The invention relates to an electrical switch.
In the case of electrical appliances which are used in severe operating conditions, precautions must be taken to ensure that the electrical switch is protected against damaging influences which may adversely affect its serviceability. For example, such damaging influences may be exposure to moisture, dust or the like. This applies particularly to switches which are used in appliances for building technology, agriculture, building trade, or the like.
One such electrical switch is known from DE 197 05 068 A1. The switch has a housing with a contact system which is located in the interior of the housing. The operating member is in the form of a rocker, which is arranged on the housing such that it can move, and is used for the switching action on the contact system, with an opening being provided in the housing, for the switching action of the operating member. For sealing, the opening is provided with an elastic seal which is attached to the housing.
The contact system of this known switch has a switching contact which is mounted so that it can pivot, and on which the operating member acts by means of a central plunger, for switching. The central plunger is attached to the operating member and projects through the opening into the interior of the switch. The seal, which is attached to the housing and comprises a bellows or an O-ring, also rests on the plunger. However, it has been found that harmful substances, for example water, can migrate into the interior of the housing between the plunger and the seal, and thereby adversely affect the serviceability of the switch.
The invention is based on the object of further developing an electrical switch such that protection against such ingress of harmful substances into the switch is improved.
In the switch according to the invention, the operating member comprises a moving inner part which is located in the interior of the housing, preferably an inner rocker which can pivot, and a moving outer part, which is located on the exterior of the housing, in particular an outer rocker which also can pivot. As such, the seal completely cover the opening, with the outer part moving the inner part, via the elastically moving seal while providing the switching action on the contact system. Accordingly, the invention provides a switch with improved sealing. Therefore, the invention provides a rocker switch in which an integrated sealing cap is molded on the switch housing, with the outer rocker acting on the upper part of the sealing cap, and with the inner rocker thus being moved by the lower part of the sealing cap such that the inner rocker in turn switches the contact system.
In a further embodiment, the seal may have a dome-like projection. The projection is preferably provided in the form of an elastic bellows. In this case, the projection can be moved elastically with respect to the inner part by the movement of the outer part. Furthermore, a pin on the inner part projects into the opening of the projection such that, during movement of the outer part, the projection acts on the pin in order to move the inner part. An embodiment such as this is distinguished by the improved functional reliability and a longer life of the switch.
In order to simplify production, the seal may be composed of a thermoplastic elastomer, for example polyurethane. The housing is normally composed of a thermoplastic, for example polyamide. In order to reduce the number of individual parts and to simplify the assembly work, it is possible for the seal and the housing to be made in the form of a two-component (2C) part. For this purpose, the seal is molded by injection molding of the housing for the switch using the 2C method onto a housing wall which contains the opening, in particular at the edge of the opening, during the production of the housing wall.
The seal may also be optionally composed of a thermoplastic elastomer which is largely opaque, or at least partially transmissive to visible light. This provides a switch which can be illuminated and, for example, have a function and/or an associated symbol indicator which also can be illuminated, since the thermoplastic elastomer is at least partially transmissive to some visible light. Therefore, in this case, at least one optical waveguide composed of thermoplastic elastomer will pass through the housing wall of the housing in order to allow light which is produced by a light-emitting diode, an incandescent lamp or the like in the housing interior outwards, in order to illuminate the switch. In order to simplify production, the optical waveguide may likewise be molded on, essentially at the same time as the seal, again using the 2C method, during the production of the housing wall.
For good accessibility and assembly of the switch, the housing comprises a housing upper part and a housing lower part. In order to simplify assembly, the housing upper part can be latched, clipped, clamped or the like to the housing lower part during the assembly of the switch. Further, in order to seal the two housing parts, an O-ring may be arranged between the housing lower part and the housing upper part with the O-ring being located in between them. The O-ring may also be a separate part, in a conventional manner. Again, to simplify assembly of the switch, of course, it is possible for the O-ring to be molded onto the housing lower part or onto the housing upper part, or the like.
In one embodiment, the contact system is in the form of a snap-action switching system which can be operated by a switching lever, thus ensuring that the switch is highly reliable.
The inner part then acts during its movement, that is to say in particular the inner rocker during pivoting, by means of an attachment on the switching lever in order to switch the contact system. This allows the contact system to be largely assembled in advance as an assembly, with the contact system being attached to a base member, which is located in the interior of the housing. The electrical connections for the contact system are likewise fixed in the base member. Furthermore, the inner part is mounted on the base member so that it can move or the inner rocker can rotate. The base member is then arranged in the housing such that the connections pass through one wall on the housing lower part while the inner part faces that housing wall of the housing upper part which contains the opening.
In order to protect the seal during operation of the switch, the inner rocker and the outer rocker may have rotation shafts which are arranged in parallel to one another, particularly along the same rotation shaft. For the sake of simplifying the assembly, the rotating bearing for the rotation shaft of the inner rocker is located on the base member, and the rotating bearing for the rotation shaft of the outer rocker is located on the exterior of the housing upper part. Finally, the inner part, particularly the inner rocker, can be latched by means of a ball, which engages in a receptacle on the inner part within the switch position of the contact system, thus providing a switch with latching positions.
The following statements can be made for one particularly preferred embodiment. This embodiment solves two problems, to be precise on the one hand this embodiment has a reliably operating snap-action switching contact system which has a longer life. On the other hand, it has another operating system where a boundary surface is created. This operating member comprises the following components:
an outer rocker which can be operated by the user;
a housing composed of a hard plastic with an integrated elastomer operating knob, in which case the housing and the operating knob can be produced using the two-component injection-molding method; and
an inner rocker which operates the contact system.
When the user operates the operating rocker on the one side, this then moves the inner rocker, via the operating knob. Accordingly, the inner rocker carries out a plurality of functions, precisely:
one side of the inner rocker acts on the switching lever of the contact system, with the contact system being switched on;
the inner rocker can be latched in the operated position, as a result of which the switched-on position of the contact system is in the form of a latching position; and
the other side of the inner rocker in this case pivots upward, with the other side of the outer rocker in consequence likewise being pivoted upward, and in the process switching off a further contact system.
The advantages achieved by the present invention are, in particular, that a switch with better sealing is created, with the risk of ingress of water or other harmful substances being significantly reduced from entering this switch. Because the seal, the bellows, the operating knob or the like are integrated in the housing, the housing interior of the switch is hermetically sealed from the outside. All that is exerted on the seal, the bellows, the operating knob or the like is the exertion force needed for operation, thus increasing the life of the switch.
Exemplary embodiments of the invention as well as various developments and refinements will be described in more detail in the following text, and are illustrated in the drawings.
a shows a top view of the switch shown in
b shows a section along the line IXB-IXB in
The individual parts of the switch 1 are shown in more detail in an exploded illustration in
As can also be seen from
The seal 6 has a dome-like projection. In one embodiment, which can be seen in more detail in
In order to achieve the required elasticity, the seal 6 is composed of a thermoplastic elastomer which, for example, may be polyurethane or poly(styrene-ethylene-butadiene-styrene). In the conventional manner, the housing 2 is composed of a thermoplastic which, for example, may be polyamide or polypropylene. The housing 2 is preferably produced by injection molding. It is then possible for the seal 6 and the housing 2 to be in the form of a two-component (2C) part, in that the seal 6 is molded by injection molding, using the 2C method, onto a housing wall 12 which contains the opening 5, during the production of the housing wall 12 and of the housing 2. In this case, the seal 6 is molded onto the edge of the opening 5, as can be seen in
If required, the seal 6 may be composed of a thermoplastic elastomer which is largely opaque, or else is at least partly transmissive to visible light. The opaqueness can be achieved, for example, by appropriate coloring of the raw material for the thermoplastic elastomer. However, if the aim is to design the switch 1 such that it can be illuminated, for example by arranging a light source 13, which comprises a light-emitting diode, in the interior of the housing 2 as shown in
As can be seen from
As can also be seen in
As can also be seen from
The arrangement and configuration of the operating member 4 can be seen in detail in
The embodiment depicted in
The invention is not restricted to just the described and illustrated exemplary embodiments. Further, it also covers all special developments within the scope and intention of the invention as defined by the patent claims. For example, the invention can be used not only on the described rocker switch, but also on push switches, slide switches or other types of similar switches.
This application claims the benefit under 35 USC §119(e) of U.S. Provisional Application Ser. No. 61/245,311, having a filing date of Sep. 24, 2009, the entirety of which is incorporated herein by reference.
Number | Name | Date | Kind |
---|---|---|---|
4946130 | Kooiman | Aug 1990 | A |
4947008 | Sato et al. | Aug 1990 | A |
5008503 | Stuhlmacher | Apr 1991 | A |
6444930 | MacDonald et al. | Sep 2002 | B1 |
6573466 | Rapp et al. | Jun 2003 | B1 |
6626473 | Klein et al. | Sep 2003 | B1 |
6677545 | Kenmochi | Jan 2004 | B2 |
7145091 | Wang | Dec 2006 | B1 |
7282657 | Wimmer et al. | Oct 2007 | B2 |
8050019 | Wennemer et al. | Nov 2011 | B2 |
Number | Date | Country |
---|---|---|
18 14 082 | Jun 1960 | DE |
197 05 068 | Aug 1998 | DE |
10 2008 034 046 | Jan 2009 | DE |
0 122 465 | Oct 1984 | EP |
9608024 | Mar 1996 | WO |
Number | Date | Country | |
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20110067987 A1 | Mar 2011 | US |
Number | Date | Country | |
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61245311 | Sep 2009 | US |