WO2015070511A1 - 吊扇控制器置放盒的散热结构 - Google Patents

吊扇控制器置放盒的散热结构 Download PDF

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Publication number
WO2015070511A1
WO2015070511A1 PCT/CN2014/000660 CN2014000660W WO2015070511A1 WO 2015070511 A1 WO2015070511 A1 WO 2015070511A1 CN 2014000660 W CN2014000660 W CN 2014000660W WO 2015070511 A1 WO2015070511 A1 WO 2015070511A1
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WO
WIPO (PCT)
Prior art keywords
heat dissipation
ceiling fan
heat
placement box
support
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Application number
PCT/CN2014/000660
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English (en)
French (fr)
Inventor
庄斐志
Original Assignee
巨铠实业股份有限公司
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Publication date
Application filed by 巨铠实业股份有限公司 filed Critical 巨铠实业股份有限公司
Priority to AU2014350940A priority Critical patent/AU2014350940B2/en
Publication of WO2015070511A1 publication Critical patent/WO2015070511A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04DNON-POSITIVE-DISPLACEMENT PUMPS
    • F04D25/00Pumping installations or systems
    • F04D25/02Units comprising pumps and their driving means
    • F04D25/08Units comprising pumps and their driving means the working fluid being air, e.g. for ventilation
    • F04D25/088Ceiling fans
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04DNON-POSITIVE-DISPLACEMENT PUMPS
    • F04D29/00Details, component parts, or accessories
    • F04D29/58Cooling; Heating; Diminishing heat transfer
    • F04D29/5806Cooling the drive system

Definitions

  • the invention relates to a heat dissipation structure, in particular to a placement box for use in a ceiling fan controller,
  • the cooling fan controller with good heat dissipation has a heat dissipation structure for the box.
  • the DC inverter motor is driven by the control circuit, and the control circuit is used to input the AC input.
  • the power is converted to a DC output power source to drive the DC inverter motor with a DC power source.
  • the control circuit is more It is used to sense the position of the motor rotor, and then control the switching of the power source according to the position of the motor rotor. Need to use the control circuit The application of this fan.
  • the control circuit In order to protect the control circuit, the control circuit is usually arranged in a box body, and for the convenience of maintenance, the box body is often used.
  • the box body Set in the interior of the hanging bell of the suspension system, which is equipped with various electronic components that will generate heat when the ceiling fan is working, resulting in A lot of heat is generated, but the bell is a nearly sealed structure, the air circulation is very poor, and the air is convected to dissipate heat. The effect is very poor, which will cause the electronic components to overheat and fail, so they need a knot that can help the heat dissipation of the above components. Structure.
  • the prior art is arranged in a storage box structure of a bell portion of a ceiling fan, and the basic structure is a placing box and a bell, and placing The box is suspended in the bell, and the heat dissipation of the control box can only be achieved by the poor heat convection. Therefore, it is necessary to strengthen and improve this. point.
  • the inventors further applied the structure of the controller placement box of the conventional ceiling fan. Improved, designed the heat dissipation structure of the controller box that can be matched with the ceiling fan, and the service life of the ceiling fan can be improved. So that it will not cause damage to its internal components or circuits due to overheating, causing troubles that the machine will not function properly, and there will be no trouble. Because the structure of the ceiling fan's controller placement box is overheated, it may cause fire or even explosion of the appliance.
  • the present invention Disadvantages can be made to overcome the above-mentioned prior art.
  • the main object of the present invention is to provide a heat dissipation structure for a ceiling fan controller placement box, which utilizes the heat conduction group Direct contact with contact surfaces such as ceilings or walls to dissipate heat from the contact surfaces such as ceilings or walls Go out.
  • a secondary object of the present invention is to provide a heat dissipation structure for a ceiling fan controller placement box, which utilizes the heat conduction group The piece is in direct contact with the suspension system to dissipate heat from the suspension system.
  • Another secondary object of the present invention is to provide a fixing member on the heat dissipation structure of the support frame and the placement box,
  • the fixing member is disposed above the placing box, and the fixing member can be fixed with the supporting frame, and the heat dissipating component thereof is provided More contact area on the fixture allows more heat to be conducted through the hot contact.
  • the present invention provides a heat dissipation structure of a ceiling fan controller placement box, which comprises a placement box, a circuit board, a heat dissipating component and a heat conducting component, the placing box has a receiving space, and the surface of the placing box is provided with the connecting capacity Locating at least one heat dissipation hole of the space, the circuit board has a control chip and an electronic component, and the circuit board is disposed on the The heat dissipating component is disposed on the circuit board in the accommodating space, and the heat conducting component is disposed on the heat dissipating component a hole, the heat conducting component is coupled to the inner heat dissipating component, and the conductive component thereof is directly conductively
  • the heat of the heat dissipating component in the placing box is directly radiated to the outside through the direct contact with the external low temperature object, and further supports The rack
  • the present invention further provides a fixing member, which is provided with the fixing member disposed above the placing box, and supporting The frame is used to cooperate with the support frame to make the placement box more stable on the support frame, and further, fixed
  • the piece is also an easy heat-conducting device, which utilizes more contact area with the heat-conducting component, and more effectively contacts the thermal contact on the heat-conducting component. Conducted out.
  • the foregoing ceiling fan controller places a heat dissipation structure of the box, and the heat conduction component is a soft heat conductive material or a thermal conductive silicone.
  • the foregoing ceiling fan controller places a heat dissipation structure of the box, and the heat dissipation component and the heat conduction component are integrally formed, and the guide The heat assembly protrudes from the heat dissipation hole, and the heat dissipation hole is disposed on two sides of the top surface of the placement box or the top surface of the placement box middle place.
  • the foregoing ceiling fan controller places a heat dissipation structure of the box, which further includes a branch for supporting and fixing the placement box a support frame comprising: a support member; at least two support columns connected to both sides of the support member; There are two support seats, which are bent and extended for the top edge of the support column.
  • the foregoing ceiling fan controller places a heat dissipation structure of the box, and further comprises a suspension system, and the suspension system utilizes the support frame A lifting ball seat is arranged on the lifting ball, and the lifting ball is fixed on the supporting frame by the hanging ball seat, and the hanging ball is connected by the hanging ball.
  • the foregoing ceiling fan controller places a heat dissipation structure of the box, and further comprises a suspension system, and the suspension system is locked by a hanging cover On the ceiling, and the bell is locked to the hanging cover, and then the hanging ball is fixed to the bottom of the bell at the bottom of the bell, and then Hang the ball to connect the pipe.
  • the foregoing ceiling fan controller places a heat dissipation structure of the box, and the side of the support frame is provided with a notch structure, and the notch structure bit Between the support column and the support base, the notch structure supports and fixes the placement box to force the heat conducting component to The suspension system is in contact with at least one support member for fixing the placement box on a side of the support column.
  • the aforesaid ceiling fan controller places a heat dissipation structure of the box, and further provides a first protrusion on the support member, the support a second protruding member is disposed on the inner side of the seat, the hanging plate is provided with a third protruding member, and the placing box is provided with a solid for contacting the heat conducting component Order.
  • the foregoing ceiling fan controller places a heat dissipation structure of the box, and the side of the placement box is extended with at least one side fixed seat.
  • the foregoing ceiling fan controller places a heat dissipation structure of the box, and the placement box is disposed under the ceiling fan, and the ceiling fan is configured A card slot is provided for embedding the side mount.
  • the invention has the advantages that the ceiling fan controller placement box can achieve an excellent heat dissipation effect.
  • FIG. 1 is an exploded perspective view of an embodiment of the present invention.
  • FIG. 2 is a schematic diagram of a combination of an embodiment of the present invention.
  • FIG. 3A is a perspective view of a partial combination of the embodiment of the present invention.
  • FIG. 3B is a partial schematic perspective view of a partial assembly according to an embodiment of the present invention.
  • 4A is a partially exploded perspective view of the embodiment of the present invention.
  • 4B is a partially exploded perspective view of the embodiment of the present invention.
  • 4C is a schematic exploded view of a placement box according to an embodiment of the present invention.
  • Figure 5 is a schematic illustration of a combination of another embodiment of the present invention.
  • 6A is a perspective view of a partial combination of another embodiment of the present invention.
  • FIG. 6B is a partially assembled perspective view 2 of another embodiment of the present invention.
  • FIG. 6B is a partially assembled perspective view 2 of another embodiment of the present invention.
  • FIG. 7A is a partially exploded perspective view of another embodiment of the present invention.
  • FIG. 7A is a partially exploded perspective view of another embodiment of the present invention.
  • FIG. 7B is a partially exploded perspective view of another embodiment of the present invention.
  • FIG. 7B is a partially exploded perspective view of another embodiment of the present invention.
  • FIG. 7C is an exploded perspective view of a placement box according to another embodiment of the present invention.
  • FIG. 8A is a first schematic structural view of still another embodiment of the present invention.
  • FIG. 8A is a first schematic structural view of still another embodiment of the present invention.
  • FIG. 8B is a second schematic structural view of still another embodiment of the present invention.
  • Figure 9 is an exploded perspective view of a further embodiment of the present invention.
  • Figure 10 is a schematic view showing the structure of a further embodiment of the present invention.
  • Fig. 11A is a first structural schematic view showing a further embodiment of the present invention.
  • Fig. 11B is a second structural schematic view showing a further embodiment of the present invention.
  • Figure 11C is a third schematic view of the structural change of the further embodiment of the present invention.
  • Figure 11D is a schematic cross-sectional view of Figure 11C.
  • Support frame 20 Placement box
  • hanging ball seat slot 132 support plate
  • first protruding member 200 heat dissipation hole
  • box 220 heat conducting component
  • circuit board 810 first locking hole
  • the invention relates to a heat dissipation structure of a ceiling fan controller placing box, which is mainly used in the icon of the invention a combination structure of the box 20, the circuit board 240, the heat dissipation component 230 and the heat conduction component 220, and the placement box 20 has a housing a space 250, and a top surface of the placing box 20 is provided with at least one heat dissipation hole 200 that communicates with the accommodating space 250.
  • the heat dissipation hole 200 is disposed at two sides of the top surface of the placement box 20 or between the top surface of the placement box.
  • the circuit board 240 has a control chip and an electronic component, and the circuit board 240 is disposed in the accommodating space 250, and then The heat dissipation component 230 is disposed on the circuit board 240, and the heat dissipation component 230 and the circuit board 240 can be disposed as needed.
  • An insulating sheet (not shown) is disposed, and the heat conducting component 220 is disposed in the heat dissipation hole 200, and the heat conducting component 220 is disposed.
  • the contact is connected to the heat dissipating component 230 inside the placing box 20, and directly uses the heat conducting component 220 thereof
  • the heat transfer from the heat sink assembly 230 in the placement box 20 is dissipated in a conductive manner.
  • the placement box 20 is disposed within the support frame 10, and the support frame 10 will be placed with the placement box 20,
  • the heat conducting component 220 on the placement box 20 is forced to adhere to the low temperature support frame 10, the ceiling or the wall surface, etc.
  • the heat dissipation component 230 inside the placement box 20 is in contact with the heat conduction component 220 to conduct heat.
  • another structure is used to support the frame 10 in a thermal contact conduction manner, and the inside of the box 20 will be placed.
  • the heat derived by the heat dissipating component 230 is conducted by the heat conducting component 220 to the low temperature support frame 10 or It is in contact with a low temperature object (such as a ceiling or a wall), and in addition, the heat dissipating component 230 of the present invention is a heat conducting material board.
  • the heat conducting component 220 can be a heat conductive material, such as a thermal conductive material, such as a thermal conductive material, which has plasticity. Characteristics such as flexibility can be used to adhere to the support frame 10 or other contact low temperature objects.
  • the overall structure of the present invention is configured as a hanging pipe 40 , a bell 30 , and a support frame . 10, the ball seat 50, the hanging ball 60 and the placement box 20, wherein the support frame 10, the ball seat 50, the hanging ball 60 and the hanging pipe
  • the composition of 40 constitutes a suspension system.
  • the support frame 10 of the present invention is supported by the support.
  • One side of the support member 130 is connected to one side of each of the support columns 120, and the other side of each support column 120 extends outwardly.
  • the support member 130 is bent into two support seats 110, and the hanging ball seat slot 131 is disposed on the support member 130.
  • a hanging ball 60 which is a downward semi-circular seat, and the lifting ball 60 is disposed on the hanging ball seat 50, the hanging ball seat 50 is disposed in the hanging ball slot 131, and the placing box 20 is fitted into the support column 120 of the support frame 10, and then The structure is disposed in the receiving slot 310 of the bell 30.
  • the bottom of the receiving slot 310 has a through hole 320, and the hanging tube 40 is used.
  • the through hole 320 of the bell 30 is inserted, and the hanging pipe 40 is connected to the hanging ball seat 130 through the hanging ball seat slot 131.
  • a ceiling fan is connected to the other end of the sling 40 (not shown).
  • the placing box 20 is composed of an upper casing 211 and a lower casing 212, and the casing 210 is convex or rectangular. Structure, the box body 210 is placed on the support frame 10, the circuit board 240 is disposed in the box body 210, and the circuit board 240 A heat dissipating component 230 is disposed on the heat dissipating component 230, and the heat dissipating component 230 is preferably a metal plate (such as an aluminum plate or a copper plate).
  • At least one heat dissipation hole 200 is provided, and the heat dissipation hole 200 is connected
  • the accommodating space 250 of the placement box 20 is disposed on the heat dissipation hole 200 and is in contact with the connection.
  • the heat dissipation component 230 is further disposed on the two sides of the respective support columns 120, and at least two support members 121 are disposed.
  • the present invention utilizes the direct contact relationship between the heat conducting component 220 and the heat sink component 230, and the heat dissipating component thereof
  • the heat on the 230 is transferred to the heat conducting component 220 by heat conduction, and then passes through the heat conducting group.
  • the piece 220 transfers heat in a direct contact manner to the surrounding heat dissipation plane.
  • the embodiment is mainly disposed on a plane.
  • the support frame 10 is connected to the support column 120 by the two sides of the support member 130, and the other side of the support column 120
  • Two support seats 110 are respectively bent outwardly, and the support base 110 is fixed on the plane, and the two support columns 120
  • a notch structure 123 is formed on the side of the support column 120, and is disposed on the support frame 10 thereof.
  • the convex end of the casing 210 is oriented.
  • the box body 210 is fitted into the notch structure 123 in the direction of the convex end, the placement box 20 is supported by the notch structure 123.
  • the circuit board 240 in the casing 210 is provided with the heat dissipation component thereon.
  • the two sides of the surface of the upper casing 211 are provided with a respective heat dissipation hole corresponding to the position of the heat conduction component 220. 200.
  • the heat dissipation component 220 is disposed on the heat dissipation hole 200.
  • the embodiment is configured by a notch structure on the support column 120. 123, when the placement box 20 is embedded, the heat conducting components 220 on both sides thereof are partially connected directly to the support base 110 (or the suspension system) Therefore, heat is also dissipated by the support base 110 (or the suspension system) in contact with the external environment.
  • the present invention utilizes the heat conducting component 220 to connect the heat dissipating component 230, and utilizes the heat conducting component 220 and The direct contact relationship of the heat dissipating component 230, the heat on the heat dissipating component 230 is transferred by heat conduction Up to the heat conducting component 220, and above the support frame 10 having a direct contact relationship through the heat conducting component 220, The heat is spread out, and further, because the placement box 20 is disposed in the notch structure 123, the support base 110 is placed therein.
  • the box 20 When the box 20 is placed, the box 20 is just snapped together to be more stable, and the placing box 20 is disposed on the support frame 10, And the heat conducting component 220 on the clamping box can be in close contact with the support frame 10 (suspension system), and the heat is effective. Conducted to the support frame 10 and assisted in heat dissipation through the ceiling, wall and ceiling fan body.
  • FIG. 8A and FIG. 8B are another preferred embodiment of the present invention.
  • a fixing member 70 is further disposed, and the fixing member 70 is disposed above the placing box 20 to cooperate with the supporting frame 10, The two sides of the fixing member 70 are embedded between the two supporting frames 10 to be engaged with each other, and the placing box 20 is more stable.
  • the fixing member 70 is also a structure that is easy to conduct heat, and the fixing member 70 can be used to guide the structure.
  • the thermal component 220 has more contact area and can more effectively conduct the thermal contact of the thermally conductive component 220 to its fixture 70. On, it can conduct heat more effectively.
  • the difference between this embodiment and the previous embodiment is that the suspension structure of the ceiling fan is not favorable.
  • the support frame 10 is used to support the frame, but the phase-consolidated hanging cover 330 and the bell 30 are used to perform the support frame 10 as described above. Suspension function, the bottom of the bell 30 is provided with a hanging ball fixing seat 830 to fix the lifting ball 60, and then the hanging cover 330 is locked to the ceiling on.
  • the placement box 20 is also positioned by the support frame 10, and the support member 130 of the support frame 10
  • the support plate 132 is disposed, and a hook member 111 is further disposed on the support base 110, and is disposed on the hanging cover 330.
  • the hook seat 331 corresponding to the hook member 111 is an L-shaped plate member extending downward from the hanging cover 330.
  • the hook 331 forms a card slot 334, and the hook member 111 can be embedded and positioned in the card slot 334, thereby
  • the cartridge 20 is fixed in the bell 30.
  • the support plate 132 is disposed at least on one side.
  • a protruding member 133 can cooperate with the notch structure 123 to perform a more stable support connection to the placement box 20.
  • the ceiling 30 can be directly connected to the ceiling fan without the hanging pipe 40 and the hanging ball 60.
  • the support base 110 extends at least one side inwardly with a second protrusion 112 when the placement box When the 20 is embedded in the support column 120, the second protrusion 112 can be carded on the placement box 20 at the top. Positioning.
  • the hanging cover 330 is provided with a third protruding member 333 protruding downward, and the third protruding member 333 is provided. Pressing the placement box 20 from above, and supporting the support base 110 and the support member 130, the placement box 20 is locked Within the above support column 120.
  • FIG. 11C Please refer to FIG. 11C together to illustrate a variation of the combination of the support frame 10 and the placement box 20, that is, the placement.
  • the side of the upper casing 211 of the casing 20 is directly protruded and provided with a side fixing seat 2110, so that the placing box 20 itself can be carried out. Suspension positioning without the need for the support frame 10 (ie, omitting the support frame 10), and directly using the placement box 20
  • the upper side mount 2110 is positioned, as shown in FIG. 11D, the side mount 2110 can be embedded in the card of the hanging cover 330
  • the groove 334 can also achieve the effect of suspending and positioning the placement box 20.
  • the card slot 334 can be set in a proper configuration
  • the component includes a ceiling fan.
  • the placement box 20 when the placement box 20 is not close to the ceiling, the placement box 20 is disposed on the ceiling fan.
  • the card slot 334 can be set in the ceiling fan (motor seat or ceiling fan).
  • the setting position of the side fixing seat 2110 (or the hooking piece 111) can be set.
  • the placing box 20 can also be used.
  • the side fixing seat 2110 is locked on the ceiling fan by screws, so that the heat conducting component 220 and the ceiling fan can be connected. Touch, to dissipate heat.
  • the hanging cover 330 is provided with a plurality of second locking holes 820, and the bell is A plurality of first locking holes 810 corresponding to the second locking holes 820 are disposed on the 30, and can be simultaneously locked by a screw (not shown) The first locking hole 810 and the second locking hole 820 are fixed to join the hanging cover 330 with the hanging bell 30.
  • the heat dissipation component 230 and the heat conduction component 220 can be integrated, that is, the heat dissipation component 230 A heat conducting component (integrally formed/not shown) protrudes directly from the placing box 20 (upper case 211) without The other heat conducting component 220 is disposed, that is, the heat conducting component 220 protrudes from the heat dissipation hole 200, and the heat conducting component
  • the 220 can also be bent to provide a contact plane, and the heat dissipation hole 200 can be configured as a slot or other components.
  • the structure directly extends outward from the accommodating space 250 to the outside of the heat dissipation hole 200 due to the heat of the integrated structure.
  • the conduction is relatively average and easy to manufacture.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Cooling Or The Like Of Electrical Apparatus (AREA)

Abstract

一种吊扇控制器置放盒的散热结构,其主要为吊扇控制器的置放盒,该置放盒盒内具有电路板、散热组件、与导热组件,于该置放盒内设置该电路板,再将该散热组件设置于该电路板之上,另外,该置放盒一侧表面设有散热孔洞,将导热组件设置于该散热孔洞处,并连接于该散热组件之上,以热接触传导方式将该散热组件的热利用导热组件经由吊扇悬吊系统或天花板散出。

Description

吊扇控制器置放盒的散热结构 技术领域
本发明有关于一散热结构,特别是指一种配合使用于吊扇控制器的置放盒,使具有 良好散热效果的吊扇控制器置放盒的散热结构。
背景技术
科技日新月异,人们对于各式各样事情的功效上要求更高,不再像以往一样只要求 能使用就好,随着人性化的思维模式,人们不断研究怎样才能使生活上各种大小事务处 理时,能更加高效率更加节省以及更加安全,故,现在发明不断推陈出新,提高效率、 更加节省以及更加安全,也成为人们追求的一种理想发明。
随时代的进步,马达技术的发展日趋成熟,其相关领域的各种应用也越来越广,吊 扇也为各种常见应用中的其中一种,且近年来环保与节能观念逐渐被重视,市面上纷纷 出现各种强调节能省电、静音及高效能的吊扇。
而为了使吊扇具有节能省电、静音与高效能的功效,近年来趋势是采用直流变频马 达来驱动吊扇,一般而言,直流变频马达由控制电路所驱动,控制电路用以将交流输入 电源转换为直流输出电源,以利用直流电源驱动直流变频马达。此外,该控制电路更可 用以感测马达转子位置,进而依据马达转子位置控制电源的切换。需要利用控制电路在 此电扇的应用。
为了保护控制电路,控制电路通常设置于一盒体内,又为了维修方便,常将此盒体 设置于悬吊系统的吊钟内部,此置放盒内设置多种吊扇工作时会发热的电子组件,造成 大量热能产生,但吊钟是一几近密封的构造,空气流通很差,要通过空气对流来做散热 效果很差,如此会造成电子组件过热而失效,因此其需要一种可帮助上述组件散热的结 构。
现今有很多3C电器用品皆有设置散热的结构,如计算机的散热、游戏机的散热、 电冰箱的散热及冷气机的散热等等很多电器用品皆需要散热装置,也有各种散热方式, 如利用风扇、水冷、散热组件等等,可以看到现今的装置皆很重视有关于电器的散热, 这不仅可以延长使用电器的寿命,也可以对电器产品使用上添增一份安全性,现今常常 因其机械过热原因造成机械上的损坏,甚至新闻上也常常出现因为过热原因造成电器用 品爆炸伤人等等新闻,所以对于机具过热此等问题,还需要多加改进散热问题。
现有习知安装在吊扇的吊钟部的置放盒结构,基本结构上为一置放盒与吊钟,置放 盒就悬空放于吊钟内,控制盒的散热就只能靠效果差的热对流来达成故需要加强改进此 点。
是以,针对上述现有习知技术内容所存在的问题,如何研发一种更具安全、更具实 用性的创新结构,实为大众所期盼,以相关于此方面困扰的业者应需共同努力研发更安 全更实用的结构,以解决此问题。
经向上述目标努力后,发明人针对现有习知吊扇的控制器置放盒的结构进一步加以 改良,设计出可配合此吊扇的控制器置放盒的散热结构,更可提升其吊扇的使用寿命, 使其不会因过热导致其内部组件或电路受损,造成机械不能正常运作的麻烦,也不会有 因为吊扇的控制器置放盒的结构过热的问题产生电器起火甚至是爆炸等危险。故本发明 可产生克服上述现有习知技术的缺点。
发明内容
本发明的主要目的,在于提供一种吊扇控制器置放盒的散热结构,其利用该导热组 件直接接触天花板或墙面等可接触的散热面,将热借由天花板或墙面等接触面传导散热 出去。
本发明的次要目的,在于提供一种吊扇控制器置放盒的散热结构,其利用该导热组 件直接接触悬吊系统,将热借由悬吊系统传导散热出去。
本发明的另一次要目的,在于支撑架与置放盒的散热结构之上提供一种固定件,将 固定件设置于置放盒的上方,其固定件可配合支撑架固定其置放盒,利用其散热组件有 更多接触面积于固定件上,可以将更多的热借由热的接触传导出去。
本发明的目的及解决其技术问题是采用以下技术方案来实现的。为达上述所指称的 主要目的与次要目的功效,本发明提供吊扇控制器置放盒的散热结构,其中包含置放盒、 电路板、散热组件与导热组件,该置放盒具有容置空间,且该置放盒表面设有连通该容 置空间的至少一个散热孔洞,该电路板具有控制芯片与电子组件,将该电路板设置于该 容置空间内,再将该散热组件设置于该电路板之上,另外,将该导热组件设置于该散热 孔洞,该导热组件并连接于内部该散热组件之上,其直接利用其导热组件以传导方式将 该置放盒内散热组件的热通过直接接触外部低温对象向外导出散热,进一步也利用支撑 架,利用该支撑架将该置放盒固设于一处,该支撑架部分结构直接触碰该散热组件,利 用该支撑架直接接触传导方式进行散热。
再者,本发明更进一步提供固定件,增加设置该固定件于其置放盒的上方,与支撑 架作配合,利用与支撑架相互卡合,将置放盒更加稳固于其支撑架上,更进一步,固定 件也为易于导热装置,利用其与导热组件更多接触面积,更有效将导热组件上的热接触 传导出来。
本发明的目的及解决其技术问题还可采用以下技术措施进一步实现。
前述的吊扇控制器置放盒的散热结构,该导热组件为软性导热材或导热硅胶。
前述的吊扇控制器置放盒的散热结构,该散热组件与该导热组件为一体成型,该导 热组件凸伸出该散热孔洞,该散热孔洞设置于该置放盒顶表面两侧或该置放盒的顶表面 中间位置。
前述的吊扇控制器置放盒的散热结构,其进一步包括有用以支撑固定该置放盒的支 撑架,该支撑架,包含:支撑件;至少二个支撑柱,连接于该支撑件的两侧边;以及至 少二个支撑座,为上述支撑柱的顶边弯折延伸。
前述的吊扇控制器置放盒的散热结构,更包含悬吊系统,该悬吊系统利用该支撑架 上设置吊球座,吊球利用该吊球座固定于该支撑架上,并利用该吊球连接吊管。
前述的吊扇控制器置放盒的散热结构,更包含悬吊系统,该悬吊系统利用吊盖锁固 于天花板,而吊钟锁固于该吊盖,再利用吊球固定于该吊钟底部的吊球固定座,再以该 吊球连接吊管。
前述的吊扇控制器置放盒的散热结构,该支撑架侧边设有凹口结构,该凹口结构位 于该支撑柱与该支撑座之间,该凹口结构支撑并固定该置放盒,以强迫该导热组件能与 该悬吊系统接触,上述支撑柱的侧边上设有至少一个用以固定该置放盒的支持件。
前述的吊扇控制器置放盒的散热结构,更进一步于该支撑件设置第一凸件,该支撑 座内侧设置第二凸件,该吊盘设置第三凸件,该置放盒上设有用以接触该导热组件的固 定件。
前述的吊扇控制器置放盒的散热结构,该置放盒的侧边延伸设置有至少一侧固定 座。
前述的吊扇控制器置放盒的散热结构,该置放盒设于吊扇构成的下方,该吊扇构成 设有用以供该侧固定座嵌入定位的卡嵌槽。
本发明的优点是:可以达到吊扇控制器置放盒极佳的散热效果。
上述说明仅是本发明技术方案的概述,为了能够更清楚了解本发明的技术手段, 而可依照说明书的内容予以实施,并且为了让本发明的上述和其他目的、特征和优点能 够更明显易懂,以下特举较佳实施例,并配合附图,详细说明如下。
附图的简要说明
图1:为本发明实施例的分解示意图。
图2:为本发明实施例的组合示意图。
图3A:为本发明实施例的局部组合立体示意图一。
图3B:为本发明实施例的局部组合立体示意图二。
图4A:为本发明实施例局部分解立体示意图一。
图4B:为本发明实施例局部分解立体示意图二。
图4C:为本发明实施例的置放盒分解示意图。
图5为本发明另一个实施例的组合示意图。
图6A:为本发明另一个实施例的局部组合立体示意图一。
图6B:为本发明另一个实施例的局部组合立体示意图二。
图7A:为本发明另一个实施例的局部分解立体示意图一。
图7B:为本发明另一个实施例的局部分解立体示意图二。
图7C:为本发明另一个实施例的置放盒分解示意图。
图8A:为本发明又一个实施例的结构示意图一。
图8B:为本发明又一个实施例的结构示意图二。
图9:为本发明的进一实施例的分解示意图。
图10:为本发明的进一实施例的结构示意图。
图11A:为本发明的进一实施例的结构变化示意图一。
图11B:为本发明的进一实施例的结构变化示意图二。
图11C:为本发明的进一实施例的结构变化示意图三。
图11D:为图11C的组合剖视示意图。
【主要元件符号说明】
10:支撑架       20:置放盒
30:吊钟         310:容置槽
320:穿孔        330:吊盖
331:卡勾座      332:散热孔洞
333:第三凸件    334:卡嵌槽
40:吊管         50:吊球座
60:吊球         110:支撑座
111:卡勾件      112:第二凸件
120:支撑柱      130:支撑件
131:吊球座槽    132:支撑板
133:第一凸件    200:散热孔洞
210:盒体        220:导热组件
230:散热组件    250:容置空间
211:上壳        2110:侧固定座
212:下壳        123:凹口结构
121:支持件      70:固定件
240:电路板      810:第一锁固孔
820:第二锁固孔  830:吊球固定座
实现发明的最佳方式
为了使本发明的结构特征及所达成的功效有更进一步的了解与认识,特用较佳的实 施例及配合详细的说明,说明如下:
本发明有关一种吊扇控制器置放盒的散热结构,在本发明图标中,其主要利用置放 盒20、电路板240、散热组件230与导热组件220的组合结构,该置放盒20具有容置 空间250,且该置放盒20顶表面设有连通该容置空间250的至少一个散热孔洞200,该 散热孔洞200设置于该置放盒20顶表面的两侧或该置放盒的顶表面中间位置为佳,该 电路板240具有控制芯片与电子组件,将该电路板240设置于该容置空间250内,再将 该散热组件230设置于该电路板240之上,该散热组件230与该电路板240间可依需要 置放绝缘片(未图示),另外,将该导热组件220设置于该散热孔洞200,该导热组件220 其接触连接于该置放盒20内部的该散热组件230之上,其直接利用其导热组件220直 接以传导的方式将该置放盒20内散热组件230的热传递散热出来。
另外,将置放盒20设置于支撑架10之内,支撑架10会随着置放盒20的置入,将 置放盒20上的导热组件220强迫贴紧于低温的支撑架10上、天花板或墙面等接触散热 面上,如此设置可利用该置放盒20内部的该散热组件230接触该导热组件220传导热 至外部,此外,也利用另外一种结构以支撑架10以热接触传导方式,将置放盒20内的 散热组件230所导出的热,借由该导热组件220将热向外传导至低温的支撑架10或其 它接触的低温对象(如:天花板或墙面)上,另外,本发明的散热组件230为导热材板, 其比热小易于导热,而该导热组件220可为软性导热材,如导热硅胶等,其具有可塑性、 挠性等特性,可利用其可塑性紧贴于该支撑架10或其它接触的低温对象。
请参阅图1,在此实施例中,本发明的整体结构设置为吊管40、吊钟30、支撑架 10、吊球座50、吊球60及置放盒20,其中,该支撑架10、吊球座50、吊球60及吊管 40的组成构成悬吊系统。
请一并参阅图2、3A、3B图、图4A、图4B以及图4C,本发明的支撑架10是由支 撑件130的两侧连接各一个支撑柱120的一侧,其各支撑柱120的另一侧边各向外延伸 弯折成二个支撑座110,该支撑件130上设置吊球座槽131,另外,其置放盒20之下设 有吊球60,该吊球60为向下半圆形座体,该吊球60设置于吊球座50之上,该吊球座 50设置于该吊球座槽131,该置放盒20嵌合于该支撑架10的上述支撑柱120之内,再 将此结构设置于吊钟30的容置槽310,该容置槽310底部具有穿孔320,利用吊管40 穿设该吊钟30的该穿孔320,该吊管40通过该吊球座槽131与该吊球座130后,连接 至该吊球60的半球圆心处孔洞,再利用该吊管40另端接设吊扇构成(未图示)。
该置放盒20由上壳211与下壳212组成盒体210,其盒体210为凸字形或长方形的 结构,将盒体210置放于支撑架10之上,盒体210内设置电路板240,其电路板240 上设有散热组件230,该散热组件230为可散热的板体,其以金属板为佳(如铝板、铜板 等),并在该上壳211表面的中间位置设有至少一个散热孔洞200,该散热孔洞200连通 该置放盒20的容置空间250,再将该导热组件220设置于该散热孔洞200,并接触连接 内部的该散热组件230,更进一步在各别支撑柱120的两侧边,设置至少二个支持件121, 当置放盒20设置于支撑架10的上述支撑柱120之内时,上述支持件121会固定置放盒 20,并强迫该置放盒20上的导热组件220紧紧接触于该平面。
承上所述,本发明利用导热组件220与散热组件230的直接接触关系,其散热组件 230上的热会通过热传导方式,将热传递至该导热组件220之上,其后再通过该导热组 件220将热以直接接触方式传递至周遭散热平面上。
请参阅图5、图6A、6B、图7A、7B以及图7C,本实施例主要设置在一个平面上, 其支撑架10是由支撑件130的两侧边分别连接支撑柱120,而上述支撑柱120的另一侧 边各别向外弯折延伸出二个支撑座110,其支撑座110固设于平面上,二个支撑柱120 结合支撑座110后,在该支撑柱120的侧边形成凹口结构123,在其支撑架10之上设置 置放盒20,置放盒20设置于二个支撑柱120之间的空间时,该置放盒20侧边会嵌入、 卡制于该凹口结构123,例如该盒体210为凸字形结构时,将盒体210的凸字端方向置 放于支撑架10之上,盒体210以凸字端方向将其嵌合于凹口结构123之内,该置放盒 20借由该凹口结构123卡固支撑。又,该盒体210内的电路板240其上设有该散热组件 230,且该上壳211表面的两侧位置设有各自一个对应该导热组件220位置的散热孔洞 200,而该散热孔洞200上设有该导热组件220,本实施例因支撑柱120上的凹口结构 123使置放盒20嵌入时其两侧的导热组件220与支撑座110(或悬吊系统)有部分直接接 触,因此借由该支撑座110(或悬吊系统)的与外部环境接触亦得以进行散热。
承上所述,本发明利用该导热组件220连接该散热组件230,利用导热组件220与 该散热组件230的直接接触关系,其散热组件230上的热会通过热传导方式,将热传递 至该导热组件220之上,再通过该导热组件220有直接接触关系的该支撑架10之上, 将热散播出去,更进一步因其置放盒20设置于凹口结构123内,使支撑座110在其置 放盒20时,刚好卡制结合置放盒20,得以更加稳固其置放盒20设置于支撑架10之上, 并迫紧置放盒上的导热组件220可以与支撑架10(悬吊系统)做紧密的接触,将热有效的 传导到支撑架10再经由天花板、墙面及吊扇本体协助散热。
请参阅图8A及图8B图,其为本发明其另一个较佳实施例,在上述两种实施例之上, 更进一步设置固定件70,将固定件70设置于其置放盒20的上方,与支撑架10作配合, 利用固定件70两侧嵌设于二个支撑架10之间而相互卡合,将置放盒20更加稳固于其 支撑架10之上,其固定件70也为易于导热的结构,更可利用设置其固定件70与其导 热组件220有更多接触面积,能更有效将导热组件220的热接触传导至其固定件70之 上,能更有效将热传导出去。
请一并参阅图9及图10,此实施例与前实施例差异在于其吊扇的悬吊结构并不利 用该支撑架10支撑架,而是由相固结的吊盖330及吊钟30来进行如前述支撑架10的 悬吊功能,吊钟30底部设置吊球固定座830固定吊球60,再将吊盖330锁固于天花板 上。另外,置放盒20同样利用该支撑架10加以定位,而该支撑架10的该支撑件130 以支撑板132设置,更在上述支撑座110上延伸设置卡勾件111,在该吊盖330上设置 对应该卡勾件111的卡勾座331,该卡勾座331呈由该吊盖330向下延伸的L形板件, 该卡勾座331形成卡嵌槽334,该卡勾件111可嵌入定位于该卡嵌槽334,借以将该置 放盒20固定于该吊钟30内。而在较佳实施方式中,该支撑板132设置至少一侧凸设第 一凸件133,可配合该凹口结构123对该置放盒20进行更稳固的支撑连结。而在其它实 施方式中,该吊钟30下方可直接连接吊扇构成,而无需该吊管40与吊球60。
请一并参阅图11A,该支撑座110至少一侧向内延伸有第二凸件112,当该置放盒 20嵌设卡固于该支撑柱120之内时,该第二凸件112得以在上方对该置放盒20进行卡 制定位。
请一并参阅图11B,该吊盖330设置向下凸伸的第三凸件333,利该第三凸件333 从上方抵压该置放盒20,再配合该支撑座110与该支撑件130,将该置放盒20卡固于 上述支撑柱120之内。
请一并参阅图11C,用以说明该支撑架10与该置放盒20的组合变化例,即该置放 盒20的上壳211侧边直接凸伸设置有一侧固定座2110,因此该置放盒20本身即可进行 悬吊定位,而不需该支撑架10的设置(即省略该支撑架10),而直接利用该置放盒20 上的侧固定座2110进行定位,如图11D所示,该侧固定座2110可嵌入该吊盖330的卡 嵌槽334,同样能达到悬吊定位该置放盒20的效果。再者,该卡嵌槽334可设于适当构 件处,包括吊扇构成,例如当该置放盒20非靠近天花板时,该置放盒20设于吊扇构成 的下方(包括马达座及吊扇),此时即可将该卡嵌槽334设于该吊扇构成(马达座或吊扇) 下方,以供侧固定座2110(或前述该卡勾件111)的嵌设定位,当然,该置放盒20亦可 使用螺丝将侧固定座2110锁紧在吊扇构成上,以使导热组件220与吊扇构成能有所接 触,借以散热。
又如图10至图11C所示,该吊盖330上设置有多个第二锁固孔820,并且在该吊钟 30上设置与上述第二锁固孔820对应的多个第一锁固孔810,可借螺件(未图示)同时锁 固该第一锁固孔810与该第二锁固孔820,使该吊盖330与该吊钟30相结合。
在前揭实施例中,该散热组件230与该导热组件220可加以整合,即该散热组件230 直接由该置放盒20(上壳211)凸伸出一个导热组件(一体成型的设置/未图示),而无需 另一个导热组件220的设置,即该导热组件220凸伸出该散热孔洞200,且该导热组件 220亦可弯折设置而提供接触平面,此时该散热孔洞200可为槽缝构成或其它构成设置, 此种结构直接由内部该容置空间250向外延伸出该散热孔洞200的外,由于一体结构热 传导较为平均,且制作方便。
以上所述,仅是本发明的较佳实施例而已,并非对本发明做任何形式上的限制, 虽然本发明已以较佳实施例揭露如上,然而并非用以限定本发明,任何熟悉本专业的技 术人员,在不脱离本发明技术方案范围内,当可利用上述揭示的技术内容做出些许更动 或修饰为等同变化的等效实施例,但凡是未脱离本发明技术方案的内容,依据本发明的 技术实质对以上实施例所做的任何简单修改、等同变化与修饰,均仍属于本发明技术方 案的范围内。

Claims (10)

  1. 一种吊扇控制器置放盒的散热结构,其特征在于,其包含:
    置放盒,具有容置空间,且该置放盒表面设有连通该容置空间的至少一个散热孔洞;
    电路板,其设置于该容置空间内:
    散热组件,其设置于该电路板之上;以及
    导热组件,其设置于该散热孔洞处,且该导热组件接触连接该散热组件。
  2. 根据权利要求1所述的吊扇控制器置放盒的散热结构,其特征在于,该导热组 件为软性导热材或导热硅胶。
  3. 根据权利要求1所述的吊扇控制器置放盒的散热结构,其特征在于,该散热组 件与该导热组件为一体成型,该导热组件凸伸出该散热孔洞,该散热孔洞设置于该置放 盒顶表面两侧或该置放盒的顶表面中间位置。
  4. 根据权利要求1所述的吊扇控制器置放盒的散热结构,其特征在于,其进一步 包括有用以支撑固定该置放盒的支撑架,该支撑架,包含:
    支撑件;
    至少二个支撑柱,连接于该支撑件的两侧边;以及
    至少二个支撑座,为上述支撑柱的顶边弯折延伸。
  5. 根据权利要求4所述的吊扇控制器置放盒的散热结构,其特征在于,更包含悬 吊系统,该悬吊系统利用该支撑架上设置吊球座,吊球利用该吊球座固定于该支撑架上, 并利用该吊球连接吊管。
  6. 根据权利要求4所述的吊扇控制器置放盒的散热结构,其特征在于,更包含悬 吊系统,该悬吊系统利用吊盖锁固于天花板,而吊钟锁固于该吊盖,再利用吊球固定于 该吊钟底部的吊球固定座,再以该吊球连接吊管。
  7. 根据权利要求5所述的吊扇控制器置放盒的散热结构,其特征在于,该支撑架 侧边设有凹口结构,该凹口结构位于该支撑柱与该支撑座之间,该凹口结构支撑并固定 该置放盒,以强迫该导热组件能与该悬吊系统接触,上述支撑柱的侧边上设有至少一个 用以固定该置放盒的支持件。
  8. 根据权利要求6所述的吊扇控制器置放盒的散热结构,其特征在于,更进一步 于该支撑件设置第一凸件,该支撑座内侧设置第二凸件,该吊盘设置第三凸件,该置放 盒上设有用以接触该导热组件的固定件。
  9. 根据权利要求1所述的吊扇控制器置放盒的散热结构,其特征在于,该置放盒 的侧边延伸设置有至少一侧固定座。
  10. 根据权利要求9所述的吊扇控制器置放盒的散热结构,其特征在于,该置放盒 设于吊扇构成的下方,该吊扇构成设有用以供该侧固定座嵌入定位的卡嵌槽。
PCT/CN2014/000660 2013-11-12 2014-07-08 吊扇控制器置放盒的散热结构 WO2015070511A1 (zh)

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