SMA Male to SMA Male Low-Loss RF Cable Assembly – Built with CFS360H26 Coaxial Cable
The SMA Male to SMA Male Low-Loss RF Cable Assembly — model IFCD35-SMSM-1M — is a precision-engineered interconnect designed for broadband and microwave measurement systems that demand phase stability and repeatable accuracy. It is built with Mechanc’s CFS360H26 coaxial cable, a variation of the CFS360 ultra-low-loss 40 GHz precision test coaxial cable with PFA jacket, and terminated with two SMA male connectors (reference SMA-JCFS360H26-1). Supporting operation up to 40 GHz, this 3.6 mm-diameter assembly achieves a maximum VSWR of 1.35 and a typical insertion loss of 1.9 dB per meter, delivering reliable signal transmission for advanced test and measurement applications.
High-Frequency Precision and Repeatable Performance
Optimized for broadband operation up to 40 GHz, the IFCD35-SMSM-1M provides excellent impedance control and low reflection across the entire operating range. Its precision-machined SMA male connectors ensure stable electrical contact and phase consistency, making it ideal for vector network analyzer (VNA) testing, signal integrity verification, and calibration setups requiring maximum repeatability.
For additional precision options, visit Mechanc’s SMA RF Cable Assemblies collection, featuring ultra-low-loss and phase-stable interconnects tailored for broadband, microwave, and millimeter-wave measurements.
Low-Loss Design with Durable, Flexible Construction
The CFS360H26 coaxial cable combines a low-loss dielectric with a mechanically reinforced core that maintains amplitude and phase integrity during flexure or movement. Its PFA jacket ensures superior flexibility, abrasion resistance, and thermal stability, allowing long-term reliability in laboratory or production testing environments.
Reliable Interconnect for Advanced RF and Microwave Systems
As part of Mechanc’s System Interconnect RF Cable Assemblies – IFC Series, the IFCD35-SMSM-1M merges electrical precision with rugged mechanical design to meet the needs of professional RF engineers. Each assembly is fully tested for insertion loss and VSWR compliance and certified to REACH and RoHS standards, guaranteeing long-term stability and environmental safety.