2.92mm Female to 3.5mm Female RF Adapter

Product ID: 2.92/3.5-KK1
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

Connection Type

Frequency Max

Connector 1

2.92mm Female

Connector 2

3.5mm Female

Body Style

VSWR Max

Insertion Loss

2.92mm Female to 3.5mm Female RF Adapter

The 2.92mm Female to 3.5mm Female RF Adapter – 2.92/3.5-KK1, also referred to as 3.5mm Female to 2.92mm Female RF Adapter – 3.5/2.92-KK1, is a high-frequency coaxial adapter designed to facilitate seamless connectivity between 2.92mm and 3.5mm female interfaces. This straight adapter enables low-loss interconnection between high-precision metrology-grade and general-purpose RF systems.

With an operating frequency up to 26.5 GHz and a controlled 50-ohm impedance, the 2.92mm Female to 3.5mm Female RF Adapter is ideal for component performance evaluation, industrial RF measurement systems, and 5G module interface development. It ensures compatibility between laboratory instruments and field-grade equipment with minimal signal degradation.

This adapter delivers excellent electrical performance, featuring a VSWR ≤1.1 and an insertion loss ≤0.2 dB. The 2.92mm Female to 3.5mm Female RF Adapter supports high signal fidelity, making it suitable for precision RF testing and integration of mixed-connector systems.

Engineered with a rugged passivated stainless steel body and gold-plated beryllium copper contacts, this K-type between series adapter ensures mechanical robustness and long-term reliability. The coaxial adapter maintains consistent performance across a wide operating temperature range from -55°C to +165°C, even under repeated mating cycles.

Compliant with both RoHS and REACH standards, the 2.92mm Female to 3.5mm Female RF Adapter reflects Mechanc’s commitment to sustainable, high-performance RF connectivity. Custom configurations can be offered upon request to meet your unique technical specifications across aerospace, telecom, and defense applications.