EP3427283B1 - Sélecteur pour un commutateur d'étage de charge et commutateur d'étage de charge avec commutateur de charge et sélecteur - Google Patents

Sélecteur pour un commutateur d'étage de charge et commutateur d'étage de charge avec commutateur de charge et sélecteur Download PDF

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Publication number
EP3427283B1
EP3427283B1 EP17710696.0A EP17710696A EP3427283B1 EP 3427283 B1 EP3427283 B1 EP 3427283B1 EP 17710696 A EP17710696 A EP 17710696A EP 3427283 B1 EP3427283 B1 EP 3427283B1
Authority
EP
European Patent Office
Prior art keywords
contact
selector
insulating plate
geneva wheel
driver
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP17710696.0A
Other languages
German (de)
English (en)
Other versions
EP3427283A1 (fr
Inventor
Christian Hammer
Alfred Bieringer
Nikolaus Unterreiner
Hubert Zwirglmaier
Andreas Stocker
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Maschinenfabrik Reinhausen GmbH
Scheubeck GmbH and Co
Original Assignee
Maschinenfabrik Reinhausen GmbH
Maschinenfabrik Reinhausen Gebrueder Scheubeck GmbH and Co KG
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Maschinenfabrik Reinhausen GmbH, Maschinenfabrik Reinhausen Gebrueder Scheubeck GmbH and Co KG filed Critical Maschinenfabrik Reinhausen GmbH
Priority to PL17710696T priority Critical patent/PL3427283T3/pl
Publication of EP3427283A1 publication Critical patent/EP3427283A1/fr
Application granted granted Critical
Publication of EP3427283B1 publication Critical patent/EP3427283B1/fr
Priority to HRP20201132TT priority patent/HRP20201132T1/hr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H3/00Mechanisms for operating contacts
    • H01H3/32Driving mechanisms, i.e. for transmitting driving force to the contacts
    • H01H3/44Driving mechanisms, i.e. for transmitting driving force to the contacts using Geneva movement
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H9/00Details of switching devices, not covered by groups H01H1/00 - H01H7/00
    • H01H9/0005Tap change devices
    • H01H9/0016Contact arrangements for tap changers
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H9/00Details of switching devices, not covered by groups H01H1/00 - H01H7/00
    • H01H9/0005Tap change devices
    • H01H9/0027Operating mechanisms

Definitions

  • the invention relates to a selector for an on-load tap changer and an on-load tap changer with a diverter switch and a selector.
  • US 6 693 247 B1 describes an on-load tap changer that works according to the reactor switching principle.
  • the on-load tap changer has a base plate and a cover plate, between which a motor, a transmission and the contact device are arranged.
  • the fixed contacts are arranged in a circle on the base plate and are connected by different contact units that are operated via the gearbox.
  • the fixed contacts are connected to the winding taps on the back of the base plate.
  • the gearbox is essentially attached to the cover plate, which is made of steel.
  • EP 0 907 192 discloses a tap changer selector according to the preamble of claim 1.
  • a formulation of the type "A is connected to B” corresponds to a formulation of the type "A is connected to B
  • a formulation of the type "A is connected to B” includes the meanings "A is directly conductively connected to B” and “A is indirectly conductively connected to B via C,” and has a formulation of the type "A is connected to B” meaning "A is directly conductively connected to B”.
  • this selector enables both moving contacts to contact a fixed contact simultaneously in the stationary state. This means that the entire on-load tap-changer is at a defined potential and thus has a high surge voltage resistance.
  • This selector is inexpensive due to fewer components and is nevertheless safe. All parts of the selector are attached to only one insulating plate. This particularly space-saving design makes it possible to considerably reduce the size for the corresponding transformer, which is designed, for example, as a local network transformer. This fact reduces the overall cost of a system. Furthermore, this simple structure enables the selector to be installed particularly quickly.
  • the fixed contacts can be easily inserted into the insulating plate. Moving contacts are also easy to install, as they can be easily attached from either side.
  • Each fixed contact can be connected or connected to an associated winding tap of a regulating winding of a transformer or a controllable coil.
  • the moving contacts and fixed contacts are designed such that each moving contact can optionally be connected to each of the fixed contacts.
  • This selector can be designed in any manner as required, for example in such a way that it has at least one or no additional insulating plate and / or at least one or no additional moving contact and / or at least one or no additional connection.
  • the contact areas of the fixed contacts correspond to the geometry of the moving contacts and thus ensure an electrically conductive connection, which is particularly positive.
  • the contact areas can be designed, for example, as simple straight or curved pins.
  • Each moving contact can be attached to the respective Geneva wheel by additional means, such as compression and / or tension springs, in order to ensure a movable or floating bearing.
  • the bearing axles can be designed as separate individual parts or as a sprayed-on part of the insulating plate.
  • the drivers can have additional cams so that when a driver is rotated through 360 °, the respective Geneva wheel is correspondingly operated more often.
  • the selector can have at least one or no additional drive shaft.
  • the drivers and thus the cams arranged on them are offset from one another at an angle.
  • the angle is so large that the individual moving contacts are actuated in a staggered manner.
  • the fixed contact and the line can be connected by soldering, welding or another joining process.
  • both parts can also consist of a wire which has two contact areas for the moving contacts by deforming at one end.
  • the lines can be embedded in the insulating plate as required in any manner, for example by injection molding or low-pressure molding.
  • FIG. 1 to 4 A preferred embodiment of a selector 10 with an insulating plate 11 is shown.
  • the insulating plate 11 consists of an insulating material such as plastic or fiber-reinforced plastic (for example a mixture of polyamide or polyphthalamide with glass fibers).
  • the insulating plate 11 is, for example, essentially rectangular and has a first side 20 and a second, opposite side 30.
  • a plurality of fixed contacts 18 are arranged on the first side 20, which are connected via lines 19 with winding taps 16 to a control winding 17 ( FIG. 9 ) a step transformer are connected and are formed according to a first embodiment.
  • the fixed contacts 18 extend from the first side 20 through the insulating plate 11 to the second side 30.
  • the fixed contacts 18 are preferably made of copper and are additionally silver-plated. Furthermore, on the first side 20 of the insulating plate 11 there is a first Geneva wheel 23 with a first moving contact 21 movably mounted on it.
  • the first Geneva wheel 23 is rotatably mounted about an axis 41 on a first bearing axis 24.
  • the bearing axis 24 is designed, for example, as a separate part that is mechanically connected to the insulating plate 11.
  • the bearing axis 24 can, however, also be sprayed on during the manufacture of the insulating plate 11 and can be formed with this as a unit.
  • a first driver 25 is arranged, which is actuated via a drive shaft 43 which extends through the insulating plate 11.
  • the first driver 25 has a first cam 26 which engages in the first Geneva wheel 23 and rotates it in the process.
  • the first driver 25 When the selector 10 is actuated, the first driver 25 is rotated through 360 ° by corresponding actuation of the drive shaft 43.
  • the first Geneva wheel 23 When the first driver 25 rotates completely, the first Geneva wheel 23 is only rotated piece by piece, that is to say by a fraction of a complete rotation.
  • the combination of the first driver 25 and the first Geneva wheel 23 converts the continuous rotary movement of the first driver 25 into a stepwise or piecewise rotation of the first Geneva wheel 23.
  • the combination of a Geneva wheel 23 and a driver 25 enables a locking function of the two parts against one another even in the idle state, that is to say before or after actuation of the selector 10.
  • the first moving contact 21 Before the first Geneva wheel 23 is actuated, the first moving contact 21 always contacts one of the fixed contacts 18 and connects it in an electrically conductive manner to a first connection 27 ( FIG. 9 ) a first branch 12 of the diverter switch 14. When the selector 10 is actuated, the first Geneva wheel 23 is rotated and the first moving contact 21 is switched from this fixed contact 18 to an adjacent fixed contact 18.
  • Each fixed contact 18 has first and second contact areas 22, 32.
  • the fixed contacts 18 are contacted with the first moving contact 21 on the first side 20 via the respective first contact area 22.
  • FIG. 2nd the opposite side of the selector 10 is shown.
  • the fixed contacts 18, which are connected to the winding taps 16 via the lines 19, can also be seen on the second side 30 of the insulating plate 11.
  • a second Geneva wheel 33 with a second moving contact 31 is attached to the second side 30.
  • the second Geneva wheel 33 is rotatably mounted about the axis 41 on a second bearing axis 34.
  • a second driver 35 is arranged next to the second Geneva wheel 33 and is actuated by the same drive shaft 43 as the first driver 25.
  • the second driver 35 has a second cam 36 which engages in the second Geneva wheel 33 and rotates it in the process.
  • the first cam 26 is arranged offset from the second cam 36 or the drivers 25, 35 and thus the cams 26, 36 are arranged offset.
  • the offset arrangement of the cams 26, 36 or drivers 25, 35 results in actuated actuation of the Geneva wheels 23, 33 and thus the moving contacts 21, 31.
  • the second moving contact 31 Before the second Geneva wheel 33 is actuated, the second moving contact 31 always contacts one of the fixed contacts 18 and connects it in an electrically conductive manner to a second connection 37 ( FIG. 9 ) of a second branch 13 of the diverter switch 14.
  • the selector 10 When the selector 10 is actuated, the second Geneva wheel 33 is rotated and the second moving contact 31 is switched from this fixed contact 18 to an adjacent fixed contact 18.
  • the first and the second moving contacts 21, 31 contact the same fixed contact 18 before actuation of the selector 10, that is to say in the stationary state.
  • the fixed contacts 18 are contacted with the second moving contact 31 on the second side 30 via the respective second contact area 32.
  • FIG. 3rd The first side 20 of the selector 10 is shown again, but without the first Geneva wheel 23.
  • the lines 19, which connect the fixed contacts 18 to the respective winding taps 16, run alternately on the first and second sides 20, 30 of the insulating plate 11.
  • the lines 19 are attached to the insulating plate 11 by way of example on the first side 20 with a first retaining ring 29.
  • the attachment can also be done in other ways.
  • the lines 19 can be snapped into sprayed-on locking contours or snap connections or can be integrated into the insulating plate 11 directly by injection.
  • the lines 19 are mounted, for example, by means of additional fastening rails 40 on both sides 20, 30 of the insulating plate 11.
  • the cables can also be fastened here by snapping, gluing, etc., as previously described.
  • the fixed contacts 18 and the lines 19 can also be made in one piece.
  • FIG. 4th the second side 30 of the selector 10 is shown again, but without the second Geneva wheel 33.
  • the fixed contacts 18 are shown with their respective second contact areas 32.
  • the lines 19 are attached to the insulating plate 11 by way of example on the second side 30 with a second retaining ring 39.
  • the attachment can also be done in other ways.
  • the lines 19 can be snapped into sprayed-on locking contours or snap connections or can be integrated into the insulating plate 11 directly by injection.
  • the drivers 25, 35 are shown.
  • the cams 26, 36 face each other, but can also be aligned differently depending on the design and operative connection with the respective Geneva wheel 23, 33. It can be seen particularly well here that the drivers 25, 35 and thus the cams 26, 36 are offset by approximately 180 °.
  • the individual Geneva wheels 23, 33 are rotated with a time delay and the moving contacts 21, 31 are thus actuated at different times.
  • FIG. 6 the first embodiment of the first moving contact 21 and the first embodiment of the fixed contacts 18 are shown enlarged.
  • the moving contact 21 is designed on its front side or contact side in such a way that its contour is optimally adapted to the first contact area 22 of the fixed contact 18 and contacts it optimally.
  • the contour of the moving contact 21, 31 in connection with the geometry of the fixed contact 18 even enables a latching function.
  • the moving contact 21 is spring-loaded and / or floating in the direction of the axis 41 by means of a compression spring 42. A contact pressure is thus always generated when connected to a fixed contact 18.
  • the electrically conductive connection between the moving contact 21 and its connection 27 is realized, for example, via a wire 44 which is connected to an axial contact 49.
  • the axial contact 49 is fixedly connected to the first Geneva wheel 23 via a driver and rotates with the latter.
  • the first connection 27 is connected to a non-rotatable, electrically conductive, silver-plated disc 50.
  • the disk 50 and the axial contact 49 are connected to one another in a grinding, electrically conductive manner.
  • the second moving contact 31, the second contact areas 32 and the second connection 37 are formed on the second side 30 analogously to the first moving contact 21, the first contact areas 22 and the first connection 27.
  • FIG. 7 a detailed view of a second embodiment of the first moving contact 21 and a second embodiment of the fixed contacts 18 are shown.
  • a contact shaft 45 serves as a bearing for the first Geneva wheel 23 and contacts for the first connection 27.
  • the contact shaft 45 has two opposite contact surfaces 46, which run at right angles to the contact shaft 45.
  • Each first contact area 22 has two opposite contact surfaces 47, which run at right angles to the contact shaft 45.
  • These contact surfaces 46, 47 can each be individually contacted by a moving contact 21 or by a multi-part moving contact 21.
  • the individual parts of the moving contact 21 are movably, resiliently (floating) mounted and arranged on the Geneva wheel 23, not shown here, or held by it.
  • moving contact 21 is self-sprung, ie the contact force is generated by the pretensioning of the contact spring plate.
  • the material from which the moving contact is made is, for example, electrically conductive and resilient and preferably CuSn6 or CuCr1Zr.
  • FIG. 8th a detailed view of a third embodiment of the first moving contact 21 and a third embodiment of the fixed contacts 18 are shown.
  • a contact ring 48 is used for contacting the first connection 27.
  • the contact ring 48 has two opposite contact surfaces 46, which run concentrically around the contact shaft 45.
  • Each first contact area 22 has two opposite contact surfaces 47 which run parallel to the contact shaft 45.
  • These contact surfaces 46, 47 can be made sliding contact by the multi-part moving contact 21.
  • the individual parts of the moving contact 21 are movable, resilient (floating) and arranged on the Geneva wheel 23, not shown here.
  • moving contact 21 is self-sprung, ie contact force is generated via the pretension of the contact spring plate.
  • the material of which the moving contact is made is exemplary electrically conductive and resilient and preferably CuSn6 or CuCr1Zr.
  • FIG. 9 An on-load tap changer 15 with a selector 10 according to the invention and a diverter switch 14 is shown schematically.
  • the selector 10 has a first side 20 and a second side 30 with fixed contacts 18 arranged on a circle.
  • the fixed contacts 18 are each electrically conductively connected via a line 19 to an associated winding tap 16 of a regulating winding 17 of a regulating transformer.
  • the first moving contact 21 is electrically conductively connected to the first branch 12 of the diverter switch 14 via the first connection 27.
  • the second moving contact 31 is electrically conductively connected to the second branch 13 of the diverter switch 14 via the second connection 27.
  • the diverter switch 14 is also electrically conductively connected to a load lead 51 and thus to the ground potential. In the interior of the load switch, the switching takes place under load by means of different switching means 52 from the first branch to the second branch and vice versa.

Landscapes

  • Slide Switches (AREA)
  • Manufacture Of Switches (AREA)
  • Switch Cases, Indication, And Locking (AREA)
  • Driving Mechanisms And Operating Circuits Of Arc-Extinguishing High-Tension Switches (AREA)
  • Mechanisms For Operating Contacts (AREA)
  • Contacts (AREA)
  • Push-Button Switches (AREA)
  • Rotary Switch, Piano Key Switch, And Lever Switch (AREA)
  • Connections Arranged To Contact A Plurality Of Conductors (AREA)
  • Networks Using Active Elements (AREA)
  • Processing Of Color Television Signals (AREA)
  • Housings And Mounting Of Transformers (AREA)

Claims (11)

  1. Sélecteur (10) destiné à un commutateur de prises en charge (15) comprenant un commutateur de charge (14) comportant :
    - une plaque isolante (11) ayant un premier côté (20) et un second côté (30) opposé à celui-ci,
    - plusieurs contacts fixes (18) qui s'étendent du premier côté (20) au second côté (30) au travers de la plaque isolante (11),
    - un premier contact mobile (21) situé sur le premier côté (20),
    - une première borne (27) qui est reliée au premier contact mobile (21) et peut être reliée à une première branche (12) du commutateur de charge (14),
    caractérisé par
    - un second contact mobile (31) situé sur le second côté (30),
    - une seconde borne (37) qui est reliée au second contact mobile (31) et peut être reliée à une seconde branche (13) du commutateur de charge (14),
    - chaque contact mobile (21, 31) pouvant être sélectivement relié à chacun des contacts fixes (18).
  2. Sélecteur (10) conforme à la revendication précédente,
    dans lequel :
    chaque contact fixe (18) comporte sur le premier côté (20) une première zone de contact (22) pour le premier contact mobile (21) et sur le second côté (30) une seconde zone de contact (32) pour le second contact mobile (31).
  3. Sélecteur (10) conforme à l'une des revendications précédentes, comprenant :
    - une première roue de Malte (23) qui est montée mobile en rotation autour d'un axe (41) sur la plaque isolante (11) et porte le premier contact mobile (21),
    - une seconde roue de Malte (33) qui est montée mobile en rotation autour de l'axe (41) sur la plaque isolante (11) et porte le second contact mobile (32),
    - l'axe (41) s'étendant perpendiculairement aux deux côtés (20, 30) de la plaque isolante (11).
  4. Sélecteur (10) conforme à l'une des revendications précédentes, comprenant :
    - un premier entraîneur (25) monté sur le premier côté (20) et un second entraîneur (35) monté sur le second côté (30),
    - un arbre d'entraînement commun (43) qui s'étend au travers de la plaque isolante (11) et des entraîneurs (25, 35) et est monté mobile en rotation sur la plaque isolante (11),
    - les deux entraîneurs (25, 35) étant entraînés par l'arbre d'entraînement (43),
    - le premier entraîneur (25) comprenant une première came (26) et le second entraîneur (35) comprenant une seconde came (36),
    - chaque came (26, 36) venant en prise dans la roue de Malte (23, 33) associée de sorte que, lors d'une rotation complète d'un entraîneur (25, 35), la roue de Malte (23, 33) associée ne tourne que d'une fraction d'une rotation complète.
  5. Sélecteur (10) conforme à la revendication précédente,
    dans lequel :
    la première came (26) est décalée par rapport à la seconde came (36) de façon à obtenir un actionnement alterné des roues de Malte (23, 33).
  6. Sélecteur (10) conforme à l'une des revendications précédentes, dans lequel :
    - les bornes (27, 37) sont reliées aux contacts mobiles (21, 31) directement ou par l'intermédiaire d'un toron (44), et/ou
    - les bornes (27, 37) sont reliées à un arbre de contact (45) et/ou à un anneau de contact (48).
  7. Sélecteur (10) conforme à l'une des revendications précédentes,
    dans lequel :
    chaque contact mobile (21, 31) est monté mobile sur la roue de Malte (23, 33) associée.
  8. Sélecteur (10) conforme à l'une des revendications précédentes,
    dans lequel :
    chaque contact fixe (18) est relié à un conducteur (19) ou est réalisé en une seule pièce avec un conducteur (19) sous la forme d'un conducteur courbe.
  9. Sélecteur (10) conforme à la revendication précédente, dans lequel :
    - les conducteurs (19) sont fixés sur la plaque isolante (11) au moyen d'un anneau de retenue (29, 39) et/ou d'un rail de fixation (40),
    - les conducteurs (19) sont clipsés ou enfichés sur la plaque isolante (11), et/ou
    - les conducteurs (19) sont injectés ou insérés par fusion dans ou sur la plaque isolante (11).
  10. Sélecteur (10) conforme à l'une des revendications précédentes, dans lequel :
    - la première roue de Malte (23) est montée mobile en rotation sur un premier axe de palier (24),
    - la seconde roue de Malte (33) est montée mobile en rotation sur un second axe de palier (34),
    - les axes de palier (24, 34) et la plaque isolante (11) sont réalisés en une seule pièce.
  11. Commutateur de prises en charge (15) comprenant :
    - un sélecteur (10) conforme à l'une des revendications précédentes,
    - un commutateur de charge (14) ayant une première branche (12) qui est reliée à la première borne (27) et une seconde branche (13) qui est reliée à la seconde borne (37).
EP17710696.0A 2016-03-11 2017-03-08 Sélecteur pour un commutateur d'étage de charge et commutateur d'étage de charge avec commutateur de charge et sélecteur Active EP3427283B1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
PL17710696T PL3427283T3 (pl) 2016-03-11 2017-03-08 Wybierak dla przełącznika zaczepów pod obciążeniem oraz przełącznik zaczepów pod obciążeniem z przełącznikiem obciążenia i wybierakiem
HRP20201132TT HRP20201132T1 (hr) 2016-03-11 2020-07-17 Selektor za regulacijsku sklopku pod opterećenjem i regulacijska sklopka pod opterećenjem s komutacijskim ormarom i selektorom

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102016104499.7A DE102016104499B3 (de) 2016-03-11 2016-03-11 Wähler für einen Laststufenschalter und Laststufenschalter mit Lastumschalter und Wähler
PCT/EP2017/055391 WO2017153447A1 (fr) 2016-03-11 2017-03-08 Sélecteur pour un commutateur d'étage de charge et commutateur d'étage de charge avec commutateur de charge et sélecteur

Publications (2)

Publication Number Publication Date
EP3427283A1 EP3427283A1 (fr) 2019-01-16
EP3427283B1 true EP3427283B1 (fr) 2020-05-06

Family

ID=58277266

Family Applications (1)

Application Number Title Priority Date Filing Date
EP17710696.0A Active EP3427283B1 (fr) 2016-03-11 2017-03-08 Sélecteur pour un commutateur d'étage de charge et commutateur d'étage de charge avec commutateur de charge et sélecteur

Country Status (15)

Country Link
US (1) US10643802B2 (fr)
EP (1) EP3427283B1 (fr)
JP (1) JP7066620B2 (fr)
KR (1) KR102355954B1 (fr)
CN (1) CN108463868B (fr)
AU (1) AU2017229313B2 (fr)
BR (1) BR112018016707A2 (fr)
DE (1) DE102016104499B3 (fr)
ES (1) ES2805352T3 (fr)
HR (1) HRP20201132T1 (fr)
MX (1) MX2018010952A (fr)
PL (1) PL3427283T3 (fr)
PT (1) PT3427283T (fr)
WO (1) WO2017153447A1 (fr)
ZA (1) ZA201804552B (fr)

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DE102018112013A1 (de) * 2018-05-18 2019-11-21 Maschinenfabrik Reinhausen Gmbh Kontaktsystem für einen laststufenschalter
EP3761333B1 (fr) * 2019-07-01 2023-08-30 Hitachi Energy Switzerland AG Agencement d'entraînement pour un changeur de prise
EP3761332B8 (fr) * 2019-07-01 2023-12-06 Hitachi Energy Ltd Changeur de prise en charge comprenant une barrière d'isolation
DE102019130462B4 (de) * 2019-11-12 2022-03-24 Maschinenfabrik Reinhausen Gmbh Wähler für Laststufenschalter sowie Laststufenschalter damit
KR102401801B1 (ko) * 2020-09-07 2022-05-25 (주) 모노인더스트리 자동 제어 무부하 탭 절환기
US20230411088A1 (en) * 2021-02-16 2023-12-21 Hitachi Energy Switzerland Ag Switching system for an on-load tap changer, on-load tap changer and method for switching a tap connection of an on-load tap changer
KR102547475B1 (ko) 2022-09-30 2023-06-28 부흥시스템(주) 아크 유도형 접점이 구비된 탭 셀렉터

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US20190096596A1 (en) 2019-03-28
KR20180121559A (ko) 2018-11-07
PT3427283T (pt) 2020-07-01
BR112018016707A2 (pt) 2018-12-26
JP7066620B2 (ja) 2022-05-13
ZA201804552B (en) 2019-05-29
CN108463868B (zh) 2020-08-07
EP3427283A1 (fr) 2019-01-16
HRP20201132T1 (hr) 2020-10-30
MX2018010952A (es) 2018-11-22
ES2805352T3 (es) 2021-02-11
AU2017229313A1 (en) 2018-10-25
AU2017229313B2 (en) 2021-07-08
JP2019509634A (ja) 2019-04-04
KR102355954B1 (ko) 2022-01-25
US10643802B2 (en) 2020-05-05
WO2017153447A1 (fr) 2017-09-14
CN108463868A (zh) 2018-08-28
DE102016104499B3 (de) 2017-04-27
PL3427283T3 (pl) 2020-10-19

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