TWM456392U - Solar energy luminous brick wall - Google Patents

Solar energy luminous brick wall Download PDF

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Publication number
TWM456392U
TWM456392U TW102203503U TW102203503U TWM456392U TW M456392 U TWM456392 U TW M456392U TW 102203503 U TW102203503 U TW 102203503U TW 102203503 U TW102203503 U TW 102203503U TW M456392 U TWM456392 U TW M456392U
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TW
Taiwan
Prior art keywords
light
emitting
brick
solar
photoelectric conversion
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TW102203503U
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Chinese (zh)
Inventor
Rui-Tang Chen
zhi-wen Lai
jian-feng Liao
Ting-Yao Gu
Chong-Hao Yan
Yan-Lin Chen
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Univ Southern Taiwan Sci & Tec
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Priority to TW102203503U priority Critical patent/TWM456392U/en
Publication of TWM456392U publication Critical patent/TWM456392U/en
Priority to CN201420071893.4U priority patent/CN203856097U/en

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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B10/00Integration of renewable energy sources in buildings
    • Y02B10/10Photovoltaic [PV]
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/50Photovoltaic [PV] energy

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  • Illuminated Signs And Luminous Advertising (AREA)

Description

太陽能發光磚牆Solar light brick wall

本新型是有關於一種太陽能發光磚牆,特別是指一可作為建築物的玻璃牆的太陽能發光磚牆。The present invention relates to a solar-powered brick wall, and more particularly to a solar-powered brick wall that can be used as a glass wall of a building.

一般建築物會設置透明的玻璃牆或玻璃帷幕來增強射入室內的光線,以達到良好的採光效果及美化作用,而一些商業大樓或百貨公司則會利用玻璃牆來增進建築物的整體藝術感,以凸顯其特色,進而吸引顧客。雖然玻璃牆已經具備上述優點,但所述大樓的玻璃牆建造完成後就無法變動其外觀造形,較為單調無變化,久而久之還是會失去其吸引力,而使顧客流失,因此習知玻璃牆的設計還有待改進。Generally, buildings will be provided with transparent glass walls or glass curtains to enhance the light entering the room to achieve good lighting and beautification. Some commercial buildings or department stores will use glass walls to enhance the overall artistic sense of the building. To highlight its characteristics and attract customers. Although the glass wall already has the above advantages, the glass wall of the building cannot be changed after its construction. It is relatively monotonous and unchanged. Over time, it will lose its attraction and cause customers to lose. Therefore, the design of the glass wall is known. Still needs improvement.

因此,本新型之目的,即在提供一種利用太陽能供電並可發光而形成任意圖案的太陽能發光磚牆。Accordingly, it is an object of the present invention to provide a solar-emitting brick wall that is powered by solar energy and that can be illuminated to form an arbitrary pattern.

於是,本新型太陽能發光磚牆包含:數個太陽能發光磚單元,以及一控制器。Thus, the novel solar light-emitting brick wall comprises: a plurality of solar light-emitting brick units, and a controller.

該等太陽能發光磚單元彼此臨接排列,每一太陽能發光磚單元包括一:磚本體、至少一光電轉換模組, 以及至少一發光模組。該磚本體具有一可供光線射入及射出的第一面、一相反於該第一面的第二面,以及數個彼此相連且分別連接在該第一面與該第二面之間並可供光線射入及射出的側表面,該磚本體可將通過該第一面而來的光線朝該等側表面反射,並可將通過該等側表面而來的光線朝該第一面反射。該光電轉換模組設置在該等側表面中的其中一個。該發光模組設置在該等側表面中的其中另一個且電連接該光電轉換模組並可受該光電轉換模組產生的電力驅動而發光,該發光模組產生的光線可通過與其相對應的該磚本體的側表面並經由該磚本體的第一面射出。該控制器電連接每一太陽能發光磚單元的光電轉換模組與發光模組,該控制器可控制每一太陽能發光磚單元的光電轉換模組提供給該發光模組的電力,以控制該發光模組發光。The solar light-emitting brick units are arranged next to each other, and each solar light-emitting brick unit comprises: a brick body and at least one photoelectric conversion module. And at least one lighting module. The brick body has a first surface for allowing light to enter and exit, a second surface opposite to the first surface, and a plurality of connected to each other and respectively connected between the first surface and the second surface a side surface for allowing light to enter and exit, the brick body reflecting light passing through the first surface toward the side surfaces, and reflecting light passing through the side surfaces toward the first surface . The photoelectric conversion module is disposed on one of the side surfaces. The light emitting module is disposed on the other of the side surfaces and electrically connected to the photoelectric conversion module and can be driven by the electric power generated by the photoelectric conversion module to emit light, and the light generated by the light emitting module can be corresponding thereto The side surface of the brick body is ejected through the first side of the brick body. The controller is electrically connected to the photoelectric conversion module and the light-emitting module of each solar light-emitting brick unit, and the controller can control the power provided by the photoelectric conversion module of each solar light-emitting brick unit to the light-emitting module to control the light-emitting The module emits light.

本新型之功效在於:利用該等太陽能發光磚單元排列成牆面,配合該控制器可控制任一個太陽能發光磚單元的發光模組發光,使得本新型太陽能發光磚牆可發光而變化出各種圖案,達到廣告與美化建築物的功效,此外該光電轉換模組可提供本新型發光運作的電力,使本新型不需額外消耗電力。The utility model has the advantages that: the solar light-emitting brick units are arranged into a wall surface, and the controller can control the illumination of the light-emitting module of any one of the solar light-emitting brick units, so that the novel solar-emitting brick wall can emit light and change various patterns. To achieve the effect of advertising and beautifying the building, in addition, the photoelectric conversion module can provide the power of the new luminous operation, so that the novel does not need additional power consumption.

2‧‧‧太陽能發光磚單元2‧‧‧Solar light brick unit

3‧‧‧磚本體3‧‧‧Brick body

31‧‧‧導光板31‧‧‧Light guide plate

311‧‧‧第二面311‧‧‧ second side

32‧‧‧擴散層32‧‧‧Diffusion layer

321‧‧‧第一面321‧‧‧ first side

331‧‧‧側表面331‧‧‧ side surface

33‧‧‧擴散板33‧‧‧Diffuser

34‧‧‧散射粒子34‧‧‧ scattering particles

4‧‧‧光電轉換模組4‧‧‧ photoelectric conversion module

5‧‧‧發光模組5‧‧‧Lighting module

51‧‧‧安裝板51‧‧‧Installation board

52‧‧‧LED燈52‧‧‧LED lights

6‧‧‧外框6‧‧‧Front frame

7‧‧‧蓄電池7‧‧‧Battery

8‧‧‧控制器8‧‧‧ Controller

本新型之其他的特徵及功效,將於參照圖式的實施方式中清楚地呈現,其中:圖1是一示意圖,顯示本新型太陽能發光磚牆的一第一較佳實施例的數個太陽能發光磚單元排列成牆面; 圖2是一立體分解圖,說明該第一較佳實施例的該等太陽能發光磚單元中的其中一個的元件對應關係;圖3是該第一較佳實施例的剖視圖,同時示意光線自該等太陽能發光磚單元中的其中一個的一第一面進入一磚本體後的行進路徑;圖4是該第一較佳實施例的剖視圖,同時示意該等太陽能發光磚單元中的其中一個的兩個發光模組發出的光線的行進路徑;圖5是本新型太陽能發光磚牆的一第二較佳實施例的剖視圖,同時示意光線自數個太陽能發光磚單元的中的其中一個的一第一面進入一磚本體後的行進路徑;及圖6是該第二較佳實施例的剖視圖,同時示意該等太陽能發光磚單元中的其中一個的兩個發光模組發出的光線的行進路徑。Other features and effects of the present invention will be apparent from the following description of the drawings, wherein: FIG. 1 is a schematic diagram showing several solar illuminations of a first preferred embodiment of the novel solar-emitting brick wall. Brick units are arranged in a wall surface; Figure 2 is an exploded perspective view showing the component correspondence of one of the solar light-emitting brick units of the first preferred embodiment; Figure 3 is a cross-sectional view of the first preferred embodiment, And a first surface of the solar light-emitting brick unit enters a traveling path after the brick body; FIG. 4 is a cross-sectional view of the first preferred embodiment, and simultaneously illustrates two of the solar light-emitting brick units Figure 5 is a cross-sectional view of a second preferred embodiment of the solar-powered brick wall of the present invention, and illustrates a first light source from one of the plurality of solar light-emitting brick units. The traveling path after the surface enters a brick body; and FIG. 6 is a cross-sectional view of the second preferred embodiment, and illustrates the traveling path of the light emitted by the two light emitting modules of one of the solar light-emitting brick units.

在本新型被詳細描述之前,應當注意在以下的說明內容中,類似的元件是以相同的編號來表示。Before the present invention is described in detail, it should be noted that in the following description, similar elements are denoted by the same reference numerals.

參閱圖1~圖4,本新型太陽能發光磚牆的一第一較佳實施例包含:數個太陽能發光磚單元2,以及一控制器8。該等太陽能發光磚單元2鄰接排列而堆疊成牆面,可用於取代傳統建築物的玻璃牆。在本實施例中,該等太陽能發光磚單元2的數量是以九個為例,但實施時不以九個為限,可依建築物所需的玻璃牆之牆面大小而定。每一太 陽能發光磚單元2包括:一磚本體3、二光電轉換模組4、二發光模組5、一外框6,以及一蓄電池7。Referring to Figures 1 to 4, a first preferred embodiment of the novel solar-emitting brick wall comprises: a plurality of solar light-emitting brick units 2, and a controller 8. The solar light-emitting brick units 2 are arranged adjacent to each other and stacked into a wall surface, which can be used to replace the glass wall of the traditional building. In this embodiment, the number of the solar light-emitting brick units 2 is exemplified by nine, but the implementation is not limited to nine, and may be determined according to the wall size of the glass wall required for the building. Every too The illuminating brick unit 2 comprises: a brick body 3, two photoelectric conversion modules 4, two illuminating modules 5, an outer frame 6, and a battery 7.

該磚本體3呈方形並具有一導光板31,以及一位於該導光板31的表面的擴散層32。該導光板31具有一第二面311,其材質可選自壓克力、聚碳酸酯、聚對苯二甲酸乙二酯、聚氨酯、聚醯亞胺、矽利光樹脂或玻璃。該擴散層32位於該導光板31之相反於該的第二面311的表面上,而且該擴散層32具有一可供光線射入及射出的第一面321,該擴散層32與該導光板31共同具有四個彼此相連且分別連接在該第一面321與該第二面311之間並可供光線射入及射出的側表面331。該擴散層32的材質可選自壓克力、聚碳酸酯、聚對苯二甲酸乙二酯、聚氨酯、聚醯亞胺或矽利光樹脂。實施時,該擴散層32的材質除了可選自上述任一材質做為基礎材質之外,還會加入圖未示的光學散射粒子(例如二氧化鈦),使自該第一面321進入該擴散層32的光線可被所述光學散射粒子反射而射出該等側表面331,反之,位於該擴散層32內的光學散射粒子也可將通過該等側表面331而來的光線分別朝該第一面321的方向射出。此外,透過該擴散層32中的散射粒子的反射效果,可將光線擴散霧化,使得經由該擴散層32之第一面321射出的光線均勻。另一點提出說明的是,圖3與圖4內的光線路徑只是示意,並非實際的光線行進路徑。The brick body 3 is square and has a light guide plate 31 and a diffusion layer 32 on the surface of the light guide plate 31. The light guide plate 31 has a second surface 311 which may be made of acrylic, polycarbonate, polyethylene terephthalate, polyurethane, polyimide, rayon resin or glass. The diffusion layer 32 is located on a surface of the light guide plate 31 opposite to the second surface 311, and the diffusion layer 32 has a first surface 321 for allowing light to enter and exit. The diffusion layer 32 and the light guide plate 31 has four side surfaces 331 which are connected to each other and are respectively connected between the first surface 321 and the second surface 311 to allow light to enter and exit. The material of the diffusion layer 32 may be selected from the group consisting of acrylic, polycarbonate, polyethylene terephthalate, polyurethane, polyimide or rayon resin. In implementation, the material of the diffusion layer 32 may be selected from any of the above materials as a base material, and optical scattering particles (such as titanium dioxide) not shown may be added to enter the diffusion layer from the first surface 321 . The light of 32 can be reflected by the optical scattering particles to be emitted from the side surfaces 331. Conversely, the optical scattering particles located in the diffusion layer 32 can also direct the light passing through the side surfaces 331 toward the first surface. The direction of 321 is shot. Further, the light is diffused and atomized by the reflection effect of the scattering particles in the diffusion layer 32, so that the light emitted through the first surface 321 of the diffusion layer 32 is uniform. Another point is to say that the ray paths in Figures 3 and 4 are only illustrative and are not actual ray travel paths.

該等光電轉換模組4分別設置在該磚本體3的該等側表面331中的其中位於上下側的兩個側表面331 上。該等光電轉換模組4可分別接受由外部朝該第一面321入射而射向與其相對應的該等側表面331的光線而發電。該光電轉換模組4為一太陽能板,例如銅銦硒(CIS)太陽能板、銅銦鎵硒(CIGS)太陽能板、三五族半導體太陽能板...等等。在本實施例中該等光電轉換模組4的數量為二,但實施時,其數量也可為三個或四個,當然該太陽能發光磚單元2也可只包括一個光電轉換模組4,可依據用電量而定。The photoelectric conversion modules 4 are respectively disposed on the two side surfaces 331 of the side surfaces 331 of the brick body 3 located on the upper and lower sides thereof. on. The photoelectric conversion modules 4 can respectively receive light that is incident on the first surface 321 from the outside and is incident on the side surfaces 331 corresponding thereto to generate electricity. The photoelectric conversion module 4 is a solar panel, such as a copper indium selenide (CIS) solar panel, a copper indium gallium selenide (CIGS) solar panel, a three-five semiconductor solar panel, and the like. In the present embodiment, the number of the photoelectric conversion modules 4 is two, but the number of the photoelectric conversion modules 4 may be three or four. Of course, the solar light-emitting brick unit 2 may also include only one photoelectric conversion module 4, It can be based on electricity consumption.

該等發光模組5分別設置在該磚本體3的該等側表面331中的其中位於左右側的兩個側表面331上。每一發光模組5具有一設置在與其相對應的該側表面331的一側的安裝板51,以及數個彼此間隔排列且分別設置在該安裝板51上並面向與其相對應的該側表面331的LED燈52。該等發光模組5產生的光線可分別通過與其相對應的該磚本體3的該等側表面331並經由該磚本體3的第一面321射出。在本實施例中該等LED燈52的數量與顏色均不限制,可依使用需求來改變,而該安裝板51可為PCB板或太陽能板,若用太陽能板,則可提高整體發電量。此外,該等發光模組5的數量為二,但實施時,其數量也可為三個或四個,當然只要亮度達到需求,該太陽能發光磚單元2也可只包括一個發光模組5。The light-emitting modules 5 are respectively disposed on the two side surfaces 331 of the side surfaces 331 of the brick body 3 which are located on the left and right sides. Each of the light-emitting modules 5 has a mounting plate 51 disposed on one side of the side surface 331 corresponding thereto, and a plurality of spaced-apart-arranged and respectively disposed on the mounting plate 51 and facing the side surface corresponding thereto LED light 52 of 331. The light generated by the light-emitting modules 5 can be respectively emitted through the side surfaces 331 of the brick body 3 corresponding thereto and through the first surface 321 of the brick body 3. In the embodiment, the number and color of the LED lamps 52 are not limited, and may be changed according to the use requirements. The mounting board 51 may be a PCB board or a solar panel. If a solar panel is used, the overall power generation amount can be improved. In addition, the number of the light-emitting modules 5 is two, but the number of the light-emitting modules 5 may be three or four. Of course, the solar light-emitting brick unit 2 may include only one light-emitting module 5 as long as the brightness reaches a demand.

該外框6圍繞包覆在該磚本體3周圍且可容納該光電轉換模組4與該發光模組5。每一太陽能發光磚單元2的外框6可連接另一個太陽能發光磚單元2的外框6,而 排列組合成牆面(如圖1)。The outer frame 6 is wrapped around the brick body 3 and can accommodate the photoelectric conversion module 4 and the light emitting module 5 . The outer frame 6 of each solar light-emitting brick unit 2 can be connected to the outer frame 6 of another solar light-emitting brick unit 2, and Arrange and combine into a wall (Figure 1).

該蓄電池7電連接該等光電轉換模組4與該等發光模組5,該蓄電池7可分別儲存該等光電轉換模組4所產生的電力,並將電力供應給該等發光模組5,進而驅使該等發光模組5發光。但本新型不以設置該蓄電池7為必要,因為透過適當的電路設計,該等光電轉換模組4產生的電力也可以直接提供給該等發光模組5作為發光所須之電力。The battery 7 is electrically connected to the photoelectric conversion module 4 and the light-emitting modules 5, and the battery 7 can separately store the power generated by the photoelectric conversion modules 4 and supply the power to the light-emitting modules 5, In turn, the light-emitting modules 5 are driven to emit light. However, the present invention is not necessary to provide the battery 7 because the power generated by the photoelectric conversion modules 4 can be directly supplied to the light-emitting modules 5 as the power required for illumination by appropriate circuit design.

本實施例的控制器8電連接每一太陽能發光磚單元2的該等光電轉換模組4與該等發光模組5。該控制器8可控制每一太陽能發光磚單元2的該等光電轉換模組4提供給該等發光模組5的電力,以控制該等發光模組5發光。The controller 8 of the embodiment is electrically connected to the photoelectric conversion modules 4 of the solar light-emitting brick units 2 and the light-emitting modules 5 . The controller 8 can control the power provided by the photoelectric conversion modules 4 of each of the solar light-emitting brick units 2 to the light-emitting modules 5 to control the light-emitting modules 5 to emit light.

本實施例於白天使用時,太陽的光線可通過每一太陽能發光磚單元2的磚本體3的第一面321,而射入該第一面321的光線會經由該擴散層32與該導光板31的導光作用而導引至該等側表面331,因此該等光電轉換模組4可將射出與其相對應的該等側表面331的光線轉換成電力,並儲存於該蓄電池7中。When the embodiment is used in the daytime, the light of the sun passes through the first surface 321 of the brick body 3 of each solar light-emitting brick unit 2, and the light incident on the first surface 321 passes through the diffusion layer 32 and the light guide plate. The light guiding function of 31 is guided to the side surfaces 331. Therefore, the photoelectric conversion modules 4 can convert the light rays emitted from the corresponding side surfaces 331 into electric power and store them in the battery 7.

本實施例於夜間使用時,每一太陽能發光磚單元2可受該控制器8的控制,而使每一太陽能發光磚單元2的該等發光模組5可被儲存於該蓄電池7的電力驅動而發光。被驅動發光的每一太陽能發光磚單元2的該等發光模組5發出的光線可通過與其相對應的磚本體3的該等側表 面331,再經由該磚本體3的折射與擴散而使光線自該第一面321射出,因此每一磚本體3在外觀上皆因該發光模組5的光線而形成發光造形。實際實施時,該控制器8可控制任一太陽能發光磚單元2發光,並使各個太陽能發光磚單元2的發光造形相配合而排列成一圖案,例如文字、符號或廣告標誌。當然,只要亮度足夠,本新型於白天使用時也可以發光並排列成圖案。When the embodiment is used at night, each solar light-emitting brick unit 2 can be controlled by the controller 8, so that the light-emitting modules 5 of each solar light-emitting brick unit 2 can be stored in the electric drive of the battery 7. And glow. The light emitted by the light-emitting modules 5 of each of the solar light-emitting brick units 2 that are driven to emit light can pass through the side surfaces of the brick body 3 corresponding thereto. The surface 331 emits light from the first surface 321 through the refraction and diffusion of the brick body 3. Therefore, each brick body 3 is formed into a light-emitting shape by the light of the light-emitting module 5. In actual implementation, the controller 8 can control any of the solar light-emitting brick units 2 to emit light, and the light-emitting shapes of the respective solar light-emitting brick units 2 are matched to form a pattern, such as a character, a symbol or an advertisement mark. Of course, as long as the brightness is sufficient, the present invention can also emit light and be arranged in a pattern when used during the day.

綜上所述,本新型利用該等太陽能發光磚單元2彼此相疊排列成牆面,配合任一個太陽能發光磚單元2的該等發光模組5可受該控制器8驅動發光,使得本新型太陽能發光磚牆可發光並能變化出各種圖案,以作為建築物的廣告標誌。而且透過每一太陽能發光磚單元2的磚本體3的材質與結構的設計,可增加射出該磚本體32的第一面321的光線均勻度,而使本新型發出的光線較為柔和。此外該等光電轉換模組4白天產生的電力可儲存於蓄電池7,以供該等太陽能發光磚單元2於夜間使用,使本新型不需額外消耗電力,進而達到環保節能的功效。In summary, the present invention utilizes the solar light-emitting brick units 2 to be stacked on each other to form a wall surface, and the light-emitting modules 5 of any one of the solar light-emitting brick units 2 can be driven and illuminated by the controller 8, so that the present invention Solar-powered brick walls can illuminate and change various patterns to serve as an advertising sign for buildings. Moreover, through the design of the material and structure of the brick body 3 of each solar light-emitting brick unit 2, the uniformity of light emitted from the first surface 321 of the brick body 32 can be increased, and the light emitted by the present invention is softened. In addition, the power generated by the photoelectric conversion modules 4 during the day can be stored in the battery 7 for use by the solar light-emitting brick units 2 at night, so that the present invention does not require additional power consumption, thereby achieving environmental protection and energy saving effects.

參閱圖5、6,本新型太陽能發光磚牆的一第二較佳實施例與該第一較佳實施例大致相同,不同的是:每一太陽能發光磚單元2的磚本體3只具有一呈方形的擴散板33。該擴散板33具有該第一面321、該第二面311與該等側表面331。該擴散板33的材質與該第一較佳實施例的擴散層32相同,但其厚度較厚,且較佳地該擴散板33也會加入散射粒子34,使通過該第一面321而來的光線可朝 該等側表面331射出,反之,通過該等側表面331而來的光線可朝該第一面321射出。此外,圖5與圖6內的光線路徑只是示意,並非實際的光線行進路徑。而本實施例的其餘功效與第一較佳實施例相同,在此不再贅述。Referring to FIGS. 5 and 6, a second preferred embodiment of the solar illuminating brick wall of the present invention is substantially the same as the first preferred embodiment. The difference is that the brick body 3 of each solar illuminating brick unit 2 has only one Square diffuser plate 33. The diffuser plate 33 has the first surface 321 , the second surface 311 , and the side surfaces 331 . The material of the diffusion plate 33 is the same as that of the diffusion layer 32 of the first preferred embodiment, but the thickness thereof is thick, and preferably the diffusion plate 33 is also added with scattering particles 34 to pass through the first surface 321 . The light can be The side surfaces 331 are emitted, and conversely, light rays passing through the side surfaces 331 can be emitted toward the first surface 321 . Moreover, the ray paths in Figures 5 and 6 are only illustrative and are not actual ray travel paths. The remaining functions of the embodiment are the same as those of the first preferred embodiment, and are not described herein again.

惟以上所述者,僅為本新型之較佳實施例而已,當不能以此限定本新型實施之範圍,即大凡依本新型申請專利範圍及專利說明書內容所作之簡單的等效變化與修飾,皆仍屬本新型專利涵蓋之範圍內。However, the above is only a preferred embodiment of the present invention, and is not intended to limit the scope of the present invention, that is, the simple equivalent changes and modifications made in accordance with the scope of the present patent application and the contents of the patent specification, All remain within the scope of this new patent.

2‧‧‧太陽能發光磚單元2‧‧‧Solar light brick unit

3‧‧‧磚本體3‧‧‧Brick body

6‧‧‧外框6‧‧‧Front frame

8‧‧‧控制器8‧‧‧ Controller

Claims (8)

一種太陽能發光磚牆,包含:數個太陽能發光磚單元,彼此鄰接排列,每一太陽能發光磚單元包括:一磚本體,具有一可供光線射入及射出的第一面、一相反於該第一面的第二面,以及數個彼此相連且分別連接在該第一面與該第二面之間並可供光線射入及射出的側表面,該磚本體可將通過該第一面而來的光線朝該等側表面反射,並可將通過該等側表面而來的光線朝該第一面反射;至少一光電轉換模組,設置在該等側表面中的其中一個;至少一發光模組,設置在該等側表面中的其中另一個且電連接該光電轉換模組並可受該光電轉換模組產生的電力驅動而發光,該發光模組產生的光線可通過與其相對應的該磚本體的側表面並經由該磚本體的第一面射出;及一控制器,電連接每一太陽能發光磚單元的光電轉換模組與發光模組,該控制器可控制每一太陽能發光磚單元的光電轉換模組提供給該發光模組的電力,以控制該發光模組發光。A solar light-emitting brick wall comprising: a plurality of solar light-emitting brick units arranged adjacent to each other, each solar light-emitting brick unit comprising: a brick body having a first surface for allowing light to enter and exit, and opposite to the first a second side of one side, and a plurality of side surfaces connected to each other and respectively connected between the first surface and the second surface for allowing light to enter and exit, the brick body may pass through the first surface The light rays are reflected toward the side surfaces, and light rays passing through the side surfaces are reflected toward the first surface; at least one photoelectric conversion module is disposed on one of the side surfaces; at least one light is emitted a module disposed on the other of the side surfaces and electrically connected to the photoelectric conversion module and capable of being driven by the electric power generated by the photoelectric conversion module, and the light generated by the illumination module can pass through The side surface of the brick body is emitted through the first surface of the brick body; and a controller electrically connects the photoelectric conversion module and the light emitting module of each solar light-emitting brick unit, and the controller can control each solar energy The photoelectric conversion module unit to the light-tile power of the light emitting module, to control the light-emitting module to emit light. 如請求項1所述的太陽能發光磚牆,其中,該控制器可控制該等太陽能發光磚單元的發光模組發光而排列成一圖案。The solar-emitting brick wall of claim 1, wherein the controller controls the light-emitting modules of the solar-emitting brick units to emit light and be arranged in a pattern. 如請求項2所述的太陽能發光磚牆,其中,該圖案為文字、符號或廣告標誌。The solar-emitting brick wall of claim 2, wherein the pattern is a text, a symbol or an advertising sign. 如請求項1所述的太陽能發光磚牆,其中,每一太陽能發光磚單元的磚本體具有一具有該第二面的導光板,以及一位於該導光板之相反於該第二面的表面上並具有該第一面的擴散層,該擴散層與該導光板共同具有該等側表面。The solar light-emitting brick wall of claim 1, wherein the brick body of each solar light-emitting brick unit has a light guide plate having the second surface, and a surface of the light guide plate opposite to the second surface And having a diffusion layer of the first surface, the diffusion layer and the light guide plate have the side surfaces. 如請求項1所述的太陽能發光磚牆,其中,每一太陽能發光磚單元的磚本體具有一具有該第一面、該第二面與該等側表面的擴散板。The solar light-emitting brick wall of claim 1, wherein the brick body of each solar light-emitting brick unit has a diffusing plate having the first surface, the second surface, and the side surfaces. 如請求項1所述的太陽能發光磚牆,其中,每一太陽能發光磚單元還包括一圍繞包覆在該磚本體周圍且可容納該光電轉換模組與該發光模組的外框。The solar light-emitting brick wall of claim 1, wherein each of the solar light-emitting brick units further comprises an outer frame surrounding the brick body and accommodating the photoelectric conversion module and the light-emitting module. 如請求項1所述的太陽能發光磚牆,其中,每一太陽能發光磚單元還包括一電連接該光電轉換模組與該發光模組並可儲存該光電轉換模組所產生的電力的蓄電池。The solar illuminating brick wall of claim 1, wherein each of the solar illuminating brick units further comprises a battery electrically connected to the photoelectric conversion module and the illuminating module and capable of storing electric power generated by the photoelectric conversion module. 如請求項1所述的太陽能發光磚牆,其中,每一太陽能發光磚單元的發光模組具有一設置在與其相對 應的該磚本體的側表面的一側的安裝板,以及數個彼此間隔排列且分別設置在該安裝板上並面向該磚本體的LED燈。The solar light-emitting brick wall according to claim 1, wherein the light-emitting module of each solar light-emitting brick unit has a setting opposite thereto A mounting plate on one side of the side surface of the brick body, and a plurality of LED lamps arranged at a distance from each other and disposed on the mounting plate and facing the brick body.
TW102203503U 2013-02-23 2013-02-23 Solar energy luminous brick wall TWM456392U (en)

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