Product development

The electronic core of your product, designed to work.

From circuit diagram and PCB layout through prototype, testing and production readiness — with the firmware and housing around it in the same team.

Discuss your projectSee our approach

Does this sound familiar?

PCB design rarely goes wrong on the schematic. It goes wrong on component availability, certification and alignment with software and housing.

Electronics, software and housing drift apart

The board doesn't fit the housing, or the firmware expects something the hardware doesn't provide. Every correction costs another round.

Components are not available

A design on paper is worthless if the chosen parts have months of lead time or are being discontinued.

Certification comes into view too late

CE, EMC or safety requirements that only surface during testing usually mean redesigning the board.

Works in the lab, not in production

A working prototype is not yet a product. Without testability and manufacturability it stalls at the first production run.

What we do

The full electronics track, with manufacturability and component availability as the starting point.

Circuit diagram

Component selection, power, signal paths and how it all works together, translated into a schematic.

PCB layout

Placement, routing, layer build-up and heat dissipation, matched to the space inside the housing.

Firmware

The software on the board itself, developed by the same team that designs the hardware.

Connectivity

Bluetooth, wifi, LoRa or wired, with the accompanying app or dashboard.

Prototypes and testing

First boards, measurement, adjustment and validation under real conditions.

Production readiness

Bill of materials, production files, test procedures and support during assembly.

Our approach

With electronics, every redesign round is expensive and slow. That is why we fix requirements, components and standards before layout begins.

01

Functional and technical requirements

What must the board do, under what conditions, at what power draw, in what dimensions and to which standards? That drives every choice afterwards.

02

Schematic and component selection

We draw the circuit diagram and select components on availability, lifespan and cost — not only on specifications.

03

PCB layout

Placement, routing, layer build-up, heat dissipation and interference sensitivity, matched to the housing and the assembly method.

04

Prototype and firmware

First boards are produced and loaded with firmware, so hardware and software are tested together rather than separately.

05

Testing and certification

Measurements, load testing and preparation for CE, EMC and other requirements, with the adjustments that follow from them.

06

Production and assembly

Production files, bill of materials and test procedures, plus support for the first production runs at the assembler.

Frequently asked questions

What exactly is PCB development?

Designing the electronic core of a product. It starts with the circuit diagram and moves into the board layout: which components are needed, how they work together and how signals travel across the board.

Do you also write the firmware?

Yes. The software on the board is developed by the same team, so hardware and firmware are aligned from the start rather than adapted to each other afterwards.

Can you build on an existing design?

Yes. We can review an existing board, improve it, reduce its cost or adapt it to changed component availability.

How do you handle component availability?

Availability and lifespan weigh into component selection, not only specifications. Where possible we provide alternatives, so one scarce part cannot block the product.

Is certification taken into account?

Requirements around CE, EMC, safety and sector-specific standards are established up front, so the design accounts for them rather than needing revision later.

Do you also handle production?

We supply the production files, bill of materials and test procedures, and support the first production runs at the assembler.

What if the product also needs a housing and an app?

Then that sits in the same project. Mechanical design, electronics, firmware and app are aligned within one team.

How many prototype rounds are usually needed?

That depends on complexity. By fixing requirements, components and standards up front we limit the number of rounds — every respin costs weeks and money.

Thought through. Then built.

Strategy & design

Problem definition
Product strategy
UX/UI design
Concept development
Creativiteit + Engineering

Engineering & delivery

Software development
Electronics and PCB design
Mechanical design
Prototyping and production

Strategy & design

Problem definition
Product strategy
UX/UI design
Concept development

Engineering & delivery

Software development
Electronics and PCB design
Mechanical design
Prototyping and production

Want to discuss a project or challenge?

Tell us about your situation. Together we map out the question, the technical options and the logical next step.

Discuss your project