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Making Women in Research More Visible
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FBH Scientists Featured in the Exhibition Book "X² – The Female Side of STEM" The bilingual exhibition book presents portraits of female scientists, engineers, and entrepreneurs from the Berlin…
Out now: FBH's annual report 2025/26
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Explore the projects, developments, and milestones that shaped the past year at FBH. We hope you enjoy reading and discovering them.
Laser facet passivation enables reliable high-power red ridge waveguide laser diodes
/en/research/research-news/laser-facet-passivation-enables-reliable-high-power-red-ridge-waveguide-laser-diodes
We demonstrate 635 nm ridge waveguide lasers delivering up to 200 mW with high reliability through optimized facet passivation. This paves the way for high-radiance red laser diodes in…
FBH joins IFE-STARFIRE Hub to advance inertial fusion energy
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The Ferdinand-Braun-Institut (FBH) is proud to announce its participation in the newly expanded Diode Technology Working Group of the IFE-STARFIRE Hub. Funded by the U.S. Department of Energy and led…
IEEE ESTC
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We will be presenting latest research results at the poster session at 11th IEEE Electronics System-Integration Technology Conference (IEEE ESTC 2026).
MBN Science Forum 2026
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FBH will present latest research results at MBN Science Forum 2026.
ICMOVPE XXII 2026
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We are represented at the 22nd International Conference on Metal Organic Vapor Phase Epitaxy with several contributions.
Atomic-Scale Materials Engineering for Ultra-Low-Power Superconducting Electronics
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Shane Cybart, Professor of Electrical and Computer Engineering, University of California Riverside
InP DHBT Optimization for High-Frequency Large-Signal Operation: the Type-I Grading Church vs. the Type-II Heresy, and Questions Few Want Answered
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Prof. Dr. Colombo Bolognesi, ETH Zurich
Novel GaN-based full-duplex front-end topology for communication and sensing systems
/en/research/research-news/novel-gan-based-full-duplex-front-end-topology-for-communication-and-sensing-systems
We demonstrate a GaN-based full-duplex front-end with analog self-interference cancellation, achieving up to 52 dB suppression at 4 GHz and high transmit power levels. The concept enables…