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EP 0 903 765 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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13.11.2002 Bulletin 2002/46 |
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Date of filing: 14.09.1998 |
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International Patent Classification (IPC)7: H01H 83/14 |
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A circuit breaker
Schutzschalter
Disjoncteur
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Designated Contracting States: |
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AT DE FR GB IT NL SE |
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Priority: |
19.09.1997 ZA 9708466
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Date of publication of application: |
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24.03.1999 Bulletin 1999/12 |
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Proprietor: Circuit Breaker Industries Limited |
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Elandsfontein,
Gauteng (ZA) |
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Inventor: |
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- Bagalini, Dante
Johannesburg,
Gauteng (ZA)
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Representative: Mounteney, Simon James et al |
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MARKS & CLERK,
57-60 Lincoln's Inn Fields London WC2A 3LS London WC2A 3LS (GB) |
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References cited: :
WO-A-96/03760
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FR-A- 2 681 725
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| Note: Within nine months from the publication of the mention of the grant of the European
patent, any person may give notice to the European Patent Office of opposition to
the European patent
granted. Notice of opposition shall be filed in a written reasoned statement. It shall
not be deemed to
have been filed until the opposition fee has been paid. (Art. 99(1) European Patent
Convention).
|
[0001] THIS INVENTION relates to a circuit breaker. More particularly, the invention relates to a circuit
breaker incorporating an earth leakage facility.
[0002] According to the invention, there is provided a circuit breaker which includes
a primary housing containing an operating mechanism, the operating mechanism including
a plurality of output conductors;
an earth leakage sensing means comprising an oval-shaped core mounted in the primary
housing;
electrically conductive elements, mounted on the output conductors and projecting
through an oval-shaped opening defined by the core; and
current sensing circuitry and earth leakage sensing circuitry incorporated in a secondary
housing, the secondary housing being received within the primary housing.
[0003] A circuit breaker according to the preamble of claim 1 is known from FR 2 681 725.
[0004] The primary housing may be dimensioned to be the same size as a housing and with
the same size arc chutes of a circuit breaker of the same rating but excluding an
earth leakage facility. In this specification, the term "same size", refers to a primary
housing of a circuit breaker which has the same dimensions, interior capacity and
layout as a housing of a conventional circuit breaker, i.e. a circuit breaker without
an earth leakage facility, of the same rating. Corresponding words thus have corresponding
means.
[0005] Thus, the primary housing may include a base having a floor bounded by a side wall
portion, the core lying in a plane extending parallel to the floor.
[0006] The core may be a strip-wound core of a nanocrystalline alloy. The core may incorporate
shielding material and insulating material and may be dimensioned to be accommodated
in a recess in the primary housing.
[0007] The output conductors may protrude into the recess of the primary housing. Then,
each electrically conductive element may be in the form of a spacer of an electrically
conductive material, the spacers projecting from the conductors through the opening
of the core to be surrounded by the core. An output lug, of an electrically conductive
material, may be mounted on each spacer.
[0008] Each output conductor may be fastened to its associated spacer and output lug by
a fastening means.
[0009] The current sensing circuitry may include a current sensing means. The current sensing
means may comprise a current transformer having a winding surrounding the output lugs.
[0010] The current transformer and the earth leakage core may be connected to their appropriate
circuitry which is contained in the secondary housing. The secondary housing may form
a unit which is removably received in the primary housing of the circuit breaker.
In a conventional fashion, the unit may incorporate a tripping device which acts on
the operating handle of the circuit breaker.
[0011] The invention extends also to a circuit breaker which includes
a primary housing which is dimensioned to be the same size as a housing of a circuit
breaker of the same rating but excluding an earth leakage facility;
an earth leakage sensing means contained within the primary housing; and
current sensing circuitry and earth leakage sensing circuitry incorporated in a secondary
housing, the secondary housing being received within said primary housing.
[0012] The invention is now described by way of example with reference to the accompanying
diagrammatic drawings.
[0013] In the drawings
Figure 1 shows a schematic, sectional side view of part of a circuit breaker, in accordance
with the invention;
Figure 2 shows a schematic, sectional plan view of the part of the circuit breaker
on an enlarged scale;
Figure 3 shows a three dimensional view of an earth leakage core of the circuit breaker;
Figure 4 shows a three dimensional view of a base of a primary housing of the circuit
breaker; and
Figure 5 shows a schematic three dimensional view of the base of Figure 4 showing
the arrangement of components of the circuit breaker in the base.
[0014] Referring to the drawings, a part of a circuit breaker, in accordance with the invention,
is illustrated and is designated generally by the reference numeral 10. The circuit
breaker 10 comprises a primary housing 12, the base of which is illustrated in the
drawings. The housing 12 is the same size as a housing of a circuit breaker of the
same rating but excluding an earth leakage facility. An operating mechanism 14 (Figure
5) and handle arrangement (not shown) of conventional size and rating are mounted
via a frame in the housing 12, an edge of the frame being indicated schematically
at 14.1 in Figure 1 of the drawings.
[0015] The housing 12 is effectively divided into three parts, the operating mechanism 14
being contained within a central part 12.1 of the housing 12, an arc chute arrangement
15 being arranged in a part 12.2 on one side of the operating mechanism 14 with output
conductors 16 of the operating mechanism 14 extending into a further part 12.3 on
an opposed side of the operating mechanism 14.
[0016] Further, the base of the housing 12 has a floor 18 (Figure 4) surrounded by a side
wall 19.
[0017] The circuit breaker 10 includes an earth leakage facility having an oval-shaped core
20 illustrated in Figure 3 of the drawings. The core 20 is a strip-wound core of a
nanocrystalline alloy called VITROPERM 800F (Vitroperm 800F is a registered trade
mark of Vacuumschmelze GmbH of Hanau, Germany). The core 20 lies in a plane parallel
to the floor 18 of the base of the housing 12 in the part 12.3 of the housing 12.
[0018] An electrical spacer 22 (Figure 1) is mounted on each output conductor 16 to protrude
through an opening 24 in the core 20. Each spacer 22 has an output lug 26 mounted
thereon, the output lugs 26 being of an electrically conductive material. Each output
lug 26 is aligned with an output element 28 to form an output terminal 30 of the circuit
breaker 10, each terminal 30 being accommodated in the part 12.3 of the housing 12.
[0019] Each conductor 16, spacer 22 and output lug 26 are fastened together by a bolt and
nut combination 44 to hold the assemblies so formed together.
[0020] The circuit breaker 10 includes a current sensing means 32 for sensing current through
the output terminals 30 of the circuit breaker 10. The current sensing means 32 includes
a current transformer 33 having a winding 34 extending about the output lugs 26. An
output from the current transformer 33 is connected to current sensing circuitry illustrated
schematically in Figure 1 by a printed circuit board 36. Similarly, an output from
the core 20 of the earth leakage facility is connected to earth leakage sensing circuitry
indicated schematically in Figure 1 by a printed circuit board 38. The current sensing
circuitry 36 and the earth leakage sensing circuitry 38 are both connected to a low
energy shunt trip 40 which, in a conventional fashion, operates a tripping mechanism
(not shown), the tripping mechanism, in turn, being connected to the operating handle
of the operating mechanism 14 of the circuit breaker 10.
[0021] The current transformer 33, the current sensing circuitry 36, the earth leakage sensing
circuitry 38 and the shunt trip 40 are contained within a secondary housing 42 which
is received in the part 12.3 of the housing 12 of the circuit breaker 10. The housing
42 is mounted above the core 20 in the part 12.3 of the housing 12 such that the tripping
mechanism engages the operating handle of the circuit breaker 10.
[0022] The arrangement of the oval-shaped core 20 parallel to the floor 18 of the base of
the housing 12, and mounting of the secondary housing 42 above the core 12 facilitates
the use of a housing 12 which has the same size as a conventional circuit breaker
of the same rating but excluding an earth leakage facility. Those skilled in the art
will appreciate that the output conductors 16 from the operating mechanism of the
circuit breaker 10 are arranged with their usual spacing so that there is no need
to provide additional insulation about the output conductors 16 nor is there a need
to reduce their rating to overcome heating problems.
[0023] With the provision of the oval-shaped core 20, the core 20 lying parallel to the
floor 18 of the base of the primary housing 12 and the earth leakage sensing circuitry
being accommodated in the secondary housing 42 which, in a conventional circuit breaker,
only accommodates the current sensing circuitry of the circuit breaker 10, the same
sized, configured and dimensioned primary housing 12 can be used for a circuit breaker
of a particular rating without the need to reduce the rating of the circuit breaker
10. Thus, the need to reduce the arc chutes and, as a result, reducing the breaking
capacity of the circuit breaker is obviated.
[0024] While the circuit breaker 10 has been described with reference to electronic current
sensing, it will be appreciated that the same configuration of earth leakage sensing
facility can be also used with thermal-magnetic current sensing devices or hydraulic-magnetic
current sensing devices.
1. A circuit breaker which includes
a primary housing (12) containing an operating mechanism (14), the operating mechanism
including a plurality of output conductors (16);
an earth leakage sensing means, characterised in that it also comprises an oval-shaped core (20) mounted in the primary housing;
electrically conductive elements, mounted on the output conductors and projecting
through an oval-shaped opening (24) defined by the core; and
current sensing circuitry (36) and earth leakage sensing circuitry (38) incorporated
in a secondary housing (42), the secondary housing being received within the primary
housing.
2. The circuit breaker as claimed in Claim 1 in which the primary housing is dimensioned
to be the same size as a housing and with the same size arc chutes of a circuit breaker
of the same rating but excluding an earth leakage facility.
3. The circuit breaker as claimed in Claim 1 or Claim 2 in which the primary housing
includes a base having a floor bounded by a side wall portion, the core lying in a
plane extending parallel to the floor.
4. The circuit breaker as claimed in any one of the preceding claims in which the core
is a strip-wound core of a nanocrystalline alloy.
5. The circuit breaker as claimed in Claim 4 in which the core incorporates shielding
material and insulating material.
6. The circuit breaker as claimed in any one of the preceding claims in which each electrically
conductive element is in the form of a spacer of an electrically conductive material,
the spacers projecting through the opening of the core to be surrounded by the core.
7. The circuit breaker as claimed in Claim 6 in which an output lug is mounted on each
spacer.
8. The circuit breaker as claimed in Claim 7 in which each output conductor is fastened
to its associated spacer and output lug by a fastening means.
9. The circuit breaker as claimed in Claim 7 or Claim 8 in which the current sensing
circuitry includes a current sensing means.
10. The circuit breaker as claimed in Claim 9 in which the current sensing means comprises
a current transformer having a winding surrounding the output lugs.
11. The circuit breaker as claimed in any one of the preceding claims in which the secondary
housing is removably received in the primary housing.
1. Schaltungsunterbrecher, der aufweist:
ein primäres Gehäuse (12), das einen Betätigungsmechanismus (14) enthält, wobei der
Betätigungsmechanismus mehrere Ausgangsleiter (16) aufweist;
ein Erdschluss-Sensormittel.
dadurch gekennzeichnet, dass er ferner aufweist:
einen ovalförmigen Kern (20), der in dem primären Gehäuse gelagert ist;
elektrisch leitende Elemente, die an den Ausgangsleitern angebracht sind und durch
eine von dem Kern gebildete ovalförmige Öffnung (24) vorstehen; und
eine Strom-Sensorschaltung (36) und eine Erdschluss-Sensorschaltung (38), die in einem
sekundären Gehäuse (42) untergebracht sind, wobei das sekundäre Gehäuse sich innerhalb
des primären Gehäuses befindet.
2. Schaltungsunterbrecher nach Anspruch 1, bei dem das primäre Gehäuse so dimensioniert
ist, dass es die gleiche Größe wie ein Gehäuse und gleich große Lichtbogenrinnen eines
Schaltungsunterbrechers mit der gleichen Unterbrecherrate, jedoch ohne Erdschlussmöglichkeit
hat.
3. Schaltungsunterbrecher nach Anspruch 1 oder 2, bei dem das primäre Gehäuse eine Basis
mit einem Boden hat, der von einem Seitenwandabschnitt begrenzt wird, wobei der Kern
in einer parallel zu dem Boden verlaufenden Ebene liegt.
4. Schaltungsunterbrecher nach einem der vorhergehenden Ansprüche, bei dem der Kern ein
bandgewickelter Kern aus einer nanokristallinen Legierung ist.
5. Schaltungsunterbrecher nach Anspruch 4, bei dem der Kern Abschirmmaterial und Isoliermaterial
enthält.
6. Schaltungsunterbrecher nach einem der vorhergehenden Ansprüche, bei dem jedes elektrisch
leitende Element die Form eines Abstandsstückes aus einem elektrisch leitenden Material
hat, wobei die Abstandsstücke durch die Öffnung des Kerns vorstehen, um von dem Kern
umgeben zu werden.
7. Schaltungsunterbrecher nach Anspruch 6, bei dem ein Ausgangsansatz an jedem Abstandsstück
vorgesehen ist.
8. Schaltungsunterbrecher nach Anspruch 7, bei dem jeder Ausgangsleiter an seinem zugehörigen
Abstandsstück und Ausgangsansatz durch ein Befestigungsmittel befestigt ist.
9. Schaltungsunterbrecher nach Anspruch 7 oder 8, bei dem die Strom-Sensorschaltung ein
Strom-Sensormittel aufweist.
10. Schaltungsunterbrecher nach Anspruch 9, bei dem das Strom-Sensormittel einen Stromumformer
mit einer die Ausgangsansätze umgebenden Wicklung aufweist.
11. Schaltungsunterbrecher nach einem der vorhergehenden Ansprüche, bei dem das sekundäre
Gehäuse in dem primären Gehäuse auswechselbar angeordnet ist.
1. Disjoncteur qui comprend :
un boîtier principal (12) contenant un mécanisme de commande (14), le mécanisme de
commande comportant une pluralité de conducteurs de sortie (16) ;
des moyens de détection de fuite à la terre, caractérisé en ce qu'il comprend également un noyau de forme ovale (20) monté dans le boîtier principal
;
des éléments conducteurs électriques, montés sur les conducteurs de sortie et faisant
saillie à travers l'ouverture de forme ovale (24) délimitée par le noyau ; et
un circuit de détection de courant (36) et un circuit de détection de fuite à la terre
(38) incorporés dans un boîtier secondaire (42), le boîtier secondaire étant logé
à l'intérieur du boîtier principal.
2. Disjoncteur selon la revendication 1, dans lequel le boîtier principal est dimensionné
pour avoir les mêmes dimensions comme boîtier et avec les boîtes de soufflage de même
taille qu'un disjoncteur de même caractéristique mais en excluant un équipement de
fuite à la terre.
3. Disjoncteur selon la revendication 1 ou 2, dans lequel le boîtier principal comprend
une base avec un fond délimité par une partie de paroi latérale, le noyau étant situé
dans un plan s'étendant parallèlement au fond.
4. Disjoncteur selon l'une quelconque des revendications précédentes, dans lequel le
noyau est un noyau à enroulement plat d'un alliage nanocristallin.
5. Disjoncteur selon la revendication 4, dans lequel le noyau comporte du matériau de
blindage et du matériau isolant.
6. Disjoncteur selon l'une quelconque des revendications précédentes, dans lequel chaque
élément conducteur électrique est réalisé sous la forme d'une entretoise en un matériau
conducteur de l'électricité, les entretoises faisant saillie à travers l'ouverture
du noyau de manière à être entouré par le noyau.
7. Disjoncteur selon la revendication 6, dans lequel une cosse de sortie est montée sur
chaque entretoise.
8. Disjoncteur selon la revendication 7, dans lequel chaque conducteur de sortie est
fixé à son entretoise et à sa cosse de sortie associées par des moyens de fixation.
9. Disjoncteur selon la revendication 7 ou 8, dans lequel le circuit de détection de
courant comprend des moyens de détection de courant.
10. Disjoncteur selon la revendication 9, dans lequel les moyens de détection de courant
comprennent un transformateur de courant comportant un enroulement entourant les cosses
de sortie.
11. Disjoncteur selon l'une quelconque des revendications précédentes, dans lequel le
boîtier secondaire est logé de manière amovible dans le boîtier primaire.