TW201006005A - Mixing light beam apparatus - Google Patents

Mixing light beam apparatus Download PDF

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TW201006005A
TW201006005A TW97129143A TW97129143A TW201006005A TW 201006005 A TW201006005 A TW 201006005A TW 97129143 A TW97129143 A TW 97129143A TW 97129143 A TW97129143 A TW 97129143A TW 201006005 A TW201006005 A TW 201006005A
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Taiwan
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light
layer
mixed
mixing
mixing layer
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TW97129143A
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Chinese (zh)
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Hsiu-Hui Chang
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Hsiu-Hui Chang
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Abstract

A mixing light beam apparatus is provided to solve the problem that the light emitting diode only can radiate specific color light beam. The problem is solved by setting at last one light emitting diode on a control circuit board to control current of light emitting diodes to radiate specific light wavelength. The plurality of light wavelengths are mixed by first mixing layer to radiate a wide angle light beam, and the wide angle light beam and the external light beam are mixed by second mixing layer to radiate a visual effective light beam. Therefore, the efficacy of radiating the visual effective light beam by mixing light beam may be achieved.

Description

201006005 九、發明說明: 【發明所屬之技術領域】 一種混光裝置,尤其特別係指一種具有兩層混光層對 發光光源以及外界光原進行混合之混光裝置。 【先前技術】 發光二極體(Light Emitting Diode,LED)技術發展 至今,已經被證實具有體積小、發熱量低、耗電量少、使 用哥命長以及耐震等多種優點’而被廣泛地使用在曰常生 活上各種顯示應用以及車用照明方面。 發光二極體的作用原理,係透過正極以及負極之電 机’通過發光二極體晶片,以使發光二極體晶片發光,因 此,$見的態樣係將發光二極體晶片定位於一可導引出導 線之導線架巾,並扣封裝,以形成具有發光二極體晶片 的導線架歧導雜組’而後,將導、_或是導線模組再 電性連接於印刷電路板上,以形成可導通之狀態。201006005 IX. Description of the invention: [Technical field to which the invention pertains] A light mixing device, in particular, a light mixing device having two layers of a light mixing layer for mixing an illuminating light source and an external light source. [Prior Art] Light Emitting Diode (LED) technology has been developed to date and has been widely used because of its small size, low heat generation, low power consumption, long life and shock resistance. Various display applications and automotive lighting in everyday life. The principle of the function of the light-emitting diode is to pass through the light-emitting diode wafer through the motor of the positive electrode and the negative electrode to make the light-emitting diode wafer emit light. Therefore, the aspect seen is to position the light-emitting diode wafer in one. The lead frame of the wire can be guided and buckled to form a lead frame with a light-emitting diode chip. Then, the lead, or the wire module is electrically connected to the printed circuit board. To form a conductive state.

而對於發光二極體的混光方式,可以在發光二極體晶 片封裝時,在封裝膠内加人螢光粉末,藉由發光二極體晶 片所發_親,紐#絲末使㈣絲末發出與發光 /二極體晶片發出不同波長的光線,以便將_色光混光 後’以形成其他有顺發光二減晶版發㈣光線以及 螢光粉末發出的光線。 -疋,這種方式僅能將二種不同的光線進行混光,以 產生出單—翻色的光線,並且财技術而言,僅能產生 出特定的顏色’例如:紅色、藍色以及綠色等顏色,無法 5 201006005 產生出較為特殊的顏色,例如:紫色,因此,必須以另外 的方式用以將特定顏色以外賊色猶加以產生。 综上所述’可知先前技術中長期以來一直存在發光二 贿僅能產生崎定顏色光線的問題,因此有必要提出改 進的技術手段,來解決此一問題。 【發明内容】 - 有鑒於先前技術存在發光二極體僅能產生出特定顏 _ 色光線的問題,本發明遂揭露一種混光裝置,其中: 本發明所揭露之混光裝置,其包含:至少一發光二極 體、第一混光層以及第二混光層。 其中,透過電流激發發光二極體之光源使其具有特定 之光波長;第一混光層用以吸收上述至少特定之光波長以 產生具有另-光波長之廣角光源;廣角光源穿透第二混光 層,第二混光層並反射外界光源,使廣角光源與外界光源 產生相互交織情境之視覺效果。 ^ 本發明所揭路之系統與方法如上,與先前技術之間的 差異在於本發明在控制電路設置至少一發光二極體,並且 控制至少一發光二極體的電流,使得至少一發光二極體產 生的特定之光波長,並且透過第一混光層進行第一次混光 動作,使得可以產生出均勻的廣角光源,並且再透過第二 混光層將廣角光源與外界光源進行第二次混光動作,以產 生相互交織情境之視覺效果。 透過上述的技術手段’本發明可以達成透過混光作用 以產生多彩視覺效果的技術功效。 6 201006005 【實施方式】 以下將配合圖式及實施例來詳細說明本發明之實施 方式,藉此對本發明如何應用技術手段來解決技術問題並 達成技術功效的實現過程能充分理解並據以實施。 以下將說明本發明混光裝置之組成元件,首先請參考 「第1圖」所示’「第1圖」係為本發明控制電路板及發 - 光一極體之立體示意圖。 如「第1圖」所示,至少一發光二極體u係電性連 接於控制電路板14上,而發光二極體係選自紅色、綠色 以及藍色發光二極體的群組中之任意一種組合,例如:最 基本的紅色、綠色以及藍色發光二極體各一,或是紅色以 及綠色發光二極體各一等不同的組合。 透過控制電路板14可以分別控制不同的發光二極體 11的導通與否,可以使得發光二極體11可以產生明滅的 效果,或是不同的發光二極體u產生亮度上的變化,使 〇 得不同發光二極體11經由不同程度的混光後,即可以產 生一種預定產生的顏色,使發光二極體u之光源使其具 有特定之光波長。 舉例來說’以基本的紅色、綠色以及藍色發光二極體 各一為舉例說明’假設需要產生紅色光線時,則控制電路 板Η會將紅色發光二極體的電流進行導通,而綠色以及 藍色發光二極體的電流不導通,即可以產生出紅色光線, 即可以得到紅色光波長的光線;當需要產生出白色光線 時’則控制電路板14會將紅色、綠色以及藍色發光二極 7 201006005 體的電流_進行導通’柯以刺產生出白色光線的效 果,即可以得勒絲波長的光線。 接著’請參考「第2圖」所示,「第2圖」係為本發 明第-混光層及控制電路板之立體分解圖。 當透過控制電路板14控制不同的發光二極體n所需 ㈣流強度後,即可輯财同的發光二減n所產生 - 不_特定之光波長’接著H光層12會吸收不同 力發光二極體11所產生不同的特定之光波長,並且第一 絲層12會騎魏不_特权級長賴產生具有 另一光波長之廣角光源15。 在第-混光層12内之任二種以上特定之光波長,於 第-混光層12内達到充分的光擴散、光轉換以及光混合, 並且在充分的光擴散、光轉換以及光混合後,透過第一混 光層12以產生出高均勻性、衰弱且光色怪定之廣角光源 15 ° 〇 帛一混光層12係為非透明之導光材質所構成,在光 線要從第-混光層12内部射向第一混光層12外部,或是 光線要從第-混光層12外部射向第一混光層12内部時, 由於’第-混光層12為非透明材質的特性,使其絲穿 射於第-混光層料’非透明材質會吸收部分的光線能 量,但不會完全吸收光線能量,導致產生光線能量的衰 減,因此,穿射第一混光層12的光線會產生出衰弱的光 源。 第-混光層12除了為非透明之導光材質所構成,其 8 201006005 外觀可係為半球狀殼體、矩形形狀殼體或是不規則形狀殼 體’在此僅為舉例’不以此侷限本發明的應用,並且可以 在第/心光層12内參雜有若干介質,例如:金屬微顆粒、 氣泡、螢光粉末或是不同密度之導光材質,使其更可以將 光線均勻的發散於第一混光層12射出方向,使第一混光 層丨2可以產生出高均勻性的光源。 並且第一混光層12係為覆蓋於控制電路板14之上, 同時控制電路板14上的發光二極體! i所產生的光源射向 第—混光層12,由於發光二極體以所產生的為廣角度的 光源’因此’第-混光層12所產生出的亦為廣角度的光 源,第一混光層12所產生的即為廣角光源15。 因此,發光二極體11透過第一混光層12經由上述的 特性可以產生出高均勻性、衰弱且光色恆定之廣角光源 15。For the light-mixing method of the light-emitting diode, a fluorescent powder can be added to the package during the package of the light-emitting diode chip, and the light-emitting diode chip is used to emit the (four) wire. At the end, the light emitted from the illuminating/dipolar wafer is emitted at different wavelengths to mix the _color light to form other illuminating light (four) light and the light emitted by the fluorescent powder. - 疋, this method can only mix two different kinds of light to produce single-turned light, and financial technology can only produce a specific color 'for example: red, blue and green The same color, can not be 5 201006005 produces a more special color, such as: purple, therefore, must be used in other ways to produce a thief color in addition to a specific color. As described above, it can be seen that in the prior art, there has been a long-standing problem that the light bribe can only produce the color of the light, so it is necessary to propose an improved technical means to solve this problem. SUMMARY OF THE INVENTION In view of the prior art, there is a problem that a light-emitting diode can only generate a specific color-color light. The present invention discloses a light-mixing device, wherein: the light-mixing device disclosed in the present invention includes: a light emitting diode, a first light mixing layer, and a second light mixing layer. The light source excites the light source of the light emitting diode to have a specific light wavelength; the first light mixing layer absorbs the at least specific light wavelength to generate a wide-angle light source having another light wavelength; the wide angle light source penetrates the second The light mixing layer, the second light mixing layer and the external light source are reflected, so that the wide-angle light source and the external light source produce a visual effect of interweaving the situation. The system and method of the present invention are as above, and the difference from the prior art is that the present invention provides at least one light emitting diode in the control circuit and controls the current of at least one light emitting diode such that at least one light emitting diode The specific light wavelength generated by the body, and the first light mixing action is performed through the first light mixing layer, so that a uniform wide-angle light source can be generated, and the wide-angle light source and the external light source are further transmitted through the second light-mixing layer for a second time. Mixing motions to create visual effects that are interwoven with each other. Through the above-mentioned technical means, the present invention can achieve the technical effect of transmitting a light-visual effect to produce a colorful visual effect. [Embodiment] Hereinafter, embodiments of the present invention will be described in detail with reference to the drawings and embodiments, by which the present invention can be fully understood and implemented by the technical means of solving the technical problems and achieving the technical effects. Hereinafter, the components of the light mixing device of the present invention will be described. Referring first to the "Fig. 1", "the first drawing" is a perspective view of the control circuit board and the light-emitting diode of the present invention. As shown in FIG. 1, at least one light-emitting diode u is electrically connected to the control circuit board 14, and the light-emitting diode system is selected from any group of red, green, and blue light-emitting diodes. A combination, for example, one of the most basic red, green, and blue light-emitting diodes, or a different combination of red and green light-emitting diodes. The control circuit board 14 can respectively control whether the different LEDs 11 are turned on or off, so that the LEDs 11 can produce a brightening effect, or different LEDs can produce a change in brightness, so that After different light-emitting diodes 11 are mixed with different degrees, a predetermined color can be generated, so that the light source of the light-emitting diode u has a specific light wavelength. For example, 'illustration of each of the basic red, green, and blue light-emitting diodes'. If a red light is required, the control circuit board turns on the current of the red light-emitting diode, and the green The current of the blue light-emitting diode is not turned on, that is, red light can be generated, that is, light of a red light wavelength can be obtained; when white light needs to be generated, then the control circuit board 14 will emit red, green, and blue light. Pole 7 201006005 The current of the body _ conducts the effect of the spurs to produce white light, that is, the light of the wavelength of the ray. Next, please refer to "Figure 2", which is an exploded perspective view of the first-mixed light layer and the control circuit board of the present invention. After controlling the required (four) current intensity of the different light-emitting diodes through the control circuit board 14, the same light-emitting annihilation n is generated - not the specific light wavelength', and then the H-light layer 12 absorbs different forces. The light-emitting diodes 11 produce different specific wavelengths of light, and the first layer 12 will ride a wide-angle source 15 having another wavelength of light. Full light diffusion, light conversion, and light mixing in the first light-mixing layer 12 at any two or more specific light wavelengths in the first light-mixing layer 12, and sufficient light diffusion, light conversion, and light mixing After that, the first light-mixing layer 12 is formed to produce a high-uniformity, weak and light-colored wide-angle light source 15 ° 混 a light-mixing layer 12 is made of a non-transparent light guiding material, in the light from the first - The inside of the light mixing layer 12 is directed to the outside of the first light mixing layer 12, or when the light is emitted from the outside of the first light mixing layer 12 to the inside of the first light mixing layer 12, since the first light mixing layer 12 is a non-transparent material. The characteristic is that the wire passes through the first-mixed layer material. The non-transparent material absorbs part of the light energy, but does not completely absorb the light energy, resulting in the attenuation of the light energy. Therefore, the first light-mixing layer is penetrated. The light of 12 produces a weak source of light. The first light-mixing layer 12 is composed of a non-transparent light guiding material, and the appearance of the 8 201006005 may be a hemispherical shell, a rectangular shell or an irregularly shaped shell 'here is merely an example' The application of the present invention is limited, and a plurality of media, such as metal microparticles, bubbles, fluorescent powder or light guiding materials of different densities, may be mixed in the first/heartlight layer 12 to make the light uniform. The light is diverged in the emission direction of the first light mixing layer 12, so that the first light mixing layer 丨2 can generate a light source with high uniformity. And the first light mixing layer 12 is covered on the control circuit board 14, while controlling the light emitting diode on the circuit board 14! The light source generated by i is directed to the first light-mixing layer 12, because the light-emitting diode generates a wide-angle light source, so that the first-mixed light layer 12 also produces a wide-angle light source, first The wide-angle light source 15 is produced by the light mixing layer 12. Therefore, the light-emitting diode 11 can pass through the above-described characteristics through the first light-mixing layer 12 to produce a wide-angle light source 15 having high uniformity, weakness, and constant light color.

接者,請參考「第3圖」所示,「第3圖」係為本發 明第-混光層、第二混光層及㈣f路板之立體分賴。 於第-混光層所產生㈣料勻性、衰弱且光色 怪定之廣角光源15打透第二混光層13,並且第二混光 層13可反射外界絲16,使得廣角光源15與外界光源 16產生相互交織情境之視覺效果。 由於第二混光層係為非透明之導光材質所構成, 基於第二混光層13為魏明财⑽性 於第二混光層13時,非透明材質會讀部分的光線能量, 但不會完全魏规歸,使得麵可叫透第二混光層 9 13。 201006005 並且第二混光層13係為覆蓋於‘第一混光層12之上, 同時第一混光層12所產生的廣角光源15射向第二混光層 13,則可以穿透第二混光層π,並且與外界光源16進行 混光動作。For the receiver, please refer to "3", which is the three-dimensional distribution of the first-mixed layer, the second mixed layer and the (four) f-plate. The wide-angle light source 15 generated by the first-mixed light layer (four) is uniform, weak, and light-colored, and the second light-mixing layer 13 is penetrated, and the second light-mixing layer 13 can reflect the external light 16 so that the wide-angle light source 15 and the outside Light source 16 produces a visual effect of interwoven context. Since the second light mixing layer is made of a non-transparent light guiding material, when the second light mixing layer 13 is Wei Mingcai (10) in the second light mixing layer 13, the non-transparent material will read part of the light energy, but will not Completely, the surface can be called through the second light mixing layer 9 13 . 201006005 and the second light mixing layer 13 is overlaid on the first light-mixing layer 12, and the wide-angle light source 15 generated by the first light-mixing layer 12 is directed to the second light-mixing layer 13 to penetrate the second light-mixing layer 13 The light mixing layer π is mixed with the external light source 16.

接著,透過鍍膜技術或濺鍍技術,可以在第二混光層 13外表面形成一層的反射膜,在此以鍍膜技術或濺鍍技 術作為舉例說明,並且鍍膜技術或濺鍍技術係為先前技術 的範疇’並非本發明的重點,在此不再贅述,而任何可以 於第二混光層13表面形成一層的反射膜的技術,皆可以 包含在本發明的保護範圍内。 由於透過錢膜技術或濺鑛技術,可以在第二混光層 13外表面形成一層的反射膜17,反射膜17的外部可以將 外界光源16進行反射,而反射膜Η的内部可以將第一混 光層12所產生的廣角光源15穿透㈣,使得廣角光源 15與外界光源16產生相互交織情境之視覺效果。 -混光層13除了為非透明之導光材質所構成 -----------貝nr傅风,六 卜觀可為半球狀殼體、矩形形狀殼體或是不規則形狀殼 在此僅為舉例’不以此侷限本發明的應用,並且可以 混光層13内參财若干介質,例如:金屬微顆粒、 =、發光粉末或是不同密度之導光材#,使其更可以將 2均⑽發散於第二混光層13射出方向,使第二絲 均13可以產生出高均勻性的光源 综上所述’並請參照「第4圖」所示,「第4圖 係 201006005 為本發明混光裝置之立體組合圖,本發明所揭露之混光裝 置10 ’其包含··至少-發光二極體u、第—混光層、 第二混光層13以及控制電路板14,將所有元件進行组合 後,其組合外觀如「第4圖」所示。 、接著,透過控制電路板14將不同的發光二極體n的 ' 冑過電流控制為定值’献隨時間變化改變通過不同的發 . 光二極體11的通過電流,會使得發光二極體n會產生出 ❿ 特定之光波長,或是隨咖改變㈣定之光波長。 接著於第一/tC(光層12内將不同的發光二極體η所 產生出的各赠定之級長翻充分的光舰、光轉換以 及光混合,並且在充分的光·、光觀以及光混合後, 透過第作匕光層12以產生出高均勻性、衰弱且光色怪定 之廣角光源15。 或是,於第一混光層12内將隨時間變化的至少一發 光二極體11所產生出的各個特定之光波長達到充分的光 Ο 擴散、光轉換以及光混合,並且在充分的光擴散、光轉換 以,光混合後’透過第一混光層12以產生出隨時間變化 的间均勻性、衰弱且光色恆定之廣角光源15。 接著’於第-混光層12所產生出的高均勻性、衰弱 且光色恆定之廣角光源15可穿透第二混光層13,並且第 一此光層13可反射外界光源16,使得廣角光源15與外 界光源16產生相互交織情境之視覺效果。 或是’於第一混光層12所產生出隨時間變化的高均 勻性、衰弱且光色恆定之廣角光源15可穿透第二混光層 11 201006005 13,並且第二混光層13可反射外界光源π,使得隨時間 變化的廣角光源15與外界光源16產生隨時間變化的相互 交織情境之視覺效果。 因此,可以透過控制電路板14控制每一個發光二極 體11的電流,使其發出單一特定之光波常,或是發出隨 - 時間變化的特定之光波長,並且透過第一混光層12以及 • 第二混光層13,可以展現出單一廣角光源15與外界光源 , 16產生相互交織情境之單一視覺效果,或是展現出隨時 間變化的廣角光源15與外界光源16產生隨時間變化的相 互交織情境之多種視覺效果。 對於本發明混光裝置,其可以應用於滑鼠中,在滑鼠 内增加至少一發光二極體、控制電路板以及第一混光層, 而滑鼠的外殼部分則可以設計為第二混光層,藉此,使得 . 滑鼠可以在外觀上產生出色彩變化的視覺效果。 、,另外’本發明混光裝置也可以應用於具有鍵盤之攜帶 • 式消費產品’在具有鍵盤之攜帶式消費產品内增加至少一 發光—極體、控制電路板以及第一混光層,而鍵盤的按鍵 P刀貝]可以设汁為第二混光層,藉此,使得使用者在都過 按鍵輸入時’也可以感受到色彩變化的視覺效果。 。、以上兩種應用領域,僅為舉例說明本發明的應用領 或但不以此侷限本發明的應用範圍。 綜上所述,可知本發明與先前技術之間的差異在於具 T本毛明在控制電路設置至少—發光二極體,並且控制至 I光一極體的電流,使得至少一發光二極體產生的特 12 201006005 定之光波長,並且透過第一混光層進行第〜&、曰“ 使得可以產生it}均⑽廣肖統,並且倾邮 將廣角光源與外界光源進行第二次混光動作r 曰 交織情境之視覺效果。 藉由此-技術手段可以來解決先前技術所存在發光 二極體僅能產生出特定顏色光線關題,細 _ 光作用以產生多彩視覺效果的技術功效。 β此Then, through the coating technology or the sputtering technique, a reflective film may be formed on the outer surface of the second light-mixing layer 13, where the plating technique or the sputtering technique is exemplified, and the coating technology or the sputtering technique is prior art. The category 'is not the focus of the present invention, and will not be described herein any, and any technique that can form a reflective film on the surface of the second light-mixing layer 13 can be included in the scope of the present invention. Due to the money film technology or the sputtering technique, a reflective film 17 may be formed on the outer surface of the second light mixing layer 13. The outer surface of the reflective film 17 may reflect the external light source 16, and the inside of the reflective film may be first. The wide-angle light source 15 generated by the light mixing layer 12 penetrates (4), so that the wide-angle light source 15 and the external light source 16 produce a visual effect of interlaced context. - The light-mixing layer 13 is composed of a non-transparent light-guiding material-----------Bei nr Fufeng, and the six-view can be a hemispherical shell, a rectangular shell or an irregular shape. The shell is hereby merely exemplified as 'not limited to the application of the invention, and may be used in the light-mixing layer 13 to participate in a number of media, such as metal microparticles, =, luminescent powder or light guide materials of different densities, such that Further, it is possible to divergence 2 (10) in the emission direction of the second light-mixing layer 13, so that the second filaments 13 can produce a high-uniformity light source as described above, and please refer to "4th", "4th. Figure 201006005 is a three-dimensional combination diagram of the light mixing device of the present invention, and the light mixing device 10' disclosed in the present invention includes at least a light emitting diode u, a first light mixing layer, a second light mixing layer 13, and a control The circuit board 14 combines all the components, and its combined appearance is as shown in "Fig. 4". Then, through the control circuit board 14, the 'turn-over current of different light-emitting diodes n is controlled to a constant value', and the passing current through the different light-emitting diodes 11 is changed to make the light-emitting diodes n will produce a specific wavelength of light, or change the wavelength of light with the coffee (4). Then, in the first/tC (the optical layer 12, the light-emitting ships, the light conversion, and the light, which are fully converted by the different light-emitting diodes η, are fully mixed, and in the light, the light, and the light. After mixing, the first light-emitting layer 12 is passed through to produce a high-uniformity, debilitating, and opaque wide-angle light source 15. Alternatively, at least one light-emitting diode 11 that changes with time in the first light-mixing layer 12 The specific wavelengths of light produced are sufficient for pupil diffusion, light conversion, and light mixing, and are transmitted through the first light-mixing layer 12 to produce a change with time after sufficient light diffusion, light conversion, and light mixing. The wide-angle light source 15 is uniform, weak, and constant in color. Then, the wide-angle light source 15 that is highly uniform, weak, and constant in light color generated by the first light-mixing layer 12 can penetrate the second light-mixing layer 13 And the first light layer 13 can reflect the external light source 16, so that the wide-angle light source 15 and the external light source 16 produce a visual effect of interlaced context. Or 'high uniformity of the first mixed light layer 12 generated with time. Wide angle with weak, constant light color The source 15 can penetrate the second light mixing layer 11 201006005 13 and the second light mixing layer 13 can reflect the external light source π, so that the time-varying wide-angle light source 15 and the external light source 16 produce a visual effect of inter-interlaced contexts that change with time. Therefore, the current of each of the light-emitting diodes 11 can be controlled by the control circuit board 14 to emit a single specific light wave, or emit a specific light wavelength that varies with time, and is transmitted through the first light-mixing layer 12. And the second light mixing layer 13 can exhibit a single wide-angle light source 15 and an external light source, 16 generating a single visual effect of interwoven environments, or exhibiting a time-varying wide-angle light source 15 and ambient light source 16 that varies with time. A plurality of visual effects of interwoven environments. For the light mixing device of the present invention, it can be applied to a mouse, and at least one light emitting diode, a control circuit board and a first light mixing layer are added to the mouse, and the outer shell of the mouse is used. The part can be designed as a second light mixing layer, so that the mouse can produce a visual effect of color change in appearance. The light mixing device can also be applied to a portable consumer product having a keyboard. In the portable consumer product with a keyboard, at least one light-emitting body, a control circuit board and a first light mixing layer are added, and the keyboard P button ] The juice can be set as the second light mixing layer, thereby enabling the user to feel the visual effect of the color change when both the button input is performed. The above two application fields are merely illustrative of the application of the present invention. The invention may or may not limit the scope of application of the present invention. In summary, it can be seen that the difference between the present invention and the prior art is that the present invention has at least a light-emitting diode disposed in the control circuit and controlled to the light one. The current of the polar body is such that the at least one light-emitting diode generates a wavelength of light of 12 201006005, and the first light-mixing layer performs the first ~ & 曰 " so that it can generate it} (10) wide and unified The wide-angle light source and the external light source perform a second mixed light action r 曰 interlaced visual effect. By means of this technique, it is possible to solve the technical effect that the prior art light-emitting diode can only produce a specific color light, and the light _ light acts to produce a colorful visual effect.此 this

雖然本發明所揭露之實施方式如上,惟所述之内容並 非用以直接限定本發明之專利保護範圍。任何本發明所屬 技術領域巾具有通常知識者,在不雌本發贿揭露之精 神和範圍的前提下,可以在實施的形式上及細節上作些許 之更動。本發明之專利保護範圍,仍須以所附之申請專利 範圍所界定者為準。 【圖式簡單說明】 第1圖為本發明控制電路板及發光二極體之立體示意 圖。 第2圖為本發明第一混光層及控制電路板之立體分解 圖。 第3圖為本發明第一混光層、第二混光層及控制電路 板之立體分解圖。 第4圖為本發明混光裝置之立體組合圖。 【主要元件符號說明】 10 混光裝置 11 發光二極體 13 201006005 12 第一混光層 13 第二混光層 14 控制電路板 15 廣角光源 16 外界光源 17 反射膜While the embodiments of the present invention are as described above, the above description is not intended to directly limit the scope of the invention. Any person skilled in the art to which the present invention pertains can make some changes in the form and details of the implementation without prejudice to the spirit and scope of the disclosure. The scope of the invention is to be determined by the scope of the appended claims. BRIEF DESCRIPTION OF THE DRAWINGS Fig. 1 is a perspective view showing a control circuit board and a light-emitting diode of the present invention. Figure 2 is a perspective exploded view of the first light mixing layer and the control circuit board of the present invention. Fig. 3 is an exploded perspective view showing the first light mixing layer, the second light mixing layer, and the control circuit board of the present invention. Fig. 4 is a perspective assembled view of the light mixing device of the present invention. [Main component symbol description] 10 Light mixing device 11 Light-emitting diode 13 201006005 12 First light mixing layer 13 Second light mixing layer 14 Control circuit board 15 Wide-angle light source 16 External light source 17 Reflective film

1414

Claims (1)

201006005 十、申請專利範圍: 1. 一種混光裝置,其包含: 體二::有二 產生吸收上述至少該特定之光波長以 產生具有另一光波長之-廣角光源;及 今第該廣角光源穿私第二混光層, 該第-先層並反射外界光源,使該 光源產生相互交織情境之視覺效果。、" 2. 如申請專利範圍第!項所述之混光裝置, 混光層係一非透明之導光材質。 、以 3. 如申請專利範圍第!項所述之混光裝置, 以上該特定之光波長會於該第—喊;種 及光混合’且於混光後產生高均二 哀弱且先色恆定之該廣角光源。 4. 如申請專利範圍第i項所述之混光裳置 混光層係-非透明之導光材質。 、中該第- 5· ^申請補_第1項所述之混錄置,其中該第二 犯光層更透過鑛膜或濺鑛而形成—反射膜〜 6. 如申請專利範園第!項所述之 、 二極體係選自紅色、綠色與藍置料該發光 之任意-種組合 與趣發光二極體的群組中 7. 如申請專利範圚第^項所述之混光農置, 4層所參雜之介質選自金屬微顆粒、氣泡或是义不同 15 201006005201006005 X. Patent application scope: 1. A light mixing device, comprising: a body 2: two wide-angle light sources that generate at least the specific wavelength of light to generate another wavelength of light; and the wide-angle light source The second mixed light layer is worn, and the first-first layer reflects the external light source, so that the light source produces a visual effect of interlaced context. , " 2. If you apply for a patent scope! In the light mixing device described in the item, the light mixing layer is a non-transparent light guiding material. , to 3. For example, the scope of patent application! In the light mixing device of the above aspect, the specific wavelength of the light is generated in the first-speaking type and the light mixing, and the wide-angle light source having a high uniformity and a constant color is generated after the light is mixed. 4. As described in the patent application scope item i, the mixed light layer is a mixed light layer-non-transparent light guiding material. In the middle of the 5th - 5th application, the mixed recording described in item 1, wherein the second light layer is formed through the mineral film or splashing - the reflective film ~ 6. For example, apply for the patent garden! The dipole system is selected from the group consisting of red, green and blue materials, and any combination of the luminescence and the group of interesting light-emitting diodes. 7. The mixed-light farmer described in the patent application. Set, the 4 layers of the mixed medium selected from metal microparticles, bubbles or different meanings 15 201006005 密度之導光材質的群組中之任意一種組合。 8.如申請專利範圍第1項所述之混光裝置,其中該第二 混光層所參雜之介質選自金屬微顆粒、氣泡或是不同 密度之導光材質的群組中之任意一種組合。 16Any combination of groups of density light guiding materials. 8. The light mixing device of claim 1, wherein the medium mixed with the second light mixing layer is selected from the group consisting of metal microparticles, bubbles, or groups of light guiding materials of different densities. combination. 16
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