The present invention relates to the art of LED (Light Emitting Diode), more particularly to a manufacturing method of a retaining wall of an LED used in a portable electric product.
With the quick development of electric products, more especially, the portable electric products, such as cellphone, notebook etc., people have stronger requirements for the functions not only of the acoustic performance of communication, but also of the optical performance of the camera. Thereby, LED lens equipped with the portable electronic devices for providing photographic functions are more and more used.
A related LED lens generally comprises a substrate, an LED unit disposed on the substrate, and a lens unit for packaging the LED unit.
However, the cost of the lens unit is high as the Lens unit is manufactured by die casting. For solving the problem of high cost, another packaging method following the process sequence “printing-drying-printing” is used to form a retaining wall by screen printing. In this packaging method, simple drying process is used to form the retaining wall by drying the printing materials, which leads the retaining wall to deform due to the pressure from the printing screen during reduplicate printing processes. If the retaining wall needs to reach 150 um high, at least ten times of printing processes should be applied, which seriously lower the efficiency of the packaging process.
In view of above, a new manufacturing method of a retaining wall of an LED is disclosed to solve the above mentioned problems.
The foregoing advantages of the invention will be appreciated more fully from the following further description thereof with reference to the accompanying drawings wherein:
As shown in
step A: providing a ceramic substrate 1;
providing a soft mold 4 having a plurality of molding concaves 41. The material of the soft mold is polymeric material, which may be selected from Polydimethysiloxane, Polyurethane acrylate, Epoxy and Polyethylene terephthalate, wherein the material of the soft mold is selected according to the hardness of the polymeric material, and the soft mold is formed by photolithography process;
providing ceramic slurry 2;
step B: as shown in
filling the ceramic slurry 2 into the corresponding molding concaves 41;
step C: as shown in
step D: forming a plurality of retaining walls 3 by curing the ceramic slurry 2 using UV curing process and connecting the retaining walls 3 on the ceramic substrate 1 by pressing the soft mold 4;
step E: as shown in
The retaining walls 3 are cured by the ceramic slurry 2 and directly shaped by the molding concave 41, thereby preventing the distortion or deformation of the retaining walls 3. A height of each retaining wall is 50 μm to 500 μm and a wide of each retaining wall is 50 μm to 200 μm.
In the embodiment of the present invention, the electrode groups 5 are formed on the ceramic substrate 1 by silver plating, and in alternative embodiments, the electrode groups 5 may be formed by other available methods, such as by printed circuit boards (PCB), flexible printed circuit broads (FPCB), plating copper lines, and so on.
Optionally, the ceramic slurry 3 comprises 60-80 percent inorganic matters and 20-40 percent organic matters. The inorganic matters comprise white glass-ceramic and the organic matters comprise dispersant agent, polymer, light initiator or solvent.
Compared with the traditional technology, the manufacturing method of the present invention is quite simple and can greatly reduce the process steps of screen printing for improving the production efficiency. The retaining wall is formed by white ceramic slurry, which can further improve reflectivity of the retaining wall for increasing heat transfer and luminous efficiency. Therefore, the reliability of the LED can be improved.
Although the above discussion discloses various exemplary embodiments of the invention, it should be apparent that those skilled in the art can make various modifications that will achieve some of the advantages of the invention without departing from the true scope of the invention.
Number | Date | Country | Kind |
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201210166648.7 | May 2012 | CN | national |