CN203181487U - A liquid cooling heat dissipating device equipped with a monitoring panel - Google Patents

A liquid cooling heat dissipating device equipped with a monitoring panel Download PDF

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Publication number
CN203181487U
CN203181487U CN 201320140452 CN201320140452U CN203181487U CN 203181487 U CN203181487 U CN 203181487U CN 201320140452 CN201320140452 CN 201320140452 CN 201320140452 U CN201320140452 U CN 201320140452U CN 203181487 U CN203181487 U CN 203181487U
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CN
China
Prior art keywords
liquid
monitoring panel
cooling heat
heat radiator
shell
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Expired - Fee Related
Application number
CN 201320140452
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Chinese (zh)
Inventor
李佳训
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Enermax Technology Corp
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Enermax Technology Corp
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Priority to CN 201320140452 priority Critical patent/CN203181487U/en
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Publication of CN203181487U publication Critical patent/CN203181487U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model provides a liquid cooling heat dissipating device equipped with a monitoring panel. The liquid cooling heat dissipating device comprises a cold plate, a liquid pump vertically disposed on the cold plate, a control circuit board arranged between the cold plate and the liquid pump, a monitoring panel, and more than two LED chips. The cold plate comprises a first housing which includes a first pipe connector and a first port. The liquid pump comprises a second housing. An impeller and driving coil set are disposed in the second housing. The second housing comprises a second pipe connector and a second port. The second pipe connector is communicated with the first pipe connector. The control circuit board is electrically connected with the driving coil set. The monitoring panel is disposed on the outer side of the first housing. The monitoring panel comprises a display and is electrically connected with the control circuit board. The LED chips are disposed on the monitoring panel and emit different colors according to the state of the liquid cooling heat dissipating device. Therefore, an effect of monitoring the operation of the liquid cooling heat dissipating device is achieved.

Description

Liquid-cooling heat radiator with monitoring panel
Technical field
The relevant a kind of liquid-cooling heat radiator of the utility model, relevant especially a kind of liquid-cooling heat radiator with monitoring panel.
Background technology
Along with development of science and technology, it is more and more faster that computer now not only operates speed, and function is powerful further.In addition, for meeting day by day compact designer trends, for the also raising relatively of requirement of radiating efficiency.Therefore for the heat radiation of high pyrotoxin, traditional force air cooling has not been applied and has been used, and the substitute is liquid-cooling system.
General liquid-cooling system is arranged in the main frame.Liquid-cooling system includes water-cooled head (cold plate), water pump (pump) and heat radiation row (heat dissipator), three's formation circulation line that is interconnected.Be filled with working fluid (being generally water) in the circulation line, a water-cooled contact heating source, and with heat exchange pattern the spontaneous thermal source of heat energy that pyrotoxin produces is taken away.Then, the water that water pump drives in the circulation line circulates, and the water-cooled of flowing through head also carries out heat exchange with the water-cooled head, more entrained thermal energy conduction to heat radiation is arranged at last, with loss to extraneous air.
Yet because the aforesaid liquid cooling system is after long-term the use, its working fluid may reduce because of evaporation, causes radiating efficiency to reduce.In addition, if the liquid-cooling system fault then may cause the electronic building brick in the computer to be damaged because of overheated.Therefore, operating state how to learn liquid-cooling system is important problem.
In view of this, the applicant satisfies at above-mentioned prior art, and the spy concentrates on studies and cooperates the utilization of scientific principle, solves the above problems as possible, namely becomes the target of the applicant's improvement.
The utility model content
In view of this, main purpose of the present utility model is to provide a kind of liquid-cooling heat radiator with monitoring panel, with the purpose of the running that reaches the monitoring liquid-cooling heat radiator, and keeps radiating efficiency, prevents that electronic building brick from damaging because of overheated.
For achieving the above object, the utility model provides a kind of liquid-cooling heat radiator with monitoring panel, this liquid-cooling heat radiator is used for the heat generating component on the cooling circuit board, and this liquid-cooling heat radiator comprises water-cooled head, liquid pump, control circuit board, monitoring panel and two above led chips.A water-cooled thermal conductance connects described heat generating component, and this water-cooled head comprises first shell, has first pipe joint and first port on this first shell.The liquid pump vertically is stacked on the water-cooled head, this liquid pump comprises second shell, the inside of this second shell is provided with impeller and around the drive coil group of this impeller, described second shell has second pipe joint and second port that is interconnected, and described second pipe joint is communicated with described first pipe joint.Control circuit board is between described water-cooled head and described liquid pump, and this control circuit board electrically connects described drive coil group.The monitoring panel has the display of the status data that can show described liquid-cooling heat radiator, and this monitoring panel electrically connects described control circuit board, and is arranged on the outside of described first shell.Two above led chips are the led chip of different colours, and described led chip is arranged on the described monitoring panel, and send light sources of different colors according to the numerical value of the status data of described liquid-cooling heat radiator.
Preferably, described liquid-cooling heat radiator also comprises case, and this case is covered in the outside of described first shell and described second shell.
Preferably, described monitoring panel is mounted in the end face of described case.
Preferably, described liquid-cooling heat radiator also comprises heat radiation row and fan, and described heat radiation row is communicated with described first port of described first shell and described second port of described second shell, and described fan is arranged on the described heat radiation row.
Preferably, described monitoring panel electrically connects described fan, and described display shows the revolution of described fan.
Preferably, described monitoring panel also comprises two above buttons, described revolution by the described fan of key control.
Preferably, described monitoring panel also comprises two above buttons, and is described by the described drive coil group of key control.
Preferably, described monitoring panel electrically connects described circuit board, and described display shows the temperature of described heat generating component.
Preferably, described liquid-cooling heat radiator is placed in the casing, and described monitoring panel exposes on described casing.
Compared with prior art, liquid-cooling heat radiator of the present utility model is provided with the monitoring panel.The monitoring panel can be arranged on the end face of first shell or is mounted on the casing, learns the operating state of liquid-cooling heat radiator or the running of control liquid-cooling heat radiator whereby, and then keeps radiating efficiency, and prevent that electronic building brick from damaging because of overheated.
Description of drawings
Fig. 1 is the schematic perspective view with liquid-cooling heat radiator of monitoring panel of the present utility model;
Fig. 2 is the schematic perspective view of water-cooled head of the present utility model and liquid pump;
Fig. 3 is the perspective exploded view () of water-cooled head of the present utility model and liquid pump;
Fig. 4 is the perspective exploded view (two) of water-cooled head of the present utility model and liquid pump;
Fig. 5 is the schematic diagram with another embodiment of the liquid-cooling heat radiator of monitoring panel of the present utility model.
Description of reference numerals
1 liquid-cooling heat radiator, 2 circuit boards
3 heat generating components, 4 casings
10 water-cooleds, 11 first shell
111 first pipe joints, 112 first ports
12 heat exchange runners, 13 bafflers
20 liquid pumps, 21 second shells
211 second pipe joints, 212 second ports
22 impellers, 23 drive coil groups
25 waterproof washers, 30 control circuit boards
40 monitoring panels, 41 displays
42 button 43LED chips
50 heat radiation rows, 60 fans
70 tube connectors, 80 cases
Embodiment
Relevant technology contents of the present utility model and detailed description are described as follows conjunction with figs., yet appended accompanying drawing purposes as an illustration only is not for limitation the utility model.
See also Fig. 1, be the schematic perspective view with liquid-cooling heat radiator of monitoring panel of the present utility model.The heat generating component 3 that liquid-cooling heat radiator 1 with monitoring panel of the present utility model is used on the cooling circuit board 2.This liquid-cooling heat radiator 1 comprises water-cooled head (cold plate) 10, liquid pump 20, control circuit board 30, monitoring panel 40 and heat radiation row (condenser) 50.
Please refer to Fig. 2 to Fig. 4, be respectively the schematic perspective view of water-cooled head of the present utility model and liquid pump and perspective exploded view (), (two).This water-cooled 10 thermal conductance connect this heat generating component 3 (as shown in Figure 1).This water-cooled 10 comprises first shell 11, heat exchange runner 12 and baffler 13.
First shell 11 preferably is flat, and has first pipe joint 111 and first port 112 on this first shell 11.This heat exchange runner 12 and this baffler 13 are arranged in this first shell 11.The parallel fluid channels of this heat exchange runner 12 for being constituted by the fin that is arranged in parallel more than two (fins), but not as limit.This first pipe joint 111 preferably is hard tube, and this first pipe joint 111 is communicated with the inside of first shell 11.One end of this baffler 13 is in abutting connection with this first port 112.
Liquid pump 20 vertically is stacked on this water-cooled 10.This liquid pump 20 comprises second shell 21, and the inside of this second shell 21 is provided with the drive coil group 23 that impeller 22 reaches around this impeller 22.This second shell 21 has second pipe joint 211 and second port 212 that is interconnected.When 20 groups of this liquid pumps are located at the top of this water-cooled 10, second pipe joint 211 and the 111 urgent sockets of first pipe joint, and this second pipe joint 211 is communicated with these first pipe joints 111.Preferably, be connected with waterproof washer 25 between this first pipe joint 111 and second pipe joint 211, so that the usefulness of waterproof to be provided.
This control circuit board 30 is between this water-cooled 10 and this liquid pump 20, and this control circuit board 30 electrically connects these drive coil groups 23, with the revolution of control impeller 22.
This monitoring panel 40 has two above led chips 43 of the display 41 of the status data that can show liquid-cooling heat radiator 1, two above buttons 42 and different colours.This monitoring panel 40 electrically connects this control circuit board 30, and is arranged on the outside of this first shell 11.This monitoring panel 40 also can electrically connect this circuit board 2, to demonstrate the status data of liquid-cooling heat radiator 1 on this display 41, as the temperature of this heat generating component 3.In addition, these led chips 43 are used for providing this display 41 required light source, and send light sources of different colors according to the numerical value of the status data of this liquid-cooling heat radiator 1.For example, when being higher than a certain numerical value, these display 41 temperature displayed values then demonstrate red backlight color.On the other hand, shown in green or blue backlight color then when these display 41 temperature displayed values are lower than a certain numerical value.
As shown in Figure 1, liquid-cooling heat radiator 1 also comprises fan 60 and two tube connectors 70 and case 80.This fan 60 is arranged on this heat radiation row 50, and this heat radiation is arranged 50 and is communicated in water-cooled 10 and liquid pump 20 respectively by these two tube connectors 70, to constitute airtight circulation line.Fill with working fluid in the circulation line, working fluid is water preferably, but the utility model is not limited to water, also can be alcohol or other liquid etc.In the present embodiment, this heat radiation row 50 is communicated with first port 112 of this first shell 11 and second port 212 of this second shell 21.
Preferably, this monitoring panel 40 electrically connects this fan 60, so that this display 41 can show the revolution of this fan 60.In addition, this monitoring panel 40 also can be controlled the running of this fan 60.This monitoring panel 40 also can be by the revolution of these button 42 these fans 60 of control.In addition, these buttons 42 also can be used for controlling this drive coil group 23.When reality was used, this monitored the button 42 of panel 40 to the user by operation, and then controls the revolution of this impeller 22.
In addition, this case 80 is covered in the outside of this first shell 11 and this second shell 21, makes this water-cooled 10, liquid pump 20 and control circuit board 30 form the heat abstractor of integral types.In the present embodiment, this monitoring panel 40 is mounted in the end face of this case 80, supervises the use state of this liquid-cooling heat radiator 1 to make things convenient for the user.
What deserves to be mentioned is that because this display 41 also can show the revolution of this fan 60, therefore, the led chip 43 on this monitoring panel 40 also can send light sources of different colors according to the difference of fan 60 revolutions.Please consult Fig. 5 in addition, be the schematic diagram with another embodiment of the liquid-cooling heat radiator of monitoring panel of the present utility model.In the present embodiment, this liquid-cooling heat radiator 1 is placed in the casing 4.These monitoring panel 40 outer sides that are exposed at this casing 4 are monitored the operating state that this liquid-cooling heat radiator 1 is used for the heat generating component 3 on the cooling circuit board 2 to make things convenient for the user.
The above only is the specifying of preferred embodiment of the present utility model, and is not in order to limiting to protection range of the present utility model, and other any equivalent transformation all should belong to the application's claim scope.

Claims (9)

1. the liquid-cooling heat radiator with monitoring panel is characterized in that, this liquid-cooling heat radiator is used for the heat generating component on the cooling circuit board, and this liquid-cooling heat radiator comprises:
Water-cooled head, thermal conductance connect described heat generating component, and this water-cooled head comprises first shell, and this first shell has first pipe joint and first port;
The liquid pump, vertically be stacked on the described water-cooled head, this liquid pump comprises second shell, the inside of this second shell is provided with impeller and around the drive coil group of this impeller, described second shell has second pipe joint and second port that is interconnected, and described second pipe joint is communicated with described first pipe joint;
Control circuit board, between described water-cooled head and described liquid pump, this control circuit board electrically connects described drive coil group;
Monitor panel, have the display of the status data that can show described liquid-cooling heat radiator, this monitoring panel electrically connects described control circuit board, and is arranged on the outside of described first shell; And
Two above led chips are the led chip of different colours, and described led chip is arranged on the described monitoring panel, and send light sources of different colors according to the numerical value of the status data of described liquid-cooling heat radiator.
2. the liquid-cooling heat radiator with monitoring panel as claimed in claim 1 is characterized in that this liquid-cooling heat radiator also comprises case, and this case is covered in the outside of described first shell and described second shell.
3. the liquid-cooling heat radiator with monitoring panel as claimed in claim 2 is characterized in that described monitoring panel is mounted in the end face of described case.
As claimed in claim 2 have the monitoring panel liquid-cooling heat radiator, it is characterized in that, this liquid-cooling heat radiator also comprises heat radiation row and fan, described heat radiation row is communicated with described first port of described first shell and described second port of described second shell, and described fan is arranged on the described heat radiation row.
5. the liquid-cooling heat radiator with monitoring panel as claimed in claim 4 is characterized in that described monitoring panel electrically connects described fan, and described display shows the revolution of described fan.
6. the liquid-cooling heat radiator with monitoring panel as claimed in claim 5 is characterized in that described monitoring panel also comprises two above buttons, described revolution by the described fan of key control.
7. the liquid-cooling heat radiator with monitoring panel as claimed in claim 1 is characterized in that described monitoring panel also comprises two above buttons, and is described by the described drive coil group of key control.
8. the liquid-cooling heat radiator with monitoring panel as claimed in claim 1 is characterized in that described monitoring panel electrically connects described circuit board, and described display shows the temperature of described heat generating component.
9. the liquid-cooling heat radiator with monitoring panel as claimed in claim 1 is characterized in that described liquid-cooling heat radiator is placed in the casing, and described monitoring panel exposes on described casing.
CN 201320140452 2013-03-26 2013-03-26 A liquid cooling heat dissipating device equipped with a monitoring panel Expired - Fee Related CN203181487U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201320140452 CN203181487U (en) 2013-03-26 2013-03-26 A liquid cooling heat dissipating device equipped with a monitoring panel

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 201320140452 CN203181487U (en) 2013-03-26 2013-03-26 A liquid cooling heat dissipating device equipped with a monitoring panel

Publications (1)

Publication Number Publication Date
CN203181487U true CN203181487U (en) 2013-09-04

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN 201320140452 Expired - Fee Related CN203181487U (en) 2013-03-26 2013-03-26 A liquid cooling heat dissipating device equipped with a monitoring panel

Country Status (1)

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CN (1) CN203181487U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2020155265A1 (en) * 2019-01-31 2020-08-06 深圳市研派科技有限公司 Fluid cooling device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2020155265A1 (en) * 2019-01-31 2020-08-06 深圳市研派科技有限公司 Fluid cooling device

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20130904

Termination date: 20190326