ESP32 PCB Reverse-Engineer & Redesign
Budget: ₹100 – ₹400 INR
I have a working ESP32-based board in hand yet no digital files to reproduce it. I need the entire design captured so I can build, tweak and scale it for my own project.
Scope
• Trace the existing PCB and generate a complete schematic from scratch.
• Re-layout the board so it matches the original footprint and connector locations as closely as practical.
• Preserve three essentials: the same ESP32 microcontroller, the on-board sensors/peripherals, and the original power-supply architecture.
What I will supply
High-resolution photos, measurements, and if required, the physical board shipped to you for precise probing.
Deliverables
1. Editable schematic file (KiCad, Altium, or Eagle—use whichever you prefer but let me know up front).
2. PCB layout files plus Gerbers/NC drill ready for fabrication.
3. Bill of materials with part numbers and sourcing suggestions.
4. Brief design notes that explain any assumptions or improvements you made.
Acceptance
I will verify that every net in your schematic matches continuity on the original board and that the Gerbers overlay correctly with my reference images before releasing final approval.
If you have solid reverse-engineering experience with ESP32 hardware, firmware flashing headers, antenna tuning and mixed-signal layouts, this should be straightforward. Let me know the toolchain you use and any questions you have once you see the board photos.
Scope
• Trace the existing PCB and generate a complete schematic from scratch.
• Re-layout the board so it matches the original footprint and connector locations as closely as practical.
• Preserve three essentials: the same ESP32 microcontroller, the on-board sensors/peripherals, and the original power-supply architecture.
What I will supply
High-resolution photos, measurements, and if required, the physical board shipped to you for precise probing.
Deliverables
1. Editable schematic file (KiCad, Altium, or Eagle—use whichever you prefer but let me know up front).
2. PCB layout files plus Gerbers/NC drill ready for fabrication.
3. Bill of materials with part numbers and sourcing suggestions.
4. Brief design notes that explain any assumptions or improvements you made.
Acceptance
I will verify that every net in your schematic matches continuity on the original board and that the Gerbers overlay correctly with my reference images before releasing final approval.
If you have solid reverse-engineering experience with ESP32 hardware, firmware flashing headers, antenna tuning and mixed-signal layouts, this should be straightforward. Let me know the toolchain you use and any questions you have once you see the board photos.