A module for measuring voltage and current and can be interfaced to a microcontroller or Arduino with ease.
Interfacing with Microcontroller:
There are five pins of activity on this device sensor. To interface the sensor with any microcontroller, you need to connect RS+ to the positive pole of your supply source while RS- to the high side of your load, connect ground to the ground of the system. Now, connect the remaining OUT (an analog output) to your microcontroller.
Features:
- Monitors Both Charge and Discharge
- Complete High-Side Current Sensing
- Precision Internal Sense Resistor
- Monitors Both Charge and Discharge
- 3A Sense Capability with Internal Sense Resistor (MAX471)
- Higher Current-Sense Capability with External Sense Resistor (MAX472)
- 8-Pin DIP/SO Packages
- Vast range of applications
- Energy Management
Specifications:
- Current sensor max: +/- 3A
- 100µA Max Supply Current
- 18µA Max Shutdown Mode
- Current sensor voltage: 3 to 36V
- Sensor output: 1V / Amp
- Dimensions: 20mm x 19.5mm
Pinouts of MAX471:
- RS+: Alternative load positive supply (3 to 36V)
- GND: Connect to loads 0V/GND supply
- OUT: Current sensor output (1V / Amp, 3V max)
- SIGN: Current flow direction. An open-collector
- GND: Alternative GND (Connect to loads 0V/GND supply)
- RS-: Alternative load/charger connection.
Applications of MAX471 Sensor
- Smart Battery Packs: A smart battery pack provides information that can manage the charging of the device. In the battery packs, the current sensor can measure current flow into and out of the battery.
- Energy Management Systems: Connection current sensors with energy monitoring software to monitor each machine’s energy use may help to give accurate, real-time energy consumption data and present usage. From which, it could make informed decisions on where energy can be stored.
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