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CN210274987U - Novel electronic equipment heat dissipation paster - Google Patents

Novel electronic equipment heat dissipation paster Download PDF

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Publication number
CN210274987U
CN210274987U CN201921088887.9U CN201921088887U CN210274987U CN 210274987 U CN210274987 U CN 210274987U CN 201921088887 U CN201921088887 U CN 201921088887U CN 210274987 U CN210274987 U CN 210274987U
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CN
China
Prior art keywords
adhesive tape
heat
double
sided adhesive
electronic equipment
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Active
Application number
CN201921088887.9U
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Chinese (zh)
Inventor
佘华伟
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Dongguan Yuanguan Technology Co., Ltd
Original Assignee
Dongguan Yuanguan Plastic Mould Co ltd
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Priority to CN201921088887.9U priority Critical patent/CN210274987U/en
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Abstract

The utility model discloses a novel electronic equipment heat dissipation paster, it includes: the microfiber piece is fixedly attached to the electronic equipment; the second heat-conducting double-sided adhesive tape is arranged on the lower end face of the microfiber piece; the middle part of the graphite flake is provided with a window, and the graphite flake is arranged on the lower end surface of the second heat-conducting double-sided adhesive tape; and the shape of the first heat-conducting double-sided adhesive tape is matched with that of the window, the first heat-conducting double-sided adhesive tape is arranged on the lower end face of the second heat-conducting double-sided adhesive tape and is placed in the window, and the lower end face of the first heat-conducting double-sided adhesive tape is flush with the lower end face of the graphite flake. When the electronic equipment runs, a large amount of heat generated by the electronic equipment is absorbed by the second heat-conducting double-sided adhesive tape, is conducted to the graphite sheet and is dissipated by the graphite sheet, so that the high-efficiency heat-conducting and heat-dissipating effect is achieved; the utility model is a sheet product, which has thinner thickness, so that the utility model is suitable for thinner electronic equipment; the wireless charger sees through the window of graphite flake and carries out wireless charging to electronic equipment, and this graphite flake can not exert an influence to wireless charging, guarantees the wireless normal clear that charges.

Description

Novel electronic equipment heat dissipation paster
The technical field is as follows:
the utility model relates to an electronic equipment heat dissipation technical field refers in particular to a novel electronic equipment heat dissipation paster.
Background art:
in order to facilitate life, modern microelectronic technology is developing at a high speed, and various electronic devices such as computers, mobile phones, tablet computers and the like are continuously developed. The electronic device generates a large amount of heat energy during operation, and the heat energy affects the operation speed of the electronic device or causes the electronic device to overheat and crash.
Therefore, the electronic device may be provided with a heat sink in cooperation with a fan to dissipate heat, but the thickness of the electronic device may be increased, which is not suitable for thinner electronic devices, such as mobile phones and tablet computers.
Therefore, a material which is efficient in heat conduction, light and thin in thickness is urgently needed to rapidly transfer heat out, and normal operation of electronic equipment is guaranteed.
In view of the above, the present inventors propose the following.
The utility model has the following contents:
an object of the utility model is to overcome prior art not enough, provide a novel electronic equipment heat dissipation paster.
In order to solve the technical problem, the utility model discloses a following technical scheme: this novel electronic equipment heat dissipation paster includes: the microfiber piece is fixedly attached to the electronic equipment; the second heat-conducting double-sided adhesive tape is fixedly attached to the lower end face of the microfiber piece; a window is arranged in the middle of the graphite flake, and the graphite flake is fixedly attached to the lower end face of the second heat-conducting double-sided adhesive tape; and the shape of the first heat-conducting double-sided adhesive tape is matched with that of the window, the first heat-conducting double-sided adhesive tape is fixedly attached to the lower end face of the second heat-conducting double-sided adhesive tape and is placed in the window, and the lower end face of the first heat-conducting double-sided adhesive tape is flush with the lower end face of the graphite flake.
Furthermore, in the above technical scheme, a first notch and a second notch are formed at two ends of the graphite sheet respectively, a third heat-conducting double-sided tape and a fourth heat-conducting double-sided tape are fixedly attached to two ends of a lower end face of the second heat-conducting double-sided tape respectively, the third heat-conducting double-sided tape and the fourth heat-conducting double-sided tape fill the first notch and the second notch respectively, and the thicknesses of the third heat-conducting double-sided tape and the fourth heat-conducting double-sided tape are the same as the thickness of the graphite sheet.
Further, in the above technical solution, the window is cross-shaped, and the first thermally conductive double-sided adhesive tape is cross-shaped; or, the window is rectangular, and the first heat-conducting double-sided adhesive tape is rectangular; or, the window is circular, and the first heat-conducting double-sided adhesive tape is circular.
Further, in the above technical solution, the thickness of the first double-sided thermal adhesive tape is the same as the thickness of the graphite sheet.
Furthermore, in the above technical solution, the upper end face of the microfiber is provided with a second double-sided adhesive, a second release paper is pasted on the upper surface of the second double-sided adhesive, and after the second release paper is torn off, the second double-sided adhesive is pasted on the electronic device.
Furthermore, in the above technical solution, the graphite sheet and the lower end of the first heat-conducting double-sided adhesive tape are provided with a first double-sided adhesive tape, the outer surface of the first double-sided adhesive tape is pasted with a first release paper, after the first release paper is torn off, the first double-sided adhesive tape is pasted in the protective sleeve of the electronic device, and the microfiber sheet is pasted and contacted with the electronic device loaded in the protective sleeve.
Furthermore, in the above technical solution, the protective cover has a containing groove for containing the electronic device, and the first double-sided adhesive is fixedly attached to the bottom of the containing groove, so that the novel electronic device heat dissipation patch is fixed to the bottom of the containing groove.
Furthermore, in the above technical solution, the back of the protective cover is provided with a plurality of heat dissipation holes penetrating through the accommodating groove.
After the technical scheme is adopted, compared with the prior art, the utility model has following beneficial effect: the utility model discloses a fixed laminating of super fine piece and electronic equipment can reach the efficiency of preventing scraping, and when electronic equipment operation produced a large amount of heats, this second heat conduction double faced adhesive tape can adsorb a large amount of heats to the graphite flake is sent in the conduction, so that gives off the heat by this graphite flake, so as to reach radiating effect, and this graphite flake has extremely strong heat conduction radiating effect, the order the utility model discloses have fabulous radiating effect, furthermore, the utility model discloses a slice product, its thickness is thinner, so that can be applicable to thinner electronic equipment (like cell-phone, panel computer), and can carry out high-efficient heat conduction to thin electronic equipment, guarantee electronic equipment normal operating, the order the utility model discloses extremely strong market competition has. Additionally, the utility model discloses be provided with the window in the graphite flake middle part, when adopting wireless charger to carry out wireless charging to electronic equipment (like the cell-phone), wireless charger sees through this window and directly carries out wireless charging to electronic equipment (like the cell-phone), and this graphite flake can not exert an influence to wireless charging, guarantees the normal clear of wireless charging, and it is very convenient to use, and this window intussuseption is filled with first heat conduction double faced adhesive tape, and this first heat conduction double faced adhesive tape still can further improve the radiating efficiency.
Description of the drawings:
fig. 1 is a perspective view of the present invention;
fig. 2 is a cross-sectional view of the present invention;
fig. 3 is an exploded perspective view of the present invention;
FIG. 4 is a perspective view of the present invention assembled to a protective sheath;
fig. 5 is a perspective view of the present invention from another perspective after being assembled to a protective cover.
The specific implementation mode is as follows:
the present invention will be further described with reference to the following specific embodiments and accompanying drawings.
As shown in fig. 1-3, a novel heat dissipation patch for electronic devices includes: the microfiber piece 5 is used for being fixedly attached to the electronic equipment; the second heat conduction double-sided adhesive tape 4 is fixedly attached to the lower end face of the microfiber piece 5; a graphite flake 2, wherein a window 21 is arranged in the middle of the graphite flake 2, and the graphite flake 2 is fixedly attached to the lower end face of the second heat-conducting double-sided adhesive tape 4; and the shape of the first heat-conducting double-sided adhesive tape 3 is matched with that of the window 21, the first heat-conducting double-sided adhesive tape 3 is fixedly attached to the lower end face of the second heat-conducting double-sided adhesive tape 4 and is placed in the window 21, and the lower end face of the first heat-conducting double-sided adhesive tape 3 is flush with the lower end face of the graphite sheet 2. The utility model discloses a fixed laminating of super fine piece 5 and electronic equipment can reach the efficiency of preventing scraping, and when electronic equipment operation produced a large amount of heats, this second heat conduction double faced adhesive tape 4 can adsorb a large amount of heats to the graphite flake is sent in the conduction, so that gives off the heat by this graphite flake, so as to reach radiating effect, and this graphite flake has extremely strong heat conduction radiating effect, makes the utility model discloses have fabulous radiating effect, furthermore, the utility model discloses a slice product, its thickness is thin, so that can be applicable to thinner electronic equipment (like cell-phone, panel computer), and can carry out high-efficient heat conduction to thin electronic equipment, guarantee electronic equipment normal operating, the order the utility model discloses extremely strong market competition has. Additionally, the utility model discloses be provided with window 21 in 2 middle parts of graphite flake, when adopting wireless charger to carry out wireless charging to electronic equipment (like the cell-phone), wireless charger sees through this window 21 and directly carries out wireless charging to electronic equipment (like the cell-phone), and this graphite flake 3 can not exert an influence to wireless charging, guarantees wireless normal clear of charging, and it is very convenient to use, and this window 21 intussuseption is filled with first heat conduction double faced adhesive tape 3, and this first heat conduction double faced adhesive tape 3 still can further improve the heat dissipation efficiency.
The two ends of the graphite flake 2 are respectively provided with a first notch and a second notch, the two ends of the lower end face of the second heat-conducting double-sided adhesive tape 4 are respectively and fixedly attached with a third heat-conducting double-sided adhesive tape 6 and a fourth heat-conducting double-sided adhesive tape 7, the third heat-conducting double-sided adhesive tape 6 and the fourth heat-conducting double-sided adhesive tape 7 respectively fill the first notch and the second notch, and the thickness of the third heat-conducting double-sided adhesive tape 6 and the thickness of the fourth heat-conducting double-sided adhesive tape 7 are the same as the thickness of the graphite flake 2.
The graphite flake is a brand new heat-conducting and heat-dissipating material, has unique crystal grain orientation, conducts heat uniformly along two directions, and the lamellar structure can be well adapted to any surface, shield heat sources and components and simultaneously improve the performance of consumer electronic products. The novel natural graphite solution has high heat dissipation efficiency, small occupied space and light weight, conducts heat uniformly along two directions, eliminates a 'hot spot' area, shields a heat source and components and improves the performance of consumer electronic products.
The window 21 is in a cross shape, and the first heat-conducting double-sided adhesive tape 3 is in a cross shape; alternatively, the window 21 is rectangular, and the first bond ply 3 is rectangular; alternatively, the window 21 is circular, and the first bond ply 3 is circular. In this embodiment, the window 21 is cross-shaped, and the first bond tape 3 is cross-shaped.
The upper end face of the microfiber piece 5 is provided with second double-sided adhesive, the second release paper is pasted on the upper surface of the second double-sided adhesive, and after the second release paper is torn off, the second double-sided adhesive is pasted on the electronic equipment. Or, as shown in fig. 4 and 5, the lower ends of the graphite sheet 2 and the first heat-conducting double-sided adhesive tape 3 are provided with a first double-sided adhesive tape, the outer surface of the first double-sided adhesive tape is pasted with a first release paper, after the first release paper is torn off, the first double-sided adhesive tape is pasted in the protective sleeve 8 of the electronic device, and the microfiber sheet 5 is pasted and contacted with the electronic device loaded in the protective sleeve 8.
Combine 4, 5 to show, protective sheath 8 has the holding electronic equipment holds groove 81, the utility model discloses a fixed laminating of first double faced adhesive tape is in this appearance groove 81 bottom, makes novel electronic equipment heat dissipation paster be fixed in and holds groove 81 bottom. The back of the protective sheath 8 is provided with the plural number and link up hold the louvre 82 of groove 81 to this can further improve the heat dissipation efficiency, makes the electronic equipment of dress in protective sheath 8 can dispel the heat fast, guarantees that the electronic equipment operation is smooth and easy, and can not die, and it is very convenient to use, has solved the difficult problem that present protective sheath can not dispel the heat, makes the utility model discloses extremely strong market competition has.
To sum up, the utility model discloses a fixed laminating of super fine piece 5 and electronic equipment can reach the efficiency of preventing scraping, and when electronic equipment moves and produces a large amount of heats, this second heat conduction double faced adhesive tape 4 can adsorb a large amount of heats to the graphite flake is sent in the conduction, so as to give off the heat by this graphite flake, in order to reach radiating effect, and this graphite flake has extremely strong heat conduction radiating effect, makes the utility model discloses have fabulous radiating effect, moreover, the utility model discloses a slice product, its thickness is thinner, so that can be applicable to thinner electronic equipment (like cell-phone, panel computer), and can carry out high-efficient heat conduction to thin electronic equipment, guarantee electronic equipment normal operating, the order the utility model discloses extremely strong market competition has. Additionally, the utility model discloses be provided with window 21 in 2 middle parts of graphite flake, when adopting wireless charger to carry out wireless charging to electronic equipment (like the cell-phone), wireless charger sees through this window 21 and directly carries out wireless charging to electronic equipment (like the cell-phone), and this graphite flake 3 can not exert an influence to wireless charging, guarantees wireless normal clear of charging, and it is very convenient to use, and this window 21 intussuseption is filled with first heat conduction double faced adhesive tape 3, and this first heat conduction double faced adhesive tape 3 still can further improve the heat dissipation efficiency.
Of course, the above description is only an exemplary embodiment of the present invention, and not intended to limit the scope of the present invention, and all equivalent changes and modifications made by the constructions, features, and principles of the present invention in accordance with the claims of the present invention are intended to be included in the scope of the present invention.

Claims (8)

1. The utility model provides a novel electronic equipment heat dissipation paster which characterized in that: it includes:
the microfiber piece (5) is fixedly attached to the electronic equipment;
the second heat-conducting double-sided adhesive tape (4) is fixedly attached to the lower end face of the microfiber piece (5);
the middle part of the graphite sheet (2) is provided with a window (21), and the graphite sheet (2) is fixedly attached to the lower end face of the second heat-conducting double-sided adhesive tape (4);
and the shape of the first heat-conducting double-sided adhesive tape (3) is matched with that of the window (21), the first heat-conducting double-sided adhesive tape (3) is fixedly attached to the lower end face of the second heat-conducting double-sided adhesive tape (4) and is placed in the window (21), and the lower end face of the first heat-conducting double-sided adhesive tape (3) is flush with the lower end face of the graphite sheet (2).
2. The novel electronic device heat dissipation patch of claim 1, wherein: graphite flake (2) both ends are formed with first breach and second breach respectively, terminal surface both ends are fixed the laminating respectively under second heat conduction double faced adhesive tape (4) have third heat conduction double faced adhesive tape (6) and fourth heat conduction double faced adhesive tape (7), and this first breach and second breach are filled respectively to this third heat conduction double faced adhesive tape (6) and fourth heat conduction double faced adhesive tape (7), and the thickness of this third heat conduction double faced adhesive tape (6) and fourth heat conduction double faced adhesive tape (7) all is the same with the thickness of graphite flake (2).
3. The novel electronic device heat dissipation patch of claim 2, wherein: the window (21) is in a cross shape, and the first heat-conducting double-sided adhesive tape (3) is in a cross shape; or, the window (21) is rectangular, and the first heat-conducting double-sided adhesive tape (3) is rectangular; or the window (21) is circular, and the first heat-conducting double-sided adhesive tape (3) is circular.
4. The novel electronic device heat dissipation patch of claim 2, wherein: the thickness of the first heat-conducting double-sided adhesive tape (3) is the same as that of the graphite sheet (2).
5. The novel electronic device heat sink patch as claimed in any one of claims 1-4, wherein: the upper end face of the microfiber piece (5) is provided with second double-sided adhesive, the second release paper is pasted on the upper surface of the second double-sided adhesive, and after the second release paper is torn off, the second double-sided adhesive is pasted on the electronic equipment.
6. The novel electronic device heat sink patch as claimed in any one of claims 1-4, wherein: graphite flake (2) and the lower extreme of first heat conduction double faced adhesive tape (3) are provided with first double faced adhesive tape, and this first double faced adhesive tape surface is pasted first from type paper, tears first from type paper after, laminates first double faced adhesive tape in electronic equipment's protective sheath (8), and this super fine piece (5) and the electronic equipment laminating contact of packing into in protective sheath (8).
7. The novel electronic device heat dissipation patch of claim 6, wherein: protective sheath (8) have the holding electronic equipment hold groove (81), first double faced adhesive tape is fixed to be fitted in this appearance groove (81) bottom, makes novel electronic equipment heat dissipation paster be fixed in and holds groove (81) bottom.
8. The novel electronic device heat sink patch as claimed in claim 7, wherein: the back of the protective sleeve (8) is provided with a plurality of heat dissipation holes (82) which penetrate through the containing groove (81).
CN201921088887.9U 2019-07-10 2019-07-10 Novel electronic equipment heat dissipation paster Active CN210274987U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921088887.9U CN210274987U (en) 2019-07-10 2019-07-10 Novel electronic equipment heat dissipation paster

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921088887.9U CN210274987U (en) 2019-07-10 2019-07-10 Novel electronic equipment heat dissipation paster

Publications (1)

Publication Number Publication Date
CN210274987U true CN210274987U (en) 2020-04-07

Family

ID=70048835

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921088887.9U Active CN210274987U (en) 2019-07-10 2019-07-10 Novel electronic equipment heat dissipation paster

Country Status (1)

Country Link
CN (1) CN210274987U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110267502A (en) * 2019-07-10 2019-09-20 东莞市源冠塑胶模具有限公司 A kind of novel electron equipment cooling patch

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110267502A (en) * 2019-07-10 2019-09-20 东莞市源冠塑胶模具有限公司 A kind of novel electron equipment cooling patch
CN110267502B (en) * 2019-07-10 2024-10-15 东莞市源冠科技有限公司 Novel electronic equipment heat dissipation paster

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Address after: No.1, Wusha Haibin Road, Chang'an Town, Dongguan City, Guangdong Province 523000

Patentee after: Dongguan Yuanguan Technology Co., Ltd

Address before: 523000 Guangdong Province, Dongguan city Changan Town Industrial Zone sixth usha Beach Road No. 3 1

Patentee before: DONGGUAN YUANGUAN PLASTIC MOULD Co.,Ltd.