IP Library Granted Patent US 9,128,678
Granted Patent B2
US 9,128,678 · App. 13/687,884 · Granted Sep 8, 2015

Cabinet-level server and its centralized power supply shielding structure

Inventors: Ling Ye (Shenzhen, CN); Hangkong Hu (Shenzhen, CN); Yonghua Xie (Shenzhen, CN); Yangli Dai (Shenzhen, CN)
Assignee: Huawei Technologies Co., Ltd.
G06F1/182G06F1/181G06F1/26H05K5/0021H05K7/1492
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Quick Facts
Patent No.
US 9,128,678
App. No.
13/687,884
Granted
Sep 8, 2015
Kind
B2
Abstract

The present invention discloses a centralized power supply shielding structure of a cabinet-level server, where the structure includes multiple plug-in frames, a power supply copper bar which is configured to supply power to the multiple plug-in frames, and an inner container shielding can. Multiple plugs of the power supply copper bar are correspondingly inserted into the multiple plug-in frames to supply power to the multiple plug-in frames in a centralized way. The inner container shielding can wraps on a periphery of the power supply copper bar to shield the multiple plug-in frames from the power supply copper bar. The cabinet-level server and its centralized power supply shielding structure of the present invention implement a shielding structure for centralized power supply by a copper bar of integration of a frame and a cabinet, which can be applied in an application scene of an open rack and has a simple structural design.

Claims (40)

1. A centralized power supply shielding structure of a cabinet-level server, comprising:

multiple plug-in frames,

a power supply copper bar configured to supply power to the multiple plug-in frames, and an inner container shielding can,

wherein multiple plugs of the power supply copper bar are correspondingly inserted into the multiple plug-in frames to supply power to the multiple plug-in frames in a centralized way; and

the inner container shielding can wraps on a periphery of the power supply copper bar to shield the multiple plug-in frames from the power supply copper bar;

wherein the multiple plug-in frames comprise front plug-in frames and back plug-in frames, the multiple plug-in frames are stacked to form a front plug-in frame group and a back plug-in frame group which have a gap between them, and boards are disposed at opposite ends of the front plug-in frame group and the back plug-in frame group;

the power supply copper bar is accommodated in the gap between the front plug-in frame group and the back plug-in frame group; and

the inner container shielding can wraps and is disposed on a periphery of the gap between the front plug-in frame group and the back plug-in frame group to seal the power supply copper bar in the inner container shielding can.

2. The centralized power supply shielding structure of the cabinet-level server according to claim 1 , wherein the inner container shielding can is a hollow cubic structure which have openings at two opposite side ends; and

the two opposite open ends of the inner container shielding can are connected and wrap on peripheries of the two opposite side ends of the front plug-in frame group and the back plug-in frame group respectively to form a shielding enclosure.

3. The centralized power supply shielding structure of the cabinet-level server according to claim 2 , wherein a shielding material is disposed at joints between the inner container shielding can and the front plug-in frame group, and between the inner container shielding can and the back plug-in frame group.

4. The centralized power supply shielding structure of the cabinet-level server according to claim 1 , wherein holes are opened on the multiple plug-in frames at positions corresponding to the multiple plugs of the power supply copper bar, and the multiple plugs of the power supply copper bar are correspondingly inserted into the multiple plug-in frames through the holes; and

the inner container shielding can encloses on a periphery of the power supply copper bar and the multiple plug-in frames to shield the multiple plug-in frames from the power supply copper bar.

5. A centralized power supply shielding structure of a cabinet-level server, comprising:

one or more plug-in frames,

a power supply copper bar configured to supply power to the one or more plug-in frames, and an inner container shielding can,

wherein the inner container shielding can wraps on a periphery of the one or more plug-in frames to form a shielding unit and shields the one or more plug-in frames from the power supply copper bar; and

holes are opened on the shielding unit at positions corresponding to multiple plugs of the power supply copper bar, and the multiple plugs of the power supply copper bar are correspondingly inserted into the shielding unit through the holes to supply power to the one or more plug-in frames in a centralized way;

wherein the one or more plug-in frames comprise front plug-in frames and back plug-in frames, the multiple plug-in frames are stacked to form a front plug-in frame group and a back plug-in frame group which have a gap between them, and boards are disposed at opposite ends of the front plug-in frame group and the back plug-in frame group;

the power supply copper bar is accommodated in the gap between the front plug-in frame group and the back plug-in frame group; and

the inner container shielding can wraps and is disposed on a periphery of the gap between the front plug-in frame group and the back plug-in frame group to seal the power supply copper bar in the inner container shielding can.

6. The centralized power supply shielding structure of the cabinet-level server according to claim 5 , wherein a shielding material is disposed at joints between the inner container shielding can and the one or more plug-in frames.

7. The centralized power supply shielding structure of the cabinet-level server according to claim 6 , wherein multiple shielding units are stacked to form a shielding enclosure; and

the multiple plugs of the power supply copper bar are inserted into the shielding enclosure to supply power to the shielding units in the centralized way.

8. The centralized power supply shielding structure of the cabinet-level server according to claim 5 , wherein multiple shielding units are stacked to form a shielding enclosure; and

the multiple plugs of the power supply copper bar are inserted into the shielding enclosure to supply power to the shielding units in the centralized way.

9. A cabinet-level server, comprising a rack or a cabinet, wherein the cabinet-level server comprises a centralized power supply shielding structure of the cabinet-level server, and the centralized power supply shielding structure is assembled on the rack or the cabinet;

wherein the centralized power supply shielding structure of the cabinet-level server comprises:

multiple plug-in frames,

a power supply copper bar configured to supply power to the multiple plug-in frames, and an inner container shielding can,

wherein multiple plugs of the power supply copper bar are correspondingly inserted into the multiple plug-in frames to supply power to the multiple plug-in frames in a centralized way; and

the inner container shielding can wraps on a periphery of the power supply copper bar to shield the multiple plug-in frames from the power supply copper bar;

wherein the plug-in frames comprise front plug-in frames and back plug-in frames, the multiple plug-in frames are stacked to form a front plug-in frame group and a back plug-in frame group which have a gap between them, and boards are disposed at opposite ends of the front plug-in frame group and the back plug-in frame group;

the power supply copper bar is accommodated in the gap between the front plug-in frame group and the back plug-in frame group; and

the inner container shielding can wraps and is disposed on a periphery of the gap between the front plug-in frame group and the back plug-in frame group to seal the power supply copper bar in the inner container shielding can.

10. The cabinet-level server according to claim 9 , wherein the inner container shielding can is a hollow cubic structure which have openings at two opposite side ends; and

the two opposite open ends of the inner container shielding can are connected and wrap on peripheries of the two opposite side ends of the front plug-in frame group and the back plug-in frame group respectively to form a shielding enclosure.

11. The cabinet-level server according to claim 10 , wherein a shielding material is disposed at joints between the inner container shielding can and the front plug-in frame group, and between the inner container shielding can and the back plug-in frame group.

12. The cabinet-level server according to claim 9 , wherein holes are opened on the multiple plug-in frames at positions corresponding to the multiple plugs of the power supply copper bar, and the multiple plugs of the power supply copper bar are correspondingly inserted into the multiple plug-in frames through the holes; and

the inner container shielding can encloses on a periphery of the power supply copper bar and the multiple plug-in frames to shield the multiple plug-in frames from the power supply copper bar.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 10, 2022
From: HUAWEI TECHNOLOGIES CO., LTD.
To: XFUSION DIGITAL TECHNOLOGIES CO., LTD.
Reel/Frame 058682/0312 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 30, 2012
From: YE, LING; HU, HANGKONG; XIE, YONGHUA; DAI, YANGLI
To: HUAWEI TECHNOLOGIES CO., LTD.
Reel/Frame 029384/0896 →
Priority Claims (1)
CN 2011 1 0228366 · Aug 10, 2011 · national
Continuity (2)
Continuation PCTCN2012071396 · Feb 21, 2012
Related Publication 20130088821A1 · Apr 11, 2013