IEC 62133-2:2017/AMD1:2021
(Amendment)Amendment 1 - Secondary cells and batteries containing alkaline or other non-acid electrolytes - Safety requirements for portable sealed secondary cells, and for batteries made from them, for use in portable applications - Part 2: Lithium systems
Amendment 1 - Secondary cells and batteries containing alkaline or other non-acid electrolytes - Safety requirements for portable sealed secondary cells, and for batteries made from them, for use in portable applications - Part 2: Lithium systems
The contents of the corrigendum of December 2021 have been included in this copy.
Amendement 1 - Accumulateurs alcalins et autres accumulateurs à électrolyte non acide - Exigences de sécurité pour les accumulateurs portables étanches, et pour les batteries qui en sont constituées, destinés à l'utilisation dans des applications portables - Partie 2: Systèmes au lithium
Le contenu du corrigendum de décembre 2021 a été pris en considération dans cet exemplaire.
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IEC 62133-2 ®
Edition 1.0 2021-07
INTERNATIONAL
STANDARD
NORME
INTERNATIONALE
A MENDMENT 1
AM ENDEMENT 1
Secondary cells and batteries containing alkaline or other non-acid electrolytes –
Safety requirements for portable sealed secondary cells, and for batteries made
from them, for use in portable applications –
Part 2: Lithium systems
Accumulateurs alcalins et autres accumulateurs à électrolyte non acide –
Exigences de sécurité pour les accumulateurs portables étanches, et pour les
batteries qui en sont constituées, destinés à l'utilisation dans des applications
portables –
Partie 2: Systèmes au lithium
IEC 62133-2:2017-02/AMD1:2021-07(en-fr)
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IEC 62133-2 ®
Edition 1.0 2021-07
INTERNATIONAL
STANDARD
NORME
INTERNATIONALE
A MENDMENT 1
AM ENDEMENT 1
Secondary cells and batteries containing alkaline or other non-acid electrolytes
– Safety requirements for portable sealed secondary cells, and for batteries
made from them, for use in portable applications –
Part 2: Lithium systems
Accumulateurs alcalins et autres accumulateurs à électrolyte non acide –
Exigences de sécurité pour les accumulateurs portables étanches, et pour les
batteries qui en sont constituées, destinés à l'utilisation dans des applications
portables –
Partie 2: Systèmes au lithium
INTERNATIONAL
ELECTROTECHNICAL
COMMISSION
COMMISSION
ELECTROTECHNIQUE
INTERNATIONALE
ICS 29.220.30 ISBN 978-2-8322-9987-6
– 2 – IEC 62133-2:2017/AMD1:2021
© IEC 2021
INTERNATIONAL ELECTROTECHNICAL COMMISSION
____________
SECONDARY CELLS AND BATTERIES CONTAINING ALKALINE OR OTHER
NON-ACID ELECTROLYTES – SAFETY REQUIREMENTS FOR PORTABLE
SEALED SECONDARY CELLS, AND FOR BATTERIES MADE FROM THEM,
FOR USE IN PORTABLE APPLICATIONS –
Part 2: Lithium systems
AMENDMENT 1
FOREWORD
1) The International Electrotechnical Commission (IEC) is a worldwide organization for standardization comprising
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preparation is entrusted to technical committees; any IEC National Committee interested in the subject dealt with
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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
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3) IEC Publications have the form of recommendations for international use and are accepted by IEC National
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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 document may be the subject of patent
rights. IEC shall not be held responsible for identifying any or all such patent rights.
Amendment 1 to IEC 62133-2:2017 has been prepared by subcommittee 21A: Secondary cells
and batteries containing alkaline or other non-acid electrolytes, of IEC technical committee 21:
Secondary cells and batteries.
The text of this Amendment is based on the following documents:
FDIS Report on voting
21A/760/FDIS 21A/729B/RVD
Full information on the voting for its approval can be found in the report on voting indicated in
the above table.
© IEC 2021
The language used for the development of this Amendment is English.
This document was drafted in accordance with ISO/IEC Directives, Part 2, and developed in
accordance with ISO/IEC Directives, Part 1 and ISO/IEC Directives, IEC Supplement, available
at www.iec.ch/members_experts/refdocs. The main document types developed by IEC are
described in greater detail at www.iec.ch/standardsdev/publications/.
The committee has decided that the contents of this document 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,
• replaced by a revised edition, or
• amended.
– 4 – IEC 62133-2:2017/AMD1:2021
© IEC 2021
7.1.2 Second procedure
Replace the existing second paragraph and Table 2 with the following:
After stabilization for 1 h to 4 h at an ambient temperature of the highest test temperature and
the lowest test temperature, respectively, as specified in Table 2, cells are charged by using
the upper limit charging voltage and maximum charging current, until the charging current is
reduced to 0,05 I A, using a constant current to constant voltage charging method.
t
NOTE The voltage and current can vary depending upon the temperature range (e.g. between T and T or between
2 3
T and T of Figure A.1).
1 4
Stabilization time within the specified time range should allow for thermal equilibrium to be
reached where possible.
Table 2 – Condition of charging procedure
Upper limit Maximum charging Charging temperature Charging temperature
current upper limit lower limit
charging voltage
Specified by the Specified by the Specified by the Specified by the
manufacturer of cells manufacturer of cells manufacturer of cells manufacturer of cells
7.3.5 Crush (cells)
b) Test
Replace the first paragraph of list item b) with the following:
Each fully charged cell, charged according to the second procedure in 7.1.2, is immediately
transferred and crushed between two flat surfaces in an ambient temperature. The force for
the crushing is applied by a device exerting a force of 13 kN ± 0,78 kN. Once the maximum
force has been applied, or an abrupt voltage drop of one-third of the original voltage has
been obtained, the force is released.
7.3.6 Over-charging of battery
Replace the existing list item a) with the following list item a):
a) Requirements
Battery overcharge protection circuitry, if provided in the battery, shall be capable of protecting
the cells to prevent fire or explosion.
7.3.9 Design evaluation – Forced internal short-circuit (cells)
Replace the existing Table 5 with the following new Table 5:
© IEC 2021
a
Table 5 – Ambient temperature for cell test
Test item Test at lowest test temperature Test at highest test temperature
°C °C
b) 2) ii) Lower limit charging temperature ± 2 Upper limit charging temperature ± 2
b) 2) iv) Lower limit charging temperature ± 2 Upper limit charging temperature ± 2
b) 3) i) A Lower limit charging temperature ± 2 Upper limit charging temperature ± 2
b) 3) ii) A Lower limit charging temperature ± 2 Upper limit charging temperature ± 2
a
The test is conducted using conditions in Table 2.
– 6 – IEC 62133-2:2017/AMD1:2021
© IEC 2021
Annex F
(informative)
Component standards references
Replace the existing content of Annex F with the following:
Components relied upon for safety of the battery should comply with their appropriate
component standard if applicable. The list in Table F.1 is not considered a comprehensive list
of all potential component safety standards that may apply. In addition, country and regional
component safety standards as well as international component safety standards may be
considered if they are suitable for the component in question, and the component is being used
in the battery circuit in acc
...
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