Abstract:
본 발명은, 제1 전자 장치의 동작 방법에 있어서, 배터리 용량이 설정된 용량 미만으로 판단되는 경우, 착신 호 전환 기능을 설정할 수 있다는 정보가 포함된 착신 호 전환 피드백을 제공하는 과정; 상기 착신 호 전환 기능을 설정하기 위하여, 등록된 연락처 중 어느 하나의 연락처를 선택하는 과정; 및 상기 선택한 연락처로 호를 전환할 수 있도록 인접한 기지국으로 착신 호 전환을 요청하는 과정을 포함하는 것을 그 구성상의 특징으로 하는 배터리 용량에 따라 착신 호를 전환하는 전자 장치 및 방법에 관한 것이다.
Abstract:
현상제 공급장치가 개시된다. 본 현상제 공급장치는, 주변 환경 상태를 감지하는 제1센서, 회전 동작을 수행하여 현상제를 이송하는 현상제 이송수단, 제1센서에 의해 감지된 주변 환경 상태에 따라 현상제 이송수단의 회전 속도를 설정하는 제1설정부, 및, 제1설정부에 의해 설정된 회전 속도에 따라 현상제 이송수단의 회전 속도를 1차적으로 제어하는 제어부를 포함한다. 이에 따라, 주변 환경 상태에 따라 적응적으로 현상제 이송수단의 회전 속도를 제어함으로써, 현상제 공급시 균일도를 향상시킬 수 있게 된다. 현상제 공급장치, 토너, 캐리어, 회전 속도, rpm
Abstract:
PURPOSE: A low resistive semiconductor device is provided to improve an operation property by maximizing a contact surface of a bottom electrode, an ohmic layer, and a pn junction diode to minimize contact resistance. CONSTITUTION: A first interlayer dielectric layer(107) with a cell contact hole(111) is formed on a word line(102). A pn junction diode(113) is located in the cell contact hole. An ohmic layer(115) to reduce ohmic contact resistance with a bottom electrode(119) is formed on the upper side of the pn junction diode. A storage device(121) is located on the upper side of the bottom electrode. A top electrode(123) and a bit line contact plug(127) are located on the upper side of the storage device.
Abstract:
PURPOSE: A semiconductor device manufacturing method which includes annealing processes is provided to prevent degradation of electrical properties of a semiconductor device by effectively curing dangling bonds formed on a gate insulating film. CONSTITUTION: A gate structure(110) which includes a gate electrode and a gate insulating film is formed on a substrate. A first interlayer insulating film(120) is formed on the substrate with a hydrogen bond by covering the gate structure. Hydrogen inside the first interlayer insulating film is eliminated by performing a first annealing process under a gas atmosphere not including hydrogen. A second annealing process is performed under a gas atmosphere including hydrogen.
Abstract:
PURPOSE: A chromatic aberration removal method and a device thereof are provided to remove chromatic aberration regardless of lens characteristic by filtering only a chromatic signal in a luminance/chrominance coordinate system through an asymmetry mask according to property of chromatic aberration generation. CONSTITUTION: A YUV converter(110) converts an RGB signal into a YUV signal. In order to create a chromatic signal for chromatic aberration compensation, a chromatic signal generator(130) filters the chromatic signal through an asymmetry mask according to an area. A chromatic signal combiner(150) combines information about chromatic aberration generation, the chromatic signal for the chromatic aberration compensation and an input chromatic signal. An RGB converter(160) proceeds signal conversion through a final chromatic signal and a brightness signal of the YUV converter.
Abstract:
PURPOSE: A method and an apparatus for canceling chromatic aberration are provided to filter only chromaticity signals from a brightness/chromaticity coordinates system, thereby removing chromatic aberration without respect to a property of a lens. CONSTITUTION: An RGB gradient calculating unit(122) calculates an RGB gradient using an RGB signal. A brightness/chromaticity difference calculating unit(121) inputs a brightness/chromaticity signal to which the RGB signal is converted. The brightness/chromaticity difference calculating unit calculates a brightness/chromaticity difference using the brightness/chromaticity signal. A chromaticity signal filtering unit(123) generates a chromaticity signal for compensating chromatic aberration.
Abstract:
A cell capacity enhancement method and apparatus through optical signal combining between RSs(Relay Stations) in a cellular system using wireline RSs are provided to increase the overall cell transmission capacity by improving QoS(Quality of Service). A BS(Base Station) receives a signal of an MS(Mobile Station) from each RS and the MS and transmits data to each RS and the MS. A plurality of RSs transfer information of MSs of a corresponding coverage to the BS and allocate resources to a corresponding MS. A plurality of MSs are allocated resources by the MS and the respective RS and perform updating. The BS collectively perform resource allocation and scheduling upon receiving feedback an average C/I(Carrier-to-Interference ratio) of the MS from the respective RS and the MS. The RS transfers relevant information of the MS of the corresponding coverage to the BS, independently perform scheduling on packets to be transferred to the corresponding MS, and performs resource allocation from the BS to the corresponding MS.
Abstract:
A cleaning method of a process chamber is provided to optimize a time point for cleaning automatically according to the amount of residues by adding up a thickness of thin films and byproducts defined at a recipe. A first step, a recipe is selected for defining limit a value, and process progress conditions including thicknesses of a thin film and a byproducts(S10). A second step, a thin film process is performed by preparing a predetermined processed article within a process chamber(S20). A third step, the limit value is compared to an accumulated value of the thicknesses(S40). A fifth step, a cleaning process is performed to the inside of the process chamber, if the accumulated value is larger than the limit value(S50).
Abstract:
A driving apparatus and a liquid crystal display device having the same are provided to suppress a horizontal stripe error on an LCD panel by masking an undesired vertical synchronization start signal during initial booting and resolution mode conversion processes. An apparatus for driving an LCD(Liquid Crystal Display) device includes a signal controller(600) and a signal masking unit(610). The signal controller generates gate and data control signals for driving an LCD panel. The signal masking unit includes a memory, a counter, and an output unit. The number of reference pixels in a vertical direction which is set according to the resolution of the LCD panel is stored on the memory. The counter counts the number of gate clock signals from application timing of a vertical synchronization start signal and provides a mask signal which represents end timing of the counting process. The output unit delivers the vertical synchronization start signal in response to the mask signal.