SMA Male to SMA Male Low-Loss RF Cable Assembly – Built with CFS830H6 Coaxial Cable
The SMA Male to SMA Male Low-Loss RF Cable Assembly — model IFCDS-SMSM-1M — is a precision-engineered interconnect solution optimized for broadband, RF, and microwave measurement systems. It is constructed using Mechanc’s CFS830H6 coaxial cable, a variation of the CFS830 ultra-low-loss 18 GHz precision test coaxial cable with PFA jacket, and terminated with two precision SMA male connectors (reference SMA-JCFS830H6-1). Designed for stable electrical performance and long-term durability, this low-loss assembly provides reliable phase consistency and minimal attenuation across the full operating band.
Consistent Broadband Performance and Return-Loss Control
Engineered for precision RF and microwave testing, the IFCDS-SMSM-1M ensures tight impedance control and low reflection under repeated connection cycles. Its SMA male connectors deliver consistent mechanical alignment and excellent return-loss characteristics, making it ideal for vector network analyzer (VNA) measurements, calibration kits, and high-frequency signal integrity testing.
Explore Mechanc’s SMA RF Cable Assemblies — built for broadband, microwave, and high-frequency testing where low-loss transmission, phase stability, and repeatable precision are essential.
Low-Loss Coaxial Structure and Mechanical Flexibility
The CFS830H6 coaxial cable combines a low-dielectric-loss design with a PFA jacket that enhances flexibility, mechanical strength, and temperature resistance. Its structure ensures phase-stable signal transmission and consistent electrical behavior under bending, making it suitable for laboratory and production test environments.
Reliable Interconnect for Advanced RF Applications
As part of Mechanc’s System Interconnect RF Cable Assemblies – IFC Series, the IFCDS-SMSM-1M combines superior phase stability with mechanical robustness for broadband and microwave applications. Each assembly undergoes full performance testing and meets REACH and RoHS standards for environmental and operational reliability.