
Amphenol Aerospace High Power Connectors
Amphenol Aerospace High Power Connectors are designed with advanced RADial SOcKet (RADSOK®) contact technology and contact termination methods. These connectors utilize Matrix 5015 and GT-5015 connector interfaces and tooled insert arrangements for high-power applications. The connectors feature threaded or bayonet coupling, standard interfaces for utilizing existing cabling design, and gold-plated contacts for higher performance. Amphenol Aerospace High Power Connectors are available in a range of variants, including wall-mount receptacles, box-mount receptacles, straight plugs with rear access, straight plugs, jam nuts, and self-locking plug shell types. Contact styles include male thread termination, female thread termination, crimp, PC tail, and bus-bar.The RADSOK contact technology provides a robust and high-density contact to the mating pin contact. This contact features a hyperbolic and stamped grid configuration that ensures a large, coaxial, and face-to-face surface area engagement. The RADSOK contacts are ideal for crimp termination applications requiring high current and repeated mating cycles with a low milli-volt drop.
Features
- Advanced RADSOK contact technology
- 40% to 50% increased current carrying capability over standard 5015 connector
- Standard interfaces to utilize existing cabling design where high-performance is needed
- Contact styles
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- Male thread termination
- Female thread termination
- Crimp (removable with grommet)
- Solder (removable with grommet)
- Solder (potted-in)
- Busbar
- PC tail (potted-in)
- Shell styles
- Wall-mount receptacle
- Box-mount receptacle
- Straight plug with rear access (PKB only)
- Straight plug
- Jam nut receptacle
- Jam nut receptacle with rear accessory threads
- Self-locking plug (PKT only)
- Threaded or bayonet coupling
- Gold-plated design for high performance in demanding environments
Specifications
- Operating temperature range
- RF, RL, and RK finish: -55°C to +200°C
- RW, DT, and DZ finish: -55°C to +175°C
Product Overview

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Published: 2018-12-10
| Updated: 2022-08-03