Claims
- 1. A battery rack system for stationary power applications comprising a rack assembly configured so as to be seismically rated for UBC Zone IV requirements including a plurality of shelves which are supported by a rack frame such that each shelf along with the rack frame defines a respective cell-receiving area that has a front opening, the rack frame defining a footprint, each shelf having at least one associated cell restraint that is removably connected to the rack assembly and that spans across the front opening to the respective cell-receiving area so as to restrain movement of a cell arranged therein, and at least one channel disposed within the rack frame footprint which extends so as to provide a passage between adjacent cell-receiving areas for accommodating wires used to couple cells stored in the rack system.
- 2. The battery rack system according to claim 1 wherein the rack frame comprises a plurality of upright rack supports and at least one of the supports has an a S-shaped cross-sectional configuration with one half of the S-shape forming the channel and the other half of the S-shape defining a surface to which the shelves are secured.
- 3. The battery rack system according to claim 1 wherein each cell-receiving space has a rear opening and each shelf has an associated second restraint which is connected to the rack assembly so as to span across the rear opening of the respective cell-receiving space.
- 4. The battery rack system according to claim 1 wherein each cell restraint is removably connected to the rack frame.
- 5. The battery rack system according to claim 1 wherein each cell restraint comprises an elongated strip with flanges at either end that define connection surfaces for connecting to the rack assembly.
- 6. The battery rack system according to claim 1 wherein each cell restraint is connected to the rack frame by interlocking protrusions and depressions.
- 7. The battery rack system according to claim 1 wherein the rack frame has a pair of opposing front edges and a pair of opposing rear edges, each of the front and rear edges having a crenellated shape with a plurality of crenels and merlons, the crenels defining surfaces to which the cell restraints are attached and the merlons being configured to guide placement of the cell restraints.
- 8. The battery rack system according to claim 1 wherein each shelf has front, rear and opposing side edges, the front edge having a flange which extends away from a front opening to the respective cell-receiving area and the rear edge having a flange which extends in the opposite direction of the front edge flange so as to define a stop surface for positioning a cell on the shelf.
- 9. The battery rack system according to claim 8 wherein each of the side edges has a respective flange which is secured to the rack frame.
- 10. The battery rack system according to claim 1 wherein each of the shelves includes channel sections for strengthening the respective shelf.
- 11. The battery rack system according to claim 1 wherein the shelves are non-removably affixed to the rack frame free of any external hardware.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application claims the benefit of U.S. Provisional Application No. 60/235,742 filed Sep. 27, 2000, the disclosure of which is incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60235742 |
Sep 2000 |
US |