IP Library Granted Patent US 7,898,117
Granted Patent B2
US 7,898,117 · App. 12/140,422 · Granted Mar 1, 2011

Modular racks and methods of use

Assignee: International Business Machines Corporation
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Quick Facts
Patent No.
US 7,898,117
App. No.
12/140,422
Granted
Mar 1, 2011
Kind
B2
Abstract

A structural configuration which includes a computer support structure having at least one module supporting a computer server disposed therein, and methods for connecting servers and using a computer support structure. Each module includes at least one support member separating the module from each adjacent module. The support member is configured to simultaneously conduct both power and data to a computer server located in the module. The method for connecting servers includes placing a first server inside a first module which includes a first structural member configured to conduct electrical power and data to the first server. A second server is placed inside a second module which includes a second structural member. The second module is placed on top of the first module. The first member supports the second module and separates the second module from the first module, resulting in the first member connecting to the second member.

Claims (84)

1. A structural configuration, comprising:

a support structure that includes at least one module, each module of said at least one module supporting a computer server disposed therein, said each module comprising at least one support member separating said each module from each adjacent module, said at least one support member configured to transmit simultaneously both power and data to said computer server;

wherein said at least one module comprises a plurality of modules;

wherein the at least one support member comprises a plurality of sets of multiple support members;

wherein corresponding support members in successive sets of multiple support members are aligned directly above or below each other and are mechanically coupled to each other, and

wherein each support member of the multiple support members in each set comprises a plurality of data cables and at least one power cable such that each data cable of said plurality of data cables is configured to transmit data and each power cable of said at least one power cable is configured to transmit power,

wherein the support structure further comprises a plurality of interconnect adapters;

wherein the corresponding support members in successive sets of multiple support members that are aligned directly above or below each other are mechanically coupled to each other by being in direct mechanical connection with respective opposite ends of an interconnect adapter of the plurality of interconnect adapters,

wherein each interconnect adapter has an axis of rotation;

wherein each interconnect adapter to which corresponding support members are connected at opposite ends thereof comprises a first half and a second half in mechanical connection with said corresponding support members;

wherein the first half of each interconnect adapter is configured to be rotated in a first direction with respect to the axis of rotation;

wherein the second half of each interconnect adapter is configured to be rotated in a second direction with respect to the axis of rotation; and

wherein the second direction is opposite the first direction.

2. The structural configuration of claim 1 , wherein each support member comprises a cylindrical member having a plurality of male RJ45 connectors disposed on a first end of said cylindrical member and connected through said plurality of data cables to a plurality of female RJ45 connectors on a second end of said cylindrical member.

3. The structural configuration of claim 1 ,

wherein each module comprises a platform;

wherein the computer server supported by each module is disposed on and in direct mechanical contact with the platform comprised by said each module; and

wherein each support member of each set of multiple support members is mechanically connected to a different corner of the platform comprised by said each module.

4. A method for connecting computer servers, said method comprising:

placing a first computer server inside a first module, said first module supporting said first computer server, said first module comprising a first structural member configured to conduct both electrical power and data to said first computer server operatively coupled to said first structural member;

placing a second computer server inside a second module, said second module supporting said second computer server, said second module comprising a second structural member configured to conduct both power and data to said second computer server operatively coupled to said second structural member; and

placing said second module on top of said first module, said first structural member supporting said second module and separating said second module from said first module, resulting in said first structural member connecting electrically to said second structural member;

physically coupling the first and second structural members to each other by placing the first and second structural members in direct mechanical connection with respective opposite ends of an interconnect adapter, which results in the first and second structural members being aligned directly above or below each other; and

inserting a plurality of data cables and at least one power cable within each structural member of the first and second structural members, wherein each data cable of the plurality of data cables is configured to transmit data, and wherein each power cable of the at least one power cable is configured to transmit power;

wherein the interconnect adapter has an axis of rotation;

wherein the interconnect adapter comprises a first half and a second half in respective mechanical connection with the first structural member and the second structural member;

wherein the first half of the interconnect adapter is configured to be rotated in a first direction with respect to the axis of rotation;

wherein the second half of the interconnect adapter is configured to be rotated in a second direction with respect to the axis of rotation; and

wherein the second direction is opposite the first direction.

5. The method of claim 4 , said method further comprising:

connecting an electrical power source to said first structural member; and

transmitting electrical power from said electrical power source to said first computer server and said second computer server, said first structural member conducting said electrical power to said first computer server and said second structural member, said second structural member conducting said electrical power to said second computer server.

6. The method of claim 4 , said method further comprising:

connecting a data cable to said first structural member; and

transmitting data through said data cable to said first computer server and to said second computer server, said first structural member transmitting said data to said first computer server and said second structural member, said second structural member transmitting said data to said second computer server.

7. The method of claim 4 , wherein said first structural member comprises said plurality of data cables and said at least one power cable, each data cable of said plurality of data cable configured to transmit data, said power cable configured to transmit power.

8. The method of claim 4 , said method further comprising:

connecting an electrical power source and a data cable to said first structural member; and

transmitting simultaneously both power and data to said first computer server and to said second computer server, said first structural member conducting simultaneously both said electrical power and said data to said first computer server and said second structural member, said first structural member conducting simultaneously both said electrical power and said data to said first computer server and said second structural member, said second structural member conducting simultaneously both said electrical power and said data to said second computer server.

9. The method of claim 4 , wherein the first module and the second module respectively comprise a first platform and a second platform, and wherein the method further comprises:

disposing the first computer server and the second computer server on and in direct mechanical contact with the first platform and the second platform, respectively;

coupling the first and second structural member to the first and second module such that the first and second structural member is mechanically connected to a corner of the first and second platform, respectively; and

inserting a plurality of data cables and at least one power cable within each structural member of the first and second structural members, wherein each data cable of the plurality of data cables is configured to transmit data, and wherein each power cable of the at least one power cable is configured to transmit power.

10. A method for using a computer server support structure, said method comprising:

providing a server support structure comprising a plurality of modules, each module of said plurality of modules supporting a computer server disposed therein, said each module comprising at least one support member separating said each module from each adjacent module, said at least one support member coupled to a support member of an adjacent module of said plurality of modules, said at least one support member configured to transmit both power and data to said adjacent support member;

electrically connecting a first computer server of a first module of said plurality of modules to a first support member of said first module;

connecting a first data cable from said first computer server to said first support member;

electrically connecting a second computer server of a second module of said plurality of modules to a second support member of said second module, said second support member physically coupled to said first support member;

connecting a second data cable from said second computer server to said second support member; and

transmitting simultaneously electrical power and data to said first support member, resulting in transmitting electrical power to said first computer server and to said second computer server, and resulting in transmitting a first portion of said data to said first computer server and a second portion of said data to said second computer server;

wherein the server support structure further comprises an interconnect adapter;

wherein the first and second support members are physically coupled to each other by being in direct mechanical connection with respective opposite ends of the interconnect adapter;

wherein the first support member comprises a first plurality of data cables and a first at least one power cable;

wherein the second support member comprises a second plurality of data cables and a second at least one power cable;

wherein each plurality of data cables of the first plurality of data cables and the second plurality of data cables is configured to transmit data;

whereon each at least one power cable of the first at least one power cable and the second at least one power cable is configured to transmit power

wherein said transmitting the first portion of said data to the first computer server comprises transmitting via a first data cable of the first plurality of data cables the first portion of said data to the first computer server;

wherein the interconnect adapter has an axis of rotation,

wherein the interconnect adapter comprises a first half and a second half in respective mechanical connection with the first support member and the second support member,

wherein the first half of the interconnect adapter is configured to be rotated in a first direction with respect to the axis of rotation,

wherein the second half of the interconnect adapter is configured to be rotated in a second direction with respect to the axis of rotation, and

wherein the second direction is opposite the first direction.

11. The method of claim 10 ,

wherein the first and second modules respectively comprise a first and second platform,

wherein the first and second computer servers are respectively disposed on and in direct mechanical contact with the first and second platforms;

wherein the first and second support members are coupled to the first and second modules via the first and second support members being mechanically connected to a corner of the first and second platform, respectively;

wherein the first and second support members are aligned directly above or below each other;

wherein the first support member comprises a first plurality of data cables and a first at least one power cable;

wherein the second support member comprises a second plurality of data cables and a second at least one power cable;

wherein each plurality of data cables of the first plurality of data cables and the second plurality of data cables is configured to transmit data; and

whereon each at least one power cable of the first at least one power cable and the second at least one power cable is configured to transmit power.

12. A structural configuration, comprising:

a support structure that includes at least one module, each module of said at least one module supporting a computer server disposed therein, said each module comprising at least one support member separating said each module from each adjacent module, said at least one support member configured to transmit simultaneously both power and data to said computer server:

wherein said at least one module comprises a plurality of modules;

wherein the at least one support member comprises a plurality of sets of multiple support members:

wherein corresponding support members in successive sets of multiple support members are aligned directly above or below each other and are mechanically coupled to each other, and

wherein each support member of the multiple support members in each set comprises a plurality of data cables and at least one power cable such that each data cable of said plurality of data cables is configured to transmit data and each power cable of said at least one power cable is configured to transmit power,

wherein the support structure further comprises a plurality of interconnect adapters;

wherein the corresponding support members in successive sets of multiple support members that are aligned directly above or below each other are mechanically coupled to each other by being in direct mechanical connection with respective opposite ends of an interconnect adapter of the plurality of interconnect adapters,

wherein each interconnect adapter has an axis of rotation;

wherein each interconnect adapter comprises a first half and a second half in respective mechanical connection with the first structural member and the second structural member;

wherein the first half of each interconnect adapter is configured to be rotated in a first direction with respect to the axis of rotation;

wherein the second half of each interconnect adapter is configured to be rotated in a second direction with respect to the axis of rotation; and

wherein the second direction is opposite the first direction.

Assignments (4)
CORRECTIVE ASSIGNMENT TO CORRECT THE REMOVE PATENT NUMBERS 10342096;10671117; 10716375; 10716376;10795407;10795408; AND 10827591 PREVIOUSLY RECORDED AT REEL: 58314 FRAME: 657. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Feb 29, 2024
From: RAKUTEN, INC.
To: RAKUTEN GROUP, INC.
Reel/Frame 068066/0103 →
CHANGE OF NAME Recorded Dec 6, 2021
From: RAKUTEN, INC.
To: RAKUTEN GROUP, INC.
Reel/Frame 058314/0657 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 17, 2015
From: INTERNATIONAL BUSINESS MACHINES CORPORATION
To: RAKUTEN, INC.
Reel/Frame 035176/0373 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 17, 2008
From: BOUSSETON, SEBASTIEN; LUND, ARNAUD
To: INTERNATIONAL BUSINESS MACHINES CORPORATION
Reel/Frame 021105/0148 →
Priority Claims (1)
EP 08305192 · May 22, 2008 · regional
Continuity (1)
Related Publication 20090290312A1 · Nov 26, 2009