Specifications for particular types of winding wires - Part 36: Solderable polyesterimide enamelled round copper wire, class 180, with a bonding layer

IEC 60317-36:2013 specifies the requirements of solderable enamelled round copper winding wire of class 180 with a dual coating. The underlying coating is based on polyesterimide resin, which may be modified providing it retains the chemical identity of the original resin and meets all specified wire requirements. The superimposed coating is a bonding layer based on a thermoplastic resin. NOTE - A modified resin is a resin that has undergone a chemical change, or contains one or more additives to enhance certain performance or application characteristics. The range of nominal conductor diameters covered by this part is:
- Grade 1B: 0,020 mm up to and including 1,600 mm;
- Grade 2B: 0,020 mm up to and including 1,600 mm. The nominal conductor diameters are specified in Clause 4 of IEC 60317-0-1:2013. This second edition cancels and replaces the first edition published in 1992, Amendment 1:1997 and Amendment 2:1999. This edition constitutes a technical revision. This edition includes the following significant technical changes with respect to the previous edition:
- new 3.2.2 containing general notes on winding wire, formerly a part of the scope;
- revision to references to IEC 60317-0-1:2013 to clarify that their application is normative;
- consolidation of 17.1 and 17.2 of the solderability requirements;
- new Clause 23, Pin hole test. Keywords: requirements of solderable enamelled round copper winding wire, class 180, dual coating

Spécifications pour types particuliers de fils de bobinage - Partie 36: Fil brasable de section circulaire en cuivre émaillé avec polyesterimide, classe 180, avec une couche adhérente

La CEI 60317-36:2013 spécifie les exigences pour les fils de bobinage brasables de section circulaire en cuivre émaillé de classe 180 avec un double revêtement. La sous-couche est à base de résine polyesterimide, qui peut être modifiée sous réserve de conserver l'identité chimique de la résine initiale et de répondre à toutes les exigences spécifiées pour le fil. La surcouche est une couche adhérente à base de résine thermoplastique. NOTE - Une résine modifiée est une résine qui a subi une modification chimique, ou qui contient un ou plusieurs additifs pour améliorer certaines performances ou les caractéristiques d'utilisation. La gamme des diamètres nominaux des conducteurs couverte par la présente partie est:
- Grade 1B: 0,020 mm jusqu'à 1,600 mm compris;
- Grade 2B: 0,020 mm jusqu'à 1,600 mm compris. Les diamètres nominaux des conducteurs sont spécifiés dans l'Article 4 de la CEI 60317-0-1:2013. Cette deuxième édition annule et remplace la première édition parue en 1992, l'Amendement 1:1997 et l'Amendement 2:1999. Cette édition constitue une révision technique. Cette édition inclut les modifications techniques majeures suivantes par rapport à l'édition précédente:
- un nouveau 3.2.2 contenant des notes générales sur le fil de bobinage intégrées auparavant au domaine d'application;
- la révision des références à la CEI 60317-0-1:2013 pour bien établir que leur application est normative;
- la consolidation de 17.1 et 17.2 des exigences relatives à la brasabilité;
- un nouvel Article 23, Détection des microfissures en immersion. Mots clés: exigences pour les fils de bobinage brasables de section circulaire en cuivre émaillé, classe 180, double revêtement

General Information

Status
Published
Publication Date
13-Jun-2024
Technical Committee
Drafting Committee
Current Stage
PPUB - Publication issued
Start Date
14-Oct-2013
Completion Date
15-Nov-2013
Ref Project

Relations

Overview

IEC 60317-36:2013 specifies the requirements of solderable enamelled round copper winding wire, class 180, with a dual coating. The wire uses an underlying polyesterimide enamel (which may be modified while retaining its chemical identity) plus a thermoplastic bonding layer to enable solderability and improved bonding. The standard covers manufacturing, dimensions, performance tests and acceptance criteria for solderable polyesterimide enamelled round copper wire, class 180, with a bonding layer for nominal conductor diameters from 0.020 mm up to and including 1.600 mm (Grades 1B and 2B).

Key topics and requirements

  • Thermal class: Class 180 (temperature index 180); minimum heat shock temperature of 200 °C.
  • Dual coating composition: Polyesterimide base enamel + thermoplastic bonding layer for solderability and heat/solvent bonding.
  • Conductor diameter range: Grade 1B and Grade 2B both cover 0.020 mm to 1.600 mm (nominal diameters per IEC 60317-0-1).
  • Electrical & mechanical tests: Dimensions, electrical resistance, elongation, springiness, flexibility, adherence, heat shock, cut-through (no failure within 2 min at 265 °C), resistance to abrasion, solvents, breakdown voltage, continuity of insulation and dielectric dissipation factor.
  • Solderability: Consolidated solderability requirements covering small and larger diameters to ensure reliable solder joints.
  • Bonding tests: Heat and solvent bonding strength tests for helical and twisted coils.
  • New/updated tests: Addition of Clause 23 - Pin hole test, consolidation of solderability clauses and clarifications to normative references in the 2nd edition and later amendments.
  • Normative references: Used in conjunction with IEC 60317-0-1:2013 (general requirements for enamelled round copper wire) and related test-method standards.

Applications

  • Selection and specification of high-temperature winding wire for motors, transformers, inductors, solenoids and other electrical windings requiring reliable solderability at elevated temperatures.
  • Use where a bonding layer is required for automated winding, impregnation, or mechanical stabilization.
  • Environments requiring class 180 thermal performance (e.g., industrial drives, power electronics, HVAC compressors, traction and aerospace applications where higher temperature endurance is needed).

Who uses this standard

  • Wire manufacturers and formulators of enamel and bonding layers.
  • Motor, transformer and coil designers and OEMs specifying wire performance for thermal class 180.
  • Quality, test and compliance engineers in manufacturing and test laboratories.
  • Procurement and regulatory teams ensuring international conformity and interchangeability in global supply chains.

Related standards (brief)

  • IEC 60317-0-1:2013 - General requirements for enamelled round copper wire (normative).
  • IEC 60851 series - Test methods for winding wires.
  • IEC 60264 - Packaging of winding wires.

This standard ensures consistent, internationally recognized performance criteria for solderable polyesterimide enamelled round copper wire, class 180, with a bonding layer, supporting reliable high-temperature winding applications and global supply compatibility.

Standard
IEC 60317-36:2013+AMD1:2019+AMD2:2024 CSV - Specifications for particular types of winding wires - Part 36: Solderable polyesterimide enamelled round copper wire, class 180, with a bonding layer Released:6/14/2024 Isbn:9782832292075
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IEC 60317-36:2013 - Specifications for particular types of winding wires - Part 36: Solderable polyesterimide enamelled round copper wire, class 180, with a bonding layer
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IEC 60317-36:2013+AMD1:2019 CSV - Specifications for particular types of winding wires - Part 36: Solderable polyesterimide enamelled round copper wire, class 180, with a bonding layer Released:6/12/2019 Isbn:9782832270400
English and French language
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Frequently Asked Questions

IEC 60317-36:2013 is a standard published by the International Electrotechnical Commission (IEC). Its full title is "Specifications for particular types of winding wires - Part 36: Solderable polyesterimide enamelled round copper wire, class 180, with a bonding layer". This standard covers: IEC 60317-36:2013 specifies the requirements of solderable enamelled round copper winding wire of class 180 with a dual coating. The underlying coating is based on polyesterimide resin, which may be modified providing it retains the chemical identity of the original resin and meets all specified wire requirements. The superimposed coating is a bonding layer based on a thermoplastic resin. NOTE - A modified resin is a resin that has undergone a chemical change, or contains one or more additives to enhance certain performance or application characteristics. The range of nominal conductor diameters covered by this part is: - Grade 1B: 0,020 mm up to and including 1,600 mm; - Grade 2B: 0,020 mm up to and including 1,600 mm. The nominal conductor diameters are specified in Clause 4 of IEC 60317-0-1:2013. This second edition cancels and replaces the first edition published in 1992, Amendment 1:1997 and Amendment 2:1999. This edition constitutes a technical revision. This edition includes the following significant technical changes with respect to the previous edition: - new 3.2.2 containing general notes on winding wire, formerly a part of the scope; - revision to references to IEC 60317-0-1:2013 to clarify that their application is normative; - consolidation of 17.1 and 17.2 of the solderability requirements; - new Clause 23, Pin hole test. Keywords: requirements of solderable enamelled round copper winding wire, class 180, dual coating

IEC 60317-36:2013 specifies the requirements of solderable enamelled round copper winding wire of class 180 with a dual coating. The underlying coating is based on polyesterimide resin, which may be modified providing it retains the chemical identity of the original resin and meets all specified wire requirements. The superimposed coating is a bonding layer based on a thermoplastic resin. NOTE - A modified resin is a resin that has undergone a chemical change, or contains one or more additives to enhance certain performance or application characteristics. The range of nominal conductor diameters covered by this part is: - Grade 1B: 0,020 mm up to and including 1,600 mm; - Grade 2B: 0,020 mm up to and including 1,600 mm. The nominal conductor diameters are specified in Clause 4 of IEC 60317-0-1:2013. This second edition cancels and replaces the first edition published in 1992, Amendment 1:1997 and Amendment 2:1999. This edition constitutes a technical revision. This edition includes the following significant technical changes with respect to the previous edition: - new 3.2.2 containing general notes on winding wire, formerly a part of the scope; - revision to references to IEC 60317-0-1:2013 to clarify that their application is normative; - consolidation of 17.1 and 17.2 of the solderability requirements; - new Clause 23, Pin hole test. Keywords: requirements of solderable enamelled round copper winding wire, class 180, dual coating

IEC 60317-36:2013 is classified under the following ICS (International Classification for Standards) categories: 23.140 - Compressors and pneumatic machines; 29.060.10 - Wires. The ICS classification helps identify the subject area and facilitates finding related standards.

IEC 60317-36:2013 has the following relationships with other standards: It is inter standard links to IEC 60317-36:2013/AMD1:2019, IEC 60317-36:2013/AMD2:2024, IEC 60317-36:1992, IEC 60317-36:1992/AMD1:1997, IEC 60317-36:1992/AMD2:1999. Understanding these relationships helps ensure you are using the most current and applicable version of the standard.

You can purchase IEC 60317-36:2013 directly from iTeh Standards. The document is available in PDF format and is delivered instantly after payment. Add the standard to your cart and complete the secure checkout process. iTeh Standards is an authorized distributor of IEC standards.

Standards Content (Sample)


IEC 60317-36 ®
Edition 2.2 2024-06
CONSOLIDATED VERSION
INTERNATIONAL
STANDARD
colour
inside
Specifications for particular types of winding wires –
Part 36: Solderable polyesterimide enamelled round copper wire, class 180, with
a bonding layer
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IEC 60317-36 ®
Edition 2.1 2024-06
CONSOLIDATED VERSION
INTERNATIONAL
STANDARD
colour
inside
Specifications for particular types of winding wires –
Part 36: Solderable polyesterimide enamelled round copper wire, class 180, with
a bonding layer
INTERNATIONAL
ELECTROTECHNICAL
COMMISSION
ICS 29.060.10 ISBN 978-2-8322-9207-5
REDLINE VERSION – 2 – IEC 60317-36:2013+AMD1:2019
+AMD2:2024 CSV © IEC 2024
CONTENTS
FOREWORD . 3
INTRODUCTION . 5
1 Scope . 6
2 Normative references . 6
3 Terms, definitions, general notes and appearance . 6
3.1 Terms and definitions . 6
3.2 General notes . 7
3.2.1 Test methods . 7
3.2.2 Winding wire . 7
3.3 Appearance . 7
4 Dimensions . 7
5 Electrical resistance . 7
6 Elongation . 7
7 Springiness . 7
8 Flexibility and adherence . 7
9 Heat shock . 7
10 Cut-through . 7
11 Resistance to abrasion (nominal conductor diameters from 0,250 mm up to and
including 1,600 mm) . 8
12 Resistance to solvents . 8
13 Breakdown voltage . 8
14 Continuity of insulation . 8
15 Temperature index . 9
16 Resistance to refrigerants . 9
17 Solderability . 9
17.1 General . 9
17.2 Nominal conductor diameters up to and including 0,100 mm. 9
17.3 Nominal conductor diameters over 0,100 mm . 9
18 Heat or solvent bonding . 9
18.1 Heat bonding . 9
18.1.1 Heat bonding strength of a helical coil . 9
18.1.2 Bond strength on a twisted coil . 10
18.2 Solvent bonding . 11
19 Dielectric dissipation factor . 11
20 Resistance to transformer oil . 11
21 Loss of mass . 11
23 Pin hole test . 11
30 Packaging . 11
Bibliography . 12

Table 1 – Resistance to abrasion . 8
Table 2 – Loads . 10

+AMD2:2024 CSV © IEC 2024
INTERNATIONAL ELECTROTECHNICAL COMMISSION
____________
SPECIFICATIONS FOR PARTICULAR TYPES OF WINDING WIRES –

Part 36: Solderable polyesterimide enamelled
round copper wire, class 180, with a bonding layer

FOREWORD
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This consolidated version of the official IEC Standard and its amendments has been
prepared for user convenience.
IEC 60317-36 edition 2.1 contains the second edition (2013-10) [documents 55/1417/FDIS
and 55/1438/RVD], its amendment 1 (2019-06) [documents 55/1692/CDV and
55/1742/RVC] and its amendment 2 (2024-06) [documents 55/1990/CDV and
55/2026/RVC].
In this Redline version, a vertical line in the margin shows where the technical content
is modified by amendment 1. Additions are in green text, deletions are in strikethrough
red text. A separate Final version with all changes accepted is available in this
publication.
REDLINE VERSION – 4 – IEC 60317-36:2013+AMD1:2019
+AMD2:2024 CSV © IEC 2024
International Standard IEC 60317-36 has been prepared by IEC technical committee 55:
Winding wires.
This second edition constitutes a technical revision.
This edition includes the following significant technical changes with respect to the previous
edition:
– new 3.2.2 containing general notes on winding wire, formerly a part of the scope;
– revision to references to IEC 60317-0-1:2013 to clarify that their application is normative;
– consolidation of 17.1 and 17.2 of the solderability requirements;
– new Clause 23, Pin hole test.
This publication has been drafted in accordance with the ISO/IEC Directives, Part 2.
A list of all parts in the IEC 60317 series, published under the general title Specifications for
particular types of winding wires, can be found on the IEC website.
This International Standard is to be used in conjunction with IEC 60317-0-1:2013 and its
Amendment 1:2019.
The numbering of clauses in this standard is not continuous from Clauses 20 and 30 in order
to reserve space for possible future wire requirements prior to those for wire packaging.
The committee has decided that the contents of this document and its amendments will
remain unchanged until the stability date indicated on the IEC website under webstore.iec.ch
in the data related to the specific document. At this date, the document will be
• reconfirmed,
• withdrawn, or
• revised.
IMPORTANT – The 'colour inside' logo on the cover page of this publication indicates
that it contains colours which are considered to be useful for the correct
understanding of its contents. Users should therefore print this document using a
colour printer.
+AMD2:2024 CSV © IEC 2024
INTRODUCTION
This part of IEC 60317 is one of a series of standards which deals with insulated wires used
for windings in electrical equipment. The series has three groups describing:
1) Winding wires – Test methods (IEC 60851);
2) Specifications for particular types of winding wires (IEC 60317);
3) Packaging of winding wires (IEC 60264).

REDLINE VERSION – 6 – IEC 60317-36:2013+AMD1:2019
+AMD2:2024 CSV © IEC 2024
SPECIFICATIONS FOR PARTICULAR TYPES OF WINDING WIRES –

Part 36: Solderable polyesterimide enamelled
round copper wire, class 180, with a bonding layer

1 Scope
This part of IEC 60317 specifies the requirements of solderable enamelled round copper
winding wire of class 180 with a dual coating. The underlying coating is based on polyester-
imide resin, which may be modified providing it retains the chemical identity of the original
resin and meets all specified wire requirements. The superimposed coating is a bonding layer
based on a thermoplastic resin.
NOTE A modified resin is a resin that has undergone a chemical change, or contains one or more additives to
enhance certain performance or application characteristics.
The range of nominal conductor diameters covered by this part is:
– Grade 1B: 0,020 mm up to and including 1,600 mm;
– Grade 2B: 0,020 mm up to and including 1,600 mm.
The nominal conductor diameters are specified in Clause 4 of IEC 60317-0-1:2013.
2 Normative references
The following documents, in whole or in part, are normatively referenced in this document and
are indispensable for its application. The following documents are referred to in the text in
such a way that some or all of their content constitutes requirements of this document. For
dated references, only the edition cited applies. For undated references, the latest edition of
the referenced document (including any amendments) applies.
IEC 60317-0-1 :2013, Specifications for particular types of winding wires – Part 0-1: General
requirements – Enamelled round copper wire.
IEC 60317-0-1:2013/AMD1:2019
3 Terms, definitions, general notes and appearance
3.1 Terms and definitions
Subclause 3.1 of IEC 60317-0-1:2013 applies.
For the purposes of this document, the terms and definitions given in IEC 60317-0-1 apply.
ISO and IEC maintain terminology databases for use in standardization at the following
addresses:
• IEC Electropedia: available at https://www.electropedia.org/
• ISO Online browsing platform: available at https://www.iso.org/obp

There exists a consolidated edition 4.1:2021 that includes IEC 60317-0-1:2013 and its Amendment 1:2019.

+AMD2:2024 CSV © IEC 2024
3.2 General notes
3.2.1 Test methods
Subclause 3.2.1 of IEC 60317-0-1:2013 and IEC 60317-0-1:2013/AMD1:2019 applies.
In case of inconsistencies between IEC 60317-0-1:2013 and this part of IEC 60317 document,
the latter IEC 60317-36 shall prevail.
3.2.2 Winding wire
Class 180 is a thermal class that requires a minimum temperature index of 180 and a heat
shock temperature of at least 200 °C.
The temperature in degrees Celsius corresponding to the temperature index is not necessarily
that at which it is recommended that the wire be operated and this will depend on many
factors, including the type of equipment involved.
3.3 Appearance
Subclause 3.3 of IEC 60317-0-1:2013 applies.
4 Dimensions
Clause 4 of IEC 60317-0-1:2013 applies.
5 Electrical resistance
Clause 5 of IEC 60317-0-1:2013 and IEC 60317-0-1:2013/AMD1:2019 applies.
6 Elongation
Clause 6 of IEC 60317-0-1:2013 applies.
7 Springiness
Clause 7 of IEC 60317-0-1:2013 applies.
8 Flexibility and adherence
Clause 8 of IEC 60317-0-1:2013 applies. For 8.4, the constant K used for the calculation of
the number of revolutions for the peel test shall be 110 mm.
9 Heat shock
Clause 9 of IEC 60317-0-1:2013 applies. The minimum heat shock temperature shall be
200 °C.
10 Cut-through
No failure shall occur within 2 min at 265 °C.

REDLINE VERSION – 8 – IEC 60317-36:2013+AMD1:2019
+AMD2:2024 CSV © IEC 2024
11 Resistance to abrasion (nominal conductor diameters from 0,250 mm up to
and including 1,600 mm)
The wire shall meet the requirements given in Table 1.
For intermediate nominal conductor diameters, the value of the next larger nominal conductor
diameter shall be taken.
Table 1 – Resistance to abrasion
Grade 1B Grade 2B
Nominal conductor
Minimum average Minimum force to Minimum average Minimum force to
diameter
force to failure failure of each force to failure failure of each
measurement measurement
mm N N N N
0,250 2,85 2,45 4,70 4,00
0,280 3,10 2,60 5,05 4,30
0,315 3,35 2,80 5,45 4,60
0,355 3,60 3,05 5,85 4,95
0,400 3,85 3,25 6,25 5,30
0,450 4,15 3,50 6,75 5,70
0,500 4,45 3,75 7,20 6,10
0,560 4,75 4,05 7,70 6,50
0,630 5,10 4,35 8,25 7,00
0,710 5,45 4,65 8,85 7,50
0,800 5,85 4,95 9,50 8,05
0,900 6,30 5,35 10,2 8,60
1,000 6,75 5,75 10,9 9,20
1,120 7,35 6,20 11,6 9,80
1,250 7,90 6,70 12,5 10,5
1,400 8,50 7,20 13,3 11,3
1,600 9,20 7,80 14,3 12,1
12 Resistance to solvents
Test inappropriate.
13 Breakdown voltage
Clause 13 of IEC 60317-0-1:2013 applies. The elevated temperature shall be 180 °C.
14 Continuity of insulation
Clause 14 of IEC 60317-0-1:2013 applies.

+AMD2:2024 CSV © IEC 2024
15 Temperature index
Clause 15 of IEC 60317-0-1:2013 applies. The minimum temperature index shall be 180.
16 Resistance to refrigerants
Test inappropriate.
17 Solderability
17.1 General
The temperature of the solder bath shall be (470 ± 5) °C. The surface of the tinned wire shall
be smooth and free from holes and enamel residues.
17.117.2 Nominal conductor diameters up to and including 0,100 mm
The temperature of the solder bath shall be (470 ± 5) °C. The maximum immersion time shall
be 3 s.
The surface of the tinned wire shall be smooth and free from holes and enamel residues.
17.217.3 Nominal conductor diameters over 0,100 mm
The temperature of the solder bath shall be (470 ± 5) °C. The maximum immersion time
(in seconds) shall be the following multiple of the nominal conductor diameter (in millimetres)
with a minimum of 3 s.
Grade 1B Grade 2B
12 s/mm 16 s/mm
The surface of the tinned wire shall be smooth and free from holes and enamel residues.
18 Heat or solvent bonding
18.1 Heat bonding
18.1.1 Heat bonding strength of a helical coil
18.1.1.1 At room temperature
The specimens shall be prepared according to the test method, and the temperature of the
oven for bonding shall be fixed as agreed between purchaser and supplier for the different
types of bonding enamels. The suggested temperature for polyamide bonding enamel is
(200 ± 2) °C and the suggested temperature for aromatic polyamide bonding enamel is
(230 ± 2) °C.
Results: when testing the specimens according to the test method, under the action of load
specified in Table 2, no turns (other than possibly the first and the last) shall separate.
18.1.1.2 At elevated temperature
The specimens shall be prepared and shall be conditioned as described in the test method.

REDLINE VERSION – 10 – IEC 60317-36:2013+AMD1:2019
+AMD2:2024 CSV © IEC 2024
The elevated temperature shall be fixed as agreed between purchaser and supplier for the
different types of bonding enamels. The suggested temperature for polyamide bonding
enamel is (155 ± 2) °C and the suggested temperature for aromatic polyamide bonding
enamel is (170 ± 2) °C.
Results: when testing the specimens according to the test method, under the action of load
specified in Table 2, no turns (other than possibly the first and the last) shall separate.
Table 2 – Loads
Nominal conductor diameter Load
mm N
Over Up to and including Room Elevated
temperature temperature
a a
– 0,050
0,050 0,071 0,05 0,04
0,071 0,100 0,08 0,06
0,100 0,160 0,12 0,08
0,160 0,200 0,25 0,19
0,200 0,315 0,35 0,25
0,315 0,400 0,70 0,55
0,400 0,500 1,10 0,80
0,500 0,630 1,60 1,20
0,630 0,710 2,20 1,70
0,710 0,800 2,80 2,10
0,800 0,900 3,40 2,60
0,900 1,000 4,20 3,20
1,000 1,120 5,00 3,80
1,120 1,250 5,80 4,40
1,250 1,400 6,50 4,90
1,400 1,600 8,50 6,40
a
For nominal conductor diameters up to and including 0,050 mm, the test method and requirements shall be
agreed between purchaser and supplier.

18.1.2 Bond strength on a twisted coil
18.1.2.1 General
This test shall be considered only as a special
...


IEC 60317-36 ®
Edition 2.0 2013-10
INTERNATIONAL
STANDARD
NORME
INTERNATIONALE
Specifications for particular types of winding wires –
Part 36: Solderable polyesterimide enamelled round copper wire, class 180, with
a bonding layer
Spécifications pour types particuliers de fils de bobinage –
Partie 36: Fil brasable de section circulaire en cuivre émaillé avec
polyesterimide, classe 180, avec une couche adhérente

All rights reserved. Unless otherwise specified, no part of this publication may be reproduced or utilized in any form
or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from
either IEC or IEC's member National Committee in the country of the requester.
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please contact the address below or your local IEC member National Committee for further information.

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IEC 60317-36 ®
Edition 2.0 2013-10
INTERNATIONAL
STANDARD
NORME
INTERNATIONALE
Specifications for particular types of winding wires –

Part 36: Solderable polyesterimide enamelled round copper wire, class 180, with

a bonding layer
Spécifications pour types particuliers de fils de bobinage –

Partie 36: Fil brasable de section circulaire en cuivre émaillé avec

polyesterimide, classe 180, avec une couche adhérente

INTERNATIONAL
ELECTROTECHNICAL
COMMISSION
COMMISSION
ELECTROTECHNIQUE
PRICE CODE
INTERNATIONALE
CODE PRIX M
ICS 29.060.10 ISBN 978-2-8322-1145-8

– 2 – 60317-36 © IEC:2013
CONTENTS
FOREWORD . 3
INTRODUCTION . 5
1 Scope . 6
2 Normative references . 6
3 Terms, definitions, general notes and appearance . 6
3.1 Terms and definitions . 6
3.2 General notes . 6
3.2.1 Test methods . 6
3.2.2 Winding wire . 6
3.3 Appearance . 7
4 Dimensions . 7
5 Electrical resistance . 7
6 Elongation . 7
7 Springiness . 7
8 Flexibility and adherence . 7
9 Heat shock . 7
10 Cut-through . 7
11 Resistance to abrasion (nominal conductor diameters from 0,250 mm up to and
including 1,600 mm) . 7
12 Resistance to solvents . 8
13 Breakdown voltage . 8
14 Continuity of insulation . 8
15 Temperature index . 8
16 Resistance to refrigerants . 8
17 Solderability . 9
17.1 Nominal conductor diameters up to and including 0,100 mm. 9
17.2 Nominal conductor diameters over 0,100 mm . 9
18 Heat or solvent bonding . 9
18.1 Heat bonding . 9
18.1.1 Heat bonding strength of a helical coil . 9
18.1.2 Bond strength on a twisted coil . 10
18.2 Solvent bonding . 11
19 Dielectric dissipation factor . 11
20 Resistance to transformer oil . 11
21 Loss of mass . 11
23 Pin hole test . 11
30 Packaging . 11
Bibliography . 12

Table 1 – Resistance to abrasion . 8
Table 2 – Loads . 10

60317-36 © IEC:2013 – 3 –
INTERNATIONAL ELECTROTECHNICAL COMMISSION
____________
SPECIFICATIONS FOR PARTICULAR TYPES OF WINDING WIRES –

Part 36: Solderable polyesterimide enamelled
round copper wire, class 180, with a bonding layer

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 co-operation on all questions concerning standardization in the electrical and electronic fields. To
this end and in addition to other activities, IEC publishes International Standards, Technical Specifications,
Technical Reports, Publicly Available Specifications (PAS) and Guides (hereafter referred to as “IEC
Publication(s)”). Their preparation is entrusted to technical committees; any IEC National Committee interested
in the subject dealt with may participate in this preparatory work. International, governmental and non-
governmental organizations liaising with the IEC also participate in this preparation. IEC collaborates closely
with the International Organization for Standardization (ISO) in accordance with conditions determined by
agreement between the two organizations.
2) The formal decisions or agreements of IEC on technical matters express, as nearly as possible, an international
consensus of opinion on the relevant subjects since each technical committee has representation from all
interested IEC National Committees.
3) IEC Publications have the form of recommendations for international use and are accepted by IEC National
Committees in that sense. While all reasonable efforts are made to ensure that the technical content of IEC
Publications is accurate, IEC cannot be held responsible for the way in which they are used or for any
misinterpretation by any end user.
4) In order to promote international uniformity, IEC National Committees undertake to apply IEC Publications
transparently to the maximum extent possible in their national and regional publications. Any divergence
between any IEC Publication and the corresponding national or regional publication shall be clearly indicated in
the latter.
5) IEC itself does not provide any attestation of conformity. Independent certification bodies provide conformity
assessment services and, in some areas, access to IEC marks of conformity. IEC is not responsible for any
services carried out by independent certification bodies.
6) All users should ensure that they have the latest edition of this publication.
7) No liability shall attach to IEC or its directors, employees, servants or agents including individual experts and
members of its technical committees and IEC National Committees for any personal injury, property damage or
other damage of any nature whatsoever, whether direct or indirect, or for costs (including legal fees) and
expenses arising out of the publication, use of, or reliance upon, this IEC Publication or any other IEC
Publications.
8) Attention is drawn to the Normative references cited in this publication. Use of the referenced publications is
indispensable for the correct application of this publication.
9) Attention is drawn to the possibility that some of the elements of this IEC Publication may be the subject of
patent rights. IEC shall not be held responsible for identifying any or all such patent rights.
International Standard IEC 60317-36 has been prepared by IEC technical committee 55:
Winding wires.
This second edition cancels and replaces the first edition published in 1992,
Amendment 1:1997 and Amendment 2:1999. This edition constitutes a technical revision.
This edition includes the following significant technical changes with respect to the previous
edition:
– new 3.2.2 containing general notes on winding wire, formerly a part of the scope;
– revision to references to IEC 60317-0-1:2013 to clarify that their application is normative;
– consolidation of 17.1 and 17.2 of the solderability requirements;
– new Clause 23, Pin hole test.

– 4 – 60317-36 © IEC:2013
The text of this standard is based on the following documents:
FDIS Report on voting
55/1417/FDIS 55/1438/RVD
Full information on the voting for the approval of this standard can be found in the report on
voting indicated in the above table.
This publication has been drafted in accordance with the ISO/IEC Directives, Part 2.
A list of all parts in the IEC 60317 series, published under the general title Specifications for
particular types of winding wires, can be found on the IEC website.
The numbering of clauses in this standard is not continuous from Clauses 20 and 30 in order
to reserve space for possible future wire requirements prior to those for wire packaging.
The committee has decided that the contents of this publication will remain unchanged until
the stability date indicated on the IEC web site under "http://webstore.iec.ch" in the data
related to the specific publication. At this date, the publication will be
• reconfirmed,
• withdrawn,
• replaced by a revised edition, or
• amended.
60317-36 © IEC:2013 – 5 –
INTRODUCTION
This part of IEC 60317 is one of a series of standards which deals with insulated wires used
for windings in electrical equipment. The series has three groups describing:
1) Winding wires – Test methods (IEC 60851);
2) Specifications for particular types of winding wires (IEC 60317);
3) Packaging of winding wires (IEC 60264).

– 6 – 60317-36 © IEC:2013
SPECIFICATIONS FOR PARTICULAR TYPES OF WINDING WIRES –

Part 36: Solderable polyesterimide enamelled
round copper wire, class 180, with a bonding layer

1 Scope
This part of IEC 60317 specifies the requirements of solderable enamelled round copper
winding wire of class 180 with a dual coating. The underlying coating is based on polyester-
imide resin, which may be modified providing it retains the chemical identity of the original
resin and meets all specified wire requirements. The superimposed coating is a bonding layer
based on a thermoplastic resin.
NOTE A modified resin is a resin that has undergone a chemical change, or contains one or more additives to
enhance certain performance or application characteristics.
The range of nominal conductor diameters covered by this part is:
– Grade 1B: 0,020 mm up to and including 1,600 mm;
– Grade 2B: 0,020 mm up to and including 1,600 mm.
The nominal conductor diameters are specified in Clause 4 of IEC 60317-0-1:2013.
2 Normative references
The following documents, in whole or in part, are normatively referenced in this document and
are indispensable for its application. For dated references, only the edition cited applies. For
undated references, the latest edition of the referenced document (including any
amendments) applies.
IEC 60317-0-1:2013, Specifications for particular types of winding wires – Part 0-1: General
requirements – Enamelled round copper wire
3 Terms, definitions, general notes and appearance
3.1 Terms and definitions
Subclause 3.1 of IEC 60317-0-1:2013 applies.
3.2 General notes
3.2.1 Test methods
Subclause 3.2.1 of IEC 60317-0-1:2013 applies. In case of inconsistencies between
IEC 60317-0-1:2013 and this part of IEC 60317, the latter shall prevail.
3.2.2 Winding wire
Class 180 is a thermal class that requires a minimum temperature index of 180 and a heat
shock temperature of at least 200 °C.
The temperature in degrees Celsius corresponding to the temperature index is not necessarily
that at which it is recommended that the wire be operated and this will depend on many
factors, including the type of equipment involved.

60317-36 © IEC:2013 – 7 –
3.3 Appearance
Subclause 3.3 of IEC 60317-0-1:2013 applies.
4 Dimensions
Clause 4 of IEC 60317-0-1:2013 applies.
5 Electrical resistance
Clause 5 of IEC 60317-0-1:2013 applies.
6 Elongation
Clause 6 of IEC 60317-0-1:2013 applies.
7 Springiness
Clause 7 of IEC 60317-0-1:2013 applies.
8 Flexibility and adherence
Clause 8 of IEC 60317-0-1:2013 applies. For 8.4, the constant K used for the calculation of
the number of revolutions for the peel test shall be 110 mm.
9 Heat shock
Clause 9 of IEC 60317-0-1:2013 applies. The minimum heat shock temperature shall be
200 °C.
10 Cut-through
No failure shall occur within 2 min at 265 °C.
11 Resistance to abrasion (nominal conductor diameters from 0,250 mm up to
and including 1,600 mm)
The wire shall meet the requirements given in Table 1.
For intermediate nominal conductor diameters, the value of the next larger nominal conductor
diameter shall be taken.
– 8 – 60317-36 © IEC:2013
Table 1 – Resistance to abrasion
Grade 1B Grade 2B
Nominal conductor
Minimum average Minimum force to Minimum average Minimum force to
diameter
force to failure failure of each force to failure failure of each
measurement measurement
mm N N N N
0,250 2,85 2,45 4,70 4,00
0,280 3,10 2,60 5,05 4,30
0,315 3,35 2,80 5,45 4,60
0,355 3,60 3,05 5,85 4,95
0,400 3,85 3,25 6,25 5,30
0,450 4,15 3,50 6,75 5,70
0,500 4,45 3,75 7,20 6,10
0,560 4,75 4,05 7,70 6,50
0,630 5,10 4,35 8,25 7,00
0,710 5,45 4,65 8,85 7,50
0,800 5,85 4,95 9,50 8,05
0,900 6,30 5,35 10,2 8,60
1,000 6,75 5,75 10,9 9,20
1,120 7,35 6,20 11,6 9,80
1,250 7,90 6,70 12,5 10,5
1,400 8,50 7,20 13,3 11,3
1,600 9,20 7,80 14,3 12,1
12 Resistance to solvents
Test inappropriate.
13 Breakdown voltage
Clause 13 of IEC 60317-0-1:2013 applies. The elevated temperature shall be 180 °C.
14 Continuity of insulation
Clause 14 of IEC 60317-0-1:2013 applies.
15 Temperature index
Clause 15 of IEC 60317-0-1:2013 applies. The minimum temperature index shall be 180.
16 Resistance to refrigerants
Test inappropriate.
60317-36 © IEC:2013 – 9 –
17 Solderability
17.1 Nominal conductor diameters up to and including 0,100 mm
The temperature of the solder bath shall be (470 ± 5) °C. The maximum immersion time shall
be 3 s.
The surface of the tinned wire shall be smooth and free from holes and enamel residues.
17.2 Nominal conductor diameters over 0,100 mm
The temperature of the solder bath shall be (470 ± 5) °C. The maximum immersion time
(in seconds) shall be the following multiple of the nominal conductor diameter (in millimetres)
with a minimum of 3 s.
Grade 1B Grade 2B
12 s/mm 16 s/mm
The surface of the tinned wire shall be smooth and free from holes and enamel residues.
18 Heat or solvent bonding
18.1 Heat bonding
18.1.1 Heat bonding strength of a helical coil
18.1.1.1 At room temperature
The specimens shall be prepared according to the test method, and the temperature of the
oven for bonding shall be fixed as agreed between purchaser and supplier for the different
types of bonding enamels. The suggested temperature for polyamide bonding enamel is
(200 ± 2) °C and the suggested temperature for aromatic polyamide bonding enamel is
(230 ± 2) °C.
Results: when testing the specimens according to the test method, under the action of load
specified in Table 2, no turns (other than possibly the first and the last) shall separate.
18.1.1.2 At elevated temperature
The specimens shall be prepared and shall be conditioned as described in the test method.
The elevated temperature shall be fixed as agreed between purchaser and supplier for the
different types of bonding enamels. The suggested temperature for polyamide bonding
enamel is (155 ± 2) °C and the suggested temperature for aromatic polyamide bonding
enamel is (170 ± 2) °C.
Results: when testing the specimens according to the test method, under the action of load
specified in Table 2, no turns (other than possibly the first and the last) shall separate.

– 10 – 60317-36 © IEC:2013
Table 2 – Loads
Nominal conductor diameter Load
mm N
Over Up to and including Room Elevated
temperature temperature
a a
– 0,050
0,050 0,071 0,05 0,04
0,071 0,100 0,08 0,06
0,100 0,160 0,12 0,08
0,160 0,200 0,25 0,19
0,200 0,315 0,35 0,25
0,315 0,400 0,70 0,55
0,400 0,500 1,10 0,80
0,500 0,630 1,60 1,20
0,630 0,710 2,20 1,70
0,710 0,800 2,80 2,10
0,800 0,900 3,40 2,60
0,900 1,000 4,20 3,20
1,000 1,120 5,00 3,80
1,120 1,250 5,80 4,40
1,250 1,400 6,50 4,90
1,400 1,600 8,50 6,40
a
For nominal conductor diameters up to and including 0,050 mm, the test method and requirements shall be
agreed between purchaser and supplier.

18.1.2 Bond strength on a twisted coil
18.1.2.1 General
This test shall be considered only as a special test and is applicable to the di
...


IEC 60317-36 ®
Edition 2.1 2019-06
CONSOLIDATED VERSION
INTERNATIONAL
STANDARD
NORME
INTERNATIONALE
colour
inside
Specifications for particular types of winding wires –
Part 36: Solderable polyesterimide enamelled round copper wire, class 180, with
a bonding layer
Spécifications pour types particuliers de fils de bobinage –
Partie 36: Fil brasable de section circulaire en cuivre émaillé avec
polyesterimide, classe 180, avec une couche adhérente

All rights reserved. Unless otherwise specified, no part of this publication may be reproduced or utilized in any form
or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from
either IEC or IEC's member National Committee in the country of the requester. If you have any questions about IEC
copyright or have an enquiry about obtaining additional rights to this publication, please contact the address below or
your local IEC member National Committee for further information.

Droits de reproduction réservés. Sauf indication contraire, aucune partie de cette publication ne peut être reproduite
ni utilisée sous quelque forme que ce soit et par aucun procédé, électronique ou mécanique, y compris la photocopie
et les microfilms, sans l'accord écrit de l'IEC ou du Comité national de l'IEC du pays du demandeur. Si vous avez des
questions sur le copyright de l'IEC ou si vous désirez obtenir des droits supplémentaires sur cette publication, utilisez
les coordonnées ci-après ou contactez le Comité national de l'IEC de votre pays de résidence.

IEC Central Office Tel.: +41 22 919 02 11
3, rue de Varembé info@iec.ch
CH-1211 Geneva 20 www.iec.ch
Switzerland
About the IEC
The International Electrotechnical Commission (IEC) is the leading global organization that prepares and publishes
International Standards for all electrical, electronic and related technologies.

About IEC publications
The technical content of IEC publications is kept under constant review by the IEC. Please make sure that you have the
latest edition, a corrigendum or an amendment might have been published.

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The advanced search enables to find IEC publications by a The world's leading online dictionary on electrotechnology,
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and withdrawn publications. Also known as the International Electrotechnical Vocabulary

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IEC 60317-36 ®
Edition 2.1 2019-06
CONSOLIDATED VERSION
INTERNATIONAL
STANDARD
NORME
INTERNATIONALE
colour
inside
Specifications for particular types of winding wires –

Part 36: Solderable polyesterimide enamelled round copper wire, class 180, with

a bonding layer
Spécifications pour types particuliers de fils de bobinage –

Partie 36: Fil brasable de section circulaire en cuivre émaillé avec

polyesterimide, classe 180, avec une couche adhérente

INTERNATIONAL
ELECTROTECHNICAL
COMMISSION
COMMISSION
ELECTROTECHNIQUE
INTERNATIONALE
ICS 29.060.10 ISBN 978-2-8322-7040-0

IEC 60317-36 ®
Edition 2.1 2019-06
CONSOLIDATED VERSION
REDLINE VERSION
VERSION REDLINE
colour
inside
Specifications for particular types of winding wires –
Part 36: Solderable polyesterimide enamelled round copper wire, class 180, with
a bonding layer
Spécifications pour types particuliers de fils de bobinage –
Partie 36: Fil brasable de section circulaire en cuivre émaillé avec
polyesterimide, classe 180, avec une couche adhérente

– 2 – IEC 60317-36:2013+AMD1:2019 CSV
© IEC 2019
CONTENTS
FOREWORD . 3
INTRODUCTION . 5
1 Scope . 6
2 Normative references . 6
3 Terms, definitions, general notes and appearance . 6
3.1 Terms and definitions . 6
3.2 General notes . 6
3.2.1 Test methods . 6
3.2.2 Winding wire . 6
3.3 Appearance . 7
4 Dimensions . 7
5 Electrical resistance . 7
6 Elongation . 7
7 Springiness . 7
8 Flexibility and adherence . 7
9 Heat shock . 7
10 Cut-through . 7
11 Resistance to abrasion (nominal conductor diameters from 0,250 mm up to and
including 1,600 mm) . 7
12 Resistance to solvents . 8
13 Breakdown voltage . 8
14 Continuity of insulation . 8
15 Temperature index . 8
16 Resistance to refrigerants . 8
17 Solderability . 9
17.1 General . 9
17.12 Nominal conductor diameters up to and including 0,100 mm. 9
17.23 Nominal conductor diameters over 0,100 mm . 9
18 Heat or solvent bonding . 9
18.1 Heat bonding . 9
18.1.1 Heat bonding strength of a helical coil . 9
18.1.2 Bond strength on a twisted coil . 10
18.2 Solvent bonding . 11
19 Dielectric dissipation factor . 11
20 Resistance to transformer oil . 11
21 Loss of mass . 11
23 Pin hole test . 11
30 Packaging . 11
Bibliography . 12

Table 1 – Resistance to abrasion . 8
Table 2 – Loads . 10

© IEC 2019
INTERNATIONAL ELECTROTECHNICAL COMMISSION
____________
SPECIFICATIONS FOR PARTICULAR TYPES OF WINDING WIRES –
Part 36: Solderable polyesterimide enamelled
round copper wire, class 180, with a bonding layer
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 co-operation on all questions concerning standardization in the electrical and electronic fields. To
this end and in addition to other activities, IEC publishes International Standards, Technical Specifications,
Technical Reports, Publicly Available Specifications (PAS) and Guides (hereafter referred to as “IEC
Publication(s)”). Their preparation is entrusted to technical committees; any IEC National Committee interested
in the subject dealt with may participate in this preparatory work. International, governmental and non-
governmental organizations liaising with the IEC also participate in this preparation. IEC collaborates closely
with the International Organization for Standardization (ISO) in accordance with conditions determined by
agreement between the two organizations.
2) The formal decisions or agreements of IEC on technical matters express, as nearly as possible, an international
consensus of opinion on the relevant subjects since each technical committee has representation from all
interested IEC National Committees.
3) IEC Publications have the form of recommendations for international use and are accepted by IEC National
Committees in that sense. While all reasonable efforts are made to ensure that the technical content of IEC
Publications is accurate, IEC cannot be held responsible for the way in which they are used or for any
misinterpretation by any end user.
4) In order to promote international uniformity, IEC National Committees undertake to apply IEC Publications
transparently to the maximum extent possible in their national and regional publications. Any divergence
between any IEC Publication and the corresponding national or regional publication shall be clearly indicated in
the latter.
5) IEC itself does not provide any attestation of conformity. Independent certification bodies provide conformity
assessment services and, in some areas, access to IEC marks of conformity. IEC is not responsible for any
services carried out by independent certification bodies.
6) All users should ensure that they have the latest edition of this publication.
7) No liability shall attach to IEC or its directors, employees, servants or agents including individual experts and
members of its technical committees and IEC National Committees for any personal injury, property damage or
other damage of any nature whatsoever, whether direct or indirect, or for costs (including legal fees) and
expenses arising out of the publication, use of, or reliance upon, this IEC Publication or any other IEC
Publications.
8) Attention is drawn to the Normative references cited in this publication. Use of the referenced publications is
indispensable for the correct application of this publication.
9) Attention is drawn to the possibility that some of the elements of this IEC Publication may be the subject of
patent rights. IEC shall not be held responsible for identifying any or all such patent rights.
This consolidated version of the official IEC Standard and its amendment has been prepared
for user convenience.
IEC 60317-36 edition 2.1 contains the second edition (2013-10) [documents 55/1417/FDIS and
55/1438/RVD] and its amendment 1 (2019-06) [documents 55/1692/CDV and 55/1742/RVC].
In this Redline version, a vertical line in the margin shows where the technical content
is modified by amendment 1. Additions are in green text, deletions are in strikethrough
red text. A separate Final version with all changes accepted is available in
this publication.
– 4 – IEC 60317-36:2013+AMD1:2019 CSV
© IEC 2019
International Standard IEC 60317-36 has been prepared by IEC technical committee 55:
Winding wires.
This second edition constitutes a technical revision.
This edition includes the following significant technical changes with respect to the previous
edition:
– new 3.2.2 containing general notes on winding wire, formerly a part of the scope;
– revision to references to IEC 60317-0-1:2013 to clarify that their application is normative;
– consolidation of 17.1 and 17.2 of the solderability requirements;
– new Clause 23, Pin hole test.
This publication has been drafted in accordance with the ISO/IEC Directives, Part 2.
A list of all parts in the IEC 60317 series, published under the general title Specifications for
particular types of winding wires, can be found on the IEC website.
The numbering of clauses in this standard is not continuous from Clauses 20 and 30 in order
to reserve space for possible future wire requirements prior to those for wire packaging.
The committee has decided that the contents of the base publication and its amendment will
remain unchanged until the stability date indicated on the IEC web site under
"http://webstore.iec.ch" in the data related to the specific publication. At this date, the
publication will be
• reconfirmed,
• withdrawn,
• replaced by a revised edition, or
• amended.
IMPORTANT – The 'colour inside' logo on the cover page of this publication indicates
that it contains colours which are considered to be useful for the correct
understanding of its contents. Users should therefore print this document using a
colour printer.
© IEC 2019
INTRODUCTION
This part of IEC 60317 is one of a series of standards which deals with insulated wires used
for windings in electrical equipment. The series has three groups describing:
1) Winding wires – Test methods (IEC 60851);
2) Specifications for particular types of winding wires (IEC 60317);
3) Packaging of winding wires (IEC 60264).

– 6 – IEC 60317-36:2013+AMD1:2019 CSV
© IEC 2019
SPECIFICATIONS FOR PARTICULAR TYPES OF WINDING WIRES –

Part 36: Solderable polyesterimide enamelled
round copper wire, class 180, with a bonding layer

1 Scope
This part of IEC 60317 specifies the requirements of solderable enamelled round copper
winding wire of class 180 with a dual coating. The underlying coating is based on polyester-
imide resin, which may be modified providing it retains the chemical identity of the original
resin and meets all specified wire requirements. The superimposed coating is a bonding layer
based on a thermoplastic resin.
NOTE A modified resin is a resin that has undergone a chemical change, or contains one or more additives to
enhance certain performance or application characteristics.
The range of nominal conductor diameters covered by this part is:
– Grade 1B: 0,020 mm up to and including 1,600 mm;
– Grade 2B: 0,020 mm up to and including 1,600 mm.
The nominal conductor diameters are specified in Clause 4 of IEC 60317-0-1:2013.
2 Normative references
The following documents, in whole or in part, are normatively referenced in this document and
are indispensable for its application. For dated references, only the edition cited applies. For
undated references, the latest edition of the referenced document (including any
amendments) applies.
IEC 60317-0-1:2013, Specifications for particular types of winding wires – Part 0-1: General
requirements – Enamelled round copper wire
3 Terms, definitions, general notes and appearance
3.1 Terms and definitions
Subclause 3.1 of IEC 60317-0-1:2013 applies.
3.2 General notes
3.2.1 Test methods
Subclause 3.2.1 of IEC 60317-0-1:2013 applies. In case of inconsistencies between
IEC 60317-0-1:2013 and this part of IEC 60317, the latter shall prevail.
3.2.2 Winding wire
Class 180 is a thermal class that requires a minimum temperature index of 180 and a heat
shock temperature of at least 200 °C.
The temperature in degrees Celsius corresponding to the temperature index is not necessarily
that at which it is recommended that the wire be operated and this will depend on many
factors, including the type of equipment involved.

© IEC 2019
3.3 Appearance
Subclause 3.3 of IEC 60317-0-1:2013 applies.
4 Dimensions
Clause 4 of IEC 60317-0-1:2013 applies.
5 Electrical resistance
Clause 5 of IEC 60317-0-1:2013 applies.
6 Elongation
Clause 6 of IEC 60317-0-1:2013 applies.
7 Springiness
Clause 7 of IEC 60317-0-1:2013 applies.
8 Flexibility and adherence
Clause 8 of IEC 60317-0-1:2013 applies. For 8.4, the constant K used for the calculation of
the number of revolutions for the peel test shall be 110 mm.
9 Heat shock
Clause 9 of IEC 60317-0-1:2013 applies. The minimum heat shock temperature shall be
200 °C.
10 Cut-through
No failure shall occur within 2 min at 265 °C.
11 Resistance to abrasion (nominal conductor diameters from 0,250 mm up to
and including 1,600 mm)
The wire shall meet the requirements given in Table 1.
For intermediate nominal conductor diameters, the value of the next larger nominal conductor
diameter shall be taken.
– 8 – IEC 60317-36:2013+AMD1:2019 CSV
© IEC 2019
Table 1 – Resistance to abrasion
Grade 1B Grade 2B
Nominal conductor
Minimum average Minimum force to Minimum average Minimum force to
diameter force to failure failure of each force to failure failure of each
measurement measurement
mm N N N N
0,250 2,85 2,45 4,70 4,00
0,280 3,10 2,60 5,05 4,30
0,315 3,35 2,80 5,45 4,60
0,355 3,60 3,05 5,85 4,95
0,400 3,85 3,25 6,25 5,30
0,450 4,15 3,50 6,75 5,70
0,500 4,45 3,75 7,20 6,10
0,560 4,75 4,05 7,70 6,50
0,630 5,10 4,35 8,25 7,00
0,710 5,45 4,65 8,85 7,50
0,800 5,85 4,95 9,50 8,05
0,900 6,30 5,35 10,2 8,60
1,000 6,75 5,75 10,9 9,20
1,120 7,35 6,20 11,6 9,80
1,250 7,90 6,70 12,5 10,5
1,400 8,50 7,20 13,3 11,3
1,600 9,20 7,80 14,3 12,1
12 Resistance to solvents
Test inappropriate.
13 Breakdown voltage
Clause 13 of IEC 60317-0-1:2013 applies. The elevated temperature shall be 180 °C.
14 Continuity of insulation
Clause 14 of IEC 60317-0-1:2013 applies.
15 Temperature index
Clause 15 of IEC 60317-0-1:2013 applies. The minimum temperature index shall be 180.
16 Resistance to refrigerants
Test inappropriate.
© IEC 2019
17 Solderability
17.1 General
The temperature of the solder bath shall be (470 ± 5) °C. The surface of the tinned wire shall
be smooth and free from holes and enamel residues.
17.117.2 Nominal conductor diameters up to and including 0,100 mm
The temperature of the solder bath shall be (470 ± 5) °C. The maximum immersion time shall
be 3 s.
The surface of the tinned wire shall be smooth and free from holes and enamel residues.
17.217.3 Nominal conductor diameters over 0,100 mm
The temperature of the solder bath shall be (470 ± 5) °C. The maximum immersion time
(in seconds) shall be the following multiple of the nominal conductor diameter (in millimetres)
with a minimum of 3 s.
Grade 1B Grade 2B
12 s/mm 16 s/mm
The surface of the tinned wire shall be smooth and free from holes and enamel residues.
18 Heat or solvent bonding
18.1 Heat bonding
18.1.1 Heat bonding strength of a helical coil
18.1.1.1 At room temperature
The specimens shall be prepared according to the test method, and the temperature of the
oven for bonding shall be fixed as agreed between purchaser and supplier for the different
types of bonding enamels. The suggested temperature for polyamide bonding enamel is
(200 ± 2) °C and the suggested temperature for aromatic polyamide bonding enamel is
(230 ± 2) °C.
Results: when testing the specimens according to the test method, under the action of load
specified in Table 2, no turns (other than possibly the first and the last) shall separate.
18.1.1.2 At elevated temperature
The specimens shall be prepared and shall be conditioned as described in the test method.
The elevated temperature shall be fixed as agreed between purchaser and supplier for the
different types of bonding enamels. The suggested temperature for polyamide bonding
enamel is (155 ± 2) °C and the suggested temperature for aromatic polyamide bonding
enamel is (170 ± 2) °C.
Results: when testing the specimens according to the test method, under the action of load
specified in Table 2, no turns (other than possibly the first and the last) shall separate.

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© IEC 2019
Table 2 – Loads
Nominal conductor diameter Load
mm N
Room Elevated
Over Up to and including
temperature temperature
a a
– 0,050
0,050 0,071 0,05 0,04
0,071 0,100 0,08 0,06
0,100 0,160 0,12 0,08
0,160 0,200 0,25 0,19
0,200 0,315 0,35 0,25
0,315 0,400 0,70 0,55
0,400 0,500 1,10 0,80
0,500 0,630 1,60 1,20
0,630 0,710 2,20 1,70
0,710 0,800 2,80 2,10
0,800 0,900 3,40 2,60
0,900 1,000 4,20 3,20
1,000 1,120 5,00 3,80
1,120 1,250 5,80 4,40
1,250 1,400 6,50 4,90
1,400 1,600 8,50 6,40
a
For nominal conductor diameters up to and including 0,050 mm, the test method and requirements shall be
agreed between purchaser and supplier.

18.1.2 Bond strength on a twisted coil
18.1.2.1 General
This test shall be considered only as a special test and is applicable to the diameter
0,315 mm.
18.1.2.2 At room temperature
When preparing a test sample of diameter 0,315 mm according to the test method, the time
shall be 30 s and the current shall be fixed as agreed between purchaser and supplier. The
suggested value for polyamide bonding enamel is (2,7 ± 0,1) A and the suggested value for
aromatic polyamide bonding enamel is (3,0 ± 0,1) A.
Results: when testing the samples according to the test method, under the action of the
deflection force of 100 N, the sample shall not break.
18.1.2.3 At elevated temperature
The samples of diameter 0,315 mm shall be prepared according to the test method, using the
parameters listed in 18.1.2.2 and shall then be conditioned as described in the test method.
The elevated temperature shall be fixed as agreed between purchaser and supplier. The
suggested temperature for polyamide bonding enamel is (155 ± 2) °C and the suggested
temperature for aromatic polyamide bonding enamel is (170 ± 2) °C.

© IEC 2019
Results: when testing the samples according to the test method, under the action of the
deflection force of 10 N, the sample shall not break.
18.2 Solvent bonding
Test required but not yet under consideration.
19 Dielectric dissipation factor
Test inappropriate.
20 Resistance to transformer oil
Test inappropriate.
21 Loss of mass
Test inappropriate.
23 Pin hole test
Clause 23 of IEC 60317-0-1:2013 applies.
30 Packaging
Clause 30 of IEC 60317-0-1:2013 applies.

– 12 – IEC 60317-36:2013+AMD1:2019 CSV
© IEC 2019
Bibliography
IEC 60264 (all parts), Packaging of winding wires
IEC 60317 (all parts), Specifications for particular types of winding wires
IEC 60851 (all parts), Winding wires – Test methods

_____________
– 14 – IEC 60317-36:2013+AMD1:2019 CSV
© IEC 2019
SOMMAIRE
AVANT-PROPOS . 15
INTRODUCTION . 17
1 Domaine d'application . 18
2 Références normatives . 18
3 Termes, définitions, notes générales et aspect . 18
3.1 Termes et définitions . 18
3.2 Notes générales . 18
3.2.1 Méthodes d'essai . 18
3.2.2 Fil de bobinage . 18
3.3 Aspect . 19
4 Dimensions . 19
5 Résistance électrique . 19
6 Allongement . 19
7 Effet de ressort . 19
8 Souplesse et adhérence . 19
9 Choc thermique . 19
10 Thermoplasticité . 19
11 Résistance à l'abrasion (diamètres nominaux des conducteurs de 0,250 mm
jusques et y compris 1,600 mm) . 19
12 Résistance aux solvants . 20
13 Tension de claquage . 20
14 Continuité de l'isolant . 20
15 Indice de température . 20
16 Résistance aux réfrigérants . 21
17 Brasabilité . 21
17.1 Généralités . 21
17.12 Diamètres nominaux des conducteurs jusques et y compris 0,100 mm . 21
17.23 Diamètres nominaux des conducteurs supérieurs à 0,100 mm . 21
18 Adhérence par chaleur ou par solvant . 21
18.1 Adhérence par chaleur . 21
18.1.1 Force d'adhérence par chaleur d'un bobinage hélicoïdal . 21
18.1.2 Force de collage d'un bobinage torsadé . 22
18.2 Adhérence par solvant . 23
19 Facteur de dissipation diélectrique . 23
20 Résistance à l'huile de transformateur . 23
21 Perte de masse . 23
23 Détection des microfissures en immersion . 23
30 Conditionnement . 23
Bibliographie . 24
Tableau 1 – Résistance à l'abrasion . 20
Tableau 2 – Charges . 22

© IEC 2019
COMMISSION ÉLECTROTECHNIQUE INTERNATIONALE
____________
SPÉCIFICATIONS POUR TYPES PARTICULIERS DE FILS DE BOBINAGE –
Partie 36: Fil brasable de section circulaire en cuivre émaillé
avec polyesterimide, classe 180, avec une couche adhérente
AVANT-PROPOS
1) La Commission Electrotechnique Internationale (IEC) est une organisation mondiale de normalisation
composée de l'ensemble des comités électrotechniques nationaux (Comités nationaux de l’IEC). L’IEC a pour
objet de favoriser la coopération internationale pour toutes les questions de normalisation dans les domaines
de l'électricité et de l'électronique. A cet effet, l’IEC – entre autres activités – publie des Normes
internationales, des Spécifications techniques, des Rapports techniques, des Spécifications accessibles au
public (PAS) et des Guides (ci-après dénommés "Publication(s) de l’IEC"). Leur élaboration est confiée à des
comités d'études, aux travaux desquels tout Comité national intéressé par le sujet traité peut participer. Les
organisations internationales, gouvernementales et non gouvernementales, en liaison avec l’IEC, participent
également aux travaux. L’IEC collabore étroitement avec l'Organisation Internationale de Normalisation (ISO),
selon des conditions fixées par accord entre les deux organisations.
2) Les décisions ou accords officiels de l’IEC concernant les questions techniques représentent, dans la mesure
du possible, un accord international sur les sujets étudiés, étant donné que les Comités nationaux de l’IEC
intéressés sont représentés dans chaque comité d’études.
3) Les Publications de l’IEC se présentent sous la forme de recommandations internationales et sont agréées
comme telles par les Comités nationaux de l’IEC. Tous les efforts raisonnables sont entrepris afin que l’IEC
s'assure de l'exactitude du contenu technique de ses publications; l’IEC ne peut pas être tenue responsable de
l'éventuelle mauvaise utilisation ou interprétation qui en est faite par un quelconque utilisateur final.
4) Dans le but d'encourager l'uniformité internationale, les Comités nationaux de l’IEC s'engagent, dans toute la
mesure possible, à appliquer de façon transparente les Publications de l’IEC dans leurs publications nationales
et régionales. Toutes divergences entre toutes Publications de l’IEC et toutes publications nationales ou
régionales correspondantes doivent être indiquées en termes clairs dans ces dernières.
5) L’IEC elle-même ne fournit aucune attestation de conformité. Des organismes de certification indépendants
fournissent des services d'évaluation de conformité et, dans certains secteurs, accèdent aux marques de
conformité de l’IEC. L’IEC n'est responsable d'aucun des services effectués par les organismes de certification
indépendants.
6) Tous les utilisateurs doivent s'assurer qu'ils sont en possession de la dernière édition de cette publication.
7) Aucune responsabilité ne doit être imputée à l’IEC, à ses administrateurs, employés, auxiliaires ou
mandataires, y compris ses experts particuliers et les membres de ses comités d'études et des Comités
nationaux de l’IEC, pour tout préjudice causé en cas de dommages corporels et matériels, ou de tout autre
dommage de quelque nature que ce soit, directe ou indirecte, ou pour supporter les coûts (y compris les frais
de justice) et les dépenses découlant de la publication ou de l'utilisation de cette Publication de l’IEC ou de
toute autre Publication de l’IEC, ou au crédit qui lui est accordé.
8) L'attention est attirée sur les références normatives citées dans cette publication. L'utilisation de publications
référencées est obligatoire pour une application correcte de la présente publication.
9) L’attention est attirée sur le fait que certains des éléments de la présente Publication de l’IEC peuvent faire
l’objet de droits de brevet. L’IEC ne saurait être tenue pour responsable de ne pas avoir identifié de tels droits
de brevets et de ne pas avoir signalé leur existence.
Cette version consolidée de la Norme IEC officielle et de son amendement a été préparée
pour la commodité de l'utilisateur.
L'IEC 60317-36 édition 2.1 contient la deuxième édition (2013-10) [documents 55/1417/
FDIS et 55/1438/RVD] et son amendement 1 (2019-06) [documents 55/1692/CDV et
55/1742/RVC].
Dans cette version Redline, une ligne verticale dans la marge indique où le contenu
technique est modifié par l'amendement 1. Les ajouts sont en vert, les suppressions
sont en rouge, barrées. Une version Finale avec toutes les modifications acceptées
est disponible dans cette publication.

– 16 – IEC 60317-36:2013+AMD1:2019 CSV
© IEC 2019
La Norme internationale IEC 60317-36 a été établie par le comité d’études 55 de l'IEC: Fils de
bobinage.
Cette deuxième édition constitue une révision technique.
Cette édition inclut les modifications techniques majeures suivantes par rapport à
l'édition précédente:
– un nouveau 3.2.2 contenant des notes générales sur le fil de bobinage intégrées
auparavant au domaine d'application;
– la révision des références à l'IEC 60317-0-1:2013 pour bien établir que leur application
est normative;
– la consolidation de 17.1 et 17.2 des exigences relatives à la brasabilité;
– un nouvel Article 23, Détection des microfissures en immersion.
Cette publication a été rédigée selon les Directives ISO/IEC, Partie 2.
Une liste de toutes les parties de la série IEC 60317, publiées sous le titre général
Spécifications pour types particuliers de fils de bobinage, peut être consultée sur le site web
de l'IEC.
La numérotation des articles dans la présente norme n'est pas continue entre les Articles 20
et 30 afin de permettre l'introduction d'éventuelles futures exigences pour les fils avant celles
concernant le conditionnement des fils.
Le comité a décidé que le contenu de la publication de base et de son amendement ne sera
pas modifié avant la date de stabilité indiquée sur le site web de l’IEC sous
"http://webstore.iec.ch" dans les données relatives à la publication recherchée. A cette date,

la publication sera
• reconduite,
• supprimée,
• remplacée par une édition révisée, ou
• amendée.
IMPORTANT – Le logo "colour inside" qui se trouve sur la page de couverture de cette
publication indique qu'elle contient des couleurs qui sont considérées comme utiles à
une bonne compréhension de son contenu. Les utilisateurs devraient, par conséquent,
imprimer cette publication en utilisant une imprimante couleur.

© IEC 2019
INTRODUCTION
La présente partie de l'IEC 60317 constitue l'un des éléments traitant des fils isolés utilisés
dans les enroulements des appareils électriques. Cette série est composée de trois groupes
définissant respectivement:
1) Fils de bobinage – Méthodes d'essai (IEC 60851);
2) Spécifications pour types particuliers de fils de bobinage (IEC 60317);
3) Conditionnement des fils de bobinage (IEC 60264).

– 18 – IEC 60317-36:2013+AMD1:2019 CSV
© IEC 2019
SPÉCIFICATIONS POUR TYPES PARTICULIERS DE FILS DE BOBINAGE –

Partie 36: Fil brasable de section circulaire en cuivre émaillé
avec polyesterimide, classe 180, avec une couche adhérente

1 Domaine d'application
La présente partie de l'IEC 60317 spécifie les exigences pour les fils de bobinage brasables
de section circulaire en cuivre émaillé de classe 180 avec un double revêtement. La sous-
couche est à base de résine polyesterimide, qui peut être modifiée sous réserve de conserver
l'identité chimique de la résine initiale et de répondre à toutes les exigences spécifiées pour
le fil. La surcouche est une couche adhérente à base de résine thermoplastique.
NOTE Une résine modifiée est une résine qui a subi une modification chimique, ou qui contient un ou plusieurs
additifs pour améliorer certaines performances ou les caractéristiques d'utilisation.
La gamme des diamètres nominaux des conducteurs couverte par la présente partie est:
– Grade 1B: 0,020 mm jusqu'à 1,600 mm compris;
– Grade 2B: 0,020 mm jusqu'à 1,600 mm compris.
Les diamètres nominaux des conducteurs sont spécifiés dans l’Article 4 de
l'IEC 60317-0-1:2013.
2 Références normatives
Les documents suivants sont cités en référence de manière normative, en intégralité ou en
partie, dans le présent document et sont indispensables pour son application. Pour les
références datées, seule l’édition citée s’applique. Pour les références non datées, la
dernière édition du document de référence s’applique (y compris les éventuels
amendements).
IEC 60317-0-1:2013, Spécifications pour types particuliers de fils de bobinage – Partie 0-1:
Exigences générales – Fil de section circulaire en cuivre émaillé
3 Termes, définitions, notes générales et aspect
3.1 Termes et définitions
Le Paragraphe 3.1 de l'IEC 60317-0-1:2013 s’applique.
3.2 Notes générales
3.2.1 Méthodes d'essai
Le Paragraphe 3.2.1 de l'IEC 60317-0-1:2013 s’applique. En cas de divergences entre
l'IEC 60317-0-1:2013 et la présente partie de l'IEC 60317, cette dernière doit prévaloir.
3.2.2 Fil de bobinage
Une classe 180 est une classe thermique qui exige un indice de température minimal de 180
et une température de choc thermique d'au moins 200 °C.

© IEC 2019
La température en degrés Celsius correspondant à l'indice de température n'est pas
nécessairement celle à laquelle il est recommandé d'utiliser le fil et cela dépendra de
nombreux facteurs, y compris du type d'équipement considéré.
3.3 Aspect
Le Paragraphe 3.3 de l'IEC 60317-0-1:2013 s’applique.
4 Dimensions
L’Article 4 de l'IEC 60317-0-1:2013 s’applique.
5 Résistance électrique
L’Article 5 de l'IEC 60317-0-1:2013 s’applique.
6 Allongement
L’Article 6 de l'IEC 60317-0-1:2013 s’applique.
7 Effet de ressort
L’Article 7 de l'IEC 60317-0-1:2013 s’applique.
8 Souplesse et adhérence
L’Article 8 de l'IEC 60317-0-1:2013 s’applique. Pour le 8.4, la constante K utilisée pour le
calcul du nombre de tours pour l’essai de décollement doit être égale à 110 mm.
9 Choc thermique
L’Article 9 de l'IEC 60317-0-1:2013 s’applique. La température minimale de choc thermique
doit être de 200 °C.
10 Thermoplasticité
Aucune défaillance ne doit se produire pendant 2 min à une température de 265 °C.
11 Résistance à l'abrasion (diamètres nominaux des conducteurs de
0,250 mm jusques et y compris 1,600 mm)
Le fil doit satisfaire aux exigences du Tableau 1.
Pour les diamètres nominaux intermédiaires des conducteurs, la valeur donnée pour le
diamètre nominal du conducteur immédiatement supérieur doit être utilisée.

– 20 – IEC 60317-36:2013+AMD1:2019 CSV
© IEC 2019
Tableau 1 – Résistance à l'abrasion
Grade 1B Grade 2B
Diamètre nominal
Charge minimale Charge minimale Charge minimale Charge minimale
du conducteur moyenne de de rupture de moyenne de de rupture de
rupture chaque mesure rupture chaque mesure
mm N N N N
0,250 2,85 2,45 4,70 4,00
0,280 3,10 2,60 5,05 4,30
0,315 3,35 2,80 5,45 4,60
0,355 3,60 3,05 5,85 4,95
0,400 3,85 3,25 6,25 5,30
0,450 4,15 3,50 6,75 5,70
0,500 4,45 3,75 7,20 6,10
0,560 4,75 4,05 7,70 6,50
0,630 5,10 4,35 8,25 7,00
0,710 5,45 4,65 8,85 7,50
0,800
...

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IEC 60317-36:2013 표준은 클래스 180에 해당하는 이중 코팅의 솔더링 가능한 에나멜 원형 구리 와이어에 대한 요구 사항을 명확하게 규정하고 있습니다. 이 표준의 주요 강점은 폴리에스터이미드 수지를 기반으로 한 기본 코팅과 열가소성 수지 기반의 접합층으로 이루어진 이중 코팅의 세부 사양을 제공함으로써, 와이어의 성능을 극대화할 수 있다는 점입니다. IEC 60317-36:2013은 또한 명목 전도체 직경 범위를 상세히 제시하고 있어, 1B 등급 및 2B 등급 모두에서 0.020 mm에서 1.600 mm까지의 직경을 포함합니다. 이러한 구체적인 규정은 제조업체가 소형 전자 기기부터 대형 전기 기기까지 다양한 응용 분야에 적합한 솔더링 가능한 에나멜 원형 구리 와이어를 생산할 수 있도록 도와줍니다. 이 표준의 기술적 개정 사항은 기존 에디션과 비교했을 때 더욱 명확하고 실용적인 정보를 제공하도록 발전하였습니다. 특히, 3.2.2 조항에서 제공하는 와인딩 와이어에 대한 일반적인 주석은 사용자들이 와이어에 대한 이해를 높이는 데 기여합니다. 또한, IEC 60317-0-1:2013과의 참조 사항 수정은 이 표준의 적용이 규범적임을 분명히 하여, 안정적인 품질 보장을 위한 기틀을 마련하였습니다. 마지막으로, 솔더링 성능 요구 사항의 통합과 새로운 핀홀 테스트 조항 추가는 품질 관리 및 신뢰성 증진을 위한 중요한 발전으로, 사용자가 다양한 환경에서 안심하고 이 와이어를 사용할 수 있도록 보장합니다. 이러한 조치들은 솔더링 가능한 에나멜 원형 구리 와이어의 전반적인 성능을 향상시키며, 산업 전반에서의 적용 가능성을 더욱 확대합니다.

IEC 60317-36:2013 sets out the specifications for solderable enamelled round copper winding wire, classified under class 180, featuring a dual coating system. The detailed requirements of solderable enamelled round copper winding wire are carefully articulated, emphasizing a robust standard aimed at ensuring high performance and reliability in various applications. The scope of this standard is particularly comprehensive, addressing the specifications necessary for the underlying coating composed of modified polyesterimide resin. This aspect is crucial as the adaptability of the resin through modification retains its chemical identity while meeting stringent performance criteria. The incorporation of a thermoplastic resin as a superimposed bonding layer significantly enhances the functional characteristics of the wire, making it suitable for advanced applications. Another strength of this standard is its inclusive coverage of nominal conductor diameters, ranging from 0.020 mm to 1.600 mm across both Grade 1B and Grade 2B. This wide range caters to diverse winding requirements, thereby increasing the flexibility of use in manufacturing processes. The delineation of specific dimensions per Clause 4 of IEC 60317-0-1:2013 ensures clarity and precision, which is a hallmark of effective standardization. The technical updates in this second edition reflect a commitment to ongoing improvement and relevance in the industry. The introduction of new clauses, including the pin hole test and the consolidation of solderability requirements, indicates a proactive approach to enhancing the reliability and applicability of the winding wire. The clarifications regarding normative references support the standard's usability, ensuring that users have clear guidance on compliance and implementation. Overall, IEC 60317-36:2013 serves as a critical benchmark for the manufacturing and application of solderable enamelled round copper winding wires, reinforcing its significance in electrical engineering and related fields. Its meticulous attention to detail in the requirements of solderable enamelled round copper winding wire, coupled with the emphasis on dual coating technologies, underscores its relevance and necessity for industry professionals.

La norme IEC 60317-36:2013 spécifie les exigences des fils de bobinage en cuivre rond émaillés, solubles et de classe 180, dotés d'un double revêtement. Cette norme est essentielle pour les fabricants et utilisateurs de fils de bobinage, car elle garantit que les produits respectent des critères de qualité stricts, notamment en ce qui concerne la solubilité et la robustesse des revêtements. Le choix d'un revêtement en résine polyesterimide, qui peut être modifié tout en conservant l'identité chimique de la résine d'origine, reflète l'importance croissante des performances des matériaux dans les applications industrielles modernes. La norme met en avant une compréhension approfondie des propriétés des fils, capitalisant sur les innovations technologiques qui permettent d'augmenter leur fonctionnalité. L'inclusion d'une couche de liaison basée sur une résine thermoplastique constitue un atout indéniable, car elle améliore l'adhérence tout en maintenant les performances électriques nécessaires. Ce double revêtement répond aux exigences de fiabilité et de durabilité, ce qui est crucial dans des environnements d'application variés. En ce qui concerne les diamètres nominaux des conducteurs, la norme offre une flexibilité précieuse en englobant une large gamme de diamètres, allant de 0,020 mm à 1,600 mm, pour les classes 1B et 2B. Cette variété permet une utilisation étendue dans différentes applications, renforçant ainsi l'importance de la norme pour divers secteurs. Les changements techniques notables apportés dans cette deuxième édition, tels que la révision des exigences de soudabilité et l'ajout du test de trou d'épingle, démontrent l'engagement continu à améliorer les performances des fils de bobinage en cuivre. Ces améliorations garantissent que les utilisateurs peuvent toujours se fier à la conformité de leurs matériaux aux normes internationales les plus élevées. En somme, la norme IEC 60317-36:2013 constitue un document clé dans la spécification des exigences des fils de bobinage en cuivre rond émaillés, solubles, répondant aux défis industriels modernes grâce à un cadre normatif clair et rigoureux.

Die Norm IEC 60317-36:2013 bietet eine umfassende Spezifikation für bestimmte Typen von Wickeldrähten, insbesondere für den Bereich der lötbaren, polyesterimide-emaillierten, runden Kupferdrähte der Klasse 180 mit einer dualen Beschichtung. Diese Norm stellt sicher, dass die Anforderungen an den Umgang mit Wickeldrähten erfüllt werden, indem sie detaillierte Vorgaben für die chemischen und physikalischen Eigenschaften der Drähte definiert. Ein wesentlicher Aspekt der Norm ist die Verwendung von Polyesterimideharz als Grundbeschichtung, das modifiziert werden kann, solange die chemische Identität des ursprünglichen Harzes erhalten bleibt. Dies fördert nicht nur die Flexibilität im Herstellungsprozess, sondern garantiert auch, dass alle festgelegten Anforderungen an den Wickeldraht erfüllt werden. Die duale Beschichtung, bestehend aus einer oberflächlichen thermoplastischen Harzschicht, ermöglicht eine verbesserte Lötbarkeit, was die Anwendbarkeit in verschiedenen technischen Bereichen erheblich erweitert. Die Norm umfasst eine breite Palette von nominalen Leiterdurchmessern, speziell in den Klassen 1B und 2B mit Durchmessern von 0,020 mm bis einschließlich 1,600 mm. Dies zeigt die Anpassungsfähigkeit der Norm an unterschiedliche industrielle Anforderungen und Anwendungen, wodurch sie eine wichtige Ressource für die Branche darstellt. Die technische Überarbeitung dieser zweiten Auflage bringt signifikante Änderungen mit sich, darunter die Einführung neuer allgemeiner Anmerkungen zu Wickeldrähten sowie eine Klarstellung der normativen Anwendung von Verweisen auf IEC 60317-0-1:2013. Darüber hinaus werden die Anforderungen an die Lötfähigkeit in den Abschnitten 17.1 und 17.2 konsolidiert, was die Handhabung und Einhaltung der Norm verbessert. Neu eingeführt wurde auch der Klausel 23, der den Pin Hole Test beschreibt, ein wesentliches Kriterium zur Gewährleistung der Qualität und Zuverlässigkeit der Wickeldrähte. Zusammenfassend ist die IEC 60317-36:2013 eine relevante Norm für Hersteller und Anwender im Bereich der Wickeldrähte, die höchste Anforderungen an die Lötbarkeit und die allgemeinen Eigenschaften stellt. Die detaillierten Vorgaben und technischen Änderungen unterstreichen das Engagement, Qualität und Innovation im Bereich der elektrischen Verkabelung sicherzustellen.

IEC 60317-36:2013は、クラス180の二重コーティングを施したはんだ付け可能なエナメル丸銅巻線の仕様について、包括的な要件を定めた重要な標準です。この標準は、ポリエステルイミド樹脂に基づく基本コーティングを特徴としており、性能や用途特性を向上させるための改変樹脂の使用も許可されています。このような柔軟性により、業界の多様なニーズに応えることが可能です。 本標準の強みは、巻線ワイヤに関する具体的な要件を明確に示し、製品の一貫性と信頼性を高めることです。特に、はんだ付け可能なエナメル丸銅巻線という特化したカテゴリに焦点を当てているため、製造業者やユーザーに対して、明確かつ具体的な指針を提供します。さらに、新たに設けられた3.2.2の一般的な注意事項や、はんだ付け性要件の整理は、実際の技術的な適用をより明確にしています。 さらに、本標準は、IEC 60317-0-1:2013への参照を適宜修正し、その適用が規範的であることを強調しており、標準の信頼性を向上させています。また、新設された23条のピンホールテストにより、製品の品質管理が一層強化されています。これらの技術的な変更は、商品品質を確保し、ユーザーが必要とする基準に適合することを保証します。 このように、IEC 60317-36:2013は、はんだ付け可能なエナメル丸銅巻線の要件に関して、明確で詳細なガイドラインを提供し、特にクラス180の二重コーティングに関する要件は、業界内での適用性を高めるために非常に貴重です。製品の発展と市場のニーズに対する応答力を維持するために、非常に重要な役割を果たす標準と言えるでしょう。

IEC 60317-36:2013 문서는 180급 솔더 가능 에나멜 원형 구리 권선 와이어의 요구 사항을 상세히 규정하고 있으며, 이 와이어는 이중 코팅 구조를 가지고 있습니다. 기초 코팅은 폴리에스터이미드 수지를 기반으로 하며, 성능 향상을 위한 화학적 변화나 첨가물 추가가 허용됩니다. 이 표준은 원형 구리 권선 와이어의 정확한 규격과 성능 기준을 확립하여 산업적인 응용에서의 일관성을 보장합니다. 이 표준의 주요 강점 중 하나는 구리 권선 와이어의 솔더 가능성과 관련된 명확한 요구 사항을 제시한다는 점입니다. 이는 전자 부품과 기계 장비에서의 신뢰성을 높여주는 중요한 요소로 작용합니다. 또한, 새로운 항목인 3.2.2 및 핀홀 테스트와 같은 업데이트는 와이어의 제조 및 품질 관리에 대한 기대치를 명확히 하여 제품의 일관성을 한층 높입니다. 더불어, IEC 60317-36:2013은 1992년에 발표된 첫 번째 판을 폐기하고, 기술적으로 개정된 두 번째 판으로 관련 문헌을 보다 명확하게 정의하고 있습니다. 이는 사용자와 생산자 모두에게 필요한 정보를 제공하며, 원형 구리 권선 와이어의 성능 기준을 보다 엄격히 다루고 있습니다. 결론적으로, IEC 60317-36:2013 표준은 솔더 가능 에나멜 원형 구리 권선 와이어에 대한 업계의 요구를 충족시키는 동시에, 그 적용의 명확함과 기술적 신뢰성을 강화하는 중요한 역할을 합니다. 이러한 표준은 산업용 전선 및 케이블 제작에 있어서 필수적인 지침을 제공하며, 현대 기술의 발전에 발 맞추어 지속적으로 진화하고 있습니다.

IEC 60317-36:2013 presents a comprehensive set of specifications for solderable enamelled round copper winding wire of class 180, distinguished by its unique dual coating. The standard is pivotal as it sets forth the requirements for this particular type of winding wire, ensuring that manufacturers adhere to rigorous performance standards and facilitate consistency across applications. One of the primary strengths of IEC 60317-36:2013 is its elaboration on the dual coating structure. The underlying coating, formulated from polyesterimide resin, can be modified while retaining the essential characteristics necessary for meeting the specified wire requirements. This aspect is crucial as it allows for the enhancement of properties through chemical changes or the introduction of additives, thus enabling a wider range of applications and improved performance in various environmental conditions. The standard also explicitly outlines the nominal conductor diameters for two grades, 1B and 2B, which range from 0.020 mm up to and including 1.600 mm. Such detailed specifications ensure that stakeholders can select the appropriate winding wire for specific needs, maintaining uniformity and reliability in electrical applications. In this second edition, significant technical revisions have been made, enhancing its relevance in modern manufacturing. The introduction of Clause 23, which pertains to the pin hole test, is a notable addition that underscores the emphasis on quality assurance. Moreover, the consolidation of solderability requirements enhances clarity and compliance for manufacturers. Furthermore, the specificity of references to IEC 60317-0-1:2013 has been improved; by clarifying that their application is normative, the standard elevates the precision and applicability of related manufacturing guidelines. These enhancements make the IEC 60317-36:2013 not only more user-friendly but also crucial in guiding the industry towards higher standards of quality and performance in solderable enamelled round copper winding wire. Overall, IEC 60317-36:2013 serves as a critical resource for those involved in the production and use of solderable enamelled round copper winding wire, ensuring that they meet the required benchmarks for class 180 with dual coating, promoting excellence in electrical wiring applications.

IEC 60317-36:2013は、クラス180のはんだ付け可能なポリエステルイミドエナメル加工された丸銅線の標準仕様を定めています。この標準は、二重コーティングを持つ銅巻線に関する詳細な要件を提示しており、ポリエステルイミド樹脂に基づく基層コーティングと、熱可塑性樹脂に基づく上層コーティングを特徴とします。これにより、クラス180の特定の用途における性能基準を満たすことが可能となります。 この標準の強みは、豊富な直径範囲をカバーしている点です。具体的には、グレード1Bおよびグレード2Bの直径は、0.020 mmから1.600 mmまで対応しており、これにより多様なアプリケーションに適用可能です。さらに、技術的な改訂が行われ、従来の版からの重要な変更点として、一般的な巻線に関する新しい条項や、はんだ付け要件の統合が挙げられます。 IEC 60317-36:2013は、巻線ワイヤの要件に対する明確な指針を提供し、巻線業界における標準化の進展に寄与しています。また、この標準の適用により、はんだ付け可能なエナメル加工された銅巻線の品質と性能は一貫性を持ち、エンドユーザーの信頼性を高めることにつながります。 このように、IEC 60317-36:2013は、クラス180に分類されるはんだ付け可能なエナメル加工された丸銅線における要求事項を網羅的に定義しており、産業界における重要な基準となっています。