EP2725664A1 - Residual current protected socket - Google Patents
Residual current protected socket Download PDFInfo
- Publication number
- EP2725664A1 EP2725664A1 EP13172947.7A EP13172947A EP2725664A1 EP 2725664 A1 EP2725664 A1 EP 2725664A1 EP 13172947 A EP13172947 A EP 13172947A EP 2725664 A1 EP2725664 A1 EP 2725664A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- socket
- socket according
- carrier
- housing
- housing part
- 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.)
- Granted
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Classifications
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R13/00—Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
- H01R13/66—Structural association with built-in electrical component
- H01R13/70—Structural association with built-in electrical component with built-in switch
- H01R13/713—Structural association with built-in electrical component with built-in switch the switch being a safety switch
- H01R13/7135—Structural association with built-in electrical component with built-in switch the switch being a safety switch with ground fault protector
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R13/00—Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
- H01R13/46—Bases; Cases
- H01R13/502—Bases; Cases composed of different pieces
- H01R13/512—Bases; Cases composed of different pieces assembled by screw or screws
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R2103/00—Two poles
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R24/00—Two-part coupling devices, or either of their cooperating parts, characterised by their overall structure
- H01R24/76—Two-part coupling devices, or either of their cooperating parts, characterised by their overall structure with sockets, clips or analogous contacts and secured to apparatus or structure, e.g. to a wall
- H01R24/78—Two-part coupling devices, or either of their cooperating parts, characterised by their overall structure with sockets, clips or analogous contacts and secured to apparatus or structure, e.g. to a wall with additional earth or shield contacts
Definitions
- the present invention relates to a fault-protected socket according to the introductory part of claim 1.
- a socket prevents electrical accidents and fires in electrical installations and is due to different legal regulations from country to country in general different.
- This socket contains a housing which accommodates modular units of a socket and a residual current circuit breaker, such as sockets, a contact arrangement with at least one switching point formed by two switching pieces, a summation current transformer, a magnetic release, a switching mechanism with a one pawl having switching mechanism and a test circuit.
- the modular units are held by a plate-shaped support body, which is aligned parallel to the two end faces of the socket and supported on a bottom-facing end face.
- the object is to provide a fault-protected socket of the type mentioned above, which is characterized by a compact design and can be manufactured in a simple and cost-effective manner.
- a fault-proof socket is provided with a multi-part, an installation device bearing housing for receiving a residual current circuit breaker and of Sockets for a power consumer and terminals for a power supply network.
- a front side of the socket forming the first part of the housing is designed as a socket carrier and has a structurally executed in the interior of the housing mounting side on which the residual current circuit breaker and the sockets are held.
- the front of the socket forming housing part is designed as a socket carrier and carries the residual current circuit breaker and the sockets, eliminates the need in the prior art, arranged in the interior of the socket housing and parallel to the front and the bottom of the socket aligned plate-shaped support body. Because in particular the residual current circuit breaker and the sockets can be positioned and mounted on the socket carrier during assembly of the fault-protected socket from the mounting side, in contrast to known sockets can be dispensed with a turning of the socket carrier during installation of the socket.
- the socket carrier therefore allows the production of various sockets such as SCHUKO, Switzerland type 13 and 23, France and others.
- the basic geometry of the socket carrier, the housing and the particularly space consuming switching mechanism therefore always remain the same for different sockets.
- the interior of the housing is dimensioned the same in all embodiments of the inventive socket, the same modular units of switching mechanism, test circuit, summation current transformer, sockets and terminals can be installed for all embodiments.
- the mounting side may have two separate recesses, of which the first receives a current transformer and the second a switching mechanism of the residual current circuit breaker.
- a wall of the socket carrier separating the two recesses may be designed as a socket holder and may have at least two chambers communicating with the front side.
- the two chambers can each accommodate one of the sockets, wherein the socket received from the first chamber with a phase or a neutral conductor and the recorded from the second chamber socket is connectable to a neutral or a phase conductor of the power supply network.
- the socket holder may have two guided to the edge of the socket carrier end portions. Both end portions may each have a perpendicular to the front aligned bore in which a bolt of the installation device is arranged.
- the bolt may be part of a screw or rivet connection for fixing the installation device to the socket carrier.
- the bolt may be designed as a set screw and may have an operable from the front screw head, on which a tiltably mounted claw of the installation device is supported.
- a communicating with the front side third chamber may be formed, which receives a socket of a protective conductor.
- a communicating with the front side third chamber may be formed, which receives a portion of a bolt connection for a designed as a bracket or as a pin plug contact of a protective conductor.
- the front side of the socket carrier may have a central area and a section extending over the central area border. in the At least three openings may be arranged in the central area, of which the first is the passage of the phase or neutral conductor, the second of the implementation of the neutral or phase conductor and the third of the implementation of a protective conductor.
- a fourth opening containing a mounting insert for securing a socket cover.
- two extending perpendicular to the front of the socket material recesses may be formed for receiving in each case one of two retaining arms of the installation device.
- Two sleeves can be formed on the border, of which the first is the implementation of a button for actuating the switching mechanism and the second is the implementation of a button for actuating a test circuit of the residual current circuit breaker.
- the connecting terminals of a phase conductor, a neutral conductor and a protective conductor of the power supply network serving terminals are arranged.
- These chambers can be arranged between the summation current transformer and the bottom of the socket.
- openings may be arranged for receiving actuators for opening and closing the terminals.
- the lateral surface forming wall portion of the second housing part may also be formed two openings for the passage of each one of two mounting claws of the installation device.
- On the second housing part can form a bottom of the socket forming the third housing part with openings for receiving fastening bolts, which are guided by the second housing part in the socket carrier.
- FIGS. 1 to 3 corresponds to the legal regulations of Switzerland
- FIGS. 4 resp. 5 the legal regulations of Germany resp. France correspond.
- FIGS. 1, 2 and 3 all three embodiments include one of the FIGS. 1, 2 and 3 respectively.
- the two FIGS. 4 and 5 apparent housing 10 made of an electrically insulating material. This is composed of three slightly different, with respect to their dimensioning and fit but the same housing parts 11, 12 and 13.
- the three housing parts are made by four out of the Figures 2 and 3 apparent screws 14 held together to form positive locking.
- the screws acting as a bolt 14 are guided by the housing part 13 forming the bottom of the socket via the central housing part 12 which largely forms the lateral surface of the socket to the housing part 11 forming the front side 80 of the socket.
- Through holes 15 in the housing parts 13 ( Figure 3 ) and 12 serve to guide the screws 14 and shield them from the interior of the housing 10.
- the housing part 11 has a female thread 16 for each of the four screws 14 (FIG. Figure 6 ).
- an installation device 20 is attached to the housing 10, which serves to install the socket in a wall.
- the installation device 20 is formed differently in the three embodiments. According to the embodiment of the FIGS. 1 to 3 it may have two separate holding arms 21 a and 21 b. According to the embodiments of the FIGS. 4 respectively. 5, it has a mounting frame 22 with two retaining arms, of which only the retaining arm 21 b can be seen on and two tiltable on the housing 10 held mounting claws 23rd
- Fig. 3 is shown as representative of all embodiments, takes the housing 10 with a consumer electrically conductively connectable sockets 30 and electrically connectable to a power supply connection terminals 40 and a residual current circuit breaker 50 which contains independently producible and easy to mount components, such as in particular a switching mechanism 51 with Fixed contacts a Switching point, a test circuit 52 and a summation current transformer 53 having a power terminals and movable contacts of the switching point-containing primary winding.
- a switching mechanism 51 with Fixed contacts a Switching point, a test circuit 52 and a summation current transformer 53 having a power terminals and movable contacts of the switching point-containing primary winding.
- a space-saving and rapid installation of the sockets and the residual current circuit breaker is made possible by the fact that the front side of the socket forming housing part 11 is designed as a socket carrier and a lying inside the housing 10 structured, d. H. Elevations and depressions, walls, cavities, wall openings and openings containing mounting side 60, at which the modular components formed from residual current circuit breaker 50 and the sockets 30 are held.
- the mounting side 60 of the socket carrier 11 has two by a wall 70 separate recesses 61, 62.
- the recess 62, respectively. 61 is suitable sized to modular units, such as the summation current transformer 53, respectively.
- the switching mechanism 51 and the test circuit 52 of the residual current circuit breaker 50 record and support.
- the wall serves as a holder 70 of the sockets 30 and has three with the front 80 of the socket, respectively.
- the socket carrier 11 communicating chambers 71 a, 71 b and 71 c, of which the chamber 71 a is a socket 30 a of a phase or neutral conductor, the chamber 71 b is a socket 30 b of a protective conductor and the chamber 71 c is a socket 30 c of a neutral or phase conductor picks up (off Fig.1 visible).
- the conductor which can be connected to the socket 30a is a phase conductor
- the conductor which can be connected to the socket 30c is a neutral conductor and, conversely, the conductor which can be connected to the socket 30a is a neutral conductor
- the conductor which can be connected to the socket 30c is a phase conductor.
- the socket holder 70 has two guided to the edge of the socket carrier 11 end portions 72a and 72b. In both end portions, one perpendicular to the front 80 is aligned in each case Bore 73a resp. 73b formed. In the edge of the socket carrier 11 are two perpendicular to the front 80 aligned, respectively to one of the end portions 72 a, respectively. 72b extended material recesses 81 a resp. 81 b formed.
- the front side 80 of the socket carrier 11 has a central region 82 and a section 83 projecting beyond the central region.
- Formed on the border 83 are two sleeves 83a and 83b, of which the sleeve 83a serves to carry out a key 51a for actuating the switching mechanism 51 and the sleeve 83b to carry out a key 52a for actuating the test circuit 52.
- In the central region 82 three communicating with the chambers 71 a, 71 b and 71 c openings 84 a, 84 b and 84 c are arranged, which serve to carry out the plug contacts of a connector connected to the consumer.
- a fourth opening 84d is provided, which contains a mounting insert 85 for attaching a socket outlet, not shown in these figures.
- FIGS. 7 or 8 illustrated housing part 12 of the embodiment according to the FIGS. 1 to 3 respectively. of the two embodiments according to the FIGS. 4 or 5 is predominantly hollow and has three chambers 41 located in its interior, in which the not shown off Figure 3 apparent terminals 40 for connecting one of the phase conductors, the protective conductor and the neutral conductor of the power supply network arranged are. To save space, these three chambers between the summation current transformer 53 and serving as the bottom of the socket housing part 13 are arranged. In a wall portion of the housing part 12 which forms the lateral surface of the housing 10, the housing wall has openings 42 which provide access to actuators 43 (FIG. FIGS. 1, 2 . 4 and 5 ) to open and close the terminals.
- actuators 43 FIG. FIGS. 1, 2 . 4 and 5
- the terminals 40 may be formed as double terminals, as can be seen for each terminal two holes 13 a are guided through the bottom of the socket formed by the housing part 13.
- the two holding arms 21 a and 21 b of the installation device 20 in the in Figure 6 shown socket carrier 11 is inserted and respectively by means of a bore 73a respectively.
- a substantially the switching mechanism 51 comprehensive assembly is stored in the recess 61, wherein the key 51a of the switching mechanism 51 is guided by sleeve 53a to the front 80.
- the summation current transformer 53 is mounted in the recess 62.
- a construction comprising the test circuit 52 and a circuit of the secondary winding of the summation current transformer is positioned in the recess 61 on the switching mechanism 51. It will be like that Figure 9 apparent level of production of the socket reached.
- the sockets 30 a, 30 b and 30 c in sequence in the chambers 71 a, 71 b and 71 c positioned and closed the bottom of the socket facing side of the chambers with the insulating cover, not shown.
- the socket carrier 11 On the so-stocked socket carrier 11 then the majority of the lateral surface of the socket forming housing part 12 is pushed.
- the terminals 40 can now in the chambers 41 positioned and the housing 10 are closed by placing the housing part 13 and bolting the three housing parts.
- the same components such as switching mechanism 51, test circuit 52, current transformer 53, sockets 50a and 50c and terminals 40 can be installed for all embodiments.
- the maximum dimensioning of the socket (installation depth) from the front to the floor is limited by regulations and therefore can not be exceeded. Due to the fact that the housing part forming the front side 80 of the socket is designed as a socket carrier and carries the residual current circuit breaker and the sockets, however, a plate-shaped supporting body arranged in the interior of the socket housing and oriented parallel to the front side 80 and to the bottom of the socket is dispensed with in the prior art ,
Abstract
Description
Die vorliegende Erfindung bezieht sich auf eine fehlerstromgeschützte Steckdose nach dem einleitenden Teil von Patentanspruch 1. Eine solche Steckdose verhütet Elektrounfälle und Brände in elektrischen Anlagen und ist wegen unterschiedlicher gesetzlicher Vorschriften von Land zu Land in allgemeinen unterschiedlich ausgebildet.The present invention relates to a fault-protected socket according to the introductory part of claim 1. Such a socket prevents electrical accidents and fires in electrical installations and is due to different legal regulations from country to country in general different.
Der Erfindung, wie sie in den Patentansprüchen angegeben ist, liegt die Aufgabe zugrunde, eine fehlerstromgeschützte Steckdose der eingangs genannten Art zu schaffen, die sich durch einen kompakten Aufbau auszeichnet und in einfacher und kostengünstiger Weise gefertigt werden kann.The invention, as indicated in the claims, the object is to provide a fault-protected socket of the type mentioned above, which is characterized by a compact design and can be manufactured in a simple and cost-effective manner.
Gemäss der vorliegenden Erfindung wird eine fehlerstromgeschützte Steckdose bereitgestellt mit einem mehrteiligen, eine Installationsvorrichtung tragenden Gehäuse zur Aufnahme eines Fehlerstromschutzschalters sowie von Steckbuchsen für einen Stromverbraucher und von Anschlussklemmen für ein Stromversorgungsnetz.According to the present invention, a fault-proof socket is provided with a multi-part, an installation device bearing housing for receiving a residual current circuit breaker and of Sockets for a power consumer and terminals for a power supply network.
Ein die Frontseite der Steckdose bildendes erstes Teil des Gehäuses ist als Steckdosenträger ausgeführt und weist eine im Inneren des Gehäuses liegende strukturiert ausgeführte Montageseite auf, an der der Fehlerstromschutzschalter und die Steckbuchsen gehalten sind.A front side of the socket forming the first part of the housing is designed as a socket carrier and has a structurally executed in the interior of the housing mounting side on which the residual current circuit breaker and the sockets are held.
Dadurch, dass das die Frontseite der Steckdose bildende Gehäuseteil als Steckdosenträger ausgebildet ist und den Fehlerstromschutzschalter und die Steckbuchsen trägt, entfällt ein beim Stand der Technik benötigter, im Inneren des Steckdosengehäuses angeordneter und parallel zur Frontseite und zum Boden der Steckdose ausgerichteter plattenförmiger Tragkörper. Weil insbesondere der Fehlerstromschutzschalter und die Steckbuchsen bei der Montage der fehlerstromgeschützten Steckdose von der Montageseite her am Steckdosenträger positionierbar und montierbar sind, kann im Unterschied zu bekannten Steckdosen auf ein Wenden des Steckdosenträgers während der Montage der Steckdose verzichtet werden.The fact that the front of the socket forming housing part is designed as a socket carrier and carries the residual current circuit breaker and the sockets, eliminates the need in the prior art, arranged in the interior of the socket housing and parallel to the front and the bottom of the socket aligned plate-shaped support body. Because in particular the residual current circuit breaker and the sockets can be positioned and mounted on the socket carrier during assembly of the fault-protected socket from the mounting side, in contrast to known sockets can be dispensed with a turning of the socket carrier during installation of the socket.
Daher vergrössert sich bei gleichbleibender äusserer Einbautiefe der Steckdose der zum Einbau des Fehlerstromschutzschalters, der Steckbuchsen und der Anschlussklemmen im Inneren der Steckdose zur Verfügung stehende Abstand zwischen der Frontseite und der Rückseite der Steckdose. Dies ist von besonderem Vorteil für eine Steckdose, bei der wegen eines auf der Frontseite angebrachten und in Form eines Bügels ausgebildeten Schutzkontakts die Frontseite vertieft ausgebildet ist, wie etwa bei einer SCHUKO-Steckdose. Die durch diese Vertiefung bewirkte Reduktion des im Inneren des Steckdosengehäuses zur Verfügung stehenden Abstands zwischen den beiden Stirnseiten wird durch das Einsparen des Tragkörpers weitgehend kompensiert.Therefore, with the same external mounting depth of the socket, the distance between the front side and the rear side of the socket available for installing the residual current circuit breaker, the sockets and the terminals inside the socket increases. This is of particular advantage for a socket in which, because of a mounted on the front and formed in the form of a bracket protective contact the front is recessed, such as a SCHUKO socket. The reduction in the distance between the two end faces available in the interior of the socket housing caused by this depression is largely compensated by the saving of the supporting body.
Der Steckdosenträger ermöglicht daher die Fertigung verschiedener Steckdosen wie SCHUKO, Schweiz Typ13 und 23, Frankreich und andere. Die Grundgeometrie des Steckdosenträgers, des Gehäuses und der besonders raumbeanspruchenden Schaltmechanik bleiben daher bei verschiedenen Steckdosen immer gleich.The socket carrier therefore allows the production of various sockets such as SCHUKO, Switzerland
Da der Innenraum des Gehäuses bei allen Ausführungsformen der erfindungsgemässen Steckdose gleich dimensioniert ist, können für alle Ausführungsformen gleiche modularen Einheiten von Schaltmechanik, Prüfstromkreis, Summenstromwandler, Steckbuchsen und Anschlussklemmen, eingebaut werden.Since the interior of the housing is dimensioned the same in all embodiments of the inventive socket, the same modular units of switching mechanism, test circuit, summation current transformer, sockets and terminals can be installed for all embodiments.
Die Montageseite kann zwei voneinander getrennte Vertiefungen aufweisen, von denen die erste einen Stromwandler und die zweite eine Schaltmechanik des Fehlerstromschutzschalters aufnimmt.The mounting side may have two separate recesses, of which the first receives a current transformer and the second a switching mechanism of the residual current circuit breaker.
Eine die beiden Vertiefungen trennende Wand des Steckdosenträgers kann als Steckbuchsenhalterung ausgebildet sein und kann mindestens zwei mit der Frontseite kommunizierende Kammern aufweisen. Die zwei Kammern können jeweils eine der Steckbuchsen aufnehmen, wobei die von der ersten Kammer aufgenommene Steckbuchse mit einem Phasen- oder einem Neutralleiter und die von der der zweiten Kammer aufgenommene Steckbuchse mit einem Neutral-oder einem Phasenleiter des Stromversorgungsnetzes verbindbar ist.A wall of the socket carrier separating the two recesses may be designed as a socket holder and may have at least two chambers communicating with the front side. The two chambers can each accommodate one of the sockets, wherein the socket received from the first chamber with a phase or a neutral conductor and the recorded from the second chamber socket is connectable to a neutral or a phase conductor of the power supply network.
Die Steckbuchsenhalterung kann zwei an den Rand des Steckdosenträgers geführte Endabschnitte aufweisen. Beide Endabschnitte können jeweils eine senkrecht zur Frontseite ausgerichtete Bohrung aufweisen, in der ein Bolzen der Installationsvorrichtung angeordnet ist. Der Bolzen kann Teil einer Schraub- oder Nietverbindung zum Fixieren der Installationsvorrichtung am Steckdosenträger sein. Der Bolzen kann als Stellschraube ausgeführt sein und kann einen von der Frontseite betätigbaren Schraubenkopf aufweisen, auf dem eine kippbar gelagerte Kralle der Installationsvorrichtung abgestützt ist.The socket holder may have two guided to the edge of the socket carrier end portions. Both end portions may each have a perpendicular to the front aligned bore in which a bolt of the installation device is arranged. The bolt may be part of a screw or rivet connection for fixing the installation device to the socket carrier. The bolt may be designed as a set screw and may have an operable from the front screw head, on which a tiltably mounted claw of the installation device is supported.
In die Steckbuchsenhalterung kann eine mit der Frontseite kommunizierende dritte Kammer eingeformt sein, welche eine Steckbuchse eines Schutzleiters aufnimmt. In die Steckbuchsenhalterung kann auch eine mit der Frontseite kommunizierende dritte Kammer eingeformt sein, welche einen Abschnitt einer Bolzenverbindung für einen als Bügel oder als Stift ausgebildeten Steckkontakt eines Schutzleiters aufnimmt.In the socket holder, a communicating with the front side third chamber may be formed, which receives a socket of a protective conductor. In the socket holder, a communicating with the front side third chamber may be formed, which receives a portion of a bolt connection for a designed as a bracket or as a pin plug contact of a protective conductor.
Die Frontseite des Steckdosenträgers kann einen zentralen Bereich und eine abschnittsweise über den zentralen Bereich ragende Umrandung aufweisen. Im zentralen Bereich können mindestens drei Öffnungen angeordnet sein, von denen die erste der Durchführung des Phasen- oder Neutralleiters, die zweite der Durchführung des Neutral- oder Phasenleiters und die dritte der Durchführung eines Schutzleiters dient.The front side of the socket carrier may have a central area and a section extending over the central area border. in the At least three openings may be arranged in the central area, of which the first is the passage of the phase or neutral conductor, the second of the implementation of the neutral or phase conductor and the third of the implementation of a protective conductor.
Im zentralen Bereich kann eine vierte Öffnung vorgesehen sein, die einen Montageeinsatz enthält zum Befestigen einer Steckdosenblende.In the central area may be provided a fourth opening containing a mounting insert for securing a socket cover.
In den Rand des Steckdosenträgers können zwei senkrecht zur Frontseite der Steckdose erstreckte Materialausnehmungen eingeformt sein zur Aufnahme jeweils eines von zwei Haltearmen der Installationsvorrichtung.In the edge of the socket carrier two extending perpendicular to the front of the socket material recesses may be formed for receiving in each case one of two retaining arms of the installation device.
An die Umrandung können zwei Hülsen angeformt sein, von denen die erste der Durchführung einer Taste zur Betätigung der Schaltmechanik und die zweite der Durchführung einer Taste zum Betätigung eines Prüfstromkreises des Fehlerstromschalters dient.Two sleeves can be formed on the border, of which the first is the implementation of a button for actuating the switching mechanism and the second is the implementation of a button for actuating a test circuit of the residual current circuit breaker.
Auf den Steckdosenträger und die Installationsvorrichtung kann ein den überwiegenden Teil der Mantelfläche der Steckdose bildendes zweites Gehäuseteil aufgeschoben sein.On the sockets and the installation device can be pushed the most part of the lateral surface of the socket forming the second housing part.
In das zweite Gehäuseteil können im Inneren der Steckdose liegende Kammern eingeformt sein, in denen die dem Anschliessen eines Phasenleiters, eines Neutralleiters und eines Schutzleiters des Stromversorgungsnetzes dienenden Anschlussklemmen angeordnet sind. Diese Kammern können zwischen dem Summenstromwandler und dem Boden der Steckdose angeordnet sein.In the second housing part lying inside the socket chambers may be formed, in which the connecting terminals of a phase conductor, a neutral conductor and a protective conductor of the power supply network serving terminals are arranged. These chambers can be arranged between the summation current transformer and the bottom of the socket.
In einem die Mantelfläche bildenden Wandabschnitt des zweiten Gehäuseteils können Durchbrüche zur Aufnahme von Betätigungselementen zum Öffnen und Schliessen der Anschlussklemmen angeordnet sein. In dem die Mantelfläche bildenden Wandabschnitt des zweiten Gehäuseteils können auch zwei Öffnungen zur Durchführung jeweils einer von zwei Montagekrallen der Installationsvorrichtung eingeformt sein.In a wall surface forming the lateral wall portion of the second housing part openings may be arranged for receiving actuators for opening and closing the terminals. In which the lateral surface forming wall portion of the second housing part may also be formed two openings for the passage of each one of two mounting claws of the installation device.
Auf dem zweiten Gehäuseteil kann ein den Boden der Steckdose bildendes drittes Gehäuseteil aufsitzen mit Öffnungen zur Aufnahme von Befestigungsbolzen, die durch das zweite Gehäuseteil in den Steckdosenträger geführt sind.On the second housing part can form a bottom of the socket forming the third housing part with openings for receiving fastening bolts, which are guided by the second housing part in the socket carrier.
Anhand von Zeichnungen wird die Erfindung nachfolgend näher erläutert. Hierbei zeigt:
- Fig.1
- eine vorwiegend auf die Frontseite geführte Ansicht einer ersten Ausführungsform einer fehlerstromgeschützten Steckdose nach der Erfindung,
- Fig.2
- eine vorwiegend auf die Rückseite geführte Ansicht der Steckdose nach
Fig.1 , - Fig.3
- eine Explosionsdarstellung der Steckdose nach den
Figuren 1 und 2 , - Fig.4
- und 5 zwei weitere Ausführungsformen der Steckdose nach der Erfindung,
- Fig.6
- in isometrischer Darstellung ein als Steckdosenträger ausgeführtes Teil des Gehäuses der Steckdose nach den
Figuren 1 bis 3 , - Fig.7
- in isometrischer Darstellung ein auf den Steckdosenträger aufgeschobenes zweites Teil des Gehäuses der Steckdose nach den
Figuren 1 bis 3 , - Fig.8
- in isometrischer Darstellung ein auf den Steckdosenträger aufgeschobenes zweites Teil des Gehäuses der Steckdose nach den
Figuren 4 oder 5 , und - Fig.9
- eine Ansicht der Steckdose nach den
Figuren 1 bis 3 während ihrer Fertigung.
- Fig.1
- a predominantly on the front view of a first embodiment of a fault-protected socket according to the invention,
- Fig.2
- a predominantly on the back led view of the socket after
Fig.1 . - Figure 3
- an exploded view of the socket after the
Figures 1 and 2 . - Figure 4
- and Figure 5 shows two further embodiments of the socket according to the invention,
- Figure 6
- in isometric view of a designed as a socket carrier part of the housing of the socket after the
FIGS. 1 to 3 . - Figure 7
- in isometric view of a pushed onto the socket carrier second part of the housing of the socket after the
FIGS. 1 to 3 . - Figure 8
- in isometric view of a pushed onto the socket carrier second part of the housing of the socket after the
FIGS. 4 or 5 , and - Figure 9
- a view of the outlet after the
FIGS. 1 to 3 during their production.
In den Figuren bezeichnen gleiche Bezugszeichen gleichwirkende Teile. Die in Figuren dargestellten drei Ausführungsformen der fehlerstromgeschützten Steckdose nach der Erfindung entsprechen den unterschiedlichen gesetzlichen Vorschriften in drei verschiedenen Ländern. Die Ausführungsform nach den
Ersichtlich enthalten alle drei Ausführungsformen ein aus den
An jeder der drei Ausführungsformen ist am Gehäuse 10 eine Installationsvorrichtung 20 befestigt, die dem Einbau der Steckdose in eine Wand dient. Die Installationsvorrichtung 20 ist in den drei Ausführungsformen unterschiedlich ausgebildet. Gemäss der Ausführungsform nach den
Wie in
Eine raumsparende und rasche Montage der Steckbuchsen und des Fehlerstromschalters wird dadurch ermöglicht, dass das die Frontseite der Steckdose bildende Gehäuseteil 11 als Steckdosenträger ausgeführt ist und eine im Inneren des Gehäuses 10 liegende strukturierte, d. h. Erhöhungen und Vertiefungen, Wände, Hohlräume, Wanddurchbrüche und Öffnungen enthaltende, Montageseite 60 aufweist, an der der aus modularen Baueinheiten gebildete Fehlerstromschutzschalter 50 und die Steckbuchsen 30 gehalten sind.A space-saving and rapid installation of the sockets and the residual current circuit breaker is made possible by the fact that the front side of the socket forming
Aus
Die Wand dient als Halterung 70 der Steckbuchsen 30 und weist drei mit der Frontseite 80 der Steckdose resp. des Steckdosenträgers 11 kommunizierende Kammern 71 a, 71 b und 71 c auf, von denen die Kammer 71 a eine Steckbuchse 30a eines Phasen- oder Neutralleiters, die Kammer 71 b eine Steckbuchse 30b eines Schutzleiters und die Kammer 71 c eine Steckbuchse 30c eines Neutral-oder Phasenleiters aufnimmt (aus
Aus
In allen drei Ausführungsformen weist die Frontseite 80 des Steckdosenträgers 11 einen zentralen Bereich 82 und eine abschnittsweise über den zentralen Bereich ragende Umrandung 83 auf. An die Umrandung 83 sind zwei Hülsen 83a und 83b angeformt, von denen die Hülse 83a der Durchführung einer Taste 51a zur Betätigung der Schaltmechanik 51 und die Hülse 83b der Durchführung einer Taste 52a zur Betätigung des Prüfstromkreises 52 dient. Im zentralen Bereich 82 sind drei mit den Kammern 71 a, 71 b und 71 c kommunizierende Öffnungen 84a, 84b und 84c angeordnet, welche der Durchführung der Steckkontakte eines mit dem Verbraucher verbundenen Steckers dienen.In all three embodiments, the
Bei der Ausführungsform nach den
Bei den beiden Ausführungsformen der Steckdose nach den beiden
Das in den
In
Aus
Bei der Fertigung einer Steckdose nach den
Sodann werden die Steckbuchsen 30a, 30b und 30 c der Reihe nach in den Kammern 71 a, 71 b und 71 c positioniert und die dem Boden der Steckdose zugewandte Seite der Kammern mit der nicht dargestellten Isolierabdeckung abgeschlossen. Auf den so bestückten Steckdosenträger 11 wird dann das den überwiegenden Teil der Mantelfläche der Steckdose bildende Gehäuseteil 12 aufgeschoben. Die Anschlussklemmen 40 können nun in den Kammern 41 positioniert und das Gehäuse 10 durch Aufsetzen des Gehäuseteils 13 und Verbolzen der drei Gehäuseteile geschlossen werden.Then, the
Bei der Fertigung einer Steckdose nach
Da der Innenraum des Gehäuses 10 bei allen Ausführungsformen der erfindungsgemässen Steckdose gleich dimensioniert ist, können für alle Ausführungsformen die gleichen Komponenten, wie Schaltmechanik 51, Prüfstromkreis 52, Stromwandler 53, Steckbuchsen 50a und 50c und Anschlussklemmen 40, eingebaut werden.Since the interior of the
Die von der Frontseite auf den Boden erstreckte maximale Bemessung der Steckdose (Einbautiefe) ist durch Vorschriften begrenzt und kann daher nicht überschritten werden. Dadurch, dass das die Frontseite 80 der Steckdose bildende Gehäuseteil als Steckdosenträger ausgebildet ist und den Fehlerstromschutzschalter und die Steckbuchsen trägt, entfällt jedoch ein beim Stand der Technik benötigter, im Inneren des Steckdosengehäuses angeordneter und parallel zur Frontseite 80 und zum Boden der Steckdose ausgerichteter plattenförmiger Tragkörper.The maximum dimensioning of the socket (installation depth) from the front to the floor is limited by regulations and therefore can not be exceeded. Due to the fact that the housing part forming the
Daher vergrössert sich bei gleichbleibender Einbautiefe der zum Einbau des Fehlerstromschutzschalters, der Steckbuchsen und der Anschlussklemmen im Inneren der Steckdose zur Verfügung stehende Abstand zwischen der Frontseite und der Rückseite der Steckdose. Da bei der Ausführungsform der Steckdose nach
Claims (20)
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EP13172947.7A EP2725664B1 (en) | 2012-10-24 | 2013-06-20 | Residual current protected socket |
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EP12189790 | 2012-10-24 | ||
EP13172947.7A EP2725664B1 (en) | 2012-10-24 | 2013-06-20 | Residual current protected socket |
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EP2725664A1 true EP2725664A1 (en) | 2014-04-30 |
EP2725664B1 EP2725664B1 (en) | 2019-10-09 |
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EP13172947.7A Active EP2725664B1 (en) | 2012-10-24 | 2013-06-20 | Residual current protected socket |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE202021003976U1 (en) | 2021-02-03 | 2022-03-10 | Goodville Gmbh | Switchable socket and system with a switchable socket |
DE102022002140A1 (en) | 2022-06-14 | 2023-12-14 | Torsten Gross | Electrical installation arrangement |
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DE2546868A1 (en) * | 1975-10-18 | 1977-04-21 | Bbc Brown Boveri & Cie | FAULT CURRENT CIRCUIT BREAKER WITH ELECTRIC SOCKET |
EP0641045B1 (en) * | 1993-08-31 | 1996-10-16 | CMC Carl Maier + Cie AG | Mains socket with differential current protection |
DE19936056A1 (en) * | 1999-07-30 | 2001-02-01 | Maier & Cie C | Residual current protected connector |
Family Cites Families (4)
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BE790970A (en) * | 1971-11-17 | 1973-05-07 | Saparel | DIFFERENTIAL PROTECTED SOCKET |
WO2003100940A2 (en) * | 2002-05-23 | 2003-12-04 | Protectconnect,Inc. | Safety module electrical distribution system |
CN101897085B (en) * | 2007-11-02 | 2013-11-20 | Abb股份公司 | Modular system for the production of sockets |
CN201556801U (en) * | 2009-06-30 | 2010-08-18 | 惠州电道科技有限公司 | Intelligent fire-proof socket |
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2013
- 2013-06-20 EP EP13172947.7A patent/EP2725664B1/en active Active
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE2546868A1 (en) * | 1975-10-18 | 1977-04-21 | Bbc Brown Boveri & Cie | FAULT CURRENT CIRCUIT BREAKER WITH ELECTRIC SOCKET |
EP0641045B1 (en) * | 1993-08-31 | 1996-10-16 | CMC Carl Maier + Cie AG | Mains socket with differential current protection |
DE19936056A1 (en) * | 1999-07-30 | 2001-02-01 | Maier & Cie C | Residual current protected connector |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE202021003976U1 (en) | 2021-02-03 | 2022-03-10 | Goodville Gmbh | Switchable socket and system with a switchable socket |
DE102022002140A1 (en) | 2022-06-14 | 2023-12-14 | Torsten Gross | Electrical installation arrangement |
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EP2725664B1 (en) | 2019-10-09 |
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