IEC 62962:2019 PDF
Particular requirements for load-shedding equipment (LSE)
Particular requirements for load-shedding equipment (LSE)
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 271
- Дата публикации:
- 13 сентября 2019 г.
- Издание:
- IEC IS 62962 edition 1 version 1
- ICS:
- 27.015
IEC 62962:2019 The purpose of this document is to provide requirements for equipment to be used in energy efficiency systems. This document covers load-shedding equipment (LSE). Guidelines relating to safety for LSE as given in IEC Guide 110 have been followed. This document applies to load-shedding equipment for household and similar uses. The load-shedding function is used in energy management systems to optimize the overall use of electrical energy including production and storage. Load-shedding can be used for example for energy efficiency purposes as per IEC 60364-8-1:2019.
Abstract
Overview
IEC 62962:2019 is an international standard published by the International Electrotechnical Commission (IEC) that defines particular requirements for load-shedding equipment (LSE). This standard specifically addresses equipment designed for use in energy efficiency and energy management systems in household and similar applications. Load-shedding equipment plays a crucial role in optimizing electrical energy consumption, production, and storage by selectively reducing electrical loads.
The standard follows safety guidelines outlined in IEC Guide 110 and aligns with energy efficiency practices such as those described in IEC 60364-8-1:2019. It provides comprehensive specifications on performance, design, testing, and classification of LSEs, ensuring optimal operation and safety within energy management frameworks.
Key Topics
- Scope and Application: IEC 62962 applies to load-shedding equipment intended for household and comparable uses, enabling energy management and efficiency.
- General Requirements: Details on operational conditions, architecture, and functional safety of LSE devices.
- Testing Protocols: Procedures for environmental and operational testing, including conditions for temperature, humidity, altitude, insulation resistance, and dielectric strength.
- Rated Values and Performance Criteria: Specifications of rated operational voltages, current limits, making and breaking capacities, frequency, and short-circuit current resistance.
- Classification: Categorization of LSEs by functional category, switching method, current adjustability, design, mounting type, terminal type, protection against external influences, and number of poles.
- Markings and Documentation: Guidelines for labels, identification, and documentation to ensure compliance and safe use.
- Electrical Safety: Protection measures against electric shock, including terminal design and testing to prevent hazards during operation and installation.
- Terminals and Connections: Requirements for copper conductor terminals including screw and screwless types, with robust mechanical strength, corrosion resistance, and reliable clamping mechanisms.
- Construction and Durability: Mechanical design standards related to insulating materials, fixing methods, knob attachments, operating means, and resistance to ageing and humidity.
- Operational Mechanisms: Requirements for mechanisms including position indication, locking, making and breaking actions, and status indicators to facilitate safe and reliable load-shedding operations.
Applications
IEC 62962:2019 is vital for manufacturers, system integrators, and regulatory bodies involved in the design, deployment, and certification of load-shedding equipment. Practical applications include:
- Residential Energy Management Systems: LSE devices compliant with IEC 62962 help households optimize electricity consumption, reducing costs and environmental footprint.
- Demand Response Solutions: Facilitates automated or manual load control during peak demand periods to maintain grid stability.
- Energy Storage Integration: Ensures balanced load distribution when electrical energy production and storage components operate concurrently.
- Safety Assurance: Establishes safety protocols preventing electric shock and system failures, vital for consumer protection and regulatory compliance.
- Smart Grid Components: Acts as an essential element within smart grid frameworks to enhance energy efficiency and operational reliability.
Related Standards
- IEC Guide 110: Provides overarching safety guidelines for electrical equipment, which are adhered to in the development of IEC 62962.
- IEC 60364-8-1:2019: Covers electrical installations and energy efficiency measures, forming a foundation upon which load-shedding functionalities are implemented.
- IEC 60439 and IEC 61439 Series: Standards related to low-voltage switchgear assemblies, often incorporating load-shedding devices.
- IEC 60947 Series: Pertains to low-voltage switchgear and controlgear, influencing switching components within LSEs.
- IEC 61508: Addresses functional safety of electrical systems, providing frameworks often referenced in safety-critical equipment design.
By complying with IEC 62962:2019, manufacturers ensure their load-shedding equipment meets rigorous performance, safety, and reliability standards, contributing to more efficient electrical energy management in residential and similar environments. This standard supports innovations in energy saving and smart technology integration, reinforcing global efforts toward sustainable electricity use.
Технические детали
- Технический комитет
- SC 23K - Electrical Energy Efficiency products
- SKU
- IEC 62962:2019
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