N Male to N Male Low-Loss RF Cable Assembly – Built with CFS760MH6 Coaxial Cable
The N Male to N Male Low-Loss RF Cable Assembly — model IFCHN-NMNM-1M — is a high-precision interconnect engineered for broadband and microwave testing systems requiring superior mechanical flexibility and stable electrical performance. It is built using Mechanc’s CFS760MH6 coaxial cable, a variation of the CFS760M ultra-flexible and ultra-low-loss 18 GHz precision test coaxial cable with PFA jacket, and terminated with two precision N male connectors (reference N-JCFS760MH6-1). This low-loss assembly combines mechanical agility with exceptional signal consistency, making it ideal for use in dynamic laboratory environments where cables are frequently repositioned or reconnected.
Flexible Broadband Design for Precision RF Testing
Optimized for high-reliability measurement systems, the IFCHN-NMNM-1M delivers outstanding phase and amplitude stability even under mechanical motion. Its precision N-type connectors ensure repeatable impedance matching and low return loss across the broadband frequency range, making it perfectly suited for network analyzers, calibration test benches, and microwave power measurement setups.
Discover Mechanc’s N RF Cable Assemblies — built for demanding broadband and microwave applications that require rugged mechanical design, low attenuation, and consistent long-term electrical performance.
Ultra-Low Loss Structure with Enhanced Mechanical Durability
The CFS760MH6 coaxial cable combines an ultra-low-loss dielectric with an ultra-flexible mechanical structure. Its PFA jacket provides superior abrasion resistance, chemical durability, and temperature stability, ensuring excellent signal integrity through thousands of flex cycles. This construction minimizes phase drift, making it ideal for automated test systems and environments requiring repeated movement.
Reliable System Interconnect for RF and Microwave Measurement
As part of Mechanc’s System Interconnect RF Cable Assemblies – IFC Series, the IFCHN-NMNM-1M combines high flexibility with exceptional phase and amplitude control. Each assembly is individually tested for insertion loss and VSWR to ensure compliance with the highest RF standards, and is fully REACH and RoHS certified for long-term environmental and operational reliability.