Abstract:
A liquid crystal display device and a driving control circuit thereof are provided. The driving control circuit includes a voltage switch unit and a selection unit. The selection unit selects the voltages in accordance with the control signal, while the voltage switch unit outputs the selected voltage to the common terminal of pixels according to the corresponding scan signal. The driving control circuit, controlled by the control signal and the scan signal, can reduce the modulation frequency and the voltage amplitude, so the power consumption of the liquid crystal display device can be reduced.
Abstract:
A lightweight breast prosthesis is formed as an enclosed body having therein at least two compartments chamber, wherein one of the compartments chamber is filled with silicone gel, and the other compartment chamber or compartments chamber are filled with a substance lighter than silicone gel. Thus, the breast prosthesis, which is soft and tender like silicone gel but lighter than a breast prosthesis made entirely of silicone gel, can serve either as a complete prosthetic breast or as a breast shape-supplementing pad for locally supplementing the breast shape or making up a partially removed breast.
Abstract:
The present invention proposes an apparatus for loading and unloading wafers to and from the semiconductor fabrication equipment. The present invention uses two U-shaped port plate supporters of high rigidity to respectively join with drive devices such as lead screws, shaft bearings, and a lead device, and then join with components such as a port plate, a port door, and a base. The assembly is driven by a motor via timing pulleys, timing belts, idle wheels, a pair of lead screws, shaft bearings, and a lead device. An encoder is matched for feedback control. Thereby, accurate positioning of the main mechanism of the wafer pod responsible for upward and downward movement can be achieved so as to increase the accuracy and reliability of positioning transfer of wafers. Secondarily, the contamination of particles resulted from the motion of the main mechanism can be reduced by using an intake filtering system. Because the present invention adopts a modular design, the drive source of each unit is isolated and the circuit of each unit is hidden so that the whole structure is most compact and the assembling/disassembling and maintenance are easier.
Abstract:
Methods and systems for storing texels in memory banks in a manner that allows the retrieval of four neighboring texels within a single cycle are disclosed. The four neighboring texels are stored in separate memory banks according to a predetermined set of combinations of 2-D (u, v) coordinate pairs. In interpolating the color value of a color texel C(u, v), a texel buffer retrieves the four neighboring texels in a single cycle to reduce the memory access time. In one embodiment, a plurality of memory banks in the texel buffer are designed in an interleave mode. In an alternative embodiment, a plurality of memory banks in the texel buffer are implemented in a noninterleave mode. In both embodiments, a texel buffer retrieves the four neighboring texels of a color texel C(u, v) within a single cycle according to a predetermined set of criteria.
Abstract:
A method for driving a display device is provided herein. The display device includes a plurality of scan lines. The method comprises following steps: dividing the scan lines into a plurality of groups, each of which comprises at least two scan lines, i.e. a first and a second scan line; during a first frame period, sequentially enabling the first and second scan line of each group in accordance with a first driving sequence; and during a second frame period, sequentially enabling the first and second scan line of each group in accordance with a second driving sequence, wherein the first driving sequence is different from the second driving sequence.
Abstract:
An exemplary clamping apparatus includes a first elongated guide member, a first clamping member, a second clamping member, and a first drive assembly. The first and the second clamping member each moveably attached to the guide member. The first drive assembly includes a motor, a first gear, a second gear meshed to the first gear, a first drive member and a second drive member. The first drive member transmits power from the motor to the first clamping member. The second drive member transmits power from the motor to the second clamping member through the first and second gears. The first and the second drive members are configured for moving the corresponding first clamping member and the corresponding second clamping member towards or away from one another along the guide member.
Abstract:
An exemplary method for laser machining is provided comprising: providing a workpiece, the workpiece including a predetermined machining region; loading the workpiece onto a laser machining station, the laser machining station being configured for providing an initial ambient temperature for the workpiece; heating the machining region of the workpiece up to a predetermined temperature between the initial ambient temperature and a melting temperature of a material of the workpiece; and machining the machining region with at least one laser beam. An exemplary apparatus for laser machining is also provided.
Abstract:
A substrate-supporting rod (4) includes a resin body (41) and a metal rod (43). The resin body (41) includes a body portion (411) being cylinder-shaped and having a first through hole (413) in a direction of the axis thereof, and a number of shelves (415, 415′) arising from said body portion and extending in parallel away from said body portion at a predetermined pitch. The body portion and the number of shelves are unitary portions of the resin body. The metal rod is received in the first through hole. A projection (4151) is defined on the end of each of shelf to support a substrate (45). The projection is cylindrical in shape of which the diameter is larger than the thickness of the corresponding shelf, and a central axis thereof is substantially perpendicular to a central axis of the body portion.
Abstract:
A semiconductor device includes a MOS transistor having a capacitor-forming surface; and a ferroelectric capacitor formed on the capacitor-forming surface of the MOS transistor and including upper and lower electrode layers of Pt and a dielectric layer sandwiched between the upper and lower electrode layers. The ferroelectric capacitor has a cross-section that is generally trapezoid in shape, and that has an inclined side which forms an angle of greater than 45 degrees and less than 90 degrees with the capacitor-forming surface of the MOS transistor.
Abstract:
A supporting column (30) of the present invention includes a main body (31) and a stiff shaft (33). The main body (31) includes a half-sleeve shaft (319) and a plurality of parallel wing panels (317) encircling portions of the half-sleeve shaft. The main body has a C-shaped cross section and defines an axial bore along an axis direction. The wing panels are formed perpendicular to the half-sleeve shaft and each wing panel provides a protrusion (318) in the middle of the wing panel. A cassette (40) incorporating the supporting columns is used to accommodate a plurality of substrates.