Electricity metering equipment (a.c.) - Acceptance inspection - Part 31: Particular requirements for static meters for active energy (classes 0,2 S, 0,5 S, 1 and 2, and class indexes A, B and C) (IEC 62058-31:2008, modified)

IEC 62058-31:2008 specifies particular requirements for acceptance inspection of newly manufactured direct connected or transformer operated static meters for active energy (classes 0,2 S, 0,5 S, 1 and 2) delivered in lots in quantities above 50. The method of acceptance of smaller lots should be agreed upon by the manufacturer and the customer.

Wechselstrom-Elektrizitätszähler - Annahmeprüfung - Teil 31: Besondere Anforderungen an elektronische Zähler für Wirkenergie (Klassen 0,2 S, 0,5 S, 1 und 2 und Klassenzeichen A, B und C) (IEC 62058-31:2008, modifiziert)

Equipement de comptage de l'électricité (a.c.) - Contrôle de réception - Partie 31: Exigences particulières pour compteurs statiques d'énergie active (de classes 0,2 S, 0,5 S, 1 et 2 et d’indices de classe A, B et C) (CEI 62058-31:2008, modifiée)

La CEI 62058-31:2008 définit les exigences particulières pour les essais de réception des compteurs statiques de construction récente d'énergie active connectés directement ou alimentés par transformateur (de classes 0,2 S, 0,5 S, 1 et 2) livrés par lots de plus de 50 unités. Il convient que la méthode de réception pour des lots plus petits fasse l'objet d'un accord entre le fabricant et le client.

Merjenje električne energije (a.c.) - Sprejemna kontrola - 31. del: Posebne zahteve za statične števce delovne energije (razredi 0,2 S, 0,5 S, 1 in 2 ter razredni indeksi A, B in C) (IEC 62058-31:2008, spremenjen)

Ta del IEC 62058 določa posebne zahteve za sprejemne preglede na novo izdelanih neposredno priključenih ali s transformatorjem upravljanih elektromehanskih števcev delovne energije (razred 0.2 S, 0.5 S, 1 in 2), dobavljenih v pošiljkah 50 kosov ali več. Sprejemna metoda za manjše pošiljke mora biti dogovorjena s strani proizvajalca in stranke. Proces, opisan v nadaljnjem besedilu, je prvotno namenjen za sprejemno kontrolo med proizvajalcem in kupcem.

General Information

Status
Published
Publication Date
12-Jul-2010
Current Stage
6060 - National Implementation/Publication (Adopted Project)
Start Date
30-Jun-2010
Due Date
04-Sep-2010
Completion Date
13-Jul-2010

Relations

Effective Date
01-Sep-2010
Effective Date
07-Jun-2022

Overview

EN 62058-31:2010 (CLC adoption of IEC 62058-31:2008, modified) defines acceptance inspection requirements for newly manufactured static electricity meters for active energy (a.c.). It applies to direct‑connected or transformer‑operated static meters delivered in lots larger than 50 units, and also covers meters of accuracy classes 0,2 S, 0,5 S, 1 and 2 and class indexes A, B and C. The standard supplements the general acceptance procedures in EN 62058-11 with meter‑specific tests, sampling plans and performance criteria relevant to conformity assessment and legal metrology (MID).

Key topics

  • Scope and applicability: Acceptance inspection for static meters for active energy in lots >50; smaller-lot acceptance to be mutually agreed between manufacturer and customer.
  • Test program: Defines preliminary tests and pre‑conditioning, no‑load tests, starting tests and accuracy tests (Tests No. 2–9 referenced in the standard).
  • Class coverage: Explicit requirements for accuracy classes 0,2 S, 0,5 S, 1 and 2 and class indexes A, B and C (including modified test points and limits for class indexes).
  • Starting and accuracy points: Tables (e.g., Table Z1 and Table Z2 in the CENELEC modification) set starting current values and accuracy test points/percentage error limits for class indexes A/B/C.
  • Conformity handling: Uses statistical sampling plans and lot inspection methods from EN 62058-11; also provides rules to derive applicable percentage error limits by accounting for type‑test variations due to temperature, voltage and frequency.
  • Metrological compliance: Aligns with MID essential requirements (modules F, D, H1) and ensures acceptance testing supports maximum permissible error (MPE) compliance when combined with type‑test data.

Applications and users

  • Meter manufacturers - to implement standardized acceptance testing and lot release procedures.
  • Conformity assessment bodies and test laboratories - to perform batch acceptance tests and calculate applicable error limits.
  • Utilities and procurement teams - to specify acceptance criteria in procurement contracts and inspect delivered meters.
  • National metrology institutes and certification authorities - for legal‑metrology enforcement and MID conformity verification.

Related standards

  • EN 62058-11:2010 - General acceptance inspection methods (sampling plans, lot inspection).
  • EN 50470-1 / EN 50470-3 - General and particular requirements for meters (class indexes A, B, C).
  • EN 62053-21 / EN 62053-22 - Particular requirements for static meters (classes 1/2 and 0,2 S/0,5 S).
  • EN 62052-11 - Meter general requirements and tests.

EN 62058-31:2010 is essential when you need harmonized, meter‑specific acceptance inspection methods that tie factory testing, statistical sampling and type‑test variations into a legally robust conformity assessment for static meters for active energy.

Standard

SIST EN 62058-31:2010

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Frequently Asked Questions

SIST EN 62058-31:2010 is a standard published by the Slovenian Institute for Standardization (SIST). Its full title is "Electricity metering equipment (a.c.) - Acceptance inspection - Part 31: Particular requirements for static meters for active energy (classes 0,2 S, 0,5 S, 1 and 2, and class indexes A, B and C) (IEC 62058-31:2008, modified)". This standard covers: IEC 62058-31:2008 specifies particular requirements for acceptance inspection of newly manufactured direct connected or transformer operated static meters for active energy (classes 0,2 S, 0,5 S, 1 and 2) delivered in lots in quantities above 50. The method of acceptance of smaller lots should be agreed upon by the manufacturer and the customer.

IEC 62058-31:2008 specifies particular requirements for acceptance inspection of newly manufactured direct connected or transformer operated static meters for active energy (classes 0,2 S, 0,5 S, 1 and 2) delivered in lots in quantities above 50. The method of acceptance of smaller lots should be agreed upon by the manufacturer and the customer.

SIST EN 62058-31:2010 is classified under the following ICS (International Classification for Standards) categories: 17.220.20 - Measurement of electrical and magnetic quantities; 91.140.50 - Electricity supply systems. The ICS classification helps identify the subject area and facilitates finding related standards.

SIST EN 62058-31:2010 has the following relationships with other standards: It is inter standard links to SIST EN 61358:1997, SIST EN 61358:1997. Understanding these relationships helps ensure you are using the most current and applicable version of the standard.

SIST EN 62058-31:2010 is associated with the following European legislation: EU Directives/Regulations: 2004/22/EC, 2014/32/EU; Standardization Mandates: M/347, M/374. When a standard is cited in the Official Journal of the European Union, products manufactured in conformity with it benefit from a presumption of conformity with the essential requirements of the corresponding EU directive or regulation.

You can purchase SIST EN 62058-31:2010 directly from iTeh Standards. The document is available in PDF format and is delivered instantly after payment. Add the standard to your cart and complete the secure checkout process. iTeh Standards is an authorized distributor of SIST standards.

Standards Content (Sample)


SLOVENSKI STANDARD
01-september-2010
1DGRPHãþD
SIST EN 61358:1997
0HUMHQMHHOHNWULþQHHQHUJLMH DF 6SUHMHPQDNRQWURODGHO3RVHEQH]DKWHYH
]DVWDWLþQHãWHYFHGHORYQHHQHUJLMH UD]UHGL66LQWHUUD]UHGQLLQGHNVL
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Electricity metering equipment (a.c.) - Acceptance inspection - Part 31: Particular
requirements for static meters for active energy (classes 0,2 S, 0,5 S, 1 and 2, and class
indexes A, B and C) (IEC 62058-31:2008, modified)
Wechselstrom-Elektrizitätszähler - Annahmeprüfung - Teil 31: Besondere Anforderungen
an elektronische Zähler für Wirkenergie (Klassen 0,2 S, 0,5 S, 1 und 2 und
Klassenzeichen A, B und C) (IEC 62058-31:2008, modifiziert)
Equipement de comptage de l'électricité (a.c.) - Contrôle de réception - Partie 31:
Exigences particulières pour compteurs statiques d'énergie active (de classes 0,2 S, 0,5
S, 1 et 2 et d’indices de classe A, B et C) (CEI 62058-31:2008, modifiée)
Ta slovenski standard je istoveten z: EN 62058-31:2010
ICS:
17.220.20 0HUMHQMHHOHNWULþQLKLQ Measurement of electrical
PDJQHWQLKYHOLþLQ and magnetic quantities
91.140.50 Sistemi za oskrbo z elektriko Electricity supply systems
2003-01.Slovenski inštitut za standardizacijo. Razmnoževanje celote ali delov tega standarda ni dovoljeno.

EUROPEAN STANDARD
EN 62058-31
NORME EUROPÉENNE
June 2010
EUROPÄISCHE NORM
ICS 17.220; 91.140.50 Supersedes EN 61358:1996 (partially)

English version
Electricity metering equipment (a.c.) -
Acceptance inspection -
Part 31: Particular requirements for static meters for active energy
(classes 0,2 S, 0,5 S, 1 and 2, and class indexes A, B and C)
(IEC 62058-31:2008, modified)
Equipement de comptage  Wechselstrom-Elektrizitätszähler -
de l'électricité (a.c.) - Annahmeprüfung -
Contrôle de réception - Teil 31: Besondere Anforderungen
Partie 31: Exigences particulières an elektronische Zähler für Wirkenergie
pour compteurs statiques d'énergie active (Klassen 0,2 S, 0,5 S, 1 und 2
(de classes 0,2 S, 0,5 S, 1 et 2 und Klassenzeichen A, B und C)
et d’indices de classe A, B et C) (IEC 62058-31:2008, modifiziert)
(CEI 62058-31:2008, modifiée)
This European Standard was approved by CENELEC on 2010-06-01. CENELEC members are bound to comply
with the CEN/CENELEC Internal Regulations which stipulate the conditions for giving this European Standard
the status of a national standard without any alteration.

Up-to-date lists and bibliographical references concerning such national standards may be obtained on
application to the Central Secretariat or to any CENELEC member.

This European Standard exists in three official versions (English, French, German). A version in any other
language made by translation under the responsibility of a CENELEC member into its own language and notified
to the Central Secretariat has the same status as the official versions.

CENELEC members are the national electrotechnical committees of Austria, Belgium, Bulgaria, Croatia, Cyprus,
the Czech Republic, Denmark, Estonia, Finland, France, Germany, Greece, Hungary, Iceland, Ireland, Italy,
Latvia, Lithuania, Luxembourg, Malta, the Netherlands, Norway, Poland, Portugal, Romania, Slovakia, Slovenia,
Spain, Sweden, Switzerland and the United Kingdom.

CENELEC
European Committee for Electrotechnical Standardization
Comité Européen de Normalisation Electrotechnique
Europäisches Komitee für Elektrotechnische Normung

Management Centre: Avenue Marnix 17, B - 1000 Brussels

© 2010 CENELEC - All rights of exploitation in any form and by any means reserved worldwide for CENELEC members.
Ref. No. EN 62058-31:2010 E
Foreword
The text of document 13/1432/FDIS, future edition 1 of IEC 62058-31, prepared by IEC TC 13, Electrical
energy measurement, tariff- and load control, was submitted to the IEC-CENELEC parallel vote.
A draft amendment, prepared by the Technical Committee CENELEC TC 13, Equipment for electrical
energy measurement and load control, was submitted to the formal vote.
The combined texts were approved by CENELEC as EN 62058-31 on 2010-06-01.
Attention is drawn to the possibility that some of the elements of this document may be the subject of
patent rights. CEN and CENELEC shall not be held responsible for identifying any or all such patent
rights.
The following dates were fixed:
– latest date by which the EN has to be implemented
at national level by publication of an identical
national standard or by endorsement (dop) 2011-06-01
– latest date by which the national standards conflicting
with the EN have to be withdrawn (dow) 2013-06-01
This European Standard has been prepared under a mandate given to CENELEC by the European
Commission and the European Free Trade Association and covers essential requirements of
EC Directive 2004/22/EC. See Annex ZZ.
Annexes ZA and ZZ have been added by CENELEC.
__________
Endorsement notice
The text of the International Standard IEC 62058-31:2008 was approved by CENELEC as a European
Standard with agreed common modifications as given below.
In the official version, for Bibliography, the following note has to be added for the standard indicated:
IEC 62052-11:2003 NOTE  Harmonized as EN 62052-11:2003 (not modified).

COMMON MODIFICATIONS
Title
Replace the title of EN 62058-31 by the following:
Electricity metering equipment (a.c.) - Acceptance inspection - Part 31: Particular requirements for static
meters for active energy (classes 0,2 S, 0,5 S, 1 and 2, and class indexes A, B and C)
Scope
Add the following text at the end of Clause 1:
This European standard applies to meters of accuracy classes 0,2 S, 0,5 S, 1 and 2, as well as to meters
of class indexes A, B and C.
- 3 - EN 62058-31:2010
Normative references
Add the following references:
Publication Year Title
EN 50470-1 2006 Electricity metering equipment (a.c.) - Part 1: General requirements, tests and test
conditions - Metering equipment (class indexes A, B and C)
EN 50470-3 2006 Electricity metering equipment (a.c.) – Part 3: Particular requirements – Static
meters for active energy (class indexes A, B and C)
4 Test conditions
4.2 Reference conditions
Add the following text:
For meters of class index A, B and C, the values in Table 1, specified for meters of class 1 and class 2
apply, whereas the values in Table 2, specified for meters of class 2, class 1 and class 0,5 S apply
respectively
5 Inspection procedure
5.1 Test to be performed and inspection methods
Add the following text above 5.2:
See also EN 62058-11, 5.5.
5.2 Preliminary tests and pre-conditioning
Add the following text above 5.3:

For meters of class indexes A, B and C, the value of current shall be I .
tr
5.4 Test No. 2: Test of no-load condition
Add the following text above 5.5:
For meters of class index A, B and C, the test of no-load condition shall be carried out in accordance with
EN 50470-3, 8.7.9.3.
5.5 Test No. 3: Starting
Add the following text and table after Table 6:
For meters of class index A, B and C, instead of the values of Table 6, the values of Table Z1 apply:
Table Z1 – Value of current for starting test for meters of class index A, B and C
Meters for Meters of class index Power
factor
A B C
Direct connection 0,05 Itr 0,04 Itr 0,04 Itr 1
Connection through current transformers 0,06 I 0,04 I 0,02 I 1
tr tr tr
5.6 Tests No. 4…9: Accuracy tests
Add the following text and tables after Table 7:
For meters of class index A, B and C, instead of the values of the values of Table 7, the values of Table
Z2 apply:
Table Z2 – Accuracy test points and limits of errors for meters of class index A, B and C
Value of current for direct Load Percentage error limits for
Applicable
connected and Power (in case of for meters of class index
Test No. for meter
transformer operated factor polyphase
type
A B C
meters meters)
Single- and
4 I 1 Balanced ± 2,5 ± 1,5 ± 1,0
min
polyphase
Single- and
5 10 I 1 Balanced ± 2,0 ± 1,0 ± 0,5
tr
polyphase
Single- and
6 10 I 0,5 Balanced ± 2,0 ± 1,0 ± 0,5
tr
polyphase
Single
7 10 I 1 Polyphase a ± 3,0 ± 2,0 ± 1,0
tr
phase
Single
8 10 Itr 1 Polyphase b ± 3,0 ± 2,0 ± 1,0
phase
Single- and
I
9 max 1 Balanced ± 2,0 ± 1,0 ± 0,5
polyphase
a
The meter shall be supplied with three phase symmetrical voltage. The current shall be applied to any of the
phases.
b
The meter shall be supplied with three phase symmetrical voltage. The current shall be applied to a phase
different from the phase in test 7.
The values of Table Z2 are taken from EN 50340-3, Table 4 and Table 5, Percentage error limits at
reference conditions.
To ensure that the requirements of EN 50340-3, Table 8, Maximum permissible error (MPE), are also
met, and with this the essential requirements of the MID are met, the actual percentage error limits to be
used during conformity assessment shall be established using the method described below.
For each test point, the values of variation of percentage error due to temperature, voltage and frequency
variation, established during type testing, shall be subtracted from the MPE using the formula:
2 2 2 2
e (I,cosϕ )= MPE −δ (T ,I,cosϕ )−δ (U,I,cosϕ )−δ (f ,I,cosϕ )
calc Type Type Type
Where:
e (I,cosϕ ) is the value of calculated limit of percentage error under reference conditions;
calc
MPE is the value of maximum permissible error taken from EN 50340-3, Table 8 for the
given test point;
δ (T ,I,cosϕ ) is the value of the variation of percentage error due to variation of temperature,
Type
established during type testing;
δ (U,I,cosϕ ) is the value of the variation of percentage error due to variation of voltage, established
Type
during type testing;
δ (f ,I,cosϕ ) is the value of the variation of percentage error due to variation of frequency,
Type
established during type testing.

- 5 - EN 62058-31:2010
The actual limit of percentage error to be applied for each test point shall be the lesser of the value shown
in Table Z2, and the value e (I,cosϕ ) calculated as described above.
calc
An eventual correction of the percentage error limits, due to uncertainty of the measurement of
percentage error as described in 4.3, also applies.
During manufacturing, the values of the variation of percentage error due to temperature, voltage and
frequency variation shall be established in adequate intervals to ensure that they are essentially same as
established during type testing.
EXAMPLE
A meter of class index A, manufactured for the temperature range of 5 °C to 30 °C is tested.
The columns of Table Z3 show the following:
- column 1: the number of test, as identified in Table Z2;
- column 2: the values of the mpe, taken from EN 50340-3, Table 8;
- column 3: the values of temperature variation, established during the type test;
- column 4: the values of voltage variation, established during the type test;
- column 5: the values of frequency variation, established during the type test;
- column 6: the calculated values of percentage error limits;
- column 7: the percentage error limits taken from Table Z2.
Table Z3 – Example for determining the percentage error limits to be applied
Tes
MP δ (T ,I,cosϕ ) δ (U,I,cosϕ ) δ (f ,I,cosϕ ) e (I,cosϕ ) e(I,cosϕ )
Type Type Type calc
t
E
No.
4 +
± 2,5
3,5 + 0,5 - 0,2 + 0,1 ± 3,46
5 +
± 2,0
3,5 + 0,3 - 0,2 + 0,1 ± 3,48
6 +
± 2,0
3,5 + 0,5 - 0,2 + 0,1 ± 3,46
7 +
± 3,0
4,0 + 0,4 - 0,2 + 0,1 ± 3,97
8 +
± 3,0
4,0 + 0,4 - 0,2 + 0,1 ± 3,97
9 +
± 2,0
3,5 + 0,3 - 0,2 + 0,1 ± 3,48
As the values of e(I,cosϕ ) , taken from Table Z2 are smaller than the values e (I,cosϕ ) calculated
calc
from the MPE taking into account the values of variation of percentage error due to temperature, voltage
and frequency variation, established during type testing, the values e(I,cosϕ )of Table Z2 shall be
used.
If the meter is intended for a wider temperature range, then the calculation has to be performed for each
temperature range, and the smallest percentage error limits – out of all the calculated values
e (I,cosϕ ) and the valuese(I,cosϕ ) of Table Z2 – shall be used.
calc
_____________
Annex ZA
(normative)
Normative references to international publications
with their corresponding European publications

The following referenced documents are indispensable for the application of this document. For dated
references, only the edition cited applies. For undated references, the latest edition of the referenced
document (including any amendments) applies.

NOTE  When an international publication has been modified by common modifications, indicated by (mod), the relevant EN/HD
applies.
Publication Year Title EN/HD Year

IEC 62053-21 2003 Electricity metering equipment (a.c.) - EN 62053-21 2003
Particular requirements -
Part 21: Static meters for active energy
(classes 1 and 2)
IEC 62053-22 2003 Electricity metering equipment (a.c.) - EN 62053-22 2003
Particular requirements -
Part 22: Static meters for active energy
(classes 0,2 S and 0,5 S)
IEC 62058-11 2008 Electricity metering equipment (AC) - EN 62058-11 2010
Acceptance inspection -
Part 11: General acceptance inspection
methods
ISO/IEC Guide 98 1995 Guide to the expression of uncertainty in - -
measurement (GUM)
- 7 - EN 62058-31:2010
Annex ZZ
(informative)
Coverage of Essential Requirements of EC Directives

This European Standard has been prepared under the mandate M/374 given to CENELEC by the
European Commission and within its scope the standard covers methods for statistical verification of
conformity with the metrological requirements in connection the Modules F, D and H1.
EN 62058-11 specifies sampling plans, schemes and systems for lot-by-lot inspection by attributes or
variables. In addition, a test procedure for 100% inspection is specified, that can be used if the lot size is
too small for sampling inspection or when sampling inspection has to be discontinued.
Considering the Part 11, EN 62058-31 specifies particular requirements for static electricity meters,
including the tests to be performed, the sampling plans applicable and the performance criteria.
Table ZZ.1 provides the relationship between the Essential requirements of the MID and the stipulations
of the EN 62058 series.
Compliance with this standard provides one means of conformity with the specified essential
requirements of the Directives concerned.
WARNING: Other requirements and other EC Directives may be applicable to the products falling within
the scope of this standard.
Table ZZ.1 – Relationship between the Essential requirements of the MID
and the stipulations of the relevant standards

MID Annex I Subject EN 62058-11 EN 62058-21 EN 62058-31
NOTE The text in this column is for
orientation. For the full text see the
MID.
1 Allowable Errors
1.1 Under rated operating conditions and in 5.6 Accuracy 5.6 Accuracy
the absence of disturbance tests, Table Z2 tests, Table Z2

5.7 Verification 5.7 Verification
of the register of the register
1.2 Under rated operating conditions and in
– – –
the presence of disturbance
1.3 Climatic, mechanical and EM
environment and other influence
– – –
quantities to be specified by the
manufacturer
1.3.1 Climatic environments, upper and lower
– – –
temperature limit
1.3.2 Mechanical environments, vibration
– – –
and shock
1.3.3 Electromagnetic environments, unless
otherwise laid down in the appropriate – – –
instrument-specific annexes.
1.3.4 Other influence quantities – – –
1.4 Carrying out the tests – – –
1.4.1 Basic rules for testing and 5.6, 5.6,

determination of errors Accuracy test Accuracy test
1.4.2 Ambient humidity – – –
2 Reproducibility – – –
3 Repeatability – 4.3 4.3
4 Discrimination and Sensitivity – – –
5 Durability – – –
6 Reliability – – –
7 Suitability 5.3 5.3
AC voltage test AC voltage test
7.1 No feature likely to facilitate fraudulent
use, possibilities for unintentional – – –
misuse minimal
7.2 Suitable for intended use under
practical working conditions, no – – –
unreasonable demand of the user
7.3 Errors of a utility measuring instrument
at flows or currents outside the – – –
controlled range not unduly biased.
7.4 When the measurand is constant over
time, the measuring instrument shall be
insensitive to small fluctuations of the N.A. N.A. N.A.
value of the measurand, or shall take
appropriate action.
7.5 Robust and materials of construction
suitable for the intended use – – –
conditions.
- 9 - EN 62058-31:2010
MID Annex I Subject EN 62058-11 EN 62058-21 EN 62058-31
7.6 Designed so as to allow the control of the
measuring tasks after the instrument has
been placed on the market and put into
use.
Software that is critical for the – – –
metrological characteristics identifiable.
Metrological characteristics not
inadmissibly influenced by the
associated software.
8 Protection against corruption – – –
8.1 Metrological characteristics not
influenced in any inadmissible way by
the connection to it of another device,
by any feature of the connected device – – –
itself or by any remote device that
communicates with the measuring
instrument.
8.2 Hardware component critical for
metrological characteristics designed
so that it can be secured.
– – –
Security measures to provide evidence
of an intervention.
Software that is critical for metrological
8.3
characteristics shall be identified as such
and shall be secured.
– – –
Software identification.
Evidence of an intervention available for
a reasonable period of time.
Measurement data, critical software and
8.4
metrologically important parameters
stored or transmitted adequately – – –
protected against accidental or
intentional corruption.
For utility measuring instruments the
8.5
display of the total quantity supplied or
the displays from which the total quantity
supplied can be derived, whole or partial – – –
reference to which is the basis for
payment, shall not be able to be reset
during use.
Information to be borne by and to
– – –
accompany the instrument
9.1 Shall bear the following inscriptions:
- manufacturers mark or name;
- information in respect of accuracy.
When applicable:
- information in respect of the
conditions of use;
- measuring capacity;
- measuring range;
– 5.2 5.2
- identity marking;
- number of the EC-type examination
certificate or the EC design
examination certificate;
- information whether or not additional
devices providing metrological
results comply with the provisions of
this Directive on legal metrological
control.
9.2 For too small instruments, marking on
packaging and in any accompanying N.A. N.A. N.A.
documents
MID Annex I Subject EN 62058-11 EN 62058-21 EN 62058-31
9.3 Accompanying information on
- operation
and where relevant
- rated operating conditions;
- mechanical and electromagnetic
environment classes;
- the upper and lower temperature
limit, whether condensation is
possible or not, open or closed – – –

location;
- instructions for installation,
maintenance, repairs, permissible
adjustments;
- instructions for correct operation
and any special conditions of use;
- conditions for compatibility with
interfaces, sub-assemblies or
measuring instruments.
9.4 Utility meters do not require individual
– – –
instruction manuals.
9.5 Decimal scale interval – – –
9.6 Material measure N.A. N.A. N.A.
9.7 Units of measurement and symbols in
– – –
accordance with Community legislation
9.8 Marks and inscriptions clear, non-
erasable, unambiguous and non- – – –
transferable.
10 Indication of result – – –
10.1 Display or hard copy N.A. N.A. N.A.
10.2 Indication of result clear and
N.A. N.A. N.A.
unambiguous. Easy reading.
10.3 Hard copy easily legible and not
N.A. N.A. N.A.
erasable
10.4 Direct sales trading transactions N.A. N.A. N.A.
Fitted with a metrologically controlled
10.5
display accessible without tools to the
consumer.
5.7 Verification 5.7 Verification 5.7 Verification

of the register of the register of the register
The reading of this display is the
measurement result that serves as the
basis for the price to pay.
11 Further processing of data to conclude
N.A. N.A. N.A.
the trading transaction
11.1 Durable record of the measurement
N.A. N.A. N.A.
result (other than utility meter)
11.2 Durable proof of the measurement
N.A. N.A. N.A.
result
12 Conformity evaluation
Designed so as to allow ready
evaluation of its conformity with the
– – –
appropriate requirements of this
Directive.
Annex MI-003 ACTIVE ELECTRICAL ENERGY

METERS
1 Accuracy – – –
2 Rated operating conditions – – –

- 11 - EN 62058-31:2010
MID Annex I Subject EN 62058-11 EN 62058-21 EN 62058-31
3 MPEs 5.6 Accuracy 5.6 Accuracy
tests, Table Z2 tests, Table Z2

5.7 Verification 5.7 Verification
of the register of the register
4 Permissible effect of disturbances – – –
4.1 General – Special EM environment – – –
4.2 Effect of disturbances of long duration – – –
Reversed phase sequence – – –
Voltage unbalance (only applicable to
– – –
polyphase meters)
Harmonic contents in the current
– – –
circuits
DC and harmonics in the current
– – –
circuit
Fast transient bursts – – –
Magnetic fields – – –
HF (radiated RF) electromagnetic
– – –
field;
Conducted disturbances introduced by
– – –
radio-frequency fields
Oscillatory waves immunity – – –
4.3 Permissible effect of transient
– – –
electromagnetic phenomena
4.3.1 Behavior during and immediately after
a disturbance
– – –
Recovery
Critical change value
4.3.2 Critical change value for overcurrent – – –
5 Suitability
5.1 Measurement error below the rated
– – –
operating voltage
5.2 Display of total energy
– – –
- sufficient number of digits
- not resettable during use
5.3 Retain energy register reading for 4
– – –
months
5.4 Running with no load 5.4 Test of no- 5.4 Test of no-

load condition load condition
5.5 Starting 5.5 Starting, 5.5 Starting,

Table Z1 Table Z1
6 Units – – –
7 Putting into use – – –
CONFORMITY ASSESSMENT Specifies 100%
testing and
B + F or B + D or H1.
sampling
inspection
– –
methods to
support
modules F, D
and H1
IEC 62058-31
Edition 1.0 2008-09
INTERNATIONAL
STANDARD
NORME
INTERNATIONALE
Electricity metering equipment (AC) – Acceptance inspection –
Part 31: Particular requirements for static meters for active energy (classes
0,2 S, 0,5 S, 1 and 2)
Equipement de comptage de l’électricité (c.a.) – Contrôle de réception
Partie 31: Exigences particulières pour compteurs statiques d'énergie active
(de classes 0,2 S, 0,5 S, 1 et 2)

INTERNATIONAL
ELECTROTECHNICAL
COMMISSION
COMMISSION
ELECTROTECHNIQUE
PRICE CODE
INTERNATIONALE
N
CODE PRIX
ICS 17.220; 91.140.50 ISBN 2-8318-9990-7
– 2 – 62058-31 © IEC:2008
CONTENTS
FOREWORD.3
INTRODUCTION.5
1 Scope.6
2 Normative references .6
3 Terms, definitions, symbols
...

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La norme SIST EN 62058-31:2010 se concentre sur les exigences particulières relatives à l'inspection d'acceptation des compteurs statiques pour l'énergie active, en détaillant les modalités pour les classes 0,2 S, 0,5 S, 1 et 2, ainsi que pour les index de classe A, B et C. Cette norme définit un cadre rigoureux pour l'acceptation des équipements de mesure électrique, spécifiquement pour les compteurs connectés directement ou ceux fonctionnant par transformateur, ce qui en fait un outil essentiel pour garantir la fiabilité et la précision des mesures. Un des atouts majeurs de la norme SIST EN 62058-31:2010 est son application claire et précise aux lots de matériel, stipulant que l'acceptation s'applique à des quantités supérieures à 50 unités. Cette spécification aide à standardiser le processus d'inspection d'acceptation pour les fabricants et les clients, assurant ainsi une uniformité dans les pratiques industrielles. De plus, la norme propose une flexibilité bienvenue concernant l'acceptation des lots plus petits, laissant place à des accords entre le fabricant et le client. Cela reconnait la diversité des besoins dans le secteur de la mesure électrique et permet une mise en œuvre adaptée selon les contextes d'utilisation. En matière de pertinence, la norme SIST EN 62058-31:2010 est cruciale pour les entreprises cherchant à assurer la qualité et la conformité de leurs équipements de mesure d'énergie. Sa capacité à s'aligner sur les standards internationaux, incluant le IEC 62058-31:2008, renforce sa crédibilité et son adoption à l'échelle mondiale. Par ailleurs, la standardisation qu'elle propose contribue à minimiser les erreurs de mesure, à améliorer le contrôle qualité et à soutenir la transition vers des systèmes énergétiques plus transparents et efficaces, en phase avec les enjeux actuels de durabilité et d'efficacité énergétique. En somme, la norme SIST EN 62058-31:2010 est un document de référence qui assure une standardisation nécessaire pour l'industrie de la mesure électrique, enrichissant ainsi la confiance des consommateurs et des entreprises envers les compteurs d'énergie utilisés.

SIST EN 62058-31:2010 표준은 새로운 방식의 전력 계량기 수용 검사를 위한 특별 요건을 규정하고 있습니다. 이 표준은 전력 소비를 측정하는 정적 미터에 적용되며, 특히 클래스 0.2 S, 0.5 S, 1 및 2와 클래스 인덱스 A, B, C에 해당하는 장비에 중점을 두고 있습니다. 이 표준의 범위는 50개 이상의 수량으로 배달되는 직접 연결형 또는 변압기 운영 전력 계량기에 대한 수용 검사를 포함합니다. 표준은 이러한 전력 계량기의 품질과 신뢰성을 보장하기 위한 검증 절차를 제공하며, 이는 제조업체와 고객 간의 명확한 협의에 의해 작은 배치의 수용 방법도 규정할 수 있습니다. SIST EN 62058-31:2010의 강점 중 하나는 전력 계량기 검사의 일관성과 표준화를 통해 제조 및 검사의 신뢰성을 높인다는 점입니다. 이는 고객과 제조업체 간의 신뢰를 증진시키며, 불일치 문제를 사전 예방할 수 있도록 합니다. 또한, 이 표준은 다양한 클래스와 인덱스를 명확히 정의함으로써, 사용자들이 특정한 요구 사항에 맞는 계량기를 선택할 때 도움이 됩니다. 결론적으로, SIST EN 62058-31:2010 표준은 전력 계량기 산업에서 필수적인 기준을 제공하며, 품질 보증과 효율적인 검사 과정을 통해 해당 제품의 시장에서의 신뢰성을 높이는 데 중요한 역할을 합니다. 이러한 모든 요소들은 표준의 적절성과 활용도를 높이며, 현대 전력 계량기 기술의 발전과 함께 지속적으로 유의미한 영향을 미칠 것입니다.

The SIST EN 62058-31:2010 standard outlines crucial guidelines for the acceptance inspection of electricity metering equipment, specifically focusing on static meters for active energy. This standard is vital for ensuring the reliability and accuracy of measurement in various applications, as it addresses meters from classes 0.2 S, 0.5 S, 1, and 2, along with class indexes A, B, and C. The scope of the standard is explicitly defined to cover direct-connected or transformer-operated static meters. It stipulates particular requirements for acceptance inspection applicable to lots comprising more than 50 meters, which is essential for mass manufacturing and quality assurance processes in the electrical metering industry. Such specification not only enhances the operational effectiveness of manufacturers but also assures end users of the metering accuracy and reliability. One of the key strengths of SIST EN 62058-31:2010 is its clarity regarding acceptance methods. Although the guidelines are primarily designed for larger lots, it allows flexibility for manufacturers and customers to agree upon inspection methods for smaller lots. This adaptability fosters deeper relationships between parties involved in the manufacturing and purchasing process, contributing to enhanced satisfaction and trust. Furthermore, the standard's relevance cannot be overstated, especially in today's energy-conscious environment. With the growing demand for accurate energy metering, adherence to these particular requirements can lead to more efficient energy consumption and management. The standard effectively supports the industry in meeting regulatory compliance while ensuring that metering devices are configured to meet high-performance standards. Overall, the SIST EN 62058-31:2010 standard plays an integral role in the quality assurance landscape of electricity metering equipment, reinforcing the importance of rigorous acceptance inspections and defined parameters that impact both manufacturers and consumers alike.

SIST EN 62058-31:2010は、エネルギー計測機器に関する重要な標準であり、その適用範囲は新たに製造された直接接続または変圧器で動作する静的メーターに特化しています。この標準は、クラス0.2 S、0.5 S、1および2であるアクティブエネルギーのメーターの受入検査に関して特定の要件を規定しており、特に50台以上のロットで納品される場合に適用されます。 この標準の強みは、その詳細な検査要件にあります。品質基準を厳格に定めることで、製造プロセスにおける一貫性と信頼性を確保することを目的としています。また、少量のロットに関しては、製造者と顧客の間で合意された方法での受け入れが必要であるため、柔軟性も考慮されています。 SIST EN 62058-31:2010は、エネルギー管理と効率的な電力使用が求められる現代のニーズに応えるため、非常に関連性の高い標準です。エネルギーの測定精度と信頼性を保証することにより、この標準は持続可能なエネルギー管理に寄与し、業界全体の品質基準を向上させる重要な役割を果たしています。

Die Norm SIST EN 62058-31:2010 definiert spezifische Anforderungen für die Abnahmeprüfung von neu hergestellten, direkt angeschlossenen oder transformatorbetriebenen statischen Messgeräten für aktive Energie. Sie umfasst die Klassen 0,2 S, 0,5 S, 1 und 2 sowie die Klassenindizes A, B und C. Die Wichtigkeit dieser Norm liegt in ihrer detaillierten Vorgehensweise für die Akzeptanzinspektion, speziell für größere Lieferungen von mehr als 50 Geräten. Ein wesentlicher Aspekt der Norm ist ihre Fokussierung auf die Qualitätssicherung der Elektrizitätsmessgeräte. Durch die Festlegung präziser Kriterien für die Abnahmeprüfung wird sichergestellt, dass die gelieferten Geräte den erforderlichen Standards entsprechen und zuverlässig funktionieren. Dies fördert nicht nur das Vertrauen der Kunden in die Leistungsfähigkeit der gemessenen Energie, sondern trägt auch zur allgemeinen Effizienz des Stromversorgungsnetzes bei. Die Norm ist besonders relevant in der heutigen Zeit, in der die Genauigkeit von Messgeräten zunehmend an Bedeutung gewinnt. Die standardisierten Prüfverfahren ermöglichen einen einheitlichen Qualitätsmaßstab, der eine konsistente Bewertung aller gelieferten Geräte gewährleistet. Sie bietet zudem eine Basis für den Dialog zwischen Herstellern und Kunden, insbesondere bei der Abstimmung der Abnahmeverfahren für kleinere Lotgrößen. Zusammenfassend lässt sich sagen, dass SIST EN 62058-31:2010 nicht nur die technischen Aspekte der Abnahmeprüfung umfasst, sondern auch dazu beiträgt, die Integrität und Zuverlässigkeit von elektrischen Messgeräten auf dem Markt zu sichern.