METHOD AND SYSTEM FOR PROVIDING AN ELECTRONIC EQUIPMENT CABINET USABLE FOR STORING RESERVE POWER BATTERIES
An electronic equipment cabinet is provided. The cabinet includes a plurality of sidewalls and a plurality of shelves. The sidewalls include a pair of opposing sidewalls. Each of the opposing sidewalls includes a plurality of shelf mounting points. The shelves are configured to be received at the shelf mounting points such that the shelves are configurable to accommodate components.
1 . An electronic equipment cabinet comprising:
a plurality of sidewalls including a pair of opposing sidewalls, each of the opposing sidewalls including a plurality of shelf mounting points;
a plurality of shelves configured to be received at the plurality of shelf mounting points such that the plurality of shelves is configurable to accommodate a plurality of components.
2 . The electronic equipment cabinet of claim 1 wherein the plurality of components include at least one of top access batteries and front access batteries.
3 . The electronic equipment cabinet of claim 2 wherein the plurality of shelves includes a plurality of templates for positioning the plurality of components on the plurality of shelves.
4 . The electronic equipment cabinet of claim 1 further comprising:
at least one fan; and
at least one temperature sensor, the at least one fan being activated and deactivated based upon a signal from the at least one temperature sensor.
5 . The electronic equipment cabinet of claim 4 wherein the at least one fan is controlled based on computational fluid dynamics.
6 . The electronic equipment cabinet of claim 1 wherein the plurality of components includes a plurality of batteries, the electronics cabinet further comprising:
at least one battery monitoring system for communicating with a plurality of battery sensors.
7 . The electronic equipment cabinet of claim 6 wherein the plurality of sensors are on a plurality of batteries.
8 . The electronic equipment cabinet of claim 7 wherein the plurality of sensors are coupled with a plurality of indicators for the plurality of batteries and wherein the electronics cabinet further includes:
at least one door including at least one viewing panel through which the plurality of indicators is visible.
9 . The electronic equipment cabinet of claim 1 further comprising:
at least one door including at least one viewing panel.
10 . The electronic equipment cabinet of claim 9 wherein the at least one viewing panel includes a polycarbonate window.
11 . The electronic equipment cabinet of claim 1 further comprising. an internal cable tray configured to receive cables from at least one adjoining electronics cabinet.
12 . The electronic equipment cabinet of claim 1 further comprising. an internal cable routing channel configured to route cables within the electronic equipment cabinet.
13 . The electronic equipment cabinet of claim 1 further comprising:
at least one breaker panel configured to retain at least one circuit breaker; and
at least one cover through which the at least one circuit breaker is visible.
14 . The electronic equipment cabinet of claim 1 further comprising:
a seismic mounting subsystem configured to secure the electronics cabinet to a floor.
15 . The electronic equipment cabinet of claim 1 further comprising:
an integrated alternating current power strip.
16 . The electronic equipment cabinet of claim 1 further comprising:
at least one door; and
a plurality of quick removal hinges connecting the at least one door to at least one of the plurality of sidewalls
17 . The electronic equipment cabinet of claim 1 further comprising:
at least one door connected to at least one of the plurality of sidewalls; and
a triple point door locking system coupled with the at least one door.