EP2187414B1 - Elektrischer "Push-Push" oder "Push-Down" Schalter mit Antriebsmitteln für die Nuss - Google Patents

Elektrischer "Push-Push" oder "Push-Down" Schalter mit Antriebsmitteln für die Nuss Download PDF

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Publication number
EP2187414B1
EP2187414B1 EP09290850.8A EP09290850A EP2187414B1 EP 2187414 B1 EP2187414 B1 EP 2187414B1 EP 09290850 A EP09290850 A EP 09290850A EP 2187414 B1 EP2187414 B1 EP 2187414B1
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EP
European Patent Office
Prior art keywords
pushbutton
rocker
electric switch
driver
drive means
Prior art date
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Active
Application number
EP09290850.8A
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English (en)
French (fr)
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EP2187414A1 (de
Inventor
Marcel Daccord
Christian Pinaud
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.)
Legrand SNC
Legrand France SA
Original Assignee
Legrand SNC
Legrand France SA
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Publication of EP2187414A1 publication Critical patent/EP2187414A1/de
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Publication of EP2187414B1 publication Critical patent/EP2187414B1/de
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Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H13/00Switches having rectilinearly-movable operating part or parts adapted for pushing or pulling in one direction only, e.g. push-button switch
    • H01H13/50Switches having rectilinearly-movable operating part or parts adapted for pushing or pulling in one direction only, e.g. push-button switch having a single operating member
    • H01H13/56Switches having rectilinearly-movable operating part or parts adapted for pushing or pulling in one direction only, e.g. push-button switch having a single operating member the contact returning to its original state upon the next application of operating force
    • H01H13/60Switches having rectilinearly-movable operating part or parts adapted for pushing or pulling in one direction only, e.g. push-button switch having a single operating member the contact returning to its original state upon the next application of operating force with contact-driving member moved alternately in opposite directions
    • 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
    • H01H3/46Driving mechanisms, i.e. for transmitting driving force to the contacts using rod or lever linkage, e.g. toggle
    • H01H2003/466Driving mechanisms, i.e. for transmitting driving force to the contacts using rod or lever linkage, e.g. toggle using a living hinge to connect the levers
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H3/00Mechanisms for operating contacts
    • H01H3/02Operating parts, i.e. for operating driving mechanism by a mechanical force external to the switch
    • H01H3/12Push-buttons
    • H01H3/122Push-buttons with enlarged actuating area, e.g. of the elongated bar-type; Stabilising means therefor
    • 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
    • H01H3/46Driving mechanisms, i.e. for transmitting driving force to the contacts using rod or lever linkage, e.g. toggle

Definitions

  • the present invention generally relates to electrical switches such as switches and back and forth.
  • switches are commonly called “push-push” or “push-down” because, if, internally, they allow to perform a bistable function of change of state, opening or closing a circuit, whenever it is acted on their push button, they behave externally, like a monostable, their push button returning each time to the initial rest position as soon as the driving action exerted on it is released, and that by Therefore, to move them from one state to another, it is necessary each time to act in depression, and therefore in push, on the push-button.
  • This push-button movement has the advantage that the entire surface of the push-button available to the user is useful for causing the change of state of the switch while in a Toggle switch, only fifty percent of the surface of the actuating finger is used for the change of state.
  • the push button is guided in translation in the housing by means of slides and it directly drives the nut in its translational movement.
  • the guidance of the nut therefore passes through the guidance of the push button.
  • said elastic return means which tend to return said pushbutton to its rest position comprise a spring which is compressed between said drive means and the bottom of the switch housing, this spring continuously pushing said drive means to said push button, and, secondly, said resilient tilting means comprise another spring which intervenes directly between the driver and the push button.
  • said drive means comprise a spring blade which acts directly on the nut to return said nut from the depressed position in the rest position.
  • an electrical switch comprising in a housing, a driver adapted to switch between two stable positions to put in contact or out of contact a movable contact element with a fixed contact element, a push button accessible to the user adapted to be moved between a rest position and a depressed position, a nut having the shape of a needle, pivotally mounted relative to the push button, adapted to act in tilting on said driver, and a return spring which constantly tends to return the push button in the rest position.
  • spring support plate which cooperates with a tilting element which acts on the driver and the return spring is compressed between this spring support plate and the head of the needle. forming the nut that acts on the coach.
  • Such aforementioned switches of the state of the art are complex because they comprise a multitude of parts which each provide a function of return or tilt and pressure well defined. The multiplicity of parts leads to additional manufacturing cost of the switch.
  • the multiplicity of parts requires placing the nut in the housing offset from the fixed contact element.
  • the trainer then has a complex shape to be able, on the one hand, to be hooked by the nut, and on the other hand, to place the movable contact element in contact with the fixed contact element.
  • the groove or the yoke on which the trainer tilts is located in an intermediate plane located between the nut and the fixed contact element.
  • the present invention proposes an electric switch according to claim 1.
  • an electrical switch 100 here a push-push type switch.
  • the electrical switch 100 comprises a housing 110 made of insulating material, open at the front, which houses internally in its bottom, three electrical connection terminals 120, 130, 140 aligned along an axis X parallel to the wall bottom of the case, including an input terminal 120 placed in the center and two output terminals 130,140 placed on either side of the input terminal 120 (see figures 3 and 6 ).
  • the electrical switch housing houses only two connection terminals, an input terminal and an output terminal.
  • these terminals 120, 130, 140 are self-connecting terminals and each of them is associated with a disconnection lever 11 which passes through an opening 111 of the wall of the housing 110 to act on each blade connecting spring of the corresponding terminal.
  • Each disconnect lever 11 comprises a control lever 11A accessible to the user outside said housing 110 (see FIG. figure 1 ).
  • Each terminal 120, 130, 140 comprises a metal cage, the cage of the input terminal 120 forming in the upper part a groove 121 in V and the cage of each output terminal 130, 140 carrying in the upper part a grain of contact forming a fixed contact element 131, 141.
  • the bottom of the groove 121 V and the two fixed contact elements 131, 141 are located in the same plane and aligned along the X axis (see figure 3 ).
  • the electrical switch 100 comprises inside the housing 110 a driver 150 adapted to tilt or pivot between two stable positions to put in contact or out of contact a movable contact element 154, 155 with a fixed contact element 131 , 141.
  • the driver 150 is here a metal plate, commonly called conductive brush, which is cut and folded to form a vertical central knife 151 from which extend, opposite to one another, two shutters which each carry a platform 152, 153 horizontal.
  • Each platform 152, 153 comprises a contact grain 154, 155, forming a movable contact element. Each contact grain 154, 155 protrudes from the face of said platform 152, 153 facing one of the two fixed contact elements 131, 141. Each platform 152, 153 has a curved portion towards the front opening of the housing 110 (opposite to its bottom wall). This bent portion of each platform 152, 153 forms a hook 152B, 153B (see FIG. figures 2 and 6 ).
  • the central knife 151 of the driver 150 is supported in the bottom of the groove 121 V of the input terminal 120 to, firstly, establish an electrical connection between the driver 150 and said terminal 120, and, secondly, allow tilting or pivoting of the driver 150 about a Y axis (the longitudinal axis of said groove 121) coplanar and perpendicular to said axis X ( see figure 5 ).
  • the central knife 151 comprises two feet 151A which are placed on either side of the groove 121 V to immobilize said knife in the direction of the Y axis.
  • the central knife 151 has a tooth 151B; 151D which protrudes from the end edge 151C of said central knife 151.
  • this tooth 151B comes from formation with the driver 150, it is delimited by a rounded edge of the central knife 150.
  • this tooth 151 D is attached astride the end edge 151C right of said central knife 151.
  • the tooth 151D comprises a foot 151E provided with a notch which engages on said end edge 151C.
  • the electrical switch 100 comprises a push button 190 which closes the front opening of the housing 110.
  • This push button 190 is accessible to the user and is adapted to be moved between a rest position (see FIG. figure 13A ) and a depressed position (see figure 13C ).
  • the push button 190 is adapted to be displaced in translation inside the housing 110 along an axis Z perpendicular to the X and Y axes (see FIG. Figures 5 and 6 ).
  • This push button 190 comprises a wall 191, called the closing wall, which closes the front opening of the housing 110.
  • the front face 191A of this closing wall 191 is the bearing surface of the user's finger.
  • the closure wall 191 has an oblong outline, but according to other variants not shown, it can be provided that this closure wall has a rectangular shape, round or square or any other suitable form.
  • the push-button 190 shown on the figure 2 has at its two ends two pairs of legs 192 which extend globally perpendicularly to the rear face 191B of the closure wall 191 of the push button 190, towards the bottom of the housing 110.
  • Each leg 192 has at its free end a hook 192A.
  • the push button 190 has on each of the longitudinal edges of its closure wall 191 a pair of guide walls 193 facing. These guide walls 193 extend from the rear face 191 B of the closure wall 191 perpendicularly thereto (see FIG. figure 7 ).
  • the electrical switch 100 comprises a nut 160, pivotally mounted relative to the push button 190, able to act in a tilting manner on said driver 150.
  • the nut 160 is able to act on the driver 150 in response to a depression action exerted on the pushbutton 190 along the Z axis, thereby alternately causing the tilting of the driver 150 in one direction or in the second direction. on either side of the Y axis. To do this, as shown for example by figures 2 and 6 , it comprises, on its lateral sides, two legs 163, 162 which each cooperate respectively with a hook 152B, 153B of the coach 150.
  • the jambs 162, 163 of the nut 160 extend slightly obliquely relative to each other, moving away from each other as they come closer to each other. the coach 150 (see figure 6 ).
  • legs 162, 163 comprise, at their free end, nozzles 162A, 163A adapted to cooperate alternately, as will be explained in more detail later, with the hooks 152B and 153B of the coach 150.
  • the action of the nut 160 on the coach 150 is achieved by alternately hooking the nozzles 162A, 163A to the hooks 152B, 153B of the coach 150.
  • a relay between the push-button 190 and the nut 160 is provided, in the housing 110 of the electrical switch 100.
  • This relay includes drive means 180 for moving the nut 160 together with the push button 190.
  • said drive means are formed by a single piece, made of insulating material, a portion of which is interposed between the push button 190 and the nut 160 to intervene between these two parts.
  • the upper face 180A of said single piece forming said drive means 180 is permanently pressed against the rear face 191B of the closure wall 191 of the pushbutton 190 (see FIG. figure 7 ).
  • Said drive means 180 comprise pivoting means 187 of the nut 160 relative to the pushbutton 190, able to define at rest a centered position of the nut 160 relative to the pushbutton 190.
  • these pivoting means 187 are interlocking means. They comprise two parallel ribs 187A, whose outer face is rounded. These ribs 187A fit into grooves 164A of complementary rounded profile, provided at the bottom of a housing 164, open towards the front, provided at the top of the nut 160.
  • the nut 160 when it engages alternately on the hooks 152B, 153B of the driver 150 pivots on one or other of the ribs 187A of said drive means 180.
  • said drive means 180 comprise a pantographic displacement system adapted to produce a translational movement of the nut 160 between said rest position and said depressed position of the push-button 190.
  • the movement of the nut 160 produces by the pantographic displacement system is a rotational movement that is similar to a translational movement because the arc described by the nut has a very small angle and a large radius of curvature.
  • the pantographic displacement system comprises two pairs of parallel uprights 181, 182 which extend parallel to the translational axis Z of the nut 160 and parallel link arms 185, 186 extending transversely of a pair vertical members 181 to each other 182.
  • Each connecting arm 185, 186 has ends hinged 185A, 186A to the uprights 181, 182.
  • the pairs of uprights 181, 182 and connecting arms 185, 186 form a parallelogram deformable in a vertical plane which contains the Z axis and which is perpendicular to the horizontal plane formed by the two axes X, Y perpendicular to each other.
  • Each vertical upright 181 of one of the pairs of vertical uprights comprises on an external face facing a side wall of the housing 110, on the one hand, recessed, a groove 181A engaged on a rib 116 (see figures 2 and 5 ) provided on the inner face of the side wall of the housing 110, and, on the other hand, projecting, a tooth 181 B, snapped into an opening 113 of the corresponding side wall of the housing 110 (see figures 2 and 5 ).
  • each vertical upright 181 is fixedly mounted inside the housing 110.
  • Each vertical upright 182 of the other pair of vertical uprights is mounted to move in translation along the Z axis inside the housing 110.
  • Each vertical upright 182 has a projection on an outer face facing a side wall of the housing 110. , a tooth 182A engaged in an elongated opening 112 of the corresponding side wall of the housing 110 (see figures 2 , 5 and 7 ).
  • the teeth 182A slide in said elongated openings 112 so as to guide the movement of said uprights.
  • they make it possible to limit the stroke of said vertical uprights 182 in the direction of the exit of the housing, and therefore of the pantographic displacement system, while abutting against the edge of the upper end of said elongated openings 112.
  • the free ends uprights 182 abut against interior arrangements of the housing 110 to limit the depression of the push button.
  • the single piece forming said drive means 180 comprises two pairs of parallel walls 183 leaning against said vertical uprights 182 movable.
  • the walls 183 of each pair define between them a housing which accommodates one of the guide walls 193 of the push-button 190.
  • the wall 183 located outside the pair, facing a side wall of the housing 110 has on its outer face a recess 183A which accommodates another guide wall 193 of the button.
  • pushbutton 190 see figures 2 and 5 ).
  • the push-button 190 in permanent support on said single piece which forms said drive means 180, is made integral with the displacement of said drive means 180.
  • the driving movement of said push button 190 then causes the translation movement of said drive means 180 with the elastic deformation of the pantographic system.
  • These drive means 180 which cooperate via said pivoting means 187 with the nut 160, drive it and thus guide it in translation in the direction of the driver 150.
  • the raising of said drive means 180 pushed by the nut 160 causes the push button 190 to rise from its depressed position to its initial rest position.
  • the nut 160 is held laterally in the housing 110 by the two inner walls 183 of the two pairs of walls 183 of said drive means 180, which are placed on either side of the nut 160 (see figure 5 ).
  • the electrical switch 100 comprises elastic return means which constantly tend to return the push button 190 in the rest position. It further comprises resilient tilting means, to which the driver 150 is subjected, and which, in response to an action of the nut 160 on the latter, are able, after crossing a hard point, to request the 150 in the direction of one or the other of its stable positions and then maintain it elastically in it.
  • said elastic return means and said resilient tilting means are formed by a single spring 170 compressed between said nut 160 and said 150 rocking driver and bearing on them.
  • the spring 170 is a compression spring interposed between the nut 160 and the driver 150. It bears, on the one hand, on the driver 150 being engaged on the tooth 151 B; 151 D of the central knife 151 of the trainer 150, and, secondly, on the blind bottom of a recess 161 that the nut 160 forms internally between its legs 162, 163, being engaged on a centering stud 165 provided for this purpose at the bottom of this recess.
  • This spring 170 has, preferably, for example, a stiffness equal to about 2.6 Newtons per millimeter.
  • the spring 170 is capable of producing on the The driver 150 has an evolutionary compressive force that can reach a maximum of 16 Newton when the trainer reaches his equilibrium point between his two stable positions, for a compression force exerted on the push-button 190 of the order of 19 Newton.
  • said spring 170 permanently urges said nut 160 towards the push-button 190.
  • This spring 170 alone provides three different functions.
  • the spring 170 in response to an action of the nut 160 on the driver 150, solicits the 150 in the direction of one or the other of its stable positions and then holds it elastically in this position.
  • the electrical switch 100 there is no elastic means of return or tilting other than the spring 170. This then reduces the number of parts of the electrical switch, so its size and its manufacturing cost.
  • the advantageous arrangement of the spring 170 makes it possible to dispose, the spring 170, each fixed contact element 131, 141, the attachment point 152B, 153B of the nut 160 to the driver as well as the throat 121 for pivoting the the coach 150 in the same plane (see figure 5 ).
  • This symmetrical arrangement is particularly advantageous because it reduces the size of the switch mechanism.
  • this electrical switch 100 is identical to the previous one, that is why it will not be described in detail here, but only the characteristics that distinguish it from the latter will be described in detail.
  • the closing wall 191 'of the push button 190' carries, at one of its ends, two parallel uprights 194 'which extend from the rear face of this closing wall 191' perpendicular thereto.
  • the pivoting yoke 188 which defines the pivot axis of said pushbutton 190 'belongs to the single piece which forms said drive means 180.
  • it constitutes an extension in the direction of the push button 190' of each vertical amount 181 fixes the pantographic displacement system.
  • the closing wall 191 'of the push button 190' comprises, as in the embodiment described above, two parallel legs 192 'provided with the hooks 192'A limiters.
  • this electrical switch 100 is identical to the previous one, that is why it will not be described in detail here, but only the characteristics that distinguish it from the latter will be described in detail.
  • the embodiment variant is located at said drive means 180 'of the nut 160, which comprise a single connecting arm 185' whose end 185'A is articulated on a fixed part of the switch and the other end 185 A is articulated on a slide 182'B which is mounted in translation in a slide 117 of the housing 110 so as to produce a translational movement of said nut 160 between said rest position and said depressed position.
  • said drive means 180 ' are formed of a single piece.
  • the fixed part of the electrical switch consists of two vertical uprights 181 parallel fixedly mounted in the housing 110, as has been previously described with reference to the first embodiment shown in the drawings. Figures 1 to 7 .
  • each of these vertical uprights 182' externally carries a slide 182'B in the form of a rib.
  • Each slide 182'B slides in a slideway 117 provided on the inner face of a side wall of the housing 110.
  • Each vertical upright 182 further includes a tooth 182'A which is engaged in an elongate opening 112 of the corresponding wall. of the housing 110.
  • Each tooth 182'A makes it possible to limit the travel stroke of said drive means 180 'abutting the top and bottom edges of said elongate opening 112.
  • the driver 150 In the initial resting position represented on the Figures 13A , 14A , the driver 150 is tilted into one of its stable positions in which it closes the electrical contact between the movable contact element 155 and the fixed contact element 141 integral with the output terminal 140, bearing one against the other.
  • the trainer 150 is held in this position by the action of pressure exerted on it by the spring 170.
  • the driving movement of said push button 190; 190 'then causes the translation movement of said drive means 180 with the elastic deformation of the pantographic displacement system.
  • These drive means 180 which cooperate via said pivoting means 187 with the nut 160, thus drive it in translation in the direction of the driver 150 until the nose 163A of the nut 160 catches on the hook 153B of the platform 150 of the coach 150 (see Figures 13B , 14B ).
  • the user's finger continues to push the pushbutton 190; 190 ', the nut 160, locked in translation by the driver 150, pivots relative to the push button 190; 190 ', around one of the ribs 187A of said pivoting means 187, and causes the tilting of the driver 150 to open the contact between the fixed contact element 141 and the movable contact element 155.
  • the spring 170 urges the central knife 151 of the driver 150 towards the other fixed contact element 131 to close the contact between this element and the other movable contact element 154 placing them in support of one against each other. Once the trainer 150 is tilted, the spring 170 holds it in this position (see Figures 13C and 14C ).
  • said pivoting means 187 which engage said nut 160 allow under the action of pressure exerted by the spring 170 to correctly position (in particular to center) the nut 160 relative to said drive means 180 and therefore to said push button 190; 190 '.
  • the pantographic displacement system of said drive means 180 has the advantage over other guidance and displacement systems, such as the slide system shown in FIGS. Figures 11 and 12 to very satisfactorily guide the nut over a very short guide distance for the electrical switch to function properly.
  • said drive means of the nut comprises two connecting arms connected to each other by a pivot axis by crossing and cooperating with the housing and the push-button for move together like scissors.
  • the electrical switch according to the invention comprises a single fixed contact element and a single associated movable contact element.
  • a single output terminal provided with said fixed contact element the coach carrying a single mobile contact bump.

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  • Push-Button Switches (AREA)
  • Tumbler Switches (AREA)

Claims (13)

  1. Elektrischer Schalter (100), der in einem Gehäuse (110) umfasst:
    - einen Mitnehmer (150), der zwischen zwei stabilen Positionen hin und her wippen kann, um ein bewegliches Kontaktelement (154, 155) mit einem unbeweglichen Kontaktelement (131, 141) in oder außer Kontakt zu bringen;
    - eine für den Bediener zugängliche Drucktaste (190), die zwischen einer Ruheposition und einer gedrückten Position hin und her bewegbar ist;
    - einen Nussisolator (160), der in Bezug zur Drucktaste schwenkbar montiert ist und durch ein Wippen auf den Mitnehmer einwirken kann;
    - Mitnehmermittel (180), um den Nussisolator gemeinsam mit der Drucktaste zu bewegen;
    - elastische Rückholmittel, die ständig danach streben, die Drucktaste in die Ruheposition zurückzuholen; und
    - elastische Wippmittel, denen der Mitnehmer untergeordnet ist und welche als Reaktion auf die Aktion des Nussisolators auf den Mitnehmer nach Überwinden eines schwergängigen Punktes den Mitnehmer in Richtung der einen oder anderen stabilen Position ziehen und ihn dann elastisch in dieser Position halten,
    - dadurch gekennzeichnet, dass diese elastischen Rückholmittel und die elastischen Wippmittel durch eine einzige Feder (170) gebildet werden, die zwischen dem Nussisolator (160) und dem Mitnehmer (150) eingepresst ist und sich auf diesen abstützt.
  2. Elektrischer Schalter (100) nach Anspruch 1, dadurch gekennzeichnet, dass diese Feder (170) den Nussisolator (160) permanent in Richtung der Drucktaste (190) zieht.
  3. Elektrischer Schalter (100) nach einem der vorausgehenden Ansprüche, dadurch gekennzeichnet, dass diese Mitnehmermittel (180) zwischen der Drucktaste (190) und dem Nussisolator (160) zum Wirken kommen.
  4. Elektrischer Schalter (100) nach einem der vorausgehenden Ansprüche, dadurch gekennzeichnet, dass diese Mitnehmermittel (180) Mittel zum Schwenken (187) des Nussisolators (160) in Bezug zur Drucktaste (190) umfassen, die im Ruhezustand eine zentrierte Position des Nussisolators in Bezug zur Drucktaste definieren.
  5. Elektrischer Schalter (100) nach vorausgehendem Anspruch, dadurch gekennzeichnet, dass die Schwenkmittel (187) Einpassmittel sind.
  6. Elektrischer Schalter (100) nach einem der zwei vorausgehenden Ansprüche, dadurch gekennzeichnet, dass die Mitnehmermittel (180) und die Schwenkmittel (187) ein einziges Blockgussstück bilden.
  7. Elektrischer Schalter (100) nach einem der vorausgehenden Ansprüche, dadurch gekennzeichnet, dass sich das unbewegliche Kontaktelement (131, 141), die Einhängestelle (152B, 153B) des Nussisolators in den Mitnehmer und die Rille (121) zum Schwenken des Mitnehmers (150) in derselben Ebene befinden.
  8. Elektrischer Schalter (100) nach einem der vorausgehenden Ansprüche, dadurch gekennzeichnet, dass die Mitnehmermittel (180) ein pantografisches Bewegungssystem umfassen, das eine Schiebebewegung des Nussisolators (160) zwischen der Ruheposition und der gedrückten Position erzeugen kann.
  9. Elektrischer Schalter (100) nach einem der Ansprüche 1 bis 7, dadurch gekennzeichnet, dass die Mitnehmermittel einen Verbindungsarm (185') umfassen, dessen ein Ende mit einem unbeweglichen Bereich (181) des Schalters verbunden ist und dessen anderes Ende mit einer Führungsschiene (182'B) verbunden ist, die in einer Gleitschiene (117) des Gehäuses (110) derart verschiebbar montiert ist, dass zwischen der Ruheposition und der gedrückten Position eine Verschiebung des Nussisolators (160) erzeugt wird.
  10. Elektrischer Schalter (100) nach einem der Ansprüche 1 bis 7, dadurch gekennzeichnet, dass die Mitnehmermittel zwei, durch eine Schwenkachse miteinander verbundene, gekreuzte Verbindungsarme umfassen, die mit dem Gehäuse und der Drucktaste zusammenwirken, um sich zusammen wie eine Schere zu bewegen.
  11. Elektrischer Schalter (100) nach einem der Ansprüche 1 bis 9, dadurch gekennzeichnet, dass die Drucktaste (190') in Bezug zum Gehäuse (110) schwenkbar montiert ist.
  12. Elektrischer Schalter (100) nach vorausgehendem Anspruch, dadurch gekennzeichnet, dass die Schwenkgabel (188), die die Schwenkachse der Drucktaste (190') definiert, Teil des einzigen Blockgussstücks ist, das die Mitnehmermittel (180) bildet.
  13. Elektrischer Schalter (100) nach einem der Ansprüche 1 bis 10, dadurch gekennzeichnet, dass die Drucktaste (190) in Bezug zum Gehäuse (110) verschiebbar montiert ist.
EP09290850.8A 2008-11-13 2009-11-09 Elektrischer "Push-Push" oder "Push-Down" Schalter mit Antriebsmitteln für die Nuss Active EP2187414B1 (de)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
FR0806322A FR2938371B1 (fr) 2008-11-13 2008-11-13 Commutateur electrique du type "push-push" ou "push-down" a moyens d'entrainement de la noix

Publications (2)

Publication Number Publication Date
EP2187414A1 EP2187414A1 (de) 2010-05-19
EP2187414B1 true EP2187414B1 (de) 2014-11-05

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EP09290850.8A Active EP2187414B1 (de) 2008-11-13 2009-11-09 Elektrischer "Push-Push" oder "Push-Down" Schalter mit Antriebsmitteln für die Nuss

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Country Link
EP (1) EP2187414B1 (de)
CN (1) CN101901699B (de)
BR (1) BRPI0904261B1 (de)
CO (1) CO6300128A1 (de)
ES (1) ES2528622T3 (de)
FR (1) FR2938371B1 (de)

Families Citing this family (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2967292B1 (fr) * 2010-11-05 2012-10-26 Legrand France Commutateur electrique de type push-push
CN102779699A (zh) * 2012-07-16 2012-11-14 无锡市凯旋电机有限公司 断路器储能机构手动分合闸按钮
FR3004849B1 (fr) * 2013-04-23 2015-04-10 Legrand France Commutateur electrique a touche de commande monostable
CN104036995B (zh) * 2014-06-10 2016-04-13 中山市狮盾电气有限公司 一种用于开关的功能组件
ES2645317B1 (es) * 2016-06-02 2018-09-13 Simon, S.A.U. Interruptor eléctrico
CN109411277B (zh) * 2017-08-15 2019-11-29 施耐德电气(澳大利亚)有限公司 按钮开关
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IT202200001661A1 (it) * 2022-02-01 2023-08-01 Vimar Spa Interruttore elettrico
WO2023148616A1 (en) * 2022-02-01 2023-08-10 Vimar S.P.A. Electrical switch

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ES2528622T3 (es) 2015-02-11
CN101901699B (zh) 2013-09-25
BRPI0904261A2 (pt) 2011-02-01
FR2938371B1 (fr) 2010-11-19
EP2187414A1 (de) 2010-05-19
CO6300128A1 (es) 2011-07-21
FR2938371A1 (fr) 2010-05-14
CN101901699A (zh) 2010-12-01
BRPI0904261B1 (pt) 2020-09-29

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