X
  • No products in the list

N Male Straight RF Connector – Fits CFS520 Coaxial Cable

Product ID: N-JCFS520-1

Key Specifications

Frequency Max

Connector Series

Connector Gender

Body Style

VSWR Max

Termination Type

Interface Type

Attachment Method

Mount Method

Description

N Male Straight RF Connector – Fits CFS520 Coaxial Cable

N Male Straight RF Connector for CFS520 Cable – Model N-JCFS520-1

The N male straight RF connector, model N-JCFS520-1, is engineered for phase-stable, low-loss assemblies utilizing the CFS520 ultra-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 guarantees excellent impedance continuity and repeatable performance in broadband microwave systems. Explore additional models in the N-type connector family.

High-Performance Design for Broadband Systems

The N-JCFS520-1 is optimized for laboratory instrumentation, RF communication setups, and field test systems requiring low reflection and stable return-loss characteristics. Its precise interface ensures repeatable S-parameter performance across the full operating bandwidth.

Durable Materials and Electrical Stability

Manufactured from passivated stainless steel and featuring a gold-plated beryllium-copper (BeCu) contact, the connector provides excellent corrosion resistance, low contact resistance, and long-term mechanical reliability. Additional broadband connector solutions are available within RF connectors.

Reliable Termination and Environmental Compliance

The straight cable-mount solder termination offers stable dielectric centering and mechanical strain-relief, preserving impedance uniformity under vibration and thermal variation. The N-JCFS520-1 is fully RoHS and REACH compliant, meeting global environmental and safety standards. Related ruggedized terminations can be found in cable-mount connectors.

Optimized Integration with CFS520 Coaxial Cable

When paired with the CFS520 low-loss, phase-stable coaxial cable, the N-JCFS520-1 delivers minimal attenuation, excellent phase linearity, and consistent broadband accuracy in both laboratory and field RF applications.