5 open source boards using the AD8656
Real designs built with the AD8656, from public GitHub projects: a quick way to see how others power, decouple and connect it. Each board comes with its KiCad files, full parts list and a render — and you can simulate its firmware on HardLabs.
STM32
R1 panel
cuspaceflight
50 × 50 mm176 parts2LNo license93Usb audio
skiselev
53.3 × 40.6 mm78 parts2LGPL-3.014STM32
M2fc
cuspaceflight
100 × 70 mm348 parts4LNo license5Strain 1-3
cuspaceflight
40 × 33 mm95 parts2LNo license93Strain 4-6
cuspaceflight
40 × 33 mm95 parts2LNo license93
The AD8656 in open source designs
The gallery holds 5 open source boards using the AD8656 from 3 GitHub repositories; a typical one measures about 50 × 40.6 mm and carries around 95 components.
80% are two-layer designs, the rest use four layers or more, and 20% carry an open source license.
The most starred is R1 panel by cuspaceflight.
Parts used alongside the AD8656
Microcontrollers on boards using the AD8656
What boards using the AD8656 are built for
AD8656: common questions
Where can I find a AD8656 reference design?
Each of the 5 boards on this page is a real design using the AD8656. Open one to see how it is wired up, with the full BOM, a render of the layout and links to its KiCad files.
What parts are used alongside the AD8656?
The AD8226, AD8541, ADXL345 and MS5611-01BA03 appear in the most repositories here.
Which microcontrollers do boards using the AD8656 use?
Most are built on STM32 (2).
How big is a typical board using the AD8656?
The median is 50 × 40.6 mm, and 80% are two-layer designs.
What is the most popular open source board using the AD8656?
By GitHub stars, R1 panel by cuspaceflight, with 93 stars.
Can I simulate one of these boards using the AD8656 before building it?
Yes. HardLabs turns a board's netlist and BOM into a working simulation, so you can boot and test firmware against it with no hardware on your desk.