N Male Straight RF Connector – Fits CFT500MW Coaxial Cable

Product ID: N-JCFT500MW-1
Deal
Quantity Price
1 - 99 22,00 $
100 - 199 21,56 $
200 - 499 21,34 $

* All Prices are in US Dollars and do not include duties

Key Specifications

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VSWR Max

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Description

N Male Straight RF Connector – Fits CFT500MW Coaxial Cable

N Male Straight RF Connector for CFT500MW Cable – Model N-JCFT500MW-1

The N male straight RF connector, model N-JCFT500MW-1, is designed for medium-power, phase-stable assemblies utilizing the CFT500MW low-loss coaxial cable. Operating from DC to 18 GHz with 50 Ω impedance, VSWR < 1.12, and insertion loss < 0.06 √f dB, it provides excellent return-loss and amplitude stability across broadband applications. Explore more robust solutions in the N-type connector family.

Broadband Performance and Stability

The N-JCFT500MW-1 offers consistent impedance control and low reflection under demanding electrical and mechanical conditions. Its precision-engineered design supports high repeatability for laboratory testing, communication modules, and RF measurement systems.

Precision Materials and Long-Term Reliability

Manufactured from passivated stainless steel and featuring a gold-plated beryllium-copper (BeCu) contact, the connector ensures low contact resistance, excellent corrosion resistance, and mechanical durability. More broadband components are available under RF connectors.

Reliable Termination and Environmental Compliance

The straight solder interface guarantees accurate dielectric centering and tight impedance transition, maintaining phase accuracy in RF distribution networks. The N-JCFT500MW-1 connector is fully RoHS and REACH compliant, ensuring high performance and environmental responsibility. Similar rugged terminations appear in cable-mount connectors.

Optimized Integration with CFT500MW Coaxial Cable

Pair the N-JCFT500MW-1 with the CFT500MW phase-stable coaxial cable to achieve low insertion loss, stable attenuation, and consistent phase tracking in measurement, microwave, and communication systems.