Microarray LED flash
10191360 ยท 2019-01-29
Assignee
Inventors
Cpc classification
F21K9/62
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
G03B15/05
PHYSICS
F21Y2115/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V5/007
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
G03B29/00
PHYSICS
F21V33/0056
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H04N9/3173
ELECTRICITY
International classification
H04N9/31
ELECTRICITY
F21V5/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
G03B29/00
PHYSICS
F21V33/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21K9/62
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A microarray LED flash, applied to a mobile phone for lighting an adjustable flashlight or projecting an image, comprises a LED array module, a mixing optical module and an optical module. The LED array module is configured in a shell of the mobile phone for generating a patterning light source. The mixing optical module and the optical module are detachably configured on an external surface of the shell to receive the patterning light source from the LED array module for lighting the flashlight or projecting the image respectively. A LED array chip could be used as the LED array module and combined with the outboard mixing optical module to generate a flashlight with adjustable color and light pattern. Furthermore, the invention can use the optical module to substitute for the mixing optical module for projecting an image from the patterning light source, therefore the mobile phone has a projection function.
Claims
1. A microarray LED flash, applied to a mobile phone for lighting a multi-array mixed light source, comprising: a LED array module, configured in a shell of the mobile phone for generating a patterning light source; a mixing optical module, detachably configured on an external surface of the shell to receive the patterning light source for lighting the multi-array mixed light source; and an optical module, detachably configured on the external surface of the shell to receive the patterning light source from the LED array module for projecting as an image; wherein when one of the mixing optical module and the optical module is detached from the external surface of the shell, another is configured on the external surface of the shell; wherein, the thickness of the LED array module is less than the average thickness of the mobile phone, and the multi-array mixed light source can be used as a camera light source and a lighting source of the mobile phone.
2. The microarray LED flash of claim 1, wherein the LED array module comprises a LED array chip of a plurality of LED elements, and the LED array module is for generating the patterning light source via the LED elements.
3. The microarray LED flash of claim 2, wherein the LED array module comprises a microarray lens corresponding to each LED element, and the LED elements are for generating the patterning light source via the microarray lens.
4. The microarray LED flash of claim 2, wherein each LED element is selected from a group comprising a red light emitting diode, a green light emitting diode and a blue light emitting diode.
5. The microarray LED flash of claim 4, wherein at least one red light emitting diode, at least one green light emitting diode and at least one blue light emitting diode in the LED elements form a pixel group, and the light emitted by the LED elements is mixed to generate a pixel of the patterning light source in the pixel group.
6. The microarray LED flash of claim 2, wherein the LED array module further comprises a substrate, and the LED elements are formed by an epitaxial structure directly disposed on the substrate.
7. The microarray LED flash of claim 6, wherein the substrate is complementary metal oxide semiconductor integrated circuits (CMOS IC).
8. The microarray LED flash of claim 1, wherein the thickness of the LED array module is less than 1 mm.
9. The microarray LED flash of claim 1, wherein the optical module adjusts the focal length, size and display shape of the image for projecting.
Description
BRIEF DESCRIPTION OF THE APPENDED DRAWINGS
(1) Some of the embodiments will be described in detail, with reference to the following figures, wherein like designations denote like members, wherein:
(2)
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DETAILED DESCRIPTION OF THE INVENTION
(7) A detailed description of the hereinafter described embodiments of the disclosed apparatus and method are presented herein by way of exemplification and not limitation with reference to the Figures. Although certain embodiments are shown and described in detail, it should be understood that various changes and modifications may be made without departing from the scope of the appended claims. The scope of the present invention will in no way be limited to the number of constituting components, the materials thereof, the shapes thereof, the relative arrangement thereof, etc., and are disclosed simply as an example of embodiments of the present invention.
(8) Please refer to
(9) In the practical application, the multi-array mixed light source can be used as the flash of the mobile phone via a control module of the mobile phone, furthermore, the multi-array mixed light source can be used as the lighting source of the mobile phone.
(10) The LED array module 12 comprises a LED array chip of a plurality of LED elements 122, and the LED array module 12 is for generating the patterning light source via the LED elements 122.
(11) In the practical application, the thickness of the LED array module 12 can be reduced because the LED array module 12 can generate the image light source without using any filter or light blocking elements.
(12) Wherein, each LED element 122 is selected from a group comprising a red LED, a green LED and a blue LED. In the practical application, the color of the light emitted by each LED element 122 can also belong to other basic colors that can mix out the required visible light.
(13) In the practical application, the LED element 122 of a color light can also be used to match the corresponding phosphor to obtain a light source of another color, for example, use a blue LED combined with a yellow phosphor to obtain a white light source.
(14) Furthermore, at least one red LED, at least one green LED and at least one blue LED in the LED elements 122 form a pixel group, and the light emitted by the LED elements 122 is mixed to generate a pixel of the patterning light source in the pixel group.
(15) In the practical application, the LED elements 122 of the LED array module 12 are grouped into a plurality of pixel groups corresponding to each pixel of the image light source in accordance with the above-mentioned grouping principle so that each pixel group can directly generate each pixel in the image light source without passing through the backlight plate, filter, or other elements, thereby reducing the usage amount of the element, and further reducing the use volume of the LED array module 12 in the mobile phone.
(16) On the other hand, the LED array module 12 emits the desired three colors light directly through the LED elements 122, thereby making the color more pure, and also shortening the response time of the pixel.
(17) Please refer to
(18) Furthermore, since the LED array module 12 is composed of a plurality of pixel groups, so that the generated light source can exhibit a strong light source for emphasizing the specific position of the main body, similar to a double-halo light source of the automobile headlight or a composite-type light source with white up red down gradation, but it cannot be easily achieved via the conventional smart phone with only double color point light source.
(19) Please refer to
(20) Wherein, the above-mentioned microarray lens 126 can be directly formed on the corresponding LED elements 122 through using a simple process, thereby reducing the process steps and the thickness of the microarray lens 126, in the mean while increasing the matching accuracy of the microarray lens 126 corresponding to each LED element 122. Finally, the image light source with collimation is converted into the multi-array mixed light source with softening effect via the mixing optical module 16.
(21) Due to the type of the LED array chip, the volume of the LED array module 12 can be made smaller, and since the epitaxial structures of the LED elements 122 are directly formed by an epitaxial process, the process required for the manufacturing can be reduced, and the arrangement accuracy of the LED elements 122 can be improved, at the same time, the selection conditions for the pitch and arrangement of the LED elements 122 between each other are also more comfortable.
(22) Besides, since the LED elements 122 are formed through conjunctively disposing the LED epitaxial structures on the substrate 124 directly via the epitaxial process, the thermal resistance of the LED array module 12 can be effectively reduced to increase the antipyretic and heat-dissipating ability of the LED elements 122.
(23) On the other hand, the LED elements 122 do not need to be fixed to the substrate 124 by means of, so that the life of the LED elements 122 formed by the adhesive spot welding process will not reduce nor the failure condition will occur.
(24) In conclusion, the thickness of the used LED array module 12 may not be greater than the average thickness of the shell 22 of the mobile phone (for example, no more than 1 mm) to provide the required functionality. Therefore, the shell 22 of the mobile phone does not need to be modified as part of the shell protruding to accommodate the LED array module 12, and the volume waste in the shell 22 of the mobile phone can be avoided.
(25) Please refer to
(26) In the practical application, the external surface of the shell 22 has a corresponding groove, so that the optical module 14 and the mixing optical module 16 can be fixed to the shell 22 of the mobile phone through sliding into the groove to reduce the replacement difficulty, and improve the accuracy of the positions of the optical module 14 and the mixing optical module 16 corresponding to the LED array module 12.
(27) Besides, the shell 22 of the mobile phone has a light outlet 221, and the LED array module 12 is configured at the position corresponding to the light outlet 221 in the mobile phone, so that the generated image light source can pass through the light outlet 221 to the optical module 14 or the mixing optical module 16.
(28) Please refer to
(29) Compared with the prior art, the mobile phone of the microarray LED flash 1 of the present invention can maintain the appearance of the original design at ordinary times because the thickness of the LED array module 12 is smaller than the average thickness of the mobile phone, and the optical module 14 and the mixing optical module 16 can be detached when not in use, so that the mobile phone will not be towering in the visual experience and the structure and shape.
(30) The above-mentioned optical module 14 adjusts the focal length, size and display shape of the image for projecting. In an embodiment of the present invention, the optical module 14 can be divided into a plurality of different types of optical modules 14 according to the focusing distance, and combines with the LED array module 12 in the optional way, for example, the optical module 14 can be divided into a short focus type module with a distance about 15 cm and a long focus type module with a distance about 2 meters to match different use environments. In another embodiment of the present invention, the optical module 14 can be built in an autofocus element to optimize the focal length of the projected image, so that only one optical module 14 is needed to achieve the projection function in different environments. In the practical application, the optical module 14 can further comprise the functions of image brightness adjustment and color shift adjustment to project a more distinct projection image on the different background screens.
(31) In conclusion, the microarray LED flash of the present invention generates the flashlight with adjustable color and light pattern via the LED array module configured in the phone shell of the mobile phone through combining with the outboard mixing optical module, and the present invention can further use the outboard optical module to substitute for the mixing optical module for projecting the image. Compared with the prior art, the microarray LED flash of the present invention directly generates the required patterning light source via the LED array chip and is combined with the mixing optical module to generate the flashlight with adjustable color and light pattern thereby reducing the thickness and volume to be embedded in the mobile phone simultaneously. Besides, the patterning light source can be projected into viewable image through substituting the optical module for the mixing optical module thereby upgrading to a mobile phone with the projection function.
(32) With the examples and explanations mentioned above, the features and spirits of the invention are hopefully well described. More importantly, the present invention is not limited to the embodiment described herein. Those skilled in the art will readily observe that numerous modifications and alterations of the device may be made while retaining the teachings of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.