Define
Clarify the device, interfaces, environment, constraints, quantities, and evidence required for success.
MPSElectroLabElectronics / Board design MPS ElectroLab
Circuit architecture, PCB layout, firmware, and physical fit developed as one connected system.
00 / Connected by design
Every component choice affects supply, routing, firmware, mechanics, test, and the way a product can be maintained. We keep those dependencies visible from the first block diagram through bench bring-up.
01 / Process
Clarify the device, interfaces, environment, constraints, quantities, and evidence required for success.
Develop the circuit and physical layout together, with sourcing, signal integrity, power, and serviceability in view.
Fit the electronics to the mechanical system and build firmware around the real peripherals and failure modes.
Bring up the board at the bench, measure its behavior, resolve defects, and prepare a clean manufacturing handoff.
02 / Board views

Trace geometry and physical layout reviewed as part of the complete electrical system.
03 / Deliverables
Source, manufacturing, mechanical, and bring-up information remain connected to the design decisions behind them.
Schematics, source files, design notes, and a sourcing-aware bill of materials.
Gerbers, drill files, fabrication details, and assembly outputs such as pick-and-place data.
Board outlines, placement drawings, and 3D models for fit, access, and enclosure review.
Firmware, test observations, revision notes, and practical documentation for the next build.
04 / Representative proof point
A representative MPS workflow carries the schematic, layout, firmware assumptions, mechanical fit, bring-up observations, and revision notes together so the next build can be reproduced and reviewed. Project-specific results depend on the agreed scope and validation plan.
05 / Start with the system
Share what the board needs to do, where it needs to work, and what cannot be left to chance.
Start a project conversation