| 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 SMA Female RF Adapter – N/SMA-JK1, also referred to as SMA Female to N Male RF Adapter – SMA/N-KJ1, is a high-frequency straight coaxial adapter designed to connect durable N-type male interfaces with compact SMA female connectors. This N between-series adapter enables seamless integration between legacy RF systems and high-performance modular instruments.
Rated up to 18 GHz and built with a controlled 50-ohm impedance, the N Male to SMA Female RF Adapter is ideal for use in multi-frequency systems requiring reliable signal routing between rugged and precision-grade connectors. Common applications include end-of-line RF testing setups, 5G module interface environments, and harsh industrial RF networks where robust connectivity and signal clarity are essential.
The N Male to SMA Female RF Adapter delivers outstanding electrical performance, including VSWR ≤1.1 and insertion loss ≤0.25 dB, ensuring minimal signal reflection and maintaining transmission quality throughout the entire operating range. The N male straight coaxial adapter is especially useful in scenarios where space, performance, and mechanical reliability must be balanced.
Crafted from passivated stainless steel and equipped with gold-plated beryllium copper contacts, the N Male to SMA Female RF Adapter provides superior corrosion resistance, conductivity, and mating durability. Its wide operating temperature range of -55°C to +165°C supports consistent performance in both laboratory and rugged field environments.
RoHS and REACH compliant, the N Male to SMA Female RF Adapter is a reliable choice for professionals in aerospace, telecommunications, and RF testing sectors. Custom versions of this N to SMA adapter can be developed upon request to meet unique system configurations or stringent application demands.
Description