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Advanced electronics

Electrification and digitalisation are creating new demands for electronic components. Modern applications require energy-efficient power electronics to reduce energy losses, robust hardware to withstand extreme environments and flexible systems to integrate into new products. At the same time, the transition to sustainability requires PFAS-free materials and circular solutions.

RISE develops and verifies the next generation of electronics in world-leading laboratories. We manufacture advanced silicon carbide and gallium nitride semiconductors, prototype printed and organic electronics, and test reliability under harsh conditions. We can help you to identify and replace PFAS, develop energy-autonomous sensor systems and optimise the design of electronics for production.

Björn Samel

Avdelningschef
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Expertise in advanced electronics
RISE brings together expertise in WBG semiconductors, printed electronics, materials and fault analysis, and PFAS substitution. Our experts combine semiconductor technology with sustainability requirements to help you develop electronics that can withstand both extreme environments and circular requirements.
Article

Power electronics of the future contribute to sustainable transition

Smarter and more efficient power electronics are an important factor in the electrification of industry and society.

Read more about the power electronics of the future
Technology infrastructure
In our world-leading laboratories and clean rooms, you will develop advanced semiconductors in silicon carbide and gallium nitride, prototype printed electronics and test reliability under harsh conditions. This is where the next generation of electronics is verified before production.

Why RISE

01

Semiconductor development

– Design, manufacture and testing of wide bandgap (WBG) components in cleanroom laboratories for energy-efficient power electronics.
02

Printed electronics

– Prototyping and small-scale production of flexible, thin hybrid systems for innovative products.
03

Material and failure analysis

– Systematic diagnostics and lifetime prediction for robust electronics in harsh environments.
04

PFAS substitution

– Analysis and advice to eliminate harmful substances and enable circular electronics.
05

Energy harvesting

– Developing self-sufficient sensor systems that harvest energy from the environment.