BS EN 4604-003:2019
Aerospace series. Cable, electrical, for signal transmission Cable, coaxial, 50 ohms, 200 °C, type WZ. Product standard
Standard number: | BS EN 4604-003:2019 |
Pages: | 14 |
Released: | 2019-10-03 |
ISBN: | 978 0 539 04512 3 |
Status: | Standard |
BS EN 4604-003:2019 Aerospace Series Coaxial Cable
Introducing the BS EN 4604-003:2019 Aerospace Series Coaxial Cable, a high-performance electrical cable designed specifically for signal transmission in demanding aerospace environments. This product standard is a testament to cutting-edge engineering and meticulous attention to detail, ensuring reliability and efficiency in critical applications.
Product Overview
The BS EN 4604-003:2019 standard specifies the requirements for a coaxial cable with a characteristic impedance of 50 ohms, capable of operating at temperatures up to 200 °C. This makes it an ideal choice for aerospace applications where high temperature resistance and precise signal transmission are paramount.
Key Features
- Standard Number: BS EN 4604-003:2019
- Pages: 14
- Release Date: October 3, 2019
- ISBN: 978 0 539 04512 3
- Status: Standard
Unmatched Performance in Extreme Conditions
Designed to withstand the rigors of aerospace environments, this coaxial cable is engineered to deliver consistent performance even under extreme conditions. With a temperature rating of up to 200 °C, it ensures reliable signal transmission without degradation, making it a critical component in aerospace systems.
Precision Engineering
The BS EN 4604-003:2019 standard represents the pinnacle of precision engineering. Each cable is manufactured to exacting specifications, ensuring uniformity and consistency across all units. This attention to detail guarantees that every cable meets the stringent requirements of aerospace applications.
Applications
This coaxial cable is specifically designed for use in aerospace applications, where reliability and performance are non-negotiable. It is suitable for a wide range of uses, including:
- Signal transmission in aircraft systems
- Data communication in spacecraft
- High-frequency applications in avionics
Why Choose BS EN 4604-003:2019?
Choosing the BS EN 4604-003:2019 standard means opting for a product that has been rigorously tested and proven to meet the highest standards of quality and performance. Its robust design and high-temperature tolerance make it an indispensable component in any aerospace application.
Technical Specifications
The technical specifications of this coaxial cable are meticulously defined to ensure optimal performance. With a characteristic impedance of 50 ohms, it is perfectly suited for high-frequency signal transmission, minimizing signal loss and ensuring clarity and precision.
Compliance and Standards
The BS EN 4604-003:2019 standard is part of the Aerospace series, which is recognized globally for its stringent quality and performance criteria. Compliance with this standard ensures that the cable meets all necessary regulatory requirements, providing peace of mind to manufacturers and end-users alike.
Conclusion
In the demanding world of aerospace technology, the BS EN 4604-003:2019 Aerospace Series Coaxial Cable stands out as a reliable and high-performance solution for signal transmission. Its robust construction, high-temperature tolerance, and compliance with international standards make it an essential component for any aerospace application.
Invest in the BS EN 4604-003:2019 standard to ensure your aerospace systems benefit from the highest quality signal transmission capabilities available. With its proven track record and exceptional performance, this coaxial cable is the ideal choice for those who demand the best.
BS EN 4604-003:2019
This standard BS EN 4604-003:2019 Aerospace series. Cable, electrical, for signal transmission is classified in these ICS categories:
- 49.060 Aerospace electric equipment and systems
This document specifies the characteristics of a UV laser printable coaxial cable, 50 Ω, type WZ, for use in aircraft electrical systems at operating temperatures between – 65 °C and 200 °C and especially for high frequency up to 3 GHz.