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Homepage>BS Standards>49 AIRCRAFT AND SPACE VEHICLE ENGINEERING>49.060 Aerospace electric equipment and systems>BS EN 4612-004:2019 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. Single extruded wall for open applications, with jacket and screen (braid). UV laser printable. Product standard
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BS EN 4612-004:2019 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. Single extruded wall for open applications, with jacket and screen (braid). UV laser printable. Product standard

BS EN 4612-004:2019

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. Single extruded wall for open applications, with jacket and screen (braid). UV laser printable. Product standard

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Standard number:BS EN 4612-004:2019
Pages:14
Released:2019-09-02
ISBN:978 0 539 03572 8
Status:Standard
BS EN 4612-004:2019 Aerospace Series Cables

BS EN 4612-004:2019 Aerospace Series Cables

Introducing the BS EN 4612-004:2019, 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 the innovation and precision required in the field of aerospace engineering, providing a comprehensive guideline for electrical cables used in general-purpose, single, and multicore assemblies.

Key Features

  • Standard Number: BS EN 4612-004:2019
  • Pages: 14
  • Release Date: September 2, 2019
  • ISBN: 978 0 539 03572 8
  • Status: Standard

Product Overview

The BS EN 4612-004:2019 standard is part of the prestigious Aerospace series, focusing on electrical cables that are essential for the safe and efficient operation of aerospace vehicles. These cables are designed for general-purpose use, making them versatile and adaptable to a wide range of applications within the aerospace sector.

XLETFE Family

The cables covered by this standard belong to the XLETFE Family, known for their exceptional durability and performance. XLETFE, or Cross-Linked Ethylene Tetrafluoroethylene, is a high-performance material that offers excellent resistance to heat, chemicals, and abrasion, making it ideal for the demanding conditions of aerospace environments.

Construction and Design

These cables are available in both jacketed and screened, as well as jacketed tin-plated copper configurations. The tin-plated copper provides superior conductivity and corrosion resistance, ensuring reliable performance over the cable's lifespan. The single extruded wall design is optimized for open applications, providing a robust and efficient solution for various aerospace needs.

Temperature Range

One of the standout features of the BS EN 4612-004:2019 standard is its wide operating temperature range. These cables are engineered to function effectively in temperatures ranging from -65°C to 135°C, making them suitable for use in extreme conditions often encountered in aerospace applications.

UV Laser Printable

For ease of identification and traceability, the cables are UV laser printable. This feature allows for clear and permanent marking, which is crucial for maintenance and safety checks in aerospace operations.

Applications

The BS EN 4612-004:2019 standard is applicable to a variety of aerospace applications, including but not limited to:

  • Aircraft electrical systems
  • Satellite and space vehicle wiring
  • Military and defense aerospace projects
  • Commercial aviation

Why Choose BS EN 4612-004:2019?

Choosing the BS EN 4612-004:2019 standard ensures that you are using cables that meet the highest industry standards for safety, reliability, and performance. This standard is recognized globally, providing assurance that your aerospace projects are equipped with components that adhere to stringent quality and safety requirements.

Compliance and Quality Assurance

Adhering to the BS EN 4612-004:2019 standard means compliance with international aerospace regulations, which is essential for manufacturers and operators in the industry. This standard is meticulously crafted to ensure that all aspects of cable design, from materials to construction, meet the rigorous demands of aerospace applications.

Conclusion

The BS EN 4612-004:2019 Aerospace Series Cables set a benchmark in the industry, offering unparalleled performance and reliability. Whether you are involved in the design, manufacturing, or maintenance of aerospace vehicles, this standard provides the guidelines necessary to ensure that your electrical systems are up to the task.

Invest in the future of aerospace technology with the BS EN 4612-004:2019 standard, and ensure that your projects are equipped with the best in class electrical cables that the industry has to offer.

DESCRIPTION

BS EN 4612-004:2019


This standard BS EN 4612-004:2019 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 jacketed cables are suitable for airframe use without additional protection when the jacket is present. When the jacket is stripped back the cores may need additional protection. In case of conflict between this standard and other referenced documents the requirements of this standard shall take precedence.