| 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 3.5mm Female RF Adapter – SMP/3.5-KK1, also referred to as the 3.5mm Female to SMP Female RF Adapter – 3.5/SMP-KK1, is a high-frequency coaxial connector designed to interconnect SMP female interfaces with precision 3.5mm female ports. Its compact form factor and straight configuration make this SMP between-series adapter ideal for high-density test setups, modular systems, and compact RF modules requiring secure transitions between miniature and standard connectors.
Rated up to 26.5 GHz and engineered with a 50-ohm impedance, the SMP Female to 3.5mm Female RF Adapter ensures excellent compatibility between advanced microwave assemblies and test-grade equipment. This SMP straight adapter is particularly well suited for high-frequency 5G module interfaces, RF test benches, and satellite system interconnects, where signal integrity and connector durability are key concerns.
With VSWR ≤1.1 and insertion loss ≤0.25 dB, this SMP Female to 3.5mm Female RF Adapter supports clean signal transmission and low-reflection operation across its frequency range. Its straight configuration ensures simple integration and alignment in confined spaces or directly within dense equipment.
Constructed from corrosion-resistant passivated stainless steel with high-performance gold-plated beryllium copper contacts, this SMP to 3.5mm adapter offers long-term reliability under mechanical stress. This SMP female adapter operates consistently from -55°C to +165°C, making it suitable for field environments and thermally dynamic lab conditions.
Fully compliant with RoHS and REACH standards, the SMP Female to 3.5mm Female RF Adapter is a dependable transition component for applications in defense electronics, test labs, and high-frequency telecom platforms. Customized versions or alternative configurations can be developed upon request to meet specific system integration needs.