System architecture
Requirements, block diagrams, interfaces, power budgets, component strategy, and technical risk reduction.
Electrical engineering
We turn product requirements into electrical architecture, schematics, PCB layouts, prototypes, and verified designs—working closely with mechanical and firmware teams from the start.
Core capabilities
Power, interfaces, layout, firmware, mechanics, test, and sourcing are connected. We treat them that way.
Requirements, block diagrams, interfaces, power budgets, component strategy, and technical risk reduction.
Circuit design, stackups, component selection, layout, design reviews, and fabrication-ready outputs.
Structured board bring-up, debug, electrical characterization, design verification, and test fixture planning.
RTL design, interface logic, timing analysis, simulation, and hardware integration for specialized requirements.
How we work
The process creates concrete review points from architecture through verified hardware.
Align product requirements, interfaces, environmental constraints, sourcing, and verification needs.
Develop architecture, schematics, layout, analyses, and cross-discipline reviews.
Power hardware methodically, validate subsystems, debug issues, and update the design record.
Test against requirements, close findings, and prepare controlled release and manufacturing handoff.
Designed for the full system
A robust board is more than a correct schematic. Test access, component lifecycle, thermal limits, firmware interfaces, and assembly constraints belong in the design conversation.
Verification matrix
What you receive
Deliverables are versioned and reviewable, with the reasoning and test context behind important decisions.
Technology in context
We match design, silicon, and lab tools to the product rather than forcing the product into a predefined stack.
Representative technologies we work with, selected according to project fit.
Altium
AMD
Intel
NXP
From architecture to evidence