The present invention relates to switching devices such as contactors, motor protection switches, miniature circuit-breakers or circuit-breakers, or the like, as well as programmable switching devices, such as programmable logic controllers or programmable relays.
In conventional switching devices, such as contactors, each pole to be switched has a terminal contact in the form of a fixed contact on the input side and on the output side. To make or break the contact, the corresponding fixed contacts are closed or opened by a contact bridge, which is operated by an electromagnetic operating mechanism. In such devices, the externally accessible fixed contact terminals are usually formed by screw-type terminals which are accessible from the side and can be screwed down and released from the top side of the housing or by spring clamp terminals which are accessible from the side or from above and which can also be released from the side or from above.
Such a switching device having connection terminals of this type is already known from German Publication DE 201 20 504 U1. This switching device is equipped with screw-type terminals on one terminal side and with different connector elements, such as spring clamp terminals, on the other opposite terminal side.
Moreover, German Patent Application DE 100 23 851 A1 describes a connecting terminal for switching devices, where a standard screw connection can be replaced with a module for spring clamp connection.
The embodiments described above have been largely tried and tested in practice. It is, therefore, an object of the present invention to provide a switching device which is optimized in terms of the connection system. The intention is both to provide ease of use for the user and to improve the flexibility in terms of the variety of connection options.
Starting from an at least one-pole switching device where each pole has at least one incoming and one outgoing terminal contact, and each of the terminal contacts has first connection means for connection of a first external electrical conductor, the present invention provides at least one of the terminal contacts with second connection means for connection of a second electrical conductor. In a structurally and technically simple way, the switching device of the present invention is provided with both conventionally designed first connection means (such as screw clamp terminals or spring clamp terminals) and second connection means for additional connection elements, the first and second connection means being formed toward the outside of the housing.
The second connection means are located closer to the inside or closer to the outside of the switching device as compared to the first connection means.
In accordance with the present invention, the terminal contact carries a fixed contact leading to the interior of the housing (such as in contactors) or a connecting point for connection to internal electrical device conductors (such as in programmable logic controllers). The first connection means take the form of conventional screw clamp terminals, spring clamp terminals (such as cage clamp terminals), insulation-piercing terminals, or other connection means.
The additional second connection means take the form of means for frictionally and/or positively receiving a connection element, in particular in the form of a plug-in connector or a screw connector.
In one preferred embodiment, the second connection means are designed as central receiving holes for connection elements in the form of male contacts. To optimize the contacting of the second connection means, the hole-like opening, whether it is completely enclosed (receiving hole) or open on the edge (lateral cutout), is made as a punched rim hole, as a result of which tab-like extensions projecting toward the outside are formed around the edge of the opening, at least in some regions. In this manner, an additional connection option is provided for the externally accessible terminal contact in a structurally very simple manner. Other embodiments, such as a lateral cutout of the connection element or of the contact carrier, are also possible.
In another preferred embodiment, the second connection means take the form of male contacts. When the male contacts are disposed centrally, the first external electrical conductors can be easily inserted into the first connection means past the male contacts on the left, on the right, or on both sides thereof.
For access to the second connection means located inside the housing, the housing, which is made of insulating material, may optionally be provided with predetermined breaking points in an area above the second connection means; the predetermined breaking points defining an access area that can be broken open. The access area can also be designed to be initially open (uncovered).
Further details and advantages of the present invention will become apparent from the exemplary embodiment described below with reference to the drawings, in which:
a depicts terminal contacts of the contactor with different first connection means (screw clamp and spring clamp terminals) as well as a possible embodiment of the second connection means (receiving hole) in accordance with
b shows an alternative embodiment of the second connection means;
In the present case, contactor housing 2 has a three-part design, including a base housing member 2a for accommodating an electromagnetic operating mechanism, an upper housing member 2b that can be placed on base housing member 2a, as well as a housing cover 2c. Moreover, terminal contacts 4 used for connection of incoming and outgoing leads are shown on both sides. Housing 2 may also be formed of two parts or just one part, depending on the type of switching device. Shown in brackets are connecting terminals 4b with screw clamp connection as alternative terminals for the connecting terminals 4a with spring clamp connection. In the present case, housing 2 shown is provided with connecting terminals 4a with spring clamp connection. In case that connecting terminals 4b with screw clamp connection are used, the existing cover member 2c must be replaced with one having suitable access openings for the screw heads instead of openings for the spring clamps. The cover member 2c shown is designed for connecting terminals 4a with spring clamp connection and has a first row of openings 21 for connection or access of first leads 410 to first connection means 41 of terminal contact 4a, a second row of (double) openings 22 for insertion of a tool (such as a screwdriver), as well as a third row of openings 23, or an opening in the form of a slotted opening, for connection of second leads 420 to additional second connection means 42 of terminal contact 4. In a preferred embodiment of the present invention, in the initial condition, the additional row of openings 23 (or the slotted opening) provided in accordance with the present invention is closed by a cover member. The cover member closing the opening may be reclosable via a snap connection or a film hinge. However, instead of being reclosable, it is preferred for opening 23 to be closed by one or a plurality of housing region(s) which is/are outlined by predetermined breaking points and can be broken away, and which form(s) the later access area to second connection means 42. This provides a particularly simple construction and avoids additional costs for warehousing and managing separate cover members.
The incoming and outgoing terminal contacts 4 shown are of two different, alternatives types. In a first embodiment, terminal contact 4a is formed with first connection means 41 in the form of spring clamp terminals, whereas in the alternative embodiment, screw clamp terminals are provided in place of the spring clamp terminals. In accordance with the present invention, both embodiments feature additional second connection means 42. A terminal contact 4 according to the present invention is preferably formed by a tongue-like terminal lug which, at the end facing toward the inside of the housing, is connected to electrical device conductors or, as in the present case, simply functions as a contact carrier carrying a fixed contact 43, and which, at the end facing toward the outside of the housing, is conventionally provided with first connection means 41 (such as screw clamp terminals or spring clamp terminals) and, in a region between these connecting points, is provided with second connection means 42, preferably in the form of a receiving hole. Preferably, second connection means 42 are spaced apart from first connection means 41 and designed to be independent in terms of their operation and connection method such that after wiring first connection means 41, on the one hand, the second connection means are freely accessible for further wiring and, on the other hand, it is not necessary to operate (release and re-secure) first connection means 41 for wiring second connection means 42.
Used for contacting second connection means 42 is, in particular, a connection element 6 in the form of a male contact. Using this connection element 6, the corresponding contactor contact can be freely wired in a conventional manner. In particular, it is also possible to prefabricate dimensionally stable, combined multi-contact male connectors, so that, for example, two adjacent contactors can be easily (pre-)wired as a reversing circuit or a star-delta circuit via the respective second connection means 42 using dimensionally stable rows of male contacts. Other applications, such as the combination of a motor protection switch with a contactor into a simple motor starter, can also be easily implemented in the case of remote devices to be wired, using prefabricated multi-contact male connectors which are connected by flexible, free wiring. Using the present invention, all these applications can be wired in a particularly simple manner without using the standard connecting point for this purpose. In the case of further wirings, it is therefore not necessary to release a connecting point which is already in use, insert additional conductors, and to re-secure the connecting point. This eliminates a frequent source of errors—there is no more need to release connections that are already functional or to slip additional conductors thereunder. Thus, when adding wiring at a later time, initially functional wired connections are prevented from becoming defective all of a sudden because an already wired conductor may have become detached. Moreover, the intention is to use the interface also for functional testing. The subject-matter of the present invention allows functional tests to be performed without removing the terminal wiring.
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Number | Date | Country | Kind |
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102 36 790 | Aug 2002 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP03/08757 | 8/7/2003 | WO | 00 | 2/9/2005 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2004/023506 | 3/18/2004 | WO | A |
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