RF SPIN Debuted Five New Antenna Models

The company introduced a series of high-frequency antennas at the European Microwave Week 2026 event in London.

Updated on Oct. 8, 2026 in Semiconductors

Isometric editorial illustration of a metallic double-ridged horn antenna, presented as a precise, matte sculptural form.
RF SPIN introduced five new high-frequency antenna models at European Microwave Week 2026, targeting measurement efficiency in industrial and e-bike testing. AI Illustration. Upload story photo >

RF SPIN showcased five new antenna models at European Microwave Week 2026, offering frequency coverage from 950 MHz up to 67 GHz. These new designs aim to streamline measurement processes and support specialized industry testing requirements.

Why it matters

By providing wider frequency ranges in single units, such as the DRHX67, these antennas allow engineers to reduce the total hardware needed for testing. The specialized DRH0908 model specifically supports rising demand for immunity testing in the e-bike and motorcycle sectors.

The new portfolio spans 950 MHz to 67 GHz, headlined by the DRHX67 which covers 1 to 67 GHz. Other units include the QRH43CR and QRH20CR, which feature IP65-rated radomes for enhanced durability.

The players

RF SPIN

RF SPIN is a manufacturer specializing in the design and production of broadband antennas and testing components.

The details

The DRHX67 uses a double-ridged horn design, while the QRH43CR and QRH20CR incorporate 3D-printed lenses. These units are currently on display at Stand B25C for industry demonstration.

Timeline

  1. The European Microwave Week 2026 event took place in October 2026.

The Big Picture

The integration of double-ridged horn antenna architecture has become a critical development in modern radio testing. This release extends the capability of that design to support higher frequency ranges previously difficult to manage in a single, compact testing unit.

These antennas provide engineers with significantly broader frequency coverage, allowing for more streamlined test setups. The use of IP65-rated radomes ensures that these devices remain protected during field operations in more challenging environments.

The takeaway

The move toward wider-band antenna designs helps laboratories reduce the physical footprint of their testing rigs. Developers working in the automotive and e-mobility sectors can utilize these new tools to meet evolving immunity testing standards more efficiently.

Further reading

For more information on the latest hardware components, visit Semiconductors.

Source note: This article includes information reported by Everythingrf.