Abstract:
The present disclosure provides for memory apparatuses and systems including noise cancellation circuits, and operating methods thereof. In some embodiments, a memory device includes a first pad, a memory cell plane comprising a plurality of memory cells, a page buffer circuit, and a noise cancellation circuit. The page buffer circuit is configured to sense the memory cell plane, and identify, based on the sensing of the memory cell plane, a state stored in a memory cell of the plurality of memory cells, according to a ground voltage. The noise cancellation circuit is configured to receive a first ground voltage from the first pad, determine a reference voltage based on the first ground voltage, generate a second ground voltage that offsets a noise voltage, based on the reference voltage, and output the second ground voltage to the page buffer circuit.
Abstract:
An electronic device and method are provided for displaying information in the electronic device. The electronic device includes a display; and a processor configured to display an application (App) bar including at least one object through a first area of the display, display an execution screen through a second area of the display, and change at least one of the displayed App bar and the displayed execution screen, in response to a first user input received through the first area.
Abstract:
A method and apparatus for providing an application includes providing a first application through a display unit operatively coupled to an electronic device. A user input is obtained that is related to the first application. A second application is identified for execution in an external device for the electronic device based on the user input. Data is generated that is provided to the external device from the electronic device based on at least one of the first application or the second application.
Abstract:
An unmanned aerial vehicle (UAV) may include: a flight body; a camera installed on the flight body; a sensor module mounted inside the flight body to sense nearby surroundings; a wireless communication module mounted inside the flight body to wirelessly communicate with an external communication device; a processor mounted inside the flight body and electrically connected with the camera, the sensor module, and the wireless communication module; and a memory electrically connected with the processor. The memory may store instructions that, when the unmanned aerial vehicle is in flight, cause the processor to: identify a first geofence region; broadcast flight information on a periodic basis; receive flight information from a second unmanned aerial vehicle in flight; determine whether there is an overlap between the first geofence region and a second geofence region of the second unmanned aerial vehicle; and if so, reset the first geofence region so that the first geofence region does not overlap with the second geofence region.
Abstract:
Disclosed is an electronic device that transmits user information for registering a user account in a server, transmits hub identifiable information to the server, using a wireless communication circuit to add the hub identifiable information corresponding to a hub to the user account registered in the server, obtains device identifiable information corresponding to a plurality of Internet of things (IoT) devices, and transmits the device identifiable information to the server to add the device identifiable information to the user account registered in the server, which information is used such that the hub corresponding to the hub identifiable information added to the user account and the plurality of IoT devices are paired with each other.
Abstract:
A voltage generation circuit includes a current generation circuit, a slope trimming circuit and an offset trimming circuit. The current generation circuit is connected between an input voltage node and an output node that outputs a complementary to absolute temperature (CTAT) output voltage that decreases as an operation temperature increases. The current generation circuit generates a reference current flowing through the output node, the reference current having a constant magnitude regardless of the operation temperature. The slope trimming circuit is connected between the output node and an intermediate node. The slope trimming circuit adjusts a slope of the CTAT output voltage based on a first trimming code. The offset trimming circuit is connected between the intermediate node and a ground voltage node. The offset trimming circuit configured to adjust an offset voltage of the CTAT output voltage based on a second trimming code.
Abstract:
A mobile electronic device and navigation method thereof. An electronic device of the present disclosure includes a communication module, a camera module, a sensor module, a driving module, a memory, and a processor that is functionally connected to the communication module, the camera module, the sensor module, the driving module, and the memory, the processor determining at least one service and a goal location of the electronic device for providing the at least one service, planning a path towards the goal location, and controlling the electronic device to move along the path. However, other embodiments are possible as well.
Abstract:
A UAV and a flying control method thereof that can detect a user grip of the UAV are provided. The UAV and a flying control method thereof can detect a user grip at a first position and can detect release of the user grip at a second position.
Abstract:
An electronic device includes a camera module including image acquiring circuitry and at least one lens; a display configured to display an image acquired through the camera module; a processor electrically connected to the camera module and the display; and a memory electrically connected to the processor, wherein the memory stores instructions which, when executed, cause the processor to provide at least a portion of at least one image acquired through the camera module to the first application in response to a camera service request of a first application and to distribute the at least one image to the first application and the second application, when the processor receives a camera service request from a second application while the processor provides the at least a partial image to the first application.
Abstract:
A method of providing information by an electronic device is provided. The method includes executing a function related to a specific person while executing a function of a first electronic device, changing a display order of information related to the specific person when the information related to the specific person exists, and transmitting a changed matter of the changed information to a second electronic device.