| 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
Connector 2
Body Style
VSWR Max
Insertion Loss Max
The N Male to 2.92mm Female RF Adapter – N/2.92-JK1, also known as 2.92mm Female to N Male RF Adapter – 2.92/N-KJ1, is a precision RF coaxial adapter engineered to provide a secure and low-loss connection between N-type male and 2.92mm female interfaces. This straight adapter supports frequency ranges up to 26.5 GHz, offering a versatile solution for interconnecting rugged infrastructure with high-frequency systems.
With a standard 50-ohm impedance and robust mechanical design, the N Male to 2.92mm Female RF Adapter is perfectly suited for a range of RF testing and system integration scenarios. Typical use cases include end-of-line quality verification setups, industrial RF deployments, and millimeter-wave telecom networks requiring robust, stable, and high-frequency connections.
The N Male to 2.92mm Female RF Adapter delivers excellent electrical performance with VSWR ≤1.09 and insertion loss ≤0.25 dB, ensuring minimal signal degradation even in sensitive or mission-critical environments. This N between-series adapter allows test engineers and RF system designers to connect legacy or outdoor-grade N-type connectors with advanced 2.92mm instrumentation without compromise.
Constructed from passivated stainless steel for maximum durability and equipped with gold-plated beryllium copper contacts, the N Male to 2.92mm Female RF Adapter ensures long-term mechanical reliability and excellent conductivity. Its operational temperature range spans from -55°C to +165°C, making it highly suitable for both field and lab conditions.
RoHS and REACH compliant, the N Male to 2.92mm Female RF Adapter is an ideal choice for demanding RF environments across sectors such as defense, aerospace, metrology, and telecommunications. Customized configurations are available upon request to accommodate specialized system requirements.
Description