Abstract:
A nonvolatile memory cell and a method for fabricating the same can secure stable operational reliability as well as reducing a cell size. The nonvolatile memory cell includes a drain region formed in a substrate, a source region formed in the substrate to be separated from the drain region, a floating gate formed over the substrate between the drain region and the source region, a halo region formed in the substrate in a direction that the drain region is formed, a dielectric layer formed on sidewalls of the floating gate, and a control gate formed over the dielectric layer to overlap with at least one sidewall of the floating gate.
Abstract:
The present invention relates to an apparatus and a method for controlling power management based on information on ticks for performing program tasks and information on each of power management states, which is applicable to every apparatus and component able to enter a power saving state.By means of entering a corresponding power management based on a result of comparing idle time of a processor during the tick with resume time of each power management state, power consumption can be reduced.
Abstract:
Enhanced-accuracy battery capacity prediction in which a residual capacity of a battery associated with a mobile electronic device are determined and displayed. One or more characteristic values of the battery are detected and an appropriate battery discharge curve is selected from multiple stored battery discharge curves based on the electrical current supply rate or a number of historical charge/discharge cycles of the battery, or both. A detected battery voltage is compared to the selected curve, and the residual capacity of the battery is calculated based on the present discharge capacity and the useful discharge capacity of the battery based on the selected curve. The residual capacity accurately reflects the present operational state of the device and the present state of the battery. The accurate residual capacity of the battery is displayed on a display device for user viewing.
Abstract:
The present invention relates to a computer providing a motion picture mode including at least one storage unit configured to store system state information when the computer enters the motion picture mode and to store motion picture data, the storage unit including a random access memory (RAM) and a hard disk drive (HDD), a graphic processing unit configured to process image data and to display processed data on a screen, an audio outputting unit configured to process and output audio signals, and a control unit configured to control modules included in the computer and a system mode of the computer. The control unit is configured to determine whether conditions for entering the motion picture mode have been satisfied, and to change the system mode to the motion picture mode if the conditions for the motion picture mode are satisfied.
Abstract:
An organic electroluminescent device including a transparent substrate; transparent electrodes extended in one direction on the substrate; connecting electrodes for current supply formed in a crossing direction of the transparent electrodes, not to overlap the transparent electrodes, on one side of the substrate; scan-electrodes formed on the connecting electrodes; an insulation layer formed to cover a predetermined area of the substrate, the transparent electrodes, the connecting electrodes, and the scan-connecting electrodes except the emission parts of the transparent electrodes and the contact parts of the scan-connecting electrodes, wherein the area (AE) of the emission part, the number (N) of the emission parts formed on a scan line, and the area (AC) of the contact part are determined under the formula of [(AE×N)/100 ≦AC]; an organic layer formed on the emission parts of the transparent electrodes; and a scan electrode layer.
Abstract translation:一种有机电致发光器件,包括透明衬底; 在基板上沿一个方向延伸的透明电极; 连接在透明电极的交叉方向上形成的电流的电极,不与透明电极重叠; 形成在连接电极上的扫描电极; 形成为覆盖基板的预定区域,透明电极,连接电极以及除了透明电极的发射部分和扫描连接电极的接触部分之外的扫描连接电极的绝缘层,其中, 确定在发射部分上的发射部分的数量(N)和形成在扫描线上的发射部分的数量(N)和接触部分的面积(A SUB C&lt;&gt;) 在[(A u> x N)/ 100 <= A C C]的式中, 形成在透明电极的发射部分上的有机层; 和扫描电极层。