Abstract:
An operating method of a storage device, includes: receiving decoded data from a codec; determining whether the decoded data includes a region of interest (ROI); based on determining the ROI is included in the decoded data, determining whether the decoded data includes a first background region, other than the ROI, identical to a second background region of an adjacent frame; based on determining the first background region is identical to the second background region, determining a similarity for the ROI between the decoded data and the adjacent frame; determining whether the similarity is lower than a reference value; and based on determining the similarity is lower than the reference value, generating detection information indicating that the decoded data is faked.
Abstract:
A light emitting device may include a light emitting structure, a transparent electrode, a first insulation layer, a first electrode, a second insulation layer and a second electrode. The light emitting structure may include a first semiconductor layer, an activation layer and a second semiconductor layer sequentially stacked. The transparent electrode may be formed on an upper surface of the second semiconductor layer. The transparent electrode may have at least one opening. The first insulation layer may be formed on an upper surface of the transparent electrode to fill the at least one opening. The first electrode may be formed on an upper surface of the first insulation layer. The first electrode may include a contact extending through the first insulation layer and connected with the transparent electrode. The second insulation layer may be formed on an upper surface of the first electrode. The second electrode may be formed on an upper surface of the second insulation layer. The second electrode may be electrically connected with the first semiconductor layer.
Abstract:
An electronic device is provided such that a user can experience a quick launch of an application therein. The electronic device includes a housing, a display, an input unit, a processor, a non-volatile memory to store an application program, and a volatile memory to store instructions that allow the processor to load a first part of the application program in the volatile memory based on a first change of state of the electronic device, to load a second part of the application program in the volatile memory based on a second change of state of the electronic device and to display an image or text generated by the loaded first or second part. Since at least part of the application is preloaded before the second input is generated, only the remainder of the application has to be loaded in order to execute the application after the second input is generated.
Abstract:
Disclosed is an electronic apparatus. The electronic apparatus includes a processor configured to downscale an image using a trained first artificial intelligence (AI) model and to encode a downscaled image, and the processor is configured to control downscaling of the image based on quality information of the image obtained using a trained second AI model, and the second AI model may be trained using feature information of the image obtained from the first AI model.
Abstract:
A light emitting device may include a light emitting structure, a transparent electrode, a first insulation layer, a first electrode, a second insulation layer and a second electrode. The light emitting structure may include a first semiconductor layer, an activation layer and a second semiconductor layer sequentially stacked. The transparent electrode may be formed on an upper surface of the second semiconductor layer. The transparent electrode may have at least one opening. The first insulation layer may be formed on an upper surface of the transparent electrode to fill the at least one opening. The first electrode may be formed on an upper surface of the first insulation layer. The first electrode may include a contact extending through the first insulation layer and connected with the transparent electrode. The second insulation layer may be formed on an upper surface of the first electrode. The second electrode may be formed on an upper surface of the second insulation layer. The second electrode may be electrically connected with the first semiconductor layer.
Abstract:
An electronic apparatus includes a receiver configured to receive data output through a screen of an external display, a memory storing one or more instructions, and a controller including at least one processor configured to execute the one or more instructions stored in the memory, wherein, based on the external display outputting an image corresponding to content, the controller is configured to obtain data that is output through the image, the data including first data including information associated with the content, obtain network connection information for connecting to a network associated with the content based on the first data, and control, by using the network connection information, at least one of the electronic apparatus and an external electronic apparatus, to be connected to the network.
Abstract:
An electronic device is provided such that a user can experience a quick launch of an application therein. The electronic device includes a housing, a display, an input unit, a processor, a non-volatile memory to store an application program, and a volatile memory to store instructions that allow the processor to load a first part of the application program in the volatile memory based on a first change of state of the electronic device, to load a second part of the application program in the volatile memory based on a second change of state of the electronic device and to display an image or text generated by the loaded first or second part. Since at least part of the application is preloaded before the second input is generated, only the remainder of the application has to be loaded in order to execute the application after the second input is generated.
Abstract:
A control for a power saving of an electronic device is disclosed. The device includes a camera configured to be activated and then obtain an image when no input event is received within a given time after activation of a selected function. The device further includes a control unit configured to, if the obtained image contains a specific pattern, determine whether the specific pattern corresponds to a human face pattern, and to, if the specific pattern does not correspond to the human face pattern, perform a power saving control of the electronic device.
Abstract:
An electronic device is provided. The electronic device includes: a memory configured to include at least one instruction; and a processor configured to be connected to the memory to control the electronic device, and obtain an output image by upscaling an input image using an artificial intelligence model trained to upscale an image, wherein the processor is configured to control the electronic device to: obtain parameter information of the artificial intelligence model based on pre-processing related information performed on the input image, and upscale the input image using the artificial intelligence model corresponding to the obtained parameter information.
Abstract:
An apparatus and method of measuring pattern uniformity, and a method of manufacturing a mask by using the measurement method are provided. The measurement apparatus includes a light source configured to generate and output light, a stage configured to support a measurement target, an optical system configured to transfer the light, output from the light source, to the measurement target supported on the stage, and a first detector configured to detect light reflected and diffracted by the measurement target, or diffracted by passing through the measurement target, wherein the first detector is configured to detect a pupil image of a pupil plane and to measure pattern uniformity of an array area of the measurement target on the basis of intensity of at least one of zero-order light and 1st-order light of the pupil image.