RF Test Solutions Presented by Rohde & Schwarz at EuMW 2026

  • Rohde & Schwarz will showcase its latest test and measurement systems at European Microwave Week (EuMW 2026), taking place in London from October 6 to 8, 2026.
  • The German company will present equipment designed for RF component characterization, antenna qualification, and signal simulation for the radar, space, and telecommunications sectors.

 
Featured equipment includes the FSWX series spectrum and signal analyzer. Configured within an electronic warfare test setup alongside the SMW200A vector signal generator, the device utilizes its multichannel architecture to simultaneously analyze the input and output of a Digital Radio Frequency Memory (DRFM) jammer. The FSWX-KM700 option enables parallel pulse analysis and the tracking of parameter variations over time.

A second configuration will extend the analyzer’s multichannel characterization capabilities to E-band frequencies and up to 110 GHz by combining it with the SFI100A series intermediate frequency generator and FE110ST/SR series external front-end modules.

For the characterization of low-noise sources (OCXO, DRO, VCO) and two-port components up to 56 GHz, Rohde & Schwarz will demonstrate the FSWP series platform equipped with the FSWP-B62 internal reference option. Integrating external local oscillator sources aims to reduce measurement times during signal generator development.

Power Amplification and Antenna Characterization

Rohde & Schwarz will introduce the SAM200 series system amplifier, designed for Ka- and V-band testing applications up to 53 GHz. The equipment will be showcased in conjunction with the ZNA series vector network analyzer for high-power component characterization, and with the SMW200A family generator for linearity measurements under wideband modulation.

For satellite communications and radio astronomy, Rohde & Schwarz will exhibit the ZNB3000 series vector network analyzer, the frequency range of which can be extended up to 330 GHz using millimeter-wave converters.

Testing of electronically scanned antennas (phased arrays) in an Over-The-Air (OTA) environment will be demonstrated using the ATS1800C family compact chamber paired with the ZNA series vector network analyzer. Finally, the AREG800A series radar target generator will demonstrate micro-Doppler simulation capabilities applied to object detection and sensing functions integrated into future cellular networks (ISAC).