IP Library Granted Patent US 6,906,925
Granted Patent B2
US 6,906,925 · App. 10/875,355 · Granted Jun 14, 2005

Apparatus and method for maximizing equipment storage density

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Quick Facts
Patent No.
US 6,906,925
App. No.
10/875,355
Granted
Jun 14, 2005
Kind
B2
Abstract

A mounting mechanism for mounting a enclosure-mountable device to an equipment enclosure having a plurality of vertical mounting rails disposed so as to define an equipment storage region is disclosed. The mounting mechanism includes a first portion configured to be attached to the enclosure-mountable device, and a second portion configured to be attached to one or more of the vertical mounting rails. The first and second portions are configured such that the enclosure-mountable device may be disposed in a first position outside the equipment storage region and a second position outside the equipment storage region.

Claims (67)

1. A mounting mechanism for mounting an enclosure-mountable device to an equipment enclosure having a plurality of vertical mounting rails, the vertical mounting rails being disposed so as to define an equipment storage region, the mounting mechanism comprising:

a first portion configured to be attached to the enclosure-mountable device; and

a second portion configured to be attached to at least one of the vertical mounting rails, wherein the first and second portions are configured such that the enclosure-mountable device is configurable to move from a first position outside the equipment storage region to a second position outside the equipment storage region without detaching the second portion of the mounting mechanism from the at least one of the vertical mounting rails, and wherein the first and second portions of the mounting mechanism are each disposed in planes which are substantially perpendicularly to one another in the first position and the second position.

2. The mounting mechanism of claim 1 , further comprising a hinging mechanism configured to allow the enclosure-mountable device to rotate from the first position to the second position.

3. The mounting mechanism of claim 2 , wherein the hinging mechanism comprises a slot in the first portion, the slot comprising a first endpoint and a second endpoint.

4. The mounting mechanism of claim 1 , further comprising a securing mechanism for securing the enclosure-mountable device in the second position.

5. A mounting mechanism for mounting an enclosure-mountable device to an equipment enclosure having a plurality of vertical mounting rails, the vertical mounting rails being disposed so as to define an equipment storage region, the mounting mechanism comprising:

a first portion configured to be attached to the enclosure-mountable device;

a second portion configured to be attached to at least one of the vertical mounting rails, wherein the first and second portions are configured such that the enclosure-mountable device is configurable to move from a first position outside the equipment storage region to a second position outside the equipment storage region without detaching the second portion of the mounting mechanism from the at least one of the vertical mounting rails; and

a securing mechanism for securing the enclosure-mountable device in the second position, wherein the securing mechanism comprises a female fastener attached to the second portion, the female fastener being configured to receive a male fastener attached to the enclosure-mountable device.

6. The mounting mechanism of claim 1 , wherein the enclosure-mountable device comprises a power outlet configured to be connected to an electronic device.

7. The mounting mechanism of claim 6 , wherein the electronic device comprises a node in a computer cluster.

8. A mounting mechanism for mounting an enclosure-mountable device to an equipment enclosure having a plurality of vertical mounting rails, the vertical mounting rails being disposed so as to define an equipment storage region, the mounting mechanism comprising:

a first portion configured to be attached to the enclosure-mountable device;

a second portion configured to be attached to at least one of the vertical mounting rails, wherein the first and second portions are configured such that the enclosure-mountable device is configurable to move from a first position outside the equipment storage region to a second position outside the equipment storage region without detaching the second portion of the mounting mechanism from the at least one of the vertical mounting rails;

wherein the enclosure-mountable device comprises a power outlet configured to be connected to an electronic device, wherein the electronic device comprises a node in a computer cluster, wherein the enclosure-mountable device further comprises a monitoring port configured to be connected to a peripheral card that is connected to an expansion slot within the node, and wherein the enclosure-mountable device further comprises a serial access port configured to be connected to a serial port within the node.

9. A mounting mechanism for mounting an enclosure-mountable device to an equipment enclosure having a plurality of vertical mounting rails, the vertical mounting rails being disposed so as to define an equipment storage region, the mounting mechanism comprising:

a mounting bracket having a first portion and a second portion, wherein the first portion is configured to be attached to the enclosure-mountable device, and wherein the second portion is configured to be attached to at least one of the vertical mounting rails;

a hinging mechanism configured to allow the enclosure-mountable device to be rotated from a first position outside the equipment storage region to a second position outside the equipment storage region without detaching the mounting bracket from the at least one of the vertical mounting rails, wherein the first and second portions of the mounting bracket are disposed substantially perpendicularly to one another in the first position and the second position; and

a securing mechanism configured to secure the enclosure-mountable device in the second position.

10. The mounting mechanism of claim 9 , wherein the hinging mechanism comprises a slot in the mounting bracket, the slot comprising a first endpoint and a second endpoint.

11. A mounting mechanism for mounting an enclosure-mountable device to an equipment enclosure having a plurality of vertical mounting rails, the vertical mounting rails being disposed so as to define an equipment storage region, the mounting mechanism comprising:

a mounting bracket configured to attach the enclosure-mountable device to at least one of the vertical mounting rails such that the enclosure-mountable device is disposed outside the equipment storage region in a first position;

a hinging mechanism configured to allow the enclosure-mountable device to be rotated from the first position to a second position outside the equipment storage region without detaching the mounting bracket from the at least one of the vertical mounting rails; and

a securing mechanism configured to secure the enclosure-mountable device in the second position, wherein the securing mechanism comprises a female fastener attached to the mounting bracket, the female fastener being configured to receive a male fastener attached to the enclosure-mountable device.

12. The mounting mechanism of claim 9 , wherein the enclosure-mountable device comprises a power outlet configured to be connected to an electronic device.

13. The mounting mechanism of claim 12 , wherein the electronic device comprises a node in a computer cluster.

14. The mounting mechanism of claim 11 , wherein the enclosure-mountable device comprises a power outlet configured to be connected to an electronic device, wherein the electronic device comprises a node in a computer cluster, and wherein the enclosure-mountable device further comprises:

a monitoring port configured to be connected to a peripheral card that is connected to an expansion slot within the node; and

a serial access port configured to be connected to a serial port within the node.

15. An equipment enclosure for storing an enclosure-mountable device, comprising;

a plurality of vertical mounting rails disposed so as to define an equipment storage region;

an enclosure-mountable device; and

a mounting mechanism, comprising:

a mounting bracket having a first portion and a second portion, wherein the first portion is configured to be attached to the enclosure-mountable device, and wherein the second portion is configured to be attached to at least one of the vertical mounting rails;

a hinging mechanism configured to allow the enclosure-mountable device to be rotated from a first position outside the equipment storage region to a second position outside the equipment storage region without detaching the mounting bracket from the at least one of the vertical mounting rails, wherein the first and second portions of the mounting bracket each are disposed in places which are substantially perpendicularly to one another in the first position and the second position; and

a securing mechanism configured to secure the enclosure-mountable device in the second position.

16. The equipment enclosure of claim 15 , wherein the hinging mechanism comprises a slot in the mounting bracket, the slot comprising a first endpoint and a second endpoint.

17. An equipment enclosure for storing an enclosure-mountable device, comprising:

a plurality of vertical mounting rails disposed so as to define an equipment storage region;

an enclosure-mountable device; and

a mounting mechanism, comprising:

a mounting bracket configured to attach the enclosure-mountable device to at least one of the vertical mounting rails such that the enclosure-mountable device is disposed outside the equipment storage region in a first position;

a hinging mechanism configured to allow the enclosure-mountable device to be rotated from the first position to a second position outside the equipment storage region without detaching the mounting bracket from the at least one of the vertical mounting rails; and

a securing mechanism configured to secure the enclosure-mountable device in the second position, wherein the securing mechanism comprises a female fastener attached to the mounting bracket, the female fastener being configured to receive a male fastener attached to the enclosure-mountable device.

18. The equipment enclosure of claim 15 , wherein the enclosure-mountable device comprises a power outlet configured to be connected to an electronic device.

19. The equipment enclosure of claim 18 , wherein the electronic device comprises a node in a computer cluster.

20. An equipment enclosure for storing an enclosure-mountable device, comprising:

a plurality of vertical mounting rails disposed so as to define an equipment storage region;

an enclosure-mountable device; and

a mounting mechanism, comprising:

a mounting bracket configured to attach the enclosure-mountable device to at least one of the vertical mounting rails such that the enclosure-mountable device is disposed outside the equipment storage region in a first position;

a hinging mechanism configured to allow the enclosure-mountable device to be rotated from the first position to a second position outside the equipment storage region without detaching the mounting bracket from the at least one of the vertical mounting rails; and

a securing mechanism configured to secure the enclosure-mountable device in the second position;

wherein the enclosure-mountable device comprises a power outlet configured to be connected to an electronic device, wherein the electronic device comprises a node in a computer cluster, wherein the enclosure-mountable device further comprises a monitoring port configured to be connected to a peripheral card that is connected to an expansion slot within the node, and wherein the enclosure-mountable device further comprises a serial access port configured to be connected to a serial port within the node.

21. A method for maximizing equipment storage density within an equipment enclosure having a plurality of vertical mounting rails, the vertical mounting rails being disposed so as to define an equipment storage region, the method comprising:

attaching a first portion of a mounting bracket to an enclosure-mountable device;

attaching a second portion of the mounting bracket to at least one of the vertical mounting rails;

rotating the enclosure-mountable device from a first position outside the equipment storage region to a second position outside the equipment storage region without detaching the mounting bracket from the at least of the, vertical mounting rails, wherein the first and second portions of the mounting bracket each are disposed in places which are substantially perpendicularly to one another in the first position and the second position; and

securing the enclosure-mountable device in the second position.

22. The method of claim 21 , wherein the enclosure-mountable device comprises a power port configured to be connected to an electronic device.

23. The method of claim 22 , wherein the electronic device comprises a node in a computer cluster.

24. A method for maximizing equipment storage density within an equipment enclosure having a plurality of vertical mounting rails, the vertical mounting rails being disposed so as to define an equipment storage region, the method comprising:

attaching a mounting bracket to at least one of the vertical mounting rails;

attaching the mounting bracket to an enclosure-mountable device such that the enclosure-mountable device is disposed outside the equipment storage region in a first position, wherein the enclosure-mountable device comprises a power port configured to be connected to an electronic device, wherein the electronic device comprises a node in a computer cluster, wherein the enclosure-mountable device further comprises a monitoring port configured to be connected to a peripheral card that is connected to an expansion slot within the node, and wherein the enclosure-mountable device further comprises a serial access port configured to be connected to a serial port within the node;

rotating the enclosure-mountable device from the first position to a second position outside the equipment storage region without detaching the mounting bracket from the at least one of the vertical mounting rails; and

securing the enclosure-mountable device in the second position.

Assignments (7)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 4, 2017
From: SILICON GRAPHICS INTERNATIONAL CORP.
To: HEWLETT PACKARD ENTERPRISE DEVELOPMENT LP
Reel/Frame 044128/0149 →
RELEASE OF SECURITY INTEREST Recorded Nov 2, 2016
From: MORGAN STANLEY SENIOR FUNDING, INC., AS AGENT
To: SILICON GRAPHICS INTERNATIONAL CORP.
Reel/Frame 040545/0362 →
SECURITY INTEREST Recorded Mar 13, 2015
From: SILICON GRAPHICS INTERNATIONAL CORP.
To: MORGAN STANLEY SENIOR FUNDING, INC.
Reel/Frame 035200/0722 →
CHANGE OF NAME Recorded Apr 16, 2014
From: SILICON GRAPHICS INTERNATIONAL, INC.
To: SGI INTERNATIONAL, INC.
Reel/Frame 032698/0287 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 16, 2014
From: ROBBINS, SHANE R.; TURNER, DAVID
To: LINUX NETWORX, INC.
Reel/Frame 032688/0129 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 16, 2014
From: SILICON GRAPHICS, INC.
To: SILICON GRAPHICS INTERNATIONAL, INC.
Reel/Frame 032688/0269 →
MERGER Recorded Apr 16, 2014
From: SGI INTERNATIONAL, INC.
To: SILICON GRAPHICS INTERNATIONAL CORP.
Reel/Frame 032688/0591 →