Abstract:
An adjustable chuck apparatus is provided with a torque limiting device; a torque transmitting mechanism; a chuck; a threaded fastener; a pin; a first positioning member including a threaded tunnel; a second positioning member including a threaded tunnel; a barbell shaped interconnection member including a first externally threaded section at one end and threadedly fastened in the threaded tunnel of the first positioning member, a second externally threaded section at the other end and threadedly fastened in the threaded tunnel of the second positioning member, a bar interconnected to the first externally threaded section and the second externally threaded section, and a hole element through the second externally threaded section; a truncated conic collet; and a cap. Each of different screw taps can be fastened by the apparatus by rotating a hand tool to adjust a distance between the first positioning member and the second positioning member.
Abstract:
An excrement sensing device and a diaper with an excrement sensing device are provided. The diaper includes a detachable sensing part, an electronic part and a diaper main body. The detachable sensing part includes a first light guide structure and a second light guide structure. The electronic part includes a signal processor. A light guide gap is formed between two light guide openings of the first light guide structure and the second light guide structure. After the optical signal from the emitter is transmitted through the first light guide structure, the light guide gap and the second light guide structure, the optical signal is received by the receiver. When excrement enters the light guide gap, the optical signal is subjected to a change. In response to the change of the optical signal, the signal processor generates a warning signal.
Abstract:
A computing device and an automobile controlling method stores identification information in an electronic tag of authorized communication devices and a memory of the computing device. The identification information of an electronic tag of a communication device is obtained and a door of an automobile is unlocked if the obtained identification information matches identification information stored in the memory.
Abstract:
A computing device and an automobile controlling method stores identification information in an electronic tag of authorized communication devices and a memory of the computing device. The identification information of an electronic tag of a communication device is obtained and a door of an automobile is unlocked if the obtained identification information matches identification information stored in the memory.
Abstract:
An active matrix substrate including a substrate, a plurality of scan lines, a plurality of data lines, a plurality of independent common line patterns, and a plurality of pixels is provided. The scan lines, data lines, and common line patterns are disposed on the substrate. The pixels are arranged in array on the substrate, wherein each pixel is electrically connected to corresponding scan line and data line, and the common line patterns are distributed under each pixel. Each pixel includes a plurality of active components and a plurality of pixel electrodes. Each of the pixel electrodes is electrically connected to corresponding scan line and data line through different active components. The capacitance coupling effect between each of the pixel electrodes and common line patterns are different. Additionally, an inspection method for the active matrix substrate and a liquid crystal display having the active matrix substrate are further provided.
Abstract:
A digital image capturing apparatus includes a housing, a first hole installed on the front side of the housing for inputting light from the front, a second hole installed on the rear side of the housing for inputting light from the rear, a reflector module installed in the housing for reflecting the light input from the first hole or the second hole, a photosensor installed in the housing for sensing the light from the reflector module, and an image generating module installed in the housing for generating an image according to the light sensed by the photosensor.
Abstract:
A digital image capturing apparatus includes a housing, a first hole installed on the front side of the housing for inputting light from the front, a second hole installed on the rear side of the housing for inputting light from the rear, a reflector module installed in the housing for reflecting the light input from the first hole or the second hole, a photosensor installed in the housing for sensing the light from the reflector module, and an image generating module installed in the housing for generating an image according to the light sensed by the photosensor.
Abstract:
A fabricating method of a shallow trench isolation structure includes the following steps. Firstly, a substrate is provided, wherein a high voltage device area is defined in the substrate. Then, a first etching process is performed to partially remove the substrate, thereby forming a preliminary shallow trench in the high voltage device area. Then, a second etching process is performed to further remove the substrate corresponding to the preliminary shallow trench, thereby forming a first shallow trench in the high voltage device area. Afterwards, a dielectric material is filled in the first shallow trench, thereby forming a first shallow trench isolation structure.
Abstract:
An active matrix substrate including a substrate, a plurality of scan lines, a plurality of data lines, a plurality of independent common line patterns, and a plurality of pixels is provided. The scan lines, data lines, and common line patterns are disposed on the substrate. The pixels are arranged in array on the substrate, wherein each pixel is electrically connected to corresponding scan line and data line, and the common line patterns are distributed under each pixel. Each pixel includes a plurality of active components and a plurality of pixel electrodes. Each of the pixel electrodes is electrically connected to corresponding scan line and data line through different active components. The capacitance coupling effect between each of the pixel electrodes and common line patterns are different. Additionally, an inspection method for the active matrix substrate and a liquid crystal display having the active matrix substrate are further provided.
Abstract:
An active matrix substrate including a substrate, a plurality of scan lines, a plurality of data lines, a plurality of independent common line patterns, and a plurality of pixels is provided. The scan lines, data lines, and common line patterns are disposed on the substrate. The pixels are arranged in array on the substrate, wherein each pixel is electrically connected to corresponding scan line and data line, and the common line patterns are distributed under each pixel. Each pixel includes a plurality of active components and a plurality of pixel electrodes. Each of the pixel electrodes is electrically connected to corresponding scan line and data line through different active components. The capacitance coupling effect between each of the pixel electrodes and common line patterns are different. Additionally, an inspection method for the active matrix substrate and a liquid crystal display having the active matrix substrate are further provided.