TWI792575B - Concealed light emitting device - Google Patents

Concealed light emitting device Download PDF

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TWI792575B
TWI792575B TW110135163A TW110135163A TWI792575B TW I792575 B TWI792575 B TW I792575B TW 110135163 A TW110135163 A TW 110135163A TW 110135163 A TW110135163 A TW 110135163A TW I792575 B TWI792575 B TW I792575B
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light
emitting diode
emitting
emitting device
touch
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TW110135163A
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TW202314758A (en
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周文宗
童義興
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立碁電子工業股份有限公司
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Abstract

本發明係揭露一種隱藏式發光裝置,其包括:一基板、一微控制器、至少一第一發光二極體、至少一第二發光二極體以及一殼體,其中,該微控制器及該等發光二極體係電性連接於該基板上並設置於殼體內,當殼體表面受到人體觸控後,該微控制器將產生一驅動指令驅使該等發光二極體輸出光線。 The present invention discloses a concealed light-emitting device, which includes: a substrate, a microcontroller, at least one first light-emitting diode, at least one second light-emitting diode, and a casing, wherein the microcontroller and The light-emitting diode systems are electrically connected to the substrate and arranged in the housing. When the surface of the housing is touched by a human body, the microcontroller will generate a driving command to drive the light-emitting diodes to output light.

Description

隱藏式發光裝置 hidden lighting device

本發明係關於一種發光裝置,特別係指一種經觸碰後可產生動態發光的隱藏式發光裝置。 The present invention relates to a light emitting device, in particular to a hidden light emitting device that can generate dynamic light after being touched.

按,傳統許多電子設備的操控主要是靠各種實體按鍵及旋鈕,其通過按鍵按壓方能導通電路驅動所連接之機具或電子產品,進而控制該機具或電子產品之功能,然,近年來隨著科技發展蓬勃,觸控技術普遍地被運用在各種電子設備領域,進而逐漸取代許多的實體旋鈕或機械式按鍵等,舉例來說,一般電子裝置之播放鍵,其播放鍵上具有播放圖案,當使用者觸壓播放鍵時,播放鍵內部的發光模組運作,使播放鍵上的播放圖案發光,而音響裝置開始播放音樂。反之,當未觸壓播放鍵時,播放鍵內部的發光模組不運作,播放鍵上的播放圖案亦不發光,然而,上述電子裝置於發光模組不產生光束時,使用者可以肉眼觀看到殼體上的播放圖案之痕跡,多數使用者認為如此外觀不夠美觀,況且,其發光模組大多使用導光板等構件增加色彩均勻度效果,又,發光模組內部的發光二極體皆無法提供觸控之功能而無法達到薄型化,再者,上述顯示方式只有靜態發光顯示或指示燈及單點觸控功能,並未能依據觸控方式產生動態發光顯示,提示觸控顯示及回饋等。因此有必要開發出解決上述問題的技術,讓使用者更直覺地操控並兼具美觀外型。 Press, the control of many traditional electronic devices mainly relies on various physical buttons and knobs, which can conduct the circuit to drive the connected equipment or electronic products by pressing the buttons, and then control the functions of the equipment or electronic products. However, in recent years, with the With the rapid development of science and technology, touch technology is widely used in various electronic equipment fields, and gradually replaces many physical knobs or mechanical buttons. For example, the playback button of a general electronic device has a playback pattern on it. When the user presses the play key, the luminous module inside the play key operates to make the play pattern on the play key luminous, and the audio device starts to play music. Conversely, when the play key is not pressed, the light-emitting module inside the play key does not operate, and the play pattern on the play key does not emit light. However, when the above-mentioned electronic device does not generate light beams, the user can see it with naked eyes. The traces of playing patterns on the casing, most users think that the appearance is not beautiful, and most of the light-emitting modules use light guide plates and other components to increase the color uniformity effect, and the light-emitting diodes inside the light-emitting modules cannot provide The touch function cannot achieve thinning. Furthermore, the above-mentioned display methods only have static luminous display or indicator lights and single-touch functions, and cannot generate dynamic luminous display according to the touch method, prompting touch display and feedback, etc. Therefore, it is necessary to develop a technology to solve the above-mentioned problems, so that the user can control it more intuitively and has an aesthetic appearance.

因此,綜觀以上所述,本發明之發明人經多年苦心潛心研究、思索並設計出一種隱藏式發光裝置,以期針對習知技術之缺 失加以改善,進而增進產業上之實施利用。 Therefore, in view of the above, the inventor of the present invention has painstakingly researched, pondered and designed a hidden light-emitting device for many years in order to address the shortcomings of the prior art. Loss to be improved, and then to enhance the implementation and utilization of the industry.

本發明是針對一種發光裝置,其可讓使用者觸碰到裝置的不同區域時,可產生有不同形態的發光方式與視覺效果的隱藏式發光裝置。 The present invention is directed to a light-emitting device, which can produce a hidden light-emitting device with different light-emitting modes and visual effects when users touch different areas of the device.

根據本發明的實施例,本發明的主要提供一種隱藏式發光裝置,其包括:一基板、一微控制器、至少一第一發光二極體、至少一第二發光二極體以及一殼體,其中,該微控制器及該等發光二極體係電性連接於該基板上並設置於殼體內,當殼體表面受到人體觸控後,該微控制器將產生一驅動指令驅使該等發光二極體輸出光線。 According to an embodiment of the present invention, the present invention mainly provides a concealed light-emitting device, which includes: a substrate, a microcontroller, at least one first light-emitting diode, at least one second light-emitting diode, and a housing , wherein the micro-controller and the light-emitting diode systems are electrically connected to the substrate and arranged in the housing, when the surface of the housing is touched by the human body, the micro-controller will generate a driving command to drive the light-emitting diodes Diodes output light.

在本發明的一實施例中,該基板,具有一第一佈設區域及一第二佈設區域,該第一佈設區域電性佈設有至少一第一發光二極體,該第二佈設區域則至少電性佈有至少一第二發光二極體。 In one embodiment of the present invention, the substrate has a first layout region and a second layout region, the first layout region is electrically arranged with at least one first light-emitting diode, and the second layout region is at least The electrical distribution has at least one second light-emitting diode.

在本發明的一實施例中,該至少一第一發光二極體內置有一第一驅動IC及一觸控IC及數個發光二極體晶片,該至少一第二發光二極體內置有一第二驅動IC,該至少一第一發光二極體與該至少一第二發光二極體之間透過微控制器相互電性導通。 In one embodiment of the present invention, the at least one first light-emitting diode is built with a first driver IC, a touch IC and several light-emitting diode chips, and the at least one second light-emitting diode is built with a first The two drive ICs, the at least one first light-emitting diode and the at least one second light-emitting diode are electrically connected to each other through the microcontroller.

在本發明的一實施例中,殼體分別相對於該第一佈設區域形成有一觸控區域,相對於第二佈設區域形成有一顯示區域。 In an embodiment of the present invention, the shell is respectively formed with a touch area relative to the first layout area, and a display area is formed with respect to the second layout area.

在本發明的一實施例中,具有一薄膜係透過真空貼合或水披覆轉印技術貼合於殼體上。 In one embodiment of the present invention, a film is bonded on the casing through vacuum bonding or water coating transfer printing technology.

在本發明的一實施例中,該薄膜係由第一薄膜與第二薄膜組成,當薄膜貼合於殼體上進而形成觸控區域及顯示區域。 In an embodiment of the present invention, the thin film is composed of a first thin film and a second thin film, and when the thin film is pasted on the casing, a touch area and a display area are formed.

在本發明的一實施例中,第一佈設區域及第二佈設區域之 間具有至少一分隔柱。 In one embodiment of the present invention, between the first layout area and the second layout area There is at least one separation column between them.

在本發明的一實施例中,第一發光二極體與殼體內表面之間具有一間隙。 In an embodiment of the invention, there is a gap between the first light-emitting diode and the inner surface of the casing.

在本發明的一實施例中,第一發光二極體與殼體內表面之間的間隙小於2mm。 In an embodiment of the present invention, the gap between the first light-emitting diode and the inner surface of the casing is less than 2mm.

在本發明的一實施例中,該些第一發光二極體之間具有一間隔距離,該距離大於4mm。 In an embodiment of the present invention, there is a distance between the first light emitting diodes, and the distance is greater than 4 mm.

基於上述,本發明能夠實現隱藏式發光裝置的薄型化,透過一薄膜結構,讓發光裝置在不產生光線時,顯示與觸控區域不顯露於殼體表面的功效,同時透過發光二極體內置觸控IC可有利於降低發光裝置的整體高度,且產生不同形態的發光方式與視覺效果。 Based on the above, the present invention can realize the thinning of the hidden light-emitting device. Through a thin-film structure, the display and touch areas of the light-emitting device are not exposed to the surface of the housing when the light-emitting device does not generate light. At the same time, the light-emitting diode is embedded The touch IC can help reduce the overall height of the light-emitting device, and produce different forms of light-emitting methods and visual effects.

為讓本發明的上述特徵和優點能更明顯易懂,下文特舉實施例,並配合所附圖式作詳細說明如下。 In order to make the above-mentioned features and advantages of the present invention more comprehensible, the following specific embodiments are described in detail together with the accompanying drawings.

10:隱藏式發光裝置 10: Hidden lighting device

101:基板 101: Substrate

1011:第一佈設區域 1011: The first deployment area

1012:第二佈設區域 1012: The second deployment area

102:殼體 102: Shell

1021:觸控區域 1021: touch area

1021’:子觸控區域 1021': sub-touch area

1022:顯示區域 1022: display area

1022’:子顯示區域 1022': sub-display area

1023:分隔柱 1023:Separation column

103:第一發光二極體 103: The first light-emitting diode

1031:發光二極體晶片 1031: light emitting diode chip

1032:第一驅動IC 1032: The first driver IC

1033:觸控IC 1033: Touch IC

104:第二發光二極體 104: the second light-emitting diode

1041:發光二極體晶片 1041: light emitting diode chip

1042:第二驅動IC 1042: Second driver IC

105:微控制器 105: Microcontroller

106:薄膜 106: film

1061:第一薄膜 1061: The first film

1062:第二薄膜 1062: Second film

107:供電部 107: Power supply department

D:間隔距離 D: spacing distance

G:間隙 G: Gap

圖1為本發明之隱藏式發光裝置之分解示意圖。 FIG. 1 is an exploded schematic view of the hidden light emitting device of the present invention.

圖2為本發明之隱藏式發光裝置之局部放大圖。 Fig. 2 is a partially enlarged view of the concealed light emitting device of the present invention.

圖3為本發明之隱藏式發光裝置之方塊示意圖。 FIG. 3 is a schematic block diagram of the hidden light emitting device of the present invention.

圖4為根據本發明的另一實施例之剖面示意圖。 Fig. 4 is a schematic cross-sectional view according to another embodiment of the present invention.

圖5A為根據本發明的一實施例所繪示觸控與顯示區域範例(一)。 FIG. 5A is an example (1) of a touch and display area according to an embodiment of the present invention.

圖5B為根據本發明的一實施例所繪示觸控與顯示區域範例(二)。 FIG. 5B is an example (2) of a touch and display area according to an embodiment of the present invention.

本文所使用之方向用語(例如,上、下、右、左、前、後、頂部、底部)僅作為參看所繪圖式使用且不意欲暗示絕對定向。除非另有明確說明,否則本文所述任何方法絕不意欲被解釋為要求按特定順序執行其步驟。在本案說明書全文(包括申請專利範圍)中所使用的「耦接(或連接)」一詞可指任何直接或間接的連接手段,參照本實施例之圖式以更全面地闡述本發明。然而,本發明亦可以各種不同的形式體現,而不應限於本文中所述之實施例。圖式中的層或區域的厚度、尺寸或大小會為了清楚起見而放大。相同或相似之參考號碼表示相同或相似之元件,以下段落將不再一一贅述。 Directional terms (eg, up, down, right, left, front, back, top, bottom) as used herein are used pictorially by reference only and are not intended to imply absolute orientation. Any method described herein is in no way intended to be construed as requiring performance of its steps in a particular order, unless expressly stated otherwise. The term "coupling (or connection)" used throughout the specification of this case (including the scope of the patent application) may refer to any direct or indirect connection means. The present invention will be described more fully with reference to the drawings of this embodiment. However, the present invention can also be embodied in various forms and should not be limited to the embodiments described herein. The thickness, size or magnitude of layers or regions in the drawings may be exaggerated for clarity. The same or similar reference numbers indicate the same or similar elements, and the following paragraphs will not repeat them one by one.

首先,請參閱圖1至圖4所示,本發明係提供一種隱藏式發光裝置10包括:一基板101、一殼體102、至少一第一發光二極體103、至少一第二發光二極體104以及一微控制器105,其中,至少一第一發光二極體103、至少一第二發光二極體104與微控制器105係電性連接於基板101上並設置於殼體102內,所述的基板101可為一電路板,基板101之表面具有第一佈設區域1011及一第二佈設區域1012,所述的至少一第一發光二極體103電性佈設於第一佈設區域1011上,而所述的至少一第二發光二極體104電性佈設於第二佈設區域1012上,且當該第一發光二極體的數量為多個時,該些第一發光二極體103之間具有一間隔距離D,且該間隔距離D需大於2mm,較佳地,該間隔距離需大於4mm,又,殼體102別相對於第一佈設區域1011形成有一觸控區域1021,相對於第二佈設區域1012形成有一顯示區域1022,較佳地,第二佈設區域1012投影面積大於第一佈設區域1011及顯示區域1022投影面積大於觸控區域1021,在本實施例中,殼體102為一塑膠材質,其透過水披覆轉印(Cubic Transfer)或真空貼合等技術將一薄膜106貼合於殼體102上,進而形成觸控區域1021及顯示區域1022,具體而言,首先,薄膜106包括一第一薄膜1061及一第二薄膜1062,其中,第一薄膜1061及第二薄膜1062可預先黏合後,在貼合於殼體102表面上進而形成觸控區域1021及顯示區域1022,或者,第一薄膜1061可先貼合於殼體102表面上,第二薄膜1062再貼合於第一薄膜1061上,換言之,該觸控區域1021為該第一薄膜1061貼合於該殼體102表面後所形成,該顯示區域1022為該第二薄膜1062貼合於該第一薄膜1061表面後所形成,但不限於此,亦可在第一薄膜1061貼合於該殼體102表面後同時形成觸控區域1021及顯示區域1022,並再貼合第二薄膜1062來增強遮蔽效果,所述的薄膜106為深色可透光的材質,如此,可避免觸控區域1021及顯示區域1022直接曝露顯示於殼體102之外表面,藉此,當第一發光二極體103及第二發光二極體104不產生光線時,使用者不會以肉眼觀直接看到顯示區域1022及觸控區域1021的痕跡,較佳地,殼體102更可包括一呈透明態樣之第三薄膜(圖未繪製)並覆蓋於第二薄膜1062上,進而形成一保護膜,如此,可避免殼體102受外部刮傷進而影響觸控區域1021及顯示區域1022。 First, please refer to FIG. 1 to FIG. 4, the present invention provides a hidden light emitting device 10 comprising: a substrate 101, a housing 102, at least one first light emitting diode 103, at least one second light emitting diode body 104 and a microcontroller 105, wherein at least one first light emitting diode 103, at least one second light emitting diode 104 and the microcontroller 105 are electrically connected to the substrate 101 and arranged in the casing 102 , the substrate 101 can be a circuit board, the surface of the substrate 101 has a first layout area 1011 and a second layout area 1012, and the at least one first light-emitting diode 103 is electrically arranged in the first layout area 1011, and the at least one second light-emitting diode 104 is electrically arranged on the second layout area 1012, and when the number of the first light-emitting diodes is multiple, the first light-emitting diodes There is a distance D between the bodies 103, and the distance D must be greater than 2mm, preferably, the distance must be greater than 4mm, and the housing 102 is formed with a touch area 1021 respectively relative to the first layout area 1011, A display area 1022 is formed relative to the second layout area 1012. Preferably, the projected area of the second layout area 1012 is larger than that of the first layout area 1011 and the projected area of the display area 1022 is larger than that of the touch area 1021. In this embodiment, the casing 102 is a plastic material, and a thin film 106 is bonded to the casing 102 by Cubic Transfer or vacuum bonding technology to form a touch area 1021 and a display area 1022. Specifically, First, the film 106 includes a first film 1061 and a second film 1062, where the first film 1061 and the second film 1062 can be bonded in advance, and then attached to the surface of the casing 102 to form the touch area 1021 and the display area 1022, or, the first film 1061 can be pasted on the surface of the housing 102 first, and the second film 1062 can be pasted on the first film 1061. In other words, the touch area 1021 is the first film 1061 pasted on The display area 1022 is formed after the second film 1062 is pasted on the surface of the first film 1061, but it is not limited thereto, and the first film 1061 can also be pasted on the case. 102, the touch area 1021 and the display area 1022 are formed at the same time, and then the second film 1062 is pasted to enhance the shielding effect. The film 106 is a dark and light-transmitting material, so that the touch area 1021 and The display area 1022 is directly exposed and displayed on the outer surface of the casing 102, so that when the first light-emitting diode 103 and the second light-emitting diode 104 do not generate light, the user will not directly see the display area with the naked eye 1022 and the traces of the touch area 1021. Preferably, the casing 102 may further include a transparent third film (not shown in the figure) and cover the second film 1062, thereby forming A protective film, in this way, can prevent the casing 102 from being scratched by the outside and affect the touch area 1021 and the display area 1022 .

所述的至少一第一發光二極體103包括有複數個發光二極體晶片1031、一第一驅動IC1032及一觸控IC1033且彼此相互電性連接,又,所述的至少一第二發光二極體104更包括複數個發光二極體晶片1041及一第二驅動IC1042且彼此電性連接,又,第一發光二極體103、第二發光二極體104與微控制器105相互電性導通,其中,該等發光二極體晶片(1031、1041)可發出紅光(主波長約為630nm-670nm)、綠光(主波長約為500nm-530nm)或藍光 (主波長約為430nm-480nm)等可見光,但不限於此,在本實施例中,第一發光二極體103與第二發光二極體104內的複數個發光二極體晶片1031之數量不低於3,較佳地,第二發光二極體104內之發光二極體晶片1031的數量更可為4個,且其中部分晶片上方可覆蓋有一轉換層(圖未繪製),如此可使第二發光二極體104產生更多元豐富的光線。 The at least one first light emitting diode 103 includes a plurality of light emitting diode chips 1031, a first driver IC 1032 and a touch IC 1033 and are electrically connected to each other, and the at least one second light emitting diode The diode 104 further includes a plurality of light-emitting diode chips 1041 and a second driver IC 1042 and is electrically connected to each other, and the first light-emitting diode 103, the second light-emitting diode 104 and the microcontroller 105 are electrically connected to each other. The light-emitting diode chips (1031, 1041) can emit red light (the main wavelength is about 630nm-670nm), green light (the main wavelength is about 500nm-530nm) or blue light (dominant wavelength is about 430nm-480nm) and other visible light, but not limited thereto, in this embodiment, the number of multiple light emitting diode chips 1031 in the first light emitting diode 103 and the second light emitting diode 104 No less than 3. Preferably, the number of light-emitting diode chips 1031 in the second light-emitting diode 104 can be more than 4, and some of the chips can be covered with a conversion layer (not drawn), so that Make the second light emitting diode 104 generate more diverse and rich light.

請參閱圖中所示,當該觸控區域1021受到人體觸控後,第一發光二極體103內的觸控IC1033會感應到觸控區域1021之電容值變化,進而產生一觸控訊號至該微控制器105,微控制器105可根據各至少一第一發光二極體103所產生之該觸控訊號產生一驅動指令,並驅使至少一該第二發光二極體104輸出光線,同時,驅動指令可進而控制並驅使所相關聯的至少一第二發光二極體104輸出光線,且當第二發光二極體104的數量為多個時,該些第二發光二極體104分別與微控制器105呈並聯耦接,如此,微控制器105可單獨對部分第二發光二極體104性行相關聯控制。 Please refer to the figure, when the touch area 1021 is touched by the human body, the touch IC 1033 in the first light-emitting diode 103 will sense the capacitance value change of the touch area 1021, and then generate a touch signal to The microcontroller 105, the microcontroller 105 can generate a driving command according to the touch signal generated by each of the at least one first light emitting diode 103, and drive at least one of the second light emitting diodes 104 to output light, and at the same time , the driving command can further control and drive the associated at least one second light emitting diode 104 to output light, and when the number of second light emitting diodes 104 is multiple, these second light emitting diodes 104 are respectively It is coupled in parallel with the microcontroller 105 , so that the microcontroller 105 can individually control part of the second light-emitting diodes 104 in relation to each other.

請繼續參閱圖2,圖中所示,第一發光二極體103與殼體102之間可具有一間隙G其距離小於2mm,換言之,第一發光二極體103與殼體102可以無須直接接觸,如此,當殼體102的觸控區域1021為非平面式或為立體時,第一發光二極體103內的觸控IC1033仍可有效的感應到殼體102的觸控區域1021的電容值變化,較佳地,該間隙G介於0.1至1mm之間可產生最佳的感應效果。 Please continue to refer to FIG. 2, as shown in the figure, there may be a gap G between the first light-emitting diode 103 and the housing 102, the distance of which is less than 2mm. In other words, the first light-emitting diode 103 and the housing 102 may not be directly In this way, when the touch area 1021 of the housing 102 is non-planar or three-dimensional, the touch IC 1033 in the first light-emitting diode 103 can still effectively sense the capacitance of the touch area 1021 of the housing 102 The value varies, preferably, the gap G is between 0.1 mm and 1 mm to produce the best sensing effect.

此外,請繼續參閱圖4所示,殼體102可更包括多個分隔柱1023,該分隔柱1023是成型於殼體102的內部,換言之,即成型在殼體102的內表面,其用於劃分該等第一發光二極體103或該等第二發光二極體104,具體而言,其可使各發光二極體之間的 光線不受干擾,進而提升觸控區域1021或顯示區域1022的呈現效果。 In addition, please continue to refer to FIG. 4, the housing 102 may further include a plurality of separation columns 1023, which are formed inside the housing 102, in other words, formed on the inner surface of the housing 102, which are used for divide the first light emitting diodes 103 or the second light emitting diodes 104, specifically, it can make the light emitting diodes between The light is not disturbed, thereby improving the display effect of the touch area 1021 or the display area 1022 .

請參閱請圖5A及圖5B所示,同時請參閱圖1至圖4,隱藏式發光裝置10更包括有一供電部107,該第一發光二極體103與該第二發光二極體104電性連接於該供電部107,以接收該供電部107所提供的外部電力,又,觸控區域1021為多個子觸控區域1021’所組成,且顯示區域1022為多個子顯示區域1022’所組成,各子觸控區域1021’分別對應相關聯該第一發光二極體103,而各子顯示區域1022’分別對應相關聯該等第二發光二極體104,該等第一發光二極體103透過微控制器105耦接該等第二發光二極體104,換言之,各子觸控區域1021’分別對應各子顯示區域1022’,當其中一子觸控區域1021’受到人體觸碰後,相關聯的第一發光二極體103進而產生一觸控訊號至該微控制器105,該微控制器105根據該第一發光二極體103的觸控訊號產生一驅動指令,驅使相對應的至少一第二發光二極體104輸出光線,換言之,即驅使相對應的子顯示區域1022’顯示至少一與第二發光二極體104作動後的狀態,如此,當使用者碰觸隱藏式發光裝置10的各子觸控區域1021’後,即能使各子顯示區域1022’呈現不同形態的發光效果,進而顯示動態發光的視覺效果。 Please refer to Fig. 5A and Fig. 5B, please refer to Fig. 1 to Fig. 4 at the same time, the hidden light emitting device 10 further includes a power supply part 107, the first light emitting diode 103 and the second light emitting diode 104 are electrically connected is connected to the power supply part 107 to receive the external power provided by the power supply part 107, and the touch area 1021 is composed of a plurality of sub-touch areas 1021', and the display area 1022 is composed of a plurality of sub-display areas 1022' Each sub-touch area 1021' is respectively associated with the first light-emitting diode 103, and each sub-display area 1022' is respectively associated with the second light-emitting diodes 104, and the first light-emitting diodes 103 is coupled to the second light-emitting diodes 104 through the microcontroller 105. In other words, each sub-touch area 1021' corresponds to each sub-display area 1022'. When one of the sub-touch areas 1021' is touched by the human body , the associated first light-emitting diode 103 further generates a touch signal to the microcontroller 105, and the microcontroller 105 generates a driving command according to the touch signal of the first light-emitting diode 103 to drive the corresponding At least one second light-emitting diode 104 outputs light, in other words, it drives the corresponding sub-display area 1022' to display at least one state after the action of the second light-emitting diode 104, so that when the user touches the hidden After each sub-touch area 1021' of the light-emitting device 10, each sub-display area 1022' can present different forms of luminous effects, and further display a visual effect of dynamic luminescence.

綜上所述,本發明提供一種隱藏式發光裝置,其透過一薄膜以真空貼合或水披覆轉印方式貼合形成於該殼體上,讓隱藏式發光裝置不產生光線時,使用者不會以肉眼觀直接看到殼體的顯示區域及觸控區域之痕跡,又,第一發光二極體及第二發光二極體分別與一微控制器耦接,且第一發光二極體內置觸控IC,當殼體表面受到人體觸控後,該微控制器將產生一驅動指令驅使該等發光二極體輸出光線,進而讓使用者觸碰到裝置時可產生不同形 態的發光方式與視覺效果。 To sum up, the present invention provides a hidden light-emitting device, which is bonded and formed on the casing through a film by vacuum lamination or water coating transfer printing, so that when the hidden light-emitting device does not generate light, the user The traces of the display area and the touch area of the casing will not be seen directly with the naked eye, and the first light emitting diode and the second light emitting diode are respectively coupled to a microcontroller, and the first light emitting diode The body has a built-in touch IC. When the surface of the shell is touched by the human body, the microcontroller will generate a driving command to drive the light-emitting diodes to output light, so that different shapes can be generated when the user touches the device. State-of-the-art lighting and visual effects.

惟以上所述者,僅為本發明之較佳實施例而已,當不能以此限定本發明實施之範圍,即凡依本發明申請專利範圍及發明說明內容所作簡單的等效變化與修飾,皆仍屬本發明專利涵蓋之範圍內。 But the above is only a preferred embodiment of the present invention, and should not limit the scope of the present invention, that is, all simple equivalent changes and modifications made according to the patent scope of the present invention and the description of the invention are all Still belong to the scope covered by the patent of the present invention.

10:隱藏式發光裝置 10: Hidden lighting device

101:基板 101: Substrate

1011:第一佈設區域 1011: The first deployment area

1012:第二佈設區域 1012: The second deployment area

102:殼體 102: shell

1021:觸控區域 1021: touch area

1022:顯示區域 1022: display area

103:第一發光二極體 103: The first light-emitting diode

104:第二發光二極體 104: the second light-emitting diode

105:微控制器 105: Microcontroller

Claims (15)

一種隱藏式發光裝置,其包括:一基板,具有一第一佈設區域及一第二佈設區域,該第一佈設區域電性佈設有至少一第一發光二極體,該第二佈設區域則至少電性佈有至少一第二發光二極體,至少一該第一發光二極體與至少一該第二發光二極體分別與一微控制器相互電性導通;以及一殼體,供以包覆該基板,該殼體分別相對於該第一佈設區域形成有一觸控區域,相對於第二佈設區域形成有一顯示區域;其中,當該觸控區域受到人體觸控後,該觸控區域所產生的一電容變化值將傳輸至該微控制器,該微控制器根據該電容變化值驅使至少一該第二發光二極體輸出光線。 A hidden light-emitting device, which includes: a substrate with a first layout area and a second layout area, the first layout area is electrically wired with at least one first light-emitting diode, and the second layout area is at least At least one second light-emitting diode is electrically arranged, at least one of the first light-emitting diode and at least one of the second light-emitting diode are electrically connected to a microcontroller; and a housing is provided for Covering the substrate, the casing forms a touch area relative to the first layout area and a display area relative to the second layout area; wherein, when the touch area is touched by the human body, the touch area A generated capacitance change value is transmitted to the microcontroller, and the microcontroller drives at least one second light-emitting diode to output light according to the capacitance change value. 如請求項1所述之隱藏式發光裝置,其中,該第一發光二極體更包括有複數個發光二極體晶片、一第一驅動IC及一觸控IC且彼此電性連接,該第二發光二極體更包括有複數個發光二極體晶片及一第二驅動IC且彼此電性連接。 The concealed light-emitting device as described in Claim 1, wherein the first light-emitting diode further includes a plurality of light-emitting diode chips, a first driver IC and a touch IC and are electrically connected to each other, the first light-emitting diode The two light emitting diodes further include a plurality of light emitting diode chips and a second driving IC and are electrically connected to each other. 如請求項2所述之隱藏式發光裝置,其中,該觸控IC感應到該觸控區域之電容變化後進而產生一觸控訊號至該微控制器,該微控制器根據該觸控訊號產生一驅動指令驅使至少一該第二發光二極體輸出光線。 The hidden light-emitting device as described in claim 2, wherein the touch IC senses the capacitance change of the touch area and then generates a touch signal to the microcontroller, and the microcontroller generates a touch signal according to the touch signal A driving command drives at least one of the second light-emitting diodes to output light. 如請求項3所述之隱藏式發光裝置,其中,該微控制器可根據各該至少一第一發光二極體所產生之該觸控訊號,進而控制並驅使所相關聯的至少一該第二發光二極體輸出光線。 The concealed light-emitting device as described in claim 3, wherein the microcontroller can control and drive the associated at least one first light-emitting diode according to the touch signal generated by each of the at least one first light-emitting diodes. The two light emitting diodes output light. 如請求項1所述之隱藏式發光裝置,其中,該殼體表面貼合有一薄膜。 The concealed light-emitting device as claimed in claim 1, wherein a thin film is pasted on the surface of the shell. 如請求項5所述之隱藏式發光裝置,其中,該薄膜由一第一薄膜與一第二薄膜組成,該觸控區域與該顯示區域為該薄膜貼合於殼體表面後所形成。 The hidden light-emitting device according to claim 5, wherein the thin film is composed of a first thin film and a second thin film, and the touch area and the display area are formed by pasting the thin film on the surface of the casing. 如請求項5或6所述之隱藏式發光裝置,其中,該薄膜係以真空貼合或水披覆轉印方式形成於該殼體上。 The concealed light-emitting device according to claim 5 or 6, wherein the film is formed on the casing by vacuum lamination or water coating transfer. 如請求項2所述之隱藏式發光裝置,其中,當該第二發光二極體的數量為多個時,該些第二發光二極體分別與該微控制器呈並聯耦接。 The concealed light-emitting device according to claim 2, wherein when the number of the second light-emitting diodes is multiple, the second light-emitting diodes are respectively coupled to the microcontroller in parallel. 如請求項1所述之隱藏式發光裝置,其中,該隱藏式發光裝置更包括有一供電部,至少一該第一發光二極體與至少一該第二發光二極體電性連接於該供電部,以接收該供電部所提供的外部電力。 The hidden light-emitting device as described in claim 1, wherein the hidden light-emitting device further includes a power supply part, at least one of the first light-emitting diodes and at least one of the second light-emitting diodes are electrically connected to the power supply part to receive the external power provided by the power supply part. 如請求項1所述之隱藏式發光裝置,其中,該殼體內部設置有至少一分隔柱。 The concealed lighting device as claimed in claim 1, wherein at least one separation column is disposed inside the housing. 如請求項1所述之隱藏式發光裝置,其中,該至少一第一發光二極體與該殼體內表面具有一間隙。 The concealed light emitting device as claimed in claim 1, wherein there is a gap between the at least one first light emitting diode and the inner surface of the casing. 如請求項11所述之隱藏式發光裝置,其中,該間隙距離小於2mm。 The concealed light emitting device as claimed in claim 11, wherein the gap distance is less than 2mm. 如請求項2所述之隱藏式發光裝置,其中,當該第一發光二極體的數量為多個時,該些第一發光二極體之間具有一大於2mm的間隔距離。 The concealed light-emitting device according to claim 2, wherein when the number of the first light-emitting diodes is multiple, there is a distance between the first light-emitting diodes greater than 2mm. 如請求項1所述之隱藏式發光裝置,其中,該顯示區域為多個子顯示區域所組成,該觸控區域為多個子觸控區域所組成。 The hidden light-emitting device according to claim 1, wherein the display area is composed of a plurality of sub-display areas, and the touch area is composed of a plurality of sub-touch areas. 如請求項14所述之隱藏式發光裝置,其中,各該子顯示區域分別對應相關聯該些第二發光二極體,該些子顯示區域可顯示至少一與該第二發光二極體作動後的狀態。 The concealed light-emitting device as described in claim 14, wherein each of the sub-display areas is correspondingly associated with the second light-emitting diodes, and the sub-display areas can display at least one light-emitting diode that operates with the second light-emitting diodes. after state.
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