4 open source boards using the W25Q64JV
Real designs built with the W25Q64JV, 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.
RP2040/RP2350
Clock module v2.0
MitchellStride
161.2 × 119.9 mm107 parts4LNo license3STM32
Iot risk logger stm32l4
polesskiy-dev
55 × 45 mm42 parts2LNo license2STM32
ETH1CFGEN1
BehrensG
160 × 100 mm708 parts6LNo license0RP2040/RP2350
Clock
MitchellStride
100 × 50 mm94 parts2LNo license3
The W25Q64JV in open source designs
The gallery holds 4 open source boards using the W25Q64JV from 3 GitHub repositories; a typical one measures about 130 × 75 mm and carries around 101 components.
50% are two-layer designs, the rest use four layers or more, and 0% carry an open source license.
The most starred is Clock module v2.0 by MitchellStride.
Microcontrollers on boards using the W25Q64JV
What boards using the W25Q64JV are built for
W25Q64JV: common questions
Where can I find a W25Q64JV reference design?
Each of the 4 boards on this page is a real design using the W25Q64JV. Open one to see how it is wired up, with the full BOM, a render of the layout and links to its KiCad files.
Which microcontrollers do boards using the W25Q64JV use?
Most are built on RP2040/RP2350 (2) and STM32 (2).
How big is a typical board using the W25Q64JV?
The median is 130 × 75 mm, and 50% are two-layer designs.
What is the most popular open source board using the W25Q64JV?
By GitHub stars, Clock module v2.0 by MitchellStride, with 3 stars.
Can I simulate one of these boards using the W25Q64JV 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.