1. Fields of the invention
The present invention relates to a light tube, especially to a light emitting diode (LED) light tube.
2. Descriptions of Related Art
Along with the increasing of the living standard, lamps and decorative lighting have received more attention. Once the proper decorative lighting is applied to exterior or interior decoration, it provides not only practical utility but also environment beautification. Now the most common light source for decorative lighting is fluorescent lamp.
A fluorescent lamp is a gas-discharge lamp that uses electricity to excite mercury vapor. The lamp is filled with a gas containing mercury vapor formed by a few drops of mercury and argon. The pressure inside the lamp is around 0.3% of atmospheric pressure and mercury atoms are about one thousandth of the whole gas atoms. By applying current, the gas is excited to produce light. After long term use, dark marks are formed at the lamp ends. This is due to that electrodes are arranged at two ends of the fluorescent lamp and the electrodes are sputtered by collision of argon to form dark marks on lamp wall of two sides of the fluorescent lamp. When both ends of the fluorescent lamp become dark, the lamp is near the end of the life. The light emitted is reduced due to the deposition. Although the fluorescent lamp has an advantage of large light emitting area, it still has a number of shortcomings such as high power consumption and a short life.
In recent years, along with on-going development and broader applications of LED technology, LED related products have become daily essentials. LED emits light by a low-voltage high current way. Moreover, the LED features on long life, low power consumption and lack of heat radiation. Due to above advantages, LED lighting has been developed for environmental friendliness.
However, LED has an overheating problem. Once LED overheats, it dims with reduced light emitting efficiency. Thus LED lights also get the similar problem. In order to solve the overheating problem of the LED light, a plurality of heat dissipation fins is disposed on a heat dissipation member of the present invention. Thus heat dissipation is enhanced, overheating is prevented, and lighting efficiency of the LED light is improved.
A further problem of the LED light is related to assembling. Generally, a printed circuit board is attached or fastened on the heat dissipation member while assembling the LED light. This cause more complicated assembling process and increased cost of assembling. In order to simplify the assembling process and reduce the cost of assembling, the present invention fixes the printed circuit board by a light cover. Thus there is no need to use any other components for fixing the printed circuit board on the heat dissipation member. Therefore, the assembling process is simplified and the cost of assembling is reduced.
Therefore it is a primary object of the present invention to provide a LED light tube in which a tube-shaped heat dissipation base is disposed with a plurality of heat dissipation fins so as to enhance heat dissipation effect thereof. Thus the LED overheating can be avoided and the lighting emitting efficiency of the LED light is further improved.
It is another object of the present invention to provide a LED light tube in which a printed circuit board is fixed directly by a light cover and there is no need to use any other components for fixing the printed circuit board on the tube-shaped heat dissipation base. Thus the assembling process is simplified and the cost of assembling is reduced.
In order to achieve above objects, a LED light tube of the present invention includes a tube-shaped heat dissipation base, a printed circuit board and a light cover. The tube-shaped heat dissipation base is disposed with a first fix member on each of two sides thereof and a plurality of heat dissipation fins. The printed circuit board is arranged at the tube-shaped heat dissipation base and the light cover is disposed on the tube-shaped heat dissipation base correspondingly. A second fix member is disposed on each of two sides of the light cover. The second fix member is fixed with the first fix member. The light cover further includes an outer light emitting layer, an inner light emitting layer and a hollow part formed by a gap between the inner light emitting layer and the outer light emitting layer. The inner light emitting layer of the light cover presses on the printed circuit board in order to fix the printed circuit board on the tube-shaped heat dissipation base.
The structure and the technical means adopted by the present invention to achieve the above and other objects can be best understood by referring to the following detailed description of the preferred embodiments and the accompanying drawings, wherein:
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Moreover, although each LED 121 is a point light source, light emitted from the outer light emitting layer 140 and the inner light emitting layer 142 of the light cover 14 and projected to a surface of an object still forms a plurality of light points when the light from each LED 121 is not even. Thus in order to make light emitted from each LED 121 become more even or increase luminance of the light from the LED 121, the LED light of the present invention is added with at least one optical element. The optical element can be a diffuser and/or a brightness enhancement film. The diffuser makes light from the LED 121 becomes even so that light through the light cover 14 doesn't form a plurality of light points. The brightness enhancement film further reflects light from the LED 121 so as to increase luminance of the light from the plurality of LED 121. Furthermore, in order to increase diversity of light patterns, the optical element can be a fluorescent plate having ability to change wavelength of the light from the LED 121 and generate light with different colors. Thus the efficiency of the LED light tube 1 is enhanced effectively. The following embodiments illustrate the addition of optical elements to the present invention.
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Besides disposition of the optical element 16 for evenness of the light emitted from the LED 121, wavelength conversion of the light emitted from the LED 121 and increased luminance of the light emitted from the LED 121, a plurality of optical particles is added into the light cover 14 and this also makes the light emitted from the LED 121 become even, convert wavelength of the light emitted from the LED 121 and increase luminance of the light emitted from the LED 121 after the light emitted from the LED 121 passing the light cover 14 with these optical particles. This is due to that the optical particles include a plurality of diffusion particles, a plurality of fluorescent particles and/or a plurality of brightness enhancement particles. The diffusion particles homogenize the light emitted from the LED 121 and the fluorescent particles converts wavelength of the light from the LED 121 while the brightness enhancement particles reflect the light from the LED 121 so as to improve luminance of the light emitted from the LED 121.
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In summary, a LED light of the present invention includes a tube-shaped heat dissipation base disposed with a plurality of heat dissipation fins for improving heat dissipation effect of the LED light and further increasing lighting emitting efficiency of the LED light. Moreover, when the light cover is fixed on the tube-shaped heat dissipation base, a light emitting layer in the light cover directly presses a printed circuit board against the tube-shaped heat dissipation base so as to fix the printed circuit board on the tube-shaped heat dissipation base. Thus there is no need to use any other components for fixing the printed circuit boards. Furthermore, the present invention is disposed with optical elements or the light cover is added with a plurality of optical particles so as to homogenize the light from the LED, convert wavelength of the light from the LED, or even increase luminance of the light from the LED. In addition, an optical pattern is engraved on a surface of the light cover for increasing radiation directions of output light from the LED. In order to further improve heat dissipation effect of the LED light, a heat dissipation slot is disposed on the tube-shaped heat dissipation base with the plurality of heat dissipation fins for enhancing convection of air currents inside and outside the tube-shaped heat dissipation base and further improving heat dissipation effect of the LED light. The LED light is further arranged with two rotary joints on two ends of the tube-shaped heat dissipation base as well as the light cover. The rotary joint is rotated for changing the angle of two pins of the joint so as to ensure correct lighting direction of the LED light assembled with a light holder.
Additional advantages and modifications will readily occur to those skilled in the art. Therefore, the invention in its broader aspects is not limited to the specific details, and representative devices shown and described herein. Accordingly, various modifications may be made without departing from the spirit or scope of the general inventive concept as defined by the appended claims and their equivalents.
Number | Date | Country | Kind |
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098203010 | Feb 2009 | TW | national |