This application claims priority to Chinese Patent Application No. 201410439447.9 filed on Sep. 1, 2014, the contents of which are incorporated by reference herein.
The disclosure relates to an illuminating device, and particularly to an illuminating device with high light intensity performance.
Increasing an angle of light may improve a uniformity of light, which will decrease a light intensity.
Implementations of the present technology will now be described, by way of example only, with reference to the attached figures.
It will be appreciated that for simplicity and clarity of illustration, numerous specific details are set forth in order to provide a thorough understanding of the embodiments described herein. However, it will be understood by those of ordinary skill in the art that the embodiments described herein can be practiced without these specific details. In other instances, methods, procedures and components have not been described in detail so as not to obscure the related relevant feature being described. Also, the description is not to be considered as limiting the scope of the embodiments described herein. The drawings are not necessarily to scale and the proportions of certain parts have been exaggerated to better illustrate details and features of the present disclosure.
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The circuit board 20 comprises a first side 21 as a front surface and a second side 22 as a back surface. The first side 21 is opposite to the second side 22. The LED elements 10 are arranged on the front surface which is also the first side 21. In at least one embodiment, a single circuit board can have one or more LED elements.
The first envelope 31 covers a back surface of the circuit board 20. In this embodiment, the first envelope 31 covers the second side 22 of the circuit board 20. The first envelope 31 defines a first opening 310. The first opening 310 faces the second side 22 of the circuit board 20. An inner surface 311 is defined in the first envelope 31. The inner surface 311 faces the second side 22 of the circuit board 20. The inner surface 311 is a reflective surface. In at least one embodiment, the circuit board 20 can be arranged on the inner surface 311 of the first envelope 31 by supporters (not shown). In this embodiment, the circuit board 20 can be arranged on holders (not shown) formed on the two ends of the illuminating device.
The second envelope 32 covers the front surface where the LED elements 10 arranged. In this embodiment, the second envelope 32 covers the first side 21 of the circuit board 20. The second envelope 32 defines a second opening 320. The second opening 320 is opposite to the first opening 310 of the first envelope 31. The second opening 320 faces the first side 21 of the circuit board 20. A second end surface 3201 is defined on the second opening 320. The second end surface 3201 can be coupled to the inner surface 310 of the first envelope 31. The LED elements 10 and the circuit board 20 are surrounded by the first envelope 31 and the second envelope 32 together. A width S of the circuit board 20 is less than a width D of the second opening 320 of the second envelope 32. The second envelope 32 can be a condenser lens. The second envelope 32 is symmetrical about an optic axis M-M of the LED element 10. The second envelope 32 defines a first surface 321 and a second surface 322. The first surface 321 is opposite to the second surface 322. The first surface 321 faces the LED elements 10. The second surface 322 is back to the LED elements 10. The second envelope 32 can be made of transparent material. The second envelope 32 can comprise fluorescent powders.
The first surface 321 is a smooth surface. The second surface 322 comprises a fresnel surface 400. The fresnel surface 400 comprises a raised surface 323 and a plurality of bulges 3230. The raised surface 323 protrudes away from the second surface 322. The raised surface 323 is symmetrical about the optic axis M-M of the LED element 10. The bulges 3230 are located at two sides of the raised surface 323. Each bulge 3230 comprises a flat surface 324 and a curve surface 325. In one bulge 3230, the flat surface 324 is nearer to the optic axis M-M than the curve surface 325 is. The flat surface 324 is parallel to the optic axis M-M. The curve surface 325 protrudes away from the second surface 322.
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The embodiments shown and described above are only examples. Many details are often found in the art such as the other features of an illuminating device. Therefore, many such details are neither shown nor described. Even though numerous characteristics and advantages of the present technology have been set forth in the foregoing description, together with details of the structure and function of the present disclosure, the disclosure is illustrative only, and changes may be made in the detail, especially in matters of shape, size and arrangement of the parts within the principles of the present disclosure up to, and including the full extent established by the broad general meaning of the terms used in the claims. It will therefore be appreciated that the embodiments described above may be modified within the scope of the claims.
Number | Date | Country | Kind |
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201410439447.9 | Sep 2014 | CN | national |