Abstract:
A method and apparatus with image processing based on neural diffusion are provided. The method includes: setting a randomness level for a target object; generating a noised image by performing a diffusion process of generating noise images while repeatedly performing noising based on a guide image of a guide domain including the target object and by extracting and saving, based on the randomness level, a partial preservation area from a noise image among the noise images; and obtaining a denoised output image of a target domain by performing a reverse process of repeatedly generating, based on the noised image, denoise images corresponding to the noise images and by applying the saved partial preservation area to a denoise image among the denoise images.
Abstract:
A device and a method are provided. The device and the method include providing, by a first electronic device, first content associated with an application that is executed in a second electronic device detachably connected to the first electronic device, determining a change in a connection between the first and second electronic devices based on an event that occurs in the connection, and providing, by the first electronic device, the first content, or second content associated with the application based on the determination of the change in the connection.
Abstract:
An electronic device is provided. The electronic device includes a housing including a first housing including a first surface facing a first direction, a second surface facing a second direction opposite the first direction, and a first side surface at least partially surrounding a space between the first surface and the second surface, and a second housing including a first surface that is capable of being oriented to face the first surface of the first housing portion, a second surface facing a direction opposite to the first surface, and a second side surface at least partially surrounding a space between the first surface and the second surface, a connection (hinge, joint, or the like) coupling the first housing and the second housing, a communication circuit arranged within the first housing, a ground arranged within the first housing, a first conductive member extending along at least a part of the first side surface, and a second conductive member extending along at least a part of the second side surface.
Abstract:
Provided are a method and apparatus for controlling at least part of one or more functions of an electronic device so as to reduce power consumption. According to various embodiments, the electronic device may perform operations of identifying the number of one or more displays functionally connected with the electronic device, executing at least part of one or more functions of the one or more displays in a first power consumption mode if the number of one or more displays is singular, and executing at least part of one or more functions of the one or more displays in a second power consumption mode if the number of one or more displays is plural.
Abstract:
An electronic device and method are provided for switching an antenna for SAR reduction. The method includes sequentially switching, based on a predetermined schedule, a plurality of antennas having different main emission directions, when transmitting a wireless signal.
Abstract:
An electronic device according to various embodiments of the present disclosure can include at least one heat component, a camera module comprising a camera disposed near the at least one heat component, and a support comprising a first opening in which the camera module is inserted and disposed with a gap along at least a portion of a periphery of the camera module.
Abstract:
An electronic device with a multi-slot antenna is provided. The electronic device includes a first housing including a first side, a second side facing in a second direction opposite to the first direction, and a first lateral side surrounded by a portion of a space between the first and second sides, a second housing including a third side facing in a third direction and a fourth side facing in a fourth direction opposite to the third direction, a first conductive member forming at least a portion of the first lateral side and including a slot, an intermediate plate located inside the first housing and including a portion adjacent to a slot of the first conductive member, wherein the portion comprises or forms an opening facing in the first or second direction, and a wireless communication circuit electrically coupled to a portion of the first conductive member around the slot.
Abstract:
A semiconductor device includes a substrate, a chip region in the substrate, a scribe lane region in the substrate, first active patterns in the chip region, a first device isolation pattern on the first active patterns, second active patterns in the scribe lane region, and a second device isolation pattern on the second active patterns. The scribe lane region is adjacent to the chip region. The first device isolation pattern includes a first device isolation material, and the second device isolation pattern includes a second device isolation material. The second device isolation material is different from the first device isolation material.
Abstract:
According to an embodiment, an electronic device comprises: a camera module configured to acquire an image, wherein the image comprises a portion depicting at least one target object; a Time of Flight (ToF) sensor configured to generate depth data regarding the at least one target object; at least one processor operatively connected with the camera module and the ToF sensor; and at least one memory operatively connected with the at least one processor, wherein the at least one memory stores instructions that, when being executed, cause the at least one processor to perform a plurality of operations, the plurality of operations comprising: while acquiring the image by using the camera module, measuring a first distance between the at least one target object and the electronic device, based on the depth data from the ToF sensor; pause an operation of the ToF sensor when the measured first distance is longer than a designated distance; while the operation of the ToF sensor is paused, measure a second distance between the at least one target object and the electronic device, using the camera module; and when the measured second distance is within the designated distance, resume the operation of the ToF sensor.
Abstract:
A method of using an electronic device is provided. The method includes displaying a first input region corresponding to a first language or symbol set through a first or second display of an electronic device and displaying a second input region corresponding to a second language or symbol set through the first or second display. In addition, other embodiments can be made.