Current Sensors XGZC6201

  • ±0.5% linearity over full temperature range
  • Fast output step response time: 1.8μs
  • 240kHz signal bandwidth
  • 5.0V DC power supply
  • -40°C to 105°C operating temperature
  • Rated current detection range: (bidirectional) — ±10A~±120A
  • Detects AC and DC current signals
  • Power-independent fixed output mode
  • Extremely stable quiescent output voltage
  • Built-in reference voltage output
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  • Low and medium power inverter current detection
  • Motor phase and rail current detection
  • String PV inverter current detection
  • MPPT current detection
  • Charger and converter
  • DC power supply
  • Overcurrent protection
  • Uninterruptible Power Supply (UPS)



The XGZC6201 product family is an open-loop current sensors based on the Hall effect principle that can be used in a wide range of industrial, commercial and communication systems for AC or DC current detection. Each XGZC6201 consists of a high precision, low temperature drift linear Hall IC, a magnetic core, and a built-in low insertion resistance current conductor path. The applied current flowing through this low resistance current conductor path creates a magnetic field, which the Hall IC converts into a voltage signal output proportional to the input current. The use of a magnetic core inside the product effectively suppresses interference from external common-mode magnetic fields and improves accuracy in magnetically noisy environments.

The XGZC6201 current sensors will precisely calibrate the output voltage within the factory according to the different requirements of the current range. The output of the chip has a positive slope (>VOQ) when the applied current flows through the internal current conduction path (from pins 5,6 and 7 to pins 8,9 and 10). The internal resistance of this conduction path is 0.21 mΩ typical, allowing for low power dissipation. The terminals of the conductive path (pins 5 to 10) are electrically isolated from the signal
lines (pins 1 to 4). This allows the XGZC6201 current sensor to be used in high-end current sensing applications without the need for other expensive isolation techniques.



current sensors xgzc6201 dimension


ORDER GUIDE (100kPa=0.1MPa=1bar≈14.5PSI)

current sensors xgzc6201 order guide



current sensors xgzc6201 pressure range example


More information about current sensors XGZC6201, refer to Datasheet or contact CFSensor

XGZC6201 Current Sensor- V1.0.PDF



Using these sensors products may malfunction due to external interference and surges, therefore, please confirm the performance and quality in actual use. Just in case, please make a safety design on the device (fuse, circuit breaker, such as the installation of protection circuits, multiple devices, etc.), so it would not harm life, body, property, etc even a malfunction occurs. To prevent injuries and accidents, please be sure to observe the following items:

  • The driving current and voltage should be used below the rated value.
  • Please follow the terminal connection diagram for wiring. Especially for the reverse connection of the power supply, it will cause an accident due to circuit damage such as heat, smoke, fire, etc.
  • In order to ensure safety, especially for important uses, please be sure to consider double safety circuit configuration.
  • Do not apply pressure above the maximum applied pressure. In addition, please be careful not to mix foreign matter into the pressure medium. Otherwise, the sensor will be discarded, or the media will blew out and cause an accident.
  • Be careful when fixing the product and connecting the pressure inlet. Otherwise, accidents may occur due to sensor scattering and the blowing out of the media.
  • If the sensor come with sharp PIN, please be careful not to hurt your body when using it.


The information in this sheet has been carefully reviewed and is believed to be accurate; however, no responsibility is assumed for inaccuracies. Furthermore, this information does not convey to the purchaser of such devices any license under the patent rights to the manufacturer. CFSensor reserves the right to make changes without further notice to any product herein.

CFSensor makes no warranty, representation or guarantee regarding the suitability of its product for any particular purpose, nor does CFSensor assume any liability arising out of the application or use of any product or circuit and specifically disclaims any and all liability, including without limitation consequential or incidental damages. Typical parameters can and do vary in different applications. All operating parameters must be validated for each customer application by customer’s technical experts. CFSensor does not convey any license under its patent rights nor the rights of others.

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