Abstract:
Disclosed is an electronic device comprising: a sensor module, a communication circuit, and at least one processor. The at least one processor may be configured to: identify a mounting state of the electronic device based on sensor data received from the sensor module, select at least one antenna combination including at least one transmission antenna and at least one reception antenna from among the one or more antennas according to the mounting state, obtain a radar signal related to a measurement target from the communication circuit through the at least one antenna combination, obtain a biometric signal from the obtained radar signal, evaluate a signal quality of the biometric signal, and adjust control parameters for an antenna combination selected from among the at least one antenna combination according to the sensor data, the radar signal, and the signal quality of the biometric signal.
Abstract:
A dryer includes a rotating drum; a lifter positionable on an inner surface of the rotating drum; an energy harvester positionable inside the lifter so that while the energy harvester is positioned inside the lifter, the energy harvester generates electric power as the rotating drum rotates while the lifter is positioned on the inner surface of the rotating drum; a humidity sensor positionable inside the lifter so that while the humidity sensor is positioned inside the lifter, the humidity sensor receives the electric power generated by the energy harvester and senses humidity; a circuit board positionable inside the lifter and on which the humidity sensor is disposed; and an air passage formed through the lifter so as to allow air inside the rotating drum to pass through the lifter. The humidity sensor senses the humidity according to air passing through the air passage of the lifter.
Abstract:
A semiconductor device includes a lower structure, a stack structure including gate layers and interlayer insulating layers alternately stacked on the lower structure in a first direction, and a channel structure in a channel hole passing through the stack structure. The channel structure includes a variable resistance material layer in the channel hole, a data storage material layer between the variable resistance material layer and a sidewall of the channel hole, and a channel layer between the data storage material layer and the sidewall of the channel hole, the channel layer includes a first element, the variable resistance material layer includes a second element, different from the first element, oxygen, and oxygen vacancies, and the data storage material layer includes the first element, the second element, oxygen, and oxygen vacancies.
Abstract:
Disclosed are a memory device including a vertical stack structure and a method of manufacturing the memory device. The memory device includes an insulating structure having a shape including a first surface and a protrusion portion protruding in a first direction from the first surface, a recording material layer covering the protrusion portion along a protruding shape of the protrusion portion and extending to the first surface on the insulating structure a channel layer on the recording material layer along a surface of the recording material layer, a gate insulating layer on the channel layer, and a gate electrode formed at a location on the gate insulating layer to face a second surface which is a protruding upper surface of the protrusion portion, wherein a void exists between the gate electrode and the insulating structure, defined by the insulating structure and the recording material layer.
Abstract:
An image sensor including a color filter array layer, which includes a plurality of color filters transmitting light of different colors; and reflective partitioning walls, which define the color filters and have a lower refractive index than that of the color filters; a color separation device, which separates incident light into a plurality of colors, such that the plurality colors are incident on the plurality of color filters, respectively; and a sensor substrate, on which a plurality of light detection devices for respectively sensing light transmitted through the plurality of color filters are arranged in an array shape.
Abstract:
A clothes treating apparatus including a cabinet having a laundry inlet; a door configured to open and close the laundry inlet; a drum inside the cabinet to accommodate clothes received in the drum through the laundry inlet while the laundry inlet is opened by the door; a sensing device including a sensor to measure a temperature or a humidity in the drum; and a holder on the door or the drum. The sensing device is separably mountable to the holder so that, when the sensing device is mounted to the holder, the sensing device is held by the holder and, when the sensing device is separated from the holder, the sensing device is allowed to move with respect to the drum, within the drum, so as to measure the temperature or the humidity in the drum while clothes accommodated in the drum are being treated.
Abstract:
Disclosed are a memory device including a vertical stack structure, a method of manufacturing the same, and/or an electronic device including the memory device. The memory device including a vertical stack structure includes an oxygen scavenger layer on a base substrate, a recording material layer on the oxygen scavenger layer and in direct contact with the oxygen scavenger layer, a channel layer on the recording material layer, a gate insulating layer on the channel layer, and a gate electrode on the gate insulating layer. The oxygen scavenger layer includes an element that forms oxygen vacancies in the recording material layer and does not include oxygen.
Abstract:
An electronic device and method are disclosed herein. The electronic device includes a housing, a first, second, third and fourth electrode coupled to the housing, a communication module, and a processor. The processor implements the method, including: detect a first signal using the first electrode and the fourth electrode, detect a second signal using the second electrode and the fourth electrode, detect a third signal using the third electrode and the fourth electrode, transmit the first signal, the second signal, and the third signal to an external electronic device via the communication module, and receive, from the external electronic device, via the communication module, data for generating guidance information to correct an attachment position of the electronic device, wherein the guidance information is generated based on: a first biological signal generated based on the first signal and the second signal, a second biological signal generated based on the second signal and the third signal, and a third biological signal generated based on the third signal and the first signal.
Abstract:
An X-ray generation apparatus includes: an electron emission device comprising a plurality of electron emission units that emit electrons; a transmission type X-ray emission unit for emitting an X-ray by electrons emitted by the plurality of electron emission units; and a vacuum chamber for shielding the electron emission device and the transmission type X-ray emission unit by using vacuum. An X-ray imaging system includes an X-ray detection apparatus for detecting an X-ray that is irradiated from the X-ray generation apparatus and passes through an object.
Abstract:
A color filter array, a method of manufacturing the same, and an image sensor including the same are provided. The color filter array includes: a color filter arrangement including a plurality of color filters on a substrate; and an isolation wall which isolates each of the color filters and includes a solid including a plurality of air spaces.