Our scope of work.
A modular engagement: we can cover all or part of these areas while staying aligned with the rest of your project.
Electronic architecture
Block diagram, power budget and complete power supply chain.
Component sizing
Motor, driver, power supply and sensors sized for real-world use.
Closed-loop control
Feedback control, PID regulation and management algorithms for stable, accurate behavior.
Board design (PCB)
Schematic capture, optimized routing, EMC compliance and preparation of the manufacturing files.
Firmware & embedded communication
Code development (e.g. C / MicroPython), protocol integration (I2C, SPI, CAN, UART…) and data exchange management.
Making your systems reliable, connected and autonomous
“I have a mechanical system or a test bench, but I need to automate it, motorize it or add sensors.”
We design the complete actuation and acquisition chain (motors, drivers, sensors) to make your system autonomous, accurate and measurable.
“My prototype runs on development boards (Arduino, Raspberry Pi) and messy wiring, which is not reliable for real use.”
We route a custom circuit board (PCB) that gathers all your functions cleanly and compactly — robust, and ready for a small or medium production run.
“My electronic product lacks stability, runs too hot or shows intermittent faults.”
We review your current architecture, resize the critical components and rework the firmware to guarantee reliable, safe operation.
“I need to interface my equipment with other machines, or to send data upstream (USB, CAN, RS485, industrial buses).”
We integrate the right communication buses and develop the firmware layer needed for smooth, lossless data exchange.
Hardware, software and mechanics working as one
Mechanical and electronic integration
No more boards that don't fit their enclosure, or connectors in the wrong place. By designing the PCB and the mechanical architecture in parallel, we guarantee a perfect fit, optimized cooling and the smallest possible footprint on the first attempt.
From component to code
Developing the hardware (PCB) and the software (firmware) under one roof removes compatibility deadlocks. The code is written for the board we drew, which means responsive closed-loop control and power consumption kept in check.
A system built to survive real-world conditions
We do not design laboratory electronics. Thanks to our overall view, your boards and components are sized to withstand the actual conditions your product will face.
Explore our other areas of expertise.
Got a project in mind?
Let's talkTell us what you need — we will get back to you within 72 business hours with an initial review.
Start a project ↗
Polytechnia