WO2022241699A1 - 一种拆分式芯片散热防尘设备 - Google Patents
一种拆分式芯片散热防尘设备 Download PDFInfo
- Publication number
- WO2022241699A1 WO2022241699A1 PCT/CN2021/094732 CN2021094732W WO2022241699A1 WO 2022241699 A1 WO2022241699 A1 WO 2022241699A1 CN 2021094732 W CN2021094732 W CN 2021094732W WO 2022241699 A1 WO2022241699 A1 WO 2022241699A1
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- WO
- WIPO (PCT)
- Prior art keywords
- heat dissipation
- fixed
- pulley
- cavity
- chip
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Classifications
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- H—ELECTRICITY
- H10—SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
- H10W—GENERIC PACKAGES, INTERCONNECTIONS, CONNECTORS OR OTHER CONSTRUCTIONAL DETAILS OF DEVICES COVERED BY CLASS H10
- H10W40/00—Arrangements for thermal protection or thermal control
- H10W40/40—Arrangements for thermal protection or thermal control involving heat exchange by flowing fluids
- H10W40/43—Arrangements for thermal protection or thermal control involving heat exchange by flowing fluids by flowing gases, e.g. forced air cooling
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- H—ELECTRICITY
- H10—SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
- H10W—GENERIC PACKAGES, INTERCONNECTIONS, CONNECTORS OR OTHER CONSTRUCTIONAL DETAILS OF DEVICES COVERED BY CLASS H10
- H10W40/00—Arrangements for thermal protection or thermal control
- H10W40/70—Fillings or auxiliary members in containers or in encapsulations for thermal protection or control
- H10W40/77—Auxiliary members characterised by their shape
-
- H—ELECTRICITY
- H10—SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
- H10W—GENERIC PACKAGES, INTERCONNECTIONS, CONNECTORS OR OTHER CONSTRUCTIONAL DETAILS OF DEVICES COVERED BY CLASS H10
- H10W76/00—Containers; Fillings or auxiliary members therefor; Seals
- H10W76/60—Seals
Definitions
- the invention relates to the field of chip cooling devices, in particular to a split-type chip cooling and dust-proof device.
- the chip in the electronic product is the brain of the entire device.
- the traditional chip heat dissipation is generally A fan is used to accelerate air convection, and the chip is dissipated on one side. The heat dissipation effect is not good.
- the heat dissipation area of the traditional chip is fixed, which cannot accelerate the diffusion of heat.
- a detachable chip heat dissipation and dust-proof device described in the invention can solve the above problems.
- this example designs a split type chip heat dissipation and dustproof equipment.
- a detachable chip heat dissipation and dustproof device in this example includes a body, a heat dissipation chamber is provided inside the body, and an air inlet channel is connected between the left wall of the heat dissipation chamber and the left end surface of the body.
- An air outlet channel is connected between the right wall of the chamber and the right end of the body, the lower wall of the cooling chamber is fixed with a workbench, and the upper end of the workbench is fixed with three evenly distributed fixed chips, two adjacent
- the upper end surface of the workbench between the fixed chips is provided with a mobile chip capable of moving back and forth, the rear end surface of the mobile chip is fixed with a mobile chip trigger plate, and the front end surface of the fixed chip is fixed with a signal receiving plate,
- the front-end surfaces of the mobile chips on the left and right sides are fixed with front-side dust-proof plates, and the front-side dust-proof plates can play a protective role.
- a retractable pulley cavity is provided in the body on the rear side of the heat dissipation chamber, and a telescopic motor is fixed in the body on the rear side of the left end of the telescopic pulley cavity.
- the front and rear walls of the telescopic pulley chamber extend to the main telescopic shaft inside the heat dissipation chamber.
- the outer circular surface of the auxiliary telescopic shaft is threaded with the same heat dissipation fan plate, and a heat dissipation channel is connected between the front and rear walls of the heat dissipation fan plate, and a fixed mesh plate is fixed on the inner wall surface of the front side of the heat dissipation channel.
- the rear end is fixedly connected to the front end of the fixed mesh plate, a bevel gear cavity is provided on the rear side of the telescopic pulley cavity corresponding to the fixed chip in the middle, and a bevel gear cavity is fixed in the body on the front side of the bevel gear cavity.
- There is a ventilation motor and the front end of the ventilation motor is power-connected with a rotating column that passes through the front and rear walls of the retractable pulley cavity and extends to the inside of the cooling cavity.
- a rotating cavity is provided inside the rotating column, and the rotating column
- a cooling fan shaft that can move forward and backward is provided inside the cavity, and the rear end of the cooling fan shaft is fixed with a power receiving plate.
- the inner wall of the air outlet channel at the corresponding position is fixed with a pulley protective cover, and the pulley protective cover is internally provided with a pulley protective cavity that communicates with the pulley cavity.
- the right side of the pulley protective cover The inner wall of the air outlet passage is fixed with a suction fan support, and the air outlet passage is connected with the rear wall of the air inlet passage near the side of the heat dissipation chamber, and a closed cavity extending backward is provided inside the closed cavity. There are closed bodies.
- the outer surface of the main telescopic shaft located inside the telescopic pulley cavity is fixed with active telescopic pulleys, and the rear end of the auxiliary telescopic shaft is fixed with driven telescopic pulleys.
- a telescopic transmission belt is wound between the pulley and the active retractable pulley, and a heat dissipation fan support is fixed on the inner wall of the heat dissipation channel on the rear side of the fixed mesh plate, and the front end of the heat dissipation fan shaft extends to the heat dissipation fan.
- a cooling fan is fixed at the front end of the cooling fan shaft.
- the outer surface of the main telescopic shaft located inside the telescopic pulley cavity is fixed with active telescopic pulleys, and the rear end of the auxiliary telescopic shaft is fixed with driven telescopic pulleys.
- a telescopic transmission belt is wound between the pulley and the active retractable pulley, and a heat dissipation fan support is fixed on the inner wall of the heat dissipation channel on the rear side of the fixed mesh plate, and the front end of the heat dissipation fan shaft extends to the heat dissipation fan.
- a cooling fan is fixed at the front end of the cooling fan shaft.
- the front wall of the bevel gear cavity is rotated and provided with a bevel gear shaft extending forward
- the front end of the bevel gear shaft is dynamically connected to the rear end surface of the ventilation motor
- the rear end of the bevel gear shaft is fixedly provided with an active Bevel gear
- the right wall of the bevel gear chamber rotates and is provided with a pulley shaft extending to the inside of the pulley chamber
- the left end of the pulley shaft is fixed with a driven bevel gear that meshes with the driving bevel gear.
- the right end of the wheel shaft is fixed with a driving pulley, and the right wall of the pulley protection chamber is rotated with a suction fan shaft extending to the inside of the suction fan support, and the left end of the suction fan shaft is fixed with a driven pulley , a transmission belt is wound between the driven pulley and the driving pulley, the right end of the suction fan shaft is fixed with a suction fan, the inner wall of the left end of the air inlet channel is fixed with a dust-proof net, the The dust net can prevent dust from entering.
- a closing plate that can extend forward and backward is provided inside the closed cavity. When the closing plate is at the front extreme position, it can close the air inlet passage and the air outlet passage.
- a closed spring is fixedly connected between the rear walls of the closed cavity on the side, and a pull rope is fixedly connected between the rear end surface of the closed plate and the rear end surface of the cooling fan plate.
- left and right symmetrical receiving board cooling passages are communicated between the front and rear end faces of the signal receiving board, and left and right symmetrical air inlet cooling passages are communicated between the front and rear end faces of the mobile chip trigger board, and the air inlet cooling
- the passage and the heat dissipation passage of the receiving plate can pass through the cold wind, and the front end surface of the mobile chip trigger plate far away from the mobile chip on the same side is fixed with the vertically symmetrical splicing trigger column, which is connected with the splicing trigger.
- the rear end surface of the signal receiving board corresponding to the position of the column is provided with a signal receiving cavity with an opening facing backward, and the upper front end surface of the heat dissipation fan board is fixed with left and right symmetrical dust-proof board struts, and the dust-proof boards on the left and right sides
- the front end of the pole is fixed with an upper dustproof plate located on the upper side of the fixed chip and the mobile chip.
- the present invention can reduce the occupied area of the chip by splitting and storing the chip, and at the same time splice and expand the chip when the chip is working to increase the heat dissipation area of the chip, and at the same time can open the closed space to realize air circulation and speed up cooling.
- the heat dissipation treatment of the chip, and at the same time, the device can disassemble the chip that stops working and seal it for storage, which effectively reduces the entry of dust, and then realizes the dustproof protection of the chip.
- Fig. 1 is the overall structural representation of the present invention
- Fig. 2 is the structural representation of A-A in Fig. 1;
- Fig. 3 is the structural representation of B-B in Fig. 1;
- Fig. 4 is the structural representation of C-C in Fig. 1;
- FIG. 5 is a schematic diagram of an enlarged structure of D in FIG. 2 .
- a detachable chip heat dissipation and dustproof device includes a body 11, a heat dissipation chamber 12 is provided inside the body 11, and a heat dissipation chamber 12 is provided in communication between the left wall of the heat dissipation chamber 12 and the left end surface of the body 11.
- the air inlet passage 13, the air outlet passage 15 is connected between the right wall surface of the heat dissipation chamber 12 and the right end surface of the body 11, the lower wall surface of the heat dissipation chamber 12 is fixedly provided with a workbench 47, and the upper end surface of the workbench 47 is Three evenly distributed fixed chips 48 are fixedly arranged, and the upper end surface of the workbench 47 between two adjacent fixed chips 48 is provided with a mobile chip 50 capable of moving back and forth, and the rear end surface of the mobile chip 50 is fixedly provided with The mobile chip trigger plate 51, the front end of the fixed chip 48 is fixed with a signal receiving plate 57, the front end of the mobile chip 50 on the left and right sides is fixed with a front dustproof plate 56, and the front dustproof plate 56 It can play a protective role.
- the rear end surface of the mobile chip trigger plate 51 is fixed with a push rod 46 extending backward.
- the body 11 on the rear side of the heat dissipation chamber 12 is provided with a retractable pulley chamber 35.
- a telescopic motor 34 is fixed inside the body 11 on the rear side of the left end of the telescopic pulley chamber 35, and the front end of the telescopic motor 34 is power-connected with a motor that runs through the front and rear walls of the telescopic pulley chamber 35 and extends to the inside of the cooling chamber 12.
- the main telescopic shaft 36, the front wall surface of the right end of the telescopic pulley chamber 35 rotates and is provided with a secondary telescopic shaft 37 extending to the inside of the cooling chamber 12, and the main telescopic shaft 36 and the secondary telescopic shaft 37 are threaded Cooperate with the same heat dissipation fan plate 41, the heat dissipation channel 42 is connected between the front and rear walls of the heat dissipation fan plate 41, the inner wall surface of the front side of the heat dissipation channel 42 is fixed with a fixed mesh plate 45, and the rear end of the push rod 46 It is fixedly connected with the front surface of the fixed net plate 45, and the rear side of the telescopic pulley cavity 35 corresponding to the fixed chip 48 in the middle is provided with a bevel gear cavity 26, and the body on the front side of the bevel gear cavity 26 11 is fixed with a ventilation motor 60, and the front end of the ventilation motor 60 is dynamically connected with a rotating column 61 that passes through
- a cooling fan shaft 63 capable of moving forward and backward is provided inside the rotating cavity 62.
- the rear end of the cooling fan shaft 63 is fixed with a power receiving plate 64, and the rear wall of the air outlet channel 15 communicates with A pulley cavity 22 extending backward is provided, and the inner wall surface of the air outlet channel 15 corresponding to the pulley cavity 22 is fixed with a pulley protective cover 18, and the inside of the pulley protective cover 18 is provided with a
- a closed cavity 30 extending backward is communicated with the rear wall of the air inlet channel 13 near the cooling cavity 12 , and a closed mechanism is provided inside the closed cavity 30 .
- the outer surface of the main telescopic shaft 36 located inside the telescopic pulley cavity 35 is fixed with an active telescopic pulley 39, and the rear end of the auxiliary telescopic shaft 37 is fixed with a driven telescopic pulley 38, so A telescopic transmission belt 40 is wound between the driven telescopic pulley 38 and the active telescopic pulley 39, and the inner wall surface of the heat dissipation channel 42 on the rear side of the fixed mesh plate 45 is fixedly provided with a heat dissipation fan support 43.
- the front end of the heat dissipation fan shaft 63 extends into the heat dissipation fan support 43 , and the heat dissipation fan 44 is fixed at the front end of the heat dissipation fan shaft 63 .
- the front face of the power receiving plate 64 is evenly distributed with a plurality of power receiving cavities 65 opening forward, and the front wall of the rotating cavity 62 corresponding to the power receiving cavities 65 is fixed with a power transmission column 66 ,
- the power transmission column 66 is dense enough and can extend into the power receiving cavity 65 at any time.
- the front wall of the bevel gear chamber 26 rotates and is provided with a bevel gear shaft 29 extending forward, the front end of the bevel gear shaft 29 is dynamically connected to the rear end surface of the ventilation motor 60, and the rear end of the bevel gear shaft 29 Fixedly be provided with driving bevel gear 28, described bevel gear chamber 26 right wall surface is rotated and is provided with the pulley shaft 25 that extends to described pulley chamber 22 inside, and described pulley shaft 25 left end is fixedly provided with described driving bevel gear 28 mutually.
- Engaged driven bevel gear 27 the right end of the pulley shaft 25 is fixed with a driving pulley 23, and the right wall of the pulley protection chamber 19 rotates and is provided with a suction fan shaft extending to the inside of the suction fan support 16 17.
- the left end of the suction fan shaft 17 is fixed with a driven pulley 21, a transmission belt 24 is wound between the driven pulley 21 and the driving pulley 23, and the right end of the suction fan shaft 17 is fixed
- There is a suction fan 20 and the inner wall surface of the left end of the air inlet channel 13 is fixed with a dust-proof net 14, and the dust-proof net 14 can prevent dust from entering.
- the closed cavity 30 is provided with a closed plate 31 that can extend forward and backward.
- the closed plate 31 When the closed plate 31 is in the front limit position, it can close the air inlet channel 13 and the air outlet channel 15.
- the closed plate A closed spring 32 is fixedly connected between the rear end surface of 31 and the rear wall surface of the closed cavity 30 on the same side, and a pull rope 67 is fixedly connected between the rear end surface of the closed plate 31 and the rear end surface of the cooling fan plate 41 .
- the front and rear ends of the signal receiving board 57 are communicated with left and right symmetrical receiving plate heat dissipation passages 58, and the front and rear ends of the mobile chip trigger board 51 are connected with left and right symmetrical air inlet heat dissipation passages 52.
- the air inlet heat dissipation passage 52 and the receiving plate heat dissipation passage 58 can pass through the cold wind, and the front end surface of the mobile chip trigger plate 51 far away from the mobile chip 50 on the same side as the air inlet heat dissipation passage 52 is fixed with a vertically symmetrical splicing
- the trigger column 53, the rear end surface of the signal receiving plate 57 corresponding to the splicing trigger column 53 is provided with a signal receiving chamber 59 with an opening facing backward, and the front end surface of the upper side of the heat dissipation fan plate 41 is fixed with left and right symmetrical anti Dust plate poles 55 , the front ends of the dust plate poles 55 on the left and right sides are fixed with an upper dust plate 54 located on the upper sides of the fixed chip 48 and the mobile chip 50 .
- the closing plate 31 is at the front limit position
- the cooling fan plate 41 is at the rear limit position
- the front side dustproof plate 56 and the mobile chip 50 are at the rear limit position
- the spliced trigger column 53 is out of contact with the signal receiving cavity 59
- the power receiving plate 64 is at the rear limit position
- the power receiving cavity 65 and the power transmission column 66 are in a disengaged state.
- the telescopic motor 34 is driven to rotate forward, thereby driving the main telescopic shaft 36 to rotate, and then driving the active telescopic pulley 39 to rotate, and then driving the driven telescopic pulley 38 to rotate through the telescopic transmission belt 40, and then driving the auxiliary telescopic shaft 37 to rotate, and then Drive the heat dissipation fan plate 41 to move forward, and then push the push rod 46 to move forward through the fixed mesh plate 45, and then push the mobile chip trigger plate 51 and the mobile chip 50 to move forward, and then push the front side dustproof plate 56 to move forward,
- the splicing trigger column 53 extends into the signal receiving chamber 59 at the corresponding position, the splicing of the chip is realized.
- the telescopic motor 34 is stopped, and the cooling fan plate 41 is moved forward, and the closing plate 31 is pulled by the pull cord 67 to compress.
- the closing spring 32 moves backward, and then the air inlet passage 13 and the air outlet passage 15 are opened, and the cooling fan plate 41 moves forward while pushing the upper dustproof board 54 to move forward through the dustproof board strut 55, and then the fixed
- the space above the chip 48 and the mobile chip 50 is opened, and the heat dissipation fan plate 41 moves forward while driving the heat dissipation fan shaft 63 to move forward, which in turn drives the power receiving plate 64 to move forward, and then realizes that the power transmission column 66 extends to the power receiving cavity 65
- the interior further realizes the power transmission between the rotating column 61 and the power receiving plate 64.
- the ventilation motor 60 is driven to drive the rotating column 61 to rotate, and then the power transmitting column 66 drives the power receiving plate 64 to rotate, thereby driving the cooling fan shaft 63 to rotate. , and then drive the heat dissipation fan 44 to rotate at a high speed, and then blow the cold air to the gap between the fixed chip 48 and the mobile chip 50 through the air inlet cooling channel 52, thereby realizing lateral heat dissipation, and driving the bevel gear shaft 29 while driving the ventilation motor 60 Rotate, and then drive the driving bevel gear 28 to rotate, and then drive the driven bevel gear 27 that meshes with each other to rotate, and then drive the pulley shaft 25 to rotate, and then drive the driving pulley 23 to rotate, and then drive the driven pulley 21 to rotate through the transmission belt 24, and then Drive the suction fan shaft 17 to rotate, and then drive the suction fan 20 to rotate at a high speed, and then inhale cold air through the air inlet channel 13 to dissipate the heat from the front of
- the side dust-proof plate 54 is moved back and reset, and then the upper side space of the chip is closed, and the cooling fan plate 41 is moved back to complete the power transmission column 66 and the power receiving.
- the disengagement of the chamber 65 stops the power transmission of the heat dissipation fan shaft 63 and stops driving the ventilation motor 60 at the same time, thereby stopping the heat dissipation function.
- the front side dustproof plate 56 and the upper side The dustproof plate 54 cooperates with the mobile chip trigger plate 51 to seal the chip placement space, thereby preventing dust from falling.
- the present invention can reduce the footprint of the chip by splitting and storing the chip, and at the same time splice and expand the chip when the chip is working, increasing the heat dissipation area of the chip, and can open the closed space at the same time, Furthermore, the air circulation can be realized and the cooling process of the chip can be accelerated. At the same time, the device can dismantle the stopped chip and seal it for storage, effectively reducing the entry of dust, and further realizing the dustproof protection of the chip.
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- Cooling Or The Like Of Electrical Apparatus (AREA)
Abstract
Description
Claims (6)
- 一种拆分式芯片散热防尘设备,包括机体,其特征在于:所述机体内部设有散热腔,所述散热腔左壁面与所述机体左端面之间连通设有进风通道,所述散热腔右壁面与所述机体右端面之间连通设有出风通道,所述散热腔下壁面固定设有工作台,所述工作台上端面固定设有三个均匀分布的固定芯片,相邻两个所述固定芯片之间的所述工作台上端面设有能够前后移动的移动芯片,所述移动芯片后端面固定设有移动芯片触发板,所述固定芯片前端面均固定设有信号接收板,左右两侧所述移动芯片前端面固定设有前侧防尘板,所述前侧防尘板能够起到防护作用,所述移动芯片触发板后端面均固定设有向后延伸的推动杆,所述散热腔后侧的所述机体内设有伸缩带轮腔,所述伸缩带轮腔左端后侧的所述机体内固定设有伸缩电机,所述伸缩电机前端面动力连接有贯穿所述伸缩带轮腔前后壁面且延伸至所述散热腔内部的主伸缩轴,所述伸缩带轮腔右端前壁面转动设有延伸至所述散热腔内部的副伸缩轴,所述主伸缩轴与所述副伸缩轴外圆面螺纹配合有同一个散热风扇板,所述散热风扇板前后壁面之间连通设有散热通道,所述散热通道前侧内壁面固定设有固定网板,所述推动杆后端与所述固定网板前端面固定连接,与中间所述固定芯片对应位置的所述伸缩带轮腔后侧设有锥齿轮腔,所述锥齿轮腔前侧的所述机体内固定设有换气电机,所述换气电机前端面动力连接有穿过所述伸缩带轮腔前后壁面且延伸至所述散热腔内部的转动柱,所述转动柱内部设有转动腔,所述转动腔内部设有能够前后移动的散热风扇轴,所述散热风扇轴后端固定设有动力接收板,所述出风通道后壁面连通设有向后延伸的带轮腔,与所述带轮腔对应位置的所述出风通道内壁面固定设有带轮防护罩,所述带轮防护罩内部设有与所述带轮腔相互连通的带轮防护腔,所述带轮防护罩右侧的所述出风通道内壁面固定设有吸风风扇支座,所述出风通道与所述进风通道靠近散热腔一侧后壁面连通设有向后延伸的封闭腔,所述封闭腔内部设有封闭机构。
- 如权利要求1所述的一种拆分式芯片散热防尘设备,其特征在于:位于所述伸缩带轮腔内部的所述主伸缩轴外圆面固定设有主动伸缩带轮,所述副伸缩轴后端固定设有从动伸缩带轮,所述从动伸缩带轮与所述主动伸缩带轮之间绕有伸缩传动带,所述固定网板后侧的所述散热通道内壁面固定设有散热风扇支座,所述散热风扇轴前端延伸至所述散热风扇支座内,所述散热风扇轴前端固定设有散热风扇。
- 如权利要求1所述的一种拆分式芯片散热防尘设备,其特征在于:所述动力接收板前端面均匀分布有多个开口向前的动力接收腔,与所述动力接收腔对应位置的所述转动腔前壁面固定设有动力传递柱,所述动力传递柱足够密集并能够随时的延伸至所述动力接收腔内。
- 如权利要求1所述的一种拆分式芯片散热防尘设备,其特征在于:所述锥齿轮腔前壁面转动设有向前延伸的锥齿轮轴,所述锥齿轮轴前端与所述换气电机后端面动力连接,所述锥齿轮轴后端固定设有主动锥齿轮,所述锥齿轮腔右壁面转动设有延伸至所述带轮腔内部的带轮轴,所述带轮轴左端固定设有与所述主动锥齿轮相互啮合的从动锥齿轮,所述带轮轴右端固定设有主动带轮,所述带轮防护腔右壁面转动设有延伸至所述吸风风扇支座内部的吸风风扇轴,所述吸风风扇轴左端固定设有从动带轮,所述从动带轮与所述主动带轮之间绕有传动带,所述吸风风扇轴右端固定设有吸风风扇,所述进风通道左端内壁面固定设有防尘网,所述防尘网能够防止灰尘的进入。
- 如权利要求1所述的一种拆分式芯片散热防尘设备,其特征在于:所述封闭腔内部设有能够前后延伸的封闭板,所述封闭板处于前极限位置时能将所述进风通道与所述出风通道封闭,所述封闭板后端面与同侧的所述封闭腔后壁面之间固定连接有封闭弹簧,所述封闭板后端面与所述散热风扇板后端面之间固定连接有拉绳。
- 如权利要求1所述的一种拆分式芯片散热防尘设备,其特征在于:所述信号接收板前后端面之间连通设有左右对称的接收板散热通道,所述移动芯片触发板前后端面之间连通设有左右对称的进风散热通道,所述进风散热通道与所述接收板散热通道能够穿过冷风,所述进风散热通道远离同侧所述移动芯片的所述移动芯片触发板前端面固定设有上下对称的拼接触发柱,与所述拼接触发柱对应位置的所述信号接收板后端面设有开口向后的信号接受腔,所述散热风扇板上侧前端面固定设有左右对称的防尘板支杆,左右两侧所述防尘板支杆前端固定设有位于所述固定芯片与所述移动芯片上侧的上侧防尘板。
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| PCT/CN2021/094732 WO2022241699A1 (zh) | 2021-05-19 | 2021-05-19 | 一种拆分式芯片散热防尘设备 |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| PCT/CN2021/094732 WO2022241699A1 (zh) | 2021-05-19 | 2021-05-19 | 一种拆分式芯片散热防尘设备 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2022241699A1 true WO2022241699A1 (zh) | 2022-11-24 |
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| Application Number | Title | Priority Date | Filing Date |
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| PCT/CN2021/094732 Ceased WO2022241699A1 (zh) | 2021-05-19 | 2021-05-19 | 一种拆分式芯片散热防尘设备 |
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| WO (1) | WO2022241699A1 (zh) |
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| CN115942686A (zh) * | 2023-01-04 | 2023-04-07 | 杭州尚锐信息技术有限公司 | 一种高层建筑智能安防监控设备 |
| CN116132201A (zh) * | 2023-04-18 | 2023-05-16 | 陕西汇天广科信息科技有限公司 | 基于大数据的互联网数据安全监控系统 |
| CN116666328A (zh) * | 2023-05-26 | 2023-08-29 | 山东万鱼智能科技有限公司 | 一种防尘散热集成电路封装体 |
| CN117605992A (zh) * | 2023-12-26 | 2024-02-27 | 扬州君煜照明电器有限公司 | 一种用于led照明的恒流稳定控制器 |
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