Abstract:
An electronic device is provided. The electronic device includes a housing, a battery, which is disposed in an inner space of the housing, includes a first surface facing a first direction, a second surface facing a second direction different from the first direction, a third surface facing a third direction different from the first direction and the second direction, and a first electrode disposed on the first surface and a second electrode disposed on the second surface, a printed circuit board including a first part disposed to be spaced a predetermined distance apart from the first surface of the battery, a power management circuit configured to provide power used for an operation of the electronic device to at least one electronic component disposed inside the electronic device by using power of the battery, and a second part electrically connected to the battery and disposed to surround at least a part of the second surface and/or the third surface of the battery, an antenna electrically connected to the printed circuit board and configured to communicate with an external electronic device, and a connection member disposed on the first surface of the battery and configured to electrically connect the first part of the printed circuit board and the first electrode of the battery.
Abstract:
Various embodiments relate to an electronic device comprising a touch electrode. The electronic device may comprise: a housing comprising a first microphone hole; a first printed circuit board positioned inside the housing; a touch sensor circuit comprising a touch sensor positioned on the first printed circuit board; at least one microphone configured to collect external sound; at least one second printed circuit board electrically connected to the first printed circuit board, including a first surface facing an interior of the housing, in which the microphone is positioned, and comprises a second microphone hole, and a first touch electrode electrically connected to the touch sensor circuit by being positioned on a second surface, which is a surface opposite the first surface, to surround the second microphone hole, wherein the second printed circuit board is disposed between the housing and the first printed circuit board so that the second microphone hole corresponds to the first microphone hole; and a conductive pattern positioned to cover at least a portion of the first touch electrode, and electrically connected to the touch sensor circuit.
Abstract:
A mobile device with a sensor hub and sensors and a method for controlling the mobile device are provided. The method includes receiving state information regarding the mobile device, setting a sensor sampling period based on the received state information, and receiving measured values from one or more sensors according to the set, sensor sampling period. The sensor hub receives the state information regarding the mobile device, sets a sensor sampling period based on the received state information, and receives measured values from one or more sensors according to the set sensor sampling periods. The mobile device controls the sensors via the sensor hub irrespective of the operations of the main processor. The sensor hub sets a sensor sampling period based on the received state values of a mobile device.
Abstract:
An electronic device is provided. The electronic device includes a housing including a first surface facing a first direction and a second surface facing a second direction different from the first direction, an sound output module disposed within the housing, a circuit board disposed within the housing, a first antenna pattern disposed within the housing and electrically connected to the circuit board, and a second antenna pattern disposed on the first surface of the housing and configured to be electromagnetically coupled to the first antenna pattern, wherein the first antenna pattern includes a first portion disposed adjacent to the second surface of the housing and a second portion extending from the first portion, and wherein the first portion of the first antenna pattern faces at least a portion of the second antenna pattern with the housing interposed therebetween.
Abstract:
A wearable device according to an embodiment may comprise: a housing including a first surface facing a first direction in which a first audio signal is configured to be transmitted to the outside of the wearable device, and a second surface including a first opening that connects an inner space to the outside and faces a second direction different from the first direction; a first microphone in the housing, configured to obtain a second audio signal distinguished from the first audio signal and introduced through the first opening; a first grill surrounding the first opening and including a conductive portion; and a conductive pattern connected to the conductive portion and arranged in a portion of the inner surface of the housing.
Abstract:
An electronic device is provided. The electronic device includes a housing, a support member disposed inside the housing and forming a connection passage, a printed circuit board disposed on the support member and including a first area and a second area spaced apart from the first area, and a conductive pattern disposed on the support member and including a first portion and a second portion, wherein the first portion may be electrically connected to a first electrode disposed in the first area, the second portion may be electrically connected to a second electrode disposed in the second area, and the first area and the second area may be electrically connected to each other via a shunt member.
Abstract:
A mobile device with a sensor hub and sensors and a method for controlling the mobile device are provided. The method includes receiving state information regarding the mobile device, setting a sensor sampling period based on the received state information, and receiving measured values from one or more sensors according to the set, sensor sampling period. The sensor hub receives the state information regarding the mobile device, sets a sensor sampling period based on the received state information, and receives measured values from one or more sensors according to the set sensor sampling periods. The mobile device controls the sensors via the sensor hub irrespective of the operations of the main processor. The sensor hub sets a sensor sampling period based on the received state values of a mobile device.