CN201489410U - Radiating module and computer device - Google Patents

Radiating module and computer device Download PDF

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Publication number
CN201489410U
CN201489410U CN2009201733663U CN200920173366U CN201489410U CN 201489410 U CN201489410 U CN 201489410U CN 2009201733663 U CN2009201733663 U CN 2009201733663U CN 200920173366 U CN200920173366 U CN 200920173366U CN 201489410 U CN201489410 U CN 201489410U
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CN
China
Prior art keywords
radiating module
mainboard
housing
pyrotoxin
computer installation
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
CN2009201733663U
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Chinese (zh)
Inventor
萧丞隆
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Via Technologies Inc
Original Assignee
Via Technologies Inc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Via Technologies Inc filed Critical Via Technologies Inc
Priority to CN2009201733663U priority Critical patent/CN201489410U/en
Application granted granted Critical
Publication of CN201489410U publication Critical patent/CN201489410U/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Abstract

Disclosed are a radiating module and a computer device applying the same. The computer device comprises a casing body, a mainboard and a radiating module; the casing body is provided with a plurality of radiating fins; the mainboard is provided with at least one heating source; the radiating module includes a main body and a heat conducting post; the main body is suitable for being locked to the casing body and enabling the mainboard to be assembled thereon; the heat conducting post is embedded into the main body; one end of the heat conducting post is suitable for contacting with the heating source; and the other end of the heat conducting post is suitable for contacting with the casing body.

Description

Radiating module and computer installation
Technical field
The utility model is about a kind of computer installation, and particularly about a kind of computer installation of using radiating module.
Background technology
There are devices such as chipset on central processing unit, Winchester disk drive, the mainboard and display chip at the main thermal source place of main frame, and whether wherein dispel the heat with the chipset on central processing unit and the mainboard well important.
In general, supply the employed heat abstractor of main frame at present, add at each pyrotoxin place that often radiating fin, heat pipe and radiator fan reach the purpose of heat radiation.It utilizes the thermal conduction characteristic of heat pipe, can relend by the caused air-flow of radiator fan with the heat transferred of pyrotoxin to radiating fin, take away the heat on the radiating fin, yet the direct temperature conductivity of heat pipe is relatively poor, thereby its radiating effect limits to some extent.
Moreover above-mentioned these heat pipes or radiating fin are and directly are assembled on the mainboard so that can directly contact with pyrotoxin, the weight that this measure but causes mainboard need carry above-mentioned these heat abstractors, and mainboard is easy so and be out of shape.
In addition, for the load-bearing capacity that increases mainboard is out of shape to avoid mainboard, also need utilize the inner additional space setting of main frame can support the support of mainboard, to disperse the weight of above-mentioned heat abstractor, though this measure can solve the problem of mainboard distortion, causes the puzzlement of the excessive and difficult reduction of volume of main frame in addition.
The utility model content
The purpose of this utility model just provides a kind of radiating module and the computer installation of using this radiating module, and it has preferable radiating effect and lower cost of manufacture.
An embodiment of the present utility model proposes a kind of radiating module, and it is applicable to a computer installation, and wherein, this computer installation comprises a housing and a mainboard, and this mainboard has at least one pyrotoxin, and this radiating module comprises:
One body is suitable for securing to this housing, and this body is suitable for allowing this mainboard assemble on it; And
At least one heating column is embedded in this body, and an end of this heating column is suitable for being contacted with this pyrotoxin, and the other end of this heating column is suitable for being contacted with this housing.
An embodiment of the present utility model proposes a kind of computer installation, comprising:
One housing has a plurality of radiating fins;
One mainboard has at least one pyrotoxin; And
One radiating module is assembled to this housing, and this mainboard is assembled to this radiating module, and this radiating module contacts this housing and this pyrotoxin simultaneously.
Advantage of the present utility model is, in the foregoing description of the present utility model, casing has radiating fin, and radiating module while contact heating source and casing, thereby make radiating module the heat that pyrotoxin produced can be directly conducted to housing, and be dissipated into outside the computer installation via radiating fin.Moreover radiating module is directly to be assembled on the housing, and this measure makes mainboard can exempt the burden of radiating module and the possibility avoiding being out of shape.
For above-mentioned feature and advantage of the present utility model can be become apparent, embodiment cited below particularly, and conjunction with figs. is described in detail below.
Description of drawings
Fig. 1 is the synoptic diagram according to a kind of computer installation of the utility model one embodiment.
Fig. 2 is the decomposition diagram of the computer installation of Fig. 1.
Fig. 3 be in the computer installation of Fig. 2 radiating module and mainboard at the synoptic diagram at another visual angle.
Fig. 4 to Fig. 6 illustrates the sectional view of the computer installation of Fig. 1 at the radiating module place with diverse location respectively.
The primary clustering symbol description
100: computer installation 110: housing
112: radiating fin 120: mainboard
122,124: pyrotoxin 130: radiating module
131,151: screw 132: body
134,136: heating column 140: the input and output web joint
142: opening 144: connector
146: button 150: base plate
160: locking part 162: the screw body
164: spring washer
Embodiment
Fig. 1 is the synoptic diagram according to a kind of computer installation of the utility model one embodiment.Fig. 2 is the decomposition diagram of the computer installation of Fig. 1.Please also refer to Fig. 1 and Fig. 2, computer installation 100 comprises a housing 110, a mainboard 120, a radiating module 130, an input and output web joint 140 and a base plate 150.In the present embodiment, computer installation 100 for example is personal computer, industrial computer or car computer etc.At this, present embodiment is not limited to this.
Fig. 3 be in the computer installation of Fig. 2 radiating module and mainboard at the synoptic diagram at another visual angle.Please also refer to Fig. 2 and Fig. 3, base plate 150 is assembled to housing 110 by a plurality of screws 151, can ccontaining mainboard 120 to form, the space of input and output web joint 140 and radiating module 130.Housing 110 has a plurality of radiating fins 112, and it can together push and moulding when housing 110 is made.In the present embodiment, mainboard 120 has two pyrotoxins 122,124, and wherein pyrotoxin 122 is a central processing unit, and pyrotoxin 124 is south bridge or north bridge chipset, but present embodiment is not limited the quantity of pyrotoxin 122,124.
Moreover, input and output web joint 140 has an opening 142, radiating module 130 passes opening 142 and is assembled to housing 110, mainboard 120 is assembled to radiating module 130, and radiating module 130 contacts housing 110 and pyrotoxin 122,124 simultaneously, therefore pyrotoxin 122,124 heats that produced can directly conduct to housing 110 via radiating module 130, and loose via the radiating fin 112 of housing 110 and to overflow computer installation 100.
In addition, the weight of radiating module 130 because mainboard 120 need not be loaded, therefore avoided taking place traditional mainboard easy deformation or need the extra member that increases supporting mainboard, this measure and then spaces in the housing 110 of present embodiment are dwindled or as other designing institute utilizations.
On the other hand, input and output web joint 140 is assembled in the housing 110, and is electrically connected to mainboard 120.In the present embodiment, input and output web joint 140 has a plurality of connectors 144 and a plurality of buttons 146, in order to be connected with other peripheral devices.In the present embodiment, input and output web joint 140 is separated with mainboard 120 and is provided with so that mainboard 120 is able to downsizing and standardization, and and then make pyrotoxin 122,124 centralized configuration on mainboard 120, with the effect of increase radiating module 130 heat conduction.Moreover, in case mainboard 120 because of the standardization volume production after, input and output web joint 140 just can be made demand towards different visitors and make, this measure also can increase computer installation 100 diversity in design.
Fig. 4 to Fig. 6 illustrates the sectional view of the computer installation of Fig. 1 at the radiating module place with diverse location respectively.Please refer to Fig. 3, Fig. 4 and Fig. 5, radiating module 130 comprises a body 132 and two heating columns 134,136, and wherein body 132 passes through the opening 142 of input and output web joint 140, and locks on housing 110 by a plurality of screws 131.Heating column 134,136 is embedded in body 132 and corresponds respectively to pyrotoxin 122,124.One end in contact of each heating column 134,136 is in pyrotoxin 122,124, and the other end of each heating column 134,136 then is contacted with housing 110.
In the present embodiment, the material of heating column 134,136 for example is aluminium alloy, silver alloy or aldary, its heat-conduction coefficient is greater than the heat-conduction coefficient of body 132, thereby can make pyrotoxin 122,124 heats that produced promptly be conducted to housing 110, cause computer installation 100 temperature to rise and can in the conduction way, not be deposited in housing 110 inside.Do not limit the material of heating column 134,136 at this, the deviser can select the material that is fit to according to pyrotoxin 122,124, every heat-conduction coefficient that allows heating column 134,136 greater than the heat-conduction coefficient of body 132 all applicable to present embodiment.
Moreover, present embodiment does not limit heating column 134,136 and is configured in quantity and position on the body 132, the deviser can be according to the quantity of pyrotoxin on the mainboard 120 122,124 and position and heating column 134,136 is disposed accordingly, allowing radiating module 130 have diversity in design, and be fit to the mainboard 120 of various different sizes.
Please also refer to Fig. 2 and Fig. 6, computer installation 100 also comprises a plurality of locking parts 160, in order to mainboard 120 and radiating module 130 are locked together.It should be noted that locking part 160 comprises a screw body 162 and a spring washer 164, wherein spring washer 164 is set on the screw body 162.When screw body 162 is locked on mainboard 120 and the radiating module 130, by the elasticity of spring washer 164, user thereby can adjust the tightness degree that radiating module 130 is contacted with pyrotoxin 122,124 whereby.
In sum, in computer installation of the present utility model, radiating module directly is assembled on the housing, and mainboard then is assembled on the radiating module, so mainboard need not bear the weight of radiating module, takes place with the situation of avoiding effectively being out of shape.
Moreover, radiating module comprises a plurality of heating columns, utilize its good thermal conduction characteristic, and the heat that pyrotoxin is produced is directly conducted to housing, so that dissipation goes out computer installation via the radiating fin of housing, compare with the thermal conducting tube phase in the conventional art, computer installation of the present utility model has preferable radiating efficiency and lower manufacturing cost.
Though the utility model with embodiment openly as above; right its is not in order to limit the utility model; have in the technical field under any and know the knowledgeable usually; in not breaking away from spirit and scope of the present utility model; when doing a little change and retouching, so protection domain of the present utility model is as the criterion when looking claims person of defining.

Claims (10)

1. a computer installation is characterized in that, comprising:
One housing has a plurality of radiating fins;
One mainboard has at least one pyrotoxin; And
One radiating module is assembled to this housing, and this mainboard is assembled to this radiating module, and this radiating module contacts this housing and this pyrotoxin simultaneously.
2. computer installation according to claim 1 is characterized in that, this radiating module comprises:
One body secures to this housing; And
At least one heating column is embedded in this body, and an end in contact of this heating column is in this pyrotoxin, and the other end of this heating column is contacted with this housing.
3. computer installation according to claim 2 is characterized in that the heat-conduction coefficient of this heating column is greater than the heat-conduction coefficient of this body.
4. computer installation according to claim 1 is characterized in that, also comprises:
A plurality of locking parts lock together this mainboard and this radiating module, and adjust the tight ness rating that this radiating module is contacted with this pyrotoxin.
5. computer installation according to claim 1 is characterized in that, also comprises:
One input and output web joint is assembled in this housing, and electrically connects this mainboard, and wherein this input and output web joint has an opening, and this radiating module passes this opening and is assembled between this housing and this mainboard.
6. computer installation according to claim 1 is characterized in that, this pyrotoxin is central processing unit or chipset.
7. a radiating module is applicable to a computer installation, it is characterized in that, this computer installation comprises a housing and a mainboard, and this mainboard has at least one pyrotoxin, and this radiating module comprises:
One body is suitable for securing to this housing, and this body is suitable for allowing this mainboard assemble on it; And
At least one heating column is embedded in this body, and an end of this heating column is suitable for being contacted with this pyrotoxin, and the other end of this heating column is suitable for being contacted with this housing.
8. radiating module according to claim 7 is characterized in that the heat-conduction coefficient of this heating column is greater than the heat-conduction coefficient of this body.
9. radiating module according to claim 7 is characterized in that, also comprises:
A plurality of locking parts are suitable for this mainboard and this body are locked together, and adjust the tight ness rating that this heating column contacts this pyrotoxin.
10. radiating module according to claim 7 is characterized in that, this computer installation also comprises an input and output web joint, and it has an opening, and this radiating module is suitable for passing this opening and is assembled between this housing and this mainboard.
CN2009201733663U 2009-08-27 2009-08-27 Radiating module and computer device Expired - Lifetime CN201489410U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2009201733663U CN201489410U (en) 2009-08-27 2009-08-27 Radiating module and computer device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2009201733663U CN201489410U (en) 2009-08-27 2009-08-27 Radiating module and computer device

Publications (1)

Publication Number Publication Date
CN201489410U true CN201489410U (en) 2010-05-26

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN2009201733663U Expired - Lifetime CN201489410U (en) 2009-08-27 2009-08-27 Radiating module and computer device

Country Status (1)

Country Link
CN (1) CN201489410U (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110250809A (en) * 2019-05-14 2019-09-20 武汉宝利标识展具制造有限公司 A kind of exhibition tool with display function
CN111615305A (en) * 2020-05-29 2020-09-01 上海联影医疗科技有限公司 Plug box and magnetic resonance system
TWI742608B (en) * 2020-04-10 2021-10-11 建碁股份有限公司 Electronic device

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110250809A (en) * 2019-05-14 2019-09-20 武汉宝利标识展具制造有限公司 A kind of exhibition tool with display function
TWI742608B (en) * 2020-04-10 2021-10-11 建碁股份有限公司 Electronic device
CN111615305A (en) * 2020-05-29 2020-09-01 上海联影医疗科技有限公司 Plug box and magnetic resonance system

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GR01 Patent grant
CX01 Expiry of patent term

Granted publication date: 20100526

CX01 Expiry of patent term