The growing demand for broadband high-frequency solutions in areas such as sub-THz and terahertz communication, radar and satellite systems, scientific spectroscopy and material characterization requires precise, impedance-controlled connector systems. The RPC-0.80 meets these requirements, offering high signal integrity and stable frequency transmission characteristics.
Stable electrical properties
The RPC-0.80 is based on an air dielectric coaxial structure with a characteristic impedance of 50 ohms, and has the following characteristics:
• Very low mode dispersion
• Minimal reflection factor
• Precise mechanical tolerances and tight manufacturing limits
These features ensure high repeatability, even with frequent plugging and unplugging, and guarantee stable signal integrity across the entire frequency range.
Precise measurement results
With excellent return loss values (S11/S22) across the entire frequency range, and low insertion loss (S21/S12) within the 145 GHz application range, the RPC-0.80 is ideal for use in areas requiring high-precision RF measurement technology.
• Cryogenic and quantum technology
• High-precision RF measurement technology
• On-wafer probing
• Radar and satellite systems
• Modular test systems
An important step towards terahertz
The introduction of the RPC-0.80 connector represents a significant step forward in the miniaturization and enhancement of RF interface performance. Closing the gap between established series such as 1.00 mm (110 GHz) and future terahertz systems, it enables defined mode freedom up to 145 GHz.
Complete solution portfolio
The new RPC-0.80 is a valuable addition to Rosenberger's extensive range of products, which includes PCB and cable connectors, test PCBs, standard and custom cable assemblies, adapters (in-series and inter-series), waveguide-to-coaxial adapters, and a wide range of specialized tools. Rosenberger thus provides users with comprehensive expertise in solutions, from development and measurement technology to reliable system integration.
For more information, please visit:
https://www.rosenberger.com/...