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>BSI Standards >97 DOMESTIC AND COMMERCIAL EQUIPMENT. ENTERTAINMENT. SPORTS>97.120 Automatic controls for household use>BS EN IEC 60730-2-13:2025 Automatic electrical controls Particular requirements for humidity sensing controls
immediate downloadReleased: 2025-10-08

BS EN IEC 60730-2-13:2025

Automatic electrical controls Particular requirements for humidity sensing controls

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Standard number:BS EN IEC 60730-2-13:2025
Pages:32
Released:2025-10-08
ISBN:978 0 539 31759 6
Status:Standard
BS EN IEC 60730-2-13:2025 - Automatic Electrical Controls for Humidity Sensing

BS EN IEC 60730-2-13:2025 - Automatic Electrical Controls for Humidity Sensing

Introducing the BS EN IEC 60730-2-13:2025, a comprehensive standard that sets the benchmark for automatic electrical controls with a focus on humidity sensing. This standard is essential for manufacturers, engineers, and quality assurance professionals who are involved in the design, production, and testing of humidity sensing controls. Released on October 8, 2025, this document is a critical resource for ensuring compliance and enhancing the reliability of humidity control systems.

Key Features and Benefits

The BS EN IEC 60730-2-13:2025 standard provides detailed requirements and guidelines that are crucial for the development of effective humidity sensing controls. Here are some of the key features and benefits:

  • Comprehensive Coverage: Spanning 32 pages, this standard offers an in-depth exploration of the specific requirements for humidity sensing controls, ensuring that all aspects of design and functionality are addressed.
  • Up-to-Date Information: As a document released in 2025, it incorporates the latest technological advancements and industry practices, making it a current and relevant resource for professionals.
  • International Recognition: Being part of the IEC (International Electrotechnical Commission) standards, it is recognized globally, facilitating international trade and cooperation.
  • Enhanced Safety and Performance: By adhering to this standard, manufacturers can ensure that their products meet high safety and performance criteria, reducing the risk of malfunctions and enhancing user satisfaction.

Who Should Use This Standard?

The BS EN IEC 60730-2-13:2025 is an invaluable tool for a wide range of professionals, including:

  • Product Designers and Engineers: Those involved in the creation and development of humidity sensing controls will find this standard essential for ensuring their designs meet industry requirements.
  • Quality Assurance Teams: QA professionals can use this standard to develop testing protocols and ensure that products comply with the necessary safety and performance standards.
  • Regulatory Bodies: Organizations responsible for certifying and regulating electrical controls will rely on this standard to evaluate product compliance.
  • Manufacturers: Companies producing humidity sensing controls can use this standard to guide their production processes and ensure their products are market-ready.

Technical Specifications

Here are the technical details of the BS EN IEC 60730-2-13:2025 standard:

Standard Number BS EN IEC 60730-2-13:2025
Pages 32
Release Date October 8, 2025
ISBN 978 0 539 31759 6
Status Standard

Why Choose BS EN IEC 60730-2-13:2025?

Choosing the BS EN IEC 60730-2-13:2025 standard means opting for a document that is not only comprehensive but also authoritative. It is designed to help you navigate the complexities of humidity sensing controls with ease and confidence. By integrating this standard into your processes, you can achieve:

  • Improved Product Quality: Ensure that your products are built to the highest standards, enhancing their reliability and performance.
  • Regulatory Compliance: Meet the necessary regulatory requirements, reducing the risk of non-compliance and associated penalties.
  • Market Competitiveness: Stand out in the market by offering products that are certified to meet international standards.
  • Customer Trust: Build trust with your customers by providing them with products that are safe, reliable, and efficient.

Conclusion

The BS EN IEC 60730-2-13:2025 is more than just a standard; it is a vital tool for anyone involved in the field of humidity sensing controls. Its comprehensive guidelines and requirements ensure that products are not only compliant but also of the highest quality. Whether you are a manufacturer, engineer, or regulatory body, this standard is an indispensable resource that will help you achieve excellence in your field.

DESCRIPTION

BS EN IEC 60730-2-13:2025


This standard BS EN IEC 60730-2-13:2025 Automatic electrical controls is classified in these ICS categories:
  • 97.120 Automatic controls for household use
IEC 60730-2-13:2025 applies to automatic electrical humidity sensing controls • for use in, on, or in association with equipment for household appliance and similar use; NOTE 1 Throughout this document, the word "equipment" means "appliance and equipment" and "controls" means "humidity sensing control". • for building automation within the scope of ISO 16484 series and IEC 63044 series (HBES/BACS); • for equipment that is used by the public, such as equipment intended to be used in shops, offices, hospitals, farms and commercial and industrial applications; EXAMPLE 1 Humidity sensing controls for commercial catering, heating and air-conditioning equipment. • that are smart enabled controls; EXAMPLE 2 Smart grid control, remote interfaces/control of energy-consuming equipment including computer or smart phone. • that are AC or DC powered controls with a rated voltage not exceeding 690 V AC or 600 V DC; • used in, on, or in association with equipment that use electricity, gas, oil, solid fuel, solar thermal energy, etc., or a combination thereof; • utilized as part of a control system or controls which are mechanically integral with multifunctional controls having non-electrical outputs; • using NTC or PTC thermistors and to discrete thermistors, requirements for which are contained in Annex J; • that are mechanically or electrically operated, responsive to or controlling such characteristics as temperature, pressure, passage of time, humidity, light, electrostatic effects, flow, or liquid level, current, voltage, acceleration, or combinations thereof; • as well as manual controls when such are electrically and/or mechanically integral with automatic controls. NOTE 2 Requirements for manually actuated mechanical switches not forming part of an automatic control are contained in IEC 61058-1-1. This document applies to – the inherent safety of automatic electrical humidity sensing controls, and – functional safety of automatic electrical humidity sensing controls and safety related systems, – humidity sensing controls where the performance (for example the effect of EMC phenomena) of the product can impair the overall safety and performance of the controlled system, – the operating values, operating times, and operating sequences where such are associated with equipment safety. This document specifies the requirements for construction, operation and testing of automatic electrical humidity sensing controls used in, on, or in association with an equipment. This document does not • apply to automatic electrical humidity sensing controls intended exclusively for industrial process applications unless explicitly mentioned in the relevant part 2 or the equipment standard. However, this document can be applied to evaluate humidity sensing controls intended specifically for industrial applications in cases where no relevant safety standard exists; • take into account the response value of an automatic action of a humidity sensing control, if such a response value is dependent upon the method of mounting the humidity sensing control in the equipment. Where a response value is of significant purpose for the protection of the user, or surroundings, the value defined in the appropriate equipment standard or as determined by the manufacturer will apply; • address the integrity of the output signal to the network devices, such as interoperability with other devices unless it has been evaluated a