M5Stack Programmable Power Supply Module 13.2
This programmable module is a versatile power supply module that has STEP-DOWN buck technology and supports a wide DC input voltage range of 9-36V. It integrates an STM32 control processor and an AD8418 high-resolution current amplifier. With high-precision closed-loop control, it provides a rated output power of 100W (peak 150W) and provides precise current and voltage outputs, capable of delivering 0.530V/05A with a read-back accuracy of ±30mV/5mA.
Additionally, it has isolation chips CA-IS3020S and B0505S-1WR3, providing electrical isolation for both the power supply and the communication bus. The output interface utilises standard 4MM banana plug sockets with a 19mm spacing between the positive and negative poles. A compatible DC power adapter must be purchased separately. This module is ideal for industrial automation, embedded system development, and DIY projects requiring an adjustable power supply.
Note: The maximum output depends on the output capacity of the input DC power supply.
Features
- DC 9-36V wide voltage input, output 0.5~30V/0~5A
- High precision rated output power 100W (peak 150W)
- Electrical isolation safety performance
- Standard 4mm banana socket, positive and negative electrode spacing 19mm
- Works with Core/Core2/CoreS3 series hosts
Specifications
Resources | Parameters |
Memory Firmware Chip | STM32G030F6P6 |
Power and Communication Bus Isolation Chip | CA-IS3020S and B0505S-1WR3 |
Current Amplifier Chip | AD8418 |
Input Voltage | DC 9-36V |
Output Power | 100W (Peak 150W) |
Output Current Voltage | 0.5~30V/0~5A |
Accuracy | Plus or minus 30mV/5mA |
Standby Current | Avg: DC36V/12mA |
Working Current | Avg: DC36V/32mA |
Banana Head Size (spacing) | 4mm (pitch 19mm) |
I2C Communication Address | 0x35 |
Operating Temperature | 0-40°C |
Product Size | 68.5 x 54 x 19.7mm |
Package Size | 130 x 5 x 24mm |
Product Weight | 43.6g |
Package Weight | 64.5g |
Resources
- Product Wiki
- Schematic
Package Contents
- 1x Programmable Power Supply Module 13.2