Abstract:
The present invention relates to a USB connector, which comprises: a connector main body having plural open slots, plural first terminals and plural second terminals; and a substrate having plural first contact pads and plural second contact pads respectively exposed outside the substrate, and the plural first contact pads and the plural second contact pads are staggeringly arranged for being respectively coupled to the plural first terminals and the plural second terminals, thereby forming a USB connector. The USB connector allows a USB2.0 connector and a USB3.0 connector to be respectively inserted.
Abstract:
The present invention relates to a image capturing device having an expansion dock, which comprises: an image capturing device having a first connector; an expansion dock having a second connector for being connected with the first connector; a display device; a printed circuit board; and a drive unit; thereby enabling the image data captured by the image capturing device to be displayed on the display device or to be transmitted by a wireless communication module through connecting the first connector and the second connector.
Abstract:
A thin film transistor (TFT) substrate includes gate lines, data lines intersecting with the gate lines, a plurality of TFTs, pixel electrodes, and a common electrode insulating the gate lines, the data lines, the TFTs, and the pixel electrode. Each pixel electrode is connected to one of the gate lines and one of the data lines via one of the TFTs. A layer stack including an insulating layer and a passivation layer is sandwiched between the pixel electrodes and the common electrode.
Abstract:
The present invention relates to an apparatus for identifying motions of an object, which is used for detecting motions of at least an object. A sensing plate senses the object and produces at least a sensing signal. A processing circuit is coupled to the sensing plate. It gives at least a moving speed along at least one axis, at least a variation in the sensed value between the object and the sensing plate, or at least a variation in the contact area according to the sensing signal. Then it produces a corresponding control signal according to the moving speed, the variation in the sensed value, or the variation in the contact area. Thereby, the present invention further produces a corresponding control signal by means of the variations in the sensed value. Hence, the control signal can be produced without touching the touch panel and thus increasing the lifetime of the touch panel.
Abstract:
The present invention relates to a USB connector, which comprises: a connector main body having plural open slots, plural first terminals and plural second terminals; and a substrate having plural first contact pads and plural second contact pads respectively exposed outside the substrate, and the plural first contact pads and the plural second contact pads are staggeringly arranged for being respectively coupled to the plural first terminals and the plural second terminals, thereby forming a USB connector. The USB connector allows a USB2.0 connector and a USB3.0 connector to be respectively inserted.
Abstract:
A light guide module of a scanning apparatus includes plural side-emitting light emitting diodes and a light-guiding post, which are disposed on a circuit board. The light-guiding post has plural reflective structures corresponding to respective side-emitting light emitting diodes for receiving light beams from respective side-emitting light emitting diodes. A spacing interval between two of the side-emitting light emitting diodes at a middle portion of the circuit board is greater than a spacing interval between two of the side-emitting light emitting diodes at a side of the circuit board.
Abstract:
A method according to one embodiment may include providing power to at least one light source. The method of this embodiment may also include detecting the frequency of at least one vertical synchronization signal, among a plurality of different synchronization signals, and controlling the power to at least one light source based on, at least in part, the detected frequency of at least one vertical synchronization signal. Of course, many alternatives, variations, and modifications are possible without departing from this embodiment.
Abstract:
A thin film transistor (TFT) substrate includes gate lines, data lines intersecting with the gate lines, a plurality of TFTs, pixel electrodes, and a common electrode insulating the gate lines, the data lines, the TFTs, and the pixel electrode. Each pixel electrode is connected to one of the gate lines and one of the data lines via one of the TFTs. A layer stack including an insulating layer and a passivation layer is sandwiched between the pixel electrodes and the common electrode.
Abstract:
A bus structure includes multiple soft buses and a soft separation layer. These multiple soft buses are stacked side by side each other. The soft separation layer is sandwitched between two adjacent soft buses.
Abstract:
An optical reading device of a scanning apparatus includes two light sources and a movable lens. The first light source emits a first light when the optical reading device is operated in a flatbed scanning mode. The second light source emits a second light when the optical reading device is operated in a sheetfed scanning mode. The movable mirror is selected to allow for passing the first light without being obstructed by the movable mirror in the flatbed scanning mode or allow for reflecting the second light coming from the second mirror in the sheetfed scanning mode. Due to the special design, the overall volume of the scanning module is reduced.