2.4mm Female PCB Mount RF Connector – End Launch Clamp Solder

Product ID: 2.4-KFD801
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

2.4mm Female PCB Mount RF Connector – End Launch Clamp Solder

2.4mm Female PCB Mount RF Connector – End Launch Clamp Solder, Model 2.4-KFD801

The 2.4mm female PCB mount RF connector with an end launch clamp solder design offers superior electrical precision for high-frequency printed circuit board applications. Engineered for 50 Ω impedance and frequency operation up to 50 GHz, this connector ensures low-loss signal integrity in compact, high-speed RF modules.

High-Frequency Electrical Performance

Delivering VSWR ≤ 1.18 and insertion loss ≤ 0.06 √F(GHz) dB, the 2.4mm female PCB mount RF connector guarantees minimal reflection and optimal return-loss performance, making it suitable for precision instrumentation and broadband testing circuits.

Mechanical Design and Material Reliability

Constructed from stainless steel with gold-plated beryllium copper contacts, the 2.4mm female PCB connector provides excellent conductivity, corrosion resistance, and mechanical stability. Fully REACH and RoHS compliant, it operates reliably between −55 °C and +165 °C in demanding RF environments.

Applications in PCB and Measurement Systems

The end launch configuration enables seamless integration with PCB mount RF connectors for high-speed data transmission and precision measurement platforms. The clamp solder interface enhances mechanical fixation and repeatability in calibration-grade test boards.

Custom RF Design Options

Mechanc manufactures 2.4mm RF connectors tailored for high-frequency PCB and modular integration. Explore our RF Connector Catalog to find compatible PCB-mount, field-replaceable, and end-launch RF solutions for your next project.