BS EN 60623:2017
Secondary cells and batteries containing alkaline or other non-acid electrolytes. Vented nickel-cadmium prismatic rechargeable single cells
| Standard number: | BS EN 60623:2017 |
| Pages: | 30 |
| Released: | 2017-05-26 |
| ISBN: | 978 0 580 84739 4 |
| Status: | Standard |
BS EN 60623:2017
This standard BS EN 60623:2017 Secondary cells and batteries containing alkaline or other non-acid electrolytes. Vented nickel-cadmium prismatic rechargeable single cells is classified in these ICS categories:
- 29.220.99 Other cells and batteries
IEC 60623 specifies marking, designation, dimensions, tests and requirements for vented nickel-cadmium prismatic secondary single cells.
In this context, "prismatic" refers to cells having rectangular sides and base.
When there exists an IEC standard specifying test conditions and requirements for cells used in special applications and which is in conflict with this document, the former takes precedence.
BS EN 60623:2017 - Vented Nickel-Cadmium Prismatic Rechargeable Single Cells
Discover the comprehensive standard that defines the specifications and requirements for vented nickel-cadmium prismatic rechargeable single cells. The BS EN 60623:2017 is an essential document for manufacturers, engineers, and quality assurance professionals involved in the design, production, and testing of secondary cells and batteries containing alkaline or other non-acid electrolytes.
Overview
The BS EN 60623:2017 standard provides detailed guidelines and specifications for vented nickel-cadmium prismatic rechargeable single cells. This standard is crucial for ensuring the safety, reliability, and performance of these types of batteries, which are widely used in various industrial and consumer applications.
Key Features
- Standard Number: BS EN 60623:2017
- Pages: 30
- Release Date: 26th May 2017
- ISBN: 978 0 580 84739 4
- Status: Standard
Why Choose BS EN 60623:2017?
This standard is indispensable for professionals who are committed to maintaining high standards of quality and safety in the production and use of nickel-cadmium batteries. Here are some reasons why this standard is a must-have:
Comprehensive Guidelines
The document provides a thorough set of guidelines that cover all aspects of vented nickel-cadmium prismatic rechargeable single cells. From design and construction to performance and testing, every critical aspect is addressed to ensure that the batteries meet the highest standards of quality and safety.
Ensures Safety and Reliability
Safety is paramount when it comes to batteries, and the BS EN 60623:2017 standard ensures that all necessary precautions are taken to prevent accidents and malfunctions. By adhering to this standard, manufacturers can guarantee that their products are safe for use and reliable in performance.
Industry Compliance
Compliance with industry standards is crucial for any business involved in the production of batteries. The BS EN 60623:2017 standard ensures that your products meet the necessary regulatory requirements, facilitating smoother market entry and acceptance.
Enhanced Performance
By following the guidelines set out in this standard, manufacturers can enhance the performance of their nickel-cadmium batteries. This includes improvements in energy efficiency, longevity, and overall functionality, which are critical factors for end-users.
Applications
Vented nickel-cadmium prismatic rechargeable single cells are used in a wide range of applications, including:
- Industrial equipment
- Emergency lighting systems
- Telecommunications
- Railway and aviation systems
- Consumer electronics
Conclusion
The BS EN 60623:2017 standard is an invaluable resource for anyone involved in the production, testing, or use of vented nickel-cadmium prismatic rechargeable single cells. By adhering to this standard, you can ensure that your products are safe, reliable, and compliant with industry regulations, ultimately leading to greater customer satisfaction and business success.
Invest in the BS EN 60623:2017 standard today and take the first step towards excellence in battery production and performance.
