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S+ IEC 60086-3 Ed. 4.0 en:2016 (Redline version) Primary batteries - Part 3: Watch batteries, 2016
- Redline version (English only) [Go to Page]
- CONTENTS
- FOREWORD
- INTRODUCTION
- 1 Scope
- 2 Normative references
- 3 Terms and definitions
- 4 Physical requirements [Go to Page]
- 4.1 Battery dimensions, symbols and size codes
- 4.2 Terminals
- 4.3 Projection of the negative terminal (h5)
- 4.4 Shape of negative terminal
- 4.5 Mechanical resistance to pressure
- 4.6 Deformation
- 4.7 Leakage
- 4.8 Marking [Go to Page]
- 4.8.1 General
- 4.8.2 Disposal
- 5 Electrical requirements [Go to Page]
- 5.1 Electrochemical system, nominal voltage, end-point voltage and open-circuit voltage
- 5.2 Closed circuit voltage Ucc (CCV), internal resistance and impedance
- 5.3 Capacity
- 5.4 Capacity retention
- 6 Sampling and quality assurance
- 7 Test methods [Go to Page]
- 7.1 Shape and dimensions [Go to Page]
- 7.1.1 Shape requirement
- 7.2 Electrical characteristics [Go to Page]
- 7.2.1 Environmental conditions
- 7.2.2 Equivalent circuit – effective internal resistance – DC method
- 7.2.3 Equipment
- 7.2.4 Measurement of open-circuit voltage Uoc (OCV) and closed circuit voltage Ucc (CCV)
- 7.2.5 Calculation of the internal resistance Ri
- 7.2.6 Measurement of the capacity
- 7.2.7 Calculation of the internal resistance Ri during discharge in case of method A (optional)
- 7.3 Test methods for determining the resistance to leakage [Go to Page]
- 7.3.1 Preconditioning and previous initial visual examination
- 7.3.2 High temperature and humidity test
- 7.3.3 Test by temperature cycles
- 8 Visual examination and acceptance conditions [Go to Page]
- 8.1 Preconditioning
- 8.2 Magnification
- 8.3 Lighting
- 8.4 Leakage levels and classification
- 8.5 Acceptance conditions
- Annex A (normative) Designation
- Bibliography
- Figures [Go to Page]
- Figure 1 – Dimensional drawing
- Figure 2 – Shape of negative terminal
- Figure 3 – Shape requirement
- Figure 4 – Schematic voltage transient
- Figure 5 – Curve: U = f(t)
- Figure 6 – Circuitry principle
- Figure 7 – Circuitry principle for method A
- Figure 8 – Circuitry principle for method B
- Figure 9 – Test by temperature cycles
- Tables [Go to Page]
- Table 1 – Dimensions and size codes
- Table 2 – Dimensions and size codes
- Table 3 – Minimum values of l1
- Table 4 – Applied force F by battery dimensions
- Table 5 – Standardised electrochemical systems
- Table 6 – Test method for Ucc (CCV) measurement
- Table 7 – Test method A for Ucc (CCV) measurement
- Table 8 – Discharge resistance (values)
- Table 9 – Storage conditions for the recommended test
- Table 10 – Storage conditions for optional test
- Table 11 – Leakage levels and classification (1 of 2)
- International Standard (Bilingual) [Go to Page]
- English [Go to Page]
- CONTENTS
- FOREWORD
- INTRODUCTION
- 1 Scope
- 2 Normative references
- 3 Terms and definitions
- 4 Physical requirements [Go to Page]
- 4.1 Battery dimensions, symbols and size codes
- 4.2 Terminals
- 4.3 Projection of the negative terminal (h5)
- 4.4 Shape of negative terminal
- 4.5 Mechanical resistance to pressure
- 4.6 Deformation
- 4.7 Leakage
- 4.8 Marking [Go to Page]
- 4.8.1 General
- 4.8.2 Disposal
- 5 Electrical requirements [Go to Page]
- 5.1 Electrochemical system, nominal voltage, end-point voltage and open-circuit voltage
- 5.2 Closed circuit voltage Ucc (CCV), internal resistance and impedance
- 5.3 Capacity
- 5.4 Capacity retention
- 6 Sampling and quality assurance
- 7 Test methods [Go to Page]
- 7.1 Shape and dimensions [Go to Page]
- 7.1.1 Shape requirement
- 7.2 Electrical characteristics [Go to Page]
- 7.2.1 Environmental conditions
- 7.2.2 Equivalent circuit – effective internal resistance – DC method
- 7.2.3 Equipment
- 7.2.4 Measurement of open-circuit voltage Uoc (OCV) and closed circuit voltage Ucc (CCV)
- 7.2.5 Calculation of the internal resistance Ri
- 7.2.6 Measurement of the capacity
- 7.2.7 Calculation of the internal resistance Ri during discharge in case of method A (optional)
- 7.3 Test methods for determining the resistance to leakage [Go to Page]
- 7.3.1 Preconditioning and initial visual examination
- 7.3.2 High temperature and humidity test
- 7.3.3 Test by temperature cycles
- 8 Visual examination and acceptance conditions [Go to Page]
- 8.1 Preconditioning
- 8.2 Magnification
- 8.3 Lighting
- 8.4 Leakage levels and classification
- 8.5 Acceptance conditions
- Annex A (normative) Designation
- Bibliography
- Figures [Go to Page]
- Figure 1 – Dimensional drawing
- Figure 2 – Shape of negative terminal
- Figure 3 – Shape requirement
- Figure 4 – Schematic voltage transient
- Figure 5 – Curve: U = f(t)
- Figure 6 – Circuitry principle
- Figure 7 – Circuitry principle for method A
- Figure 8 – Circuitry principle for method B
- Figure 9 – Test by temperature cycles
- Tables [Go to Page]
- Table 1 – Dimensions and size codes
- Table 2 – Dimensions and size codes
- Table 3 – Minimum values of l1
- Table 4 – Applied force F by battery dimensions
- Table 5 – Standardised electrochemical systems
- Table 6 – Test method for Ucc (CCV) measurement
- Table 7 – Test method A for Ucc (CCV) measurement
- Table 8 – Discharge resistance (values)
- Table 9 – Storage conditions for the recommended test
- Table 10 – Storage conditions for optional test
- Table 11 – Leakage levels and classification (1 of 2)
- Français [Go to Page]
- SOMMAIRE
- AVANT-PROPOS
- INTRODUCTION
- 1 Domaine d’application
- 2 Références normatives
- 3 Termes et définitions
- 4 Exigences physiques [Go to Page]
- 4.1 Dimensions, symboles et codage de la taille des piles
- 4.2 Bornes
- 4.3 Dépassement de la borne négative (h5)
- 4.4 Forme de la borne négative
- 4.5 Résistance mécanique à la pression
- 4.6 Déformation
- 4.7 Fuites
- 4.8 Marquage [Go to Page]
- 4.8.1 Généralités
- 4.8.2 Mise au rebut
- 5 Exigences électriques [Go to Page]
- 5.1 Système électrochimique, tension nominale, tension d’arrêt et tension en circuit ouvert
- 5.2 Tension en circuit fermé Ucc (CCV), résistance interne et impédance
- 5.3 Capacité
- 5.4 Conservation de la capacité
- 6 Echantillonnage et assurance de la qualité
- 7 Méthodes d’essai [Go to Page]
- 7.1 Forme et dimensions [Go to Page]
- 7.1.1 Exigences de forme
- 7.2 Caractéristiques électriques [Go to Page]
- 7.2.1 Conditions environnementales
- 7.2.2 Circuit équivalent – Résistance interne effective – Méthode en courant continu
- 7.2.3 Equipement
- 7.2.4 Mesure de la tension en circuit ouvert Uoc (OCV) et de la tension en circuit fermé Ucc (CCV)
- 7.2.5 Calcul de la résistance interne Ri
- 7.2.6 Mesure de la capacité
- 7.2.7 Calcul de la résistance interne Ri pendant la décharge dans le cas de la méthode A (facultatif)
- 7.3 Méthodes d’essai pour déterminer la résistance aux fuites [Go to Page]
- 7.3.1 Préconditionnement et examen visuel initial
- 7.3.2 Essai à haute température et à humidité élevée
- 7.3.3 Essai par cycle de température
- 8 Examen visuel et conditions d’acceptation [Go to Page]
- 8.1 Préconditionnement
- 8.2 Grossissement
- 8.3 Éclairage
- 8.4 Niveaux de fuite et classification
- 8.5 Conditions d'acceptation
- Annexe A (normative) Désignation
- Bibliographie
- Figures [Go to Page]
- Figure 1 – Dessin coté
- Figure 2 – Forme de la borne négative
- Figure 3 – Exigences de forme
- Figure 4 – Schéma de la tension transitoire
- Figure 5 – Courbe: U = f(t)
- Figure 6 – Circuit de principe
- Figure 7 – Circuit de principe pour la méthode A
- Figure 8 – Circuit de principe pour la méthode B
- Figure 9 – Essai par cycles de température
- Tableaux [Go to Page]
- Tableau 1 – Dimensions et codage des tailles
- Tableau 2 – Dimensions et codage des tailles
- Tableau 3 – Valeurs minimales de l1
- Tableau 4 – Force F appliquée selon les dimensions de la pile
- Tableau 5 – Systèmes électrochimiques normalisés
- Tableau 6 – Méthode d'essai pour la mesure de Ucc (CCV)
- Tableau 7 – Méthode d'essai A pour la mesure de Ucc (CCV)
- Tableau 8 – Résistance de décharge (valeurs)
- Tableau 9 – Conditions de stockage pour l’essai recommandé
- Tableau 10 – Conditions de stockage pour l’essai facultatif
- Tableau 11 – Niveaux de fuite et classification (1 de 2) [Go to Page]