Mechanc RF & Microwave Components

Mechanc · RF Connectors
| Part Number | 2.92-JCFT420MW-1 |
|---|---|
| Series | 2.92mm |
| Interface Type | CFT420 MW |
| Gender | Male |
| Body Style | Straight |
| Body Material | Passivated Stainless Steel |
| Mount Method | None |
| Termination Type | Coax |
| Frequency Max | 40 GHz |
| Impedance | 50 Ω |
| Connector 1 | 1.0mm Male |
| Connector 2 | 1.0mm Male |
The 2.92 mm male straight cable-mount RF connector, model 2.92-JCFT420MW-1, is purpose-built for broadband microwave applications using the CFT420MW low-loss, phase-stable coaxial cable. Operating from DC to 40 GHz with a 50 Ω impedance, VSWR ≤ 1.17, and insertion loss ≤ 0.06 √f dB, it provides low reflection and accurate impedance control for wide-band testing and signal distribution systems. Explore additional models in the 2.92 mm connector family.
The 2.92-JCFT420MW-1 connector ensures stable amplitude response and low return loss across broadband frequencies. Its precision interface geometry supports accurate impedance matching and phase linearity for high-frequency instrumentation, radar evaluation, and VNA test environments.
Manufactured from passivated stainless steel and equipped with a gold-plated beryllium-copper center contact, the 2.92-JCFT420MW-1 offers low contact resistance, thermal stability, and mechanical endurance. Its robust structure maintains signal phase stability and amplitude consistency under mechanical stress and temperature variations. See more precision-grade solutions under RF connectors.
The cable-mount solder termination provides secure strain relief and uniform impedance transition, ensuring long-term performance consistency in both laboratory setups and field test environments. For comparable termination geometries and high-durability configurations, visit cable-mount connectors.
When paired with the CFT420MW low-loss, phase-stable coaxial cable, the 2.92-JCFT420MW-1 connector delivers low attenuation, repeatable impedance control, and exceptional signal stability—making it ideal for microwave module testing, wide-band measurement systems, and precision RF assemblies.


