Abstract:
A method for controlling an object on an electronic device having a touch screen is provided. The method includes displaying at least one object on the touch screen, receiving a first input on the touch screen, selecting an object from the at least one object, based on the first input, receiving a second input on an area other than the object in the touch screen, and modifying the selected object, based on the second input. An electronic device having a touch screen includes a touch screen configured to display at least one object on the touch screen, and a controller configured to receive a first input on the touch screen, select an object from the at least one object, based on the first input, receive a second input on an area other than the object in the touch screen, and control the selected object, based on the second input.
Abstract:
Provided are an electronic device for navigating an application screen, and an operating method thereof. The method may include receiving a user input; determining, based on the user input, a user intent for controlling the electronic device; determining a command for performing a control operation corresponding to the user intent as a goal; identifying elements of a user interface on the screen of the application; determining, based on the user intent and the elements of the user interface, at least one sub-goal for executing the command; and executing the command by performing at least one task corresponding to the at least one sub-goal, wherein the at least one sub-goal is changeable based on a validation of an operation of navigating the application for executing the command, and the at least one task includes units of action for navigating the application.
Abstract:
A semiconductor package includes a base chip, a first semiconductor chip on the base chip, and a first fillet layer between the base chip and the first semiconductor chip. The base chip includes a base substrate, a plurality of through-electrodes penetrating through the base substrate, a protective layer surrounding the plurality of through-electrodes and covering an upper surface of the base substrate, and a plurality of trenches vertically penetrating the protective layer. The plurality of through-electrodes form a transistor area on the base substrate, and the plurality of trenches include first trenches disposed between adjacent through-vias in the transistor area and second trenches disposed in an outer side portion of the transistor area.
Abstract:
FIG. 1 is a front perspective view of an electronic device, showing our new design; FIG. 2 is a front view thereof; FIG. 3 is a rear view thereof; FIG. 4 is a left-side view thereof; FIG. 5 is a right-side view thereof; FIG. 6 is a top view thereof; FIG. 7 is a bottom view thereof; and, FIG. 8 is a rear perspective view thereof. The broken lines illustrating portions of the electronic device form no part of the claimed design.
Abstract:
A method and apparatus for transmitting and receiving data in a wireless communication system is provided. A method of a mobile station includes: storing data received from a server in a buffer; transmitting, to the server, a request message for updating a quality of the data stored in the buffer from a first quality to a second quality based on at least one of an available bandwidth and a buffer level; and receiving data of the second quality from the server.
Abstract:
A 5G or a pre-5G communication system supports a higher data transmission rate than a system after a 4G communication system such as LTE. A transmission device in a wireless communication system according to an embodiment of the present disclosure includes: a control unit that determines a maximum size of data that can be transmitted, based on network information, and determines transmission speeds of multiple transmission control protocol (TCP) connections, based on the size of the data that can be transmitted, respectively; and a communication unit that transmits data to a reception device through the multiple TCP connections based on the transmission speeds. A reception device in a wireless communication system according to an embodiment of the present disclosure includes: a control unit that determines a period for transmitting a response message, based on at least one of whether received data has a loss and available amount of a reception memory of the reception device; and a communication unit that transmits the response message to the transmission device according to the determined period.
Abstract:
An electronic device and a method of controlling a display of the electronic device are provided. The method includes arranging a first image and a second image vertically on different layers; measuring a tilt of the electronic device; and displaying at least one of the first image and second image by controlling transparency of the first image based on the measured tilt.
Abstract:
A 5G or a pre-5G communication system supports a higher data transmission rate than a system after a 4G communication system such as LTE. A transmission device in a wireless communication system according to an embodiment of the present disclosure includes: a control unit that determines a maximum size of data that can be transmitted, based on network information, and determines transmission speeds of multiple transmission control protocol (TCP) connections, based on the size of the data that can be transmitted, respectively; and a communication unit that transmits data to a reception device through the multiple TCP connections based on the transmission speeds. A reception device in a wireless communication system according to an embodiment of the present disclosure includes: a control unit that determines a period for transmitting a response message, based on at least one of whether received data has a loss and available amount of a reception memory of the reception device; and a communication unit that transmits the response message to the transmission device according to the determined period.
Abstract:
A semiconductor package includes a lower redistribution structure including a lower redistribution layer; an interconnection structure disposed on the lower redistribution structure, having internal side surfaces defining a through-portion, external side surfaces, and corner surfaces defining recess portions between adjacent external side surfaces, and including a fiber layer having first fiber ends adjacent to at least a portion of the corner surfaces, an insulating resin layer in which the fiber layer is embedded, and an interconnection layer disposed on at least one surface of the insulating resin layer and electrically connected to the lower redistribution layer; a semiconductor chip disposed in the through-portion of the interconnection structure and including connection pads electrically connected to the lower redistribution layer; an encapsulant disposed in the through-portion and the recess portions of the interconnection structure; an upper redistribution structure disposed on the encapsulant and including an upper redistribution layer electrically connected to the lower redistribution layer; and connection bumps disposed below the lower redistribution structure and electrically connected to the lower redistribution layer.
Abstract:
Disclosed is a 5G or pre-5G communication system for supporting a data transmission rate higher than that of a 4G communication system such as LTE. According to an embodiment of the present invention, a method of a terminal in a wireless mobile communication system comprises the steps of: receiving data network information including data network access permission region information and data network identification information; checking whether the terminal enters a data network access permission region, on the basis of the data network information; and performing a data network access procedure on the basis of the checking result.