Mini Size
Comes with:
>>> Fully Assembled Option Includes:
1 Fully assembled and tested Mini magnetic rotary encoder.
>>> Full Kit Option Includes:
Main Encoder Board (Assembled and Tested).
Capacitive Touch Pad.
(18x) 3x1mm Neodymium magnets.
608 Bearing.
Required screw sets.
12 pin header.
>>> Boards Only Option Includes:
Main Encoder Board (Assembled and Tested).
Capacitive Touch Pad.
Push Button
About
This is a standalone 3d printable high-resolution rotary encoder, the core encoding method is magnetic and contactless, and it's built using neodymium magnets, hall effect sensors, and analog comparators, you can learn more about it in the video.
Default
Mini
Designed to give makers a quick way to integrate high-resolution rotary control into any project.
Pinout
Features
The encoder features a base resolution of 72 or 36 steps, extending up to 72000 or 36000 steps per revolution.
It has a built-in capacitive touchpad capable of detecting 4 input types (tap, double-tap, short press, and long press).
There’s also a ring of 18 individually addressable LEDs on board.
The encoder is based on a contactless encoding method, meaning there is no physical contact between the knob and the electronics, which makes the encoder extremely resistant to long-term damage.
Features a ball bearing which gives the encoder a significantly smoother feel compared to traditional rotary encoders.
Most of the parts are 3d printed and can be customized as required. Download the 3D files [here](https://github.com/ahmsville/Magnetic_rotary_encoding).
Implementing the encoder is also really straightforward using the dedicated Libraries I’ve written for both the rotary encoder and the built-in capacitive touch.
Optional push button
Support Analog and Digital connections
Easy mounting options
2 size options
Supported Platform / Development Boards
All Arduino Boards
Raspberry Pi Pico C/C++ SDK
All Micropython-Supported Boards
Encoder Size Option
Default Size (68 x 26mm), Resolution >> 72 - 72000
Mini Size (43 x 26mm), Resolution >> 36 - 36000