Abstract:
Various embodiments disclosed in this document relate to an electronic device, for example, an electronic device comprising a conductive piece facing a housing of a metallic material, and an electronic device housing structure.
Abstract:
According to certain aspects of the disclosure, an electronic device comprises a housing including a first plate facing a first direction, a second plate facing a second direction opposite to the first direction, and a side member configured to surround a space between the first plate and the second plate; a camera module, at least part of which is disposed in the space; a printed circuit board disposed in the space; and a flexible printed circuit board connecting the camera module and the printed circuit board, wherein between a first position in which the at least part of the camera module is located in the space and a second position in which the at least part of the camera module is located outside the housing in a third direction substantially orthogonal to the first direction and the second direction, the camera module moves in the third direction and rotates to face the first direction or the second direction, wherein the camera module includes a flexible printed circuit board frame configured to receive or shield at least part of the flexible printed circuit board, wherein the flexible printed circuit board includes: a rollable portion including a first distal end of the flexible printed circuit board and a rollable area, wherein the first distal end is connected to one area of the camera module, and at least part of the rollable area is wrapped or unwrapped in the same direction as the rotation of the camera module; a movable portion including a curved area and a second distal end of the flexible printed circuit board, wherein the second distal end extends from the curved area and is connected to the printed circuit board, and a position of the curved area is changed to correspond to the motion of the camera module in the third direction; and a connecting portion configured to connect the rollable portion and the movable portion, and wherein the flexible printed circuit board frame includes: a cylindrical area configured to receive or shield at least part of the rollable portion; and a planar area configured to receive or shield at least part of the movable portion and at least part of the connecting portion, wherein the at least part of the connecting portion is fixed to the planar area.
Abstract:
A wearable device according to various embodiments of the present disclosure may include a housing forming at least a part of an exterior of the wearable device, a plurality of openings formed in at least a partial region of the housing, an elastic body disposed inside the housing and including a passage spatially connected with the plurality of openings, and at least one microphone sensing vibration introduced from the outside via the plurality of openings and the passage.
Abstract:
According to various embodiments of the present invention, an electronic device can comprise: a light-emitting module for emitting light; a reflection module for reflecting the light emitted from the light-emitting module; a spectrometric module; and a light receiving module for receiving at least one wavelength band among a plurality of wavelength bands dispersed by the spectrometric module.
Abstract:
An electronic device and data processing method thereof is provided. The electronic device of the present disclosure includes a first processor which acquires image data from a camera and generates a data frame based on the image data and a second processor which receives the data frame from the first processor, checks attribute information of the data frame, and supplies information on the data frame to at least one of a plurality of applications corresponding to the attribute information.
Abstract:
An electronic device has a flexible display. An apparatus and method for providing the electronic device includes: a display unit formed of flexible material having at least one curved surface, a transformation unit coupled to at least part of the display unit, and a control unit configured to alter the transformation unit to deform the at least one curved surface of the flexible material of the display unit.
Abstract:
A method for connecting an electronic device using an eye-tracking technique and an electronic device that implements the method are provided. The method includes acquiring eye-tracking information, obtaining image information corresponding to the eye-tracking information, comparing the image information with specific information about at least one external device, and based on the comparison, determining a specific external device to be connected from among the at least one external device.
Abstract:
A location-based service provision method and system of an electronic device is provided for supporting location-based service even in a sleep mode. The electronic device is provided with a main control unit, a low power sub-control unit, and a sensing unit. The sub-control unit collects sensor information provided by the sensor unit for measuring movement (e.g., speed and direction) of the electronic device, and calculates first location information based on the sensor information. The sub-control unit provides the location-based service based on the first location information.
Abstract:
A hearing aid according to an embodiment includes a hardware module, a case, and a receiver module. The hardware module is configured to control the hearing aid. The case has an open side and an internal space for accommodating the hardware module. The receiver module is united with the case to form an integrated structure. The receiver module includes a receiver connector fixedly connected at one side thereof with the case, and a receiver formed at the other side of the receiver connector. The hearing aid may further include a case interface unit fixedly formed at a closed side of the case. The hearing aids according to other embodiments are also disclosed.
Abstract:
The mobile terminal supporting low energy short range communication function includes a low energy short range communication unit; a switching unit configured to receive low energy communication data from the low energy short range communication unit and outputs the low energy communication data; a first processor configured to receive the low energy communication data received from the low energy short range communication unit via the switching unit; and a second processor configured to receive the low energy communication data received from the low energy short range communication unit via the switching unit, wherein the second processor is configured to receive operation state information from the first processor; and control, when the operation state information is received, the switching unit to relay the low energy communication data to one of the first and second processors based on the operation state information.