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>BSI Standards >13 ENVIRONMENT. HEALTH PROTECTION. SAFETY>13.020 Environment protection>13.020.01 Environment and environmental protection in general>BS EN IEC 62321-3-1:2026 Determination of certain substances in electrotechnical products Screening. Lead, mercury, cadmium, total chromium, total bromine, total phosphorus, total chlorine, total tin and total antimony content by X-ray fluorescence spectrometry
immediate downloadReleased: 2026-07-07
BS EN IEC 62321-3-1:2026 Determination of certain substances in electrotechnical products Screening. Lead, mercury, cadmium, total chromium, total bromine, total phosphorus, total chlorine, total tin and total antimony content by X-ray fluorescence spectrometry

BS EN IEC 62321-3-1:2026

Determination of certain substances in electrotechnical products Screening. Lead, mercury, cadmium, total chromium, total bromine, total phosphorus, total chlorine, total tin and total antimony content by X-ray fluorescence spectrometry

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Standard number:BS EN IEC 62321-3-1:2026
Pages:52
Released:2026-07-07
ISBN:978 0 539 12621 1
Status:Standard
DESCRIPTION

BS EN IEC 62321-3-1:2026


This standard BS EN IEC 62321-3-1:2026 Determination of certain substances in electrotechnical products is classified in these ICS categories:
  • 43.040.10 Electrical and electronic equipment
  • 13.020.01 Environment and environmental protection in general
  • 29.020 Electrical engineering in general
  • 31.020 Electronic components in general
  • 13.020.40 Pollution, pollution control and conservation
IEC 62321-3-1:2026 is available as IEC 62321-3-1:2026 RLV which contains the International Standard and its Redline version, showing all changes of the technical content compared to the previous edition. IEC 62321-3-1:2026 describes the screening analysis of substances, specifically lead (Pb), mercury (Hg), cadmium (Cd), total chromium (Cr), total bromine (Br), total phosphorus (P), assuming the source of P is related to TCEP (CAS 115?96?8), Trixylyl-phosphate (CAS 25155?23?1 ), total chlorine (Cl), assuming the source of Cl is related to SCCP (CAS 85535?84?8), TCEP (CAS 115?96?8) , TBTC (CAS 1461?22?9), total tin (Sn), assuming the source of Sn is related to restricted organo-tin compounds, total antimony (Sb), assuming the source of Sb is related to Pyrochlore, and antimony lead yellow (CAS 8012?00?8 ) in uniform materials found in electrotechnical products, using the analytical technique of X?ray fluorescence (XRF) spectrometry. This edition includes the following significant technical changes with respect to the previous editions of IEC 62321-3-1:2013 and IEC 62321:2008: a) This second edition of IEC 62321-3-1 includes the analysis of additional elements as indicators for additional substances. The selection is based on IEC TR 62936:2016. There are also comments about using the same methology for screening for content of critical raw materials (CRMs). This document has been given the status of a horizontal document in accordance with the ISO/IEC Directives, Part 1.
BS EN IEC 62321-3-1:2026 - Determination of Substances in Electrotechnical Products

BS EN IEC 62321-3-1:2026 - Determination of Certain Substances in Electrotechnical Products

Introducing the BS EN IEC 62321-3-1:2026, a comprehensive standard designed to guide professionals in the electrotechnical industry through the process of screening for specific hazardous substances. This standard is an essential tool for ensuring compliance with environmental regulations and maintaining the safety and sustainability of electrotechnical products.

Overview

The BS EN IEC 62321-3-1:2026 standard provides a detailed methodology for the determination of certain substances in electrotechnical products using X-ray fluorescence spectrometry. This method is crucial for identifying and quantifying the presence of potentially harmful elements such as lead, mercury, cadmium, total chromium, total bromine, total phosphorus, total chlorine, total tin, and total antimony.

Key Features

  • Standard Number: BS EN IEC 62321-3-1:2026
  • Pages: 52
  • Release Date: July 7, 2026
  • ISBN: 978 0 539 12621 1
  • Status: Standard

Why Choose This Standard?

The BS EN IEC 62321-3-1:2026 standard is indispensable for manufacturers, quality assurance professionals, and regulatory bodies involved in the production and oversight of electrotechnical products. By adhering to this standard, organizations can:

  • Ensure Compliance: Meet international regulatory requirements and avoid potential legal and financial penalties.
  • Enhance Product Safety: Identify and mitigate the risks associated with hazardous substances in products.
  • Promote Sustainability: Contribute to environmental protection by reducing the use of harmful materials.
  • Improve Marketability: Gain a competitive edge by demonstrating a commitment to quality and safety.

Detailed Methodology

The standard outlines a precise methodology for using X-ray fluorescence spectrometry, a non-destructive analytical technique, to screen for the presence of specific substances. This technique is favored for its accuracy, efficiency, and ability to provide rapid results without damaging the sample.

Key steps in the methodology include:

  1. Sample Preparation: Proper preparation of samples to ensure accurate and reliable results.
  2. Calibration: Use of calibration standards to ensure the spectrometer is providing accurate measurements.
  3. Measurement: Conducting the X-ray fluorescence analysis to detect and quantify the target substances.
  4. Data Analysis: Interpreting the results to determine compliance with regulatory limits.

Applications

This standard is applicable across a wide range of electrotechnical products, including but not limited to:

  • Consumer electronics
  • Industrial machinery
  • Automotive components
  • Telecommunications equipment
  • Household appliances

Conclusion

The BS EN IEC 62321-3-1:2026 standard is a vital resource for any organization involved in the production or regulation of electrotechnical products. By implementing the guidelines and methodologies outlined in this standard, companies can ensure their products are safe, compliant, and environmentally friendly. This not only protects consumers and the environment but also enhances the reputation and marketability of the products.

Invest in the BS EN IEC 62321-3-1:2026 standard today to stay ahead in the ever-evolving landscape of electrotechnical product safety and compliance.