibration value
● The Hall Current sensor is strictly prohibited to be fallen from high place (≥1m) during installation and use
● Zero and full scale regulator potentiometer can not be adjusted
● Auxiliary power supply is required to be deployed voluntarily
● Power positive and negative poles cannot be inversely connected

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