PCB Design & Layout
Our award-winning layout team implements complex PCB designs from circuit diagram to final Gerber data – always in close collaboration with production and testing.
70–80 % of the subsequent product costs are already determined during development.
Electronics engineering requires making the right decisions early on regarding costs, time to market, manufacturability, and quality. As an experienced electronics development service provider, TQ supports you with more than 300 engineers at ten global locations. This is how we turn your ideas into reliable, cost-efficient systems.
At TQ, electronics engineering is the starting point: We take a holistic approach to systems and bring together expertise from modern requirements and systems engineering, electronics, software, test equipment, and mechanical development in our interdisciplinary teams – for tailored solutions, especially when requirements are complex.
Keeping the big picture in mind: We view your product as an overall system. From requirements engineering and simultaneous engineering to system integration and transfer to series production, this forms the demanding process of system development. Our experienced developers ensure an optimal balance between quality, costs, time to market, and regulatory requirements. This systemic approach makes TQ a strong partner for demanding electronics engineering.

Electronics + mechanics = strong products. That is why mechanics is an integral part of product development at TQ. We develop enclosures, optical and mechatronic systems, as well as complete systems. Our experienced team supports you from 3D design and engineering through simulations to sample and prototype construction. This enables TQ to expand electronics development with key mechanical expertise.

No two products are alike. The same applies to the test equipment used to verify that your product is free from defects, fully functional, and, where applicable, electrically safe. Each piece of test equipment is unique, tailored to your requirements and the function of the device under test. That is why we have in-house test equipment development, covering the planning, design, and construction of our own test equipment for assemblies and complete devices.
Our test equipment development team works closely with electronics and software developers to identify and implement effective test procedures – optimally tailored to your requirements and always in close coordination with you. All test results are fully documented and traceable at all times.

By using modern automation solutions, we ensure high repeatability, efficiency, and scalability of the testing processes – even as quantities increase. In addition, we continuously monitor relevant key performance indicators to detect any deviations at an early stage and ensure optimal product quality.
Along with classic functional testing, our test portfolio also includes flying probe testing, in-circuit testing, burn-in testing, boundary scan testing, and safety testing.
Our certifications in development
As an electronics engineering service provider, we meet the highest quality standards and are certified for demanding, regulated markets.
Our standard: Design for Excellence (DFX)
For us, Design for Excellence means doing everything in the design phase to ensure that your product will later function reliably, can be manufactured efficiently, and does not generate unnecessary costs. To achieve this, we continuously analyze potential risks in order to avoid costly redesigns and reduce sources of error before they become a problem. Our commitment to quality and diligence is our greatest strength and helps ensure that your product is implemented safely, economically, and quickly.
A shining example of development:
The Dräger Polaris surgical light
The Polaris surgical light is considered a flagship project in medical technology. The innovation behind it sounds simple and complex at the same time: a light that casts no shadows. With this vision, Dräger turned to TQ and our experienced development team.
The result: an innovative surgical light that sets new standards and has already brought lasting change to the industry. Its “active shadow management” is created through the interaction of cutting-edge technologies and demonstrates what strong electronics engineering can make possible.
