Incompatibility of connectors for DC-application in photovoltaic systems

IEC TR 63225:2019 highlights the problem of incompatibility of connectors for DC-application in photovoltaic systems (DC connectors) produced by different manufacturers. It addresses four particular issues in that context:
background information on incompatibility of DC connectors from different manufacturers;
observations and challenges concerning the handling of DC connectors from different manufacturers;
stakeholders concerned by the incompatibility of DC connectors;
recommendations for long-term standardization and interim measures to address incompatibility of DC connectors

General Information

Status
Published
Publication Date
12-Nov-2019
Current Stage
PPUB - Publication issued
Start Date
13-Nov-2019
Completion Date
14-Nov-2019
Ref Project

IEC TR 63225:2019 – Incompatibility of DC Connectors in Photovoltaic Systems

Overview

IEC TR 63225:2019 addresses a critical issue impacting the safety and reliability of photovoltaic (PV) systems worldwide-the incompatibility of DC connectors produced by different manufacturers. DC connectors serve as electrical interfaces in solar PV systems, and their interoperability is vital for safe and efficient operation. This technical report by the International Electrotechnical Commission (IEC) highlights challenges caused by incompatibility, its safety implications, and proposes measures for standardization.

Key Topics

  • Background on DC Connector Incompatibility
    Since early terrestrial PV system deployment, a variety of DC connectors with differing designs were available. Over time, the MC4 connector type gained dominance, but no international interface standard exists for intermateability between MC4-compatible connectors from different manufacturers. Variations in metal alloys, contact designs, mechanical tolerances, and polymer materials cause increased resistance risks, corrosion, thermal expansion inconsistencies, and accelerated aging when incompatible connectors are mated.

  • Challenges in Handling Mixed Connectors
    Installers often face practical constraints such as unknown or inaccessible connector manufacturers, warranty concerns, and reluctance to field-crimp connectors, leading them to mate connectors from different brands despite warnings. Adapter cables exist but can be costly and introduce extra failure points. This mismatch has been linked to fire hazards and reduced system performance.

  • Stakeholders Affected
    The incompatibility issues impact multiple groups including:

    • PV system owners and residents who may encounter safety hazards and financial loss due to system failures.
    • Module, inverter, and cable manufacturers limited in connector options and responsible for warranties.
    • Connector manufacturers needing a viable pathway to ensure cross-brand compatibility.
    • Installers, often forced to compromise on safety due to supply constraints.
    • Insurance companies, risking financial exposure from latent hazards in PV installations.
  • Recommendations and Proposed Actions
    IEC TR 63225 emphasizes a two-tier approach:

    • Long-term goal: Development of a universal interface standard guaranteeing compatibility in materials, dimensions, tolerances, and quality management. This standard would be backed by enhanced test protocols for long-term reliability.
    • Interim measures: Awareness campaigns and cautionary practices to minimize risks until a robust standard is established.

Applications

IEC TR 63225:2019 offers practical value for a variety of applications within the solar photovoltaic sector, including:

  • PV Installation and Maintenance: Guiding installers on the risks and proper handling of DC connectors from diverse manufacturers.
  • Product Design and Manufacturing: Helping connector producers align their designs and quality systems towards eventual standardization, improving interoperability.
  • Safety Assessment and Risk Management: Aiding safety inspectors, certification bodies, and insurers in identifying and mitigating hazards linked to connector incompatibility.
  • Procurement and Supply Chain Management: Informing decisions for module and inverter manufacturers regarding connector selection and warranty conditions.

By fostering international cooperation and informed practices, this report contributes to enhancing PV system safety, reliability, and market confidence globally.

Related Standards

  • IEC 62852 – Connectors for DC-application in photovoltaic systems: Defines safety requirements and testing procedures but does not guarantee intermateability between manufacturers.
  • IEC 61730-1 – Photovoltaic module safety standard focused on electrical operation but not on interconnection issues.
  • IEC 62548 – Design requirements for photovoltaic arrays, explicitly discourages connecting DC connectors from different manufacturers.
  • IEC 60364-7-712 – Installation rules for PV power supply systems, also prohibits mixing DC connectors from different sources.

Understanding and complying with these related IEC standards helps ensure that PV systems operate safely and reliably over their service life.


Keywords: IEC TR 63225, DC connector incompatibility, photovoltaic systems, MC4 connectors, PV system safety, connector interoperability, international standards, photovoltaic connectors, solar energy installation, PV system reliability, IEC standards, electrical connectors for solar systems.

Technical report
IEC TR 63225:2019 - Incompatibility of connectors for DC-application in photovoltaic systems
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Frequently Asked Questions

IEC TR 63225:2019 is a technical report published by the International Electrotechnical Commission (IEC). Its full title is "Incompatibility of connectors for DC-application in photovoltaic systems". This standard covers: IEC TR 63225:2019 highlights the problem of incompatibility of connectors for DC-application in photovoltaic systems (DC connectors) produced by different manufacturers. It addresses four particular issues in that context: background information on incompatibility of DC connectors from different manufacturers; observations and challenges concerning the handling of DC connectors from different manufacturers; stakeholders concerned by the incompatibility of DC connectors; recommendations for long-term standardization and interim measures to address incompatibility of DC connectors

IEC TR 63225:2019 highlights the problem of incompatibility of connectors for DC-application in photovoltaic systems (DC connectors) produced by different manufacturers. It addresses four particular issues in that context: background information on incompatibility of DC connectors from different manufacturers; observations and challenges concerning the handling of DC connectors from different manufacturers; stakeholders concerned by the incompatibility of DC connectors; recommendations for long-term standardization and interim measures to address incompatibility of DC connectors

IEC TR 63225:2019 is classified under the following ICS (International Classification for Standards) categories: 01 - GENERALITIES. TERMINOLOGY. STANDARDIZATION. DOCUMENTATION; 27.160 - Solar energy engineering. The ICS classification helps identify the subject area and facilitates finding related standards.

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Standards Content (Sample)


IEC TR 63225 ®
Edition 1.0 2019-11
TECHNICAL
REPORT
Incompatibility of connectors for DC-application in photovoltaic systems
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IEC TR 63225 ®
Edition 1.0 2019-11
TECHNICAL
REPORT
Incompatibility of connectors for DC-application in photovoltaic systems

INTERNATIONAL
ELECTROTECHNICAL
COMMISSION
ICS 27.160 ISBN 978-2-8322-7534-4

– 2 – IEC TR 63225:2019 © IEC 2019
CONTENTS
FOREWORD . 3
1 Scope . 5
2 Normative references . 5
3 Terms and definitions . 5
4 Background . 5
5 Observations . 7
6 Affected stakeholders . 7
7 Proposed course of action . 8
7.1 General . 8
7.2 Long-term aim . 8
7.3 Interim measures . 8
8 Conclusion . 9
Bibliography . 10

INTERNATIONAL ELECTROTECHNICAL COMMISSION
____________
INCOMPATIBILITY OF CONNECTORS FOR
DC-APPLICATION IN PHOTOVOLTAIC SYSTEMS

FOREWORD
1) The International Electrotechnical Commission (IEC) is a worldwide organization for standardization comprising
all national electrotechnical committees (IEC National Committees). The object of IEC is to promote international
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The main task of IEC technical committees is to prepare International Standards. However, a
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data of a different kind from that which is normally published as an International Standard, for
example "state of the art".
IEC TR 63225, which is a Technical Report, has been prepared by IEC technical committee 82:
Solar photovoltaic energy systems.
The text of this Technical Report is based on the following documents:
Draft TR Report on voting
82/1499/DTR 82/1552A/RVDTR
Full information on the voting for the approval of this Technical Report can be found in the
report on voting indicated in the above table.
This document has been drafted in accordance with the ISO/IEC Directives, Part 2.

– 4 – IEC TR 63225:2019 © IEC 2019
The committee has decided that the contents of this document will remain unchanged until the
stability date indicated on the IEC website under "http://webstore.iec.ch" in the data related to
the specific document. At this date, the document will be
• reconfirmed,
• withdrawn,
• replaced by a revised edition, or
• amended.
A bilingual version of this publication may be issued at a later date.

INCOMPATIBILITY OF CONNECTORS FOR
DC-APPLICATION IN PHOTOVOLTAIC SYSTEMS

1 Scope
This document highlights the problem of incompatibility of connectors for DC-application in
photovoltaic systems (DC connectors) produced by different manufacturers. It addresses four
particular issues in that context:
• background information on incompatibility of DC connectors from different manufacturers;
• observations and challenges concerning the handling of DC connectors from different
manufacturers;
• stakeholders concerned by the incompatibility of DC connectors;
• recommendations for long-term standardization and interim measures to address
incompatibility of DC connectors.
2 Normative references
IEC 62852, Connectors for DC-application in photovoltaic systems – Safety requirements and
tests
3 Terms and definitions
For the purposes of this document, the terms and definitions given in IEC 62852 and the
following apply.
ISO and IEC maintain terminological databases for use in standardization at the following
addresses:
• IEC Electropedia: available at http://www.electropedia.org/
• ISO Online browsing platform: available at http://www.iso.org/obp
3.1
DC connector
connector designed for use in DC circuits of photovoltaic systems, as defined in IEC 62852.
Note 1 to entry: This document generally refers to connectors of type MC4 or similar, and particularly products that
are often referred to as “MC4-compatible”.
3.2
compatible DC connectors
interoperable DC connectors
intermateable DC connectors
components which terminate conductors for the purpose of providing
connection to and disconnection from a suitable mating component under supervision of one
quality management system
4 Background
In the early years of terrestrial photovoltaics, a range of different DC connectors were available
on the market. They were of distinctly different designs and could not be connected between

– 6 – IEC TR 63225:2019 © IEC 2019
each other. In the early 2000s the connector type MC4 became more and more popular.
Manufacturers started to adapt their connectors to the MC4 type. However, no international or
consortia-based interface technical specifications for this connector type are available.
IEC 62852, often referred to in this context, is a product safety standard and is not intended to
test intermateability.
Several countries report that problems with DC connectors are a major cause for failure such
as fire hazards in PV systems. Reports from different testing laboratories have shown that DC
connectors from different manufacturers may not be safe to interconnect. Even if they meet
basic quality requirements in the short term, they may derate when connected to products from
different manufacturers.
Disregarding these circumstances, DC connectors are often declared by manufacturers as
being compatible with each other. This claim of compatibility is potentially misleading as it
suggests a safe interoperability of DC connectors from diff
...

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記事のタイトル:IEC TR 63225:2019 - 太陽光発電システムにおける直流アプリケーションのコネクタの非互換性 記事の内容:IEC TR 63225:2019では、異なるメーカーが製造した直流アプリケーションのコネクタ(DCコネクタ)の非互換性の問題に焦点を当てています。以下の4つの特定の問題について取り上げています: - 異なるメーカーのDCコネクタの非互換性に関する背景情報 - 異なるメーカーのDCコネクタの取り扱いにおける観察と課題 - DCコネクタの非互換性に関係する利害関係者 - DCコネクタの非互換性を解決するための長期的な標準化および仮措置に関する推奨事項です。

기사 제목: IEC TR 63225:2019 - 태양광 시스템에서 사용되는 직류 연결기의 호환성 문제 기사 내용: IEC TR 63225:2019은 다른 제조업체가 생산하는 직류 연결기(DC 연결기) 간의 호환성 문제에 대해 강조한다. 이 문제에 대한 주요한 네 가지 이슈에 대해 다룬다: - 서로 다른 제조업체의 DC 연결기의 호환성에 대한 배경 정보 - 서로 다른 제조업체의 DC 연결기를 다룰 때의 관찰과 과제 - DC 연결기의 호환성에 영향을 받는 이해관계자들 - DC 연결기의 호환성 문제를 해결하기 위한 장기적인 표준화 및 임시 조치에 대한 권고사항.

IEC TR 63225:2019 discusses the issue of incompatibility between connectors for DC-application in photovoltaic systems. The article covers four main topics: the background information on the incompatibility, the challenges faced when handling connectors from different manufacturers, the stakeholders affected by this problem, and recommendations to address the issue, including long-term standardization measures and interim solutions.