TNCA Male Right Angle RF Connector – Fits CFP520 Coaxial Cable

Product ID: TNCA-JWCFP520-1
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

Frequency Max

Connector Series

Connector Gender

Body Style

VSWR Max

Termination Type

Interface Type

Attachment Method

Mount Method

Description

TNCA Male Right Angle RF Connector – Fits CFP520 Coaxial Cable

TNCA Male Right-Angle RF Connector for CFP520 Cable – Model TNCA-JWCFP520-1

The TNCA male right-angle RF connector, model TNCA-JWCFP520-1, is a precision-engineered interconnect designed for high-performance applications utilizing the CFP520 phase-stable coaxial cable. Operating from DC to 18 GHz with 50 Ω impedance and VSWR ≤ 1.30, it ensures stable broadband transmission, low reflection, and excellent return-loss in compact or angled RF layouts. Explore related precision assemblies in the TNCA connector family.

High-Performance Right-Angle Design

The TNCA-JWCFP520-1 minimizes cable bending stress and supports efficient signal routing in space-limited microwave systems, maintaining low VSWR and tight impedance alignment across the full operating band.

Premium Construction and Reliability

Fabricated from passivated stainless steel and equipped with a gold-plated beryllium-copper (BeCu) contact, the connector provides mechanical durability, corrosion protection, and stable conductivity through repeated mating cycles. For additional precision-grade interconnects, visit RF connectors.

Secure Mounting and Compliance

The right-angle configuration offers mechanical stability and strain relief under vibration or temperature variations. The TNCA-JWCFP520-1 is fully RoHS and REACH compliant, meeting international environmental and safety standards. Comparable angled termination geometries are featured under cable-mount connectors.

Optimized Pairing with CFP520 Coaxial Cable

When paired with the CFP520 phase-stable coaxial cable, the TNCA-JWCFP520-1 delivers consistent attenuation, phase repeatability, and signal integrity for advanced test, communication, and instrumentation systems.