
| Part Number | IFCF35-SMSM-1M |
|---|---|
| Frequency Max | 26.5 |
| VSWR Max. | 1.3 |
| VSWR Typical | 1.25 |
| Connector 1 | 1.0mm オス |
| Connector 2 | 1.0mm オス |
| Insertion Loss | 3.89 |
| Outer Diameter | 2.2 |
| Jacket Diameter | 2.2 |
| Min. Bend Radius (Static) | 11 |
| Phase Stability | ±4 |
The SMA Male to SMA Male Low-Loss RF Cable Assembly — model IFCF35-SMSM-1M — is engineered for high-frequency testing environments that demand excellent electrical precision and mechanical durability. It is built with Mechanc’s CFS220H26 coaxial cable, a variation of the CFS220 ultra-low-loss 40 GHz precision test coaxial cable with PFA jacket, and terminated with two SMA male connectors (reference SMA-JCFS220H26-1). Supporting operation up to 40 GHz, this 2.2 mm-diameter assembly maintains a maximum VSWR of 1.35 and an insertion loss of 2.1 dB per meter, ensuring accurate and repeatable signal transmission for broadband and microwave test setups.
Optimized for performance through 40 GHz, the IFCF35-SMSM-1M provides exceptional impedance control and low reflection across its full frequency range. The precision-machined SMA male terminations ensure stable phase and amplitude characteristics, making this cable assembly ideal for vector network analyzer (VNA) measurements, RF calibration, and signal integrity validation.
Discover Mechanc’s SMA RF Cable Assemblies collection, offering precision-engineered interconnects designed for phase-stable, low-loss performance in high-frequency and microwave applications.
The CFS220H26 coaxial structure combines a low-dielectric-loss core with reinforced mechanical stability to minimize phase drift and amplitude variation. Its PFA jacket provides flexibility, thermal resistance, and excellent durability, enabling dependable use through frequent connection cycles in laboratory and production environments.
As part of Mechanc’s System Interconnect RF Cable Assemblies – IFC Series, the IFCF35-SMSM-1M combines low-loss electrical performance with rugged mechanical design for long-term reliability. Each assembly is individually tested for VSWR and insertion loss and fully compliant with REACH and RoHS regulations to ensure sustainable, high-quality performance in professional test environments.



