Abstract:
A semiconductor device includes storage electrodes on a substrate and one or more supporters configured to couple one or more portions of the storage electrodes. The semiconductor device may include multiple non-intersecting supporters extending in parallel to a surface of the substrate. At least one supporter may have an upper surface that is substantially coplanar with upper surfaces of the storage electrodes. The storage electrodes may include a capacitor dielectric layer that conformally covers one or more surfaces of the storage electrodes and one or more supporters. A storage electrode may include upper and lower storage electrodes coupled together. The upper and lower storage electrodes may have different horizontal widths.
Abstract:
A method and apparatus for photographing using a plurality of sensors in an electronic device are disclosed. The electronic device includes a plurality of output units comprising output circuitry configured to output an identification signal to an external object, a sensor configured to acquire an identification signal that is a reflection of the identification signal from an external object, and a processor. The processor is configured to determine a first state of the external object, based on the reflected identification signal, to designate the plurality of output units as a first subset and a second subset, based at least on the first state of the external object, and to differently control the first subset and the second subset to output the identification signal.
Abstract:
A semiconductor device includes first and second bit line structures on a substrate and spaced apart from each other, a via plug partially filling between the first and second bit line structures, a via pad in contact with an upper surface of the via plug and an upper sidewall of the first bit line structure, the via pad being spaced apart from an upper portion of the second bit line structure, a first cavity filled with air being between the via plug and the first bit line structure and a second cavity filled with air between the via plug and the second bit line structure, A gap capping spacer having a first portion on the upper sidewall of the first bit line structure and a second portion covers the first air spacer. A horizontal width of the first portion is smaller than that of the second portion.
Abstract:
An electronic device of the disclosure may include a camera module including a lens assembly, a reflector for changing a field of view, a Hall sensor for identifying a position of the reflector, and a first memory for storing a first correction value for correcting shading by the lens assembly, a second memory for storing reflector shading correction, and a processor. The processor may obtain a first image frame by driving the camera module, obtain first Hall data corresponding to the position of the reflector through the Hall sensor while the first image frame is obtained through the camera module, obtain the first correction value from the first memory, obtain a second correction value corresponding to the first Hall data among the reflector shading correction values from the second memory, and perform shading correction on the first image frame based on the first correction value and the second correction value.
Abstract:
An electronic device is provided. The electronic device includes a plurality of cameras disposed at different positions on one side of the electronic device, a display, memory storing one or more computer programs, and one or more processors communicatively coupled to the plurality of cameras, the display, and the memory, wherein the one or more computer programs include computer-executable instructions that, when executed by the one or more processors individually or collectively, cause the electronic device to while displaying an image acquired through a first camera among the plurality of cameras on the display, receive a user input corresponding to a zoom operation for changing magnification for capturing the image, determine at least one camera among the plurality of cameras based on the magnification to be changed by the zoom operation, determine at least one control value for controlling an optical image stabilization module of each of the at least one camera based on a position of each of the at least one camera on the one side, based on the at least one control value, control the optical image stabilization module of each of the at least one camera to move an optical system or an image sensor of each of the at least one camera in a direction of moving a position of a subject presented in the image captured by the at least one camera, and while performing the zoom operation, control the display to switch an image displayed on the display from the image acquired through the first camera to an image acquired through another camera while the optical system or the image sensor of each of the at least one camera is moved based on the at least one control value.
Abstract:
A display device includes a display configured to output a screen image along a first direction, and a lens assembly including at least three lenses arranged sequentially along an optical axis and configured to focus or guide the screen output from the display in a predetermined direction/predetermined position. The lens assembly may be configured to reflect the screen output from the display at least twice between a first lens disposed farthest from the display and an nth lens disposed closest to the display. The display may be disposed to be movable in a direction crossing the first direction or the optical axis. The display device satisfies [Conditional expression 1: 0.02
Abstract:
A clamshell-type electronic device is provided. The clamshell-type electronic device includes a housing of which a state is switchable between a folded state and an unfolded state and which includes a common hole, a main display disposed on a first surface of the housing and transformable depending on the state of the housing, a sub-display disposed on a second surface of the housing, a camera disposed in the housing and including a flash, an optical proximity sensor disposed in the housing and configured to sense light entering an inside of the housing, an optical sensor disposed in the housing and including a plurality of light receiving elements configured to sense light entering the inside of the housing, memory storing one or more computer programs, and one or more processors communicatively coupled to the optical sensor and the memory, wherein the one or more computer programs include computer-executable instructions that, when executed by the one or more processors individually or collectively, cause the clamshell-type electronic device to obtain at least one of ambient brightness information and ambient light source information based on light information received from the optical sensor.