ESP32-C3 RGB Board


But 3.3V should be taken from a 29V feedd
Understood—corrected architecture: 29 V only powers the controller’s 3.3 V rail, while the existing external 5 V feed passes to the LED rope and the SI2310s sink its R/G/B channels. The board will not generate or regulate LED power; the 29 V and 5 V systems must share ground for the open-drain controls and MOSFETs.
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ESP32 RGB Rope Controller
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The architecture is now correctly defined as:
  • 29 V DC → controller power only, regulated down to 3.3 V for the ESP32.
  • Existing external 5 V passes directly through from the input RGB connector to the LED-rope connector.
  • SI2310 MOSFETs sink the rope’s R/G/B channels.
  • External R/G/B inputs remain active-low, open-drain signals.
  • The 29 V supply ground, external 5 V source ground, MOSFET sources, and logic ground must be common.
Already completed before this correction:
  • TMUX4053 source-selection circuit
  • Open-drain input conditioning
  • Three MCC SI2310-TP MOSFET stages
  • Two JST-PH 4-pin, 2.0 mm RGB connectors
  • 30 × 30 mm four-layer board outline
The final 29 V-to-3.3 V regulator redesign and resulting placement were dispatched, but I could not inspect or verify the completed result. The last verified placement was still too congested for a credible routed 30 × 30 mm board.
Execution stopped because your ACUs ran out.
Inspect regulator redesign
Review power architecture
Check placement congestion
Calculate power budget
Check ERC and DRC

ESP32-C3-WROOM-02 Reference Design