TWM392993U - structure of heat-dissipating fan module - Google Patents

structure of heat-dissipating fan module Download PDF

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Publication number
TWM392993U
TWM392993U TW099211888U TW99211888U TWM392993U TW M392993 U TWM392993 U TW M392993U TW 099211888 U TW099211888 U TW 099211888U TW 99211888 U TW99211888 U TW 99211888U TW M392993 U TWM392993 U TW M392993U
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TW
Taiwan
Prior art keywords
heat
heat conducting
fan module
air outlet
fin
Prior art date
Application number
TW099211888U
Other languages
Chinese (zh)
Inventor
Ming-Cyuan Shih
Sin-Wei He
Jhong-Yan Chang
Tzu-Hsin Huang
Original Assignee
Forcecon Technology Co Ltd
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 Forcecon Technology Co Ltd filed Critical Forcecon Technology Co Ltd
Priority to TW099211888U priority Critical patent/TWM392993U/en
Publication of TWM392993U publication Critical patent/TWM392993U/en
Priority to US13/117,706 priority patent/US20110315359A1/en

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Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01LSEMICONDUCTOR DEVICES NOT COVERED BY CLASS H10
    • H01L23/00Details of semiconductor or other solid state devices
    • H01L23/34Arrangements for cooling, heating, ventilating or temperature compensation ; Temperature sensing arrangements
    • H01L23/42Fillings or auxiliary members in containers or encapsulations selected or arranged to facilitate heating or cooling
    • H01L23/427Cooling by change of state, e.g. use of heat pipes
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28DHEAT-EXCHANGE APPARATUS, NOT PROVIDED FOR IN ANOTHER SUBCLASS, IN WHICH THE HEAT-EXCHANGE MEDIA DO NOT COME INTO DIRECT CONTACT
    • F28D15/00Heat-exchange apparatus with the intermediate heat-transfer medium in closed tubes passing into or through the conduit walls ; Heat-exchange apparatus employing intermediate heat-transfer medium or bodies
    • F28D15/02Heat-exchange apparatus with the intermediate heat-transfer medium in closed tubes passing into or through the conduit walls ; Heat-exchange apparatus employing intermediate heat-transfer medium or bodies in which the medium condenses and evaporates, e.g. heat pipes
    • F28D15/0233Heat-exchange apparatus with the intermediate heat-transfer medium in closed tubes passing into or through the conduit walls ; Heat-exchange apparatus employing intermediate heat-transfer medium or bodies in which the medium condenses and evaporates, e.g. heat pipes the conduits having a particular shape, e.g. non-circular cross-section, annular
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28DHEAT-EXCHANGE APPARATUS, NOT PROVIDED FOR IN ANOTHER SUBCLASS, IN WHICH THE HEAT-EXCHANGE MEDIA DO NOT COME INTO DIRECT CONTACT
    • F28D15/00Heat-exchange apparatus with the intermediate heat-transfer medium in closed tubes passing into or through the conduit walls ; Heat-exchange apparatus employing intermediate heat-transfer medium or bodies
    • F28D15/02Heat-exchange apparatus with the intermediate heat-transfer medium in closed tubes passing into or through the conduit walls ; Heat-exchange apparatus employing intermediate heat-transfer medium or bodies in which the medium condenses and evaporates, e.g. heat pipes
    • F28D15/0275Arrangements for coupling heat-pipes together or with other structures, e.g. with base blocks; Heat pipe cores
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28FDETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F1/00Tubular elements; Assemblies of tubular elements
    • F28F1/10Tubular elements and assemblies thereof with means for increasing heat-transfer area, e.g. with fins, with projections, with recesses
    • F28F1/12Tubular elements and assemblies thereof with means for increasing heat-transfer area, e.g. with fins, with projections, with recesses the means being only outside the tubular element
    • F28F1/14Tubular elements and assemblies thereof with means for increasing heat-transfer area, e.g. with fins, with projections, with recesses the means being only outside the tubular element and extending longitudinally
    • F28F1/20Tubular elements and assemblies thereof with means for increasing heat-transfer area, e.g. with fins, with projections, with recesses the means being only outside the tubular element and extending longitudinally the means being attachable to the element
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28DHEAT-EXCHANGE APPARATUS, NOT PROVIDED FOR IN ANOTHER SUBCLASS, IN WHICH THE HEAT-EXCHANGE MEDIA DO NOT COME INTO DIRECT CONTACT
    • F28D21/00Heat-exchange apparatus not covered by any of the groups F28D1/00 - F28D20/00
    • F28D2021/0019Other heat exchangers for particular applications; Heat exchange systems not otherwise provided for
    • F28D2021/0028Other heat exchangers for particular applications; Heat exchange systems not otherwise provided for for cooling heat generating elements, e.g. for cooling electronic components or electric devices
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01LSEMICONDUCTOR DEVICES NOT COVERED BY CLASS H10
    • H01L23/00Details of semiconductor or other solid state devices
    • H01L23/34Arrangements for cooling, heating, ventilating or temperature compensation ; Temperature sensing arrangements
    • H01L23/46Arrangements for cooling, heating, ventilating or temperature compensation ; Temperature sensing arrangements involving the transfer of heat by flowing fluids
    • H01L23/467Arrangements for cooling, heating, ventilating or temperature compensation ; Temperature sensing arrangements involving the transfer of heat by flowing fluids by flowing gases, e.g. air
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01LSEMICONDUCTOR DEVICES NOT COVERED BY CLASS H10
    • H01L2924/00Indexing scheme for arrangements or methods for connecting or disconnecting semiconductor or solid-state bodies as covered by H01L24/00
    • H01L2924/0001Technical content checked by a classifier
    • H01L2924/0002Not covered by any one of groups H01L24/00, H01L24/00 and H01L2224/00

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Mechanical Engineering (AREA)
  • Thermal Sciences (AREA)
  • General Engineering & Computer Science (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Sustainable Development (AREA)
  • General Physics & Mathematics (AREA)
  • Computer Hardware Design (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Power Engineering (AREA)
  • Geometry (AREA)
  • Condensed Matter Physics & Semiconductors (AREA)
  • Cooling Or The Like Of Electrical Apparatus (AREA)

Description

M392993 '五、新型說明: 【新型所屬之技術領域】 本創作係涉及一種散熱風扇模組結構,特別是指一種 能约明顯縮減散熱風扇模組之出風口寬度面積,且兼具較 佳散熱效益之創新結構型態設計者。 【先前 按 接影響 扇模組 趨勢而 本 扇組、 者,此 中,然 決,請 包括風 其座殼 式出風 13對應 鰭片12 扇模組 以 扇組Η 碟機、 最佳位 化設計 而當前 顯然地 ,散熱 散 112 一侧形 σ 113 ,復 處外部,t 與側吹式& 於實際應用 筆記型電腦 之側吹式$ 網路卡、I彡 置’然而也 之後’其周 述各種介$ ’散熱風屬 風扇模組4 模組對於 作效能、 ’相對也 對改良探 及熱管三 模組目前 結構設§十 揭,係為 熱鰭片12 成有一寬 令散熱鰭 熱管13之 風口 113 經驗中發 架構而言 風口 113 音擴接端 因為如此 逢部位的 之所佔組 模纟且的型 岀風口部 討的散熱風扇模組 者所整合構成之模 被廣泛應用於筆記 上卻仍舊面臨 臨一些 風扇核 其中該 112寬 該側吹 則抵靠 ,此種 述問題 位除了 外,更 專各種 電腦整 然相對 達到最 為關鍵 進一步 言至為重要,其直 用菁命’而散熱風 品型態的設計發展 技術】 ,散熱風扇 到CPU的運 的結構設言十 改變。 創作所欲針 散熱鰭片以 種散熱風^ 而’其習知 參第1圖所 扇組11 電腦產品而 穩定性與使 隨著電腦產 一習知散熱 及熱管13, 度接近座殼 片12設置於 冷卻端131 之間,然而 現仍存在下 ,其周邊部 導出介面之 子、隨身碟 ,當筆記型 可用面積顯 設面積均已 態設計就成 位面積能丕 ,是指由風 組架構型態 型電腦結構 問題有待解 組,其構件 風扇組11於 度之一側吹 式出風口 1 接觸於散熱 習知散熱風 點 : 提供前述風 是提供如光 介面組設的 體規格小型 大幅縮減, 小裎度時, ’也就是說 縮減,將影 M392993 ’響筆記型電腦整體規袼小型化 組之出風口邛位面積縱能縮減,仍 f &熱風扇模 否不党影響,這顯然仍是有待J = S其散熱效能是 是以’針對上述習知散熱風扇Μ =之技術課題。 點,如何開發—種 、··、··°礴所存在之問題 業者須再努力研發突破;、:用性之創新結構,實係相關 有鐘於此,創:::二方向。 與設計經㉟,針對上目:年從事相關產品之製造開發 終得-確具實用性詳加設計與審慎評估後, 【新型内容】 本創作之主要目的,係 ,其所欲解決之問題點,係 實用性之新式散熱風扇模組 述散熱風扇模組包括風扇組 扇組包括殼座及扇葉,殼座 出風口 ’散熱鰭片設於出風 端與該散熱鰭片相接觸結合 本創作解決問題之技術 凸伸型態而界定形成有—内 及介於出風口與扇葉之間的 設成寬度縮減型態,構成其 葉中心對應位置之型態;— 壁與殼座外側之間;一内向 一體延伸構成,該内.向延伸 所屬範圍内,該内向延伸導 環側局部呈間隔對應型態者 作對照先前技術而言,俾可 幅縮減出風口寬度靣積,以 j提供種散熱風扇模組結構 =如何研發出一種更具理想 了構為目標加以改良突破;所 作散熱鰭片及導熱構件;該風 頂面具有入風口、一側則具一 口相對應處,導熱構件之冷卻 9 =點,主要包括:該出風口為 。延伸側壁、外向延伸側壁以 内部延伸空間;另,該出風口 内向延伸側壁的位置為靠近扇 缺讓二間,形成於内向延伸側 ^伸導熱部,由散熱鰭片内端 ‘熱部對應位於内部延伸空間 熱部具一扇葉對應側與扇葉之 ,藉此創新獨特設計,使本創 在兼顧較佳散熱效益條件下大 使散熱風扇模組於組裝應周上 4 M392993 更能達到靈活因應電腦規格小型化設計發展需求之實用進 步性與較佳產業利用效益。 Λ 【實施方式】 請參閱第2、3 、4圖所示,係本創作散熱風扇模組 結構之較佳實施例,惟此等實施例僅供說明之用,在專利 申凊上並不受此結構之限制^所述散熱風扇模組係包括一 風扇組20、一散熱鰭片30及—導熱構件40所構成f該風扇 組20包括一殼座21以及枢組於該殼座21中扇 ° 嗖 •座…少一面(本實施例係設於頂面)具;U; 11、一側則具有一出風口 212 ,該散熱鰭片3〇設於該出風 口 212相對應處,該導熱構件4〇之冷卻端41與該散熱鰭片 30相接觸結合,導熱構件4〇之受熱端42則呈一向外延伸型 態,且其中: 該出風口 212為一凸伸型態而相對界定形成有一内向 延伸側壁213 、一外向延伸側壁214以及介於該出風口 2 12與扇葉22之間的^一内部延伸空間215 ; 該出風口 212設成寬度縮減型態,構成其内向延伸側 鲁壁213的位置係為靠近該扇葉22中心對應位置之型態;M392993 'V. New description: 【New technology field】 This creation relates to a cooling fan module structure, especially a kind of air outlet width that can significantly reduce the size of the air outlet fan module, and has better heat dissipation efficiency. The innovative structural type designer. [Previously, the fan group is affected by the trend of the fan module. In this case, please include the wind, the shell type air outlet 13 corresponds to the fin 12 fan module, the fan group, the best position. Designed and currently apparently, the heat dissipation 112 has a side shape of σ 113 , a reconciliation of the outside, t and a side blow type & a side-blown $ network card for the practical application notebook, and I Zhou said that the various types of 'heat dissipation wind fan module 4 module for performance, 'relatively improve the exploration and heat pipe three module current structure § ten, the hot fin 12 into a wide fin heat pipe heat pipe 13 vents 113 In the experience of the hair structure, the 113-tone expansion end of the tuyere is widely used in the notes because of the integration of the ventilator and the fan module of the ventilator. However, it still faces some fan cores. The 112-wide width of the side blows against it. Apart from this problem, it is more important to say that the various computers are relatively close to the most critical. Hot product development Art design patterns, transport configuration into the CPU cooling fan provided made ten changes. The creation of the heat sink fins to heat the wind ^ and its customary reference to the first group of the fan group 11 computer products and stability and with the computer production of a known heat and heat pipe 13, close to the seat shell 12 It is disposed between the cooling ends 131, but it still exists, and the peripheral part of the interface is exported to the interface and the flash drive. When the available area of the notebook type is designed, the area can be set, and the wind group structure type The problem of the state-of-the-art computer structure needs to be solved, and the component fan group 11 is in contact with one of the side-blown air outlets 1 to contact the heat-dissipating heat-dissipating wind point: the provision of the aforementioned wind is to provide a small reduction in the size of the body of the optical interface. In the case of small squatting, 'that is to say, the reduction, the shadow M392993' will be the overall size of the notebook computer, and the size of the ventilating area of the miniaturized group will be reduced. It is still f & the hot fan model is not affected by the party, which is obviously still It is to be J = S, its heat dissipation performance is based on the technical problem of the above-mentioned conventional cooling fan Μ =. Point, how to develop - kinds of problems, the existence of the problem, the industry must make more efforts to develop breakthroughs;,: the use of innovative structure, the real system is related to this, create::: two directions. And the design of the 35, for the purpose: the year of engaged in the manufacture and development of related products - after the practicality of the detailed design and prudent evaluation, [new content] The main purpose of this creation, is the problem to be solved The utility model relates to a new type of cooling fan module, wherein the cooling fan module comprises a fan group fan group including a shell seat and a fan blade, and the air outlet of the shell seat is disposed at the air outlet end and is in contact with the heat dissipation fin. The technical convexity of the problem is defined by forming a width-reducing pattern between the inner and the air outlet and the blade, forming a shape corresponding to the center of the blade; - between the wall and the outer side of the housing An inwardly extending extension, within the range of the inner extension, the side of the inwardly extending guide ring is partially spaced corresponding to the prior art, the width of the tuyere can be reduced, and the species is provided by j. Cooling fan module structure = how to develop a more ideal structure to improve the breakthrough; make fins and heat-conducting components; the wind top surface has an air inlet, one side has a mouth relative Should be, the cooling of the heat-conducting member 9 = point, mainly including: the air outlet is . The extending side wall and the outwardly extending side wall have an inner extending space; in addition, the inwardly extending side wall of the air outlet is located near the fan gap, and the heat conducting portion is formed on the inner extending side, and the hot portion of the inner end of the heat dissipating fin is located correspondingly The internal extension space hot part has a leaf corresponding to the side and the blade, thereby creating a unique design, so that the creator can achieve flexibility in the assembly of the cooling fan module under the condition of better heat dissipation. 4 M392993 The practical progress of the development of computer specifications for miniaturization design and the benefits of better industrial use. Λ [Embodiment] Please refer to Figures 2, 3 and 4 for a preferred embodiment of the structure of the cooling fan module. However, these embodiments are for illustrative purposes only and are not subject to patent application. The heat dissipation fan module includes a fan assembly 20, a heat dissipation fin 30, and a heat conduction member 40. The fan assembly 20 includes a housing 21 and a fan assembly in the housing 21嗖 座 座 座 座 座 座 座 座 座 座 座 座 座 座 座 座 座 座 座 座 座 座 座 座 座 座 座 座 座 座 座 座 座 座 座 座 座 座 座 座 座 座 座 座 导热 导热 导热 导热 导热 导热 导热The cooling end 41 of the member 4 is in contact with the heat dissipating fin 30, and the heated end 42 of the heat conducting member 4 is in an outwardly extending configuration, and wherein: the air outlet 212 is oppositely defined by a convex shape. An inwardly extending side wall 213, an outwardly extending side wall 214, and an inner extending space 215 between the air outlet 22 and the blade 22; the air outlet 212 is formed in a reduced width configuration to form an inwardly extending side thereof. The position of the wall 213 is a shape close to the corresponding position of the center of the blade 22;

• 缺讓空間216 ,形成於該内向延伸側壁213與殼座 1伸導熱部31,係由該散熱鰭片30内端一體延 伸所構成,該内向延伸導熱部31係對應位於該内部延伸空 間215所屬靶圍内,該内向延伸導熱部3丨具有一扇葉對應 貝1 311與該扇葉22之環側局部位置呈間隔對應型態者。The recessed space 216 is formed on the inwardly extending side wall 213 and the heat conducting portion 31 of the housing 1 , and is integrally formed by the inner end of the heat dissipating fin 30 . The inwardly extending heat conducting portion 31 is correspondingly located in the inner extending space 215 . In the target circumference, the inwardly extending heat conducting portion 3 has a blade corresponding to the position of the shell 1 311 and the ring side local position of the blade 22.

,、中,該散熱鰭片30為多數立向或橫向設置的單元 熱片體32所構成者。 J (包含圓熱管、扁熱 至4圖係為扁熱管型 士宁’所述導熱構件40係為熱管 、熱板任其中一者,本創作第2 5 態之導毒 構件40。 其中 任其中一 型態者。 其中 弧·面、階 所揭扇葉 圖所示扇 如第 ;該出風 供該散熱 冷卻端41 ’該導熱 〇 藉由 核心設計 態,構成 空間216 熱部31之 而導致其 熱風扇模 縮減型態 並籍由散 内向延伸 致散熱Μ 熱效益, 座21外側 可提供筆 &構件40 而第5至 圖所揭係為熱板型態之導熱 ,呑亥導教^ 从 .側(包括上、^ 1冷部端41係可與該散熱韓片30 側以及左、右側)相接觸結合之 ,該内向延伸導熱部31之扇 級面 '曲把工, 朱對應側311可為凹 對應側:;Γ種型態者,如第3、4圖 葉對應侧311 Γ :::面型態;又如第6、7 2 、q ”知°又為一階級面型態者。 口 212夕t圖所揭’所述導熱構件40可為扁埶管 韓片巧。之外向延伸側壁21“設有一透口心 μ成☆土側露出,該扁熱管型態之導熱構件40的 罪面型態抵靠於該散熱,鳍片30露出之-側 冓牛40之受熱端42則扭轉90度而呈一橫置面型態 上述結構組成設計,本創作所揭散熱風扇槿組 甘主要在於該出風口 212設為凸伸與寬度縮 其内向延伸側壁213與殼座21外側之間具—缺 ,又該散熱鰭片30内端延伸形成所述内向延伸 新穎型態;藉此,當筆記型電腦整體規格小型仆 周邊部位可用面積相對大幅縮減時,本創作之 組設計’將能夠藉由出風口 212設為凸伸與寬户 ’而大幅縮減散熱風扇模組之出風口部位面積^ 熱轉片30内端配合有延伸至内部延伸空間Mg 導熱部31 ’藉以彌補因出風口 212縮減面積而$ 片寬度亦大幅縮滅之狀態,籍此係可兼顧較佳 且本創作散熱風扇模組之内向延伸側壁213與執 之間並开> 成有缺讓空間216 ,該缺讓空間 記型電腦内部連接端子構件更寬裕的容置空間7 6 M392993 又其中’讀内向延仲側 有一内凸狀之舌緣部23 (見 舌緣部23之設計,以於該殼 扇葉22之風壓點,以當内部 越過該舌緣部23時,能夠產 流作用。 壁213與殼座21相銜接處係具 於3 、4、6 、7圖),藉此 座21中形成一個相對比較臨近 '流動之氣流被扇葉22所趨使而 生側向排往該出風口 212之導 功效說明: 本創作功效增進之事實如下:In the middle, the heat dissipation fins 30 are formed by a plurality of unit heat sheets 32 disposed in an upright or horizontal direction. J (including the circular heat pipe, the flat heat to the 4 figure is the flat heat pipe type Shining 'The heat transfer member 40 is one of the heat pipe and the hot plate, and the poisonous member 40 of the 25th state of the creation. One type of person. The fan shown in the arc surface of the arc, the surface is shown as the first; the air is provided for the cooling cooling end 41 'the thermal conduction 〇 by the core design state, which constitutes the hot portion 31 of the space 216 The heat fan is molded and reduced, and the heat dissipation is caused by the inward extension. The outer part of the seat 21 can provide the pen & member 40 and the fifth to the figure is the heat conduction type of the hot plate type. From the side (including the upper, ^ 1 cold end 41 can be combined with the heat sink 30 side and the left and right sides), the fan-shaped surface of the inwardly extending heat conducting portion 31 is curved, and the corresponding side of the Zhu 311 can be concave corresponding side:; Γ type, such as the 3rd, 4th leaf corresponding side 311 Γ ::: face type; and as the sixth, 7 2, q ” know ° is a class face The heat conducting member 40 can be a flat tube, and the outer extending side wall 21 is provided with a transparent core. ☆ The soil side is exposed, the sinus shape of the heat pipe member 40 of the flat heat pipe type is resisted by the heat dissipation, and the heat receiving end 42 of the side yak 40 exposed by the fin 30 is twisted by 90 degrees to form a transverse surface type. The above-mentioned structural composition design, the cooling fan set of the present invention is mainly characterized in that the air outlet 212 is provided with a protrusion and a width, and the inwardly extending side wall 213 and the outer side of the housing 21 have a gap therebetween, and the heat dissipation fin 30 The inner end extends to form the novel shape of the inward extension; thereby, when the available area of the peripheral portion of the notebook computer is relatively greatly reduced, the set design of the present invention will be capable of being protruded by the air outlet 212. The width of the air outlet portion of the heat dissipation fan module is greatly reduced. The inner end of the heat transfer piece 30 is extended to the inner extension space Mg. The heat conduction portion 31' compensates for the reduction in the area of the air outlet 212 and the width of the film is also greatly reduced. The state of the connection can be better, and the inwardly extending side wall 213 of the original heat dissipation fan module is opened and opened with a gap 216, which is more convenient for the internal connection terminal member of the missing space recording computer. The accommodating space 7 6 M392993 and the 'reading inwardly extending side have an inner convex tongue edge portion 23 (see the design of the tongue edge portion 23 for the wind pressure point of the shell fan blade 22 to internally pass the tongue At the edge 23, the flow can be effected. The wall 213 and the shell 21 are coupled to each other at 3, 4, 6, and 7), whereby a relatively relatively adjacent 'flowing airflow is formed by the blade 22 in the seat 21. The effect of the lateral discharge to the outlet vent 212 is as follows: The fact that the creative effect is enhanced is as follows:

本創作所揭「散熱風扇模 設為Λ伸與寬度縮減型態,構 側之間具一缺讓空間,又該散 向延伸導熱部之創新獨特設計 】所提習知結構而言,其出風 散熱結構部份’將能夠藉其出 内端之内向延伸導熱部延伸至 補’而所述缺讓空間則可提供 件更寬裕的容置空間;本創作 顧較佳散熱效益之條件下,大 ’以使散熱風扇模組就組裝應 應電腦規格小型化設計發展需 利用效益。 組結構」主要藉由該出風口 成其内向延伸側壁與殼座外 熱鰭片内端延伸形成所述内 ’使本創作對照【先前技術 因寬度面積縮減而減小的 風I凸伸型態配合散熱鰭片 =二卩延伸空間之設計獲得彌 °己型電腦内部連接端子構 所揭散熱風扇模組將可在兼 =縮減其出風口的寬度面積 面而言,更能達到靈活因 二之貫用進步性與較佳產業 上述實施例所揭示者係藉以I 維透過特定的術語進行說明,當^ =說明本創作,且文中 之專利範圍;熟悉此項技術領& 成以此限定本新型創作 之精神與原則後對其進行變更與人士當可在瞭解本創作 此等變更與修改,皆應涵蓋於^二改而達到等效目的,而 定之範疇中。 〇所述申請專利範圍所界 M392993 【圖式簡單說明】 第 1 圖 習知 散 熱風扇 模 組 之 立 體 示 意 圖 0 第 2 圖 本創 作 較佳實 施 例 之 組 合 立 體 圖 0 第 3 圖 本創 作 較佳實 施 例 之 局 部 分 解 立 體 圖。 第 4 圖 本創 作 較佳實 施 例 之 分 解 立 體 圖 0 第 5 圖 本創 作 另- -實 施 例 之 組 合 立 體 圖 0 第 6 圖 本創 作 另- -實 施 例 之 局 部 分 解 立 體 圖。 第 7 圖 本創 作 另- -實 施 例 之 分 解 立 體 圖 〇 . 【主要元件符號說明】 ®習知部份:The author proposes that the "heat-dissipating fan module is set to be stretched and reduced in width, with a lack of space between the sides, and the innovative and unique design of the diffused heat-conducting part" The wind-dissipating structure portion 'will be able to extend from the inner end of the inner end to the heat-conducting portion to the complement', and the missing space can provide a more accommodating space; In order to make the assembly of the cooling fan module, it should be utilized in the miniaturization of the computer specifications. The group structure is mainly formed by the air outlet opening its inner extending side wall and the inner end of the outer fin of the housing. 'Let this creation contrast [the previous technology due to the reduction of the width area to reduce the wind I convex type with the heat sink fin = two-dimensional extension space design to obtain the cooling system module of the internal connection terminal structure of the computer In the case of reducing the width of the air outlet, it is more flexible, and the above-described embodiments are disclosed by the specific terminology. When ^ = Explain the creation, and the scope of the patent in the text; familiar with the technology and the limitations of this new definition of the spirit and principles of the creation of the new changes and people can understand the changes and modifications of this creation, All should be included in the second change to achieve the equivalent purpose, and in the scope of the definition. 392 M 392 993 392 392 392 392 392 392 392 392 392 392 392 392 392 392 392 392 392 392 392 392 392 392 392 392 392 392 392 392 392 392 392 392 392 392 392 392 392 392 392 392 392 392 392 A partial exploded perspective view. Fig. 4 is a partial view of the preferred embodiment of the present invention. Fig. 5 Fig. 5 is a creation of another embodiment of the embodiment. Fig. 6 Fig. 6 This is a separate part of the actual embodiment. Figure 7 This is a different example of the implementation of the example. 【. [Main component symbol description] ® Conventional part:

22

風扇組 11 座殼 側吹式出風口 113 散熱鰭片 熱管 13 冷卻端 本創作部份: 風扇組 2 0 入風口 2 1 1 内向延伸側壁 2 1 3 内部延伸空間 2 1 5 透口 2 1 7 舌緣部 2 3 散熱鰭片 3 0 扇葉對應側 3 1 1 導熱構件 4 0 受熱端 4 2 殼座 2 1 出風口 212 外向延伸側壁 214 缺讓空間 216 扇葉 2 2 内向延伸導熱部 31 單元導熱片體 32 冷卻端 41 8Fan Set 11 Seat Side Blowing Air Outlet 113 Heat Sink Heat Pipe 13 Cooling End Original Part: Fan Set 2 0 Air Inlet 2 1 1 Inward Extension Side Wall 2 1 3 Internal Extension Space 2 1 5 Diffuse 2 1 7 Tongue Edge 2 3 Heat sink fin 3 0 Blade corresponding side 3 1 1 Heat transfer member 4 0 Heated end 4 2 Housing 2 1 Air outlet 212 Outward extension side wall 214 Missing space 216 Fan blade 2 2 Inward extension heat conduction part 31 Unit heat conduction Sheet 32 cooling end 41 8

Claims (1)

M392993 六、申請專利範圍: 1、 一種散熱風扇模組結構,所述散熱風扇模組包括 扇組、一散熱鰭片及一導熱構件所構成;該風扇 括一殼座以及樞組於該殼座中之扇葉,該殼座之 一面具有一入風口、一側則具有一出風口,該散 片設於該出風口相對應處,該導熱構件之冷卻端 散熱鰭片相接觸結合,導熱構件之受熱端則呈一 延伸型態,且其中: 該出風口為一凸伸型態而相對界定形成有一内向 側壁、一外向延伸側壁以及介於該出風口與扇葉 的一内部延伸空間; 該出風口設成寬度縮減型態,構成其内向延伸側 位置係為靠近該扇葉中心對應位置之型態; 一缺讓空間,形成於該内向延伸側壁與殼座外側 j 一内向延伸導熱部,係由該散熱鰭片内端一體延 構成,該内向延伸導熱部係對應位於該内部延伸 所屬範圍内,該内向延伸導熱部具有一扇葉對應 該扇葉之環側局部呈間隔對應型態者。 2 、依據申請專利範圍第1項所述之散熱風扇模組結 其中該散熱鰭片為多數立向或橫向設置的單元導 體所構成。 3 、依據申請專利範圍第1項所述之散熱風扇模組結 其中所述導熱構件係為熱管、熱板任其中一者。 4、依據申請專利範圍第1項所述之散熱風扇模組結 其中該導熱構件之冷卻端係與該散熱鰭片任其中 一風 組包 至少 熱鰭 與該 向外 延伸 之間 壁的 之間 伸所 空間 側與 構, 熱片 構, 構, 一側 9 M392993 相接觸結合之型態者。 5 、依據申請專利範圍第1項所述之散熱風扇模組結 其中該内向延伸導熱部之扇葉對應側係為凹弧面 級面、曲折面任其中一種型態者。 6 、依據申請專利範圍第1項所述之散熱風扇模組結 其中所述導熱構件係為扁熱管;該出風口之外向 側壁設有一透口以供該散熱鰭片一側露出;該扁 型態之導熱構件的冷卻端設成立靠面型態抵靠於 熱鰭片露出之一側,該導熱構件之受熱端則扭轉 而呈一橫置面型態。 7 、依據申請專利範圍第1項所述之散熱風扇模組結 其中該内向延伸側壁與殼座相銜接處係具有一内 之舌緣部。 構, 、階 構, 延伸 敎管 *、、、 & 該散 90度 構, 凸狀 10M392993 6. Patent application scope: 1. A heat dissipation fan module structure, the heat dissipation fan module comprises a fan group, a heat dissipation fin and a heat conducting member; the fan includes a shell seat and a pivot group on the shell In the fan blade, one of the shell seats has an air inlet, and one side has an air outlet. The air piece is disposed at the corresponding air outlet, and the cooling fins of the heat conducting member are in contact with each other, and the heat conducting member is The heated end is in an extended configuration, and wherein: the air outlet is a convex shape and oppositely defines an inward side wall, an outwardly extending side wall, and an inner extending space between the air outlet and the fan blade; The air outlet is formed in a reduced width configuration, and the inwardly extending side position is a shape close to a corresponding position of the center of the blade; a missing space is formed on the inwardly extending side wall and the outer side of the housing j to extend the heat conducting portion. The inner end of the heat dissipating fin is integrally extended, and the inwardly extending heat conducting portion is located within a range corresponding to the inner extending portion, and the inwardly extending heat conducting portion has a blade corresponding to Leaves were partially by the ring side corresponding to the space patterns. 2. The heat dissipation fan module according to claim 1, wherein the heat dissipation fin is composed of a plurality of unit conductors arranged in an upright or horizontal direction. 3. The heat dissipating fan module according to claim 1, wherein the heat conducting member is one of a heat pipe and a hot plate. The heat dissipation fan module according to claim 1, wherein the cooling end of the heat conducting member and the heat dissipating fin are between the heat fin and the outwardly extending wall Stretch the space side and structure, hot sheet structure, structure, one side 9 M392993 contact type. 5 . The heat dissipation fan module according to claim 1 , wherein the corresponding side of the fan blade of the inwardly extending heat conducting portion is a concave curved surface surface and a meandering surface. The heat dissipating fan module according to claim 1, wherein the heat conducting member is a flat heat pipe; the outer side of the air outlet is provided with a through opening for the side of the heat dissipating fin; the flat type The cooling end of the heat conducting member is formed to face the one side of the heat fin exposed, and the heat receiving end of the heat conducting member is twisted to have a transverse surface shape. 7. The heat dissipating fan module according to claim 1, wherein the inwardly extending side wall and the housing have an inner tongue portion. Structure, structure, extension tube *, ,, & the 90 degree configuration, convex 10
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US11306974B2 (en) 2016-06-15 2022-04-19 Delta Electronics, Inc. Temperature plate and heat dissipation device
US11543188B2 (en) 2016-06-15 2023-01-03 Delta Electronics, Inc. Temperature plate device
USD965760S1 (en) * 2020-01-02 2022-10-04 Dynaeon Industrial Co., Ltd. Cooling fan with two air outlets

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