Abstract:
An electronic device is provided. The electronic device includes a housing including a front plate that faces a first direction and a rear plate that faces a second direction, which is opposite the first direction, a display panel configured to output a screen through the front plate, a bracket disposed between the display panel and the rear plate, the bracket being configured to support internal components, a flexible printed circuit board including a first area electrically connected to the display panel, and a second area extending from the first area and disposed between the display panel and the bracket, a wireless charging structure disposed on one face of the second area or inside the second area, the wireless charging structure including a coil portion and transmission wires electrically connected to the coil portion, and a magnetic plate disposed between the bracket and the flexible printed circuit board, and at least one area of the magnetic plate being disposed to face the wireless charging structure.
Abstract:
An electronic device is provided including a housing including a first plate, a second plate facing the first plate, and a side member between the first and second plate, a radio frequency (RF) circuit, a processor, a ground member, a first electric path connected between a first port of the RF circuit and a first point of a first conductive portion of the side member, a second electric path connected between a second port of the RF circuit and a first point of a second conductive portion of the side member, a third electric path connected between a second point of the first conductive portion and the ground member, a fourth electric path connected between a second point of the second conductive portion and the ground member, and a fifth electric path connected between one point of the second electric path and one point of the third electric path.
Abstract:
An electronic device is provided including a housing including a first plate, a second plate facing the first plate, and a side member between the first and second plate, a radio frequency (RF) circuit, a processor, a ground member, a first electric path connected between a first port of the RF circuit and a first point of a first conductive portion of the side member, a second electric path connected between a second port of the RF circuit and a first point of a second conductive portion of the side member, a third electric path connected between a second point of the first conductive portion and the ground member, a fourth electric path connected between a second point of the second conductive portion and the ground member, and a fifth electric path connected between one point of the second electric path and one point of the third electric path.
Abstract:
An electronic device and a method for controlling output through an external output device are provided. The electronic device includes a housing, a receptacle formed so as to receive one of a first external connector and a second external connector, and a circuit electrically coupled to the receptacle. The first external connector includes first, second, third, and fourth terminals. The second external connector includes first, second, third, and fourth terminals. The circuit is configured to detect whether one of the first and second external connectors is inserted into the receptacle, and, based on results of detection, provide an audio output to the first external connector in a first manner if the first external connector is inserted, and provide the audio output to the second external connector in a second manner different from the first manner if the second external connector is inserted.
Abstract:
An electronic device including a noise reduction member is disclosed. The electronic device may comprise a speaker and an antenna. The speaker may comprise: a speaker core for generating sound in a first direction; a speaker housing at least partially enclosing the exterior of the speaker core, and comprising a speaker hole which is formed in a position where the hole overlaps with the speaker core with respect to the first direction, the hole being open in the first direction; and a noise reduction member including a conductive material and positioned on the outer surface of the speaker housing. The noise reduction member may comprise: a shielding member having an opening formed by opening a region on a surface perpendicular to the first direction, the region at least partially overlapping the speaker core, and the shielding member comprising the conductive material surrounding the outer perimeter of the speaker hole on the outer surface of the speaker housing; and a conductive extension part formed by extension of the conductive material from the shielding member and having a grounded end.
Abstract:
An electronic device is disclosed. An electronic device according to the disclosure may comprise a first housing and a second housing, a hinge rotatably connecting the first housing and the second housing, a flexible display exposed through a first portion of the first housing and a second portion of the second housing, at least one sensor, a camera, a communication module, memory storing instructions, and at least one processor. The instructions may, when executed by the processor, cause the electronic device to execute a first application for controlling the camera, identify a folding angle of the electronic device through the at least one sensor, and transmit, to an external electronic device, a command for displaying an icon related to the first application on a display of the external electronic device connected through the communication module, based on the folding angle being included in a designated range not being 0 degrees and 180 degrees, in a state in which the first application is executed.
Abstract:
A portable communication device according to an embodiment of the disclosure comprises a housing including a side member, wherein the side member includes a first conductive region and a second conductive region; a wireless communication circuitry configured to communicate a first signal in a first frequency band corresponding to cellular communication through the first conductive region and to communicate a second signal in a second frequency band corresponding to cellular communication through the second conductive region, wherein the first signal is a high-band signal and the second signal is a low-band signal; and a global navigation satellite system, GNSS, receiver circuitry configured to receive a third signal in a third frequency band corresponding to a GNSS through the first conductive region and to receive a fourth signal in a fourth frequency band corresponding to the GNSS through the second conductive region, wherein the third signal is a GPS L1 signal and the fourth signal is a GPS L5 signal.
Abstract:
An electronic device is provided. The electronic device includes a display, a first data interface circuit including a port for connecting with an external device, and configured to exchange serial data with the external device, at least one processor operatively connected with the first data interface circuit, and a memory operatively connected with the at least one processor, the memory stores instructions that cause the at least one processor to allocate a plurality of input/output port for processing serial data received from the first data interface circuit in parallel, and receive a first signal from the external device through the first data interface circuit, in response to the first signal being received, identify a port that is set to be in an active state among the plurality of input/output ports, identify the first signal by using the port that is identified as being in the active state, and display information.
Abstract:
According to an exemplary embodiment of the present document, an electronic device may comprise a housing, an antenna structure, and a conductive support member. The housing may provide the exterior of the electronic device. The antenna structure may include a printed circuit board including a first side and a second side facing the opposite direction to the first side. The antenna structure may include at least one antenna element located on the first side or located inside the printed circuit board, closer to the first side than to the second side. The antenna structure may be located on the conductive support member. The conductive support member may include a first portion and a second portion. The first portion may be coupled with the antenna structure. The first portion may be coupled with the housing or a support structure located in the inner space of the housing. The second portion may extend from the first portion. When viewed from above the first side, the second portion may overlap the first side and may be spaced apart from the first side.
Abstract:
An electronic device includes a housing, and an antenna structure disposed in the inner space of the housing. The antenna structure includes a substrate including a first surface, a second surface facing away from the first surface, and side surfaces surrounding a space between the first surface and the second surface. At least one antenna element is disposed to form a beam pattern in a direction in which the first surface is oriented, and at least one bracket is disposed in the inner space and configured to support the substrate such that the first surface is tilted to a predetermined angle with respect to a first direction. A wireless communication circuit is disposed in the inner space and is configured to form, via the at least one antenna element, the beam pattern in the direction in which the first surface is oriented.