Abstract:
An electronic device includes: a power source unit including power supply circuitry configured to supply power and a signal corresponding to the power; a power management unit including power management circuitry configured to receive the power from the power source unit to supply the power to the electronic device; a controller configured to be activated when receiving the power from the power management unit to supply a signal corresponding to the power to the power management unit; and a plurality of submersion recognition patterns connected between the power source unit and the power management unit and between the power management unit and the controller, the plurality of submersion recognition patterns configured to recognize submersion of the electronic device, wherein the electronic device is shut down when at least one of the plurality of submersion recognition patterns recognizes submersion, and the electronic device is configured to maintain shutdown when submersion is recognized, even if a request for power supply occurs at the power source unit.
Abstract:
According to various embodiments, an electronic device may include an application processor including a first embedded universal serial bus (eUSB) device for performing an eUSB function, and a processor for controlling the first eUSB device. The electronic device may further include a repeater configured to be electrically connectable between the first eUSB device and an external device. The processor is configured to monitor to detect a connection of the external device to the electronic device. The processor is further configured to identify a mode related to an operation speed of the external device. The processor is further configured to control a signal to be transmitted or received in a high speed (HS) mode between the first eUSB device and the repeater, based on the identification that the mode is a full speed (FS) mode or a low speed (LS) mode. Various other embodiments may be provided.
Abstract:
A device and a method for power management of an electronic device are provided. The electronic device includes a battery, at least one internal circuit, a universal serial bus (USB) connector, and at least one processor operably connected to the at least one internal circuit and the USB connector, wherein the at least one processor can supply power to an external electronic device connected through the USB connector, identify the input voltage of the at least one internal circuit, determine whether to change a power supply method based on the identified input voltage if the identified input voltage is less than or equal to a reference voltage, and change the power supply method of the external electronic device if the power supply method is determined to be changed.
Abstract:
An electronic device is provided. The electronic device may include a microphone, a communication module comprising communication circuitry configured to be connected to one or more external electronic devices, and a processor. The processor may be configured to identify a user based on voice data including phoneme information obtained using the microphone, identify first use pattern information, corresponding to a first user, based on a designated artificial neural network (ANN) algorithm when the user is the first user and to perform a first designated operation by controlling a first designated electronic device, belonging to the one or more external electronic devices and corresponding to the phoneme information, through the communication module based on the identified first use pattern information, and to identify second use pattern information, corresponding to a second user, based on the designated ANN algorithm when the user is the second user and perform a second designated operation by controlling a second designated electronic device, belonging to the one or more external electronic devices and corresponding to the phoneme information, through the communication module based on the identified second use pattern information. Various embodiments of the disclosure can easily control at least one electronic device desired by a user based on use pattern information corresponding to the user using the ANN algorithm.
Abstract:
An electronic device includes a connector for connection to an external device; a controller electrically connected to a first external device detection terminal of the connector to detect an electric state of the first external device detection terminal and to output a signal corresponding to the detected electric state; a processor having a first input terminal electrically connected to the controller, that is configured to receive the signal through the first input terminal, having a second input terminal electrically connected to a second external device detection terminal of the connector, and that is configured to detect an electric state of the second external device detection terminal; and an electronic component disposed between the second external device detection terminal and the processor such that an overvoltage is not entered into the processor through the second input terminal. Various example embodiments are available.
Abstract:
A pen input device having malfunction prevention function and method of preventing malfunction thereof are disclosed. The pen input device includes: a housing having a bar form and having one end relatively narrowly opened to form a housing space; a resonant circuit housed within the housing; a tip that protrudes from an open end of the housing to the outside, the tip comprising a dielectric material and being configured to be movable within a predetermined range in a direction of a longitudinal axis of the housing, the tip being further configured to be self-centering; and a ground shielding portion formed in a portion of the housing in which electromagnetic induction occurs, the ground shielding portion not including the tip.
Abstract:
An electronic device and method of communication using a USB interface through full duplex transmission are disclosed. A method of performing data communication by an electronic device includes detecting a connection of an electronic device through an interface, configuring the electronic device as a host or a slave for data communication of first data in response to the connection of the electronic device, performing first data communication based on a first communication path according to a first standard for the first data in response to detecting the configuration, detecting performance of data communication of second data while the data communication of the first data is performed, configuring the electronic device as the host or the slave for the data communication of the second data and performing second data communication based on a second communication path according to a second standard for the second data in response to the configuration.