3 open source boards using the YIC31616GMSGG GPS

Real designs built with the YIC31616GMSGG GPS, 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.

The YIC31616GMSGG GPS in open source designs

The gallery holds 3 open source boards using the YIC31616GMSGG GPS from 2 GitHub repositories; a typical one measures about 65 × 70 mm and carries around 115 components.

100% are two-layer designs, the rest use four layers or more, and 0% carry an open source license.

The most starred is Kuhglocke GS by Queens-Rocket-Engineering-Team.

Microcontrollers on boards using the YIC31616GMSGG GPS

What boards using the YIC31616GMSGG GPS are built for

YIC31616GMSGG GPS: common questions

Where can I find a YIC31616GMSGG GPS reference design?

Each of the 3 boards on this page is a real design using the YIC31616GMSGG GPS. 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 YIC31616GMSGG GPS?

The ACS70331EOLC, AMS1117-3.3, CP2102N-Axx-xQFN28, ESP32-S3-WROOM-1 and LM66100DCKR appear in the most repositories here.

Which microcontrollers do boards using the YIC31616GMSGG GPS use?

Most are built on ESP32 (3).

How big is a typical board using the YIC31616GMSGG GPS?

The median is 65 × 70 mm, and 100% are two-layer designs.

What is the most popular open source board using the YIC31616GMSGG GPS?

By GitHub stars, Kuhglocke GS by Queens-Rocket-Engineering-Team, with 3 stars.

Can I simulate one of these boards using the YIC31616GMSGG GPS 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.

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