1. Field of the Invention
The present invention relates to electrified wall panels, and, more particularly, to an electrical distribution system for electrifying wall panels.
2. Description of the Related Art
Modular office furniture typically includes a plurality of modular wall panels which are coupled together in various orientations and configurations to define work spaces in an office environment. The modular wall panels are configured to connect with accessories, such as work surfaces, overhead storage bins, etc., so that each work space or cubical may be configured as desired. Such wall panels are often electrified to provide electrical power to lighting, computers, etc. These wall panels often include a raceway so that electrical distribution devices can be positioned therein to provide electrical power to electrical receptacles, into which electrical power cords can be plugged. Further, electrical power is often transmitted from one wall panel to an adjacent wall panel via the electrical distribution devices in the raceways of the wall panels. A gap can exist between an electrical distribution device in the upstream wall panel (relative to the direction of flow of electrical power) and an electrical distribution device in the downstream wall panel. Jumpers can be used to bridge this gap. However, the length of this gap can vary depending upon the application—that is, depending upon the location of the wall panels and the electrical distribution devices within their raceways. Thus, a plurality of differently sized jumpers are maintained in stock and selected according to the length of the gap.
What is needed in the art is a jumper assembly which is adjustable in length.
The present invention provides a jumper assembly which is adjustable in length using a telescoping slider.
The invention in one form is directed to an electrical distribution system for electrifying a plurality of wall panels. The electrical distribution system includes a jumper assembly including a telescoping slider which includes a plurality of conductors housed therein which slide relative to one another, the jumper assembly being configured for connecting to a first electrical distribution device connected to a first wall panel of the plurality of wall panels and for connecting to a second electrical distribution device connected to a second wall panel of the plurality of wall panels.
The invention in another form is directed to a jumper assembly of an electrical distribution system for electrifying a plurality of wall panels. The jumper assembly includes a telescoping slider which includes a plurality of conductors housed therein which slide relative to one another, the jumper assembly being configured for connecting to a first electrical distribution device connected to a first wall panel of the plurality of wall panels and for connecting to a second electrical distribution device connected to a second wall panel of the plurality of wall panels.
The invention in yet another form is directed to a method of electrifying a plurality of wall panels, said method including the steps of: providing an electrical distribution system including a first electrical distribution device connected to a first wall panel of the plurality of wall panels, a second electrical distribution device connected to a second wall panel of the plurality of wall panels, and a jumper assembly, the jumper assembly including a telescoping slider which includes a plurality of conductors housed therein which slide relative to one another; and connecting the jumper assembly to the first electrical distribution device and to the second electrical distribution device.
An advantage of the present invention is that it provides a jumper assembly with a telescoping slider which can be lengthened or shortened according to the needs of an installer.
Another advantage is that the jumper assembly with the telescoping slider provides a way for a manufacturer of wall panel electrical devices to reduce its costs.
The above-mentioned and other features and advantages of this invention, and the manner of attaining them, will become more apparent and the invention will be better understood by reference to the following description of embodiments of the invention taken in conjunction with the accompanying drawings, wherein:
Corresponding reference characters indicate corresponding parts throughout the several views. The exemplifications set out herein illustrate embodiments of the invention, and such exemplifications are not to be construed as limiting the scope of the invention in any manner.
Referring now to the drawings, and more particularly to
Each wall panel 12 of the plurality of wall panels 12 can be a modular office wall panel 12 which can be easily configured and reconfigured relative to other modular office wall panels 12 so as to define office work stations. Each wall panel 12 has at least one raceway 18, which can be located along the baseline of the respective wall panel 12, as shown in
First electrical distribution device 14 is connected to first wall panel 12 of the plurality of wall panels, and second electrical distribution device 14 is connected to a second wall panel 12 of the plurality of wall panels. For point of reference, first electrical distribution device 14 and first wall panel 12 can be disposed on the left-hand side of
Telescoping slider 126 includes a housing 34 including an outside housing 36 and an inside housing 38 which are configured for moving between a retracted position and an extended position relative to one another and thereby for adjusting a length of jumper assembly 16 depending upon a distance between first and second electrical distribution devices 14.
Telescoping slider 126 includes a plurality of conductors 42 housed therein which slide relative to one another so as to accommodate the telescoping nature of slider 126 when inside housing 38 moves between the retracted and open positions relative to outside housing 36. Conductors 42 are conductor bars 42 which include a first group 44 of conductor bars 42 attached to outside housing 36 and a second group 46 of conductor bars 42 attached to inside housing 38. The conductors of first group 44 can be referred to as conductors 44 or conductor bars 44. The conductors of second group 46 can be referred to as conductors 46 or conductor bars 46.
Jumper assembly 16 also includes mesh sleeve 30 or flexible conduit 30, as well as end connector 50. For illustrative purposes,
As is apparent from
Further, conductor bar 44 of outside housing 36 can have a female end 60 for receiving a male end of conductor bar 46 of inside housing 38, as shown in
As mentioned above, slider 126 can be extended, as needed, by an installer of electrical distribution system 10; in other words, slider 126 can be selectively lengthened or shortened and thus occupy a fully retracted position, a fully extended position, or a plurality of intermediate positions therebetween. These intermediate positions may not be predetermined or, alternatively, may be predetermined so that slider 126 provides a tactile feel to an installer when an intermediate position, for example, is reached. In furtherance thereof, outside and inside housings 36, 28 (each of which can be made of plastic) can further include a ratchet function for extension resistance. In other words, slider housing 40 can include a plurality of structural features (not shown) configured for selectively locking outside and inside housings 36, 38 together in one of a plurality of predetermined locking positions so that slider 126 takes on one of a number of predetermined lengths. The structural features can be detents which stop or otherwise capture corresponding features of housing 40.
In use, electrical distribution devices 14 are connected to their respective wall panels 12 in the corresponding raceways 18 in the preferred locations within those raceways 18. A gap then exists between these two electrical distribution devices 14 and electrical connectivity will not be provided to the right-hand side electrical distribution device 14, assuming power flows from the left-hand side electrical distribution device 14. Thus, jumper assembly 16 is provided to bridge the gap between devices 14 and thus to transmit electricity from one device 14 to the other device 14. Either end connector 48, 50 can be connected to device 14. Assuming end connector 48 is used to connect to the left-hand side device 14 in
The present invention further provides a method of electrifying a plurality of wall panels 12. The method includes the steps of: providing electrical distribution system 10 including first electrical distribution device 14 connected to first wall panel 12 of the plurality of wall panels 12, second electrical distribution device 14 connected to second wall panel 12 of the plurality of wall panels 12, and jumper assembly 16, jumper assembly 16 including telescoping slider 126 which includes a plurality of conductors 40 housed therein which slide relative to one another; and connecting jumper assembly 16 to first electrical distribution device 14 and to second electrical distribution device 14. Slider 126 includes outside housing 36 and inside housing 38. The method further includes the step of moving outside housing 36 and inside housing 38 between a retracted position and an extended position relative to one another and thereby adjusting a length of jumper assembly 16 depending upon a distance between first and second electrical distribution devices 14. Jumper assembly 16 includes only one telescoping slider 126. Conductors 42 are conductor bars 42 which include a first group 44 of conductor bars 42 attached to outside housing 36 and a second group 46 of conductor bars 42 attached to inside housing 38. Jumper assembly 16 further includes end connector 32 and mesh sleeve 30 or conduit 30 attached to inside housing 38 and end connector 32, mesh sleeve 30 or conduit 30 including a plurality of conductors 52 running therethrough, end connector 32 connecting to first electrical distribution device 14 or second electrical distribution device 14. Outside housing 36 includes at least one end connector 50 connecting to first electrical distribution device 14 or second electrical distribution device 14.
While this invention has been described with respect to at least one embodiment, the present invention can be further modified within the spirit and scope of this disclosure. This application is therefore intended to cover any variations, uses, or adaptations of the invention using its general principles. Further, this application is intended to cover such departures from the present disclosure as come within known or customary practice in the art to which this invention pertains and which fall within the limits of the appended claims.
This is a non-provisional application based upon (a) U.S. provisional patent application Ser. No. 61/122,492, entitled “WALL PANEL ELECTRICAL DISTRIBUTION SYSTEM”, filed Dec. 15, 2008, which is incorporated herein by reference, and (b) U.S. provisional patent application Ser. No. 61/139,859, entitled “WALL PANEL ELECTRICAL DISTRIBUTION SYSTEM”, filed Dec. 22, 2008, which is incorporated herein by reference.
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