GB/T 156-2017 PDF in English
GB/T 156-2017 (GB/T156-2017, GBT 156-2017, GBT156-2017)
Standard ID | Contents [version] | USD | STEP2 | [PDF] delivered in | Name of Chinese Standard | Status |
GB/T 156-2017 | English | 125 |
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Standard voltages
| Valid |
GB/T 156-2007 | English | 599 |
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Standard voltage
| Obsolete |
GB 156-2003 | English | 639 |
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Standard voltages
| Obsolete |
GB 156-1993 | English | 279 |
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Standard voltages
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Standards related to (historical): GB/T 156-2017
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GB/T 156-2017: PDF in English (GBT 156-2017) GB/T 156-2017
GB
NATIONAL STANDARD OF THE
PEOPLE’S REPUBLIC OF CHINA
ICS 29.020
K 04
Replacing GB/T 156-2007
Standard Voltages
(IEC 60038.2009, IEC Standard Voltages,
MOD)
ISSUED ON. NOVEMBER 01, 2017
IMPLEMENTED ON. MAY 01, 2018
Issued by. General Administration of Quality Supervision, Inspection and
Quarantine;
Standardization Administration of PRC.
Table of Contents
Foreword ... 3
1 Scope ... 5
2 Terms and Definitions ... 5
3 Standard Voltage ... 6
Bibliography ... 12
Foreword
This Standard was drafted as per the rules specified in GB/T 1.1-2009.
This Standard replaced GB/T 156-2007 Standard Voltages; compared with GB/T 156-
2007, this Standard has the major technical changes as follows.
--- Add the nominal voltage of the HVDC transmission system, form DC
transmission voltage level sequence of ±160, (±200), ±320, (±400), ±500, (±660),
±800, ±1100kV (see Table 6);
--- Delete 1.2V, 1.5V in the DC part of the original standard; add the preferred value
of 400V; change 440V as the alternative value; add note “because the voltage of
original battery and battery unit are both lower than 2.4V; the selection of battery
in the practical application is based on its property rather than its voltage; these
voltages are not included in the table” (see Table 7);
--- Delete the rated voltage of the generator (see 4.8).
This Standard adopts the re-drafting method to modify and use IEC 60038.2009 IEC
Standard Voltages.
Compared with IEC 60038.2009, this Standard has the changes in structure. Since
Clause 2, Sub-clauses 3.4~3.8 are deleted, the clause number after Clause 2 shall be
decremented by 1 based on IEC 60038.2009.
The technical differences and their causes between this Standard and IEC 60038.2009
are as follows.
--- According to China’s actual situation, in the Clause 1 Scope, modify the nominal
voltage of greater than 100V into greater than 220V; modify the DC voltage of
lower than 750V into lower than 1500V; add “HVDC transmission system” to the
applicable range; delete NOTE 1 used for instructing the value-taking reason for
international standard; add new NOTE 1 for the benefit of standard use; this
Standard only retains the 50Hz voltage series (see Clause 1);
--- In view of the standard (GB/T 12325) on the special supply voltage tolerance,
the technical requirements of which is stricter; thus, delete the normative
reference of IEC60364-5-52 in IEC 60038.2009;
--- Delete the terms of “power supply point”, “supply voltage”, “supply voltage range”,
“electrical voltage” and “electrical voltage range”; add the term of “rated voltage
for equipment” (see 2.4);
--- Modify the IEC standard voltages of 230/400V and 400/690V into 220/380V and
Standard Voltages
1 Scope
This Standard specifies the nominal voltage value to be.
--- The preferred value for the nominal voltage of the power supply system;
--- The reference value for the equipment and system design.
This Standard is applicable to.
--- AC transmission, distribution, power systems and equipment with nominal
voltage greater than 220V, standard frequency of 50Hz.
--- AC and DC traction system.
--- Equipment with rated voltage lower than 120V, standard frequency of 50Hz (but
not absolutely limited), DC voltage less than 1500V. They include batteries
(consist of primary battery and battery cell), other power supply units (AC or DC),
electrical equipment (including industrial and communication), and electrical
appliances.
--- HVDC transmission system.
This Standard is not applicable to the voltages that characterize or transmit signals
and measurements.
This Standard is not applicable to the voltages of the elements, components, parts
inside the electrical equipment.
NOTE 1. the AC voltage is the rms value; while the DC voltage is the ripple-free DC voltage
value in this Standard.
NTOE 2. test voltage, test conditions, acceptance criteria require to be specified in the system
and product standards.
2 Terms and Definitions
The following terms and definitions are applicable to this document.
2.1 Nominal system voltage
It is used to mark or identify a given value of the system voltage.
NOTE. rewrite GB/T 2900.50-2008, definition 601-01-21.
2.2 Highest voltage of a system
The maximum operating voltage value that occurs at any point in the system, or at any
time during the normal system operation.
NOTE. Transient overvoltage (such as those caused by switching operation) and abnormal
transient voltage change shall be excluded.
[GB/T 2900.50-2008, definition 601-01-23].
2.3 Lowest voltage of a system
The minimum operating voltage that occurs at any point in a system, or at any time
during normal system operation.
NOTE. Transient overvoltage (such as those caused by switching operation) and abnormal
transient voltage change shall be excluded.
[GB/T 2900.50-2008, definition 601-01-24].
2.4 Rated voltage (for equipment)
The voltage specified by the manufacturer for an electrical equipment under specified
operating conditions.
NOTE. rewrite GB/T2900.1-2008, definition 3.5.86.
2.5 Highest voltage for equipment
The highest voltage for the equipment is specified to indicate.
a) Insulation;
b) Other performance associated with the high voltage for equipment.
NOTE. the equipment can only be used in the systems where the highest voltage of a system
is no greater than the highest voltage for equipment.
3 Standard Voltage
3.1 AC system and related equipment with nominal voltage of 220V~1000V
The standard voltages of AC system and relevant equipment with nominal voltage of
220V~1000V shall be selected from Table 1. In the Table, the lower value in the same
set of data indicates the phase voltage; while the higher value indicates the line voltage;
...... Source: Above contents are excerpted from the PDF -- translated/reviewed by: www.chinesestandard.net / Wayne Zheng et al.
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