Abstract:
An apparatus of processing a substrate includes a chamber, a susceptor in the chamber, a plasma-generating unit for generating plasma in the chamber, a power source unit providing power to the plasma-generating unit, and ground lines connected to peripheries of the susceptor, wherein a ratio of a total width of the ground lines to a perimeter of the susceptor is within a range of 2% to 15%.
Abstract:
The present invention relates to a dual mode signal processing apparatus using a picture-in-picture (PIP) window. In particular, the present invention relates to a display apparatus and a function switching apparatus that display two views for DSPs performing different functions in use of a PIP window so that two functions are simultaneously performed. In order to achieve the such an object, embodiments of the present invention comprise at least one or more digital signal processors (DSPs) for processing different signals; a picture-in-picture(PIP) block for inputting a composite image signal, a chrominance signal, and so on, mixing two signals, and outputting one composite signal; a first signal switching unit for selecting an input of signals of the plural DSPs and outputting the selected signal to the PIP block; a second signal switching unit for selecting a composite image signal outputted from the DSPs and outputting the selected composite image signal to the PIP block; and a display unit for inputting and displaying an output signal of the PIP block. The embodiments further employ an input unit having a mode selection button and PIP-related function buttons; and a control unit for switching signals with an input of the input unit and controlling a system. Accordingly, embodiments of the present invention convert the function of the system by changes of the main view and the PIP window in the mixed display from two mixed image signals, and enables the same functions to operate with one button selection, to thereby perform combined functions with simplicity.
Abstract:
Method for forming a Schottky contact in a semiconductor device includes a step of preparing an n type GaN group compound semiconductor layer, such as AlxGa1-xN and InxGa1-xN. At least one metal layer including a ruthenium component layer is formed on the n type GaN group compound semiconductor layer as a rectifying junction metal. The rectifying junction metal may be used as a gate of a field effect transistor, or an electrode of a Schottky diode. The ruthenium oxide has a low cost, is stable to heat and chemical, and has excellent electric characteristics. The application of the ruthenium oxide to the rectifying junction metal enhances performances, such as UV ray detection, of electronic devices and optical devices operable at an elevated temperature.
Abstract translation:在半导体器件中形成肖特基接触的方法包括制备诸如Al x Ga 1-x N和In x Ga 1-x N的n型GaN族化合物半导体层的步骤。 作为整流结合金属,在n型GaN族化合物半导体层上形成包含钌成分层的至少一层金属层。 整流结金属可用作场效应晶体管的栅极或肖特基二极管的电极。 氧化钌成本低,对热和化学稳定,具有优异的电气特性。 将氧化钌应用于整流接合金属增强了在高温下可操作的电子器件和光学器件的性能,如紫外线检测。
Abstract:
A paper switching device with a simplified structure and assembly that facilitates the conveyance of thick paper such as envelopes and post cards, preventing jamming during paper. conveyance. The device includes, a recess which is formed at one side on a knock-up plate to mate with a guide, and hinge pins protruding from the sides of the knock-up plate, which are inserted into protrusions on the guide so that the guide moves up and down.
Abstract:
A camcorder having a still image reproducing circuit and a method for reproducing a still image are provided. The circuit includes an image pickup means for generating an image pickup signal in accordance with incident light; a hand-quiver compensating means for converting the image pickup signal into a digital signal to store temporarily the converted signal, for reading the stored digital signal, and for converting the read signal into an analog signal, thereby compensating for operator hand-quiver; a reproducing means for reproducing a video signal from a recording medium and outputting synthesized luminance and chrominance signals; a decoder for decoding the luminance and chrominance signals from the reproducing means and generating difference signals; a first switch for selecting an output signal from one of the image pickup means and the decoder, and for outputting the selected signal to the hand-quiver compensating means; and a second switch for selecting an output signal from one of the hand-quiver compensating means and the reproducing means, and for outputting the selected signal through an output terminal. Accordingly, a clean still image can be reproduced with a cost-effective circuit.
Abstract:
A circuit discriminates the tape speed in a speed-change playback mode in a video processing system based upon the drop out signal derived from the video signal read off the tape. The circuit discerns differences between the pulse widths of the drop out signals of standard play (SP) and long play (LP) recorded video signals. The circuit has a low pass filter (51) connected in series with a comparator (53). The low pass filter (51) takes the drop out pulse signal from a pre-amplifier (10) or from a luminance/chroma processor and filters the drop out pulse signal to determine its DC level. The comparator compares the filtered DC level of the drop out pulse signal to a reference voltage, and based upon the comparison makes a determination whether the video signal on the tape is recorded at standard play speed or long play speed.
Abstract:
A stand of the image forming apparatus includes at least one plate unit including a first plate member which includes a first surface unit which forms an external appearance and a first bent unit which is provided to at least one of the opposite end parts of the first surface unit, and a second plate member which includes a second surface unit and a second bent unit which is provided to at least one of the opposite end parts of the second surface unit, and is capable of being inserted into the first plate member, at least one of the first bent unit and the second bent unit being bent so that each bending direction thereof may start from at least one of the first surface unit and the second surface unit, and then bend toward at least one of the first surface unit and the second surface.
Abstract:
A three-dimensional cellular light structure formed of continuous wire groups. For example, six orientational helical wire groups are intercrossed in a three-dimensional space and form a uniform pattern. In a manufacturing method, a frame assembly of rectangular frames and connection support bars is used. The method includes arranging and fixing first axis wires on the frames, connecting the frames by connection support bars, and assembling second axis wires to make a three-dimensional cellular light structure. The intersection points of the wires may be bonded. It can be a fiber-reinforced composite material by filling at least part of an internal empty space of the structure.
Abstract:
An apparatus and a method for translating, transcribing, and/or converting a printed label on a surface of an RFID tag into electronic data, which are writable to a non-volatile storage inside the RFID tag, are disclosed. In one example, the apparatus comprises an image reader for scanning a printed label on the surface of an RFID tag, a UHF antenna module, a UHF tag access module for reading from or writing into the RFID tag, and a computer interface to display various parameters and control the apparatus. A tag-holding plate containing batches of RFID tags can be brought to an access range of the image reader using a conveyor belt or another moving mechanism. Once positioned within the access range, the apparatus can read and translate a printed label on a RFID tag and write the converted electronic data into a non-volatile storage inside the RFID tag.
Abstract:
An integrated digital device and a displaying method are provided. The integrated digital device includes a display unit displaying a plurality of setup information items. A plurality of input keys positioned in the vicinity of the plurality of setup information items, respectively, are displayed on the display unit. A mode input unit selecting one among a plurality of modes in which different digital device functions are performed and a modifier modifying at least one of the setup information items according to at least one among the mode selected by the mode input unit and an input from at least one of the input keys.