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Homepage>BS Standards>49 AIRCRAFT AND SPACE VEHICLE ENGINEERING>49.060 Aerospace electric equipment and systems>BS EN 4612-006:2019 Aerospace series. Cables, electrical, for general purpose, single and multicore assembly. XLETFE Family. Jacketed or screened and jacketed Tin plated copper. Operating temperatures, between - 65 °C and 135 °C. Dual extruded wall for open applications, with jacket and screen (braid). UV laser printable. Product standard
immediate downloadReleased: 2019-09-02
BS EN 4612-006:2019 Aerospace series. Cables, electrical, for general purpose, single and multicore assembly. XLETFE Family. Jacketed or screened and jacketed Tin plated copper. Operating temperatures, between - 65 °C and 135 °C. Dual extruded wall for open applications, with jacket and screen (braid). UV laser printable. Product standard

BS EN 4612-006:2019

Aerospace series. Cables, electrical, for general purpose, single and multicore assembly. XLETFE Family. Jacketed or screened and jacketed Tin plated copper. Operating temperatures, between - 65 °C and 135 °C. Dual extruded wall for open applications, with jacket and screen (braid). UV laser printable. Product standard

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Standard number:BS EN 4612-006:2019
Pages:16
Released:2019-09-02
ISBN:978 0 539 03574 2
Status:Standard
BS EN 4612-006:2019 Aerospace Series Cables

BS EN 4612-006:2019 Aerospace Series Cables

Introducing the BS EN 4612-006:2019, a cutting-edge standard in the aerospace industry, designed to meet the rigorous demands of modern aviation and aerospace applications. This product standard is a testament to innovation and precision, ensuring that electrical cables used in aerospace settings are of the highest quality and reliability.

Product Overview

The BS EN 4612-006:2019 standard pertains to the Aerospace series of electrical cables that are intended for general-purpose use. These cables are available in both single and multicore assemblies, making them versatile for a wide range of applications. The cables belong to the XLETFE Family, known for their exceptional performance and durability.

Key Features

  • Jacketed or Screened and Jacketed: The cables are available with a jacket or with both a screen and a jacket, providing enhanced protection and performance.
  • Tin Plated Copper: The use of tin-plated copper ensures excellent conductivity and resistance to corrosion, making these cables ideal for demanding environments.
  • Operating Temperatures: These cables are designed to operate efficiently in a wide temperature range, from -65 °C to 135 °C, ensuring reliability in extreme conditions.
  • Dual Extruded Wall: The dual extruded wall design is perfect for open applications, offering additional durability and protection.
  • UV Laser Printable: The cables are UV laser printable, allowing for easy identification and customization.

Technical Specifications

Standard Number BS EN 4612-006:2019
Pages 16
Released 2019-09-02
ISBN 978 0 539 03574 2
Status Standard

Why Choose BS EN 4612-006:2019?

The aerospace industry demands the highest standards of safety, reliability, and performance. The BS EN 4612-006:2019 standard is specifically designed to meet these demands, providing a comprehensive framework for the production and use of electrical cables in aerospace applications. By adhering to this standard, manufacturers and users can ensure that their products meet the stringent requirements necessary for safe and efficient operation in the aerospace sector.

Enhanced Safety and Reliability

Safety is paramount in aerospace applications, and the BS EN 4612-006:2019 standard ensures that electrical cables are manufactured to the highest safety standards. The use of high-quality materials and advanced manufacturing techniques results in cables that are not only reliable but also capable of withstanding the harsh conditions often encountered in aerospace environments.

Versatility and Performance

Whether you are dealing with single or multicore assemblies, the BS EN 4612-006:2019 standard provides the flexibility needed to address a wide range of applications. The cables' ability to operate in extreme temperatures and their resistance to environmental factors make them an ideal choice for various aerospace applications.

Advanced Material Technology

The XLETFE Family of cables is renowned for its advanced material technology, which offers superior performance and longevity. The use of tin-plated copper and dual extruded walls ensures that these cables can handle the demands of modern aerospace applications, providing peace of mind to manufacturers and users alike.

Conclusion

In conclusion, the BS EN 4612-006:2019 standard represents a significant advancement in the field of aerospace electrical cables. With its focus on safety, reliability, and performance, this standard is an essential resource for anyone involved in the design, manufacture, or use of electrical cables in the aerospace industry. By choosing products that adhere to this standard, you are ensuring that your aerospace applications are equipped with the best possible components, capable of meeting the challenges of today's demanding environments.

Embrace the future of aerospace technology with the BS EN 4612-006:2019 standard, and experience the difference that quality and innovation can make in your applications.

DESCRIPTION

BS EN 4612-006:2019


This standard BS EN 4612-006:2019 Aerospace series. Cables, electrical, for general purpose, single and multicore assembly. XLETFE Family. Jacketed or screened and jacketed is classified in these ICS categories:
  • 49.060 Aerospace electric equipment and systems
This document specifies the characteristics of UV laser printable jacket, tin plated copper conductor, electrical cables Crosslinked Ethylene Tetra Fluoro Ethylene co-polymer (XLETFE) family for use in the on-board electrical systems of aircraft operating at temperatures between – 65 °C and 135 °C, operating at voltages not exceeding 600 V rms at sea level. This insulation system has been used in aerospace applications using 115 V (phase-to-neutral) 400 Hz ac and 28 Vdc. Verification of the suitability of cables for use in other electrical systems is the responsibility of the user. These cables are suitable for airframe use without additional protection. In case of conflict between this standard and other referenced documents the requirements of this standard shall take precedence.