| 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 2.4mm Female to 2.92mm Male RF Adapter – 2.4/2.92-KJ1, also referred to as 2.92mm Male to 2.4mm Female RF Adapter – 2.92/2.4-JK1, is a precision-engineered coaxial adapter designed to facilitate reliable signal transition between 2.4mm female and 2.92mm male interfaces. Built for high-frequency RF performance, this straight adapter enables stable connectivity between modern and legacy components in dense and demanding test environments.
Operating efficiently up to 40 GHz with a characteristic 50 Ω impedance, the 2.4mm Female to 2.92mm Male RF Adapter is ideally suited for microwave signal transmission, RF interconnection, and mmWave validation tasks across a range of high-performance platforms. It is particularly valuable in applications such as combat aircraft RF systems, controlled lab testing, and telecom device verification.
The 2.4mm Female to 2.92mm Male RF Adapter offers excellent electrical characteristics, featuring insertion loss ≤0.35 dB and VSWR ≤1.12 at 40 GHz. This ensures minimal signal reflection and attenuation, making it ideal for precision measurement and signal path optimization in hybrid connector configurations.
Constructed with a rugged passivated stainless steel housing and gold-plated beryllium copper contacts, this 2.4mm straight adapter ensures long-term mechanical stability and reliable electrical contact. It performs consistently across a broad temperature range of -55°C to +165°C, suitable for both bench-top and field operations in mission-critical RF systems.
Compliant with RoHS and REACH standards, Mechanc’s 2.4mm Female to 2.92mm Male RF Adapter is a trusted solution for engineers integrating mixed-connector systems in aerospace, defense, telecom, and advanced R&D environments. Custom options are available on request to accommodate specialized interface and performance requirements.
Description