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A Decade of High-Power RF Amplifier Designs

Amplifier designs developed across a decade, from compact ISM modules to broadband RF Energy pallets and high-power accelerator drivers.

RF Power Manufacturing Systems Integration
Cover of the E-REON case study celebrating ten years of RF amplifier designs
A selection of amplifier designs developed by E-REON over the preceding decade.
Article Engineering Update E-REON B.V.

From satellite communications to industrial RF Energy, this collection brings together examples of amplifier systems developed by E-REON over the preceding decade.

The projects demonstrate different approaches to high-power RF design. Each combines RF engineering, power electronics, thermal management, mechanical design and system control to produce reliable, integration-ready hardware.

Designs in the collection

The featured developments include:

  • compact 2.4-2.5 GHz ISM amplifier modules for satellite ground stations and industrial applications
  • a 40 W L-band radar-test module with integrated diagnostics and microcontroller-based monitoring
  • a broadband 1.6-50 MHz HF pallet for scalable industrial RF Energy systems
  • a 700 W CW and pulsed 1.3 GHz driver for accelerators and FMCW radar
  • a 433 MHz industrial RF generator with phase synchronisation and monitoring
  • a modular 400 W, 2.856 GHz klystron driver for LINAC and high-energy physics applications

From RF design to repeatable hardware

High-power amplifier development extends beyond the RF circuit. Device mounting, solder attachment, bias control, mismatch tolerance, cooling and mechanical integration all influence whether a design can deliver its rated performance reliably.

These examples reflect E-REON's development process from requirements and simulation through prototyping, RF and thermal validation, manufacturing and system-level support.

Open the complete amplifier design case-study booklet (PDF)