IP Library Granted Patent US 8,120,919
Granted Patent B2
US 8,120,919 · App. 12/646,490 · Granted Feb 21, 2012

Adjustable mounting bracket for a computer component

Assignee: Coolit Systems Inc.
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Quick Facts
Patent No.
US 8,120,919
App. No.
12/646,490
Granted
Feb 21, 2012
Kind
B2
Abstract

A bracket, computer component and method for connecting to connection points associated with a socket on a computer circuit board are provided. The bracket and computer component have a mounting device including a fastener connectable to one of the connection points and positioned on a mounting flange. The mounting device is adjustable relative to the mounting flange from a first position on the mounting flange to a second position to allow the bracket and computer component to be used in conjunction with a number of different types of sockets.

Claims (52)

1. A bracket for connecting a computer component to connection points associated with a plurality of computer circuit boards, each of the plurality of computer circuit boards having a different sized socket, the bracket comprising:

at least one attachment mount for attaching the bracket to the computer component;

at least one mounting flange;

a mounting device including an upper portion provided on one side of each mounting flange of the at least one mounting flange; a lower portion provided on an other side of the each mounting flange; and a fastener passing through the upper portion and the lower portion, the fastener connectable to one of the connection points and positioned on the at least one mounting flange, the mounting device adjustable relative to the at least one mounting flange from a first position on the at least one mounting flange corresponding to a first spacing of the connection points associated with a first type of the different sized socket to a second position corresponding to a second spacing of the connection points associated with a second type of the different sized socket; and

a slot provided in the at least one mounting flange, the fastener passing through the slot so that the slot defines a path of movement between the first position and the second position of the mounting device relative to the at least one mounting flange.

2. The bracket of claim 1 wherein the mounting device further comprises a biasing device that exerts a biasing force on the upper portion and the lower portion that forces the upper portion and the lower portion against the at least one mounting flange.

3. The bracket of claim 2 wherein the mounting device can be moved from the first position to the second position by overcoming the biasing force imposed by the biasing device and sliding the mounting device along the at least one mounting flange to the second position.

4. The bracket of claim 3 wherein the biasing device is provided in the upper portion and biases a head of the fastener away from the at least one mounting flange and the lower portion has a section for gripping the fastener.

5. The bracket of claim 1 wherein the fastener passes from the upper portion, through the at least one mounting flange, through the lower portion and out a bottom end of the lower portion.

6. The bracket of claim 1 wherein the at least one mounting flange further comprises at least one position indicator positioned relative to the slot and indicating the second position.

7. The bracket of claim 6 wherein the at least one position indicator includes a notch in the at least one mounting flange that mates with a protrusion on the mounting device to secure the mounting device at the second position.

8. The bracket of claim 1 wherein each mounting device of the mounting device on a mounting flange of the at least one mounting flange extends outwards at a substantially right angles to a direction of extension of an adjacent mounting device of the mounting device on an adjacent mounting flange of the at least one mounting flange.

9. A bracket for connecting a computer component to connection points associated with a plurality of computer circuit boards, each of the plurality of computer circuit boards having a different sized socket, the bracket comprising:

at least one attachment mount for attaching the bracket to the computer component;

at least one mounting flange; a mounting device including an Upper portion provided on one side of each mounting flange of the at least one mounting flange; a lower portion provided on an other side of the each mounting flange; and a fastener passing through the upper portion and the lower portion, the fastener connectable to one of the connection points and positioned on the at least one mounting flange, the mounting device adjustable relative to the at least one mounting flange from a first position on the at least one mounting flange corresponding to a first spacing of the connection points associated with a first type of the different sized socket to a second position corresponding to a second spacing of the connection points associated with a second type of the different sized socket; and

a biasing device that exerts a biasing force on the upper portion and the lower portion that forces the upper portion and the lower portion against the at least one mounting flange,

wherein the mounting device can be moved from the first position to the second position by overcoming the biasing force imposed by the biasing device and sliding the mounting device along the at least one mounting flange to the second position.

10. The bracket of claim 9 wherein the fastener passes from the upper portion, through the at least one mounting flange, through the lower portion and out a bottom end of the lower portion.

11. The bracket of claim 9 further comprising a slot provided in the at least one mounting flange, the fastener passing through the slot so that the slot defines a path of movement between the first position and the second position of the mounting device relative to the at least one mounting flange.

12. The bracket of claim 9 wherein the biasing device is provided in the upper portion and biases a head of the fastener away from the at least one mounting flange and the lower portion has a section for gripping the fastener.

13. The bracket of claim 9 wherein the at least one mounting flange further comprises at least one position indicator positioned relative to the slot and indicating the second position.

14. The bracket of claim 13 wherein the at least one position indicator includes a notch in the at least one mounting flange that mates with a protrusion on the mounting device to secure the mounting device at the second position.

15. The bracket of claim 9 wherein each mounting device of the mounting device on a mounting flange of the at least one mounting flange extends outwards in a direct at a substantially right angles to a direction of extension of an adjacent mounting device of the mounting device on an adjacent mounting flange of the at least one mounting flange.

16. A bracket for connecting a computer component to connection points associated with a plurality of computer circuit boards, each of the plurality of computer circuit boards having a different sized socket, the bracket comprising:

at least one attachment mount for attaching the bracket to the computer component;

at least one mounting flange; and

a mounting device including an upper portion provided on one side of each mounting flange of the at least one mounting flange; a lower portion provided on an other side of the each mounting flange; and a fastener connectable to one of the connection points and positioned on the at least one mounting flange, the mounting device adjustable relative to the at least one mounting flange from a first position on to the at least one mounting flange corresponding to a first spacing of the connection points associated with a first type of the different sized socket to a second position corresponding to a second spacing of the connection points associated with a second type of the different sized socket,

wherein the fastener passes from the upper portion, through the at least one mounting flange, through the lower portion and out a bottom end of the lower portion.

17. The bracket of claim 16 wherein the mounting device further comprises a biasing device that exerts a biasing force on the upper portion and the lower portion that forces the upper portion and the lower portion against the at least one mounting flange.

18. The bracket of claim 17 wherein the mounting device can be moved from the first position to the second position by overcoming the biasing force imposed by the biasing device and sliding the mounting device along the at least one mounting flange to the second position.

19. The bracket of claim 18 wherein the biasing device is provided in the upper portion and biases a head of the fastener away from the at least one mounting flange and the lower portion has a section for gripping the fastener.

20. The bracket of claim 16 further comprising a slot provided in the at least one mounting flange, the fastener passing through the slot so that the slot defines a path of movement between the first position and the second position of the mounting device relative to the at least one mounting flange.

21. The bracket of claim 16 wherein the at least one mounting flange further comprises at least one position indicator positioned relative to the slot and indicating the second position.

22. The bracket of claim 21 wherein the at least one position indicator includes a notch in the at least one mounting flange that mates with a protrusion on the mounting device to secure the mounting device at the second position.

23. The bracket of claim 16 wherein each mounting device of the mounting device on a mounting flange of the at least one mounting flange extends outwards at a substantially right angles to a angles to a direction of extension of an adjacent mounting device of the mounting device on an adjacent mounting flange of the at least one mounting flange.

24. A computer component adjustably connectable to connection points associated with a plurality of computer circuit boards, each of the plurality of computer circuit boards having a different sized socket, the computer component comprising:

at least one mounting flange;

a mounting device including an upper portion provided on one side of each mounting flange of the at least one mounting flange; a lower portion provided on an other side of the each mounting flange; and a fastener passing through the upper portion and the lower portion, the fastener connectable to one of the connection points and positioned on the at least one mounting flange, the mounting device movable on the at least one mounting flange from a first position corresponding to a first spacing of the connection points associated with a first type of the different sized socket to a second position corresponding to a second spacing of the connection points associated with a second type of the different sized socket; and

a biasing device that exerts a biasing force on the upper portion and the lower portion that forces the upper portion and the lower portion against the at least one mounting flange,

wherein the mounting device can be moved from the first position to the second position by overcoming the biasing force imposed by the biasing device and sliding the mounting device along the at least one mounting flange to the second position.

25. The computer component of claim 24 wherein the fastener passes from the upper portion, through the at least one mounting flange, through the lower portion and out a bottom end of the lower portion.

26. The computer component of claim 25 further comprising a slot provided in the at least one mounting flange, the fastener passing through the slot so that the slot defines a path of movement between the first position and the second position of the mounting device relative to the at least one mounting flange.

27. The computer component of claim 26 wherein the at least one mounting flange further comprises at least one position indicator positioned relative to the slot and indicating the second position.

28. The computer component of claim 27 wherein the at least one position indicator includes a notch in the at least one mounting flange that mates with a protrusion on the mounting device to secure the mounting device at the second position.

29. The computer component of claim 24 wherein the computer component is a cooling component.

30. The computer component of claim 29 wherein the cooling component is at least one of: a heat sink, a fan, and a heat exchanger.

31. A method of connecting a computer component to connection points associated with a plurality of circuit boards, each of the plurality of circuit boards having a different sized socket on the each of the plurality of circuit boards, the method comprising:

providing a computer component having a plurality of mounting flanges and a plurality of mounting devices, each mounting flange of the plurality of mounting flanges having a mounting device of the plurality of mounting devices provided thereon;

adjusting each mounting device of the plurality of mounting devices relative to the each mounting flange to correspond with a spacing of the connection points associated with the socket; and

using the plurality of mounting devices to secure the computer component to the connection points associated with the each of the plurality of circuit boards having the different sized socket,

wherein the each mounting device of the plurality of mounting devices is adjusted by separating an upper portion of the mounting device and a lower portion of the mounting device from the each mounting flange and after separating, moving the upper portion of the mounting device and the lower portion of the mounting device between the first position and the second position along the each mounting flange of the plurality of mounting flanges.

32. The method of claim 31 wherein the each mounting device is adjusted by moving the each mounting device in a direction along the each mounting flange that is at substantially a right angle to a direction of motion of an adjacent mounting device.

Assignments (10)
RELEASE OF SECURITY INTEREST Recorded Jul 2, 2026
From: ATB FINANCIAL
To: COOLIT SYSTEMS INC.
Reel/Frame 075164/0029 →
RELEASE OF SECURITY INTEREST Recorded Mar 23, 2022
From: KLINE HILL PARTNERS FUND II LP
To: COOLIT SYSTEMS INC.
Reel/Frame 059381/0437 →
RELEASE OF SECURITY INTEREST Recorded Mar 23, 2022
From: VISTARA TECHNOLOGY GROWTH FUND III LIMITED PARTNERSHIP, BY ITS GENERAL PARTNER, VISTARA GENERAL PARTNER III INC.
To: COOLIT SYSTEMS INC.
Reel/Frame 059381/0126 →
RELEASE OF SECURITY INTEREST Recorded Mar 23, 2022
From: COMERICA BANK
To: COOLIT SYSTEMS INC.
Reel/Frame 059380/0518 →
SECURITY INTEREST Recorded Dec 23, 2020
From: COOLIT SYSTEMS INC.
To: ATB FINANCIAL
Reel/Frame 054739/0750 →
SECURITY INTEREST Recorded Jun 3, 2020
From: COOLIT SYSTEMS INC
To: KLINE HILL PARTNERS FUND II LP
Reel/Frame 052820/0146 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ADDRESS FOR THE ASSIGNEE PREVIOUSLY RECORDED ON REEL 047264 FRAME 0570. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNEE ADDRESS IS: SUITE 680, 1285 WEST BROADWAY,VANCOUVER, BRITISH COLUMBIA, CANADA V6H 3X8. Recorded Oct 25, 2018
From: COOLIT SYSTEMS INC.
To: VISTARA TECHNOLOGY GROWTH FUND III LIMITED PARTNERSHIP, BY ITS GENERAL PARTNER, VISTARA GENERAL PARTNER III INC.
Reel/Frame 047312/0966 →
SECURITY INTEREST Recorded Oct 22, 2018
From: COOLIT SYSTEMS INC.
To: VISTARA TECHNOLOGY GROWTH FUND III LIMITED PARTNERSHIP, BY ITS GENERAL PARTNER, VISTARA GENERAL PARTNER III INC.
Reel/Frame 047264/0570 →
SECURITY AGREEMENT Recorded Jan 8, 2013
From: COOLIT SYSTEMS INC.
To: COMERICA BANK, A TEXAS BANKING ASSOCIATION AND AUTHORIZED FOREIGN BANK UNDER THE BANK ACT (CANADA)
Reel/Frame 029586/0197 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 18, 2012
From: LYON, GEOFF SEAN
To: COOLIT SYSTEMS INC.
Reel/Frame 027554/0915 →
Continuity (1)
Related Publication 20110149506A1 · Jun 23, 2011