Abstract:
Disclosed is a method for executing at least one application by a display device having a touch screen. An application execution method according to the present invention may include the steps of: displaying a window for executing an application in each of a plurality of areas arranged on a touch screen; displaying a button on at least one boundary line dividing the plurality of areas; receiving an input for selecting the button; and displaying, in a predetermined area, on the basis of the received input, a list of at least one application executed in the predetermined area among the plurality of areas.
Abstract:
A method of displaying for allowing a plurality of application windows to be easily controlled and a display device therefor are provided. A method of displaying a screen on a display device includes displaying a button on a touch screen; splitting the touch screen into a plurality of regions based on the position at which the button is displayed, receiving a touch input to move a displayed button, obtaining a slope value of a line connecting a start point of the touch input to an end point thereof, selecting a region corresponding to the slope value from among the plurality of regions split, and moving the button to a certain position included in a selected region.
Abstract:
A method of displaying an application is provided. The method includes displaying an execution screen of a first application on a first area when the first application is executed, displaying the execution screen of the first application on a second area instead of on the first area when a second application is executed while the first application is executed, and displaying an execution screen of a second application on the first area.
Abstract:
A memory device may include a data output circuit configured to multiplex a plurality of data signals read from a memory cell array, wherein the data output circuit includes a clock boosting circuit configured to receive a plurality of internal clock signals generated based on a first power voltage, and to generate a plurality of boosted clock signals by boosting the plurality of internal clock signals based on a second power voltage having a voltage level greater than that of the first power voltage, and a data output driver configured to multiplex and output the plurality of data signals synchronized with the boosted clock signals.
Abstract:
A method of displaying an application is provided. The method includes displaying an execution screen of a first application on a first area when the first application is executed, displaying the execution screen of the first application on a second area instead of on the first area when a second application is executed while the first application is executed, and displaying an execution screen of a second application on the first area.
Abstract:
A method of displaying an application is provided. The method includes displaying an execution screen of a first application on a first area when the first application is executed, displaying the execution screen of the first application on a second area instead of on the first area when a second application is executed while the first application is executed, and displaying an execution screen of a second application on the first area.
Abstract:
A method of displaying an application is provided. The method includes displaying an execution screen of a first application on a first area when the first application is executed, displaying the execution screen of the first application on a second area instead of on the first area when a second application is executed while the first application is executed, and displaying an execution screen of a second application on the first area.
Abstract:
An electro-photonic memory system includes a semiconductor memory device for storing data by receiving a first electrical signal, a memory controller for generating a second electrical signal to control the semiconductor memory device, an electrical-to-optical converter for receiving the second electrical signal from the memory controller and converting the second electrical signal into an optical signal, the electrical-to-optical converter separate from the memory controller, and an optical-to-electrical converter for receiving the optical signal from the electrical-to-optical converter and converting the optical signal into the first electrical signal.