BS EN 3646-007:2015
Aerospace series. Connectors, electrical, circular bayonet coupling, ope rating temperature 175°C or 200°C continuous Receptacle, hermetic, round flange, welding or brazing mounting. Product standard
Standard number: | BS EN 3646-007:2015 |
Pages: | 12 |
Released: | 2015-06-30 |
ISBN: | 978 0 580 88147 3 |
Status: | Standard |
BS EN 3646-007:2015 Aerospace Series Connectors
Welcome to the world of advanced aerospace technology with the BS EN 3646-007:2015 Aerospace Series Connectors. This product standard is a testament to the precision and reliability required in the aerospace industry, ensuring that every connection is secure and efficient. Designed for high-performance applications, these connectors are essential for any aerospace project demanding excellence and durability.
Product Overview
The BS EN 3646-007:2015 standard specifies the requirements for electrical connectors used in the aerospace industry. These connectors feature a circular bayonet coupling mechanism, which is renowned for its quick and secure connection capabilities. The connectors are designed to operate at continuous temperatures of either 175°C or 200°C, making them suitable for a wide range of demanding environments.
Key Features
- High Temperature Resistance: Capable of operating continuously at temperatures of 175°C or 200°C, these connectors are ideal for high-temperature applications.
- Hermetic Sealing: The receptacle is hermetically sealed, ensuring that no moisture or contaminants can compromise the connection.
- Round Flange Design: The round flange design allows for easy integration into various systems, providing a secure and stable mounting solution.
- Welding or Brazing Mounting: These connectors can be mounted using welding or brazing techniques, offering flexibility in installation.
- Reliable Bayonet Coupling: The circular bayonet coupling mechanism ensures a quick and reliable connection, reducing the risk of accidental disconnection.
Technical Specifications
Standard Number | BS EN 3646-007:2015 |
---|---|
Pages | 12 |
Release Date | 2015-06-30 |
ISBN | 978 0 580 88147 3 |
Status | Standard |
Applications
The BS EN 3646-007:2015 connectors are designed for use in a variety of aerospace applications, including:
- Aircraft Systems: Ensuring reliable electrical connections in critical aircraft systems.
- Spacecraft: Withstanding the extreme conditions of space travel.
- Military Equipment: Providing robust connections in military-grade equipment.
- Avionics: Supporting the complex electronic systems found in modern aircraft.
Why Choose BS EN 3646-007:2015?
Choosing the BS EN 3646-007:2015 standard connectors means opting for reliability, durability, and performance. These connectors are engineered to meet the rigorous demands of the aerospace industry, ensuring that your systems remain operational under the most challenging conditions. With their high-temperature resistance and hermetic sealing, they provide peace of mind in environments where failure is not an option.
Conclusion
In the fast-paced and demanding world of aerospace technology, the BS EN 3646-007:2015 Aerospace Series Connectors stand out as a benchmark of quality and reliability. Whether you are working on cutting-edge aircraft, spacecraft, or military applications, these connectors offer the performance and dependability you need. Invest in the best with BS EN 3646-007:2015 and ensure your projects soar to new heights.
BS EN 3646-007:2015
This standard BS EN 3646-007:2015 Aerospace series. Connectors, electrical, circular bayonet coupling, ope rating temperature 175°C or 200°C continuous is classified in these ICS categories:
- 49.060 Aerospace electric equipment and systems
This European Standard defines the characteristics of hermetic receptacle with round flange attached by welding or brazing in the family of bayonet coupling circular connectors, intended for use in an operating temperature range of − 65 °C to 175 °C or 200 °C continuous.
It applies to models defined in Table 3.
For plugs and protective covers see EN 3646-008 and EN 3646-009 respectively.