Abstract:
An electro-static discharge protection device includes a substrate that includes a first well that has a first conductive type and a second well that has a second conductive type, and first to eighth diffusion regions formed on the first well and the second well. At least a portion of the diffusion regions formed in the first well are connected to a first electrode, and at least a portion of diffusion regions formed in a second well are connected to a second electrode. The contact between one of diffusion regions formed in the first well and an N well forms a trigger diode. A junction between one of diffusion regions formed in a second well and a P well forms a trigger diode. The trigger diodes are electrically connected to each other.
Abstract:
An electronic device is provided. The electronic device includes a conductive support member, a first circuit board connected to the conductive support member by a first capacitor, a second circuit board connected to the conductive support member by a second capacitor, a first conductive connection member electrically connecting the first circuit board and the second circuit board, and a first ground structure, at least a portion of the first ground structure being interposed between the first conductive connection member and the conductive support member. The ground structure includes a non-conductive layer physically contacting the conductive support member, and a conductive layer electrically connected to the first conductive connection member to form a capacitive coupling with the conductive support member.
Abstract:
A method of moving an object by an electronic device having a touch screen. The method includes recognizing at least two first touch inputs through the touch screen, recognizing transitions of the at least two first touch inputs to adjacent inputs that move adjacent to each other, and moving an object displayed on the touch screen in response to movements of the adjacent inputs.
Abstract:
A method and apparatus for controlling a text input in an electronic device having a touch screen are provided. The method includes displaying at least one text inputted via a touch panel of the touch screen; when a deletion event is detected through the touch panel, deleting at least one of the displayed at least one text and storing the deleted at least one text in a memory unit; when the deletion event is removed, displaying a recovery guide on the touch screen and displaying the stored at least one text in the recovery guide; and when a selecting event is detected from the recovery guide, recovering at least one text selected from the recovery guide and displaying the selected at least one text as inputted at least one text.
Abstract:
The disclosure relates to an electronic device. An electronic device according to an embodiment of the disclosure includes: a display defining a first surface of the electronic device, a housing defining a second surface of the electronic device spaced apart from the first surface, and a camera assembly at least partially disposed between the first surface and the second surface. The camera assembly includes: a case including a first camera hole open toward the first surface and a second camera hole open toward the second side, a rotary body rotatably disposed between the first camera hole and the second camera hole and including a first reflective surface configured to reflect light passing through the first camera hole, and a second reflective surface configured to reflect light passing through the second camera hole, an image sensor spaced apart from the rotary body and configured to receive the light reflected from the first and/or second reflective surface, a lens barrel disposed between the image sensor and the rotating body, a lens disposed inside the lens barrel, and an actuator configured to move the image sensor along a direction in which the image sensor and the rotary body are spaced apart from each other.
Abstract:
An electronic device is provided. The electronic device includes a display and a processor, wherein the processor is set to control the display to display an execution screen of a camera application through a first region of the display and display an image list linked with the camera application through a second region different from the first region of the display in response to the execution of the camera application, the image list including a plurality of images and the plurality of images including still images and moving images, acquire a first image captured using the camera application in response to an image capture request, control the display to display a first temporary image corresponding to the first image in the image list through the second region when it is determined that post-processing of the first image is required, and control the display to display a first post-processed image.
Abstract:
Disclosed is an electronic apparatus. The electronic apparatus includes: a communication interface comprising communication circuitry, a display, a memory configured to store at least one instruction, and one or more processors connected to the communication interface, the display, and the memory and configured to control the electronic apparatus, wherein the one or more processors, by executing the at least one instruction, may be configured to: control the display to display content streamed from an external server through the communication interface, based on receiving delay characteristic information corresponding to the streamed content from the external server, identify a critical value of a stream buffer in which the streamed content is stored based on the delay characteristic information, and control at least one of a decoding speed of the content or output speed of the display based on the critical value of the stream buffer and a state of the stream buffer.
Abstract:
A color conversion panel, comprising a color conversion layer comprising a color conversion region and optionally a partition wall defining each region of the color conversion layer, wherein the color conversion region comprises a first region corresponding to a first pixel, the first region comprises a first composite, the first composite comprises a matrix and a semiconductor nanoparticle, wherein the semiconductor nanoparticle is dispersed in the matrix, the semiconductor nanoparticle comprises silver, a Group 13 metal, zinc, and a chalcogen element, the semiconductor nanoparticle emits a first light, the Group 13 metal is indium, gallium, aluminum, or a combination thereof, the chalcogen element is sulfur, selenium, or a combination thereof, and in the semiconductor nanoparticle, a mole ratio of zinc to a total sum of silver, Group 13 metal, and zinc is greater than or equal to about 0.01:1.
Abstract:
A semiconductor nanoparticle, and a method for producing the semiconductor nanoparticle, and a composite, a color conversion panel, and a display panel including the semiconductor nanoparticle. The semiconductor nanoparticle includes silver, a Group 13 metal including indium and gallium, and a chalcogen element including sulfur and optionally selenium, the semiconductor nanoparticle is configured to emit a green light with an emission peak wavelength of 500 nanometers to 580 nanometers, and a full width at half maximum of about 5 nm to about 70 nm. The semiconductor nanoparticle exhibits a quantum yield of greater than or equal to about 50%, and includes a mole ratio (In+Ga):Ag of about 1:1 to about 3.5:1.
Abstract:
An apparatus includes: a first touch panel including a first touch pattern group formed in a first area of the first touch panel and a second touch pattern group formed in a second area of the first touch panel that surrounds the first area; and a first processor configured to detect an input to the first touch panel based on a first threshold and a second threshold, wherein the first threshold is used in detecting a first portion of the input performed in the first area and the second threshold is used in detecting a second portion of the input performed in the second area of the touch panel.