Optimized micro data center
A modular data center comprises a base electrical module including an uninterruptible power supply (“UPS”) bypass switch, a power connection terminal coupled to the bypass switch, and a UPS power connector, a UPS rack coupled to the base electrical module and configured to house a UPS that receives power from the UPS power connector, and an information technology (“IT”) equipment rack coupled to the base electrical module and configured to house IT equipment that receives power from the base electrical module, the base electrical module being external to the IT equipment rack.
1 . A modular data center comprising:
a base electrical module including an uninterruptible power supply (UPS) bypass switch and a UPS power connector;
a first frame coupled to the base electrical module and configured to house a UPS that receives power from the UPS power connector;
a second frame coupled to the base electrical module and configured to house information technology (IT) equipment that receives power from the base electrical module, the base electrical module being external to the second frame; and
a cover coupled to the base electrical module with a hinge that allows the cover to move inwards towards the base electrical module and outwards away from the base electrical module, the cover covering multiple sides of the first frame and multiple sides of the second frame when in a closed position.
2 . The modular data center of claim 1 , wherein the base electrical module further includes a power connection terminal coupled to the bypass switch.
3 . The modular data center of claim 1 , further comprising a UPS rack included in the first frame, the UPS rack configured for mounting the UPS thereto.
4 . The modular data center of claim 1 , further comprising a UPS rack coupled to the first frame.
5 . The modular data center of claim 1 , further comprising an IT equipment rack included in the second frame, the IT equipment rack configured for mounting the IT equipment thereto.
6 . The modular data center of claim 1 , further comprising an IT equipment rack coupled to the second frame.
7 . The modular data center of claim 1 , wherein the base electrical module further includes a fan module configured to direct air through an IT equipment rack.
8 . The modular data center of claim 1 , further comprising:
a fan module included in the base electrical module and configured to direct air through the second frame.
9 . The modular data center of claim 1 , wherein the base electrical module is configured to be mounted to a wall.
10 . The modular data center of claim 1 , wherein the second frame is indirectly coupled to the base electrical module.
11 . The modular data center of claim 1 , further comprising a UPS rack included in the first frame and an IT equipment rack included in the second frame.
12 . The modular data center of claim 1 , wherein the second frame is removably supported by the first frame.
13 . The modular data center of claim 1 , wherein the second frame is removably clipped to the first frame.
14 . The modular data center of claim 1 , wherein the cover is removably coupleable to the base electrical module.
15 . The modular data center of claim 1 , further comprising a power distribution unit having a plurality of outlets mounted on the second frame and configured to provide power from the base electrical module to the IT equipment.
16 . The modular data center of claim 1 , wherein the base electrical module further includes a patch panel.
17 . The modular data center of claim 1 , wherein the base electrical module further includes an Internet gateway device.
18 . The modular data center of claim 1 , further comprising a power distribution unit having a plurality of outlets mounted on the first frame.
19 . The modular data center of claim 1 , wherein the base electrical module further includes a visual indicator of status of the modular data center.
20 . The modular data center of claim 1 , further comprising at least one backup UPS.
21 . The modular data center of claim 1 , further comprising at least one server.
22 . A method of assembling and installing a modular data center, the method comprising:
installing a base electrical module on a wall, the base electrical module including an uninterruptible power supply (UPS) bypass switch and a UPS power connector;
connecting a first frame to the base electrical module, the first frame configured to house a UPS that receives power from the UPS power connector;
connecting a second frame to the first frame, the second frame configured to house information technology (IT) equipment that receives power from the base electrical module, the base electrical module being external to the second frame; and
connecting, using a hinge, a cover coupled to the base electrical module, the hinge allowing the cover to move inwards towards the base electrical module and outwards away from the base electrical module, the cover covering multiple sides of the first frame and multiple sides of the second frame when in a closed position.
23 . The method of claim 22 , further comprising securing a power distribution unit to the second frame.
24 . The method of claim 22 , further comprising securing a backup UPS module to the first frame.
25 . The modular data center of claim 1 , wherein the first frame is coupled to the base electrical module with an additional hinge allowing the first frame to move inwards towards the base electrical module and outwards away from the base electrical module.
26 . The method of claim 22 , wherein the base electrical module further includes a visual indicator configured to cause a status of the modular data center to be reflected off the wall.
27 . The modular data center of claim 1 , wherein the base electrical module is configured to be mounted to a wall along a rear of the base electrical module, and wherein the base electrical module further includes a visual indicator configured to cause a status of the modular data center to be reflected off the wall.