SIST EN 50107-2:2007
(Main)Signs and luminous-discharge-tube installations operating from a no-load rated output voltage exceeding 1 kV but not exceeding 10 kV -- Part 2: Requirements for earth-leakage and open-circuit protective devices
Signs and luminous-discharge-tube installations operating from a no-load rated output voltage exceeding 1 kV but not exceeding 10 kV -- Part 2: Requirements for earth-leakage and open-circuit protective devices
This European Standard specifies requirements for earth-leakage and open-circuit protective devices designed to protect circuits for neon tubes operating from transformers conforming to EN 61050 at voltages exceeding 1 000 V but not exceeding 10 000 V.
Leuchtröhrengeräte und Leuchtröhrenanlagen mit einer Leerlaufspannung über 1 kV, aber nicht über 10 kV -- Teil 2: Anforderungen an Erdschlussschutz- und Leerlaufschutzeinrichtungen
Diese Europäische Norm legt Prüfungen und Leistungsanforderungen für Erdschluss-Schutzeinrichtungen und Leerlauf-Schutzeinrichtungen fest. Diese dienen zum Schutz von Leuchtröhrenstromkreisen, die mit Transformatoren nach EN 61050 mit Spannungen von über 1 000 V bis 10 000 V betrieben werden. ANMERKUNG 1 Anforderungen für die Installation von Erdschluss-Schutzeinrichtungen und Leerlauf-Schutzeinrich-tungen sind in EN 50107 1 genannt. ANMERKUNG 2 Anforderungen für Erdschluss-Schutzeinrichtungen und Leerlauf-Schutzeinrichtungen für Wechselrichter und Umrichter, die in EN 61347-2-10 beschrieben sind.
Installation d'enseignes et de tubes lumineux à décharge fonctionnant à une tension de sortie à vide assignée supérieure à 1 kV mais ne dépassant pas 10 kV -- Partie 2: Prescriptions pour les dispositifs de protection contre les défauts d'isolement et contre l'ouverture des circuits secondaires
La présente Norme Européenne spécifie les exigences pour les dispositifs de protection contre les défauts d’isolement et contre l’ouverture du circuit secondaire, destinés à protéger les circuits pour tubes au néon fonctionnant à des tensions supérieures à 1 000 V, mais ne dépassant pas 10 000 V et utilisant des transformateurs conformes à la EN 61050. NOTE 1 Les exigences concernant l'installation des dispositifs de protection contre les défauts d'isolement et des dispositifs de protection en circuit ouvert sont données dans la EN 50107-1. NOTE 2 Les exigences concernant les dispositifs de protection contre les défauts d'isolement et des dispositifs de protection en circuit ouvert utilisés avec des onduleurs et des convertisseurs sont précisées dans la EN 61347-2-10.
Oznake in inštalacije s svetlobnimi sijalkami, ki delujejo od neobremenjene izhodne napetosti v območju od več kot 1 kV do manj od 10 kV - 2. del: Zahteve za zaščitne naprave pred zemeljskim uhajanjem in odprtim tokokrogom
General Information
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EUROPEAN STANDARD EN 50107-2
NORME EUROPÉENNE
EUROPÄISCHE NORM April 2005
ICS 29.140.30
English version
Signs and luminous-discharge-tube installations operating
from a no-load rated output voltage exceeding 1 kV
but not exceeding 10 kV
Part 2: Requirements for earth-leakage
and open-circuit protective devices
Installation d'enseignes et de tubes Leuchtröhrengeräte und
lumineux à décharge fonctionnant Leuchtröhrenanlagen
à une tension de sortie à vide assignée mit einer Leerlaufspannung über 1 kV,
supérieure à 1 kV mais ne dépassant aber nicht über 10 kV
pas 10 kV Teil 2: Anforderungen an
Partie 2: Prescriptions pour les dispositifs Erdschlussschutz- und
de protection contre les défauts Leerlaufschutzeinrichtungen
d'isolement et contre l'ouverture des
circuits secondaires
This European Standard was approved by CENELEC on 2005-03-01. 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, Cyprus, Czech
Republic, Denmark, Estonia, Finland, France, Germany, Greece, Hungary, Iceland, Ireland, Italy, Latvia,
Lithuania, Luxembourg, Malta, Netherlands, Norway, Poland, Portugal, Slovakia, Slovenia, Spain, Sweden,
Switzerland and United Kingdom.
CENELEC
European Committee for Electrotechnical Standardization
Comité Européen de Normalisation Electrotechnique
Europäisches Komitee für Elektrotechnische Normung
Central Secretariat: rue de Stassart 35, B - 1050 Brussels
© 2005 CENELEC - All rights of exploitation in any form and by any means reserved worldwide for CENELEC members.
Ref. No. EN 50107-2:2005 E
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EN 50107-2:2005 - 2 -
Foreword
This European Standard was prepared by CENELEC BTTF 60-2, Electrical discharge lamp
installations.
The text of the draft was submitted to the formal vote and was approved by CENELEC as
EN 50107-2 on 2005-03-01.
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) 2006-03-01
– latest date by which the national standards conflicting
with the EN have to be withdrawn (dow) 2008-03-01
__________
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- 3 - EN 50107-2:2005
Contents
Page
1 Scope.4
2 Normative references .4
3 Definitions .4
4 General requirements .5
5 Tests .5
6 Classification.6
7 Marking .6
7.1 Items of marking.6
7.2 Durability of marking .6
7.3 Additional information.6
8 Terminals .7
9 Provision for protective earthing .7
10 Protection against accidental contact with live parts .7
11 Moisture resistance and insulation of type B devices .7
12 Electric strength .8
13 Thermal endurance of devices.8
13.1 General .8
13.2 Tests for type B devices .8
13.3 Tests for type A or type C devices.8
14 Fault conditions .9
15 Construction .9
16 Creepage distances and clearances .9
17 Screws, current-carrying parts and connections.9
18 Resistance to heat, fire and tracking.9
19 Resistance to corrosion .9
20 Performance.9
20.1 Performance requirements for earth-leakage protective devices .9
20.2 Performance requirements for open-circuit protective devices .10
20.3 Performance requirements common to both types of device .10
21 Interchangeability .11
Annex A (normative) - Testing of the response time of earth-leakage protective devices.12
Annex B (informative) - An example method of measuring the performance
of an earth-leakage protective device.14
Annex C (normative) - Test of the response time of open-circuit protective devices .16
Annex D (informative) - A method of measuring the performance
of an open-circuit protective device.18
Figure B.1 - Typical circuit to measure the performance of an earth-leakage protective device .14
Figure D.1 - Typical circuit to measure the performance of an open-circuit protective device .18
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EN 50107-2:2005 - 4 -
1 Scope
This European Standard specifies requirements for earth-leakage and open-circuit protective devices
designed to protect circuits for neon tubes operating from transformers conforming to EN 61050 at
voltages exceeding 1 000 V but not exceeding 10 000 V.
NOTE 1 Requirements for the installation of earth-leakage and open-circuit protective devices are given in EN 50107-1.
NOTE 2 Requirements for earth-leakage and open-circuit protective devices used with inverters and converters are specified
in EN 61347-2-10.
2 Normative references
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.
EN 50107-1:2002, Signs and luminous-discharge-tube installations operating from a no-load rated
output voltage exceeding 1 kV but not exceeding 10 kV - Part 1: General requirements
EN 60529:1991, Degrees of protection provided by enclosures (IP code) (IEC 60529:1989)
EN 60598-1:2000, Luminaires - Part 1: General requirements and tests (IEC 60598-1:1999, mod.)
EN 61050:1992, Transformers for tubular discharge lamps having a no-load output voltage exceeding
1 kV (generally called neon-transformers) - General and safety requirements
(IEC 61050:1991 + corrigendum March 1992, mod.)
EN 61347-1:2001, Lamp controlgear - Part 1: General and safety requirements (IEC 61347-1:2000)
3 Definitions
For the purposes of this European Standard, the definitions given in EN 50107-1 and EN 61347-1
apply, together with the following.
NOTE Where the terms “voltage” and '“current” are used, they refer to r.m.s. values unless otherwise stated.
3.1
type A device
earth-leakage or open-circuit protective device generally designed to be built into the enclosure of a
transformer and not intended to be mounted outside a transformer without special precautions
NOTE A type A device normally protects only the transformer in which it is mounted.
3.2
type B device
earth-leakage or open-circuit protective device consisting of one or more separate elements so
designed that it can be mounted outside a transformer and housed in an enclosure that provides all
necessary protection according to its markings
NOTE 1 The enclosure may consist of the sign in which the device is mounted; the sign having a protection according to its
markings.
NOTE 2 The device may protect more than one transformer.
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3.3
type C device
earth-leakage or open-circuit protective device that forms a non-replaceable part of a transformer and
which normally cannot be tested separately from the transformer
3.4
earth-leakage current
fault current flowing from a point in the output circuit to earth
3.5
open-circuit condition
discnnection or lamp fault in the output circuit that causes the secondary load current of the
transformer feeding the lamp circuit to fall below the respective shut-down current limit
3.6
shut-down current limit
secondary load current of a transformer at which an open-circuit protective device operates
NOTE Although the shut-down current limit is specified in terms of the current flowing in the output circuit, the manufacturer of
the device may measure this by other than direct means. Such means might include, e.g. measuring the current reflected into
the primary winding of the transformer or measuring a change in circuit power factor.
3.7
sensor
device that detects an earth-leakage current or, in the case of an open-circuit protective device,
detects when the secondary load current has fallen below the shut-down current limit, and either
causes a protective switch to operate or otherwise causes the output voltage of a transformer to be
removed
3.8
protective switch
part of an earth-leakage or open-circuit protective device that disconnects the mains supply from a
transformer
3.9
response time
time from the start of the fault condition until the protective device removes the output voltage
3.10
secondary load current
current flowing in the output circuit of transformer supplying one or more tubes
4 General requirements
EN 61347-1:2001, Clause 4, shall apply, with the words “earth-leakage protective device” or “open-
circuit protective device” (as appropriate) substituted for “lamp controlgear”.
5 Tests
5.1 With the exception of EN 61347-1:2001, Subclause 5.4 (see 5.2), EN 61347-1:2001, Clause 5,
shall apply, with the words “earth-leakage protective device” or “open-circuit protective device” (as
appropriate) substituted for “lamp controlgear”.
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EN 50107-2:2005 - 6 -
5. 2 The requirements of EN 61347-1:2001, Subclause 5.4, shall be replaced by the following:
a) a total of ten devices shall be selected at random for the tests;
b) type A devices shall be tested with a representative sample of the associated transformer
in which the device is normally mounted;
c) type B devices shall be tested with transformers having characteristics at either end of the
range specified in accordance with 7.3 h);
d) type C devices shall be tested complete with their associated transformers;
e) three devices, taken at random from the batch of ten, shall be tested in accordance with
the relevant tests specified in this European Standard. The results shall be assessed as
follows:
1) if all three samples pass all the tests, the batch shall be deemed to conform to this
European Standard;
2) if two or more samples fail any of the tests, the batch shall be deemed not to conform
to this European Standard;
3) if one sample fails any of the tests, the tests shall be repeated on a second batch of
three devices;
4) if all three devices from this second batch pass all the tests, the batch shall be deemed
to conform to this European Standard;
5) if any device from this second batch fails any of the tests, the entire batch shall be
deemed not to conform to this European Standard.
6 Classification
EN 61347-1:2001, Clause 6 shall apply, with the words “earth-leakage protective device” or “open-
circuit protective device” (as appropriate) substituted for “lamp controlgear”.
7 Marking
7.1 Items of marking
The following items shall be marked, either:
a) on the device itself, in the case of type A or type B devices; or
b) on the label attached to the transformer in which the device is housed, and in the case of
type C devices with:
1) the number of this European Standard, i.e. EN 50107-2;
2) the items specified in EN 61347-1:2001, Subclause 7.1 a), b), f), and l), with the words
“earth-leakage protective device” or “open-circuit protective device” (as appropriate)
substituted for “lamp controlgear”.
7.2 Durability of marking
The durability of the marking shall conform to the requirements of EN 61347-1:2001, Subclause 7.2.
7.3 Additional information
In addition to the items specified in 7.1, the following information, if applicable, shall be given in the
manufacturer’s instructions to be provided with both earth-leakage and open-circuit protective devices:
a) the items specified in EN 61347-1:2001, Subclause 7.1 h), i) and k), with the words “earth-
leakage protective device” or “open-circuit protective device” (as appropriate) substituted
for “lamp controlgear”;
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b) the information necessary for the test specified in EN 50107-1:2002, Clause 18, to be
carried out;
c) the information necessary for the safe installation of the device in accordance with the
requirements of EN 50107-1;
d) the information necessary for the device to be disabled manually for maintenance
purposes;
e) for type A or type C protective devices, the maximum ambient temperature at which the
transformer may operate to ensure that the earth-leakage device or open-circuit protective
device (as appropriate) operates safely;
f) for type B protective devices, the maximum ambient temperature at which the device may
operate to ensure that the earth-leakage or open-circuit protection (as appropriate)
operates safely;
g) where the sensors of a number of transformers are connected to a single protective
device that is connected in the mains supply to their input circuits, the number of sensors
that may be connected to one protective device;
h) for type B earth-leakage protective devices or open-circuit protective devices (as
appropriate), information on the types and range of transformers for which the device is
suitable;
i) a warning against using the device in a circuit with a dimmer, unless special arrangements
are made to ensure that the open-circuit or earth-leakage protective device operates
correctly when the circuit is dimmed;
j) for open-circuit protective devices only, information on the shut-down current limit.
8 Terminals
EN 61347-1:2001, Clause 8, shall apply.
9 Provision for protective earthing
EN 61347-1:2001, Clause 9, shall apply, with the words “earth-leakage protective device” or “open-
circuit protective device” (as appropriate) substituted for “lamp controlgear”.
10 Protection against accidental contact with live parts
EN 61347-1:2001, Clause 10, shall apply, with the words “earth-leakage protective device” or “open-
circuit protective device” (as appropriate) substituted for “lamp controlgear”.
11 Moisture resistance and insulation of type B devices
For type B protective devices, intended for mounting outdoors, EN 61347-1:2001, Clause 11, shall
apply, with the words “earth-leakage protective device” or “open-circuit protective device” (as
appropriate) substituted for “lamp controlgear”.
Any enclosure shall provide a degree of protection corresponding to at least IP23 in EN 60529:1991,
Tables I and III. Conformance shall be checked by means of the tests specified in EN 60598-1:2000,
Clause 9.
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EN 50107-2:2005 - 8 -
12 Electric strength
For parts of an earth-leakage or open-circuit protective device operating at low voltage,
EN 61347-1:2001, Clause 12, shall apply, with the words “earth-leakage protective device” or “open-
circuit protective device” (as appropriate) substituted for “lamp controlgear”.
If a type A or type B earth-leakage or open-circuit protective device has components that are
connected in the output circuit of a transformer and are operated at a voltage exceeding 1 kV to earth
under normal conditions, those components shall be tested by means of the following induced voltage
test:
a) a type A or type B device shall be connected to a transformer having the highest no-load
output voltage rating specified for the device;
b) the transformer shall be operated with no load and subjected to the induced voltage test
specified in EN 61050:1992, Subclause 15.4.
No flashover or breakdown of the device shall occur during the test.
This test is not applied to components of open-circuit or earth-leakage protective devices that operate
at or are subjected to low voltage (less than 1 kV).
13 Thermal endurance of devices
13.1 General
The thermal endurance of earth-leakage or open-circuit protective devices shall be tested in
accordance with 13.2 or 13.3, as appropriate.
13.2 Tests for type B devices
Type B devices shall be tested in accordance with the following:
a) the tests shall be carried out using a transformer, selected from one end of the range
specified in accordance with 7.3 h). They shall then be repeated using a transformer
selected from the other end of the range specified in accordance with 7.3 h);
b) the device and the selected transformer shall be operated with resistive load such that the
r.m.s value of the secondary load current is equivalent to that of the rated lamp load;
c) the device, but not the associated transformer, shall be operated for a period of 6 h in a
chamber, the temperature of which shall be maintained at +65 °C;
d) at the conclusion of the operating period,
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