TWM331079U - LED lighting device and light source module thereof - Google Patents

LED lighting device and light source module thereof Download PDF

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Publication number
TWM331079U
TWM331079U TW96211578U TW96211578U TWM331079U TW M331079 U TWM331079 U TW M331079U TW 96211578 U TW96211578 U TW 96211578U TW 96211578 U TW96211578 U TW 96211578U TW M331079 U TWM331079 U TW M331079U
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Taiwan
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light source
led light
led
source module
lighting unit
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TW96211578U
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Chinese (zh)
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Long-Fu Yang
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Long-Fu Yang
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Priority to TW96211578U priority Critical patent/TWM331079U/en
Publication of TWM331079U publication Critical patent/TWM331079U/en

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M331079 八、新型說明: 【新型所屬之技術領域】 本案是關於一種LED照明單元及其光源模組,更特別地,本 案疋關於一種全面域照射的LED照明單元及其光源模組。 . 【先前技術】 發光一極體(Light Emitting Diode, LED)是一種光電半導體 元件,應用電致發光原理,施加一正向電壓使其發出單色、不連 _ 續的光’當變換其所採用的半導體材料之組成成分時,便可使發 光二極體發出在近紫外線、可見光或紅外線等不同波長的光。 LED目前已被廣泛應用在指示燈、顯示板以及各種照明設 備,它是21世紀的新型光源,相較於傳統光源,其具有效率高, 壽命長,不易破損以及耗電量少等優點,使用LED光源取代白光 燈、鹵素燈等傳統照明光源,不僅更光亮更省電,使用更長效, 而且點亮反應更快。 鲁 然而’ led光源板多是以平面方式呈現,光線的發散角度受 限,因此會產生照明死角的問題,進而影響LED燈的照明亮度, _ 而習知技術針對此種缺失所作的改良,乃多著重在LED光源之燈 座的設計’其難以全面取代目前已具有統一規格的傳統照明設 備,例如E27頭的燈座或燈具,也因此LED光源難以全面取代傳 統燈泡。 職是之故,創作人鑑於習知技術之設計缺失,乃經悉心試驗 與研究,並一本鍥而不捨之精神,創作出本案「led照明單元及 其光源模組」,以下為本案之簡要說明。 5 M331079 【新型内容】 本案之目的在於提供一種LED照明單元,其包含一外罩,一 f座與斜罩為可拆式連結,並財_交流電賴以接收一交流 電’以及一 LED光源模組設置於該外罩與該基座之間,該led 光源核組包含-f源板,該電源板具有複數導電_及—電流轉 換元件,該電流轉換元件與該交流電端電連接,並將該交流電轉M331079 VIII. New Description: [New Technology Field] This case is about an LED lighting unit and its light source module. More specifically, the present invention relates to a full-field illumination LED lighting unit and its light source module. [Prior Art] A Light Emitting Diode (LED) is an optoelectronic semiconductor component that uses the principle of electroluminescence to apply a forward voltage to emit a monochromatic, non-continuous light. When the composition of the semiconductor material is used, the light-emitting diode can emit light of different wavelengths such as near ultraviolet light, visible light, or infrared light. LED has been widely used in indicator lights, display panels and various lighting equipment. It is a new type of light source in the 21st century. Compared with traditional light sources, it has the advantages of high efficiency, long life, not easy to break and low power consumption. LED light sources replace traditional lighting sources such as white light lamps and halogen lamps, which are not only brighter and more energy efficient, but also use longer-lasting effects and lighter response. However, the LED light source panels are mostly in a flat manner, and the divergence angle of the light is limited, so that the problem of the illumination dead angle is generated, which in turn affects the illumination brightness of the LED lamp, and the improvement of the conventional technology for such a defect is The design of the lamp holder with more emphasis on the LED light source is difficult to completely replace the traditional lighting equipment that has a uniform specification, such as the lamp holder or the lamp of the E27 head, and thus it is difficult for the LED light source to completely replace the traditional light bulb. As a result of the job, the creator, due to the lack of design of the prior art, was carefully tested and researched, and the spirit of perseverance was created to create the "LED lighting unit and its light source module". The following is a brief description of the case. 5 M331079 [New content] The purpose of this case is to provide an LED lighting unit, which comprises a cover, a f-seat and a slant cover are detachably connected, and the _AC power is used to receive an AC power and an LED light source module is set. Between the outer cover and the base, the LED light source core group includes a -f source plate, the power supply plate has a plurality of conductive_and current conversion components, the current conversion component is electrically connected to the alternating current terminal, and the alternating current is transferred

換成-直流電並傳駐每—導電槽,此外,該LED光源模組更包 含複數LED光源板,每一 LED光源板具有一通電端與該複數導 電槽的其巾之-相連接,該直流電經由絲—通電端通電至絲 - LED光源板,其巾該每—絲板與該電源板間具有一角 度’且該角度大於零。 上述的LED照明單元可為一 LED燈泡,其中該外罩為一 璃燈罩’且該基座為_燈泡座,特別是—肪頭燈座。 ^上述的構想,其中縣—LED光源板為—印刷電路板 且汶母一印刷電路板包含至少一 LED。 本案之另—目的在於提供—種LED光源模組,1包含 複解以及—紐轉換元件,該電流轉換元件斯 ,抓電’亚將該交流電轉換成—直流電後,傳送至每 且該LED光賴組更包含魏LED絲板,每—咖曰 端與該複數導電槽的其中之-相連接,該直流電經由: 母通電至該每—LED絲板,其巾該每—咖 與该電源板間具有-角度,且該肖度大於零。 "、 根據上述的構想’其中該每—㈣辆板為—印刷電路板 6 M331079 且該每一印刷電路板包含至少一 LED。 根據本創作所構想的LED照明單元和咖統模組,該複 數統板伽凹凸__方式分顺該賴油連接^其 中該每-通電端為—凸部’而該每—導電槽為—凹槽,且該凸^ 和該凹槽分別具有-焊接點,且鋪數咖杨板與該電源板相 連接後,形成一多邊體,特別是一中空多邊體。 此外’根據上述_想,該每- LED光源板與該電源板間的 角度為90纟,即每一 LED光源板係垂直於該電源板, 於此角度。 本案之另一目的在於提供一種LED光源模組,其包含一電源 板’:平面LED統板,以及複數LED光源板,該鶴、板具有、 複數導電_及-電流轉換元件,該電流轉換元件接收—交流 電’並將該韻電轉換成—錢t後傳送霞每—魏槽;該^ 面LED光源板具有複數通電槽;該複數LED光源板電連接浦 電源板與辭面LED絲板之間,而每-LED絲板具有一第 一通電端用以與該複數通電制其巾之-相連接,以及-第二通 電端用以與該複數導電槽的其中之—相連接,該直流電經由該第 ,通電端通電至該每一!光源板,並經由該第一通電端通電至 該平面LED光源板。 、根據上述的構想,該平面LED光源板與該每一 LED光源板 為一印刷電路板,且分別包含至少一 LED。 根據上述的構想,該複數LED光源板以凹凸對插槽的方式與 忒電源板和該平面led光源板相連接,其中該第一通電端和該第 二通電端為-凸部,而該導電槽和該通電槽為—凹槽,且該凸部 7 ι M331079 和该凹槽分別具有-焊接點,且該複數LED《源板與該電源板相 連接後,形成一多邊體,特別是形成一中空多邊體。 根據上述的構想,該平面LED光源板之通電槽的數量與該複 數LED光源板的數量相同^且該平面㈣統板為一多邊形, 並具有與該多邊體相同的邊數。 於上述的LED %源模組中,該每一 LED光源板可垂直於該 電源板以及該平面LED光源板,但並不限於此。 此外’本案所構想之LED照明單元,其外罩和基座分別包含 至少-散熱孔’且本案所縣之LED絲模_電源板與平面 I^D光職亦可分顺含至少—賴孔,使本鑛縣之咖照 明單元及其光源模組能利用空氣對流的原理而具散熱效果。 綜上所述’本案所構想之LED照明單元及其光源模組的組成 方式及其結構,一來能使㈣光源模組作立體、全面域的照射, -來月b簡化繁複的組立順序,減少加卫成本’並糊凹凸對插槽 的特性而省略連接H的使帛’減少LED照明單元之料成本並增 加組立的穩定度。 本案之功效與目的,可藉由下列實施方式說明,俾有更深入 之了解·· 【實施方式】 以下針對本案的LED照明單元及其光源模組之實施例進行 4田述但Λ際之配置及所採行之方法並不必須完全符合所描述之 内容,熟習本技藝者當能在不脫離本發明之實際精神及範圍的情 況下’做出種種變化及修改。 8 M331079 首先睛參閱第一圖(A),其為本案之LED照明單元之一實 施例的結構示意圖,LED照明單元1包含一外罩u,一基座12, 以及LED光源模組5,在本實施例中,該外罩η為一燈泡罩, 例如為一玻璃燈罩,但亦可為其他任何種類之燈泡外罩,而該基 座12為一燈泡座,例如可為一 E27頭的燈座,與該外罩Η為一 可拆式的連結關係,並具有一交流電端121用以接收一交流電13。 於上述實施例中,該LED光源模組5設置於該外罩U與該 基座12之間,其包含一電源板51以及複數LED光源板52,該電 源板51具有複數導電槽51〇以及一電流轉換元件511,該電流轉 換兀件511與該基座12之交流電端121電連接,用以將該交流電 13轉換成一直流電η並傳送至每一導電槽51〇,而該複數LED 光源板52為一印刷電路板,且該每一印刷電路板分別包含至少一 LED 520,該LED 520可均勻分布於每一 LED光源板52上,亦可 隨意排列,且每一 LED 520發出的光可視使用者的需求,為各種 相同或不同的顏色。 根據上述的實施例,每一 LED光源板52分別具有一通電端 521,用以分別與該複數導電槽51〇的其中之一相連接,因此,該 直流電14可經由該複數導電槽51〇傳送至與其相連的每一通電端 521 ’進而通電至該每一 LED光源板52,其中該每一 LED光源板 52與該電源板51間具有一角度1〇,且該角度1〇大於零。 請再參閱第一圖(B),其為將第一圖(A)之LED照明單元 1組裝後的示意圖,將該LED光源模組5設置於基座12之後,再 將外罩11與该基座12相連結,即完成本案之具有LED立體環繞 光源的LED照明裝置1。此外,於上述實施例中,該外罩n、基 9 M331079 座12以及電源板51可分別包含至少一散熱孔1〇〇,因而利用氣流 對流的原理,可讓外部的冷空氣進人LED照明單元丨内部,並讓 熱空氣流出以達到散熱效果。 請再參閱第二圖,其為本案之LED光源模組之一實施例的示 意圖’ LED光源模組5所包含的元件及各元件間之連結關係與第 一圖(A)中所述的LED光源模組5 _,於此不再贅述。在本 實施例中,每-LED光源板52係以凹凸對插_方式分別與該 電源板51相連接,其中該每一通電端521為一凸部,而該每一導 電槽510 4-凹槽,且該凸部521和該凹槽51〇分別具有焊接點 500,因此,將相對應的凸部和凹槽之各焊接點5〇〇焊接起來後, 該複數LED光源板52即可形成一多邊體,例如為一中空的多邊 體,且該每一 LED光源板52與該電源板51間的角度1〇為9〇。, 即每一 LED光源板52係以垂直於該電源板51的方式組裝,以完 成本案之可產生立體環繞光源的LED光源模組5。 值得注意的是,本實施例雖然係以三片LED光源板52垂直 於電源板51以組裝成一三角中空柱體的LED光源模組5,然而實 際應用上並不P陳此,例如可使用四片LED光源板52組成一長 方體,而该電源板51亦將相對應地具有四個導電槽51〇,此外, 該每一 LED光源板52並不限於與該電源板51垂直,該角度1〇 只要大於零,即可達成本案之LED光源模組5產生立體環繞^源 的技術效果。 請參閱第三目(A),其為本案之LED光源模組之另一實施 例的示意圖,該LED光源模組3包含一電源板31,一平面LED 光源板35,以及複數LED光源板32,該電源板31具有複數導電 M331079 槽310以及一電流轉換元件311,該電流轉換元件311接收一交流 電33,並將该父流電33轉換成一直流電34後,傳送至該每一導 電槽310 ;該平面LED光源板35位於LED光源模組3的上方, 具有複數通電槽350,而複數LED光源板32電連接於該電源板 31與該平面LED光源板35之間,每一 LED光源板32分別具有 一第一通電端321用以與該複數通電槽35〇的其中之一相連接, 以及一第二通電端322用以與該複數導電槽31〇的其中之一相連 接,該複數LED光源板32與該電源板31和該平面LED光源板 35相連接後’該直流電34即可經由該複數導電槽31〇傳送至第二 通電端322並通電至該每一 LED光源板32,再經由該第一通電端 321傳送至複數通電槽350並通電至該平面led光源板35。The LED light source module further includes a plurality of LED light source panels, and each of the LED light source panels has an energized end connected to the towel of the plurality of conductive slots, the direct current The wire-powered end is energized to the wire-LED light source panel, the towel having an angle between each of the wire plates and the power plate and the angle is greater than zero. The above LED lighting unit can be an LED bulb, wherein the housing is a glass lamp housing and the base is a bulb holder, in particular a fat head holder. ^ The above concept, wherein the county-LED light source panel is a printed circuit board and the Wenmu-printed circuit board contains at least one LED. The other object of the present invention is to provide an LED light source module, which comprises a complex solution and a neon conversion component. The current conversion component, the electric current is converted into a direct current, and then transmitted to each of the LED lights. The Lai group further comprises a Wei LED wire plate, and each of the curry ends is connected to one of the plurality of conductive grooves, and the DC current is supplied to the LED wire plate by the mother, and the coffee pad and the power board are There is an - angle, and the degree is greater than zero. " According to the above concept, wherein each of the (four) boards is a printed circuit board 6 M331079 and each of the printed circuit boards includes at least one LED. According to the LED lighting unit and the coffee system module envisioned by the present invention, the plurality of slabs and embossing __methods are respectively connected to the slinger connection ^ wherein each of the energizing ends is a - convex portion and the each conductive groove is - a groove, and the protrusion and the groove respectively have a solder joint, and the number of paving slabs is connected to the power board to form a polygonal body, in particular a hollow polygonal body. Further, according to the above, the angle between each of the LED light source panels and the power strip is 90 纟, that is, each LED light source panel is perpendicular to the power strip at this angle. Another object of the present invention is to provide an LED light source module comprising a power supply board ': a planar LED system board, and a plurality of LED light source boards, the crane and the board having a plurality of conductive_and-current conversion elements, the current conversion element Receiving - alternating current 'and converting the rhyme into - money t and then transmitting Xia - Wei trough; the surface of the LED light source panel has a plurality of energizing slots; the plurality of LED light source panels are electrically connected to the power strip and the reel LED strip And each of the LED wires has a first energized end for connection with the plurality of energized wipes, and a second energized end for connecting to the plurality of conductive slots, the direct current Via this, the energized end is energized to each of them! The light source panel is energized to the planar LED light source panel via the first energized end. According to the above concept, the planar LED light source panel and each of the LED light source panels are a printed circuit board and respectively comprise at least one LED. According to the above concept, the plurality of LED light source panels are connected to the 忒 power strip and the planar led light source panel in a manner of bump-to-slot, wherein the first energized end and the second energized end are - convex portions, and the conductive The groove and the energizing groove are a groove, and the convex portion 7 ι M331079 and the groove respectively have a solder joint, and the plurality of LEDs “the source plate is connected with the power board to form a polygonal body, in particular A hollow polygonal body is formed. According to the above concept, the number of energizing slots of the planar LED light source panel is the same as the number of the plurality of LED light source panels, and the plane (four) panel is a polygon and has the same number of sides as the polygon. In the above LED % source module, each of the LED light source boards may be perpendicular to the power board and the planar LED light source board, but is not limited thereto. In addition, the LED lighting unit envisaged in this case has a cover and a base respectively containing at least a heat dissipation hole, and the LED wire mold of the county of the case _ power supply board and the plane I ^ D light job can also be divided into at least a lag hole. The coffee lighting unit and the light source module of the mine can utilize the principle of air convection to have a heat dissipation effect. In summary, the composition and structure of the LED lighting unit and its light source module envisaged in the present invention can enable the (4) light source module to be irradiated in a three-dimensional and comprehensive domain, and the monthly b-simplification of the complicated assembly sequence. Reducing the cost of the reinforcement 'and confusing the characteristics of the slot and omitting the connection of the H' reduces the cost of the LED lighting unit and increases the stability of the assembly. The effects and purposes of the present invention can be explained by the following embodiments, and have a better understanding. [Embodiment] The following is an explanation of the embodiment of the LED lighting unit and the light source module of the present invention. And the method of the present invention is not necessarily to be construed as being in accordance with the scope of the present invention, and various changes and modifications may be made without departing from the spirit and scope of the invention. 8 M331079 First, referring to the first figure (A), which is a structural diagram of an embodiment of the LED lighting unit of the present invention, the LED lighting unit 1 includes a cover u, a base 12, and an LED light source module 5, In an embodiment, the cover η is a bulb cover, such as a glass cover, but may be any other type of bulb cover, and the base 12 is a bulb holder, for example, an E27 head, and The cover Η is in a detachable connection relationship and has an AC terminal 121 for receiving an AC 13 . In the above embodiment, the LED light source module 5 is disposed between the outer cover U and the base 12, and includes a power board 51 and a plurality of LED light source boards 52. The power board 51 has a plurality of conductive slots 51 and a The current conversion element 511 is electrically connected to the alternating current end 121 of the susceptor 12 for converting the alternating current 13 into a constant current η and transmitting it to each of the conductive slots 51A, and the plurality of LED light source boards 52 A printed circuit board, and each of the printed circuit boards includes at least one LED 520. The LEDs 520 can be evenly distributed on each of the LED light source boards 52, and can also be arranged at random, and the light emitted by each LED 520 can be used visually. The needs of the various, same or different colors. According to the above embodiment, each of the LED light source boards 52 has an energizing end 521 for respectively connecting with one of the plurality of conductive grooves 51, so that the direct current 14 can be transmitted through the plurality of conductive grooves 51. Each of the energized ends 521 ′ connected thereto is further energized to each of the LED light source panels 52 , wherein each of the LED light source panels 52 and the power strip 51 has an angle of 1〇, and the angle 1〇 is greater than zero. Please refer to the first figure (B), which is a schematic diagram of assembling the LED lighting unit 1 of the first figure (A). After the LED light source module 5 is disposed on the pedestal 12, the outer cover 11 and the base are further The 12-phase connection is completed, that is, the LED illumination device 1 having the LED stereo surround light source of the present invention is completed. In addition, in the above embodiment, the cover n, the base 9 M331079, and the power board 51 can respectively include at least one heat dissipation hole 1〇〇, so that the principle of airflow convection can allow external cold air to enter the LED illumination unit. Inside, let the hot air flow out to achieve heat dissipation. Please refer to the second figure, which is a schematic diagram of an embodiment of the LED light source module of the present invention. The components included in the LED light source module 5 and the connection relationship between the components and the LEDs described in the first figure (A) The light source module 5 _ will not be described here. In this embodiment, each of the LED light source boards 52 is connected to the power board 51 in a manner of embossing and inserting, wherein each of the energizing ends 521 is a convex portion, and each of the conductive grooves 510 is concave. a groove, and the convex portion 521 and the groove 51〇 respectively have a solder joint 500. Therefore, after the corresponding solder joints of the convex portion and the recess are welded, the plurality of LED light source panels 52 can be formed. A polygonal body, for example, a hollow polygonal body, and an angle 1 〇 between each of the LED light source panels 52 and the power source board 51 is 9 〇. That is, each of the LED light source panels 52 is assembled in a manner perpendicular to the power strip 51, so that the LED light source module 5 of the stereo surround light source can be produced at a cost. It should be noted that, in this embodiment, the LED light source module 52 is assembled into a triangular hollow cylinder LED light source module 5 perpendicular to the power supply board 51, but the practical application is not such that, for example, four can be used. The LED light source plate 52 is formed into a rectangular parallelepiped, and the power supply plate 51 will also have four conductive grooves 51A correspondingly. Moreover, the LED light source plate 52 is not limited to be perpendicular to the power supply plate 51, and the angle is 1〇. As long as it is greater than zero, the technical effect of the stereo light source generated by the LED light source module 5 of the present invention can be achieved. Please refer to the third item (A), which is a schematic diagram of another embodiment of the LED light source module of the present invention. The LED light source module 3 includes a power board 31, a planar LED light source board 35, and a plurality of LED light source boards 32. The power board 31 has a plurality of conductive M331079 slots 310 and a current converting component 311. The current converting component 311 receives an alternating current 33, and converts the parent current 33 into a direct current 34, and then transmits the same to each of the conductive slots 310. The planar LED light source panel 35 is located above the LED light source module 3, and has a plurality of energization slots 350, and the plurality of LED light source panels 32 are electrically connected between the power panel 31 and the planar LED light source panel 35, and each LED light source panel 32 Each of the plurality of current-carrying ends 322 is connected to one of the plurality of conductive slots 35 ,, and the second power-carrying end 322 is connected to one of the plurality of conductive slots 31 ,, the plurality of LEDs After the light source board 32 is connected to the power board 31 and the plane LED light source board 35, the DC power 34 can be transmitted to the second energizing end 322 via the plurality of conductive slots 31 and energized to the LED light source board 32, and then Via the first energizing end 321 A plurality of power supplied to the groove 350 and the power plane led to the light source panel 35.

於上述實施例中,該平面LED光源板35與該每一 LED光源 板32為一印刷電路板,且每一印刷電路板分別包含至少一 led 320’該LED 320可均勻分布於每一 LED光源板32及該平面LED 光源板35,亦可隨意排列,且每一 LED32〇可視使用者的需求, 设計為發出相同或不同顏色的光。 於上述實施例中,該複數LED光源板32係以凹凸對插槽的 方式分別與該電源板31和該平面LED光源板35相連接,其中該 第一通電端321和該第二通電端322為一凸部,而該導電槽31〇 和該通電槽350為一凹槽,且該凸部和該凹槽分別具有至少一焊 接點300,將相對應的凸部和凹槽之各焊接點3〇〇焊接起來後,該 複數LED光源板32即可形成一多邊體,例如為一中空的多邊體, 而於本實施例中,該通電槽35〇的數量與該複數LED光源板32 的數量相同,且該平面LED光源板35為一多邊形,並具有與該 11 M331079 複數LED光源板32所組成之多邊體姻的邊數,然而,本案於 實際上的制並不P艮於此,該平面LED光源板35亦可為—任音 多邊形,只要其包含足夠的通電槽35〇白勺數量與該複數咖光 板32之第-通電端321相連接,即可組成一全區域照射的立體 LED光源模組3。 此外,於上述實施例中,鱗一 LED光源板32係垂直於該 電源板31以及該平面LED光源板35,但並不限於此種設置方式, 實際上可設計以任何大於零的角度,以凹凸對插槽方式組裝該每 一 LED光源板32於該電源板31與該平面led光源板35之間:, 而使该LED光源模組3具有全面域立體照射的效果。 請再參照第三圖(B),其為本案之LED照明單元的另一實 施例,LED照明單元2係以第三圖(A)之LED光源模組3設^ 於如第一圖(A)所述的外罩11和燈座12之間,使其成為一可全 面域立體照射的LED照明單元2。此外,如第三圖(b)所卞, 該外罩11、基座12、電源板31以及平面LED光源板35可分別 包含至少一散熱孔100 ’因而利用氣流對流的原理,可讓外部的冷 空氣進入LED知明單元2内部,並讓熱空氣流出,以達到led 照明單元2及LED光源模組3的散熱效果。 以上所述係利用較佳實施例詳細說明本創作,而非限制本創 作的範圍,因此熟知此技藝的人士應能明瞭,適當而作些微的改 變與調整’仍將不失本創作之要義所在,亦不脫離本創作之精神 和範圍。 12 M331079 【圖式簡單說明】 第一圖(A):本案之LED照明單元之一實施例的結構示意圖; 第一圖(B):第一圖(A)之LED照明單元組裝後的示意圖; 第二圖:本案之LED光源模組之一實施例的示意圖; 第二圖(A):本案之LED光源模組之另一實施例的示意圖;以 及 第二圖(B):本案之LED照明單元之另一實施例的示意圖。 【主要元件符號說明】 卜2 LED照明單元 5 > 3 LED光源模組 10 角度 11 外罩 12 基座 121 交流電端 13、33 交流電 14、34 直流電 51 > 31 電源板 510、310 導電槽 511 > 311 電流轉換元件 52、32 LED光源板 520 、 320 LED 521、321、322 通電端 500 、 300 焊接點 13 M331079 35 平面LED光源板 350 通電槽 100 散熱孔In the above embodiment, the planar LED light source panel 35 and each of the LED light source panels 32 are a printed circuit board, and each printed circuit board includes at least one led 320'. The LED 320 can be evenly distributed to each LED light source. The board 32 and the planar LED light source board 35 can also be arranged at random, and each LED 32 can be designed to emit light of the same or different colors depending on the needs of the user. In the above embodiment, the plurality of LED light source boards 32 are respectively connected to the power board 31 and the planar LED light source board 35 in a manner of bump-to-slot, wherein the first power-on end 321 and the second power-on end 322 are connected. Is a convex portion, and the conductive groove 31 〇 and the current-carrying groove 350 are a groove, and the convex portion and the groove respectively have at least one solder joint 300, and the corresponding solder joints of the convex portion and the groove After the soldering is performed, the plurality of LED light source panels 32 can form a polygonal body, for example, a hollow polygonal body. In the embodiment, the number of the energizing slots 35〇 and the plurality of LED light source panels 32. The number of the planar LED light source panel 35 is a polygon, and has a number of sides of the polygon formed by the 11 M331079 complex LED light source panel 32. However, the actual system is not in this case. The planar LED light source panel 35 can also be an audio polygon, and as long as it contains enough energization slots 35 and is connected to the first power-on end 321 of the plurality of coffee panels 32, a full-area illumination can be formed. Stereoscopic LED light source module 3. In addition, in the above embodiment, the scale-LED light source panel 32 is perpendicular to the power strip 31 and the planar LED light source panel 35, but is not limited to such an arrangement, and may be designed to be at any angle greater than zero. Each of the LED light source panels 32 is assembled between the power strip 31 and the planar led light source panel 35 in a bump-to-slot manner, so that the LED light source module 3 has a full-field stereoscopic illumination effect. Please refer to the third figure (B), which is another embodiment of the LED lighting unit of the present invention. The LED lighting unit 2 is configured as the first light source module 3 of the third figure (A). Between the outer cover 11 and the socket 12, the LED lighting unit 2 can be a full-field stereo illumination. In addition, as shown in FIG. 3(b), the outer cover 11, the base 12, the power supply board 31, and the planar LED light source panel 35 may respectively include at least one heat dissipation hole 100', thereby utilizing the principle of airflow convection to allow external cold The air enters the inside of the LED-aware unit 2, and allows hot air to flow out to achieve the heat dissipation effect of the LED lighting unit 2 and the LED light source module 3. The above descriptions of the present invention are described in detail by the preferred embodiments, and are not intended to limit the scope of the present invention. Therefore, those skilled in the art should be able to clarify, and make minor changes and adjustments as appropriate. And does not deviate from the spirit and scope of this creation. 12 M331079 [Simple description of the drawing] First figure (A): Schematic diagram of one embodiment of the LED lighting unit of the present invention; First drawing (B): schematic diagram of the assembled LED lighting unit of the first figure (A); The second figure: a schematic diagram of one embodiment of the LED light source module of the present invention; the second figure (A): a schematic diagram of another embodiment of the LED light source module of the present invention; and the second figure (B): the LED illumination of the present case A schematic of another embodiment of the unit. [Main component symbol description] Bu 2 LED lighting unit 5 > 3 LED light source module 10 Angle 11 Cover 12 Base 121 AC terminal 13, 33 AC 14, 34 DC 51 > 31 Power board 510, 310 Conductive slot 511 &gt 311 Current conversion element 52, 32 LED light source board 520, 320 LED 521, 321, 322 Power supply end 500, 300 Soldering point 13 M331079 35 Plane LED light source board 350 Power supply slot 100 Cooling hole

1414

Claims (1)

M3 31079 九、申請專利範圍: 1· 一種LED照明單元,包含·· 一外罩; -基座’與該外罩為可拆式連結,並具有—交流電端用以 接收一交流電;以及 - led光源模組,設置於該外罩與該基座之間,其包含: 一電源板,具有複數導電槽以及一電流轉換元件, 該電流轉換元件與該交流電端電連接,且將該交流電轉換 成一直流電並傳送至每一導電槽;以及 複數LED光源板,每一 LED光源板具有一通電端 與該複解錢的其巾之-相連接,魅流電經由該每一 通電端通電至該每一 LED光源板,其中該每一 LED光源 板與該電源板間具有一角度,且該角度大於零。 2·如申請專利範圍第1項所述的LED照明單元,其中該外罩為 一玻璃燈罩’且該基座為一燈泡座。 3.如申請專利範圍第2項所述的LED照明單元,其中該燈泡座 為一 E27頭燈座。 4·如申請專利範圍第1項所述的LED照明單元,其中該外罩和該 基座分別包含至少一散熱孔。 5·如申請專利範圍第1項所述的LED照明單元,其中該電源板包 含至少一散熱孔。 15 M331079 6·如申請專利範圍第1項所述的LED照明單元,其中該每一 LED 光源板為一印刷電路板,且該印刷電路板包含至少一 LED。 7·如申請專利範圍第1項所述的LED照明單元,其中該複數LED 光源板以凹凸對插槽的方式分別與該電源板相連接。 8·如申請專利範圍第7項所述的LED照明單元,其中該每一通 電端為一凸部,而該每一導電槽為一凹槽,且該凸部和該凹槽分 別具有一焊接點。 • 9·如申請專利範圍第1項所述的LHD照明單元,其中該複數LED 光源板與該電源板相連接後,形成一多邊體。 10·如申請專利範圍第9項所述的LED照明單元,其中該多邊體 為一中空多邊體。 .· ... .. . .... . .... -, . 11·如申請專利範圍第1項所述的LED照明單元,其中該角度為 90度。 12· —種LED光源模組,包含: _ 一電源板,其具有複數導電槽以及一電流轉換元件,該電 _ 流換元件接收一交流電,並將該交流電轉換成一直流電後,傳 送至每一導電槽;以及 複數LED光源板,每一 LED光源板具有一通電端與該複 數導電槽的其中之-相連接,該直流電經由該每—通電端通電至 該每一 LED光源板,其中該每一 md光源板與該電源板間具有 一角度,且該角度大於零。 16 M331079 13·如申請專利範圍第12項所述的LED光源模組,其中該電源板 包含至少一散熱孔。 14·如申請專利範圍第12項所述的LED光源模組,其中該每— LED光源板為一印刷電路板,且該印刷電路板包含至少一 LED。 15·如申請專利範圍第12項所述的LED光源模組,其中該複數 • LED光源板以凹凸對插槽的方式分別與該電源板相連接。 16·如申請專利範圍第15項所述的LED光源模組,其中該每—通 鲁 電端為一凸部’而該每一導電槽為一凹槽’且該凸部和該凹槽分 別具有一焊接點。 17·如申請專利範圍第12項所述的LED光源模組,其中該複數 LED光源板與該電源板相連接後,形成一多邊體。 . -· . ......... .... - . · * · ' . . ; . · , .... . + 18·如申請專利範圍第17項所述的LED光源模組,其中該多邊體 為一中空多邊體。 19·如申請專利範圍第12項所述的LED光源模組,其中該角度為 • 90 度。 • 20· —種LED光源模組,包含: 一電源板,其具有複數導電槽以及一電流轉換元件,該電 流轉換元件接收一交流電,並將該交流電轉換成一直流電後,傳 送至該每一導電槽; 一平面LED光源板,具有複數通電槽;以及 複數LED光源板,電連接於該電源板與該平面LED光源 17 M331079 板之間,每一 LED光源板具有: -第-通電端,用以與該複數通電槽的其中之一相 連接;以及 H電端與該複數導簡的其中之—相 連接,該直流電經由該第二通電端通電至該每一 LED光源 " 板,並經由該第一通電端通電至該平面LED光源板。 21·如申請專利範圍第20項所述的LED光源模組,其中該電源板 # 和該平面led光源板分別包含至少一散熱孔。 22·如申請專利範圍第20項所述的LED光源模組,其中該平面 LED光源板與該每一 LED光源板為一印刷電路板,且分別包含至 少一 LED 〇 23·如申請專利範圍第2〇項所述的LE:D光源模組,其中該複數 led光源板以凹凸對插槽的方式與該電源板和該平面LED光源板 相連接。 # 24·如申請專利範圍第23項所述的LED光源模組,其中該第一通 " 電端和該第二通電端為一凸部,而該導電槽和該通電槽為一凹 槽,且該凸部和該凹槽分別具有一焊接點。 25·如申請專利範圍第20項所述的LED光源模組,其中該複數 LED光源板與該電源板相連接後,形成一多邊體。 26·如申請專利範圍第25項所述的LED光源模組,其中該多邊體 為一中空多邊體。 18 M331079 27·如申请專利範圍第25項所述的LED光源模組,其中該通電槽 的數篁與該複數LED光源板的數量相同’且該平面led光源板 為一多邊形,並具有與該多邊體相同的邊數。 28·如申請專利範圍第20項所述的LED光源模組,其中該每一 LED光源板垂直於該電源板以及該平面LED光源板。M3 31079 IX. Patent application scope: 1. An LED lighting unit comprising: · a cover; - the base ' is detachably connected with the outer cover, and has an alternating current end for receiving an alternating current; and - a led light source mode a set between the outer cover and the base, comprising: a power board having a plurality of conductive slots and a current conversion component, the current conversion component being electrically connected to the alternating current terminal, and converting the alternating current into a continuous current and transmitting To each of the conductive grooves; and the plurality of LED light source plates, each of the LED light source plates has an energized end connected to the towel of the resolving money, and the charm current is energized to each of the LED light sources via each of the energizing ends a board, wherein each of the LED light source boards and the power board have an angle, and the angle is greater than zero. 2. The LED lighting unit of claim 1, wherein the outer cover is a glass cover' and the base is a bulb holder. 3. The LED lighting unit of claim 2, wherein the bulb holder is an E27 head holder. 4. The LED lighting unit of claim 1, wherein the outer cover and the base respectively comprise at least one heat dissipation hole. 5. The LED lighting unit of claim 1, wherein the power board comprises at least one heat dissipation hole. The LED lighting unit of claim 1, wherein each of the LED light source panels is a printed circuit board, and the printed circuit board comprises at least one LED. The LED lighting unit of claim 1, wherein the plurality of LED light source panels are respectively connected to the power board in a manner of bump-to-slot. The LED lighting unit of claim 7, wherein each of the energizing ends is a convex portion, and each of the conductive grooves is a groove, and the convex portion and the groove respectively have a welding point. The LHD lighting unit of claim 1, wherein the plurality of LED light source panels are connected to the power board to form a polygonal body. 10. The LED lighting unit of claim 9, wherein the polygonal body is a hollow polygonal body. . . . . . . . . . . . . . . The LED lighting unit of claim 1, wherein the angle is 90 degrees. 12·--LED light source module, comprising: _ a power board having a plurality of conductive slots and a current converting component, the power converting component receiving an alternating current, and converting the alternating current into a continuous current, and transmitting to each a conductive slot; and a plurality of LED light source panels, each LED light source panel having an energized end connected to the plurality of conductive slots, wherein the direct current is energized to the each LED light source panel via the each of the energized ends, wherein each An md light source panel has an angle with the power strip, and the angle is greater than zero. The LED light source module of claim 12, wherein the power board comprises at least one heat dissipation hole. The LED light source module of claim 12, wherein each of the LED light source panels is a printed circuit board, and the printed circuit board comprises at least one LED. 15. The LED light source module of claim 12, wherein the plurality of LED light source panels are respectively connected to the power supply panel in a manner of bump-to-slot. The LED light source module of claim 15, wherein each of the electric terminals is a convex portion and each of the conductive grooves is a groove and the convex portion and the concave portion are respectively Has a solder joint. The LED light source module of claim 12, wherein the plurality of LED light source panels are connected to the power strip to form a polygonal body. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . Group, wherein the multilateral body is a hollow multilateral body. 19. The LED light source module of claim 12, wherein the angle is • 90 degrees. The LED light source module comprises: a power board having a plurality of conductive slots and a current converting component, the current converting component receiving an alternating current, and converting the alternating current into a continuous current, and transmitting to the conductive a flat LED light source panel having a plurality of energizing slots; and a plurality of LED light source panels electrically connected between the power strip and the planar LED light source 17 M331079, each LED light source panel having: - a first-powered end, Connected to one of the plurality of energization slots; and the H terminal is coupled to the plurality of capacitors, the DC power being energized to the LED source panel via the second energization terminal, and via The first energized end is energized to the planar LED light source panel. The LED light source module of claim 20, wherein the power board # and the planar LED light source board respectively comprise at least one heat dissipation hole. The LED light source module of claim 20, wherein the planar LED light source panel and each of the LED light source panels are a printed circuit board, and each comprises at least one LED 〇23. The LE:D light source module of item 2, wherein the plurality of LED light source boards are connected to the power board and the planar LED light source board in a manner of bump-to-slot. The LED light source module of claim 23, wherein the first through electric terminal and the second energized end are a convex portion, and the conductive groove and the energizing groove are a groove And the protrusion and the groove respectively have a solder joint. The LED light source module of claim 20, wherein the plurality of LED light source panels are connected to the power strip to form a polygonal body. The LED light source module of claim 25, wherein the polygonal body is a hollow polygonal body. 18 331. The LED light source module of claim 25, wherein the number of the energization slots is the same as the number of the plurality of LED light source panels, and the planar LED light source panel is a polygon and has The same number of sides of the polygon. The LED light source module of claim 20, wherein each of the LED light source panels is perpendicular to the power strip and the planar LED light source panel.
TW96211578U 2007-07-16 2007-07-16 LED lighting device and light source module thereof TWM331079U (en)

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TW96211578U TWM331079U (en) 2007-07-16 2007-07-16 LED lighting device and light source module thereof

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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI385347B (en) * 2009-02-26 2013-02-11 Advanced Optoelectronic Tech Light emitting diode lamp
TWI398602B (en) * 2009-09-03 2013-06-11 Wen Lung Chin High efficiency LED lights
TWI414723B (en) * 2010-02-02 2013-11-11 Everlight Electronics Co Ltd Lighting apparatus
TWI481796B (en) * 2011-09-30 2015-04-21
CN106287332A (en) * 2015-06-05 2017-01-04 弘元科技有限公司 Light-emitting device

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI385347B (en) * 2009-02-26 2013-02-11 Advanced Optoelectronic Tech Light emitting diode lamp
TWI398602B (en) * 2009-09-03 2013-06-11 Wen Lung Chin High efficiency LED lights
TWI414723B (en) * 2010-02-02 2013-11-11 Everlight Electronics Co Ltd Lighting apparatus
TWI481796B (en) * 2011-09-30 2015-04-21
CN106287332A (en) * 2015-06-05 2017-01-04 弘元科技有限公司 Light-emitting device

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