Abstract:
A mobile EMR system and a method of providing a service thereof strengthen mobility and security in an existing EMR system. The method of providing a service in a mobile electronic medical record (EMR) system includes: receiving, by a mobile EMR management server, a command that requests EMR information from a mobile client; converting the command, having received from the mobile client to a command of a method in which a hospital information system (HIS) supports; forwarding an EMR information request to the HIS using the converted command; acquiring the requested EMR information from the HIS; and transmitting the acquired EMR information to the mobile client.
Abstract:
A substrate inspection apparatus includes a laser light source configured to emit a laser beam, an optical splitter configured to split the laser beam into a first laser beam and a second laser beam, a delay stage configured to change a relative time delay of the second laser beam and optically connected to the optical splitter, a first modulator optically connected to the optical splitter and configured to change the first laser beam, and a feedback system configured to sense the second laser beam reflected from a substrate and configured to apply electrical feedback to the first modulator.
Abstract:
According to various embodiments, an electronic device may include at least one temperature sensor, a memory, and at least one processor operatively coupled to the at least one temperature sensor and the memory to identify the electronic device is in a first overheat state based on a heat temperature of the electronic device, perform data processing in a first data processing speed range in the first overheat state, to identify a first time period and a first data processing speed corresponding to a first specified event, upon occurrence of the first specified event during the data processing corresponding to the first specified event in the first data processing speed range, perform data processing based on the first time period and the first data processing speed, and to perform data processing in the first data processing speed range based on expiration of the first time period or completion of data processing corresponding to the first specified event.
Abstract:
Embodiments of the disclosure provide a method for accelerating an asset execution in an electronic device. The method includes: detecting, by the electronic device, a user interface (UI) transition associated with a first application; predicting, by the electronic device, a sequence of at least one asset to be offloaded for a subsequent UI transition based on an asset parameter using a ML model, wherein the subsequent UI transition is associated with the first application or a second application; offloading, by the electronic device, the at least one asset in the sequence; and storing, by the electronic device, the at least one offloaded asset to a memory of the electronic device.
Abstract:
A semiconductor device includes an electrode structure including electrodes stacked on a substrate and an insulating pattern on an uppermost electrode of the electrodes, a vertical structure that penetrates the electrode structure and is connected to the substrate, a first insulating layer on the electrode and the vertical structure, a conductive pattern that penetrates the first insulating layer and is connected to the vertical structure, an upper horizontal electrode on the conductive pattern, and an upper semiconductor pattern that penetrates the upper horizontal electrode and is connected to the conductive pattern. The conductive pattern has a first side surface on the vertical structure and a second side surface on the insulating pattern.
Abstract:
An inspection apparatus is provided. The inspection apparatus includes a substrate extending in a first direction and a second direction perpendicular to the first direction, a receiver antenna arranged on the substrate and including first and second antenna electrodes, a first waveguide on the substrate, and a second waveguide on the substrate, wherein the first antenna electrode overlaps the first waveguide in a third direction that is perpendicular to the first direction and the second direction, and the second antenna electrode overlaps the second waveguide in the third direction.
Abstract:
An electronic apparatus is provided. The electronic apparatus includes a user interface, a camera, a memory configured to store a first artificial intelligence model trained to obtain information on an emotion based on an input image, and a processor, connected to the user interface, the camera, and the memory, configured to control the electronic apparatus. The processor is configured to, based on text being input through the user interface, identify whether the text includes first information on a user's emotion, based on the text including the first information, obtain second information for the emotion by inputting the image obtained through the camera to the first artificial intelligence model, and identify a type of the user's emotion based on the first information obtained from the text and the second information obtained from the image.
Abstract:
A method for machine learning based prediction of at least one subsequent UI layout is provided. The method may include detecting, by the electronic device, a first transition event. Further, the method may include identifying, by the electronic device, a UI layout associated with a first application of the electronic device. Further, the method may include predicting, by the electronic device, the at least one subsequent UI layout to be displayed based on at least one transition parameter, wherein the at least one subsequent UI layout is associated with at least one of the first application or at least one second application. Further, the method may include loading, by the electronic device, the at least one subsequent UI layout in a memory of the electronic device.
Abstract:
The inventive concepts provide methods of forming a semiconductor device. The method includes forming a neutral layer having a photosensitive property and a reflow property on an anti-reflective coating layer, performing an exposure process and a development process on the neutral layer to form a preliminary neutral pattern at least partially exposing the anti-reflective coating layer, heating the preliminary neutral pattern to form a neutral pattern, forming a block copolymer layer on the neutral pattern, and heating the block copolymer layer to form a block copolymer pattern. The block copolymer pattern includes a first pattern disposed on the anti-reflective coating layer exposed by the neutral pattern, and a second pattern disposed on the neutral pattern and chemically bonded to the first pattern.