Image shown is a representation only.

Exact specifications should be obtained from the product data sheet.

MPR121-Breakout Capacitive Touch Sensor Controller Keyboard development board

Manufacturer
Manufacturer Product Number
MPR121-Breakout
Description

MPR121-Breakout Capacitive Touch Sensor Controller Keyboard development board

Package Condition
Original
Product Description

 

Description:The MPR121 is a capacitive touch sensor controller driven by an I2C interface. The chip can control up to twelve individual electrodes, as well as a simulated thirteenth electrode. The MPR121 also features eight LED driving pins. When these pins are not configured as electrodes, they may be used to drive LEDs.

There a four jumpers on the bottom of the board, all of which are set (closed) by default. An address jumper ties the ADD pin to ground, meaning the default I2C address of the chip will be 0x5A. If you need to change the address of the chip (by shorting ADD to a different pin), make sure you open the jumper first. Jumpers also connect SDA, SCL and the interrupt pin to 10k pull-up resistors. If you don't require the pull-up resistors you can open the jumpers by cutting the trace connecting them

Part MPR121-Breakout
Date Code NEW
More details Please contact us
L/T Please contact us
Transport DHL/UPS/FEDEX

MPR121-Breakout Capacitive Touch Sensor Controller Keyboard development board

 

Company Information

 

MPR121-Breakout Capacitive Touch Sensor Controller Keyboard development board
MPR121-Breakout Capacitive Touch Sensor Controller Keyboard development board
MPR121-Breakout Capacitive Touch Sensor Controller Keyboard development board
MPR121-Breakout Capacitive Touch Sensor Controller Keyboard development board

Write your review

MPR121-Breakout Capacitive Touch Sensor Controller Keyboard development board

MPR121-Breakout Capacitive Touch Sensor Controller Keyboard development board

Write your review

Other Products In The same category:

1000In stock:
Can ship immediately
QUANTITY
All prices are in USD

SEND
RFQ