
| Quantity | Price |
| 1 - 19 | 20,00 $ |
| 20 - 49 | 19,40 $ |
| 50 - 99 | 18,80 $ |
* All Prices are in US Dollars and do not include duties
Key Specifications
Connector 1
SMA-JCFS520H-1
Connector 2
SMA-JCFS520H-1
Coaxial cable
CFS520H
Cable Outer Diameter (mm)
5.2
Frequency Max.
Max. VSWR (typical)
Max. VSWR
Insertion Loss
Amplitude Stability
±0.1
Phase Stability
±4
Min. Static Bending Radius
Min. Dynamic Bending Radius
52
Description
The SMA Male to SMA Male Low-Loss RF Cable Assembly — model IFCB35-SMSM-1M — is engineered for precision RF and microwave measurement systems requiring stable performance, mechanical durability, and repeatable electrical characteristics. It is constructed using Mechanc’s CFS520H coaxial cable, a variation of the
Designed for broadband testing up to 26.5 GHz, the IFCB35-SMSM-1M offers superior impedance control and minimal reflection across the entire frequency band. The precision SMA male connectors ensure low return loss and reliable mating, making this assembly ideal for vector network analyzer (VNA) testing, RF calibration, and signal transmission in laboratory or production environments.
Explore the complete range of SMA RF Cable Assemblies from Mechanc, providing ultra-low-loss interconnects optimized for accuracy, phase stability, and long-term reliability in broadband and microwave systems.
The CFS520H coaxial cable features a low-loss dielectric and a rugged mechanical structure designed to maintain phase and amplitude stability during movement or thermal variations. The PFA jacket enhances flexibility and protection against wear, ensuring dependable operation over thousands of connection cycles in test and measurement setups.
As part of Mechanc’s System Interconnect RF Cable Assemblies – IFC Series, the IFCB35-SMSM-1M combines long-term mechanical resilience with precision-engineered electrical performance. Each assembly is thoroughly tested for insertion loss and VSWR, and is fully compliant with REACH and RoHS standards to ensure sustainable, high-reliability performance in professional RF measurement environments.