Our specialized Low PIM connectors are designed to eliminate signal interference in critical RF applications, ensuring optimal performance for cellular networks, broadcasting, satellite communications, and more.
Minimized passive intermodulation (PIM) ensures clean signal transmission in multi-frequency environments, critical for modern wireless systems.
Non-ferrous metals and silver-plated contacts reduce PIM generation and ensure long-term reliability in harsh environments.
Tight mechanical tolerances and smooth surface finishes eliminate irregularities that can cause intermodulation.
Base stations, repeaters, and distribution systems where signal clarity is crucial for high-speed data transmission and voice communication.
Ground stations and uplink installations requiring interference-free transmission for clear global communication links.
MRI machines and diagnostic systems needing clean signal transmission for accurate medical imaging and diagnostics.
Aluminum and brass connectors minimize magnetic hysteresis effects that contribute to PIM generation in RF systems.
Superior conductivity with oxidation resistance for consistent low PIM performance over thousands of mating cycles.
Optimized PTFE materials maintain stable impedance and minimize signal distortion across wide frequency ranges.
Engineered to prevent contact movement that can generate intermodulation products in high-vibration environments.
Verify composition and plating quality of all raw materials
Precision measurement of all critical features
Screening at multiple power levels
Thermal cycling and vibration tests
Compliance verification and documentation
Connector Type | Frequency Range | PIM Performance | Coupling Mechanism | Applications |
---|---|---|---|---|
2.2-5 | Up to 6 GHz | -155 dBc typical | Screw | Compact wireless systems |
4.3-10 | Up to 6 GHz | -160 dBc typical | Hand-screw | Small cell networks |
4.1-9.5 | Up to 7.5 GHz | -158 dBc typical | Screw | Mobile communication |
7-16 | Up to 7.5 GHz | -165 dBc typical | Screw | Base stations |
N-Type | Up to 11 GHz | -155 dBc typical | Threaded | Versatile RF applications |
Our RF engineering team specializes in solving challenging PIM problems in critical communication systems.