Abstract:
Methods of synchronizing signals are provided. Specifically, a detector is provided in the digital phase detector to detect certain failure conditions that may result from clock skew and duty cycle distortion. If the condition is detected, an adjusted signal is generated and the adjusted signal is synchronized with the reference signal. By using the generated signal to provide a lock if certain conditions arise, adjustment errors resulting from duty cycle distortion and clock skew can be minimized.
Abstract:
An optical disc drive and a method of reading an optical disc are disclosed. The drive includes an I/O port, an optical pickup module and a format conversion unit. The I/O port couples a host to receive a read command of a host terminal file system format. The optical pickup module accesses the optical disc which contains data of a first file system format. The format conversion unit coupled between the I/O port and the optical pickup module includes a mapping information generation module, a memory module and a read-command processing module. The mapping information generation module controls the optical pickup module to access data and thereby to generate mapping information. The memory module stores the mapping information. The read-command processing module controls the optical pickup module to access the optical disc according to the read command by referring to the mapping information.
Abstract:
A multi-function printer including a body, a door, a feeding module, a transmission module, and a cam assembly is provided. The door is assembled to the body being opened or closed relative to the body. The feeding module and the transmission module are disposed in the body. The feeding module has a driving gear. The transmission module has a swim arm with an end connected to the driving gear. The cam assembly is movably disposed in the body and configured between the door and the transmission module. The cam assembly is in a moving range of the swim arm, and the door is in a moving range of the cam assembly. When the driving gear rotates in a direction, the other end of the swim arm is engaged to the cam assembly, and drives the cam assembly to push the door open.
Abstract:
A transistor device and a manufacturing method thereof are provided. The transistor device includes a substrate, a first well, a second well, a shallow trench isolation (STI), a source, a drain and a gate. The first well is disposed in the substrate. The second well is disposed in the substrate. The STI is disposed in the second well. The STI has at least one floating diffusion island. The source is disposed in the first well. The drain is disposed in the second well. The electric type of the floating diffusion island is different from or the same with that of the drain. The gate is disposed above the first well and the second well, and partially overlaps the first well and the second well.
Abstract:
A light unit includes a light guiding body having a light entrance face. A base has a curved oval surface defined therein which has a first focus and a second focus. A light emitting unit is located at the first focus and generates light beams which pass through the second focus and enter into the light guiding body via the light entrance face. The base has a heat dissipating unit connected to outside thereof. The light beams generated from the light emitting unit are completely guided into the light guiding body to have high illumination efficiency. The heat dissipating unit brings the heat away from the light unit.
Abstract:
A semiconductor device includes a semiconductor substrate, a buried layer disposed in the semiconductor substrate; a deep well disposed in the semiconductor substrate; a first doped region disposed in the deep well, wherein the first doped region contacts the buried layer; a conductive region having the first conductivity type surrounding and being adjacent to the first doped region, wherein the conductive region has a concentration higher than the first doped region; a first heavily doped region disposed in the first doped region; a well having a second conductivity type disposed in the deep well; a second heavily doped region disposed in the well; a gate disposed on the semiconductor substrate between the first heavily doped region and the second heavily doped region; and a first trench structure and a second trench structure, wherein a depth of the second trench structure is substantially deeper than a depth of the buried layer.
Abstract:
An assembling method of a display device and a display device are provided. The assembling method of the display device includes following steps: providing a first frame, wherein a first display module is disposed at the first frame; providing a bracket, wherein the bracket includes a positioning structure and a second display module is disposed at the bracket; and assembling the bracket and the first frame together via the positioning structure, so that the first display module and the second display module are partly overlapped.
Abstract:
Searching information includes: receiving current query data from a client; extracting generic attribute features of the current query data, wherein the generic attribute features are used for calculating a plurality of confidence degrees of the current query data that correspond to a plurality of categories, each of the confidence degrees indicating a degree of confidence that the current query data belongs to a respective one of the plurality of categories; determining the plurality of confidence degrees of the current query data based at least in part on the generic attribute features; searching in a chosen category for a search result that corresponds to the current query data, the chosen category being one of the plurality of categories and being chosen based at least in part on the plurality of confidence degrees; and returning the search result.
Abstract:
An LED illumination structure without a light guide plate (LGP) includes an optical bottom plate, a plurality of LED illumination components arranged at least along one side edge of the optical bottom plate and a plurality of reflecting structures parallel to the LED illumination components formed on the optical bottom plate from two opposite side edges of the optical bottom plate to a center of the optical bottom plate. The reflecting structures are in a shape of tapered embossment and include a first side facing the center of the optical bottom plate and a second side facing the side edges of the optical bottom plate. An optical film is arranged in a raising direction of the reflecting structures of the optical bottom plate. The present invention is applicable to an illumination lamp for generating a uniform light emitting or may further be an illumination structure for projecting a light source of a bare-eyed 3D image.
Abstract:
A clamping mechanism automatically adaptable to change of thickness of printed circuit board includes: a frame body having two parallel rail seats; two clamping rail members respectively mounted on the rail seats for clamping a printed circuit board, each clamping rail member including a first clamping rail and a second clamping rail spaced from each other by a clamping gap; and two adjustment units for adjusting the clamping gap of the clamping rail members. Each the adjustment unit includes: a support section mounted on the frame body to provide a support face; a connection section, one end of the connection section being affixed to the first clamping rail, the other end of the connection section being positioned above the support face; and a floating section positioned between the connection section and the support section and supported on the support face to apply a resilient support force to the connection section.