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BS EN IEC 60086-1:2021 – TC:2022 Edition

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Tracked Changes. Primary batteries – General

Published By Publication Date Number of Pages
BSI 2022 122
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IEC 60086-1:2021 is available as IEC 60086-1:2021 RLV which contains the International Standard and its Redline version, showing all changes of the technical content compared to the previous edition.IEC 60086-1:2021 is intended to standardize primary batteries with respect to dimensions, nomenclature, terminal configurations, markings, test methods, typical performance, safety and environmental aspects. This document on one side specifies requirements for primary cells and batteries. On the other side, this document also specifies procedures of how requirements for these batteries are to be standardised. As a classification tool for primary batteries, this document specifies system letters, electrodes, electrolytes, and nominal as well as maximum open circuit voltage of electrochemical systems. The object of this part of IEC 60086 is to benefit primary battery users, device designers and battery manufacturers by ensuring that batteries from different manufacturers are interchangeable according to standard form, fit and function. Furthermore, to ensure compliance with the above, this part specifies standard test methods for testing primary cells and batteries.

PDF Catalog

PDF Pages PDF Title
70 undefined
73 Annex ZA(normative)Normative references to international publicationswith their corresponding European publications
75 English
CONTENTS
78 FOREWORD
80 INTRODUCTION
81 1 Scope
2 Normative references
3 Terms and definitions
84 4 Requirements
4.1 General
4.1.1 Design
4.1.2 Battery dimensions
4.1.3 Terminals
86 4.1.4 Classification (electrochemical system)
Tables
Table 1 – Standardized electrochemical systems
87 4.1.5 Designation
4.1.6 Marking
88 4.1.7 Interchangeability: battery voltage
Table 2 – Marking requirements
89 4.2 Performance
4.2.1 Discharge performance
4.2.2 Dimensional stability
4.2.3 Leakage
4.2.4 Open-circuit voltage limits
4.2.5 Service output
4.2.6 Safety
90 4.2.7 Validity of testing
5 Performance – Testing
5.1 Capacity testing versus application and service output testing
5.2 Discharge testing
5.2.1 General
91 5.2.2 Application tests
5.2.3 Service output tests
92 5.3 Conformance check to a specified minimum average duration
5.4 Guidance for considering proposed value of minimum average duration
5.5 OCV testing
5.6 Insulation resistance
5.7 Battery dimensions
5.8 Leakage and deformation
93 6 Performance – Test conditions
6.1 Storage and discharge conditions
6.2 Commencement of discharge tests after storage
6.3 Discharge test conditions
6.3.1 General
6.3.2 Compliance
Table 3 – Conditions for storage before and during discharge testing
94 6.4 Load resistance
6.5 Time periods
6.6 Test condition tolerances
6.7 Activation of ‘P’-system batteries
Table 4 – Resistive loads for tests
Table 5 – Time periods for tests
Table 6 – Test condition tolerances
95 6.8 Measuring equipment
6.8.1 Voltage measurement
6.8.2 Mechanical measurement
7 Sampling and quality assurance
8 Battery packaging
96 Annexes
Annex A (normative) Criteria for the standardization of batteries
Table A.1 – Items necessary to standardize
97 Annex B (informative) Recommendations for equipment design
B.1 Technical liaison
B.2 Battery compartment
B.2.1 General
98 B.2.2 Limiting access by children
B.3 Voltage cut-off
99 Annex C (normative) Designation system (nomenclature)
C.1 General
C.2 Designation system in use up to October 1990
C.2.1 General
C.2.2 Cells
100 Table C.1 – Physical designation and dimensions of round cells and batteries
101 C.2.3 Electrochemical system
C.2.4 Batteries
Table C.2 – Physical designation and nominal overall dimensions of flat cells
Table C.3 – Physical designation and dimensions of square cells and batteries
102 C.2.5 Modifiers
C.2.6 Examples
C.3 Designation system in use since October 1990
C.3.1 General
C.3.2 Round batteries
103 Figures
Figure C.1 – Designation system for round batteries: d1 < 100 mm; height h1 < 100 mm
104 Figure C.2 – Diameter code for non-recommended diameters
Table C.4 – Diameter code for recommended diameter
105 Figure C.3 – Height code for denoting the hundredths of a millimetre of height
106 C.3.3 Non-round batteries
Figure C.4 – Designation system for round batteries: d1 ≥ 100 mm; height h1 ≥ 100 mm
107 Figure C.5 – Designation system for non-round batteries, dimensions < 100 mm
108 Figure C.6 – Designation system for non-round batteries, dimensions ≥ 100 mm
Figure C.7 – Height code for discrimination per tenth of a millimetre
109 C.3.4 Ambiguity
Table C.5 – Physical designation and dimensions of round cellsand batteries based on Clause C.2
110 Table C.6 – Physical designation and dimensions of non-round batteries based on Clause C.2
111 Annex D (informative) Standard discharge voltage Us – Definition and method of determination
D.1 Definition
D.2 Determination
D.2.1 General considerations: the C/R-plot
112 D.2.2 Determination of the standard discharge resistor Rs
Figure D.1 – Normalized C/R-plot (schematic)
113 D.2.3 Determination of the standard discharge capacity Cs and standard discharge time ts
Figure D.2 – Standard discharge voltage (schematic)
114 D.3 Experimental conditions to be observed and test results
Table D.1 – Standard discharge voltage by system
115 Annex E (informative) Preparation of standard methods of measuring performance (SMMP) of consumer goods
E.1 General
E.2 Performance characteristics
E.3 Criteria for the development of test methods
116 Annex F (informative) Guidance for proposing value of minimum average duration
F.1 General
F.2 Sampling
F.3 Calculation method
117 Annex G (normative) Code of practice for packaging, shipment, storage, use and disposal of primary batteries
G.1 General
G.2 Packaging
G.3 Transport and handling
G.4 Storage and stock rotation
118 G.5 Displays at sales points
G.6 Selection, use and disposal
G.6.1 Purchase
G.6.2 Installation
G.6.3 Use
119 G.6.4 Replacement
G.6.5 Disposal
120 Annex H (informative) Compliance checklist
121 Bibliography
BS EN IEC 60086-1:2021 - TC
$246.62