Abstract:
A mobile terminal with wired charging and wireless charging is provided. The mobile terminal includes a wireless charging interface unit that receives a current provided from a wireless charging apparatus, a wired charging interface unit connected to an external charging device by wire to receive outside power, a detection unit that detects whether power is supplied from outside of the mobile terminal through the wireless charging interface unit and the wired charging interface unit and that outputs charging input information to a controller, a switching unit that outputs power supplied through at least one of the wireless charging interface unit and the wired charging interface unit to a charging unit, the charging unit connected to the switching unit to charge a battery with power received through the switching unit, and a controller that divides a charging mode based on charging input information output from the detection unit.
Abstract:
According to an embodiment, a wearable electronic device may include a camera, a display, a lens assembly configured to focus or guide light beams representing visual information output from the display, the lens assembly including a first lens configured to adjust a refractive index by receiving an electrical signal, at least one processor and memory storing instructions. According to an embodiment, the instructions, when executed by the at least one processor, may cause the wearable electronic device to control the display to output the light beams representing the visual information through the lens assembly. According to an embodiment, the instructions, when executed by the at least one processor, may cause the wearable electronic device to adjust a refractive index of a first area of the first lens corresponding to a first distance from an edge of the first lens to reduce blur of a first object displayed based on the first light beams passing through the first area of the first lens corresponding to the first distance from the edge of the first lens. According to an embodiment, the instructions, when executed by the at least one processor, may cause the wearable electronic device to adjust the refractive index of the second area of the first lens to a second value corresponding to a second distance, which is longer than the first distance, from the edge of the first lens. Various other embodiments may be possible.
Abstract:
An electronic device may include: a display panel in which a plurality of pixels arranged in a matrix; a first main gate line extending in a first direction and configured to be electrically connectible to a first pixel among the plurality of pixels; a second main gate line extending in the first direction and configured to be electrically connectible to a second pixel among the plurality of pixels, the second pixel being adjacent to the first pixel along a second direction intersecting the first direction; a first main source line extending in the second direction and configured to be electrically connectible to the first pixel; and a second main source line extending in the second direction and configured to be electrically connectible to a third pixel among the plurality of pixels, the third pixel being adjacent to the first pixel along the first direction.
Abstract:
Provided is a wearable electronic device including an anti-fog structure, the wearable electronic device including: a main body portion; a lens module including a lens and a barrel structure, wherein the barrel structure surrounds the lens and is on one surface of the main body portion; and at least one heat source, wherein the barrel structure includes a thermal conductive material thermally connected to the at least one heat source and at least partially extending in a first direction, and wherein the thermal conductive material is configured to transfer heat from the at least one heat source to the lens.
Abstract:
According to an embodiment, an electronic device receives information including first multimedia content and feedback data with respect to the first multimedia content from an external electronic device through a communication circuit. The electronic device displays at least one visual object associated with the feedback data in a first area of a display based on the received information. The electronic device displays second multimedia content obtained by changing at least a portion of the first multimedia content in a second area different from the first area, based on the feedback data identified by the information.
Abstract:
A wearable device according to an embodiment identifies a plurality of multimedia contents included in virtual space, based on identifying an input indicating entry into the virtual space. The wearable device obtains an order for outputting the plurality of multimedia contents, based on profile information of a user corresponding to the wearable device. The wearable device displays at least a portion of the virtual space including a visual object representing at least one multimedia content among the plurality of multimedia contents through a display, in the user's FoV, based on the order. The present disclosure is related to a metaverse service for enhancing interconnectivity between a real object and a virtual object. For example, the metaverse service is provided through a network based on fifth generation (5G) and/or sixth generation (6G).
Abstract:
An electronic device includes a circuit electrically connected to first and second contacts and a processor electrically connected to the circuit, wherein the circuit compares a first signal occurring by an electrical contact of the first contact and the external material with a first threshold value to generate a first comparison signal, compares a second signal occurring by an electrical contact of the second contact and the external material with a second threshold value to generate a second comparison signal, and generates a third signal based on a portion of the first and second comparison signals and provides the third signal to the processor, wherein the external material includes one of moisture and a foreign substance or the external connector, and the processor prevents recognizing a contact of the moisture or the foreign substance as a contact of the external connector based on a portion of the third signal.
Abstract:
According to an embodiment of the disclosure, a wearable electronic device may be provided. The wearable electronic device may comprise a display member and a light output device including a polarizer. The display member may include a first lens, a second lens configured to transmit light of a first polarization state and refract light of a second polarization state, an optical waveguide disposed between the first lens and the second lens and configured to receive light output from the light output device and emit the light of the first polarization state toward the second lens, and a transparent display assembly including a transparent display disposed between the first lens and the optical waveguide and configured to output the light of the second polarization state toward the second lens.
Abstract:
An example electronic device may include a memory storing computer-executable instructions and a processor configured to execute the instructions by accessing the memory. The instructions may cause the processor to control the electronic device receive a voice input for requesting to apply an interaction with a second entity to a first entity; obtain a graphic representation corresponding to the second entity based on the received voice input; display the obtained graphic representation on a screen area corresponding to the first entity on a display of the electronic device; and based on receiving a control input for the second entity, transmit, to an external device corresponding to the first entity, a control command, converted from the control input, for triggering an operation of the external device.
Abstract:
Various examples in the present invention relate to an electronic device and a method for reducing noise by utilizing the same, the device and the method connecting a call using a headset, classifying a user voice signal received through the headset into a P voice signal and an N voice signal, applying the same voltage to the P voice signal and the N voice signal by using a noise reduction filter, and enabling the noise induced in the voltage to be removed by synthesizing the P voice signal and the N voice signal. In addition, other examples are possible.