EP1233433B1 - Electromechanical switching device - Google Patents

Electromechanical switching device Download PDF

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Publication number
EP1233433B1
EP1233433B1 EP02001646A EP02001646A EP1233433B1 EP 1233433 B1 EP1233433 B1 EP 1233433B1 EP 02001646 A EP02001646 A EP 02001646A EP 02001646 A EP02001646 A EP 02001646A EP 1233433 B1 EP1233433 B1 EP 1233433B1
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EP
European Patent Office
Prior art keywords
switching device
spring element
spring
base
electromechanical switching
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.)
Expired - Lifetime
Application number
EP02001646A
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German (de)
French (fr)
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EP1233433A3 (en
EP1233433A2 (en
Inventor
Günther Reimold
Siegfried Mannuss
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.)
EGO Elektro Geratebau GmbH
Original Assignee
EGO Elektro Geratebau GmbH
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Publication of EP1233433A2 publication Critical patent/EP1233433A2/en
Publication of EP1233433A3 publication Critical patent/EP1233433A3/en
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Publication of EP1233433B1 publication Critical patent/EP1233433B1/en
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H1/00Contacts
    • H01H1/12Contacts characterised by the manner in which co-operating contacts engage
    • H01H1/14Contacts characterised by the manner in which co-operating contacts engage by abutting
    • H01H1/20Bridging contacts
    • H01H1/2008Facilitate mounting or replacing contact bridge and pressure spring on carrier

Definitions

  • the invention relates to an electromechanical switching device according to the preamble of claim 1, as it also eg in the document US 4,345,224 A. is disclosed.
  • electromechanical switching devices or clocking line plate with rotary switches are used for example in hobs. By turning them switching functions can be triggered at certain rotational positions. This is done by either establishing or dissolving an electrical contact between a contact and a mating contact. Contact and mating contact can be compressed by spring forces. against this spring force then takes place a release of the electrical contact or contact and mating contact from each other.
  • the invention is based on the object to provide a switching device mentioned above, in which the assembly of the spring element can be simple, safe and production-friendly.
  • the fastening according to the invention of the spring element on or against the base by means of retaining elements formed on the base or contact holder has the great advantage that these retaining elements are present even before the spring element is inserted. An elaborate hold down during a further assembly step can be saved. The insertion of a spring element can be performed easily, quickly and in a single assembly step or with a single assembly movement.
  • a holding element can also be provided on the contact holder. In the context of the invention, a combination of cooperating retaining elements on the base and the contact holder is possible.
  • a contact holder may be formed such that an elongated arm carries the contact, preferably a metal arm.
  • the arm is stored or molded in a plastic body.
  • the holding elements may be part of another device on the base or contact holder and already placed or mounted by its assembly process.
  • a one-piece connection of the holding elements with base or contact holder is preferred.
  • the holding elements are formed or manufactured in the manufacturing process of the base or contact holder equal. This has the great advantage that no further assembly step or additional effort is needed.
  • this can be easily provided in the injection mold.
  • the holding elements may preferably elastically overlap the spring element in such a way that they give way when inserting or mounting the spring element or move out of its way. When fully inserted spring element, they can automatically go to their original position or snap and lock the spring element against loosening. In this way, only the usual insertion of the spring element needs to be made, the holding elements do not need to be extra pressed or pushed away.
  • an elongated spring element is used with spring action in its longitudinal direction.
  • a coil spring made of metal.
  • the holding elements advantageously extend at least partially along the longitudinal direction or mounting direction of the spring element.
  • a guide can be effected. To hold them they can overlap its end in the inserted state with claw or hook-like projections or engage behind. So a kind of snap closure can be formed.
  • the projections on the holding elements should be withdrawn or bevelled on their side pointing to a spring element to be inserted, so that they yield on their own for insertion of the spring element. In this way, a centering of the spring element during insertion can be done.
  • a movement of the contact holder or the spring travel of a spring element is substantially rectilinear.
  • the contact holder in a guide device or the like. Run on the base.
  • the guide device can be designed, for example, as a guide rail or the like, which are matched to the outer dimensions of the contact holder or corresponding rails thereto.
  • the spring element can preferably be provided at least two or even better four retaining elements. These can either be distributed substantially uniformly, for example, around the circumference of the spring element around.
  • four retaining elements may be arranged in a cross shape around a helical spring as a spring element.
  • a plurality of spring elements can be arranged side by side on a base for multiple contacts.
  • at least one retaining element can be designed for at least two spring elements.
  • a projection is designed so that it acts as two individual.
  • the spring elements can be evenly distributed in a grid, both in a single row and in fields.
  • Retaining elements are preferably arranged at the cross points of the grid position boundaries, that is essentially in each case such that a holding element holds as many spring elements as possible.
  • a detent on the contact holder itself a spring element, such as a coil spring, in principle against loss.
  • the contact holder and spring element need not be mounted as separate components to the base, but can be pre-assembled as a captive unit. The securing of the spring element on the contact holder should not adversely affect the function or holder on the base.
  • the holding elements or their projections or the like. May be designed so that they hold the spring element in a precisely defined desired position. For this purpose, on the one hand, the space within holding elements exactly predetermine this position. Alternatively, it is possible to position by barb-like projections on the holding elements for holding the spring element, this due to its restoring force and the resulting pressure against the holding elements.
  • Fig. 1 shows an oblique view of a part of a switching device base 11.
  • the base 11 has downwardly projecting metal plug-in lugs 12, which serve as electrical connection option. With these plug-in lugs 12 mating contacts, not shown, are connected, s.
  • Fig. 3 which are interconnected for a switching operation.
  • This connection takes over a contact holder 14 which is electrically conductive, for example, of a resilient metal.
  • the contact holder 14 carries at its two continuous arms 15 and 16 each have a contact 17 which is intended to bear against the mating contact of the switching device socket 11.
  • the arms 15 and 16 form with the contacts 17 an electrical connection between two mating contacts.
  • the contacting takes place in contact chambers 19, which on the one hand serves to better guide the arms 15 and 16 and to improve the electrical insulation properties.
  • the contact holder 14 has a central body 21, which has integrally formed guide rails 22. These guide rails 22 extend in guide slots 23 of the switching device base 11. They serve to guide the contact holder 14 accurately in triggering movements in a predetermined path.
  • the central body 21 On its underside, the central body 21 has a projection 25. This protrusion protrudes through the switching device base 11 into the free intermediate region between the plug connection lugs 12. In this free region, the control axis runs with differently designed switching cams on which the projection 25 abuts. By appropriate rotation of the projection 25 can be pushed up and the contacts are separated.
  • a centering projection 27 is formed between the guide rails 22 and in the middle of the central body 21, a centering projection 27 is formed. About this centering projection 27 engages a coil spring 28 which is positioned by the centering projection with its lower end.
  • the coil spring 28 comes between four such retaining arms 30 and is thereby held by the cross-hook 31.
  • the distance of the inner edge of the hooks 31 to each other in the position shown in FIG. 1 is smaller than the cross section of the coil spring 28 or these hooks protrude into the cross section.
  • the hooks 31, as shown, beveled to facilitate the insertion of the coil spring 28.
  • the helical spring is shown schematically by a hollow cylinder 32. It can be seen how the hooks 31 engage over the cylinder 32.
  • a spring element may also be a cylindrical elastic body, for example of a foam or plastic.
  • Fig. 2 it can be seen how a turned-up on the centering 27 coil spring 28 is held exactly in the center of the central body 21.
  • the guide rails 22 point towards the guide slots 23.
  • the mating contacts 18 are shown in dashed lines.
  • Fig. 4 shows greatly enlarged another embodiment of the support arms 30. These have claw-like hooks 33, the claws facing down. The claws overlap the coil spring represented by the hollow cylinder 32 at its inner edge just as they would overlap a coil spring. This will be compared to normal in the manner of projections daein hook even better grip not only achieved against rebound, but also an exact centering of the spring. In foam spring elements such claw-like hooks 33 can insert into the spring body and secure it so.
  • Fig. 1 it can be seen how the middle slightly wider running support arms 30 can serve with wide hooks 31 for holding two adjacent coil springs 28. In this way, the production cost can be greatly reduced. It should be noted that the deflection of the retaining arms 30 resulting from the insertion of the helical spring 28 does not loosen an already supported helical spring again via the chamfering of the hooks 31. This alternative direction is at least partially in the direction of the already salaried coil spring, so that it does not dissolve again. Once held coil spring is not released by the subsequent assembly of other coil springs again. Particular attention is drawn to the additional function of the retaining arms 30 in addition to the holder as a guide of the contact holder 14 via the guide rails 22 running along it.
  • the free space formed between the retaining arms can be exactly as large as the outer diameter of a spring element.
  • the limitation can be formed both by the retaining arms of the base and by corresponding elements on the contact holder itself, for example in the form of elongated arms or the like. In this way, a particularly secure recording of the spring element in the manner of an elongated channel is possible, which prevents lateral deflection especially in coil springs.

Description

Die Erfindung betrifft ein elektromechanisches Schaltgerät nach dem Oberbegriff des Anspruchs 1, wie es z.B. auch im Dokument US 4 345 224 A offenbart ist. Derartige elektromechanische Schaltgeräte bzw. taktende Leitungssteller mit Drehschaltern werden beispielsweise in Kochfeldern eingesetzt. Durch Drehen derselben können Schaltfunktionen bei bestimmten Drehstellungen ausgelöst werden. Dies erfolgt durch entweder Herstellen oder Auflösen einer elektrischen Kontaktierung zwischen einem Kontakt und einem Gegenkontakt. Kontakt und Gegenkontakt können dazu durch Federkräfte zusammengedrückt werden. Gegen diese Federkraft erfolgt dann ein Lösen der elektrischen Kontaktierung bzw. von Kontakt und Gegenkontakt voneinander.The invention relates to an electromechanical switching device according to the preamble of claim 1, as it also eg in the document US 4,345,224 A. is disclosed. Such electromechanical switching devices or clocking line plate with rotary switches are used for example in hobs. By turning them switching functions can be triggered at certain rotational positions. This is done by either establishing or dissolving an electrical contact between a contact and a mating contact. Contact and mating contact can be compressed by spring forces. Against this spring force then takes place a release of the electrical contact or contact and mating contact from each other.

Hierbei zeigt sich in der Praxis, dass die Montage aufwändig ist. Entweder muss das Federelement vor dem Kontakthalter in den Sockel eingesetzt und zusammengedrückt werden, um anschließend den Kontakthalter selber zu montieren. Oder es werden Hilfsmittel für die Befestigung des Federelementes benötigt, beispielsweise Schrauben oder Kappen oder Steckverbindungen. Teilweise ist auch vorgeschlagen worden, durch Verbiegen eines Bauteils die Feder zu sichern. Diese Möglichkeiten sind jedoch insgesamt aufwändig und benötigen zusätzliche Montageteile und/oder -schritte.This shows in practice that the assembly is complex. Either the spring element must be inserted in front of the contact holder in the socket and pressed together to subsequently mount the contact holder itself. Or aids are needed for the attachment of the spring element, for example screws or caps or plug connections. In part, it has also been proposed to secure the spring by bending a component. However, these options are generally complex and require additional mounting parts and / or steps.

AUFGABE UND LÖSUNGTASK AND SOLUTION

Der Erfindung liegt die Aufgabe zu Grunde, ein eingangs erwähntes Schaltgerät zu schaffen, bei dem die Montage des Federelementes einfach, sicher und produktionsfreundlich erfolgen kann.The invention is based on the object to provide a switching device mentioned above, in which the assembly of the spring element can be simple, safe and production-friendly.

Gelöst wird diese Aufgabe durch ein erfindungsgemäßes Schaltgerät mit den Merkmalen des Anspruchs 1. Vorteilhafte Ausgestaltungen der Erfindung sind Gegenstand der Unteransprüche und werden im Folgenden näher erläutert. Der Inhalt der Ansprüche wird durch ausdrückliche Bezugnahme zum Inhalt der Beschreibung gemacht.This object is achieved by an inventive switching device having the features of claim 1. Advantageous embodiments of the invention are the subject of the dependent claims and are explained in more detail below. The content of the claims is made explicit reference to the content of the description.

Die erfindungsgemäße Befestigung des Federelementes an dem oder gegen den Sockel mittels am Sockel oder Kontakthalter ausgebildeter Halteelemente weist den großen Vorteil auf, dass diese Halteelemente bereits vor Einsetzen des Federelementes vorhanden sind. Ein aufwändiges Niederhalten während eines weiteren Montageschrittes kann dadurch eingespart werden. Das Einsetzen eines Federelementes kann einfach, schnell sowie in einem einzigen Montageschritt bzw. mit einer einzigen Montagebewegung durchgeführt werden. Zwar ist es prinzipiell von Vorteil, die Halteelemente am Sockel vorzusehen. Bei bestimmten Ausführungen des Schaltgerätes, beispielsweise abhängig von der Anordnung des Kontaktes und des Gegenkontaktes, kann ein Halteelement auch am Kontakthalter vorgesehen werden. Im Rahmen der Erfindung ist auch eine Kombination von zusammenwirkenden Halteelementen am Sockel und am Kontakthalter möglich.The fastening according to the invention of the spring element on or against the base by means of retaining elements formed on the base or contact holder has the great advantage that these retaining elements are present even before the spring element is inserted. An elaborate hold down during a further assembly step can be saved. The insertion of a spring element can be performed easily, quickly and in a single assembly step or with a single assembly movement. Although it is in principle advantageous to provide the retaining elements on the base. In certain embodiments of the switching device, for example, depending on the arrangement of the contact and the mating contact, a holding element can also be provided on the contact holder. In the context of the invention, a combination of cooperating retaining elements on the base and the contact holder is possible.

Ein Kontakthalter kann derart ausgebildet sein, dass ein länglicher Arm den Kontakt trägt, vorzugsweise ein Metallarm. Der Arm ist in einem Kunststoffkörper gelagert bzw. umspritzt.A contact holder may be formed such that an elongated arm carries the contact, preferably a metal arm. The arm is stored or molded in a plastic body.

Einerseits können die Halteelemente Teil einer anderen Einrichtung an dem Sockel oder Kontakthalter sein und bereits durch dessen Montagevorgang platziert bzw. angebracht werden. Bevorzugt aus Festigkeitsgründen wird eine einteilige Verbindung der Halteelemente mit Sockel bzw. Kontakthalter. Besonders bevorzugt werden die Halteelemente angeformt bzw. beim Herstellungsvorgang von Sockel bzw. Kontakthalter gleich mit hergestellt. Dies weist den großen Vorteil auf, dass kein weiterer Montageschritt oder zusätzlicher Aufwand nötig ist. Bei Herstellung des Sockels oder Kontakthalters aus Kunststoff kann dies einfach in der Spritzgussform vorgesehen werden.On the one hand, the holding elements may be part of another device on the base or contact holder and already placed or mounted by its assembly process. For strength reasons, a one-piece connection of the holding elements with base or contact holder is preferred. Particularly preferably, the holding elements are formed or manufactured in the manufacturing process of the base or contact holder equal. This has the great advantage that no further assembly step or additional effort is needed. When manufacturing the base or contact holder made of plastic, this can be easily provided in the injection mold.

Die Halteelemente können das Federelement vorzugsweise derart elastisch übergreifen, dass sie beim Einsetzen oder Montieren des Federelementes nachgeben bzw. aus dessen Weg ausweichen. Bei vollständig eingesetztem Federelement können sie selbsttätig in ihre ursprüngliche Position gehen oder schnappen und so das Federelement gegen ein Lösen verriegeln. Auf diese Weise braucht lediglich der übliche Einsetzvorgang des Federelementes vorgenommen zu werden, die Halteelemente müssen nicht extra betätigt oder weggedrückt werden.The holding elements may preferably elastically overlap the spring element in such a way that they give way when inserting or mounting the spring element or move out of its way. When fully inserted spring element, they can automatically go to their original position or snap and lock the spring element against loosening. In this way, only the usual insertion of the spring element needs to be made, the holding elements do not need to be extra pressed or pushed away.

Bevorzugt wird ein längliches Federelement mit Federwirkung in seiner Längsrichtung verwendet. Vorteilhaft ist eine Schraubenfeder aus Metall. Als weitere Möglichkeit kommen Zylinder oder ähnliche Formen aus elastischem Kunststoff, insbesondere temperaturfestem Schaumstoff, in Frage.Preferably, an elongated spring element is used with spring action in its longitudinal direction. Advantageous is a coil spring made of metal. As another option come cylinder or similar forms made of elastic plastic, in particular temperature-resistant foam, in question.

Die Halteelemente verlaufen vorteilhaft zumindest teilweise entlang der Längsrichtung oder Montagerichtung des Federelementes. Dadurch kann beispielsweise eine Führung bewirkt werden. Zum Festhalten können sie dessen Ende im eingesetzten Zustand mit klauen- oder hakenartigen Vorsprüngen übergreifen bzw. hintergreifen. So kann eine Art Schnappverschluss gebildet werden. Die Vorsprünge an den Halteelementen sollten an ihrer einem einzusetzenden Federelement hinweisenden Seite zurückgenommen oder abgeschrägt sein, so dass sie von alleine zum Einsetzen des Federelementes ausweichen. Auf diese Weise kann auch ein Zentrieren des Federelementes beim Einsetzen erfolgen.The holding elements advantageously extend at least partially along the longitudinal direction or mounting direction of the spring element. Thereby For example, a guide can be effected. To hold them they can overlap its end in the inserted state with claw or hook-like projections or engage behind. So a kind of snap closure can be formed. The projections on the holding elements should be withdrawn or bevelled on their side pointing to a spring element to be inserted, so that they yield on their own for insertion of the spring element. In this way, a centering of the spring element during insertion can be done.

Bevorzugt verläuft eine Bewegung der Kontakthalter bzw. der Federweg eines Federelementes im wesentlichen geradlinig. Dazu kann der Kontakthalter in einer Führungseinrichtung oder dgl. am Sockel laufen. Die Führungseinrichtung kann beispielsweise als Führungsschiene oder dgl. ausgebildet sein, die auf die Außenabmessungen des Kontakthalters oder entsprechende Schienen daran abgestimmt sind.Preferably, a movement of the contact holder or the spring travel of a spring element is substantially rectilinear. For this purpose, the contact holder in a guide device or the like. Run on the base. The guide device can be designed, for example, as a guide rail or the like, which are matched to the outer dimensions of the contact holder or corresponding rails thereto.

Zur sicheren Halterung des Federelementes können vorzugsweise mindestens zwei oder noch besser vier Halteelemente vorgesehen sein. Diese können entweder im wesentlichen gleichmäßig verteilt sein, beispielsweise um den Umfang des Federelementes herum. So können beispielsweise vier Halteelemente kreuzförmig um eine Schraubenfeder als Federelement herum angeordnet sein. In weiterer Ausgestaltung der Erfindung können an einem Sockel mehrere Federelemente nebeneinander angeordnet sein für mehrere Kontakte. Zur Vereinfachung des Aufbaus kann wenigstens ein Halteelement für mindestens zwei Federelemente ausgelegt sein. Bei Halteelementen mit einem Haken oder Vorsprung zur Halterung einer Feder sollte entweder ein solcher Vorsprung pro zu halternder Feder vorgesehen sein. Oder ein Vorsprung ist derart ausgebildet, dass er wie zwei einzelne wirkt.For secure holding of the spring element can preferably be provided at least two or even better four retaining elements. These can either be distributed substantially uniformly, for example, around the circumference of the spring element around. For example, four retaining elements may be arranged in a cross shape around a helical spring as a spring element. In a further embodiment of the invention, a plurality of spring elements can be arranged side by side on a base for multiple contacts. To simplify the construction, at least one retaining element can be designed for at least two spring elements. For holding elements with a hook or projection for holding a spring, either such a projection should be provided per spring to be held. Or a projection is designed so that it acts as two individual.

An einem Sockel können die Federelemente in einem Rastermaß gleichmäßig verteilt sein, sowohl in einer Einzelreihe als auch in Feldern.On a base, the spring elements can be evenly distributed in a grid, both in a single row and in fields.

Halteelemente sind dabei bevorzugt an den Kreuzpunkten der Rasterplatzbegrenzungen angeordnet, also im wesentlichen jeweils so, dass ein Halteelement möglichst viele Federelemente mit festhält.Retaining elements are preferably arranged at the cross points of the grid position boundaries, that is essentially in each case such that a holding element holds as many spring elements as possible.

Des weiteren ist es möglich, durch eine Rastung an dem Kontakthalter selber ein Federelement, beispielsweise eine Schraubenfeder, grundsätzlich gegen Verlieren zu sichern. In diesem Falle brauchen Kontakthalter und Federelement nicht als separate Bauteile an den Sockel montiert zu werden, sondern können als unverlierbare Einheit vormontiert werden. Dabei sollte die Sicherung des Federelementes am Kontakthalter die Funktion bzw. Halterung am Sockel nicht negativ beeinträchtigen.Furthermore, it is possible to secure by a detent on the contact holder itself a spring element, such as a coil spring, in principle against loss. In this case, the contact holder and spring element need not be mounted as separate components to the base, but can be pre-assembled as a captive unit. The securing of the spring element on the contact holder should not adversely affect the function or holder on the base.

Die Halteelemente bzw. deren Vorsprünge oder dgl. können so ausgebildet sein, dass sie das Federelement in einer exakt definierten gewünschten Position halten. Dazu kann zum einen der Raum innerhalb von Halteelementen diese Position genau vorgeben. Alternativ ist es möglich, durch widerhakenartige Vorsprünge an den Halteelementen zur Halterung des Federelementes dieses aufgrund seiner Rückstellkraft und des daraus resultierenden Drucks gegen die Halteelemente zu positionieren.The holding elements or their projections or the like. May be designed so that they hold the spring element in a precisely defined desired position. For this purpose, on the one hand, the space within holding elements exactly predetermine this position. Alternatively, it is possible to position by barb-like projections on the holding elements for holding the spring element, this due to its restoring force and the resulting pressure against the holding elements.

Diese und weitere Merkmale gehen außer aus den Ansprüchen auch aus der Beschreibung und den Zeichnungen hervor, wobei die einzelnen Merkmale jeweils für sich allein oder zu mehreren in Form von Unterkombinationen bei einer Ausführungsform der Erfindung und auf anderen Gebieten verwirklicht sein und vorteilhafte sowie für sich schutzfähige Ausführungen darstellen können, für die hier Schutz beansprucht wird. Die Unterteilung der Anmeldung in einzelne Abschnitte sowie Zwischen-Überschriften beschränkt die unter diesen gemachten Aussagen nicht in ihrer Allgemeingültigkeit.These and other features will become apparent from the claims but also from the description and drawings, wherein the individual features each alone or more in the form of sub-combinations in an embodiment of the invention and in other fields be realized and advantageous and protectable Represent embodiments for which protection is claimed here. The subdivision of the application into individual sections as well as intermediate headings does not restrict the general validity of the statements made thereunder.

KURZBESCHREIBUNG DER ZEICHNUNGENBRIEF DESCRIPTION OF THE DRAWINGS

Ausführungsbeispiele der Erfindung sind in den Zeichnungen dargestellt und werden im folgenden näher erläutert. In den Zeichnungen zeigen:

Fig. 1
eine perspektivische Darstellung eines Ausschnitts eines Schaltgerätsockels mit einzusetzendem Kontakthalter sowie Schraubenfeder,
Fig. 2 und 3
in Seitenansicht einen zweistufigen Montagevorgang der Bauteile gemäß Fig. 1 und
Fig. 4
eine klauenartige Ausführung der Haken.
Embodiments of the invention are illustrated in the drawings and will be explained in more detail below. In the drawings show:
Fig. 1
a perspective view of a section of a switching device base with einzusetzendem contact holder and coil spring,
FIGS. 2 and 3
in side view a two-stage assembly process of the components of FIG. 1 and
Fig. 4
a claw-like execution of the hook.

DETAILLIERTE BESCHREIBUNG DER AUSFÜHRUNGSBEISPIELEDETAILED DESCRIPTION OF THE EMBODIMENTS

Die Fig. 1 zeigt in Schrägansicht einen Teil eines Schaltgerätsockels 11. Der Sockel 11 weist nach unten ragende metallische Steckanschlussfahnen 12 auf, die als elektrische Anschlussmöglichkeit dienen. Mit diesen Steckanschlussfahnen 12 sind nicht dargestellte Gegenkontakte verbunden, s. hierzu auch Fig. 3, die für einen Schaltvorgang miteinander verbunden werden. Dieses Verbinden übernimmt ein Kontakthalter 14, der elektrisch leitend ist, beispielsweise aus einem federnden Metall. Der Kontakthalter 14 trägt an seinen beiden durchgängigen Armen 15 und 16 jeweils einen Kontakt 17, der zur Anlage an dem Gegenkontakt des Schaltgerätsockels 11 bestimmt ist. Die Arme 15 und 16 bilden mit den Kontakten 17 eine elektrische Verbindung zwischen zwei Gegenkontakten. Die Kontaktierung findet in Kontaktkammern 19 statt, was zum einen zur besseren Führung der Arme 15 und 16 sowie zur Verbesserung der elektrischen Isoliereigenschaften dient.Fig. 1 shows an oblique view of a part of a switching device base 11. The base 11 has downwardly projecting metal plug-in lugs 12, which serve as electrical connection option. With these plug-in lugs 12 mating contacts, not shown, are connected, s. For this purpose, also Fig. 3, which are interconnected for a switching operation. This connection takes over a contact holder 14 which is electrically conductive, for example, of a resilient metal. The contact holder 14 carries at its two continuous arms 15 and 16 each have a contact 17 which is intended to bear against the mating contact of the switching device socket 11. The arms 15 and 16 form with the contacts 17 an electrical connection between two mating contacts. The contacting takes place in contact chambers 19, which on the one hand serves to better guide the arms 15 and 16 and to improve the electrical insulation properties.

Der Kontakthalter 14 weist einen Zentralkörper 21 auf, der angeformte Führungsschienen 22 besitzt. Diese Führungsschienen 22 verlaufen in Führungsschlitzen 23 des Schaltgerätsockels 11. Sie dienen dazu, den Kontakthalter 14 bei Auslösungsbewegungen in einer vorgegebenen Bahn genau zu führen.The contact holder 14 has a central body 21, which has integrally formed guide rails 22. These guide rails 22 extend in guide slots 23 of the switching device base 11. They serve to guide the contact holder 14 accurately in triggering movements in a predetermined path.

An seiner Unterseite weist der Zentralkörper 21 einen Vorsprung 25 auf. Dieser Vorsprung ragt durch den Schaltgerätsockel 11 in den freien Zwischenbereich zwischen den Steckanschlussfahnen 12. In diesem freien Bereich verläuft beim fertig montierten Schaltgerät die Steuerachse mit verschieden ausgebildeten Schaltnocken, an denen der Vorsprung 25 anliegt. Durch entsprechende Drehung kann der Vorsprung 25 nach oben gedrückt und die Kontakte getrennt werden.On its underside, the central body 21 has a projection 25. This protrusion protrudes through the switching device base 11 into the free intermediate region between the plug connection lugs 12. In this free region, the control axis runs with differently designed switching cams on which the projection 25 abuts. By appropriate rotation of the projection 25 can be pushed up and the contacts are separated.

Zwischen den Führungsschienen 22 bzw. in der Mitte des Zentralkörpers 21 ist ein Zentriervorsprung 27 ausgebildet. Über diesen Zentriervorsprung 27 greift eine Schraubenfeder 28, die durch den Zentriervorsprung mit ihrem unteren Ende positioniert ist.Between the guide rails 22 and in the middle of the central body 21, a centering projection 27 is formed. About this centering projection 27 engages a coil spring 28 which is positioned by the centering projection with its lower end.

Sowohl Kontakthalter 14 als auch Schraubenfeder 28 werden in der Einsetzrichtung E in den Schaltgerätsockel 11 eingesetzt. Dies wird aus den weiteren Figuren sowie der folgenden Beschreibung deutlich.Both contact holder 14 and coil spring 28 are inserted in the insertion direction E in the switching device base 11. This will be apparent from the other figures as well as the following description.

An der Innenseite der Führungsschlitze 23 bzw. als deren Begrenzung zur Innenseite hin sind längliche Haltearme 30 ausgebildet, an deren Ende nach innen weisende Haken 31 angesetzt sind. Die Schraubenfeder 28 kommt zwischen vier solcher Haltearme 30 und wird dabei durch die sie übergreifenden Haken 31 festgehalten. Dabei ist der Abstand der Innenkante der Haken 31 zueinander in der Stellung gemäß Fig. 1 kleiner als der Querschnitt der Schraubenfeder 28 bzw. diese Haken ragen in den Querschnitt hinein. An ihrer Oberseite können die Haken 31, wie dargestellt, abgeschrägt sein, um das Einsetzen der Schraubenfeder 28 zu erleichtern.On the inside of the guide slots 23 or as their boundary to the inside elongated retaining arms 30 are formed, at the end of inwardly facing hooks 31 are attached. The coil spring 28 comes between four such retaining arms 30 and is thereby held by the cross-hook 31. In this case, the distance of the inner edge of the hooks 31 to each other in the position shown in FIG. 1 is smaller than the cross section of the coil spring 28 or these hooks protrude into the cross section. At their top, the hooks 31, as shown, beveled to facilitate the insertion of the coil spring 28.

Zwischen den hinteren Haltearmen 30 ist bereits ein solcher Kontakthalter eingesetzt, die Schraubenfeder ist dabei schematisch durch einen Hohlzylinder 32 dargestellt. Es ist zu erkennen, wie die Haken 31 den Zylinder 32 übergreifen. Anstelle einer Schraubenfeder kann ein solches Federelement auch ein zylindrischer elastischer Körper sein, beispielsweise aus einem Schaum- oder Kunststoff.Such a contact holder is already used between the rear holding arms 30, the helical spring is shown schematically by a hollow cylinder 32. It can be seen how the hooks 31 engage over the cylinder 32. Instead of a helical spring, such a spring element may also be a cylindrical elastic body, for example of a foam or plastic.

In Fig. 2 ist erkennbar, wie eine auf den Zentriervorsprung 27 aufgestülpte Schraubenfeder 28 genau in der Mitte des Zentralkörpers 21 gehalten wird. Die Führungsschienen 22 weisen auf die Führungsschlitze 23 zu. Die Gegenkontakte 18 sind gestrichelt dargestellt.In Fig. 2 it can be seen how a turned-up on the centering 27 coil spring 28 is held exactly in the center of the central body 21. The guide rails 22 point towards the guide slots 23. The mating contacts 18 are shown in dashed lines.

Bei in den Schaltgerätsockel 11 eingesetztem Kontakthalter 14 in der Schnittdarstellung in Fig. 3 ist zu erkennen, wie die Haken 31 der Haltearme 30 des Schaltgerätsockels 11 die Schraubenfeder 28 haltern. Dies erfolgt in einer Stellung des Kontakthalters 14, bei der die Kontakte 19 an Gegenkontakten 18 des Schaltgerätsockels bzw. der Steckanschlussfahnen 12 anliegen. Diese Anlage ist aufgrund der Federkraft der Schraubenfeder 28 elastisch. Wird über den Vorsprung 25 der Kontakthalter 14 nach oben gedrückt zur Trennung der Kontakte 18 und 19, so erfolgt dies gegen den elastischen Widerstand der Schraubenfeder 28. Ein Ausweichen derselben nach oben wird durch die Haltearme 30 bzw. deren Haken 31 verhindert.When inserted in the switching device base 11 contact holder 14 in the sectional view in Fig. 3 it can be seen how the hooks 31 of the support arms 30 of the switching device base 11, the coil spring 28 support. This takes place in a position of the contact holder 14, in which the contacts 19 abut against mating contacts 18 of the switching device base or the plug connection lugs 12. This system is elastic due to the spring force of the coil spring 28. Is pressed over the projection 25 of the contact holder 14 up to separate the contacts 18 and 19, this is done against the elastic resistance of the coil spring 28. A deflection of the same upward is prevented by the support arms 30 and their hooks 31.

Die Fig. 4 zeigt stark vergrößert eine weitere Ausführung der Haltearme 30. Diese weisen klauenartige Haken 33 auf, wobei die Klauen nach unten weisen. Die Klauen übergreifen die durch den Hohlzylinder 32 dargestellte Schraubenfeder an seinem Innenrand genauso, wie sie eine Schraubenfeder übergreifen würden. Dadurch wird im Vergleich zu normal nach Art von Vorsprüngen dastehenden Haken noch besserer Halt nicht nur gegen ein Ausfedern erreicht, sondern zusätzlich eine exakte Zentrierung der Feder. Bei Federelementen aus Schaumstoff können derartige klauenartige Haken 33 in den Federkörper hineinstecken und diesen so sichern.Fig. 4 shows greatly enlarged another embodiment of the support arms 30. These have claw-like hooks 33, the claws facing down. The claws overlap the coil spring represented by the hollow cylinder 32 at its inner edge just as they would overlap a coil spring. This will be compared to normal in the manner of projections dastehenden hook even better grip not only achieved against rebound, but also an exact centering of the spring. In foam spring elements such claw-like hooks 33 can insert into the spring body and secure it so.

In Fig. 1 ist zu erkennen, wie die mittleren etwas breiter ausgeführten Haltearme 30 mit breiten Haken 31 zur Halterung zweier benachbarter Schraubenfedern 28 dienen können. Auf diese Weise kann der Herstellungsaufwand stark verringert werden. Hierbei ist zu beachten, dass die beim Einsetzen der Schraubenfeder 28 entstehende Ausweichbewegung der Haltearme 30 über die Abschrägung der Haken 31 eine bereits gehalterte Schraubenfeder nicht wieder lockert. Diese Ausweichrichtung geht nämlich zumindest teilweise in Richtung der bereits gehalterten Schraubenfeder, so dass sich diese nicht wieder löst. Eine einmal festgehaltene Schraubenfeder wird auch durch die nachträgliche Montage weiterer Schraubenfedern nicht wieder gelöst. Besonders hingewiesen wird auch auf die zusätzliche Funktion der Haltearme 30 neben der Halterung als Führung des Kontakthalters 14 über die daran entlang verlaufenden Führungsschienen 22.In Fig. 1 it can be seen how the middle slightly wider running support arms 30 can serve with wide hooks 31 for holding two adjacent coil springs 28. In this way, the production cost can be greatly reduced. It should be noted that the deflection of the retaining arms 30 resulting from the insertion of the helical spring 28 does not loosen an already supported helical spring again via the chamfering of the hooks 31. This alternative direction is at least partially in the direction of the already salaried coil spring, so that it does not dissolve again. Once held coil spring is not released by the subsequent assembly of other coil springs again. Particular attention is drawn to the additional function of the retaining arms 30 in addition to the holder as a guide of the contact holder 14 via the guide rails 22 running along it.

Der zwischen den Haltearmen gebildete freie Raum kann genau so groß wie der Außendurchmesser eines Federelementes sein. Dabei kann die Begrenzung sowohl durch die Haltearme des Sockels als auch durch entsprechende Elemente am Kontakthalter selber, beispielsweise in der Form länglicher Arme oder dgl., ausgebildet sein. Auf diese Weise ist eine besonders sichere Aufnahme des Federelementes nach Art eines länglichen Kanals möglich, was vor allem bei Schraubenfedern ein seitliches Ausbrechen verhindert.The free space formed between the retaining arms can be exactly as large as the outer diameter of a spring element. In this case, the limitation can be formed both by the retaining arms of the base and by corresponding elements on the contact holder itself, for example in the form of elongated arms or the like. In this way, a particularly secure recording of the spring element in the manner of an elongated channel is possible, which prevents lateral deflection especially in coil springs.

Claims (10)

  1. Electromechanical switching device, in particular clocked power regulator with rotary switch, for an electrical appliance:
    - the switching device comprising a base (11),
    - the base carrying at least one countercontact (18),
    - a contact holder (14) being movably received on the base,
    - the contact holder carrying at least one contact (17) which is intended for optional abutment on the at least one countercontact,
    - a spring element (28) being provided for applying contact forces, the spring element comprising an active connection between the base and the contact holder,
    characterised in that
    - the spring element (28) is held on the base (11) by means of holding elements (30) and
    - the holding elements (30) are formed on the base (11) or contact holder (14).
  2. Electromechanical switching device according to claim 1, characterised in that the holding elements (30) are connected in one piece to the base (11) or contact holder (14), and in particular are moulded on.
  3. Electromechanical switching device according to either claim 1 or claim 2, characterised in that the holding elements (30) are formed on the base (11).
  4. Electromechanical switching device according to any one of the preceding claims, characterised in that the holding elements (30) resiliently overlap the spring element (28) in such a way that when the spring element is inserted the holding elements give or yield and when the spring element is fully inserted automatically return to their original position and lock the spring element against detachment.
  5. Electromechanical switching device according to any one of the preceding claims, characterised in that the spring element (28) is elongate with a spring effect in its longitudinal direction, wherein it is preferably a helical spring.
  6. Electromechanical switching device according to any one of the preceding claims, characterised in that the holding elements (30) run at least partially in the longitudinal direction of the spring element (28) and overlap the end thereof with hook-like projections (31) to secure it.
  7. Electromechanical switching device according to any one of the preceding claims, characterised in that the spring excursion for a spring element (28) extends substantially linearly, the contact holder (14) preferably running in a guide device (29) on the base (11) and the guide device being constructed in particular as a guide slot for guide rails (22) on the contact holder.
  8. Electromechanical switching device according to any one of the preceding claims, characterised in that at least two, preferably four, holding elements (30) are provided for securing a spring element (28).
  9. Electromechanical switching device according to any one of the preceding claims, characterised in that a plurality of spring elements (28) are arranged side by side, at least one holding element (30) being constructed for at least two spring elements, the holding element preferably comprising one projection (31) per spring element to be secured.
  10. Electromechanical switching device according to any one of the preceding claims, characterised in that the spring elements (28) are uniformly distributed in a grid dimension, holding elements (30) preferably being arranged at the crossing points of the grid location limits.
EP02001646A 2001-02-16 2002-01-24 Electromechanical switching device Expired - Lifetime EP1233433B1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE10108960 2001-02-16
DE2001108960 DE10108960A1 (en) 2001-02-16 2001-02-16 Electromechanical switching device

Publications (3)

Publication Number Publication Date
EP1233433A2 EP1233433A2 (en) 2002-08-21
EP1233433A3 EP1233433A3 (en) 2003-07-09
EP1233433B1 true EP1233433B1 (en) 2007-11-21

Family

ID=7675370

Family Applications (1)

Application Number Title Priority Date Filing Date
EP02001646A Expired - Lifetime EP1233433B1 (en) 2001-02-16 2002-01-24 Electromechanical switching device

Country Status (4)

Country Link
EP (1) EP1233433B1 (en)
DE (2) DE10108960A1 (en)
ES (1) ES2296833T3 (en)
PL (1) PL197439B1 (en)

Family Cites Families (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4007347A (en) * 1975-07-28 1977-02-08 Haber Terry M Simplified actuating switch for electronic timepieces
DE2536603C3 (en) * 1975-08-16 1978-12-14 Preh, Elektrofeinmechanische Werke Jakob Preh Nachf., 8740 Bad Neustadt Electric switch
US4345224A (en) * 1981-01-30 1982-08-17 General Electric Company Contact spring arrangement
IT223977Z2 (en) * 1990-01-12 1995-10-05 Imos Italia Srl ELECTRIC CONTACT SOCKET FOR CIGAR LIGHTERS AND OTHER VEHICLE ACCESSORIES, EQUIPPED WITH THERMAL PROTECTION AGAINST OVERHEATING THAT ALLOWS IT TO BE RE-USED.
DE4439295C1 (en) * 1994-11-07 1996-06-05 Inovan Stroebe Contact holder for contact bridge in electric switch
DE4446411A1 (en) * 1994-12-23 1996-06-27 Kopp Heinrich Ag Device for accelerating the switch-on process between electrical contacts
DE29506688U1 (en) * 1995-04-20 1995-06-14 Priesemuth W Switch with a jumper
DE19649816C1 (en) * 1996-12-02 1998-04-23 Eaton Controls Gmbh Motor vehicle brake light plunger-switch
DE29823559U1 (en) * 1998-11-09 2000-03-30 Wickmann Werke Gmbh Fuse holder

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
None *

Also Published As

Publication number Publication date
DE50211240D1 (en) 2008-01-03
EP1233433A3 (en) 2003-07-09
EP1233433A2 (en) 2002-08-21
PL197439B1 (en) 2008-03-31
ES2296833T3 (en) 2008-05-01
DE10108960A1 (en) 2002-08-29

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