Abstract:
A liquid crystal on silicon (LCOS) display device using white light of light emitting diode (LED) as light source is provided. The LCOS display device comprises a white light source, a color separation and polarization device, and a LCOS panel device. The white light source is provided for emitting a white light. The color separation and polarization device is disposed on a light path of the white light, and adapted for separating and polarizing the white light to obtain a plurality of polarized monochromatic lights. The LCOS panel device is disposed on a light path of the polarized monochromatic lights, and the polarized monochromatic lights are partially polarized according to an inputted image signal. Thereafter, the partially polarized monochromatic lights are combined to obtain an output image signal.
Abstract:
A frame attaching process is described. The frame attaching process is adapted for attaching a transparent substrate to an active area of a chip using a frame, wherein the active area of the chip has a functional area. In the frame attaching process, the frame can be formed on the attaching surface of the transparent substrate or on the active area of the chip. Then, the attaching surface of the transparent substrate is attached to the active area of the chip using the frame under a negative pressure. Finally, the frame is solidified. Therefore, in the frame attaching process, the possibility of frame cracking can be reduced and the yield of the frame attaching process can be improved.
Abstract:
A multi-primary-color light splitting and combining system, includes a dichroic device, receiving an incident light beam and splitting into a first light beam having a first wavelength range and a second light beam having a second wavelength range. The first wavelength range in wavelength value is larger than the second wavelength range. A first polarized beam splitter receives the first light beam and splits out a first polarization beam having a first predetermined polarization state. A second polarized beam splitter receives the second light beam and splits out a second polarization beam having a second predetermined polarization state. A first and a second reflective displaying panels respectively receive the first and second polarization light beams, and reflect first and second sets of image information with respect to multiple primary colors. A polarized beam splitter combines first and second sets of image information to form an image light beam.
Abstract:
A pixel driving method is provided. The driving method includes selecting subpixels from different frame periods with different selecting modes in order to form a pixel array, and driving the pixel array. Different pixel arrays that are formed with subpixels selected from different frame periods are shifted by a distance of one subpixel along the row direction, the column direction, or both directions from each other. Thus, the image resolution of a display panel is improved.
Abstract:
A liquid crystal on silicon (LCOS) display device using white light of light emitting diode (LED) as light source is provided. The LCOS display device comprises a white light source, a color separation and polarization device, and a LCOS panel device. The white light source is provided for emitting a white light. The color separation and polarization device is disposed on a light path of the white light, and adapted for separating and polarizing the white light to obtain a plurality of polarized monochromatic lights. The LCOS panel device is disposed on a light path of the polarized monochromatic lights, and the polarized monochromatic lights are partially polarized according to an inputted image signal. Thereafter, the partially polarized monochromatic lights are combined to obtain an output image signal.
Abstract:
A frame attaching process is described. The frame attaching process is adapted for attaching a transparent substrate to an active area of a chip using a frame, wherein the active area of the chip has a functional area. In the frame attaching process, the frame can be formed on the attaching surface of the transparent substrate or on the active area of the chip. Then, the attaching surface of the transparent substrate is attached to the active area of the chip using the frame under a negative pressure. Finally, the frame is solidified. Therefore, in the frame attaching process, the possibility of frame cracking can be reduced and the yield of the frame attaching process can be improved.
Abstract:
A method of manufacturing a color filter array is provided. The manufacturing method is as follows. Step (a), form a patterned first photoresist layer over a substrate. The patterned first photoresist layer has a plurality of openings that exposes a portion of the substrate. Step (b), form a filter material layer on the exposed area of the substrate. Step (c), form a second photoresist layer on the filter material layer. Step (d), remove the first and the second photoresist layer such that the filter material layer forms a plurality of first filter films. Step (e), repeat step (a) to (c) at least once and remove the first and the second photoresist layer to form a plurality of second filter films in areas except the first color filter films. The aforementioned method of forming the color filter array can form filter films having perpendicular sidewalls on the substrate.
Abstract:
An LED table lamp including a base, a holder, and a light emitting device is provided. An end of the holder is connected to the base, and the light emitting device includes a lampshade pivotally connected to another end of the holder, a reflecting thin film and an LED light module. The lampshade has at least a side-wall and a top-wall connected the side-wall. The reflecting thin film is disposed on the top-wall and the LED light module is disposed in the side-wall. The light emitted from the LED light module is reflected several times by the reflecting thin film to render the brightness of the light emitted out of the lampshade substantially uniform.
Abstract:
A vehicle headlamp is provided. The vehicle headlamp includes a lampshade, a lamp base provided at the lampshade, a light source module provided at the lamp base, a light source adjusting mechanism connected between the lampshade and the lamp base and a heat dissipation module. Wherein, lampshade has an opening, and the light source adjusting mechanism can adjust the relative position between the lampshade and the lamp base. In addition, the heat dissipation module provided between the light source module and the lamp base can extend to the external side of the lampshade via the opening.
Abstract:
A light emitting diode (LED) table lamp including a base, a support arm, a pivot, and a light emitting device is provided. One end of the support arm is connected to the base, and the pivot is provided at the other end of the support arm. The light emitting device includes a lampshade, a LED light assembly provided at the lampshade, and at least a heat pipe. The lampshade is pivotally connected to the support arm by the pivot, and the heat pipe is provided at the LED light assembly. In addition, an end of the heat pipe is tightly fitted with the pivot.