TWM426880U - Light emitting diode lamp tube - Google Patents

Light emitting diode lamp tube Download PDF

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Publication number
TWM426880U
TWM426880U TW100219362U TW100219362U TWM426880U TW M426880 U TWM426880 U TW M426880U TW 100219362 U TW100219362 U TW 100219362U TW 100219362 U TW100219362 U TW 100219362U TW M426880 U TWM426880 U TW M426880U
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Taiwan
Prior art keywords
light
emitting diode
housing
diode lamp
casing
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TW100219362U
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Chinese (zh)
Inventor
shu-juan Zhang
shou-jun Xu
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shu-juan Zhang
shou-jun Xu
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Application filed by shu-juan Zhang, shou-jun Xu filed Critical shu-juan Zhang
Priority to TW100219362U priority Critical patent/TWM426880U/en
Publication of TWM426880U publication Critical patent/TWM426880U/en
Priority to CN2012202881452U priority patent/CN202708679U/en

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Description

五、新型說明: 【新型所屬之技術領域】 [0001] 本創作有關於一種發光二極體燈管,可直接對設置 在第二殼體上的發光二極體進行線路連接的動作,並有 利於提高對發光二極體進行線路連接的便利性。 【先前技術】 [0002] 發光二極體(LED ; Light-Emitting Diode)由於 具備有壽命長、體積小、耗電量少、反應速度快、無輻 射及單色性發光等優點,因而被廣泛應用於指示燈、廣 告看板、交通號誌燈、汽車車燈、顯示面板、通訊器具 、消費電子等各項產品中。 [0003] 發光二極體在作為一般的照明光源時,通常會選擇 將外觀製作成為燈泡或燈管的形式,以方便使用者進行 安裝及使用。請參閱第1圖所示,為習用發光二極體燈 管的構造示意圖,如圖所示,發光二極體燈管10主要包 括有一燈管本體11、一承載板13及至少一發光二極體15 〇 [0004] 一般而言,承載板13為長板狀,並可用以承載複數 個發光二極體15,燈管本體11則為空心柱狀,並於燈管 本體11的内緣設置有一對容置溝槽111。承載發光二極體 15之承載板13可設置在燈管本體11之容置溝槽111内, 以完成發光二極體15與燈管本體11之間的連結。在使用 時發光二極體15所產生的光源可穿透燈管本體11,藉此 以達到照明的目的。 表單編號A0101 第3頁/共18頁 M426880 [0005] 在製作發光一極體燈官10的過程中,必須先將發光 二極體15設置在承載板13的表面,並進行發光二極體15 的線路連接’而後再將設置有發光二極體15的承載板13 由燈管本體11的一端插入容置溝槽111内,藉此完成發光 二極體燈管10的製作。 [0006] 然而’在將承載板13插入燈管本體11内緣之容置溝 槽111時’將有可能因為不當的施力而造成承載板13或發 光二極體15之連接線路的損壞,並導致發光二極體燈管 10的良率下降與成本的增加》 【新型内容】 [0007] 本創作之一目的,在於提供一種發光二極體燈管, ' 主要包括有一第一殼體及一第二殼體,在製作時可先將 設置有發光一極體之承載板設置於第一殼體或第—Jt "戏體 上,並進行發光二極體的線路連接,而後再進行第一和 體與第二殼體之間的接合,藉此將可有效避免在製作: 過程中造成承載板或發光二極體連接線路的損壞,並有 利於提高製作的良率及降低製作的成本。 [〇〇〇8] 本創作之又一目的,在於提供一種發光二極體燈管 ,其中第一殼體或第二殼體的底部設置有一凸透鏡單元 ,並使得發光二極體所產生的光源穿透凸透鏡單元, 賴· 此以匯集發光二極體所產生的發散光源,並可有欵提高 發光二極體燈管投射在特定方向的光源亮度。 [0009] 本創作之又一目的’在於提供一種發光二極體燈管 ,其中第一殼體上設置有一對凸緣,而第二殼體上則設 表單編號置上一對凹槽。在使用時可將第-殼體上的凸緣與第二 [0010] 殼體上的凹槽進行接合,使得第一殼體及第二殼體構成 發光二極體燈管的主體。 本創作之又一目的,在於提供一種發光二極體燈管 ,其中第一殼體或第二殼體的内緣設置有一對容置溝槽 ,並可將複數個設置有發光二極體的承載板設置於容製 溝槽内,藉此將有利於減少承載板的使用面積,以降低 發光二極體燈管的製作成本。 [0011] 本創作之又一目的,在於提供一種發光二極體燈管 ,其中第一殼體或第二殼體内緣設置有另一凹槽,可用 以容置連接發光二極體之線路,以避免發光二極體之連 接線路因拉扯而發生損壞的情形。 [0012] 為達成上述目的,本創作提供一種發光二極體燈管 ,包括有:一第一殼體,包括有至少一凸緣;及一第二 殼體,包括有:至少一凹槽,其中第二殼體之凹槽用以 與第一殼體之凸緣接合;至少一容置溝槽,用以容置至 少一承載板。 [0013] 本創作提供另一種發光二極體燈管,包括有:一第 一殼體,包括有至少一凹槽;及一第二殼體,包括有: 至少一凸緣,其中第二殼體之凸緣用以與第一殼體之凹 槽接合;至少一容置溝槽,用以容置至少一承載板。 [0014] 上述發光二極體燈管之一實施例,其中承載板設置 於容置溝槽内,且承載板上設置有至少一發光二極體。 上述發光二極體燈管之一實施例,其中承載板上的 發光二極體朝向第二殼體。 表單編號A0101 第5頁/共18頁 [0015] [0016]M426880 [0017] [0018] 上述發光二極體燈管之一實施例,包括有一凸透鏡 單元位於第二殼體的底部。 上述發光二極體燈管之一實施例,其中第一殼體及 第二殼體由透光材質所製成。 上述發光二極體燈管之一實施例,其中承載板上的 發光二極體朝向凸透鏡單元。 [0019] 上述發光二極體燈管之一實施例,其中第一殼體及 第二殼體皆為半圓柱狀,且第一殼體及第二殼體組合成 一空心柱狀的發光二極體燈管。 [0020] 上述發光二極體燈管之一實施例,包括有至少一第 二凹槽設置於第二殼體。 [0021] 上述發光二極體燈管之一實施例,其中第一凹槽設 置於第二殼體的外緣,第二凹槽則設置於第二殼體的内 緣,而凸緣則設置於第一殼體的内緣。 [0022] 【實施方式】 請參閱第2圖及第3圖,分別為本創作具高散熱功 能之發光二極體燈管一實施例之立體分解示意圖及側面 分解示意圖。如圖所示,發光二極體燈管20主要包括有 一第一殼體21及一第二殼體23,其中第一殼體21上設置 有至少一凸緣211,而第二殼體23上則設置有至少一第一 凹槽231及至少一容置溝槽233,且該凸緣211與該第一 凹槽231相契合。 在本創作一較佳實施例中,第一殼體21及第二殼體 23可為半圓柱狀,並分別設置有一對凸緣211及一對第一 表單编號A0101 第6頁/共18頁 [0023] 凹槽231,例如可於第一殼體21的内緣設置一對凸緣211 ,並於第二殼體23的外緣設置一對第一凹槽231,使得第 一殼體21可透過凸緣211與第二殼體23之第一凹槽231進 行接合,以形成一空心的柱狀體,並構成發光二極體燈 管20的外觀。在不同實施例中,亦可將凸緣211設置於第 一殼體21的外緣,並將第一凹槽231設置於第二殼體23;的 内緣,同樣可以進行第一殼體21及第二殼體23的接合。 [0024] 第二殼體23的内緣還設置有至少一容置溝槽233,在 使用時可將承載板25設置於容置溝槽233内。在本創作一 較佳實施例中,可於容置溝槽233内設置有複數個承載板 25,且各個承載板25上皆設置有一個或一個以上的發光 二極體27。此外,各個相鄰之承載板25以約略相同的間 距排列在第二殼體23内部,使得發光二極體燈管20可產 生較均勻的光源。 [0025] 本創作所述之發光二極體燈管20可用以容置各種常 規的承載板25,且承載板25可為任意幾何形狀,例如圓 形、方形或多邊形。此外,當第二殼體23内設置有多個 承載板25時,各個承載板25之間將存在有一間隔,相較 於第1圖所示之習用發光二極體燈管10而言,可有效縮 小承載板15的面積,並達到降低發光二極體燈管20之製 作成本的目的。當然,本創作所述之承載板25的數量並 不侷限為複數個,在實際應用時亦可將習用構造所述之 承載板15設置於第二殼體23之容置溝槽233内。 在製作時可先將一個或多個設置有發光二極體27的 承載板25設置於第二殼體23的容置溝槽233内,以方便進 表單編號A0101 第7頁/共18頁 [0026] 行發光二極體27之連接線路的配置,例如可將連接發光 一極體27的線路貼附在第二殼體23的内表面,並力發光 二極體燈管20的兩端延伸。待發光二極體2?的連接線路 設置完成之後,再進行第-殼體21與第二殼體23的接合 ,並形成發光二極體燈管20的主體,如第4圖所示。 [0027] 在本創作一較佳實施例中,亦可於第二殼體23的内 緣增設有至少-第二凹槽237,並可將連接發光二極體27 的線路設置在第二殼體23之第二凹槽237内,更可進一步 避免在組裝過程中,發光二極體27之連接線路因拉扯而 發生損壞的情形。在實際應用時,第二凹槽237的數量可 為一個、兩個或兩個以上,皆可以達到容置發光二極體 27之連接線路的目的。 [0028] 本創作所述之第一殼體21及第二殼體23為兩個獨立 的構件’因而有利於使用者進行承載板25的設置及發光 二極體27的線路配置,以減少在設置承載板25或配置發 光二極體27線路的過程中,造成承載板25結構或發光二 極體27之連接線路的毀損,藉此將可以降低製作發光二 極體燈管20的難度及成本,並有利於提高發光二極體燈 管20的良率。 [0029] 本創作實施例所述之第一殼體21及/或第二殼體23可 由透光材質所製成,例如可選則由壓克力或塑膠材質所 製成,使知發光二極體27所產生的光源可穿透第一殼體 21及/或第二彀體23,並將發光二極體27所產生的光源導 出發光二極體燈管2〇。 [0030] 設置於承栽板25上的發光二極體27朝向第二殼體23 表單编號A0101 第8頁/共18頁 [0031] [0032] [0033] ,使得發光二極體27產生的光源大多經由第二殼體23導 出發光二極體燈管20。在本創作一較佳實施例中,亦可 進一步於第二殼體23的底部設置有一凸透鏡單元235,且 發光二極體27朝向凸透鏡單元235,並使得發光二極體27 所產生的光源穿透凸透鏡單元235。發光二極體27所產生 的光源一般為發散性的光源,透過凸透鏡單元235的使用 將可有效匯集發光二極體23所產生的發散光源,並提高 發光二極體燈管20在特定投射方向的亮度。 請參閱第5圖,為本創作具高散熱功能之發光二極 體燈管又一實施例之側面分解示意圖。如圖所示,發光 二極體燈管30主要包括有一第一殼體31、一第二殼體33 ,其中第一殼體31上設置有至少一凹槽311,而第二殼體 33上則設置有至少一凸緣331及至少一容置溝槽333,且 該凸緣331與凹槽311相契合。 在本創作一較佳實施例中,第一殼體31及第二殼體 33可為半圓柱狀,並分別設置有一對凹槽311及一對凸緣 331,例如將凹槽311設置於第一殼體31的外緣,並將凸 緣331設置於第二殼體33的内緣,其中第一殼體31可透過 凹槽311與第二殼體33之凸緣331進行接合,以形成一空 心的柱狀體,並構成發光二極體燈管30的外觀。 第二殽體33的内緣還設置有至少一容置溝槽333,並 可將一個或多個承載板25設置於容置溝槽333内,且各個 承載板25皆可用以承載一個或多個發光二極體27。 本創作所述之發光二極體燈管20/30可作為照明燈具 ,亦可應用在不同的領域上,例如發光二極體燈管20/30 表單編號A0101 第9頁/共18頁 [0034] M426880 可作為一般顯示螢幕的背光模組,或是其他不同的應用 〇 [0035] 以上所述者,僅為本創作之較佳實施例而已,並非 用來限定本創作實施之範圍,即凡依本創作申請專利範 圍所述之形狀、構造、特徵及精神所為之均等變化與修 飾,均應包括於本創作之申請專利範圍内。 【圖式簡單說明】 [0036] 第1圖:為習用發光二極體燈管的構造示意圖; [0037] 第2圖:為本創作具高散熱功能之發光二極體燈管一實 施例之立體分解示意圖; [0038] 第3圖:為本創作具高散熱功能之發光二極體燈管一實 施例之側面分解示意圖; [0039] 第4圖:為本創作具高散熱功能之發光二極體燈管一實 施例之立體不意圖;及 [0040] 第5圖:為本創作具高散熱功能之發光二極體燈管又一 實施例之側面分解示意圖。 【主要元件符號說明】 [0041] 10發光二極體燈管 11 燈管本體 [0042] 111容置溝槽 13 承載板 [0043] 15發光二極體 [0044] 20發光二極體燈管 21 第一殼體 [0045] 211凸緣 23 第二殼體 表單编號A0101 第10頁/共18頁 M426880 [0046] 231 第一凹槽 [0047] 235 凸透鏡單元 [0048] 25 承載板 [0049] 27 發光二極體 [0050] 30 發光二極體燈管 [0051] 311 凹槽 [0052] 331 凸緣 表單編號A0101 233容置溝槽 237第二凹槽 31第一殼體 33第二殼體 333容置溝槽 第11頁/共18頁V. New description: [New technology field] [0001] The present invention relates to a light-emitting diode lamp, which can directly connect the light-emitting diodes disposed on the second casing, and is advantageous In order to improve the convenience of wiring connection to the light-emitting diode. [Prior Art] [0002] Light-Emitting Diodes (LEDs) are widely used because of their long life, small size, low power consumption, fast response, no radiation, and monochromatic illumination. It is used in various products such as indicator lights, advertising billboards, traffic lights, car lights, display panels, communication devices, and consumer electronics. [0003] When used as a general illumination source, a light-emitting diode usually has a form of making a light bulb or a lamp tube for the user to install and use. Please refer to FIG. 1 , which is a schematic structural view of a conventional light-emitting diode lamp. As shown in the figure, the LED lamp 10 mainly includes a lamp body 11 , a carrier plate 13 and at least one light-emitting diode. The body 15 is generally long, and can be used to carry a plurality of light-emitting diodes 15. The lamp body 11 has a hollow column shape and is disposed on the inner edge of the lamp body 11. There is a pair of receiving grooves 111. The carrier plate 13 carrying the LEDs 15 can be disposed in the receiving groove 111 of the lamp body 11 to complete the connection between the LEDs 15 and the lamp body 11. The light source generated by the light-emitting diode 15 can penetrate the lamp body 11 during use, thereby achieving the purpose of illumination. Form No. A0101 Page 3 of 18 M426880 [0005] In the process of fabricating the light-emitting diode lamp 10, the light-emitting diode 15 must be placed on the surface of the carrier plate 13 and the light-emitting diode 15 is performed. The line connection 'and then the carrier plate 13 provided with the light-emitting diodes 15 is inserted into the accommodating groove 111 from one end of the lamp body 11 to complete the fabrication of the light-emitting diode lamp 10. [0006] However, when the carrier plate 13 is inserted into the receiving groove 111 of the inner edge of the lamp body 11, it is likely that the connecting line of the carrier 13 or the light-emitting diode 15 is damaged due to improper force application. And the yield of the LED lamp 10 is reduced and the cost is increased. [New content] [0007] One of the objects of the present invention is to provide a light-emitting diode lamp, which mainly includes a first housing and a second housing can be disposed on the first housing or the first JT " on the first housing or the JT " in the production process, and then perform the line connection of the LEDs, and then proceed The joint between the first body and the second casing, thereby effectively preventing damage to the carrier board or the light-emitting diode connection line during the manufacturing process, and improving the manufacturing yield and reducing the manufacturing cost. cost. [0028] Another object of the present invention is to provide a light-emitting diode lamp in which a convex lens unit is disposed at the bottom of the first casing or the second casing, and the light source generated by the light-emitting diode is provided. Penetrating the lenticular lens unit, which is used to collect the divergent light source generated by the illuminating diode, and can increase the brightness of the light source projected by the illuminating diode lamp in a specific direction. A further object of the present invention is to provide a light-emitting diode lamp in which a first housing is provided with a pair of flanges, and a second housing is provided with a pair of grooves. In use, the flange on the first housing can be engaged with the recess in the second housing such that the first housing and the second housing form the body of the light-emitting diode tube. Another object of the present invention is to provide a light-emitting diode lamp, wherein an inner edge of the first casing or the second casing is provided with a pair of receiving grooves, and a plurality of light-emitting diodes are disposed. The carrier plate is disposed in the receiving groove, thereby facilitating the reduction of the use area of the carrier plate to reduce the manufacturing cost of the LED lamp. [0011] Another object of the present invention is to provide a light-emitting diode lamp, wherein the inner edge of the first casing or the second casing is provided with another groove, which can be used to accommodate the line connecting the light-emitting diodes. In order to avoid damage to the connecting line of the light-emitting diode due to pulling. [0012] In order to achieve the above object, the present invention provides a light-emitting diode lamp comprising: a first housing including at least one flange; and a second housing including: at least one groove, The recess of the second housing is configured to engage with the flange of the first housing; and the at least one receiving groove is configured to receive the at least one carrier. [0013] The present invention provides another LED lamp comprising: a first housing including at least one recess; and a second housing including: at least one flange, wherein the second housing The flange of the body is configured to engage with the groove of the first housing; at least one receiving groove for receiving at least one carrier plate. [0014] In one embodiment of the above-mentioned light-emitting diode lamp, the carrier plate is disposed in the receiving groove, and the carrier plate is provided with at least one light-emitting diode. An embodiment of the above light-emitting diode lamp, wherein the light-emitting diode on the carrier plate faces the second casing. Form No. A0101 Page 5 of 18 [0016] [0016] One embodiment of the above described light-emitting diode lamp includes a convex lens unit located at the bottom of the second housing. An embodiment of the above light-emitting diode lamp, wherein the first casing and the second casing are made of a light-transmitting material. An embodiment of the above light-emitting diode lamp, wherein the light-emitting diode on the carrier plate faces the convex lens unit. [0019] In one embodiment of the light-emitting diode lamp, the first casing and the second casing are both semi-cylindrical, and the first casing and the second casing are combined into a hollow column-shaped light-emitting diode. Body lamp. [0020] One embodiment of the above-described light-emitting diode lamp includes at least one second recess disposed in the second housing. [0021] One embodiment of the above-mentioned light-emitting diode lamp, wherein the first groove is disposed at an outer edge of the second casing, and the second groove is disposed at an inner edge of the second casing, and the flange is disposed On the inner edge of the first housing. [Embodiment] Please refer to FIG. 2 and FIG. 3, which are respectively a perspective exploded view and a side exploded view of an embodiment of a light-emitting diode lamp with high heat dissipation function. As shown in the figure, the LED tube 20 mainly includes a first housing 21 and a second housing 23, wherein the first housing 21 is provided with at least one flange 211, and the second housing 23 is provided. At least one first groove 231 and at least one receiving groove 233 are disposed, and the flange 211 is matched with the first groove 231. In a preferred embodiment of the present invention, the first housing 21 and the second housing 23 may be semi-cylindrical, and are respectively provided with a pair of flanges 211 and a pair of first form numbers A0101. Page 6 of 18 a groove 231, for example, a pair of flanges 211 may be disposed at an inner edge of the first casing 21, and a pair of first grooves 231 may be disposed at an outer edge of the second casing 23 such that the first casing 21 is engageable with the first recess 231 of the second housing 23 through the flange 211 to form a hollow cylindrical body and constitute the appearance of the LED lamp 20. In different embodiments, the flange 211 may be disposed on the outer edge of the first housing 21, and the first recess 231 is disposed on the inner edge of the second housing 23; And the engagement of the second housing 23. [0024] The inner edge of the second casing 23 is further provided with at least one accommodating groove 233, and the carrier plate 25 can be disposed in the accommodating groove 233 in use. In a preferred embodiment of the present invention, a plurality of carrier plates 25 are disposed in the receiving groove 233, and each of the carrier plates 25 is provided with one or more light emitting diodes 27. In addition, each adjacent carrier plate 25 is arranged within the second housing 23 at approximately the same spacing such that the LED lamp 20 produces a relatively uniform source of light. [0025] The LED lamp 20 of the present invention can be used to accommodate various conventional carrier plates 25, and the carrier plate 25 can be of any geometric shape, such as circular, square or polygonal. In addition, when a plurality of carrier plates 25 are disposed in the second housing 23, there will be a space between the respective carrier plates 25, which is comparable to the conventional light-emitting diode lamp 10 shown in FIG. The area of the carrier board 15 is effectively reduced, and the manufacturing cost of the LED lamp 20 is reduced. Of course, the number of the carrying plates 25 in the present invention is not limited to a plurality. The carrier plates 15 of the conventional structure may be disposed in the receiving grooves 233 of the second casing 23 in practical applications. At the time of manufacture, one or more carrier plates 25 provided with the light-emitting diodes 27 may be disposed in the receiving grooves 233 of the second casing 23 for convenient entry of the form number A0101, page 7 / page 18 [ Between the arrangement of the connection lines of the light-emitting diodes 27, for example, a line connecting the light-emitting diodes 27 can be attached to the inner surface of the second casing 23, and the ends of the light-emitting diode lamps 20 are extended. . After the connection of the light-emitting diode 2? is completed, the first casing 21 and the second casing 23 are joined together, and the main body of the light-emitting diode lamp 20 is formed as shown in Fig. 4. [0027] In a preferred embodiment of the present invention, at least a second recess 237 may be added to the inner edge of the second housing 23, and a line connecting the LEDs 27 may be disposed in the second shell. In the second recess 237 of the body 23, the connection line of the light-emitting diode 27 is damaged by the pulling during the assembly process. In practical applications, the number of the second recesses 237 may be one, two or more, and the purpose of accommodating the connecting lines of the LEDs 27 may be achieved. [0028] The first housing 21 and the second housing 23 of the present invention are two independent members', thereby facilitating the user to set the carrier 25 and the wiring arrangement of the LEDs 27 to reduce During the process of disposing the carrier 25 or arranging the LEDs 27, the structure of the carrier 25 or the connection line of the LEDs 27 is damaged, thereby making it possible to reduce the difficulty and cost of fabricating the LEDs 20. And is beneficial to improve the yield of the light-emitting diode lamp 20. [0029] The first housing 21 and/or the second housing 23 according to the embodiment of the present invention may be made of a light-transmitting material, for example, made of acrylic or plastic material, so that the light-emitting two is made. The light source generated by the polar body 27 can penetrate the first housing 21 and/or the second body 23, and the light source generated by the light-emitting diode 27 is led out to the light-emitting diode tube 2〇. [0030] The light-emitting diodes 27 disposed on the bearing plate 25 are oriented toward the second casing 23, Form No. A0101, Page 8 of 18, [0031] [0033], so that the LEDs 27 are generated. The light source is mostly led out of the light-emitting diode lamp 20 via the second housing 23. In a preferred embodiment of the present invention, a convex lens unit 235 may be further disposed at the bottom of the second housing 23, and the light emitting diode 27 faces the convex lens unit 235, and the light source generated by the light emitting diode 27 is worn. Translucent lens unit 235. The light source generated by the light-emitting diode 27 is generally a divergent light source. The use of the convex lens unit 235 can effectively collect the divergent light source generated by the light-emitting diode 23 and improve the light-emitting diode lamp 20 in a specific projection direction. Brightness. Please refer to FIG. 5, which is a side exploded view of another embodiment of a light-emitting diode lamp with a high heat dissipation function. As shown in the figure, the LED tube 30 mainly includes a first housing 31 and a second housing 33. The first housing 31 is provided with at least one recess 311, and the second housing 33 is disposed on the second housing 33. At least one flange 331 and at least one receiving groove 333 are disposed, and the flange 331 is matched with the groove 311. In a preferred embodiment of the present invention, the first housing 31 and the second housing 33 may be semi-cylindrical, and are respectively provided with a pair of grooves 311 and a pair of flanges 331. For example, the recess 311 is disposed at the An outer edge of the housing 31 is disposed on the inner edge of the second housing 33, wherein the first housing 31 is engageable with the flange 331 of the second housing 33 through the recess 311 to form A hollow cylindrical body and constituting the appearance of the light-emitting diode lamp 30. The inner edge of the second object 33 is further provided with at least one receiving groove 333, and one or more carrier plates 25 are disposed in the receiving groove 333, and each carrier plate 25 can be used to carry one or more. Light-emitting diodes 27. The LED lamp 20/30 described in the present invention can be used as a lighting fixture, and can also be applied in different fields, such as a light-emitting diode lamp 20/30 Form No. A0101 Page 9 of 18 [0034 M426880 can be used as a backlight module for general display screens, or for other different applications. [0035] The above descriptions are only preferred embodiments of the present invention and are not intended to limit the scope of the present invention. Equivalent changes and modifications in accordance with the shapes, structures, features and spirits described in the scope of the patent application should be included in the scope of the patent application. BRIEF DESCRIPTION OF THE DRAWINGS [0036] FIG. 1 is a schematic view showing the structure of a conventional light-emitting diode lamp; [0037] FIG. 2 is an embodiment of a light-emitting diode lamp having a high heat dissipation function. 3D exploded view; [0038] FIG. 3 is a side exploded view of an embodiment of a light-emitting diode lamp with a high heat dissipation function; [0039] FIG. 4: a light-emitting device with high heat dissipation function [0040] FIG. 5 is a side exploded view showing still another embodiment of a light-emitting diode lamp having a high heat dissipation function. [Main component symbol description] [0041] 10 light-emitting diode lamp 11 lamp body [0042] 111 accommodating groove 13 carrier plate [0043] 15 light-emitting diode [0044] 20 light-emitting diode lamp 21 First Housing [0045] 211 Flange 23 Second Housing Form No. A0101 Page 10 of 18 M426880 [0046] 231 First Groove [0047] 235 Convex Lens Unit [0048] 25 Carrier Plate [0049] 27 light-emitting diode [0050] 30 light-emitting diode tube [0051] 311 groove [0052] 331 flange form number A0101 233 accommodating groove 237 second groove 31 first housing 33 second housing 333 accommodating grooves Page 11 of 18

Claims (1)

M426880 :、申請專利範圍: 1 . 一種發光二極體燈管,包括有: 一第一殼體,包括有至少一凸緣;及 一第二殼體,包括有: 至少一第一凹槽,其中該第二殼體之第一凹槽用以與該 第一殼體之該凸緣接合; 至少一容置溝槽,用以容置至少一承載板。 2. 如申請專利範圍第1項所述之發光二極體燈管,其令該承 載板設置於該容置溝槽内,且該承載板上設置有至少一發 光二極體。 3. 如申請專利範圍第2項所述之發光二極體燈管,其中該承 載板上的發光二極體朝向該第二殼體。 4. 如申請專利範圍第3項所述之發光二極體燈管,包括有一 凸透鏡單元位於該第二殼體的底部。 5. 如申請專利範圍第4項所述之發光二極體燈管,其中該第 一殼體及該第二殼體由透光材質所製成。 6. 如申請專利範圍第4項所述之發光二極體燈管,其中該承 載板上的發光二極體朝向該凸透鏡單元。 7. 如申請專利範圍第1項所述之發光二極體燈管,其中該第 一殼體及該第二殼體皆為半圓柱狀,且該第一殼體及該第 二殼體組合成一空心柱狀的發光二極體燈管。 8. 如申請專利範圍第1項所述之發光二極體燈管,包括有至 少一第二凹槽設置於該第二殼體的内緣。 9. 如申請專利範圍第1項所述之發光二極體燈管,其中該第 一凹槽設置於該第二殼體的外緣,而該凸緣則設置於該第 一殼體的内緣。 表單編號A0101 100219362 第12頁/共18頁 1002063502-0 M426880 ίο .—種發光二極體燈管,包括有: 一第一殼體,包括有至少一凹槽;及 一第二殼體,包括有: 至少一凸緣,其中該第二殼體之凸緣用以與該第一殼體 之該凹槽接合; 至少一容置溝槽,用以容置至少一承載板。 11 .如申請專利範圍第10項所述之發光二極體燈管,其中該承 載板設置於該容置溝槽内,且該承載板上設置有至少一發 光二極體》M426880: Patent application scope: 1. A light-emitting diode lamp comprising: a first housing comprising at least one flange; and a second housing comprising: at least one first recess, The first recess of the second housing is configured to engage with the flange of the first housing; and the at least one receiving groove is configured to receive the at least one carrier. 2. The light-emitting diode lamp of claim 1, wherein the carrier plate is disposed in the receiving groove, and the carrier plate is provided with at least one light-emitting diode. 3. The light-emitting diode lamp of claim 2, wherein the light-emitting diode on the carrier plate faces the second housing. 4. The light-emitting diode lamp of claim 3, comprising a convex lens unit at the bottom of the second housing. 5. The light-emitting diode lamp of claim 4, wherein the first casing and the second casing are made of a light transmissive material. 6. The light-emitting diode lamp of claim 4, wherein the light-emitting diode on the carrier plate faces the convex lens unit. 7. The light-emitting diode lamp of claim 1, wherein the first casing and the second casing are both semi-cylindrical, and the first casing and the second casing are combined. A hollow cylindrical light-emitting diode lamp. 8. The LED lamp of claim 1, comprising at least one second recess disposed on an inner edge of the second housing. 9. The light-emitting diode lamp of claim 1, wherein the first groove is disposed at an outer edge of the second casing, and the flange is disposed in the first casing edge. Form No. A0101 100219362 Page 12 of 18 1002063502-0 M426880 ίο. A light-emitting diode lamp comprising: a first housing comprising at least one recess; and a second housing comprising There is: at least one flange, wherein the flange of the second casing is engaged with the groove of the first casing; at least one receiving groove for receiving at least one carrier plate. The light-emitting diode lamp of claim 10, wherein the carrier plate is disposed in the receiving groove, and the carrier plate is provided with at least one light-emitting diode. 12 .如申請專利範圍第11項所述之發光二極體燈管,其中該承 載板上的發光二極體朝向該第二殼體。 13 .如申請專利範圍第12項所述之發光二極體燈管,包括有一 凸透鏡單元位於該第二殼體的底部。 14 .如申請專利範圍第13項所述之發光二極體燈管,其中該第 一殼體及該第二殼體由透光材質所製成。 15 .如申請專利範圍第13項所述之發光二極體燈管,其中該承 載板上的發光二極體朝向該凸透鏡單元。 16 .如申請專利範圍第10項所述之發光二極體燈管,其中該第 一殼體及該第二殼體皆為半圓柱狀,且該第一殼體及該第 \ 二殼體組合成一空心柱狀的發光二極體燈管。 1002063502-0 100219362 表單編號A0101 第13頁/共18頁12. The light-emitting diode lamp of claim 11, wherein the light-emitting diode on the carrier plate faces the second housing. 13. The light-emitting diode lamp of claim 12, comprising a convex lens unit at the bottom of the second housing. The light-emitting diode lamp of claim 13, wherein the first casing and the second casing are made of a light-transmitting material. The light-emitting diode lamp of claim 13, wherein the light-emitting diode on the carrier plate faces the convex lens unit. The illuminating diode lamp of claim 10, wherein the first housing and the second housing are both semi-cylindrical, and the first housing and the second housing A hollow columnar light-emitting diode lamp is synthesized. 1002063502-0 100219362 Form No. A0101 Page 13 of 18
TW100219362U 2011-10-14 2011-10-14 Light emitting diode lamp tube TWM426880U (en)

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TW100219362U TWM426880U (en) 2011-10-14 2011-10-14 Light emitting diode lamp tube
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