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Discover the pinnacle of connectivity with HUADA’s SSMP-KW506, the ultra-small RF coaxial connector engineered for modular and high-density installations. Boasting a diminutive footprint that outperforms traditional SMP products, the SSMP-KW506 is the quintessential choice for systems demanding impeccable performance up to 50 GHz. With an impressive insulation resistance of 2000 MΩ and a rated withstand voltage of 170 VRMS, this connector ensures reliable and enduring connections. Experience seamless integration without compromising on quality or efficiency choose HUADA’s SSMP-KW506 for your advanced technological needs
Impedance Matching: With a standard 50 Ω impedance, the SSMP-KW506 ensures compatibility with most RF applications, providing minimal signal reflection and loss.
Broad Frequency Range: Capable of operating up to 50 GHz, this connector is ideal for a wide range of applications, including advanced communication systems and high-speed data transmission.
High Insulation Resistance: An insulation resistance of 2000 MΩ indicates a high level of electrical insulation, crucial for maintaining signal integrity and preventing leakage currents.
Ultra-Small Series: As part of the ultra-small RF coaxial connector series, the SSMP-KW506 is optimized for space-constrained environments where every millimeter counts.
Rated Withstand Voltage: With a rated withstand voltage of 170 VRMS, it can handle significant voltage levels without breakdown, ensuring durability and safety in operation.
Low Contact Resistance: The outer conductor has a contact resistance of ≤3.5 mΩ (regular) and ≤5 mΩ (airseal), while the inner conductor has ≤8 mΩ (regular) and ≤30 mΩ (airseal), indicating efficient electrical conduction and reduced power loss.
Impedance | 50 Ω |
Frequency Range | 50 GHz |
Insulation Resistance | 2000 MΩ |
Series | ultra-small RF coaxial connector |
Rated Withstand Voltage | 170 VRMS |
Contact Resistance Outside Conductor | regular ≤3.5 , airseal ≤5 mΩ |
Contact Resistance Inner Conductor | regular ≤8 , airseal ≤30 mΩ |