| 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
The SMP Female to 2.92mm Male RF Adapter – SMP/2.92-KJ1, also referred to as a 2.92mm Male to SMP Female RF Adapter – 2.92/SMP-JK1, is a high-frequency coaxial adapter designed to provide a seamless interface between SMP and 2.92mm male connectors. This straight adapter ensures a compact, low-loss connection for advanced RF systems where size, performance, and modularity are critical.
Engineered to operate up to 40 GHz with a 50-ohm impedance, the SMP Female to 2.92mm Male RF Adapter is widely used in component performance evaluation, aerospace RF subsystems, and electronic warfare applications. This SMP between-series adapter provides system engineers with the ability to bridge miniaturized SMP modules with high-performance 2.92mm coaxial lines and instrumentation.
Delivering an insertion loss ≤0.25 dB and a VSWR ≤1.15 across its frequency range, this SMP jack to 3.92mm jack coaxial adapter ensures stable signal transmission with minimal reflection. Its straight configuration and compact form factor make this SMP straight adapter ideal for tightly integrated systems that demand high reliability and precision.
This SMP Female to 2.92mm Male RF Adapter features a passivated stainless steel body and gold-plated beryllium copper contacts, ensuring exceptional durability, corrosion resistance, and long-term electrical integrity. This SMP jack to 2.92mm plug adapter operates across a wide temperature range from -55°C to +165°C, suitable for both field deployments and controlled test environments.
RoHS and REACH compliant, the SMP Female to 2.92mm Male RF Adapter is a critical component for high-frequency systems in aerospace, defense, and RF testing. Custom configurations of this SMP straight adapter are available upon request to meet specific mechanical and electrical integration needs.