2.92mm Male to 2.4mm Male RF Adapter

Product ID: 2.92/2.4-JJ1
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 Male

Connector 2

2.4mm Male

Body Style

VSWR Max

Insertion Loss

2.92mm Male to 2.4mm Male RF Adapter

The 2.92mm Male to 2.4mm Male RF Adapter – 2.92/2.4-JJ1, also referred to as 2.4mm Male to 2.92mm Male RF Adapter – 2.4/2.92-JJ1, is a precision coaxial adapter engineered for secure, low-loss interconnection between 2.92mm male and 2.4mm male interfaces. This straight adapter supports millimeter-wave performance, providing seamless signal continuity across high-frequency applications in advanced RF systems.

Operating up to 40 GHz with a stable 50-ohm impedance, the 2.92mm Male to 2.4mm Male RF Adapter is designed for engineers integrating high-frequency systems such as VNA calibration test fixtures, microwave backhaul links, and LEO payload RF interconnects. This K Adapter provides a reliable interface between rugged 2.92mm connectors and precision 2.4mm systems.

With a maximum VSWR of ≤1.12 and insertion loss of ≤0.25 dB, this 2.92mm between-series coaxial adapter ensures optimal signal integrity with minimal reflection. The 2.92mm Male to 2.4mm Male RF Adapter excels in test environments and RF chains where phase stability and impedance matching are critical to measurement accuracy.

Crafted from passivated stainless steel with gold-plated beryllium copper contacts, the adapter guarantees long-lasting mechanical durability and electrical consistency across temperature extremes from -55°C to +165°C. It withstands repeated mating cycles without compromising RF performance.

Fully RoHS and REACH compliant, the 2.92mm Male to 2.4mm Male RF Adapter offers a dependable solution for demanding telecom, aerospace, and satellite applications. Custom mechanical versions or labeling adaptations are available upon request to meet specialized system requirements.