Chaitan

An Adom molecule LED nameplate. The name is etched out of the soldermask over the ground plane, lit by 14 side-view LEDs firing inward across the board.

Interactive board viewer. The guided walkthrough starts on its own; drag to orbit, and use the toolbar for Inspect, Measure and the x-ray Nets view. Open full screen.

The one idea: the name is the ground plane. A rectangular GND copper pour covers the top layer and the soldermask is opened in the shape of the letters, so bare plated copper shows through. There is deliberately no second ground path, no bottom ground pour, so every milliamp those 14 LEDs draw physically crosses the letters on its way back to the connector. The line you get to say to Chaitan, "your name is part of the electrical path that lights up the LEDs", is a statement about the netlist rather than a slogan.

The board

Board236 x 76 mm, 2 layer, 4 mm corner radius
Pin box224 x 64 mm = 7 x 2 on the 32 mm scaffold grid
Name194.0 x 40 mm, Familjen Grotesk Bold
Mask openings362 letter polygons
GND plate229.6 x 69.6 mm, top layer
LEDs14 x Wurth WL-SMSW 155060GS75300, 515 nm side-view
Current168 mA at 5 V (14 x 12 mA)
Parts / traces / vias38 / 60 / 36
Chaitan board, 3D render Chaitan board, PCB view

Molecule compliance

Why side-view LEDs

A normal chip LED is a top-view emitter: it fires straight up, away from the board, and the copper you are trying to light sees nothing. This board uses a true side-view part. The die sits on its side behind a window in the long face of the package, so the beam leaves parallel to the board about 0.5 mm above the soldermask. Ringed around the edge facing inward, the light rakes across the plate at a grazing angle and washes the exposed-copper letters instead of escaping to the sky.

Worth knowing if you go sourcing: Kingbright's APTR3216 family is reverse-mount, firing down through a hole in the PCB, and Broadcom's HSMx-C265 is bottom-entry. Both come back in a "right angle SMD LED" search and neither does this job.

Power

USB-C VBUS at 5 V through 150 R into a 3.2 V LED gives 12 mA each, 168 mA for the board, well inside the 500 mA a charger gives an unnegotiated sink, so any phone brick works. R_CC1 and R_CC2 are the mandatory Rd pulldowns: without them on both CC lines a USB-C source never enables VBUS and the board stays dark.

The layer plan is inverted from the usual convention on purpose. Top is GND, one rectangular pour, with the name cut out of it; bottom is the +5 V plane. Everything is placed top side only, because the line does single-sided pick and place, so each LED string runs LED, then 150 R, then a via down to the +5 V plane, while the cathode bonds straight into the plate.

Fab notes

Verifying the mask opens

Do not trust the render. Read the gerber. F_Mask.gbr is negative polarity (%TF.FilePolarity,Negative*%), so what is drawn is where mask is removed:

Reproducing it

Built with adom-tsci from parametric tscircuit source. Board size, pin box, LED count and silkscreen are all derived from the name's ink box, so a new name is one command:

scripts/make-nameplate.sh "Chaitan"