Abstract:
A method for manufacturing micro-lenses of image sensors includes providing a semiconductor substrate having at least a planarization layer, performing a first photolithography process to form a first set of micro-lens blocks on the planarization layer, performing a first baking process to form a first set of micro-lenses, performing a first surface treatment to harden surfaces of the first set of micro-lenses, performing a second photolithography to form a second set of micro-lens blocks on the planarization layer, and performing a second baking process to form a second set of micro-lenses.
Abstract:
A manufacturing process and an apparatus for printing imprint on defective board are provided. An automatic printing device is used for replacing operator, so as to reduce manpower and to increase the correctness and veracity of defect mark printing. The manufacturing process includes the following steps: first, an image sensor captures an image of a defect mark and transmits the image to a processing unit for data processing. Next, the data is compared, and an inkjet head is notified of the correct printing position to print ink on the customer identification mark of the printed circuit board.
Abstract:
A method of forming a micro device includes using a light source which has a first wavelength beaming to a photo resist which is suited for a second wavelength, developing the photo resist which is suited for the second wavelength to form a plurality of sensitization block, and performing a heating process on the sensitization block to form a micro device.
Abstract:
An image sensor device including a substrate, a plurality of photo sensors, a dielectric layer, a planar layer, a plurality of color filters, a plurality of microlenses, and a shield layer is provided. The photo sensors are disposed in the substrate, and the dielectric layer is disposed over the photo sensors and the substrate. The planar layer is disposed over the dielectric layer. The color filters are disposed in the planar layer, wherein each of the color filters is disposed over each of the photo sensors. The microlenses are disposed over the planar layer, wherein each of the microlenses is disposed over each of the color filter. The shield layer including a plurality of openings is disposed in the planar layer and is disposed under or over the color filters, wherein each of the openings is disposed over each of the color filters.
Abstract:
A security apparatus for motor vehicles is disclosed, and is featured in integrating all the components into one body as an all-in-one form and in filling resin into the housing of the security apparatus so as to completely cover an electric circuit unit and the interior surface of a siren. The present invention is alternately featured in providing a metal cover covering the externally-exposed surface of the siren for protecting the siren; providing fastening elements each of which has a head hole of special pattern, thereby preventing the security apparatus from being unlawfully dismantled; and providing several detecting modes and power-saving modes, so as to effectively and reliably provide the antitheft function for motor vehicles.
Abstract:
A method of manufacturing a printhead for raising its product acceptance rate and improving its quality is provided. The method of manufacturing printheads includes steps of providing a base layer, forming a pattern layer on the base layer by a semi-conductor manufacturing process, forming a dry film of a channel barrier layer having an ink channel, a flow channel and plural ink cavities on the pattern layer; and adhering a nozzle plate on the dry film of the channel barrier layer by thermal compression. The pattern layer further includes a flow pattern and a base pattern surround a central location reserved for the ink channel, wherein the base pattern comprises at least a heating layer and a passivation layer, and the flow pattern is made of the same material and at the same height as the base pattern.
Abstract:
A structure, a fabrication method and an application of an overlay mark. The overlay mark structure has an outer mark and an inner mark. The outer mark encloses a cross area that has two central axes. The inner mark has four strip patterns arranged in two central axes and extend outwardly towards four directions from the central part of the closed cross area.
Abstract:
A method for manufacturing a color filter array having hybrid color filters includes providing a high-grade photoresist and a low-grade photoresist, forming a plurality of first color filters on a substrate, and forming a plurality of second color filters and a plurality of third color filters on the substrate. The first color filters include the high-grade photoresist, and the second color filters and the third color filters include the low-grade photoresist. The high-grade photoresist of the first color filters includes a first amount of large size pigments in one unit area and the low-grade photoresists of the second color filters and the third color filters include a second amount of large size pigments in one unit area. A ratio of the second amount to the first amount is equal to or larger than 1.
Abstract:
An image sensor comprises a plurality of color filtering elements, a plurality of lenses and an image sensing device, wherein the lenses are correspondingly formed over the color filtering elements, and the image sensing device having a sensing area engaged with the color filtering elements.
Abstract:
A heat-dissipating structure of lighting includes a main body having a plurality of side surfaces; at least one heat pipe connecting to the main body, wherein each heat pipe has a hot end embedded in the main body and a cold end having a contacting surface; and at least one external heat sink mating to the contacting surface. The instant disclosure also provides a lighting module having said heat-dissipating structure.