Abstract:
An imaging system includes an image sensor configured to obtain first image data, based on a received light; and a processing circuit configured to determine an operating mode of the image sensor, among a first mode and a second mode, based on an illumination and a dynamic range corresponding to the obtained first image data. The image sensor includes a first sub-pixel configured to sense a target light corresponding to a target color, in the first mode, convert the target light sensed during a first exposure time, into a first signal, and in the second mode, convert the target light sensed during a second exposure time longer than the first exposure time, into a second signal.
Abstract:
An air conditioner which comprises: a temperature sensor; and a processor that obtains, based on receiving a turn-on command for the air conditioner, a first temperature value sensed through the temperature sensor; based on a threshold time elapsing subsequent to the receiving of the turn-on command, obtains a second temperature value sensed through the temperature sensor; and provides notification information related to an environment in which the air conditioner is installed, on the basis of the first temperature value and the second temperature value.
Abstract:
An air conditioner is provided. The air conditioner includes a display, a storage configured to store power consumption information and time information which are required to increase or decrease an indoor temperature by a unit temperature according to an outdoor temperature, a sensor, and a processor configured to predict, based on a desired temperature being input, at least one of a power consumption or a required time for the indoor temperature to reach the desired temperature by the sensor based on information stored in the storage, and provide at least one of the predicted power consumption or the required time through the display.
Abstract:
A ferroelectric semiconductor device includes an active region extending in one direction, a gate insulating layer crossing the active region, a ferroelectric layer disposed on the gate insulating layer and including a hafnium oxide, a gate electrode layer disposed on the ferroelectric layer, and source/drain regions disposed on the active region to be adjacent to both sides of the gate insulating layer, wherein the ferroelectric layer includes 20% or more of orthorhombic crystals, and an upper surface of the source/drain region is located at a level equal to or higher than an upper surface of the ferroelectric layer.
Abstract:
A nonvolatile memory device includes gate electrodes three dimensionally arranged on a semiconductor substrate, a semiconductor pattern extending from the semiconductor substrate and crossing sidewalls of the gate electrodes, a metal liner pattern formed between the semiconductor pattern and formed on a top surface and a bottom surface of each of the gate electrodes, and a charge storage layer formed between the semiconductor pattern and the metal liner pattern.
Abstract:
A nonvolatile memory device includes gate electrodes three dimensionally arranged on a semiconductor substrate, a semiconductor pattern extending from the semiconductor substrate and crossing sidewalls of the gate electrodes, a metal liner pattern formed between the semiconductor pattern and formed on a top surface and a bottom surface of each of the gate electrodes, and a charge storage layer formed between the semiconductor pattern and the metal liner pattern.
Abstract:
A method is provided comprising: generating, by an electronic device, at least one context information log associated with content stored in a memory; grouping the content into a plurality of groups based on the at least one context information log; adding the plurality of groups to a first list, wherein each of the plurality of groups is associated with a respective time-out period; generating a first screen based on the first list, the first screen including a first group from the plurality; detecting an input to the first screen that selects the first group and in response, adding the first group to a second list; wherein the first group is removed from the first list when the respective time-out period of the first group expires, and the first group persists in the second list after the respective time-out period of the first group expires.
Abstract:
An imaging system includes an image sensor configured to obtain first image data, based on a received light; and a processing circuit configured to determine an operating mode of the image sensor, among a first mode and a second mode, based on an illumination and a dynamic range corresponding to the obtained first image data. The image sensor includes a first sub-pixel configured to sense a target light corresponding to a target color, in the first mode, convert the target light sensed during a first exposure time, into a first signal, and in the second mode, convert the target light sensed during a second exposure time longer than the first exposure time, into a second signal.
Abstract:
A ferroelectric semiconductor device includes an active region extending in one direction, a gate insulating layer crossing the active region, a ferroelectric layer disposed on the gate insulating layer and including a hafnium oxide, a gate electrode layer disposed on the ferroelectric layer, and source/drain regions disposed on the active region to be adjacent to both sides of the gate insulating layer, wherein the ferroelectric layer includes 20% or more of orthorhombic crystals, and an upper surface of the source/drain region is located at a level equal to or higher than an upper surface of the ferroelectric layer.
Abstract:
A method for processing a touch or a gesture input made though the touch panel of the electronic device is provided. An electronic device includes a display having a touch panel for receiving a touch or a gesture input, a processor which is electrically connected to the display, and a memory which is electrically connected to the processor, wherein the memory stores instructions, executable to configure the processor to receive the gesture input made through the touch panel, to detect touch coordinates corresponding to the gesture input on the touch panel, to determine predictive coordinates corresponding to the touch coordinates, to determine whether to compensate the predictive coordinates based on a movement direction of the gesture input, to determine target coordinates corresponding to the predictive coordinates based on a movement speed of the gesture input, and to display at least one object at the target coordinates on the display.