Abstract:
An apparatus includes a substrate having a strained channel region, a dielectric layer over the channel region, first and second conductive layers over the dielectric layer having a characteristic with a first value, and a strain-inducing conductive layer between the conductive layers having the characteristic with a second value different from the first value. A different aspect involves an apparatus that includes a substrate, first and second projections extending from the substrate, the first projection having a tensile-strained first channel region and the second projection having a compression-strained second channel region, and first and second gate structures engaging the first and second projections, respectively. The first gate structure includes a dielectric layer, first and second conductive layers over the dielectric layer, and a strain-inducing conductive layer between the conductive layers. The second gate structure includes a high-k dielectric layer adjacent the second channel region, and a metal layer.
Abstract:
A sheet-feeding apparatus having simple structure and capable of single-face/double-face scanning/printing sheets at high sheet-feeding efficiency. The sheet-feeding apparatus includes a sheet-feeding path in which sheets can pass through a scanning module and/or a printing module. The sheet-feeding path includes a first passage, a second passage communicating with the first passage and a subsidiary passage formed between the first and second passages. The sheets are selectively fed into and delivered through the first passage, the second passage or the subsidiary passage to be single-face/double-face scanned/printed.
Abstract:
The present invention discloses a coupled waveguide-surface plasmon resonance biosensor, comprising: a grating layer formed of a transparent material, the grating layer comprising a first periodic grating structure; a waveguide layer formed on the first periodic grating structure, the refractive index of the waveguide layer being larger than the refractive index of the grating layer; a plasmon resonance layer formed on the waveguide layer, capable of being optically excited to cause a plasmon resonance wave; and a ligand layer formed on the plasmon resonance layer; capable of being bound to react with receptors of a sample to be tested.
Abstract:
An automated induction toilet bowl seat lift system comprised of a drive mechanism, two detectors respectively provided in the front and in the rear at the bottom of a seat, and a circuit board module characterized by that both detectors detect approaching or leaving human body, e.g. one hand, to command the seat to lift up or to drop flat through the circuit board module.
Abstract:
An apparatus and method for receiving a continuous time pulse amplitude-modulated passband signal is disclosed. The pulse amplitude modulated signal is periodically sampled by a local clock to generate received samples. A convolution of the received samples and an impulse response function is evaluated at a particular value of a phase difference variable to derive corrected samples. Using a narrow transmission band filter, a periodic signal is derived from the corrected samples. The periodic signal has a period equal to a symbol period of the pulse-amplitude modulated signal. Successive samples in each period of the periodic signal are compared to determine if the corrected samples lag or are ahead of optimal samples. If the corrected samples lag or are ahead of the optimal samples, the phase difference variable used to evaluate the convolution is varied by a fixed discrete stepsize.
Abstract:
An office machine with both platform-type scanning mode and feeder-type scanning mode. The office machine includes a reciprocally movable scanning module arranged on upper side of the office machine for scanning documents placed on a platform. The office machine further includes a sheet-feeding path positioned under a bed. The sheet-feeding path has at least one position where the documents passing through the sheet-feeding path can be scanned by the scanning module.
Abstract:
System and method for graphically allocating robot's working space are provided. The system includes an image extractor, a task-allocating server and a robot. A graphic user interface (GUI) of the task-allocating server includes a robot's working scene area, a space attribute allocating area and a robot's task area. Thus, a user assigns one certain space area in the robot's working scene area with a “wall” attribute, or another space area with a “charging station” attribute. Meanwhile, by using the GUI, the user directly assigns the robot to execute a specific task at a certain area. Hence, the user or remote controller facilitates the robot to provide safer and more effective service through his/her environment recognition.