Abstract:
An electronic device is provided. The electronic device includes a board, a plurality of pixels including a first pixel disposed on the board, and including a first organic light emitting layer including a first sub-organic light emitting layer and a second sub-organic light emitting layer, and a second pixel including a second organic light emitting layer, a pixel definition layer located between the first sub-organic light emitting layer and the second sub-organic light emitting layer, a first light shielding member located on the pixel definition layer to overlap the pixel definition layer between the first and second sub-organic light emitting layer in a first direction, and an opaque member overlapping the first light shielding member in the first direction, and located between at least a portion of the pixel definition layer located between the first sub-organic light emitting layer and the second sub-organic light emitting layer, and the first light shielding member.
Abstract:
A display device may include a display panel and a display driving circuit operatively coupled to the display panel. The display panel may include: a pixel layer including a first set of a plurality of first pixels and a second set of a plurality of second pixels providing a viewing angle that is narrower than a viewing angle provided through the plurality of first pixels; a conductive pattern disposed on the pixel layer; and an organic insulating layer disposed between a transparent member and the conductive pattern, and including a light blocking member in contact with the transparent member and having openings dividing each of sub-pixels included in each of the plurality of second pixels. Various other embodiments are possible.
Abstract:
The present disclosure relates to a technology for Sensor Networks, Machine to Machine (M2M), Machine Type Communication (MTC), and Internet of Things (IoT). The present disclosure may be used for an intelligent service (smart home, smart building, smart city, smart car or connected car, health care, digital education, retail business, security and safety-related service, etc.) that is based on the above technologies. The present invention, with respect to a set temperature control method, is characterized by comprising the steps of: setting a control section which is a time section for controlling a set temperature in a certain space; collecting user set temperature information according to weather information for each control section, and predicted weather information; determining set temperature control information for each of the control sections on the basis of the collected set temperature information; and controlling the set temperature in the certain space on the basis of the set temperature control information determined for each of the control sections and the predicted weather information.
Abstract:
A display device having enhanced visibility and a mobile terminal including the same are provided. The display device includes a liquid crystal display panel for displaying a predetermined image by selectively transmitting incident light, a backlight unit for providing light for driving the liquid crystal display panel, a diffraction sheet disposed between the liquid crystal display panel and the backlight unit to diffract light from an external light source passing through the liquid crystal display panel and to reapply the light toward a front surface direction from a rear surface of the liquid crystal display panel.
Abstract:
Various embodiments of the disclosure relate to an electronic device including an under display camera (UDC). The electronic device includes: a housing, a display, and a camera disposed inside the housing overlapping a portion of the display and acquiring light passing through the display from outside. The display includes a first area in which a first pixel overlapping with at least a portion of the camera and a first pixel driving circuit for driving the first pixel are disposed, and a second area, other than the first area, in which a second pixel and a second pixel driving circuit for driving the second pixel are disposed. The first pixel driving circuit includes a first driving thin film transistor (TFT) having a first channel region having a straight shape does not include a curved shape, and the second pixel driving circuit includes a second driving TFT having a second channel region of a curved shape. A first channel width of the first driving TFT is greater than a second channel width of the second driving TFT, and a first channel length of the first driving TFT is less than a second channel length of the second driving TFT.
Abstract:
An electronic device includes a speaker configured to output an inaudible acoustic signal, one or more microphones configured to receive a first reflected wave signal, a memory storing one or more instructions, and one or more processors configured to execute the one or more instructions to obtain a signal change amount based on a correlation between a reference signal corresponding to the inaudible acoustic signal and the received first reflected wave signal, based on the signal change amount exceeding a first threshold value corresponding to a movement of an object, obtain object location information corresponding to a location of the object in a spatial structure based on the signal change amount, and based on the signal change amount exceeding a second threshold value corresponding to a change in the spatial structure, update a final parameter set corresponding to the inaudible acoustic signal by using a waveform optimization model.
Abstract:
An electronic device is provided. The electronic device includes a first electric object including a first wiring extending in a first direction and a second wiring including a first portion extending in the first direction and a second portion extending in a second direction different from the first direction, and including an opening in one region, and a second electric object including a third wiring extending in the first direction and a fourth wiring including a third portion extending in the first direction and a fourth portion extending in the second direction, wherein the second electric object is coupled to the first electric object so as to finish at least a portion of the opening.
Abstract:
An electronic device is provided. The electronic device includes a display, a display driver integrated circuit (IC) that controls the display, a camera disposed in a display area, and a processor connected with the display driver IC and the camera. The display includes a normal area having a first pixel density, a camera light-receiving area where the camera is disposed and at least one pixel is disposed, the camera light-receiving area having a second pixel density lower than first pixel density, and a circuit area provided between the normal area and the camera light-receiving area and having a third pixel density, and a circuit that transfers a drive voltage to the pixel disposed in the camera light-receiving area is disposed in the circuit area. The third pixel density is lower than or equal to the first pixel density, and the third pixel density is higher than the second pixel density.
Abstract:
An electronic apparatus and/or method which may improve the performance of a sensor module. An electronic apparatus may include: a display panel; a fingerprint sensor arranged to overlap at least part of the display panel; and a processor operatively connected to the display panel and the fingerprint sensor, wherein the processor may: execute a fingerprint authentication function using the fingerprint sensor; identify an AMOLED off ratio (AOR) and luminance setting value of the display panel on the basis of the fingerprint authentication function being executed; linearly adjust the AOR according to a section to which the luminance setting value belongs or set the AOR to a designated minimum value; and perform fingerprint authentication by using the fingerprint sensor while the AOR is maintained at the minimum value. The present disclosure may further include various other embodiments.
Abstract:
A semiconductor manufacturing apparatus includes a first structure having a first hole, a second structure on the first structure, the second structure including a space for accommodating a substrate and a lower plate with a second hole, a first pin insertable into the first hole, the first pin having a same diameter as the first hole and a length smaller than a length of the first hole in a vertical direction, a second pin insertable into the second hole and on the first pin, the second pin having a same diameter as the second hole, a locking plate between the first pin and the second pin, the locking plate overhanging a side wall of the first pin, and a coupling member configured to couple the first pin to or separate the first pin from the second pin.