Abstract:
An organometallic compound represented by Formula 1: wherein M1 is a transition metal; Y1 to Y3 are each independently C or N; R4 is a substituted or unsubstituted C1-C60 alkyl group; ring CY2 to ring CY5 are each independently a C5-C60 carbocyclic group or a C1-C60 heterocyclic group; L1 is a single bond, O, S, Se, N(R61), B(R61), C(R61)(R62), or Si(R61)(R62); a1 is 1, 2, 3, 4, or 5; b10, b20, b30, b40, and b50 are each independently 1, 2, 3, 4, 5, 6, 7, 8, 9, or 10; and the remaining substituent groups of Formula 1 are as provided herein.
Abstract:
A portable communication device is provided. The communication device includes a first communication circuitry configured to perform communication using a first frequency band, a second communication circuitry configured to perform communication using a second frequency band, and at least one processor configured to receive a reference signal transmitted from a first external electronic device using the first communication circuitry, and when a received power corresponding to the reference signal belongs to a specified first range, communicate with at least one external electronic device through multiple cellular connections by transmitting a first signal of the first frequency band to the first external electronic device through a first cellular connection established using the first communication circuitry and substantially concurrently transmitting a second signal of the second frequency band to a second external electronic device through a second cellular connection established using the second communication circuitry.
Abstract:
An electronic device and method are disclosed, the electronic device including a variable detection module operable in a plurality of modes, each of the plurality of modes configuring the variable detection module to detect a different external signal; and a controller. The controller may implement the method, including operating the variable detection module in one of the plurality of operating modes, and executing a function of the electronic device in response to a signal detected by the variable detection module.
Abstract:
An electronic device according to an embodiment of the disclosure may include a housing, a camera module disposed in the housing, a sound output module disposed in the housing to be spaced apart from the camera module, a first sound hole positioned on the front surface of the electronic device, a second sound hole which is positioned on a side surface of the electronic device and includes a dummy hole disposed to be adjacent to the sound output module and at least partially closed, and a connection hole spaced farther apart from the sound output module than the dummy hole, a sound outlet formed through the housing to allow sound generated in the sound output module to be output therethrough, and connected to the first sound hole and the second sound hole, and a sound guide part formed in the housing along a direction in which the first sound hole and the second sound hole extend, and configured to connect the sound outlet, the first sound hole, and the second sound hole.
Abstract:
An electronic device is provided. The electronic device includes at least one hinge module providing at least one folding axis, a first housing coupled with the hinge module to rotate around the folding axis, a second housing coupled with the hinge module to rotate around the folding axis, and rotating with respect to the first housing, between a first position at which the second housing is folded, facing the first housing and a second position at which the second housing is unfolded at a specified angle from the first position, a first battery provided in the first housing, a first circuit board including a first arrangement area disposed in parallel to the first battery at least partially along a direction parallel to the folding axis, and a second arrangement area extending from the first arrangement area and disposed between the folding axis and the battery, and at least one flexible printed circuit board (FPCB) extending from the interior of the first housing to the interior of the second housing across the folding axis. Inside the first housing, one end portion of the FPCB is connected to the second arrangement area, between the folding axis and the first battery, and a part of the FPCB is disposed between the first battery and the second arrangement area.
Abstract:
An electronic device according to various embodiments may include: a display; a rear plate disposed in a direction opposite to the display; a side member surrounding a space between the display and the rear plate and including a support member configured to support the display; and at least one magnetic structure included in at least a portion of the side member. Where the at least one magnetic structure includes a magnetic force generating source and a magnetic force output guide connected to the magnetic force generating source, and at least a portion of the magnetic force output guide extends in a direction of the display. Where at least a portion of the magnetic force output guide includes a structure formed in a direction of an upper surface of the side member.
Abstract:
A terminal includes a first upper carrier including a speaker grill housed as a separate piece in a penetrating hole formed at one surface, and a second upper carrier having an antenna pattern in at least one surface and being coupled to one end of the first upper carrier. A method of manufacturing a terminal having a speaker device, comprises forming a penetrating hole to house the speaker device at one surface of a first upper carrier, coupling a speaker grill to the penetrating hole, forming an antenna pattern at one surface of a second upper carrier separated from the first upper carrier and coupling the first upper carrier and the second upper carrier.
Abstract:
A portable terminal including a module, in which one or more storage members are disposed, and a method for manufacturing the portable terminal are provided. The portable terminal includes a first assembly that includes a shield can and a flexible circuit board attached to a surface of the shield can. The portable terminal also includes at least one socket unit mounted to an upper side of the first assembly. The socket unit is mounted to an upper side of the flexible circuit board while the first assembly is positioned on a jig.
Abstract:
An electronic device includes a substrate, a structure arranged near the substrate and includes at least one electronic component, a conductive structure provided in the electronic device, and a conductor arranged in the structure, grounding the conductive structure to a ground of the substrate. Electronic components spaced within the electronic device are electrically connected to each other using the existing structure to be installed, so that a mounting space for preparing an electrical connector is prevented from being wasted, thereby making the electronic device slim. The embodiments according to the present disclosure can reduce the number of assembling processes and manufacturing costs.
Abstract:
According to various embodiments, an electronic device may include: a housing including an opening connected to an internal space of the electronic device; a tray socket connected to outside the electronic device through the opening in the internal space and including a tray reception space; a tray configured to be inserted into the tray reception space, wherein the tray includes a tray body including at least one space configured to receive at least one external component; and a tray cover including a pin insertion hole configured to guide a tray ejecting pin to the opening; an eject bar movably disposed in a tray mounting direction or ejecting direction in the tray reception space and facing the pin insertion hole; and a rotation lever configured to press the tray in the ejection direction based on pressing of the eject bar in the tray reception space, wherein the eject bar is disposed at a position at least partially overlapping the tray body when viewed from above the tray socket.