Open source PCB designs you can simulate
6,828 boards
Every public KiCad project we can find on GitHub, with its processor, full parts list and a render of the board. Any of them can be brought up in simulation: open one and run firmware on it before you order a single PCB.
ESP32
Silkscreen
iandchasse
60 × 111.3 mm171 parts2LCERN-OHL-S-2.0554ESP32
Esp32-c3-iot sensor board
Ans1S
35.4 × 21.6 mm57 parts4LMIT6ESP32
UWB Fly Drone
DynamicWhiteHat
40 × 61 mm75 parts2LNo license4ESP32
Kiki player
alaotach
86 × 109.7 mm42 parts2LNo license2ESP32
Corne Cherry
mornepousse
340.8 × 104.7 mm275 parts4LMIT1ESP32
Reverb
DynamicWhiteHat
82.6 × 74.3 mm102 parts2LNo license1ESP32
18650-Tester
Studented0
100 × 150 mm65 parts2LMIT1ESP32
Pocket lightning detector
Matyas604
99.7 × 35 mm56 parts2LGPL-3.01ESP32
Devotchi
hussamkoman
45 × 50 mm47 parts4LMIT1ESP32
CUSTOM-ESP32-C3-MINI
sasukeop108
25.2 × 50.8 mm42 parts2LMIT1ESP32
Keyboardv1
matia6170
304 × 146 mm217 parts2LNo license0ESP32
Drone ESP32
Asaf66
102.9 × 103.7 mm73 parts2LNo license0ESP32
Pcb cat toy
hari-ghatpande
65 × 66.9 mm43 parts2LNo license0ESP32
Tuyyo-Hackclub
andaniayan-jpg
99.9 × 99.9 mm28 parts2LNo license0ESP32
Corne Cherry
mornepousse
169.3 × 198.4 mm275 parts4LMIT1ESP32
Mni drone
harris8099
102.4 × 102.4 mm72 parts2LNo license0ESP32
Hidden Bone Conduction Headphones
jrydin01
32 × 45 mm14 parts2LCC0-1.00
About these open source PCB designs
Every board here is a published hardware project: a public GitHub repository with KiCad design files and a bill of materials. HardLabs reads those files directly — the board outline for its size, the copper layers, every footprint for the parts list — and draws the render from the layout itself, so what you see is the design as committed rather than a product photo.
Boards are indexed by the microcontroller they are built around, by what they are for, and by every IC and module on them. That makes the gallery a quick way to find a reference design: look up a part number to see how other engineers power, decouple and connect it.
Using an open source board as a reference design
- Find boards built on your chip or with the part you are designing around.
- Compare their size, layer count and bill of materials, and open the KiCad files on GitHub.
- Check the license before reusing any of the design.
- Simulate the firmware on HardLabs to test your changes before you order a PCB.
Open source PCB designs: common questions
What is an open source PCB?
A printed circuit board whose design files — schematic, layout and bill of materials — are published for anyone to study and, depending on the license, to modify and manufacture.
Are these PCB designs free to use?
It depends on each project's license. Open hardware licenses such as CERN-OHL and CC BY-SA, and software licenses such as MIT, allow reuse on their terms; a repository with no license keeps all rights with its author. Every board page shows its license.
What design files do the boards come with?
They are KiCad projects: the .kicad_pcb layout and the schematic (or a netlist from older KiCad versions), plus a bill of materials, usually a CSV. Each board page links to those files in the original GitHub repository.
How do I find boards that use a specific part?
Search for the part number, or open the part's page from the list of parts. It shows every board built with that part and the parts most often used alongside it.
How many boards are there, and how often is the list updated?
6,828 boards from 3,344 repositories today. New projects are found and added every night.
Can I test a board's firmware before ordering the PCB?
Yes. HardLabs builds a simulation of a board from its netlist and BOM, so you can boot and debug firmware against it with no hardware on your desk.