The present invention relates generally to a light-emitting apparatus, and particularly to a reflective light-emitting apparatus.
Generally, light-emitting devices, such as LEDs, are point light sources. For the development of the plane light sources, if the light-emitting device owns high brightness, the light-emitting intensity at the central part will be stronger, which makes a plane light source nonunifrom. Even fluorescent powders are adopted for converting light or secondary optics are applied for adjustment, as viewed from the outside of a light-emitting apparatus, the photochrome at the central part is stronger than the surrounding part. Thereby, in general, to enable uniform light emission from assembled light-emitting devices, light guide plates are adopted as the media for uniform lighting. Nonetheless, as the light-emitting area becomes larger, the deviation in brightness becomes more obvious. Accordingly, large advertisement information boards such as signboard or outdoor billboards use a plurality of point light sources arranged to project and become a light source.
In addition, in the past, the light sources used by advertisement information boards include halogen or discharge lamps. For example, as shown in
Nonetheless, for current lighting apparatuses, the structure of the light-emitting apparatus is complicated and the number of components is massive, leading to repeated increases in the price due to the raised material costs. In addition, the structure can no longer meet the requirement of saving space. Because halogen or discharge lamps are adopted as the lighting apparatus, compared with LEDs, the power consumption of the former is much greater than the latter. Thereby, traditional lighting apparatuses cannot satisfy the power-saving requirement.
To solve the above problems, the present invention provides a reflective light-emitting apparatus, which avoids complicated structure and reduces the occupied space. Besides, the lighting area of the light-emitting apparatus can be adjusted according to requirements.
An objective of the present invention is to provide a reflective light-emitting apparatus.
The present invention provides a reflective light-emitting apparatus, which comprises a substrate structure, a base, and a reflective structure. The base includes a light-emitting unit. The base includes an accommodating space and a light-emitting opening on a side. The light-emitting opening communicates with the accommodating space. The substrate structure is disposed in the accommodating space. The light-emitting unit emits light through the light-emitting opening. The reflective structure is connected with the base and includes a first reflection surface and a second reflection surface, which produce first reflection light and second reflection light according to the light emitted from the light-emitting unit. The reflection angles of the first and second reflection light are different. The first reflection surface is adjacent to the light-emitting opening.
According to an embodiment of the present invention, the reflective light-emitting apparatus further comprises a flexible display panel disposed on the first and second reflection surfaces. Different visible light can be scattered from the first and second reflection light according to the flexible display panel.
According to an embodiment of the present invention, a second tilt angle of the second reflection surface of the reflective light-emitting apparatus is greater than a first tilt angle of the first reflection surface.
According to an embodiment of the present invention, the light-emitting unit of the reflective light-emitting apparatus dissipates heat to the base via the substrate structure.
According to an embodiment of the present invention, the light-emitting unit of the reflective light-emitting apparatus includes one or more LED.
The present invention further provides a reflective light-emitting apparatus, which comprises a plurality of substrate structures, a plurality of bases, and a plurality of reflective structures. The plurality of bases include one or more light-emitting unit. The plurality of bases include an accommodating space, respectively, and a light-emitting opening on a side, respectively. The light-emitting opening communicates with the accommodating space. The plurality of substrate structures are disposed in the plurality of accommodating spaces of the plurality of bases, respectively. The plurality of light-emitting units of the plurality of bases emit light through the plurality of light-emitting openings of the plurality of bases. The plurality of reflective structures are disposed on one side of the plurality of bases and include a first reflection surface and a second reflection surface, respectively. The plurality of first reflection surfaces and the plurality of second reflection surfaces of the plurality of reflective structures produce first reflection light and second reflection light according to the light emitted from the plurality of light-emitting units of the plurality of bases, respectively. The reflection angles of the first reflection light of the plurality of first reflection surfaces and the reflection angles of the second reflection light of the plurality of second reflection surfaces are different. The plurality of reflection structures and the plurality of bases are arranged in order.
According to an embodiment of the present invention, the reflective light-emitting apparatus further comprises a plurality of flexible display panels disposed on the plurality of first reflection surfaces and the plurality of second reflection surfaces, respectively. Different visible light can be scattered from the first and second reflection light according to the plurality of flexible display panels.
According to an embodiment of the present invention, the second reflection surface of the final reflection structure in the plurality of reflection structures is not connected to any other structure, while the plurality of second reflection surfaces of the plurality of the rest reflection structures are connected to a top surface of the next base.
According to an embodiment of the present invention, the plurality of light-emitting units of the light-emitting apparatus dissipate heat to the plurality of bases via the plurality of bases.
According to an embodiment of the present invention, the plurality of the light-emitting units of the reflective light-emitting apparatus include one or more LED, respectively.
By using the technical method according to the present invention, the base accommodates the substrate structure disposed with the light-emitting unit. The light-emitting unit illuminates the reflective structure through the light-emitting opening of the base, so that the disposition of the whole light-emitting apparatus is more simplified and the space can be fully utilized according to requirements. Preferably, the reflective light-emitting apparatus meets the requirements via the combination of the base and the reflective structure and thus reducing the usage space.
In order to make the structure and characteristics as well as the effectiveness of the present invention to be further understood and recognized, the detailed description of the present invention is provided as follows along with embodiments and accompanying figures.
In the following, according to
As shown in
According to the present embodiment, the substrate structure 201 includes a plurality of light-emitting units 212, such as a plurality of LEDs, for giving a preferred light-emitting area. Nonetheless, the present invention is not limited to the disposition according to the present embodiment. Alternatively, a single light-emitting unit 212 can be adopted for focusing on a single lighting region. The light-emitting units 212 are disposed on the substrate structure 210 and arranged in a line. In addition, one side of the light-emitting units 212 face the light-emitting opening 224 of the base 220; the light-emitting opening 224 is adjacent to the first reflection surface 232 of the reflection structure 230. Thereby, the light-emitting units 212 illuminate the first and second reflection surfaces 232, 234 of the reflection structure 230 through the light-emitting opening 224 of the base 220, and a side of the first reflection surface 232 extending to dispose a side of the second surface 234. As shown in
As shown in
As shown in
To sum up, the reflective light-emitting apparatus according to the present invention can save size by adopting light-emitting units with smaller volume. In addition, by the using the aluminum-extrusion base, the light-emitting structure is simplified. Moreover, good heat dissipation can be achieved with ease via the base.
Accordingly, the present invention conforms to the legal requirements owing to its novelty, nonobviousness, and utility. However, the foregoing description is only embodiments of the present invention, not used to limit the scope and range of the present invention. Those equivalent changes or modifications made according to the shape, structure, feature, or spirit described in the claims of the present invention are included in the appended claims of the present invention.