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Mechanc RF & Microwave Components

Mechanc · RF Connectors

Connecteur RF 2,92 mm femelle à bride 2 trous – fixation par soudure, entraxe 12,2 mm, diamètre de broche 0,3 mm, borne stub

Part No.
2.92-KFD33
Also:
1,0 mm mâle
In Stock
Lead time: 3–5 days (standard) · Custom: on request
Stub TerminalFemaleStraight2 Hole Flange
Quantity
Product Description

2.92mm Female 2-Hole Flange Mount RF Connector – Solder Attachment, Model 2.92-KFD33

The 2.92mm female 2-hole flange mount RF connector with a 0.30 mm pin and 12.2 mm hole spacing is precision-engineered for solder attachment and high-frequency performance. Operating at 50 Ω impedance from DC to 40 GHz, this connector ensures stable transmission and low insertion loss in demanding RF and microwave systems.

Superior Electrical Precision

Delivering VSWR ≤ 1.15 and insertion loss ≤ 0.06 √F(GHz) dB, the 2.92mm female 2-hole flange mount RF connector maintains excellent return-loss control and signal integrity across broadband applications. Its stub terminal configuration supports precise solder attachment and robust electrical grounding.

Durable Materials and Environmental Compliance

Constructed from stainless steel with gold-plated beryllium copper contacts, the 2.92mm female flange connector provides outstanding corrosion resistance, electrical stability, and long-term reliability. It is fully REACH and RoHS compliant, ensuring dependable operation from −55 °C to +165 °C under mechanical stress or repeated thermal cycling.

Applications in High-Frequency Systems

The 12.2 mm 2-hole flange configuration supports integration with 2-hole flange mount RF connectors used in radar calibration, vector network analyzers, and high-speed instrumentation. The solder attachment ensures permanent, vibration-resistant performance.

Custom RF Connector Design Options

Mechanc offers a full range of 2.92mm RF connectors designed for broadband and precision testing environments. Visit our RF Connector Catalog to explore compatible solder, field-replaceable, and flange mount solutions.