SSMPM Male Full Detent Hermetically Sealed Coaxial Connector – 3.6mm Body length, Solder Pin Diameter Terminal

Product ID: SSMP(M)-JHD1-F
Deal
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

Frequency Max

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Connector Gender

Body Style

VSWR Max

Termination Type

Interface Type

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Description

SSMPM Male Full Detent Hermetically Sealed Coaxial Connector – 3.6mm Body length, Solder Pin Diameter Terminal

SSMPM Male Full Detent Hermetically Sealed Coaxial Connector – 3.6mm Body Length, Solder Pin Terminal, Model SSMP(M)-JHD1-F

The SSMPM male full detent hermetically sealed coaxial connector with 3.6 mm body length and solder pin terminal offers robust retention and leak-tight RF performance for compact, high-frequency modules. Operating at 50 Ω impedance up to 50 GHz, this connector ensures maximum stability and low loss under pressure-sealed or vacuum environments.

High-Frequency Performance and Stability

Providing VSWR ≤ 1.3 and insertion loss ≤ 0.06 √F(GHz) dB, the SSMPM male full detent connector minimizes reflection and guarantees consistent impedance control across broadband microwave frequencies.

Hermetic Construction and Compliance

Made from stainless steel with gold-plated beryllium copper contacts, the SSMPM connector ensures excellent electrical conductivity, corrosion protection, and mechanical endurance. Fully REACH and RoHS compliant, it withstands temperature ranges from −55 °C to +165 °C in sealed electronic systems.

Applications in Precision RF Modules

The hermetic 3.6 mm body allows secure installation in SSMPM connector assemblies used in aerospace communication, instrumentation, and millimeter-wave transceivers demanding vacuum compatibility and vibration resistance.

Customizable Hermetic RF Solutions

Mechanc manufactures SSMPM connectors with smooth or full detent interfaces for various sealed configurations. Explore our RF Connector Catalog to find hermetically optimized designs for high-frequency systems.