Grove - 10A DC Current Sensor (ACS725)
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Grove - 10A DC Current Sensor (ACS725)

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The Grove - 10A DC Current Sensor (ACS725) is a high precision DC current sensor based on ACS725. The Allegro ACS725 current sensor IC is an economical and precise solution DC current sensing in industrial, automotive, commercial, and communications systems.
The Grove - 10A DC Current Sensor (ACS725) can measure the DC current up to 10A and has a base sensitivity of 264mV/A. This sensor do not support AC current, if you want to measure the AC load please check the:
Grove - ¡À5A DC/AC Current Sensor (ACS70331)

Note
Weve Released the Grove Selection Guide and hope to help you find the Grove suit you best.
Danger
The human body is forbidden to touch the module during the test, otherwise there is danger of electric shock.

Features
High-bandwidth 120 kHz analog output for faster response times in control applications
Industry-leading noise performance with greatly improved bandwidth through proprietary amplifier and filter design techniques
1.2 m¦¸ primary conductor resistance for low power loss and high inrush current withstand capability
Differential Hall sensing rejects common-mode fields
Pinout
The Grove - 10A DC Current Sensor (ACS725) is a high precision DC current sensor based on ACS725. The Allegro ACS725 current sensor IC is an economical and precise solution DC current sensing in industrial, automotive, commercial, and communications systems.
The Grove - 10A DC Current Sensor (ACS725) can measure the DC current up to 10A and has a base sensitivity of 264mV/A. This sensor do not support AC current, if you want to measure the AC load please check the:
Grove - ¡À5A DC/AC Current Sensor (ACS70331)

Note
Weve Released the Grove Selection Guide and hope to help you find the Grove suit you best.
Danger
The human body is forbidden to touch the module during the test, otherwise there is danger of electric shock.

Features
High-bandwidth 120 kHz analog output for faster response times in control applications
Industry-leading noise performance with greatly improved bandwidth through proprietary amplifier and filter design techniques
1.2 m¦¸ primary conductor resistance for low power loss and high inrush current withstand capability
Differential Hall sensing rejects common-mode fields
Pinout

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Donec ullamcorper magna enim, vitae fermentum turpis elementum quis. Interdum et malesuada fames ac ante ipsum primis in faucibus.

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