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Homepage>BS Standards>29 ELECTRICAL ENGINEERING>29.120 Electrical accessories>29.120.70 Relays>BS EN IEC 61810-10:2019 Electromechanical elementary relays Additional functional aspects and safety requirements for high-capacity relays
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BS EN IEC 61810-10:2019 Electromechanical elementary relays Additional functional aspects and safety requirements for high-capacity relays

BS EN IEC 61810-10:2019

Electromechanical elementary relays Additional functional aspects and safety requirements for high-capacity relays

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Standard number:BS EN IEC 61810-10:2019
Pages:68
Released:2019-10-07
ISBN:978 0 580 94141 2
Status:Standard

BS EN IEC 61810-10:2019 - Electromechanical Elementary Relays: Additional Functional Aspects and Safety Requirements for High-Capacity Relays

Introducing the BS EN IEC 61810-10:2019, a comprehensive standard that sets the benchmark for electromechanical elementary relays, focusing on additional functional aspects and safety requirements for high-capacity relays. This standard is an essential resource for professionals in the field of electrical engineering, providing critical guidelines to ensure the reliability and safety of high-capacity relay systems.

Overview of the Standard

The BS EN IEC 61810-10:2019 is a pivotal document that addresses the intricate details of electromechanical relays, particularly those with high-capacity functionalities. Released on October 7, 2019, this standard is a testament to the evolving needs of the industry, ensuring that relay systems are not only efficient but also adhere to the highest safety standards.

With a total of 68 pages, this standard delves into the nuances of relay design, operation, and safety, making it an indispensable tool for engineers, designers, and safety officers who are involved in the development and maintenance of electrical systems.

Key Features and Benefits

  • Comprehensive Coverage: The standard provides an in-depth analysis of the functional aspects of high-capacity relays, ensuring that all potential scenarios and operational conditions are considered.
  • Safety First: Safety is a paramount concern in the design and operation of electromechanical relays. This standard outlines the necessary safety requirements to prevent failures and ensure the protection of both equipment and personnel.
  • Industry Compliance: Adhering to the BS EN IEC 61810-10:2019 ensures that your relay systems are compliant with international standards, facilitating smoother operations and reducing the risk of non-compliance penalties.
  • Enhanced Reliability: By following the guidelines set forth in this standard, you can enhance the reliability and performance of your relay systems, leading to increased operational efficiency and reduced downtime.

Technical Specifications

The BS EN IEC 61810-10:2019 standard is identified by the standard number BS EN IEC 61810-10:2019 and is published under the ISBN 978 0 580 94141 2. It is currently in the status of a standard, reflecting its acceptance and implementation across the industry.

Who Should Use This Standard?

This standard is designed for a wide range of professionals, including:

  • Electrical Engineers: Those involved in the design and implementation of relay systems will find this standard invaluable for ensuring their designs meet the latest safety and functional requirements.
  • Safety Officers: Professionals responsible for the safety of electrical systems can use this standard to assess and mitigate potential risks associated with high-capacity relays.
  • Quality Assurance Teams: Ensuring that products meet industry standards is crucial for quality assurance teams, and this document provides the necessary guidelines to achieve that.
  • Manufacturers: Relay manufacturers can use this standard to guide the development of new products, ensuring they meet the latest industry requirements and customer expectations.

Why Choose BS EN IEC 61810-10:2019?

Choosing the BS EN IEC 61810-10:2019 standard means opting for a document that is at the forefront of relay technology. It is crafted by experts in the field, ensuring that it addresses the most pressing challenges and requirements faced by today's electrical systems. By implementing this standard, you are not only enhancing the safety and functionality of your systems but also positioning your operations to meet future demands and innovations in relay technology.

Conclusion

In the ever-evolving landscape of electrical engineering, staying ahead of the curve is crucial. The BS EN IEC 61810-10:2019 standard provides the tools and knowledge necessary to ensure that your high-capacity relay systems are both safe and efficient. With its comprehensive guidelines and focus on safety, this standard is an essential addition to any professional's library, paving the way for innovation and excellence in the field of electromechanical relays.

Embrace the future of relay technology with the BS EN IEC 61810-10:2019 and ensure your systems are equipped to handle the demands of tomorrow.

DESCRIPTION

BS EN IEC 61810-10:2019


This standard BS EN IEC 61810-10:2019 Electromechanical elementary relays is classified in these ICS categories:
  • 29.120.70 Relays
IEC 61810-10:2019, with functional and safety aspects, applies to electromechanical elementary relays (non-specified time all-or-nothing relays) with high capability requirements like breaking or short circuit capabilities and similar for incorporation into low-voltage equipment. These relays may have a specific design to extinguish the electric arc between contacts (e.g. by magnetic blow-out), or use an insulation coordination not covered by IEC 61810-1 (e.g. by gas filled contact chambers), or require safety assessments not covered by IEC 61810-1 (e.g. for higher loads).
It defines additional requirements for high-capacity relays with generic performance intended for use in applications in smart grids, electric vehicles and other applications where, for example, battery charge/discharge switching is used, such as:
• electrical energy storage (EES) systems,
• solar photovoltaic energy systems,
• electric road vehicles (EV) and electric industrial trucks,
• power electronic systems and equipment,
• secondary cells and batteries,
• road vehicles.
Compliance with the requirements of this standard is verified by the type tests indicated.