Abstract:
A method for operating an electronic device includes detecting a touch input by an external object on a first part of a display, determining whether the touch input is accompanied by and adjacent input, and processing a function corresponding to a second part of the display when the touch input is not accompanied by the adjacent input. An electronic device includes a display to display an image, a touch sensor to sense at least one of a touch input and adjacent input, and a processor configured to detect the touch input by an external object on a first part of the display via the touch sensor, determine whether the touch input is accompanied by the adjacent input and process a function corresponding to a second part of the display when the touch input is not accompanied by the adjacent input. Other embodiments are also disclosed.
Abstract:
A call service providing method and an electronic device thereof are provided. The electronic device includes: at least one communication circuit supporting at least one communication protocol; a display; a microphone; a speaker; an input device which is configured with or separated from the display; a control circuit electrically coupled to the communication circuit, the display, the microphone, the speaker, and the input device; and a memory electrically coupled to the control circuit. The memory stores instructions executable by the control circuit to: receive a first call from a first external electronic device via the at least one communication circuit; during the first call, receive a request for a second call from a second external electronic device via the at least one communication circuit; receive the second call based on input via the input device; convert a first voice data from the second external electronic device to a first text data and display the first text data on the display; and convert a second text data inputted via the input device to a second voice data and transmit the second voice data to the second external electronic device. Various other embodiments are provided.
Abstract:
A random copolymer including a first repeating unit represented by Formula 1 and a second repeating unit represented by Formula 2 in a molar ratio of about 1:99 to about 99:1, wherein the polymer has a degree of polymerization of about 10 to about 5,000: wherein CY1, CY2, A, X, R2, R3, R4, R5, R6, R7, and Y− are the same as defined in the detailed description.
Abstract:
A semiconductor device may include first active patterns adjacent to each other on a substrate, first source/drain patterns respectively on the first active patterns and adjacent to each other, a first division structure and a second division structure crossing the first active patterns and arranged on the substrate such that adjacent ones of the first source/drain patterns are interposed between the first division structure and the second division structure, a first penetration via between adjacent ones of the first source/drain patterns, a first power line on the first penetration via and electrically connected to the first penetration via, a power delivery network layer on a bottom surface of the substrate, and a first lower penetration via between the power delivery network layer and the first penetration via.
Abstract:
Provided is an integrated circuit device including a substrate, a plurality of semiconductor patterns on a first surface of the substrate, a gate electrode extending in a first direction and surrounding the semiconductor patterns, a source/drain region disposed on one side of the gate electrode, a vertical power wiring layer extending in a second direction, a liner structure including a first liner and a second liner, the first liner disposed on a lower portion of a sidewall of the vertical power wiring layer and including a first insulating material, and the second liner disposed on an upper portion of the sidewall of the vertical power wiring layer and including a second insulating material, a first contact disposed on the source/drain region and the vertical power wiring layer, and a back wiring structure disposed on a second surface of the substrate and electrically connected to the vertical power wiring layer.
Abstract:
Methods and devices for image data encoding are provided. Image data is created using at least one image captured by a camera of the electronic device. First encoded image data is created by encoding at least a portion of the image data in a first manner. Second encoded image data is created by encoding the at least a portion of the image data in a second manner. The second manner is different from the first manner. The first encoded data is stored in a memory of the electronic device. The second encoded data is transmitted from the electronic device to an external device.
Abstract:
An electronic device includes a system-on-chip (SoC) including at least one component, a memory, and a processor functionally connected to the SoC and the memory. The processor is configured to apply a default voltage for driving the at least one component at a specific frequency. The processor is also configured to determine whether data on an offset voltage corresponding to the at least one component and the specific frequency is stored. The processor is further configured to apply the offset voltage, being different from the default voltage, to the at least one component when the data on the offset voltage is stored. Other embodiments are possible.
Abstract:
A method, an apparatus, and a system are disclosed, which can reduce power consumption of an electronic device by allowing a communication relay device, to which the electronic device is connected, to perform an operation of the electronic device corresponding to waking up from a sleep mode according to a system timer cycle to identify paging and performing channel monitoring on behalf of the electronic device. A method of reducing power consumption of an electronic device may include: making a connection between the electronic device and a communication relay device; transmitting forwarding information to the communication relay device in response to the connection with the communication relay device by the electronic device; notifying of entry into a sleep mode to the communication relay device and entering the sleep mode by the electronic device; performing channel monitoring for the electronic device in response to the notification of the entry of the electronic device into the sleep mode by the communication relay device; waking up the electronic device when detecting paging corresponding to the electronic device by the communication relay device; and processing the paging in response to the waking-up of the communication relay device by the electronic device.