Abstract:
The present invention relates to a method for executing an application of an electronic device comprising: a step for selecting input data by using first user input received to a user interface unit; a step for displaying an application menu on the user interface unit; a step for selecting a temporary application by receiving second user input for the application menu; a step for determining the attribute of the input data based on the selected application; a step for determining a function performed in the application according to the attribute of the input data; and a step for executing the determined function by using the input data in the application.
Abstract:
본 발명은 시스템 사양에 따른 시스템 정전력 레벨 적응 변경 장치 및 방법에 관한 것으로서, 시스템 사양 정보를 획득하는 과정과, 상기 획득된 시스템 사양 정보에 대응하는 정전력 레벨을 검색하는 과정과, 상기 검색된 정전력 레벨에 따라 정전력 레벨을 변경하는 과정을 포함하여, 시스템 사양에 따라 정전력 레벨을 적응적으로 변경할 수 있으며, 나아가 시스템 부하를 최적화하고 어댑터의 용량 초과를 최소화하여 과열 등을 막을 수 있는 이점이 있다. 시스템 사양, 정전력 레벨, 배터리, 충전
Abstract:
According to an embodiment, the present invention comprises a step of dispersing carbon nanotubes in a mixed solution containing a solvent, carbon nanotubes, and a dispersant, wherein the carbon nanotubes include semiconductive carbon nanotubes; and the dispersant comprises a polythiophene derivative including a thiophene ring and a hydrocarbon side chain linked to the thiophene ring. The hydrocarbon side chain includes a C7 or more alkyl group. The hydrocarbon side chain can be regularly arranged over space, and the semiconductive carbon nanotubes are selectively separated from the mixed solution. An electronic device includes semiconductive carbon nanotubes and the above-mentioned polythiophene derivative. [Reference numerals] (AA,GG) Example 19; (BB,HH) Example 10; (CC,II) Example 1; (DD,JJ) Comparative example 1; (EE,KK) Comparative example 2; (FF,LL) Comparative example 3; (MM) Wavelength(nm)
Abstract:
PURPOSE: An activeness optical element which uses phase change material is provided to variously modulate the property of incident light with a fast reaction speed by applying material causing phase transformation at prescribed temperatures. CONSTITUTION: An activeness optical element(100) comprises an optical variable layer(150) including material in which a refractive index is changed according to temperature change, and a temperature control means which locally controls the temperature of the optical variable layer. The optical variable layer is composed of a vanadium dioxide thin film. The temperature control means comprises a micro heating array(130) which discharges heat for forming a periodic refractive index alternating pattern on the variable layer. The micro heating array comprises a plurality of heating zones(132) heated by electrical control.
Abstract:
PURPOSE: A composition for fabricating a semi-conductor nano crystal-polymer composite is provided to ensure low processing cost and high specific surface area. CONSTITUTION: A composition for fabricating a semi-conductor nano crystal-polymer composite contains polymers, precursor compounds, and solvent. The polymer is selected from the group consisting of thermoplastic polymers and electric conductive polymers. The precursor compounds contain salt having each element forming semiconductor nanocrystal.
Abstract:
표면 플라즈몬과 high-k 물질을 이용한 반사 방지구조 및 그 제조방법에 관해 개시되어 있다. 반사 방지구조는 기판 상에 형성되고 입사광에 투명한 고유전막 및 상기 고유전막 상에 구비된 나노 물질층를 포함한다. 상기 고유전막은 ZrO2, HfO2, TiO2, Ta2O5, La2O3, Y2O3 및 Al2O3 중 어느 하나일 수 있다.
Abstract:
PURPOSE: A two/three dimensional integrated image system for enhancing the quality of the three-dimensional image is provided to display the two/three dimensional integrated image. CONSTITUTION: A lens member(100) of a tabular structure includes first and second substrates(109, 101), a liquid crystal layer(105), and nanostructures arrays and first/second electrodes. The liquid crystal layer is packed between the first and the second substrate. The nanostructures array is grown up to be projected from one or more substrate of the first and the second substrate. The first and the second electrode prepare in the first and the second substrate in order to sanction voltage in the nanostructures array.