| Product name: | CS2500KF2 Series Hall Removable Current Sensor | ||||||
| specification: | ![]() |
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| Category: | low-voltage electrical apparatus -- current sensor | ||||||
| Price: | factory price | ||||||
| Brand: | Shanghai | ||||||
| Place of Origin: | China | ||||||
| Available Quantity: | batch | ||||||
| delivery cycle: | Spot goods (or inquire by telephone) | ||||||
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|
model |
CS500KF2 |
CS1000KF2 |
CS1500KF2 |
CS2000KF2 |
CS2500KF2 |
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|
IPN |
Primary rated input current |
five hundred |
one thousand |
one thousand and five hundred |
two thousand |
two thousand and five hundred |
A |
|
IP |
Measurement range of primary current |
0~±1000 |
0~±2000 |
0~±3000 |
0~±3000 |
0~±3000 |
A |
|
VOUT |
Rated output voltage on the secondary side |
4±1% |
V | ||||
|
VC |
power supply voltage |
±12~±15(±5%) |
V | ||||
|
IC |
Current consumption |
VC=±15V <25 |
mA | ||||
|
Vd |
insulation voltage |
6KV effective value/50Hz/1 minute between the primary and secondary circuits |
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|
εL |
linearity |
<1 |
%FS | ||||
|
V0 |
Zero offset voltage |
TA =25℃ <±25 |
mV | ||||
|
VOM |
Magnetic misalignment voltage |
IPN→0 <±30 |
mV | ||||
|
VOT |
Unbalanced voltage temperature drift |
IP=0 TA =-25~+85℃ <±1 |
mV/℃ | ||||
|
Tr |
response time |
<7 |
μs | ||||
|
f |
Band width (-3dB) |
DC~20 |
kHz | ||||
|
TA |
Working environment temperature |
-25~+85 |
℃ | ||||
|
TS |
Storage environment temperature |
-40~+100 |
℃ | ||||
|
RL |
load resistor |
≥10K |
Ω | ||||
|
standard |
Q/3201CHGL02-2007 |
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CS2500KF2 series Hall detachable current sensor external dimensions (mm)

Pin Description: 1:+15V 2: -15V 3: Vout 4:0V (Power Ground) OFS: Zero Point Adjustment GIN: Amplitude Adjustment
Lead output wiring: Red:+15V Blue: -15V Yellow: Vout Black: 0V (power ground)
Instructions for Use
1. Incorrect wiring may cause damage to the sensor. After the sensor is powered on, when the measured current passes through the direction of the sensor arrow, the in-phase voltage value can be measured at the output terminal.
2. The output amplitude of the sensor can be adjusted appropriately according to user needs.
3. Sensors with different rated input currents and output voltages can be customized according to user needs.