Abstract:
A semiconductor device including a substrate, a gate structure, a spacer and source/drain regions is provided. The gate structure is on the substrate, wherein the gate structure includes, from bottom to top, a high-k layer, a work function metal layer, a wetting layer and a metal layer. The spacer is on a sidewall of the gate structure. The source/drain regions are in the substrate beside the gate structure.
Abstract:
A printer includes a main body, a bracket, a lifting mechanism, and a paper tray. The main body is capable of printing and outputting paper. The bracket is attached to the main body. The lifting mechanism is secured to the bracket and includes a retaining plate. The retaining plate is moveable between a first position, where a first distance is defined between the retaining plate and the bracket, and a second position, where a second distance is defined between the retaining plate and the bracket and is less than the first distance. The paper tray is configured for receiving the paper. The retaining plate is moved from the second position to the first position when the paper tray is inserted into the bracket, and moved from the first position to the second position when the paper tray is released.
Abstract:
A paper-out mechanism for a printing apparatus, includes a paper out wall and a paper out board. The paper out wall defines a paper out opening via which a printing apparatus discharges printed papers out. The paper out opening includes a first edge and a second edge facing to the first edge. The paper out board is slidably mounted on the paper out wall below the paper out opening. The paper out board is capable of receiving printed papers discharged from the paper out opening. The paper out board includes an adapter portion which includes a first side and a second side. A distance between the first side and second side is greater than a distance between the first edge and the second edge. The paper out board is slidable between a first position and a second position. In the first position, the first side of the adapter portion is in alignment with the first edge of the paper out opening. In the second position, the second side of the adapter portion is in alignment with the second edge of the paper out opening.
Abstract:
A reflective optical detecting device is for detecting movement of an object in a predetermined area. The reflective optical detecting device includes a light emitting unit, at least two optical detectors, and a comparing unit. The light emitting unit is used for illuminating the predetermined area. The optical detectors are disposed at opposite sides of the light emitting unit, and each of the optical detectors is associated with a respective detection region within the predetermined area for generating an output signal in response to light reflected from the object and detected thereby. The comparing unit is coupled to the optical detectors for receiving the output signal from each of the optical detectors, and is operable to output a comparison result according to the output signal of each of the optical detectors. The comparison result is to be used for determining the movement of the object.
Abstract:
A printer includes a main body and a paper holding device. The main body is capable of printing and outputting paper. The paper holding device is secured to the main body and includes a paper tray, a connecting mechanism, and a sliding mechanism. The paper tray is configured for receiving the outputted paper. A driving gear member is located on the paper tray. The connecting mechanism is located on the paper tray and connected to the driving gear member. The sliding mechanism is located on the paper tray and connected to the connecting mechanism. The driving gear member controls the sliding mechanism by the connecting mechanism to shape a space to fit the size of the outputted paper.
Abstract:
An electronic device includes a main body and a plurality of paper trays. The main body includes a mounting plate, and the mounting plate defines a paper outlet. A mounting bracket is secured to the main body. A control module is disposed on the mounting bracket. A driving member is connected to the paper trays. The control module is capable of causing the driving member to move the paper trays along a direction parallel to the mounting plate, so that one of the paper trays is aligned with the paper outlet.
Abstract:
A method of signal adjustment in an optical sensing device is provided. The optical sensing device includes a first optical sensor and a first reference optical sensor. The first optical sensor corresponds to a first specified ideal spectral response and generates a first output signal corresponding to light detected thereby. The first reference optical sensor generates a first reference signal corresponding to light detected thereby, and is disposed adjacent to the first optical sensor such that the light detected by the first reference optical sensor is substantially the light detected by the first optical sensor. The method includes the steps of: a) receiving the first output signal and the first reference signal; and b) generating a first adjusted output signal having a spectral response that approximates the first specified ideal spectral response, by adjusting the first output signal according to the first reference signal.
Abstract:
A server rack includes a frame, a support, and a securing member. The frame includes a first pole and a second pole connected to the first pole. The support is connected to the first pole and the second pole. The securing member includes a first fastening section, a second fastening section connected to the first fastening section, and a third fastening section connected to the first fastening section and the second fastening section. The first fastening section is received in the first pole, the second fastening section is received in the second pole, and the third fastening section is received in the support. The first fastening section and the second fastening section are located on a first plane, and the third fastening section is located on a second plane substantially perpendicular to the first plane. The first fastening section, the second fastening section, and the third fastening section share a base wall.
Abstract:
A printing device includes a main body and a paper holding device. The main body is capable of printing and dispensing paper. The paper holding device is secured to the main body and includes a bracket, a paper tray, a paper adjusting mechanism, and a punch mechanism. The bracket is secured to the main body. The paper tray is secured to the bracket for receiving the dispensed paper. The paper adjusting mechanism is capable of aligning the dispensed paper. The punch mechanism is capable of binding the dispensed paper. The main body dispenses the paper between the paper adjusting mechanism and the punch mechanism.
Abstract:
A printer includes a main body capable of printing and outputting paper, a bracket attached to the main body, two sliding blocks, and a tray configured for receiving the paper. The bracket includes two sidewalls. A retaining member is secured to each sidewall. The sliding blocks are slidably attached to the sidewalls of the bracket. The tray is received in the bracket and has tray posts corresponding to the retaining members. The sliding blocks bring the tray to slide in the bracket. The retaining members have a first position, where the tray posts urge the retaining members to slide before passing across the retaining members, and a second position, where the tray posts are blocked by the retaining member when the tray is released from the sliding blocks.