ACS712 20A Current Sensor Module
The ACS712 20A Range Current Sensor Module is comprised of a precise Hall circuit with a copper conduction path near the surface of the die. When an electrical current runs through the copper path, it creates a magnetic field that is then converted into a corresponding voltage by the Hall IC.
Ensuring and regulating the flow of current is a crucial factor in numerous applications, such as over-current protection circuits, battery chargers, switching mode power supplies, digital watt meters, and programmable current sources.
The ACS712 20A Current Sensor Module utilizes the ACS712 sensor to precisely measure both AC and DC current.
The maximum detectable AC or DC current is 20A, and it can be read through the analog I/O port of Arduino.
Do not introduce too many unnecessary variables.
Please note that the product’s color may vary during shipping and you may receive any one of the available options.
We are providing an additional two modules that contain the ACS712 IC for current measurement. These modules are listed below.
Introducing the ACS712 20A Current Sensor Module.
The ACS712 is a range current sensor module with a rating of 30A.
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When utilizing ACS712, it is important to consider the Hall detection principle and its sensitivity to magnetic fields. Keeping this in mind will prevent any potential accuracy issues with the readings.
Diagram of Connections:
The arduino_ACS712 is the perfect tool for measuring current.
The Arduino ACS712 is a highly useful tool for measuring electrical current.
The characteristics of ACS712 20A Current Sensor Module include:
The analog signal path with minimal noise.
The new FILTER pin is responsible for adjusting device bandwidth.
The output rise time in response to a step input current is -5 µs.
Compact, low-profile SOIC8 packaging.
The minimum isolation voltage from pins 1-4 to pins 5-8 is at least 2.1 kV RMS.
Operating at a single supply voltage of -5.0 V.
The output sensitivity ranges from 66 mV to 185 mV per ampere.
Voltage output corresponding to both alternating and direct currents
Precision-tuned in the factory for optimal accuracy.
Exceptionally consistent output offset voltage.
The magnetic hysteresis is close to zero.
The output ratio of the supply voltage.