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Position: Chinese Standard in English/QC/T 741-2014/XG1-2017
QC/T 741-2014/XG1-2017   Ultra-capacitor for Electric Vehicles, includes Amendment 1 (English Version)
Standard No.: QC/T 741-2014/XG1-2017 Status:valid remind me the status change

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Target Language:English File Format:PDF
Word Count: 12500 words Translation Price(USD):375.0 remind me the price change

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Implemented on:2017-4-12 Delivery: via email in 1 business day

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Standard No.: QC/T 741-2014/XG1-2017
English Name: Ultra-capacitor for Electric Vehicles, includes Amendment 1
Chinese Name: 车用超级电容器(含第1号修改单)
Chinese Classification: T36    Electronic and electrical equipment
Professional Classification: QC    Professional Standard - Automobile
Source Content Issued by: Ministry of Industry and Information Technology
Issued on: 2014-10-14
Implemented on: 2017-4-12
Status: valid
Superseding:QC/T 741-2014 Ultra-capacitor for Electric Vehicles
Target Language: English
File Format: PDF
Word Count: 12500 words
Translation Price(USD): 375.0
Delivery: via email in 1 business day
Ultra-capacitor for electric vehicles 1 Scope This standard specifies the requirements, test methods, inspection rules, marking, packaging, transportation and storage of ultracapacitors (electrochemical capacitor) for electric road vehicles. This standard is applicable to ultracapacitor cell and module for electric road vehicles (hereinafter referred to as "ultracapacitor"). 2 Normative reference The following referenced document is indispensable for the application of this standard. For dated references, only the edition cited applies. For undated references, the latest edition of the referenced document (including any amendments) applies. GB/T 2900.41-2008 Electrotechnical terminology — Primary and secondary cells and batteries 3 Terms and definitions For the purposes of this standard, the terms and definitions given in GB/T 2900.41-2008 and the following apply. 3.1 ultracapacitors electrochemical energy storage device in which at least one electrode uses an electrical double layer or pseudocapacitance to store energy, and the time-voltage curve during constant current charging or discharging is usually approximately linear 3.2 inorganic electrolyte ultracapacitors ultracapacitors with aqueous solution as electrolyte 3.3 organic electrolyte ultracapacitors ultracapacitors with organic solution as electrolyte 3.4 cell basic unit of a ultracapacitor, including electrodes, diaphragms, electrolytes/liquids, terminals and enclosures 3.5 module combined body composed of two or more ultracapacitor cells and their accessories 3.6 rated voltage maximum working voltage of a ultracapacitor 3.7 capacitance capacity of a ultracapacitor to store charge, in F 3.8 nominal capacitance capacitance of a ultracapacitor provided by the enterprise, in F 3.9 energy accumulated energy emitted from a ultracapacitor by constant discharge from its rated voltage to minimum working voltage, in W·h 3.10 nominal energy energy of a ultracapacitor provided by the enterprise, in W·h 3.11 energy density electric energy released from a ultracapacitor per unit mass under a certain discharge system, in W·h/kg 3.12 internal resistance sum of the resistance of electrolyte/liquid, electrode, diaphragm, etc. and the internal connection resistance of a ultracapacitor, in Ω 3.13 nominal internal resistance internal resistance value of a ultracapacitor provided by the enterprise, in Ω 3.14 voltage holding characteristics ratio of the terminal voltage to the rated voltage of the ultracapacitor obtained after the capacitor is charged to the rated voltage at constant current, then charged at the rated voltage for 30 min, and finally left circuit opened for 72 h at room temperature
Foreword iv 1 Scope 2 Normative reference 3 Terms and definitions 4 Symbols 5 Requirements 6 Test method 7 Inspection rules 8 Marking, packaging, transportation and storage
Referred in QC/T 741-2014/XG1-2017:
*GB/T 2900.41-2008 Electrotechnical terminology - Primary and secondary cells and batteries
QC/T 741-2014/XG1-2017 is referred in:
*GB/T 19754-2015 Test methods for energy consumption of heavy-duty hybrid electric vehicles
*GB/T 18165-2019 Specifications of amusement rides fairy train category
Code of China
Standard
QC/T 741-2014/XG1-2017  Ultra-capacitor for Electric Vehicles, includes Amendment 1 (English Version)
Standard No.QC/T 741-2014/XG1-2017
Statusvalid
LanguageEnglish
File FormatPDF
Word Count12500 words
Price(USD)375.0
Implemented on2017-4-12
Deliveryvia email in 1 business day
Detail of QC/T 741-2014/XG1-2017
Standard No.
QC/T 741-2014/XG1-2017
English Name
Ultra-capacitor for Electric Vehicles, includes Amendment 1
Chinese Name
车用超级电容器(含第1号修改单)
Chinese Classification
T36
Professional Classification
QC
ICS Classification
Issued by
Ministry of Industry and Information Technology
Issued on
2014-10-14
Implemented on
2017-4-12
Status
valid
Superseded by
Superseded on
Abolished on
Superseding
QC/T 741-2014 Ultra-capacitor for Electric Vehicles
Language
English
File Format
PDF
Word Count
12500 words
Price(USD)
375.0
Keywords
QC/T 741-2014/XG1-2017, QC 741-2014/XG1-2017, QC 741-2014XG1-2017, QC/T741-2014/XG1-2017, QC/T 741, QC/T741, QC741-2014/XG1-2017, QC 741, QC741, QC741-2014XG1-2017, QC 741, QC741
Introduction of QC/T 741-2014/XG1-2017
Ultra-capacitor for electric vehicles 1 Scope This standard specifies the requirements, test methods, inspection rules, marking, packaging, transportation and storage of ultracapacitors (electrochemical capacitor) for electric road vehicles. This standard is applicable to ultracapacitor cell and module for electric road vehicles (hereinafter referred to as "ultracapacitor"). 2 Normative reference The following referenced document is indispensable for the application of this standard. For dated references, only the edition cited applies. For undated references, the latest edition of the referenced document (including any amendments) applies. GB/T 2900.41-2008 Electrotechnical terminology — Primary and secondary cells and batteries 3 Terms and definitions For the purposes of this standard, the terms and definitions given in GB/T 2900.41-2008 and the following apply. 3.1 ultracapacitors electrochemical energy storage device in which at least one electrode uses an electrical double layer or pseudocapacitance to store energy, and the time-voltage curve during constant current charging or discharging is usually approximately linear 3.2 inorganic electrolyte ultracapacitors ultracapacitors with aqueous solution as electrolyte 3.3 organic electrolyte ultracapacitors ultracapacitors with organic solution as electrolyte 3.4 cell basic unit of a ultracapacitor, including electrodes, diaphragms, electrolytes/liquids, terminals and enclosures 3.5 module combined body composed of two or more ultracapacitor cells and their accessories 3.6 rated voltage maximum working voltage of a ultracapacitor 3.7 capacitance capacity of a ultracapacitor to store charge, in F 3.8 nominal capacitance capacitance of a ultracapacitor provided by the enterprise, in F 3.9 energy accumulated energy emitted from a ultracapacitor by constant discharge from its rated voltage to minimum working voltage, in W·h 3.10 nominal energy energy of a ultracapacitor provided by the enterprise, in W·h 3.11 energy density electric energy released from a ultracapacitor per unit mass under a certain discharge system, in W·h/kg 3.12 internal resistance sum of the resistance of electrolyte/liquid, electrode, diaphragm, etc. and the internal connection resistance of a ultracapacitor, in Ω 3.13 nominal internal resistance internal resistance value of a ultracapacitor provided by the enterprise, in Ω 3.14 voltage holding characteristics ratio of the terminal voltage to the rated voltage of the ultracapacitor obtained after the capacitor is charged to the rated voltage at constant current, then charged at the rated voltage for 30 min, and finally left circuit opened for 72 h at room temperature
Contents of QC/T 741-2014/XG1-2017
Foreword iv 1 Scope 2 Normative reference 3 Terms and definitions 4 Symbols 5 Requirements 6 Test method 7 Inspection rules 8 Marking, packaging, transportation and storage
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