TWM521468U - Wearable lighting device - Google Patents
Wearable lighting device Download PDFInfo
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- TWM521468U TWM521468U TW104217756U TW104217756U TWM521468U TW M521468 U TWM521468 U TW M521468U TW 104217756 U TW104217756 U TW 104217756U TW 104217756 U TW104217756 U TW 104217756U TW M521468 U TWM521468 U TW M521468U
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Description
本新型係關於一種發光裝置;更特別地,係關於一種輕薄、可攜及可撓折之穿戴式發光裝置,可以任意幾何形狀貼附於人體器官部位以進行美容或光療。 The present invention relates to a light-emitting device; more particularly, to a light-weight, portable and flexible wearable light-emitting device that can be attached to a human body part in any geometric shape for cosmetic or phototherapy.
穿戴式裝置現已逐漸成為未來應用趨勢。穿戴式裝置種類繁多,大致可分為眼鏡式、手錶式、穿著式、配戴式及貼覆式等,端視應用而定。現今將上述穿戴式裝置應用於發光照明已逐漸廣泛。使用發光二極體為穿戴式裝置之光源已逐漸提高,市場接受度高係基於發光二極體具有輕薄、自主發光、消耗功率低、不需背光源、無視角限制及高反應速率等優良特性。 Wearable devices are now becoming a trend in the future. There are many types of wearable devices, which can be roughly classified into glasses type, watch type, wear type, wear type and sticker type, depending on the application. The use of the above wearable devices for illuminating illumination has become widespread today. The light source using the light-emitting diode as a wearable device has been gradually improved, and the market acceptance is high. The light-emitting diode has excellent characteristics such as light and thin, self-luminous, low power consumption, no backlight, no viewing angle limitation, and high reaction rate. .
另外,習知針灸療法進入人體仍具有高危險性以及諸多副作用。因此,以光線照射人體皮膚穴位取代扎針之光療法乃應運而生。故現今出現一新穎之應用領域,係透過上述穿戴式裝置發光照射人體器官穴道或皮膚以進行光療或美容。 In addition, the conventional acupuncture therapy still has high risk and many side effects. Therefore, light therapy that uses light to illuminate the acupuncture points of human skin instead of needles has emerged. Therefore, there is a novel application field in the past, in which the body-mounted acupuncture points or skin are illuminated by the above-mentioned wearable device for phototherapy or beauty treatment.
穿戴式發光裝置係因與身體直接接觸,對於水氣及濕氣(例如汗水、洗手、外界雨水等)之防護更顯重要。習知大部份穿戴式發光裝置皆外露有電極接點、外接電源及控制開關,致使其電路無法密 封,因而使用者須小心使用,避免裝置中之元件接觸到水氣,此導致電路配置及使用上之困擾。再者,習知穿戴式發光裝置對其發光波段之切換仍不易,造成其應用更受到限制。 Wearable illuminators are more important for the protection of moisture and moisture (such as sweat, hand washing, external rain, etc.) due to direct contact with the body. Most of the wearable illuminators are exposed with electrode contacts, external power supplies and control switches, making their circuits insensitive. The seal should be used carefully so that the components in the device are exposed to moisture, which causes troubles in the configuration and use of the circuit. Moreover, the conventional wearable illuminating device is still difficult to switch its illuminating band, which makes its application more limited.
緣此,防水氧、防濕氣、輕薄、便攜、可撓折成各式型態,且可搭配特定塗料而能隨處對人體器官皮膚進行光療或美容之穿戴式發光裝置仍深具發展潛力。 Therefore, the wear-resistant illuminating device which is waterproof, oxygen-proof, moisture-proof, light and portable, can be flexibly folded into various types, and can be combined with a specific paint and can be used for phototherapy or beauty of human body skin is still in great potential.
據上,本新型提供一穿戴式發光裝置,其係緊湊地將開關本體、無線充電系統、薄型供電單元以及發光單元高度整合於一整體封閉結構內而無任何電性接點外露。藉此,令其達到防水氧及防濕氣效果,以便提高元件耐用度及延長使用壽命。再者,基於穿戴式發光裝置輕薄、可攜及可撓折特性便於發展出各式應用型態。又藉由不同波段色光及塗料的搭配,獲致不同的美容或光療效果。 Accordingly, the present invention provides a wearable lighting device that compactly integrates the switch body, the wireless charging system, the thin power supply unit, and the lighting unit into a unitary enclosed structure without any electrical contacts being exposed. In this way, it achieves waterproof oxygen and moisture resistance to improve component durability and extend service life. Furthermore, the wearable illuminating device is easy to develop various application types based on its thinness, portability and flexibility. It also achieves different cosmetic or phototherapy effects through the combination of different wavelengths of light and paint.
為達上述目的,於一實施例中,所提供一穿戴式發光裝置,包含一可撓基板、一發光單元、一供電單元、一雙面印刷電路板以及一開關本體。發光單元設置於可撓基板上。供電單元設置於發光單元上,其電性連接發光單元。雙面印刷電路板設置於供電單元上,其上設置有一無線充電系統及一開關控制電路。無線充電系統及開關控制電路個別電性連接供電單元。開關本體設置於雙面印刷電路板上,其電性連接開關控制電路。其中透過無線充電系統對供電單元無 線充電;供電單元提供所需電力至發光單元及開關控制電路;及開關本體透過開關控制電路控制發光單元之發光強度及發光波段。 To achieve the above objective, in one embodiment, a wearable light-emitting device is provided, comprising a flexible substrate, a light-emitting unit, a power supply unit, a double-sided printed circuit board, and a switch body. The light emitting unit is disposed on the flexible substrate. The power supply unit is disposed on the light emitting unit, and is electrically connected to the light emitting unit. The double-sided printed circuit board is disposed on the power supply unit, and is provided with a wireless charging system and a switch control circuit. The wireless charging system and the switch control circuit are electrically connected to the power supply unit individually. The switch body is disposed on the double-sided printed circuit board, and is electrically connected to the switch control circuit. Where the power supply unit is not available through the wireless charging system Line charging; the power supply unit supplies the required power to the light emitting unit and the switch control circuit; and the switch body controls the light emitting intensity and the light emitting band of the light emitting unit through the switch control circuit.
前述之穿戴式發光裝置中,發光單元可為一有機發光二極體或一無機發光二極體。供電單元可為一薄膜型充電電池。 In the above-mentioned wearable light-emitting device, the light-emitting unit may be an organic light-emitting diode or an inorganic light-emitting diode. The power supply unit can be a film type rechargeable battery.
前述之穿戴式發光裝置中,無線充電系統可包含一無線充電接收部以及一充電電路。充電電路電性連接無線充電接收部及供電單元。無線充電接收部可包含一感應線圈。感應線圈受一外部充電裝置之一主線圈電磁感應後產生電感,並轉化電能而透過充電電路對供電單元無線充電。 In the aforementioned wearable lighting device, the wireless charging system may include a wireless charging receiving portion and a charging circuit. The charging circuit is electrically connected to the wireless charging receiving unit and the power supply unit. The wireless charging receiving portion may include an induction coil. The induction coil is electromagnetically induced by the main coil of one of the external charging devices to generate an inductance, and converts the electric energy to wirelessly charge the power supply unit through the charging circuit.
前述之穿戴式發光裝置中,開關本體可包含一隔磁片、一控制電路層、一墊膠層以及一面板層。隔磁片設置於雙面印刷電路板上。控制電路層設置於隔磁片上,其電性連接雙面印刷電路版上之開關控制電路。墊膠層設置於控制電路層上。面板層設置於墊膠層上。面板層包含若干按鍵,此等按鍵於按壓後可電性連接控制電路層及開關控制電路,藉以切換發光單元之發光強度或發光波段。 In the above-mentioned wearable light-emitting device, the switch body may include a magnetic shield, a control circuit layer, a pad layer and a panel layer. The magnetic spacer is disposed on the double-sided printed circuit board. The control circuit layer is disposed on the magnetic isolation sheet, and is electrically connected to the switch control circuit on the double-sided printed circuit board. The pad layer is disposed on the control circuit layer. The panel layer is disposed on the pad layer. The panel layer includes a plurality of buttons, and the buttons are electrically connected to the control circuit layer and the switch control circuit to switch the illumination intensity or the illumination band of the illumination unit.
前述之穿戴式發光裝置中,於開關控制電路可設置一感應接收單元,其可為聲音感應器、壓力感應器、光感應器或重力感應器(G-sensor)。 In the above-mentioned wearable lighting device, the switch control circuit may be provided with an inductive receiving unit, which may be a sound sensor, a pressure sensor, a light sensor or a gravity sensor (G-sensor).
前述之穿戴式發光裝置中,更可包含一密封件,其係用以包覆穿戴式發光裝置。密封件係以防水氧材料製成。密封件可呈透明,或於密封件可開設一透光區域供發光單元透光。密封件更可添加吸濕材料以增加防水氧效果。 The wearable illuminating device may further include a sealing member for covering the wearable illuminating device. The seal is made of a waterproof oxygen material. The sealing member may be transparent, or a transparent area may be formed in the sealing member for the light emitting unit to transmit light. The seal can be further added with a hygroscopic material to increase the waterproof oxygen effect.
前述之穿戴式發光裝置中,發光單元之發光波段可為280~450nm之紫外光波段、400~700nm之可見光波段、610~650nm之紅光波段、650~1000nm之紅外光波段、大於1350nm之遠紅外光波段、425~475nm之藍光波段或580~600nm之黃光波段。 In the above-mentioned wearable light-emitting device, the light-emitting band of the light-emitting unit can be an ultraviolet light band of 280-450 nm, a visible light band of 400-700 nm, a red light band of 610-650 nm, an infrared light band of 650-1000 nm, and a distance of more than 1350 nm. Infrared light band, blue light band of 425~475nm or yellow light band of 580~600nm.
其述穿戴式發光裝置可撓折成環狀套設於一人體器官部位。前述之穿戴式發光裝置可片狀延展製成一衣物內襯、一帽子內襯、一枕頭套、一鞋墊、一襪子、一眼罩內襯或一面膜。 The wearable illuminating device can be flexed and folded into a ring on a human body part. The wearable illuminating device can be stretched into a garment lining, a hat lining, a pillow cover, an insole, a sock, an eye lining or a side film.
前述穿戴式發光裝置可發射各式不同色光至相對應之塗料以進行催化反應。穿戴式發光裝置若發射紅光/紅外光波段,塗料為一膠原蛋白、一三磷酸腺苷酶、一肝燐酯、一黏多醣類或一玻尿酸。穿戴式發光裝置若發射黃光波段,塗料為一對苯二酚或一左旋C。該穿戴式發光裝置若發射紫外光B光波段(280~320nm),塗料為一煤焦油。穿戴式發光裝置若發射紫外光A光波段(320~400nm),塗料為一補骨脂內酯(psoralen)。 The aforementioned wearable illuminating device can emit various kinds of different colored lights to corresponding coating materials for catalytic reaction. If the wearable light-emitting device emits a red/infrared light band, the paint is a collagen, adenosine triphosphatase, a hepatic ester, a mucopolysaccharide or a hyaluronic acid. If the wearable illuminator emits a yellow band, the coating is a pair of hydroquinone or a left-handed C. If the wearable light-emitting device emits ultraviolet light B light band (280-320 nm), the paint is a coal tar. If the wearable illuminating device emits ultraviolet light A (320~400 nm), the coating is a psoralen.
於一例中,更可包覆一纖維於穿戴式發光裝置;纖維上並塗佈有一塗料。穿戴式發光裝置可發射紫外光波段或可見光波段,並照射塗料,此時塗料為一奈米光觸媒。 In one example, a fiber may be coated on the wearable light-emitting device; the fiber is coated with a coating. The wearable illuminating device can emit ultraviolet light or visible light and illuminate the paint, and the paint is a nano photocatalyst.
100、200‧‧‧穿戴式發光裝置 100,200‧‧‧Wearing illuminators
110‧‧‧可撓基板 110‧‧‧Flexible substrate
120‧‧‧發光單元 120‧‧‧Lighting unit
130‧‧‧供電單元 130‧‧‧Power supply unit
140‧‧‧雙面印刷電路板 140‧‧‧Double-sided printed circuit board
141‧‧‧無線充電系統 141‧‧‧Wireless charging system
141a‧‧‧無線充電接收部 141a‧‧‧Wireless Charging Receiver
141b‧‧‧充電電路 141b‧‧‧Charging circuit
141c‧‧‧無線充電接收晶片 141c‧‧‧Wireless charging receiver chip
141d‧‧‧充電晶片 141d‧‧‧Charging chip
150‧‧‧開關本體 150‧‧‧Switch body
151‧‧‧隔磁片 151‧‧‧magnetic separator
153‧‧‧墊膠層 153‧‧‧The rubber layer
154‧‧‧面板層 154‧‧‧ panel layer
154a‧‧‧按鍵 154a‧‧‧ button
160‧‧‧密封件 160‧‧‧Seal
160a‧‧‧透光區域 160a‧‧‧Lighting area
第1圖係繪示依據本新型一實施例之穿戴式發光裝置分解示意圖;第2圖係繪示第1圖中之開關本體分解示意圖; 第3圖係繪示第1圖中之穿戴式裝置另一實施例示意圖;第4圖係繪示第1圖中之無線充電系統另一實施例示意圖;第5A圖係繪示依據本新型另一實施例之穿戴式發光裝置示意圖;第5B圖係繪示依據第5A圖之穿戴式發光裝置另一實施例示意圖;第6圖係繪示本新型一實施例之穿戴式發光裝置呈撓折狀態示意圖;第7圖係繪示本新型之穿戴式發光裝置一應用例示意圖;第8圖係繪示本新型之穿戴式發光裝置另一應用例示意圖;第9圖係繪示本新型之穿戴式發光裝置又一應用例示意圖;以及第10圖係繪示本新型之穿戴式發光裝置再一應用例示意圖。 1 is a schematic exploded view of a wearable light-emitting device according to an embodiment of the present invention; and FIG. 2 is a schematic exploded view of the switch body in FIG. 1; 3 is a schematic view showing another embodiment of the wearable device in FIG. 1; FIG. 4 is a schematic view showing another embodiment of the wireless charging system in FIG. 1; FIG. 5A is a view showing another embodiment according to the present invention; FIG. 5B is a schematic view showing another embodiment of the wearable light-emitting device according to FIG. 5A; FIG. 6 is a perspective view showing the wearable light-emitting device of the present invention. FIG. 7 is a schematic view showing an application example of the wearable light-emitting device of the present invention; FIG. 8 is a schematic view showing another application example of the wearable light-emitting device of the present invention; FIG. 9 is a view showing the wear of the present invention; A schematic diagram of still another application example of the light-emitting device; and FIG. 10 is a schematic view showing still another application example of the wearable light-emitting device of the present invention.
以下將參照圖式說明本新型之複數個實施例。為明確說明起見,許多實務上的細節將在以下敘述中一併說明。然而,應瞭解到,這些實務上的細節不應用以限制本新型。也就是說,在本新型部分實施例中,這些實務上的細節是非必要的。此外,為簡化圖式起見,一些習知慣用的結構與元件在圖式中將以簡單示意的方式繪示之;並且重複之元件將可能使用相同的編號表示之。 Hereinafter, a plurality of embodiments of the present invention will be described with reference to the drawings. For the sake of clarity, many practical details will be explained in the following description. However, it should be understood that these practical details are not intended to limit the novel. That is to say, in some embodiments of the present invention, these practical details are not necessary. In addition, some of the conventional structures and elements are illustrated in the drawings in a simplified schematic manner, and the repeated elements may be represented by the same reference numerals.
請同時參照第1圖及第2圖。第1圖係繪示依據本新型一實施例之穿戴式發光裝置100分解示意圖;第2圖係繪示第1圖中之開關本體150分解示意圖。 Please refer to both Figure 1 and Figure 2. 1 is an exploded perspective view of a wearable light-emitting device 100 according to an embodiment of the present invention; and FIG. 2 is a schematic exploded view of the switch body 150 in FIG.
穿戴式發光裝置100包含一可撓基板110、一發光單元120、一供電單元130、一雙面印刷電路板140以及一開關本體150。 The wearable light-emitting device 100 includes a flexible substrate 110, a light-emitting unit 120, a power supply unit 130, a double-sided printed circuit board 140, and a switch body 150.
發光單元120設置於可撓基板110上。發光單元120可使用無機發光二極體或有機發光二極體。 The light emitting unit 120 is disposed on the flexible substrate 110. The light emitting unit 120 may use an inorganic light emitting diode or an organic light emitting diode.
供電單元130設置於發光單元120上,其電性連接發光單元120,並提供所需電力至發光單元120。 The power supply unit 130 is disposed on the light emitting unit 120, and is electrically connected to the light emitting unit 120 and provides required power to the light emitting unit 120.
雙面印刷電路板140設置於發光單元120上,其上並設置有一無線充電系統141及一開關控制電路142。開關控制電路142電性連接供電單元130以便獲取所需電力。無線充電系統141亦電性連接供電單元130以便對供電單元130進行無線充電。於一例中,供電單元130係為一薄膜型充電電池。 The double-sided printed circuit board 140 is disposed on the light emitting unit 120, and is provided with a wireless charging system 141 and a switch control circuit 142. The switch control circuit 142 is electrically connected to the power supply unit 130 to obtain the required power. The wireless charging system 141 is also electrically connected to the power supply unit 130 to wirelessly charge the power supply unit 130. In one example, the power supply unit 130 is a thin film type rechargeable battery.
開關本體150設置於雙面印刷電路板140上,其電性連接開關控制電路142。開關本體150可透過開關控制電路142控制發光單元120之發光強度或發光波段等發光特性。 The switch body 150 is disposed on the double-sided printed circuit board 140 and electrically connected to the switch control circuit 142. The switch body 150 can control the light-emitting characteristics such as the light-emitting intensity or the light-emitting band of the light-emitting unit 120 through the switch control circuit 142.
上述開關本體150之細部結構分解請見第2圖。開關本體150包含一隔磁片151、一控制電路層152、一墊膠層153以及一面板層154。 See Figure 2 for the detailed breakdown of the switch body 150. The switch body 150 includes a magnetic isolation sheet 151, a control circuit layer 152, a pad layer 153, and a panel layer 154.
隔磁片151係設置於雙面印刷電路板140上、其可為PET材質搭配高導磁性材料,其作用分隔控制電路層152及雙面印刷電路板140。一般而言,前述之無線充電系統141亦常設置有類似隔磁片151之結構,其作用為防止電磁干擾。於本新型中,係使用同一隔磁片151同時作為分隔開關本體150之控制電路層152及雙面印刷電路板140及 無線充電系統141之隔磁元件,藉此令本新型之穿戴式發光裝置100於結構上可更為高度整合,並可精簡元件使用。 The magnetic spacer 151 is disposed on the double-sided printed circuit board 140, and may be made of a PET material and a high magnetic conductive material, and functions to separate the control circuit layer 152 and the double-sided printed circuit board 140. In general, the aforementioned wireless charging system 141 is also often provided with a structure similar to the magnetic isolation sheet 151, which functions to prevent electromagnetic interference. In the present invention, the same magnetic isolation sheet 151 is used as the control circuit layer 152 and the double-sided printed circuit board 140 of the separation switch body 150 and The magnetic isolation component of the wireless charging system 141 thereby allows the wearable lighting device 100 of the present invention to be more highly integrated in structure and to streamline component use.
控制電路層152設置於隔磁片151上。透過按壓動作使控制電路層152電性連接雙面印刷電路版140上之開關控制電路140而啟動或控制發光單元120。 The control circuit layer 152 is disposed on the magnetic isolation sheet 151. The light-emitting unit 120 is activated or controlled by electrically connecting the control circuit layer 152 to the switch control circuit 140 on the double-sided printed circuit board 140 by a pressing action.
墊膠層153設置於控制電路層152上。 The pad layer 153 is disposed on the control circuit layer 152.
面板層142設置於墊膠層153上。面板層154設有多個按鍵154a。透過按壓此等按鍵154a可電性連接控制電路層152及開關控制電路142,藉以控制發光單元120之發光強度或發光波段。更明確言之,多個按鍵154a各自對應不同功能,而於各按鍵154a下設置有金屬接點(未繪),透過金屬接點與控制電路層152電性連接,控制電路層152再與開關控制電路142電性連接。當對應功能之按鍵154a被按下,則透過控制電路層152與開關控制電路142的協同作用,進而能控制發光單元120發出不同光強度或發光波段。 The panel layer 142 is disposed on the pad layer 153. The panel layer 154 is provided with a plurality of buttons 154a. The control circuit layer 152 and the switch control circuit 142 can be electrically connected by pressing the buttons 154a to control the light-emitting intensity or the light-emitting band of the light-emitting unit 120. More specifically, the plurality of buttons 154a respectively correspond to different functions, and metal contacts (not shown) are disposed under the buttons 154a, and are electrically connected to the control circuit layer 152 through the metal contacts, and the control circuit layer 152 is further connected to the switch. The control circuit 142 is electrically connected. When the corresponding function button 154a is pressed, the control unit layer 152 and the switch control circuit 142 cooperate to control the light-emitting unit 120 to emit different light intensities or light-emitting bands.
無線充電系統141之一例請參照第1圖。無線充電系統141基本包含一無線充電接收部141a及一充電電路141b。充電電路141b係電性連接無線充電接收部141a及供電單元130。基本無線充電運作原理,無線充電接收部141a設有一感應線圈。於一例中,感應線圈可為印刷式感應線圈以達體積薄型化需求。於充電時,受一外部充電裝置之一主線圈電磁感應後產生電感,並轉化電能而透過充電電路141b對供電單元130進行無線充電。 For an example of the wireless charging system 141, please refer to FIG. The wireless charging system 141 basically includes a wireless charging receiving unit 141a and a charging circuit 141b. The charging circuit 141b is electrically connected to the wireless charging receiving unit 141a and the power supply unit 130. The basic wireless charging operation principle, the wireless charging receiving portion 141a is provided with an induction coil. In one example, the induction coil can be a printed induction coil for thinning requirements. During charging, an inductance is generated by electromagnetic induction of one of the main coils of an external charging device, and the electric energy is converted and the power supply unit 130 is wirelessly charged through the charging circuit 141b.
請參照第3圖,第3圖係繪示第1圖中之穿戴式發光裝置100另一實施例示意圖。前述之開關本體150係透過按壓方式控制發光單元120之開關及切換發光模式。於第3圖中,繪示了另一種控制發光單元120之可能例。於開關控制電路142上可設置一感應接收單元142a,其可為聲音感應器、壓力感應器、光感應器或重力感應器(G-sensor)。藉此,可透過各種非接觸式方式控制發光單元120之開關及切換發光模式。此時,開關本體150無需如前述實施例設置多層結構,僅以單層軟性膠膜為之即可,藉此並可令整體穿戴式發光裝置100更為輕薄,表面更為平整。藉此,本發明之穿戴式發光裝置100可透過設置類似薄膜開關或感應開關等各種形式,控制發光單元120之開關及切換發光模式,增加使用上之便利。 Please refer to FIG. 3 , which is a schematic diagram of another embodiment of the wearable light-emitting device 100 in FIG. 1 . The switch body 150 controls the switching of the light-emitting unit 120 and switches the light-emitting mode by pressing. In Fig. 3, another possible example of controlling the light emitting unit 120 is illustrated. An inductive receiving unit 142a may be disposed on the switch control circuit 142, which may be a sound sensor, a pressure sensor, a light sensor, or a gravity sensor (G-sensor). Thereby, the switch of the light-emitting unit 120 and the switching of the light-emitting mode can be controlled through various non-contact methods. At this time, the switch body 150 does not need to have a multi-layer structure as in the foregoing embodiment, and only a single layer of soft film can be used, thereby making the overall wearable light-emitting device 100 lighter and thinner, and the surface is more flat. Therefore, the wearable light-emitting device 100 of the present invention can control the switching of the light-emitting unit 120 and switch the light-emitting mode by providing various forms such as a membrane switch or an inductive switch, thereby increasing the convenience of use.
基於現行無線充電技術之發展,本新型之無線充電系統141得以有不同之實施方式以符合各式需求。請參照第4圖;第4圖係繪示第1圖中之無線充電系統141另一實施例示意圖。 Based on the development of current wireless charging technologies, the wireless charging system 141 of the present invention can be implemented in different ways to meet various needs. Please refer to FIG. 4; FIG. 4 is a schematic diagram showing another embodiment of the wireless charging system 141 in FIG. 1.
於第4圖中,將無線充電接收部141a以及充電電路141b替換成一無線充電接收晶片141c以及一充電晶片141d。無線充電接收晶片141c係可使用例如德儀公司之型號為bq51003之無線充電接收晶片;而充電晶片141d係可搭配使用例如德儀公司之型號為bq500210之充電晶片。藉由前述高度集成之二種晶片,得以精簡原無線充電接收部141a及充電電路141b之複雜電路製程,使本新型之穿戴式發光裝置100結構更為簡潔易用。 In FIG. 4, the wireless charging receiving portion 141a and the charging circuit 141b are replaced with a wireless charging receiving wafer 141c and a charging wafer 141d. The wireless charging receiving chip 141c can use, for example, a wireless charging receiving chip of the model number bq51003 of the German company; and the charging chip 141d can be used with a charging chip of the model bq500210 such as Texas Instruments. With the above two highly integrated chips, the complicated circuit process of the original wireless charging receiving portion 141a and the charging circuit 141b can be simplified, and the structure of the wearable light-emitting device 100 of the present invention is simpler and easier to use.
上述之穿戴式發光裝置100中,直接以可撓基板110為整體結構之基底,省略習知開關部分元件,並直接將無線充電系統141及習知開關所需之開關控制電路142整合於雙面印刷電路板140上。藉此,可高度整合開關本體150、供電單元130、無線充電系統141以及發光單元120而形成薄型之穿戴式發光裝置100。於此等穿戴式發光裝置100中,所有元件及電路系統皆完全密封整合於整體結構內,且供電單元130亦可無線充電而無外露之電源接頭。是故,具有良好之防水氧及防濕氣效果,使本新型之穿戴式發光裝置100更為耐用、壽命更長。 In the above-mentioned wearable light-emitting device 100, the substrate having the flexible substrate 110 as a whole structure is directly omitted, the conventional switch portion components are omitted, and the wireless charging system 141 and the switch control circuit 142 required for the conventional switch are directly integrated on both sides. On the printed circuit board 140. Thereby, the switch body 150, the power supply unit 130, the wireless charging system 141, and the light emitting unit 120 can be highly integrated to form a thin wearable light-emitting device 100. In the wearable lighting device 100, all components and circuit systems are completely sealed and integrated into the overall structure, and the power supply unit 130 can also be wirelessly charged without an exposed power connector. Therefore, the waterproof oxygen-proof and moisture-proof effect of the present invention makes the wearable light-emitting device 100 of the present invention more durable and longer in life.
為能更增加防水氧及濕氣效果,請一併參照第5A圖及第5B圖。第5A圖係繪示依據本新型另一實施例之穿戴式發光裝置200示意圖;第5B圖係繪示依據第5A圖之穿戴式發光裝置200另一實施例示意圖。 In order to increase the effect of waterproofing oxygen and moisture, please refer to Figure 5A and Figure 5B together. FIG. 5A is a schematic view showing a wearable light-emitting device 200 according to another embodiment of the present invention; FIG. 5B is a schematic view showing another embodiment of the wearable light-emitting device 200 according to FIG. 5A.
穿戴式發光裝置200中,係於上述穿戴式發光裝置100外包覆一密封件160。密封件160係以防水氧且呈透明之材料製成。藉此,除原高度緊密封裝之穿戴式發光裝置100外,透過密封件160達到更好的隔絕水氧效果。於一例中,可如第5B圖中所示,於密封件160加入吸濕材料並開設一透光區域160a供穿戴式發光裝置100之發光單元120透光。藉此吸濕材料進一步提昇防水氧能力而達到良好發光效果。 In the wearable light-emitting device 200, a seal 160 is coated on the wearable light-emitting device 100. The seal 160 is made of a material that is resistant to water and oxygen. Thereby, in addition to the wearable illuminating device 100 of the original highly tightly packed, the water-oxygen effect is better transmitted through the sealing member 160. In one example, as shown in FIG. 5B, a moisture absorbing material is added to the sealing member 160 and a light transmitting region 160a is opened for the light emitting unit 120 of the wearable light emitting device 100 to transmit light. Thereby, the moisture absorbing material further enhances the waterproof oxygen resistance to achieve a good luminescent effect.
上述以多個實施例揭示穿戴式發光裝置(100、200)之基本結構。基於現代製程技術的發展,穿戴式發光裝置(100、200)之所有元件皆可以薄型形成,進而令穿戴式發光裝置(100、200)可被撓折成任意形狀而具有多種不同應用型態。 The basic structure of the wearable lighting device (100, 200) is disclosed above in various embodiments. Based on the development of modern process technology, all components of the wearable light-emitting device (100, 200) can be formed thin, and thus the wearable light-emitting device (100, 200) can be flexed into any shape and have a variety of different application types.
舉例而言,請參照第6圖。第6圖係繪示本新型一實施例之穿戴式發光裝置100呈撓折狀態示意圖。第6圖中,穿戴式發光裝置100可被撓折而彎曲。藉此,可形成所需之形狀以因應穿戴時之各種狀況。 For example, please refer to Figure 6. FIG. 6 is a schematic view showing the state in which the wearable light-emitting device 100 of the present invention is in a flexed state. In Fig. 6, the wearable light-emitting device 100 can be flexed and bent. Thereby, the desired shape can be formed to cope with various conditions when worn.
接續將說明穿戴式發光裝置(100、200)之各種應用實施例。請一併參照第7圖至第10圖,其係繪示穿戴式發光裝置100之各種應用例示意圖。於第7圖中,將穿戴式發光裝置100製成面膜的形式,其上之發光單元120可發出不同波段之色光,以便照射人體面部皮膚以達到不同美白效果,透過按鍵154a則可控制發光單元120之光色及發光強度,以確保美容效果及安全性。由於穿戴式發光裝置100可撓折,因此可形成環狀而套設至人體各部位。舉例而言,於第8圖中,將環狀之穿戴式發光裝置100套設至大拇指指節上,令其可發光照射人體手部之穴道位置,以達到光療效果。於第9圖中,將片狀之穿戴式發光裝置100貼附於人體腳部之相對應穴道位置,以達到光療效果。再如第10圖中,穿戴式發光裝置100得以各種形式貼附於人體各部位。舉例而言,環狀之穿戴式發光裝置100亦可套設至手腕部位;亦或將片狀之穿戴式發光裝置100貼附於頭部或製成面罩貼附於臉部,以便令其發光照射所需部位,以達到治療或美白效果。於更多可能之實施例中,穿戴式發光裝置100亦可片狀延展製成一衣物內襯、一帽子內襯、一枕頭套、一鞋墊、一襪子或一眼罩內襯,並不以上述所揭示之各例為限。 Various application embodiments of the wearable lighting device (100, 200) will be described next. Referring to FIG. 7 to FIG. 10 together, a schematic diagram of various application examples of the wearable light-emitting device 100 is shown. In the seventh embodiment, the wearable light-emitting device 100 is in the form of a mask on which the light-emitting unit 120 can emit colored light of different wavelength bands to illuminate the skin of the human body to achieve different whitening effects, and the light-emitting unit can be controlled through the button 154a. 120 light color and luminous intensity to ensure beauty and safety. Since the wearable light-emitting device 100 can be flexed, it can be formed into a ring shape and sleeved to various parts of the human body. For example, in FIG. 8, the ring-shaped wearable light-emitting device 100 is sleeved on the thumb knuckles so that it can illuminate the acupuncture point of the human hand to achieve a phototherapy effect. In Fig. 9, the sheet-like wearable light-emitting device 100 is attached to the corresponding acupuncture point of the human foot to achieve a phototherapy effect. Further, as in Fig. 10, the wearable light-emitting device 100 is attached to various parts of the human body in various forms. For example, the ring-shaped wearable light-emitting device 100 can also be sleeved to the wrist; or the sheet-like wearable light-emitting device 100 can be attached to the head or made into a mask to make it shine. Irradiate the desired area to achieve a therapeutic or whitening effect. In a more possible embodiment, the wearable illuminating device 100 can also be stretched into a garment lining, a hat lining, a pillow cover, an insole, a sock or an eye lining. The examples disclosed are limited.
上述第7圖至第10圖係說明穿戴式發光裝置100於結構上可被任意撓折而可貼附於人體各部位。接續說明穿戴式發光裝置100於 不同光色上配合各式塗料之各實施例。此所述及之塗料,係為先塗佈於人體器官皮膚、穿戴式發光裝置100之發光面或包覆於穿戴式發光裝置100之材料上,再透過不同波段之光照射此等塗料,而加速塗料與人體皮膚之反應,達到各式美容光療效果。 7 to 10 above illustrate that the wearable light-emitting device 100 can be arbitrarily flexed and attached to various parts of the human body. Continuing with the description of the wearable lighting device 100 Various embodiments of various coatings were applied to different light colors. The coating material described above is applied to the skin of human organs, the light-emitting surface of the wearable light-emitting device 100 or the material coated on the wearable light-emitting device 100, and then irradiates the paint through light of different wavelength bands. Accelerate the reaction of paint with human skin to achieve a variety of beauty phototherapy effects.
舉例而言,穿戴式發光裝置100之發光單元120可發出紫外光波段(280~450nm)、可見光波段(400~700nm)、紅光波段(610~650nm)、紅外光波段(650~1000nm)、遠紅外光波段(大於1350nm)、藍光波段(425~475nm)或黃光波段(580~600nm),再配合對應之塗料,可達到不同美容光療效果。以下段落先述及不同波段範圍之色光與不同塗料之搭配組合,再述及其對應之美容光療效果。 For example, the light-emitting unit 120 of the wearable light-emitting device 100 can emit ultraviolet light (280-450 nm), visible light (400-700 nm), red light (610-650 nm), infrared light (650-1000 nm), Far infrared light band (greater than 1350nm), blue light band (425~475nm) or yellow light band (580~600nm), together with the corresponding coating, can achieve different beauty phototherapy effects. The following paragraphs first describe the combination of color light and different paints in different wavelength ranges, and then describe the corresponding beauty phototherapy effects.
不同波段範圍之色光與不同塗料之搭配組合:穿戴式發光裝置(100、200)若發射紅光/紅外光波段,塗料可為一膠原蛋白、一三磷酸腺苷酶、一肝燐酯、一黏多醣類或一玻尿酸。穿戴式發光裝置(100、200)若發射黃光波段,塗料可為一對苯二酚或一左旋C。穿戴式發光裝置(100、200)若發射紫外光B光波段(280~320nm),塗料可為一煤焦油。穿戴式發光裝置(100、200)若發射紫外光A光波段(320~400nm),塗料可為一補骨脂內酯(psoralen)。於一例中,包覆一纖維於穿戴式發光裝置100,並塗佈塗料於纖維上,塗料可為奈米光觸媒。 Combination of color light and different coatings in different wavelength ranges: If the wearable illuminating device (100, 200) emits red/infrared light, the coating can be a collagen, adenosine triphosphate, monoglycoside, a mucopolysaccharide Class or a hyaluronic acid. If the wearable light-emitting device (100, 200) emits a yellow light band, the paint may be a pair of hydroquinone or a left-handed C. If the wearable illuminating device (100, 200) emits ultraviolet light B (280-320 nm), the paint may be a coal tar. If the wearable illuminating device (100, 200) emits an ultraviolet light A-light band (320-400 nm), the coating may be a psoralen. In one example, a fiber is coated on the wearable light-emitting device 100 and coated with a coating on the fiber, and the coating can be a nanophotocatalyst.
舉例而言,本新型可對應之美容光療效果如後。 For example, the novel phototherapy effect corresponding to the present invention is as follows.
1.單獨照光效果: 1. Individual lighting effect:
(1)新生兒黃疸照藍光(425~475nm)可降低膽紅素。目前醫療多幫嬰兒戴眼罩(易不安)或裸身照射(易造成水份流失);少部份用 背照式光療床,穿戴式發光裝置(100、200)可製作成內部發光之衣物或罩袍。 (1) Neonatal jaundice can reduce bilirubin by blue light (425~475nm). At present, many children wear eye masks (easy to rest) or naked body exposure (easy to cause water loss); The back-illuminated phototherapy bed, the wearable illuminating device (100, 200) can be made into an internal illuminating garment or burqa.
(2)舒壓枕套:穿戴式發光裝置(100、200)可製作成枕套,並發出紅外光/遠紅外光,朝外發光照射於人的頭頸部。 (2) Relaxing pillowcase: The wearable light-emitting device (100, 200) can be made into a pillowcase and emits infrared light/far infrared light, and the external light is irradiated to the head and neck of the person.
(3)禿頭治療:穿戴式發光裝置(100、200)可製成帽子內襯形式,並置於帽子裡,發出紅光/或外光照射頭部,可延緩掉髮/長出新的細毛。 (3) Bald treatment: The wearable illuminating device (100, 200) can be made into a hat lining and placed in a hat, emitting red light or external light to illuminate the head, which can delay hair loss/long new hair.
(4)防白髮:穿戴式發光裝置(100、200)發出紅光或紅外光照射相對應人體穴道可防白髮或掉髮,具下列多種實施方式:(a)穿戴式發光裝置(100、200)可製成鞋墊或襪子,於湧泉穴(腳底)位置形成一區域發光(克服腳大小不一問題)。(b)穿戴式發光裝置(100、200)可製成小指套照射手小指上的腎穴、命門穴道。(c)穿戴式發光裝置(100、200)可照射百會穴(頭頂),與禿頭帽整合防白髮且防掉髮。 (4) Anti-white hair: The wearable illuminating device (100, 200) emits red light or infrared light to illuminate the corresponding human acupuncture points to prevent white hair or hair loss, and has the following various embodiments: (a) wearable illuminating device (100) , 200) can be made into insoles or socks, forming a regional illumination at the location of the Yongquan (foot) (overcoming the problem of different foot sizes). (b) The wearable illuminating device (100, 200) can be made into a small finger sleeve to illuminate the kidney hole and the life gate acupoint on the little finger of the hand. (c) The wearable illuminating device (100, 200) can illuminate the Baihui (top of the head), integrates with the bald cap to prevent white hair and prevent hair loss.
(5)針灸:各色光照射穴位,代替針灸的作用。 (5) Acupuncture: Each color of light acupunctures acupuncture points instead of acupuncture.
2.美容貼布(面膜、瘦臉帶等): 2. Beauty patch (mask, face-lift belt, etc.):
(1)穿戴式發光裝置(100、200)可製成紅光面膜,於發光面塗上保濕、膠原蛋白或三磷酸腺苷酶(ATP)等保養品,再貼於臉部可緊實、淡化細紋。紅光可深入真皮層活化細胞,再搭配清爽型保濕化妝水,可治療粉刺型青春痘。 (1) The wearable illuminating device (100, 200) can be made into a red mask, and the illuminating surface is coated with moisturizing, collagen or adenosine triphosphatase (ATP) and the like, and then attached to the face to firm and fade the fine lines. . Red light can penetrate the dermis to activate cells, and with a refreshing moisturizing lotion, it can treat acne-type acne.
(2)穿戴式發光裝置(100、200)發出藍光可殺死痤瘡桿菌、治療囊腫型青春痘(可搭配抗菌配方的藥水),也可淺層美白。 (2) The wearable illuminating device (100, 200) emits blue light to kill acne bacteria, treat cystic acne (a syrup that can be combined with an antibacterial formula), and can also whiten shallow.
(3)穿戴式發光裝置(100、200)發出黃光可代謝黑色素及加強淋巴循環,改善膚質,均勻膚色(搭配對苯二酚、左旋C塗料,美白成效果更佳)。 (3) Wearable illuminating device (100, 200) emits yellow light to metabolize melanin and strengthen lymphatic circulation, improve skin texture and even skin tone (with hydroquinone, L-C coating, whitening effect is better).
3.傷口修復(依不同階段,給予不同光色治療或搭配不同塗料): 3. Wound repair (depending on different stages, different light color treatments or different coatings):
(1)穿戴式發光裝置(100、200)搭配奈米銀敷料可達到藍光殺菌。 (1) Wearable illuminating device (100, 200) can be used for blue light sterilization with nano silver dressing.
(2)穿戴式發光裝置(100、200)發出黃光可癒合/代謝黑色素/加強淋巴循環,可搭配人工皮加速傷口癒合。 (2) The wearable illuminating device (100, 200) emits yellow light to heal/metabolize melanin/enhanced lymphatic circulation, and can be used with artificial skin to accelerate wound healing.
(3)穿戴式發光裝置(100、200)發出紅光,搭配膠原蛋白、三磷酸腺苷酶(ATP)等可刺激纖維母細胞/膠原細胞/修復細胞。 (3) The wearable illuminating device (100, 200) emits red light, and collagen, adenosine triphosphatase (ATP) and the like can stimulate fibroblasts/collagen cells/repair cells.
4.鞋墊除臭:在穿戴式發光裝置(100、200)包覆纖維,靠近發光面之纖維可塗佈奈米光觸媒,藉由發光激發光觸媒達到除臭的效果。光源可為UV光或可見光,依所選之光觸媒而定。 4. Insole deodorization: The wearable illuminating device (100, 200) coats the fiber, and the fiber near the illuminating surface can be coated with a nano photocatalyst to achieve a deodorizing effect by illuminating the photocatalyst. The light source can be UV light or visible light depending on the photocatalyst selected.
5.化瘀貼片:穿戴式發光裝置(100、200)發出紅光搭配肝燐脂及取自動物器官之黏多醣類(典型藥品喜療妥),可促進血液循環,可更迅速消除痛楚,緩減腫脹。 5. 瘀 瘀 : 穿戴 穿戴 穿戴 穿戴 穿戴 穿戴 穿戴 穿戴 穿戴 穿戴 : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : Pain, reduce swelling.
6.消除妊娠紋/肥胖紋:穿戴式發光裝置(100、200)發出紅光/或紅外光作用在真皮層,並搭配膠原蛋白、玻尿酸等塗料,可快速重建結締組織,去除妊娠紋。 6. Eliminate stretch marks/obesity lines: Wearable light-emitting devices (100, 200) emit red light or infrared light on the dermis layer, and with collagen, hyaluronic acid and other coatings, can quickly rebuild connective tissue and remove stretch marks.
7.治療皮膚病: 7. Treatment of skin diseases:
(1)塗光製劑:穿戴式發光裝置(100、200)發出紫外線B光(波長280-320nm),照射煤焦油塗料,可治療乾癬、異位性皮膚炎、尿毒性搔癢症及全身性濕疹。 (1) Coating preparation: wearable light-emitting device (100, 200) emits ultraviolet B light (wavelength 280-320 nm), and irradiates coal tar paint to treat dryness, atopic dermatitis, urinary pruritus and systemic wetness. rash.
(2)口服感光製劑:穿戴式發光裝置(100、200)發出紫外線A光(波長320-400nm),照射補骨脂內酯(psoralen)塗料,可治療乾癬、異位性皮膚炎、白癜風、器官移植皮膚病及皮膚淋巴瘤。 (2) Oral sensitizing preparations: wearable illuminating devices (100, 200) emit ultraviolet A light (wavelength 320-400 nm), and irradiate psoralen coating to treat dryness, atopic dermatitis, vitiligo, Organ transplant skin disease and skin lymphoma.
8.豐胸: 8. Breast enhancement:
(1)噴豐胸噴劑或單獨照光,穿戴式發光裝置(100、200)製成罩杯(胸墊)整面發出紅光或紅外光以包覆4個主要穴道;並可提供不同尺寸罩杯,且可與胸衣一體成形,或藉由弧形百合粘扣帶活動固定。 (1) Spraying the breast spray or alone, the wearable illuminating device (100, 200) is made into a cup (chest pad), which emits red or infrared light to cover 4 main acupuncture points; and can provide cups of different sizes. It can be integrally formed with the corset or fixed by a curved lily hook and loop fastener.
9.消水腫: 9. Elimination of edema:
(1)臉部:穿戴式發光裝置(100、200)發出紅光,照射四白、迎香等穴道,可消水腫瘦臉,加速廢水代謝。 (1) Face: The wearable illuminating device (100, 200) emits red light, and irradiates four white, Yingxiang and other acupoints, which can eliminate edema and face, and accelerate the metabolism of wastewater.
(2)下肢:穿戴式發光裝置(100、200)可製成襪套,於發光面塗唐辛子、甲殼素或木(竹)酢液等塗料,藉由照射三陰交、太谿等人體穴道位置,可消四肢水腫。 (2) Lower limbs: wearable illuminating devices (100, 200) can be made into sock sleeves, coated with dyes such as Tang Xinzi, chitin or wood (bamboo) sputum on the light-emitting surface, by illuminating the positions of human acupoints such as Sanyinjiao and Taixi. Eliminate edema of the limbs.
綜上,本新型所揭示之穿戴式發光裝置,透過緊密封閉之結構,使整體穿戴式發光裝置可達到防水氧及防濕氣效果,可增加穿戴式發光裝置耐用度,延長穿戴式發光裝置之使用壽命。穿戴式發光裝置具輕薄、可攜及可撓折,可具有多種應型態。再者,透過穿戴 式發光裝置發出不同波段色光,搭配各式塗料可獲致不同美容及光療效果。 In summary, the wearable illuminating device disclosed in the present invention can achieve the waterproof oxygen and moisture-proof effect of the wearable illuminating device through the tightly closed structure, can increase the durability of the wearable illuminating device, and prolong the wearable illuminating device. Service life. Wearable illuminators are lightweight, portable and flexible, and can be used in a variety of styles. Furthermore, by wearing The illuminating device emits different wavelengths of light, and various paints can be used to achieve different cosmetic and phototherapy effects.
雖然本新型已以實施方式揭露如上,然其並非用以限定本新型,任何熟習此技藝者,在不脫離本新型之精神和範圍內,當可作各種之更動與潤飾,因此本新型之保護範圍當視後附之申請專利範圍所界定者為準。 Although the present invention has been disclosed in the above embodiments, it is not intended to limit the present invention. Any one skilled in the art can make various changes and retouchings without departing from the spirit and scope of the present invention. The scope is subject to the definition of the scope of the patent application attached.
100‧‧‧穿戴式發光裝置 100‧‧‧Wearing illuminators
110‧‧‧可撓基板 110‧‧‧Flexible substrate
120‧‧‧發光單元 120‧‧‧Lighting unit
130‧‧‧供電單元 130‧‧‧Power supply unit
140‧‧‧雙面印刷電路板 140‧‧‧Double-sided printed circuit board
141‧‧‧無線充電系統 141‧‧‧Wireless charging system
141a‧‧‧無線充電接收部 141a‧‧‧Wireless Charging Receiver
141b‧‧‧充電電路 141b‧‧‧Charging circuit
142‧‧‧開關控制電路 142‧‧‧Switch control circuit
150‧‧‧開關本體 150‧‧‧Switch body
Claims (26)
Priority Applications (1)
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TW104217756U TWM521468U (en) | 2015-11-05 | 2015-11-05 | Wearable lighting device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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TW104217756U TWM521468U (en) | 2015-11-05 | 2015-11-05 | Wearable lighting device |
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Publication Number | Publication Date |
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TWM521468U true TWM521468U (en) | 2016-05-11 |
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TW104217756U TWM521468U (en) | 2015-11-05 | 2015-11-05 | Wearable lighting device |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
TWI620052B (en) * | 2016-07-07 | 2018-04-01 | 張造倫 | Portable and bendable transmitting apparatus for wireless charging |
TWI670099B (en) * | 2017-08-11 | 2019-09-01 | 林宏裕 | Exercising apparatus |
TWI774440B (en) * | 2020-06-24 | 2022-08-11 | 林宏裕 | Light-hydrogen therapy including lighting module, lighting apparatus, and lighting method for parkinson's disease patients |
-
2015
- 2015-11-05 TW TW104217756U patent/TWM521468U/en unknown
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
TWI620052B (en) * | 2016-07-07 | 2018-04-01 | 張造倫 | Portable and bendable transmitting apparatus for wireless charging |
TWI670099B (en) * | 2017-08-11 | 2019-09-01 | 林宏裕 | Exercising apparatus |
TWI774440B (en) * | 2020-06-24 | 2022-08-11 | 林宏裕 | Light-hydrogen therapy including lighting module, lighting apparatus, and lighting method for parkinson's disease patients |
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