Microwave/RF test assembly offers performance to 50GHz

Posted By : Mick Elliott
Microwave/RF test assembly offers performance to 50GHz

A lightweight microwave and RF assembly that ensures consistent, repeatable measurements with stable electrical performance up to 50GHz has been announced by W.L. Gore & Associates. The new GORE PHASEFLEX Microwave/RF Test Assemblies, Type 0N for High Density Test/Interconnection builds on the portfolio of GOREPHASEFLEX Microwave/RF Test Assemblies.

The small package and light weight of Type 0N not only makes initial routing much easier in cramped spaces but also reduces the stress on test ports and DUTs as cables are connected to test instrument ports and fixtures.

This high-density test assembly also withstands continuous movement and flexing while delivering enhanced phase and amplitude stability.

Connecting the test assemblies to a test application eases calibration and troubleshooting, improves test results, speeds throughput, increases service life, and reduces overall costs. This new assembly solution from Gore offers stable electrical performance and durable mechanical protection over time in a compact, cost-effective package.

The test assemblies meet applications in 5G test and interconnection, component/device R&D and production test, high-speed digital test devices/assemblies, modular test instruments such as PXIe and AXIe and RF switches.

High-density and modular test instruments for wireless devices and aerospace systems have become increasingly complex, with a larger number of ports that can accept up to 32 test assemblies or more. They’re also subjected to constant flexing during calibration and testing DUTs (Device Under Test) that can compromise phase and amplitude stability, resulting in inaccurate measurements.

As such, test assemblies need to be smaller, lighter weight and more flexible for easy routing in less space when connecting them to Vector Network Analysers (VNAs), like ENA and PXIe.

At the same time, they need to deliver highly accurate measurements for faster throughput, less calibration and downtime, and reduced overall costs.

 

 

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