The present invention relates to a clamp, and more particularly to a common bonding network clamp for an under floor wiring system.
As data centers become more complicated, the utilization of floor space in the data center has become more critical. As a result, common bonding networks have been installed under raised floors. Raised floors are a cost effective and efficient solution for wire and cable management. In the under floor network a bond must be created between the floor pedestal and the common bonding network. The current bonding clamp typically used in under floor wiring systems includes a U-bolt with two threaded ends. The U-bolts are typically secured to floor pedestals by a clamp and various fasteners. The installation of this current bonding clamp, however, is often difficult and time consuming because the fasteners securing the U-bolt must be individually installed to enable the U-bolt to be installed around the floor pedestal. Additionally, to remove the clamp from the floor pedestal, the fasteners must be individually removed from the U-bolt before the clamp may be removed. Thus, it is desirable to provide a common bonding network clamp that creates a bond between the floor pedestal and the common bonding network and that is cost effective and easy to install.
A clamp is disclosed to create a bond between under floor wiring systems and a common bonding network. The clamp includes a mounting bracket, a J-bolt, or a modified U-bolt, connected to the mounting bracket and a split bolt for securing wires to the mounting bracket. The mounting bracket includes a main body with an aperture and a backside having a slot. The bolt includes a first end attached at the aperture of the mounting bracket and a second end positioned within the slot of the mounting bracket. The second end of the bolt is secured to the mounting bracket by a flange nut. The flange nut is loosened to remove the second end of the bolt from the slot to enable the second end of the bolt to pivot away from the mounting bracket. The bolt receives a floor pedestal to secure the clamp to an under floor wiring system.
As illustrated in
The mounting plate 30 includes a slot 34 (see
The U-bolt 40 and mounting plate 30 may be secured to access floor pedestals of various shapes and sizes, for example, a floor pedestal that is round or square.
As illustrated in
The split bolt 50 includes a cross-shaped body to enable the bolt to accommodate two perpendicular common bonding wires 100 thereby creating an electrical bond between the wires. The split bolt 50 includes at least one pressure plate 52. The pressure plate 52 is cross-shaped to add strength and reduce deflection or deformation of the split bolt 50 during installation. The cross-shape of the pressure plate 52 also provides grooves to accept the wires 100 to increase the contact surface area and provide a superior electrical bond. The size and shape of the pressure plate 52 may vary to accommodate a range of wire gauges. The top of the split bolt 50 includes a number of bent tabs 54 for securing the pressure plate 52 to the split bolt 50. The split bolt 50 also includes a groove 56 that is designed to accommodate different wire gauges and to increase the contact surface area between the split bolt 50 and the wires 100.
As shown in
A freestanding height gauge 80 is used during the installation of the clamp 20. The height gauge 80 insures that all of the clamps 20 in the under floor wiring system are installed at the same height. The clamp 20 creates an electrical bond between the floor pedestal 70 and the wires 100 regardless of the height of the two crossing wires 100. Thus, the freestanding height gauge 80 also facilitates installation of the common bonding network clamps 20.
As described above with respect to the various embodiments of the common bonding network clamp, the J-bolt 240, or modified U-bolt, has a first end 241 and a second end 243. As discussed below, the first end 241 includes a hook 243 that is pivotally secured to the mounting bracket 210. The second end 243 is threaded and receives a common hex nut 246 or a serrated flange hex nut.
The mounting bracket 210 includes a main body 220 with a backside 222 and two parallel wings 226A, 226B that extend from the main body 220. The main body 220 includes partial circular cut-out portions 232 (see
The backside 222 of the mounting bracket 210 includes a slot 224 for receiving the second end 243 of the bolt 240.
Furthermore, while the particular preferred embodiments of the present invention have been shown and described, it will be obvious to those skilled in the art that changes and modifications may be made without departing from the teaching of the invention. The matter set forth in the foregoing description and accompanying drawings is offered by way of illustration only and not as limitation.
This application is a continuation-in-part of U.S. patent application Ser. No. 12/044,005, filed Mar. 7, 2008, which claims priority from U.S. Provisional Patent Application No. 60/893,713, filed Mar. 8, 2007, the entire disclosure of which is hereby incorporated by reference.
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Number | Date | Country |
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0871244 | Oct 1998 | EP |
Number | Date | Country | |
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20080217491 A1 | Sep 2008 | US |
Number | Date | Country | |
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60893713 | Mar 2007 | US |
Number | Date | Country | |
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Parent | 12044005 | Mar 2008 | US |
Child | 12056601 | US |