The person behind the boards

Built by Quindor.

Every Dig-Octa board comes from one engineer who's been designing LED controllers for the best part of a decade: in the open, documented to death, and fused like it's going into his own house. Because it is.

The story

A project, not a product line.

QuinLED started the way good hardware often does. Quindor wanted better LED control for his own home, couldn't buy it, so he built it and published everything. The DIY boards grew into a family of properly engineered controllers (Dig-Uno, Dig-Quad, dig2go, Dig-Next, the An-Penta analog line) that thousands of people now run in homes and pro installs worldwide.

The Dig-Octa is where that engineering goes when installs get serious: the controller and its power split into a modular stack that you size to the job. The values don't change with the amps: open firmware, local control, and a fuse on every port. No cloud accounts. No lock-in. Boring, careful engineering you can forget about.

60k+

subscribers on the Intermit.Tech YouTube channel

13k+

makers in the QuinLED Discord

~10 yr

of LED-controller designs, iterated in the open

20+

boards designed, from dig2go and Dig-Next to this system

What he stands for

The same three rules, every board.

Safe by design

A socketed fuse on every power input and output, hardware-protected power direction in the stack, real continuous ratings tested for heat. Built to run all season and never be the thing that fails.

Yours to own

Open firmware: WLED, ESPixelstick, or your own code. Local control over your own network. No accounts, no cloud, no lock-in. You buy it, you own it, end of story.

Documented properly

49+ official pages for the Dig-Octa alone: specs, power handling, stacking rules, PSU shortlists and complete example configurations with the power math done. Plus a community that's seen your question before.

The Dig-Octa connection

Why a modular system?

Because big installs never match a fixed board. One project needs channels, the next needs amps, the one after that needs 48V. Instead of designing a bigger compromise, Quindor split the controller in two and let you stack the answer: brainboards for pixels, powerboards for power, brass posts carrying it all. It's the central controller his other boards point to when things get serious.