Canare SMAP-C Series 50 Ohm SMA Crimp Plugs & Jacks | High-Frequency Subminiature RF Connectors
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Key Features
Key Features
- Low VSWR RF Performance
- Compact SMA Form Factor
- Gas-Tight Crimp Termination
- Male & Female Options
- Broad RF Cable Compatibility
Features & Specifications
Product Overview +
Subminiature Connectivity for Telecommunications and Test Instruments
The Canare SMAP-C (Male Plug) and SMAJ-C (Female Jack) Series deliver laboratory-grade electrical performance in a highly compact subminiature footprint. Engineered specifically for professional wireless telecommunication equipment, cellular distribution systems, and sensitive measuring instruments like spectrum analyzers, these 50-ohm SMA connectors provide an uncompromising interface. The precision-machined screw thread coupling architecture prevents contact shifting and transmission dropouts, ensuring highly repeatable microwave-frequency performance even under severe structural duress.
Outstanding High-Frequency Isolation and Transfer
Maintaining clean signal transmission across high bands requires strict geometric tolerances. The SMAP-C and SMAJ-C variants sustain an industry-leading VSWR of 1.1 or less up to 2 GHz, and 1.2 or less up to 4 GHz (with the ultra-compact SMAP-C1 performing at 1.2 or less up to 2 GHz). This strict impedance matching eliminates phase anomalies and hazardous signal reflections. As a result, your high-power wireless mic arrays, RF telemetry hubs, and measurement systems receive full signal power and complete bandwidth clarity.
Streamlined, Repeatable Crimp Termination
Field assembly is highly efficient thanks to Canare's standardized 3-piece crimp dynamics. By eliminating time-consuming clamping systems or inconsistent field soldering (excluding the micro-sized SMAP-C1, which utilizes a precision solder center contact with a crimped outer sleeve), technicians can achieve permanent, uniform bonds across production assemblies. Paired with standard Canare hand tools and dedicated die sets, this connector group provides high strain relief and lasting durability for critical broadcast facilities.

