IP Library Granted Patent US 9,596,781
Granted Patent B2
US 9,596,781 · App. 13/696,155 · Granted Mar 14, 2017

Rack housing to hold a plurality of insertion components

Inventors: Bernhard Schrader (Delbrück, DE); Van Son Nguyen (Warendorf, DE)
Assignee: FUJITSU LIMITED
H05K7/20H05K7/2019H05K7/20736
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Quick Facts
Patent No.
US 9,596,781
App. No.
13/696,155
Granted
Mar 14, 2017
Kind
B2
Abstract

A rack housing that holds a plurality of insertion components includes a plurality of insertion positions that hold the plurality of insertion components in a first area of the rack housing adjacent to a first housing side, a reduced pressure shaft in a second area of the rack housing adjacent to the first area, wherein between the reduced pressure shaft and the insertion components, first openings are provided to thereby remove air heated by the insertion components into the reduced pressure shaft, at least two second openings that suction off heated air from the reduced pressure shaft, and at least two non-return arrangements located in the reduced pressure shaft and correlated to the two second openings, the non-return arrangements preventing entry of air through the correlated second opening if no air is suctioned off through this second opening.

Claims (32)

1. A rack housing designed to hold a plurality of insertion components comprising:

a plurality of insertion positions designed to hold the plurality of insertion components in a first area of the rack housing adjacent to a first housing side;

a reduced pressure shaft in a second area of the rack housing adjacent to the first area and a partition wall located between the first area and the second area, wherein, in the partition wall between the reduced pressure shaft and the insertion components, first openings are provided to thereby remove air heated by the insertion components into the reduced pressure shaft;

at least two second openings in the rack housing designed to suction off heated air from the reduced pressure shaft such that a reduced pressure can prevail in the reduced pressure shaft; and

at least two non-return arrangements located in the reduced pressure shaft and correlated to the two second openings such that each of the non-return arrangements preventing entry of air through the correlated second opening if no air is suctioned off through this second opening, wherein

an exhaust air unit located on the rack housing with at least two ventilator units correlated with the second openings for the suctioning off of the heated air,

at least one first pressure sensor is included in the area of the reduced pressure shaft; and

a control device is connected with the at least one first pressure sensor and the at least two ventilator units to control the ventilator units as a function of pressure in the reduced pressure shaft measured by the first pressure sensor, and

the control device compares pressure measured by the first pressure sensor with a desired value and deactivates at least one of the at least two ventilator units when only one ventilator unit is required to maintain the desired value.

2. The rack housing according to claim 1 , further comprising at least one separation wall located between the at least two non-return arrangements and partially in the reduced pressure shaft to increase a flow resistance between the at least two second openings, the at least one separation wall separating the second openings from one another for ventilation purposes so that there will not be a short-circuit flow between the at least two second openings during a breakdown of a suction device for the heated air.

3. The rack housing according to claim 2 , wherein the at least two non-return arrangements are located at an incline relative to the second openings in the reduced pressure shaft.

4. The rack housing according to claim 1 , wherein the nonreturn arrangements are return flaps or return lamellae.

5. The rack housing according to claim 1 , wherein density, size, and/or number of first openings in the partition wall depend on a distance of the insertion position to the second openings and/or the non-return arrangements.

6. The rack housing according to claim 1 , wherein the exhaust air unit comprises a heat exchanger that transfers thermal energy of the heated air to a cooling medium.

7. The rack housing according to claim 1 , wherein the ventilator units are axial ventilators or screw ventilators and the exhaust air unit is upwardly open in an area of the ventilator units.

8. The rack housing according to claim 1 , wherein the at least two ventilator units are located in at least two separate holding devices which can be removed individually from the exhaust air unit.

9. The rack housing according to claim 1 , wherein the ventilator units are hot-plug components which can be taken out while in operation, wherein upon removal of one of the ventilator units, correlated second openings are automatically closed by a correlated return arrangement so that a suctioning off of the heated air takes place via another ventilator unit.

10. The rack housing according to claim 1 , further comprising at least two actuators correlated with the at least two non-return arrangements and connected with the control device to open and close the non-return arrangements with the control device.

11. The rack housing according to claim 1 , wherein the nonreturn arrangements close automatically if a lower air pressure prevails in the reduced pressure shaft than in an area of the corresponding second opening and open automatically if a higher pressure prevails in the reduced pressure shaft than in the area of the corresponding second opening.

12. The rack housing according to claim 1 , wherein the rack housing and/or the exhaust air unit connect to an exhaust air system of a building.

13. The rack housing according to claim 1 , wherein density, size, and/or number of first openings in the partition wall increases depending on a distance of the insertion position to the second openings and/or the non-return arrangements.

14. A system comprising:

a rack housing designed to hold a plurality of insertion components and

an exhaust air unit having at least two ventilator units to suction off heated air, wherein the exhaust air unit is located on the rack housing, the rack housing comprising:

a plurality of insertion positions designed to hold the plurality of insertion components in a first area of the rack housing adjacent to a first housing side;

a reduced pressure shaft in a second area of the rack housing adjacent to the first area and a partition wall located between the first area and the second area, wherein, in the partition wall between the reduced pressure shaft and the insertion components, first openings are provided to thereby remove air heated by the insertion components into the reduced pressure shaft;

at least two second openings in the rack housing designed to suction off heated air from the reduced pressure shaft, wherein the at least two openings are correlated with the at least two ventilator units of the exhaust air unit such that a reduced pressure can prevail in the reduced pressure shaft; and

at least two non-return arrangements located in the reduced pressure shaft and correlated to the at least two openings each of the non-return arrangements preventing entry of air through the correlated second opening if no air is suctioned off through the second opening, wherein

at least one first pressure sensor is included in the area of the reduced pressure shaft; and

a control device is connected with the at least one first pressure sensor and the at least two ventilator units to control the ventilator units as a function of pressure in the reduced pressure shaft measured by the first pressure sensor, and

the control device compares pressure measured by the first pressure sensor with a desired value and deactivates at least one of the at least two ventilator units when only one ventilator unit is required to maintain the desired value.

15. The system according to claim 14 , further comprising at least one separation wall located between the at least two non-return arrangements and partially in the reduced pressure shaft to increase a flow resistance between the at least two second openings, the at least one separation wall separating the second openings from one another for ventilation purposes so that there will not be a short-circuit flow between the at least two second openings during a breakdown of a suction device for the heated air.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE APPLICATION NUMBER PREVIOUSLY RECORDED AT REEL: 029619 FRAME: 0619. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT . Recorded Apr 18, 2017
From: SCHRADER, BERNHARD; NGUYEN, VAN SON
To: FUJITSU LIMITED
Reel/Frame 042278/0330 →
NUNC PRO TUNC ASSIGNMENT Recorded Feb 23, 2017
From: FUJITSU TECHNOLOGY SOLUTIONS INTELLECTUAL PROPERTY GMBH
To: FUJITSU LIMITED
Reel/Frame 041353/0914 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 7, 2013
From: SCHRADER, BERNHARD; NGUYEN, VAN SON
To: FUJITSU TECHNOLOGY SOLUTIONS INTELLECTUAL PROPERTY GMBH
Reel/Frame 029575/0024 →
Priority Claims (2)
DE 10 2010 019 483 · May 5, 2010 · national
DE 10 2010 021 019 · May 19, 2010 · national
Continuity (1)
Related Publication 20130127313A1 · May 23, 2013