
Key Specifications
Connector 1
1.0mm Male
Connector 2
1.0mm Male
Coaxial cable
CFS800H
Cable Outer Diameter (mm)
7.9
Frequency Max.
VSWR (typical)
VSWR (Max.)
Insertion Loss
0.97
Amplitude Stability
±0.1
Phase Stability
±3
Min. Static Bending Radius
39
Min. Dynamic Bending Radius
79
Description
The N Male to N Male Low-Loss RF Cable Assembly — model IFCCN-NMNM-1M — is a precision-engineered interconnect designed for broadband and microwave measurement systems requiring low attenuation, phase stability, and long-term durability. It is built with Mechanc’s CFS800H coaxial cable, a variation of the CFS800 ultra-low-loss 18 GHz precision test coaxial cable with PFA jacket, and terminated with two precision N-type male connectors (reference N-JCFS800H-1). Operating up to 18 GHz, this 8.0 mm-diameter assembly achieves a maximum VSWR of 1.35 and a typical insertion loss of 1.6 dB per meter, delivering stable and reliable signal transmission across a wide frequency range.
Optimized for high-frequency operation up to 18 GHz, the IFCCN-NMNM-1M provides tight impedance matching and low reflection across the full operating band. The rugged N-type male connectors ensure consistent mechanical alignment and low return loss, making this assembly ideal for vector network analyzer (VNA) calibration, broadband system testing, and high-power RF applications in laboratory or production environments.
Discover Mechanc’s complete selection of N RF Cable Assemblies, engineered for low-loss transmission, mechanical robustness, and high repeatability across broadband and microwave frequencies.
The CFS800H coaxial cable combines a low-dielectric-loss structure with reinforced mechanical construction that minimizes phase drift and amplitude variation during flexure. Its PFA jacket provides excellent flexibility, chemical resistance, and temperature stability, ensuring dependable performance under frequent use and varying test conditions.
As part of Mechanc’s System Interconnect RF Cable Assemblies – IFC Series, the IFCCN-NMNM-1M offers the electrical precision, durability, and environmental compliance required for modern RF and microwave testing. Each assembly is individually verified for insertion loss and VSWR and is fully compliant with REACH and RoHS regulations, ensuring reliable and sustainable long-term performance.