1. Technical Field
The present invention relates to light-emitting diode holders, and more particularly, to a halation-free light-emitting diode holder that prevents a light-emitting diode from giving a light pattern undesirably circled by a light halation so as to improve the luminance uniformity of the light-emitting diode.
2. Description of Related Art
At present, light-emitting diodes have been supplied as red light-emitting diodes, green light-emitting diodes, and blue light-emitting diodes, each giving the designated color by adopting a different material. However, a light-emitting diode that directly emits white light would be more versatile when used with filters of different colors and serves as a convenient and economical approach to various practical needs. Thus, development of white LEDs has long been targeted by the related researchers and manufacturers.
For example, U.S. Pat. No. 6,351,069 has described the use of a fluorescent material which is activated by a blue light-emitting diode to fluoresce with yellow light by absorbing the received blue light, such as YAG:Ge fluorescent, in achieving the resultant white light emitting of the light-emitting diode. In order to improve the light-emitting diode in color rendering, the use of another fluorescent material fluorescing with red light when activated by blue light has been further proposed, so as to allow the light-emitting diode to give light more realistically.
In the conventional white light-emitting diode, an optical gel containing a fluorescent substance is applied on the LED chip and the light emitted by the LED chip has to pass through the optical gel to activate the fluorescent substance prior to being presented as white light. However, when applied directly to the LED chip, the optical gel may have the fluorescent substance precipitated unevenly on the chip, which leads to uneven thickness of the fluorescent substance over the LED chip. Thus, the light emitted by the LED chip passing through the optical gel activates an uneven amount of the fluorescent substance, which causes disparate illuminance of the light-emitting diode.
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However, as shown in
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Hence, the existing light-emitting diodes still have shortcomings in both structure and use to be addressed and solved. While the related manufacturers have spent much for solutions, there is still lack of a practical design so the currently available products remain far from perfect. It is thus the related manufacturers' common challenge to create a novel halation-free light-emitting diode holder.
In view of this need, the inventor of the present invention with his years of experience in this art, repeatedly researched and finally invented the herein disclosed halation-free light-emitting diode holder, thereby improving the existing light-emitting diodes in practicability.
One objective of the present invention is to, with the attempt to overcome the defects of the existing light-emitting diodes, provide a halation-free light-emitting diode holder wherein a die holder is formed with a retaining portion on a second surface thereof for preventing the fluorescent-substance-free optical gel from climbing up along the second surface and forming a raised periphery, which thereby prevents a light halation appearing around the light pattern produced by the light-emitting diode.
Another objective of the present invention is to provide a halation-free light-emitting diode holder, wherein a die holder has nano-material layers on a second surface thereof so as to minimize the adhesion between the optical gel and the second surface, and thus prevent the optical gel from climbing along the second surface due to the capillarity, therefore being more utile.
Still another objective of the present invention is to provide a halation-free light-emitting diode holder, wherein a die holder is configured such that the area of a first surface is greater than the area of an opened-end, and the optical gel is impeded by gravity from climbing, thereby eliminating a light halation from appearing around the light pattern produced by the light-emitting diode, and improving the light-emitting diode in luminance uniformity, therefore being more utile.
The present invention achieves the objectives and solves the technical problems by adopting the technical scheme recited below. A halation-free light-emitting diode holder according to the present invention includes: a body having a die holder that includes a first surface, a second surface, and an opened end; and a retaining portion being provided on the second surface.
The present invention further achieves the objectives and solves the technical problems by adopting also the technical means proposed below.
In the aforementioned halation-free light-emitting diode holder, the retaining portion is formed as a raised segment.
In the aforementioned halation-free light-emitting diode holder, the retaining portion is a raised segment peripherally formed on the second surface.
In the aforementioned halation-free light-emitting diode holder, the retaining portion is formed as a dented segment.
In the aforementioned halation-free light-emitting diode holder, the retaining portion is a dented segment peripherally formed on the second surface.
In the aforementioned halation-free light-emitting diode holder, the retaining portion is formed as a crenelated segment.
In the aforementioned halation-free light-emitting diode holder, the second surface has a first region provided with a first nano-material layer, wherein the first region is smaller than or equal to the second surface in area.
In the aforementioned halation-free light-emitting diode holder, the second surface has at least one first region and at least one second region, wherein the first region is provided with a first nano-material layer while the second region is provided with a second nano-material layer.
In the aforementioned halation-free light-emitting diode holder, the area of the first surface is greater than the area of the opened-end.
The present invention achieves the objectives and solves the technical problems by further adopting the technical scheme recited below. A halation-free light-emitting diode holder according to the present invention includes: a body having a die holder that includes a first surface, a second surface, and an opened end, wherein the second surface has at least one first region; and a first nano-material layer provided on the first region.
In the aforementioned halation-free light-emitting diode holder, the first region is smaller than or equal to the second surface in area.
In the aforementioned halation-free light-emitting diode holder, the second surface further has at least one second region, wherein the second region is provided with a second nano-material layer.
In the aforementioned halation-free light-emitting diode holder, the second surface is provided with a retaining portion.
In the aforementioned halation-free light-emitting diode holder, the second surface is provided with a retaining portion formed as a raised segment.
In the aforementioned halation-free light-emitting diode holder, the second surface is provided with a retaining portion, which is a raised segment peripherally formed on the second surface.
In the aforementioned halation-free light-emitting diode holder, the second surface is provided with a retaining portion formed as a dented segment.
In the aforementioned halation-free light-emitting diode holder, the second surface is provided with a retaining portion, which is a dented segment peripherally formed on the second surface.
In the aforementioned halation-free light-emitting diode holder, the second surface is provided with a retaining portion formed as a crenelated segment.
In the aforementioned halation-free light-emitting diode holder, the area of the first surface is greater than the area of the opened-end.
The present invention achieves the objectives and solves the technical problems by additionally adopting the technical scheme recited below. A halation-free light-emitting diode holder according to the present invention includes: a body having a die holder that includes a first surface, a second surface, and an opened end, wherein the area of the first surface is greater than the area of the opened-end.
The present invention further achieves the objectives and solves the technical problems by adopting also the technical means proposed below.
In the aforementioned halation-free light-emitting diode holder, the body is of a structure of stacked multilayer ceramic.
In the aforementioned halation-free light-emitting diode holder, the second surface has a first region provided with a first nano-material layer, wherein the first region is smaller than or equal to the second surface in area.
In the aforementioned halation-free light-emitting diode holder, the second surface has at least one first region and at least one second region, wherein the first region is provided with a first nano-material layer while the second region is provided with a second nano-material layer.
In the aforementioned halation-free light-emitting diode holder, the second surface is provided with a retaining portion.
In the aforementioned halation-free light-emitting diode holder, the second surface is provided with a retaining portion formed as a raised segment.
In the aforementioned halation-free light-emitting diode holder, the second surface is provided with a retaining portion, which is a raised segment peripherally formed on the second surface.
In the aforementioned halation-free light-emitting diode holder, the second surface is provided with a retaining portion formed as a dented segment.
In the aforementioned halation-free light-emitting diode holder, the second surface is provided with a retaining portion, which is a dented segment peripherally formed on the second surface.
In the aforementioned halation-free light-emitting diode holder, the second surface is provided with a retaining portion formed as a crenelated segment.
As compared with the prior-art devices, the present invention has obvious advantages and beneficial effects. By the aforementioned technical schemes, the halation-free light-emitting diode holder of the present invention at least contributes to the following advantages and beneficial effects:
1. By the retaining portion formed on the second surface of the die holder, the fluorescent-substance-free optical gel is blocked from climbing along the second surface so as not to form a raised periphery that otherwise causes a light halation around the light pattern produced by the light-emitting diode.
2. By the nano-material layers provided on the second surface of the die holder, the adhesion between the optical gel and the second surface is reduced, so the optical gel is prevented from climbing along the second surface under the effect of the capillarity.
3. In the specially configured die holder, the area of the first surface is greater than the area of the opened-end, so the optical gel is prevented by the gravitation from climbing, thereby eliminating a light halation around the light pattern produced by the light-emitting diode, and in turn improving the luminance uniformity of the light-emitting diode.
In brief, the present invention relates to a halation-free light-emitting diode holder, which includes a body and a retaining portion. The body includes a die holder, and the die holder has a first surface, a second surface, and an opened end. The retaining portion is provided on the second surface. In virtue of the retaining portion, the optical gel is blocked from climbing along the second surface due to the capillarity. In addition, either having nano-material layers formed on the second surface, or having the area of the first surface greater than the area of the opened end can help prevent the optical gel from climbing along the second surface. Thereby, a light halation is eliminated from a periphery of a light pattern of the resultant light-emitting diode, and the light-emitting diode is improved in luminance uniformity. The present invention thus has the foregoing numerous advantages and beneficial effects, by which it makes significant improvement to the structure and functions to the product. Its obvious technical progress brings about useful and practical effects, and exactly superiors to the existing light-emitting diode products, thus being a novel, progressive and practical design.
The invention as well as a preferred mode of use, further objectives and advantages thereof will be best understood by reference to the following detailed description of illustrative embodiments when acquire in conjunction with the accompanying drawings, wherein:
For further illustrating the means and functions by which the present invention achieves its objectives, the following description, to be read in conjunction with the accompanying drawings and preferred embodiments, is set forth as below to illustrate the implement, structure, features and effects of the halation-free light-emitting diode holder of the present invention.
The following preferred embodiments together with the accompanying drawings are made to clearly exhibit the above-mentioned and other technical contents, features and effects of the present invention. Through the exposition by means of the specific embodiments, people skilled in the art would further understand the technical means and effects the present invention adopts to achieve the above-indicated objectives. However, the accompanying drawings are intended for reference and illustration, but not limiting the present invention.
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The body 41 has a die holder. The die holder has a first surface 411, a second surface 412, and an opened end 413 (seeing
The first surface 411 is a lower bottom of the die holder for receiving a light-emitting diode chip 10, which may be adhered to the first surface 411 by means of colloidal silver.
The second surface 412 forms a lateral wall of the die holder and generally is an inclined surface.
The opened end 413, as shown in
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As can be seen in
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Referring to 4C, the retaining portion 42 is a crenelated segment with raised and dented parts alternated vertically on the second surface 412. The raised part blocks the non-fluorescent optical gel 21 from climbing along the second surface 412. Where there is the non-fluorescent optical gel 21 somehow climbing beyond the raised part, the excessive non-fluorescent optical gel 21 can flow into the dented part. Thereby, the alternately arranged raised and dented parts of the retaining portion 42 can prevent the non-fluorescent optical gel 21 from climbing along the second surface 412 and forming a raised periphery of the non-fluorescent optical gel 21.
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The first region 414 is a circular region on the second surface 412, and may be located at anywhere applicable on the second surface 412. As shown in
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Similarly, where it is desired to arrange multiple layers of non-fluorescent optical gel 21 and multiple layers of fluorescent optical gel 22 in the die holder, the non-fluorescent optical gel 21 and the fluorescent optical gel 22 may be applied to corresponding sites in all the first regions 414 and second regions 415. This is done in a way so that the first regions 414 and the second regions 415 are arranged alternately, thereby ensuring that every layer of the optical gel 21, 22 are prevented from climbing along the second surface 412.
Furthermore,
The light-emitting diode holder in the present embodiment achieves the objective of eliminating the light halation 31 around the light pattern produced by the light-emitting diode by changing the configuration of the second surface 412 of the die holder. Preferably, a retaining portion 42 may be provided on the second surface 412 of the die holder, and a first nano-material layer 51 is also provided in at least one first region 414 of the second surface 412, or additionally the shape of the die holder is made in such a way that the area A′ of the first surface 411 of the die holder is larger than the area A of the opened end 413. Consequently, the light halation 31 is completely eliminated from around the light-emitting diode.
The present invention provides a halation-free light-emitting diode holder, which includes a body and a retaining portion. The body has a die holder, which includes a first surface, a second surface, and an opened end. The retaining portion is provided on the second surface. By the retaining portion, the optical gel in the die holder is blocked from climbing along the second surface due to the capillarity. Nano-material layers further formed on the second surface or the area of the first surface greater than the area of the opened end also helps to prevent the optical gel from climbing along the second surface. Thereby, a light halation is eliminated from a periphery of a light pattern of the resultant light-emitting diode, and the light-emitting diode is improved in luminance uniformity.
The present invention has been described with reference to the preferred embodiments and it is understood that the embodiments are not intended to limit the scope of the present invention. Moreover, as the contents disclosed herein should be readily understood and can be implemented by a person skilled in the art, all equivalent changes or modifications which do not depart from the concept of the present invention should be encompassed by the appended claims.
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/CN08/00166 | 1/23/2008 | WO | 00 | 6/3/2010 |