Abstract:
Disclosed is an electronic device including a plurality of radio frequency integrated circuits (RFICs) that delivers a digital signal, which is to be transmitted by a modem through an antenna configured to transmit and/or receive a radio frequency (RF) signal, in a form of the RF signal and to deliver the RF signal received from the antenna, in a direction of the modem, wherein the plurality of RFICs are at least partially connected to one another, an inter frequency integrated circuit (IFIC) connected to at least some RFICs among the plurality of RFICs and configured to receive the digital signal from the modem, to convert the digital signal to an inter frequency (IF) signal, to deliver the IF signal to the RFIC, to convert the RF signal delivered from the RFIC to the IF signal, and to deliver the IF signal to the modem, and a plurality of compensation units respectively connected to the plurality of RFICs or respectively positioned inside of the plurality of RFICs, the compensation units comprising circuitry configured to compensate for a loss of the IF signal occurring between the IFIC and the at least some RFICs or to compensate for a loss of the IF signal occurring between the plurality of RFICs.
Abstract:
Various embodiments relate to an electronic device including a button and a method for an operation in the electronic device. The electronic device may include: an elongated housing comprising a first end and a second end; a dielectric tip disposed at the first end; a button arranged on an outer surface of the housing; a first circuit connected to the dielectric tip and configured to receive a first electromagnetic signal from a touchscreen display of an external device and to transmit a second electromagnetic signal to the display of the external device; a second circuit configured to wirelessly receive and transmit a third signal; and a control circuit operatively connected to the first circuit and the second circuit. The control circuit may be configured to: detect pressing and/or touching of the button while the first electromagnetic signal is received through the first circuit and transmit the second electromagnetic signal while preventing the second circuit from transmitting the third signal; and detect pressing and/or touching of the button without receiving the first signal through the first circuit and transmit the third signal while the second signal is not transmitted.
Abstract:
An electronic device including a housing including a first inner space and a hole leading to the first inner space, a first wireless communication circuit positioned inside the housing, a stylus pen insertable into the first inner space through the hole, the stylus pen including an elongated pen housing including a second inner space elongated between a first end and a second end, a pen tip disposed at the first end, a pushable first button disposed at the second end, and a second wireless communication circuit positioned inside the pen housing and configured to wirelessly transmit and/or receive a signal to/from the first wireless communication circuit, a processor positioned inside the housing and operatively connected with the first wireless communication circuit, and a memory positioned inside the housing and operatively connected with the processor, wherein the memory is configured to store instructions that, when executed, enable the processor to disregard a first signal transmitted by the second wireless communication circuit as the pushable first button is pushed while the stylus pen is in the housing, receive a second signal transmitted by the second wireless communication circuit as the pushable first button is pushed while the stylus pen is outside the housing, and perform a selected function in response to the received second signal.
Abstract:
Various embodiments of the present invention relate to an electronic device comprising a biometric sensor disposed in a display, and the electronic device comprises: a transparent cover; a display module located under the transparent cover, wherein the display module comprises a display layer in which pixels are formed and one or more additional layers formed under the display layer, and an opening is formed in at least a partial region of at least one layer among the one or more layers; a first printed circuit board having a biometric sensor module, which is disposed under the display module and makes contact with the opening; and a second printed circuit board electrically connected to the first printed circuit board and the display module, wherein a pressure sensor module can be disposed in the surrounding region of the biometric sensor module under the display module in the second printed circuit board. In addition, other embodiments are possible.
Abstract:
A method of managing application programs and an electronic device adapted to the method are provided. In an electronic device with a touchscreen display including a first portion facing a first direction and a second portion facing a second direction differing from the first direction, the second portion extending from one edge of the first portion, the method includes storing an application program including a default function and a plurality of sub-functions, receiving a first input, displaying a user interface (UI) in response to the first input, the UI providing a first indication corresponding to the application program and a plurality of second indications corresponding to the plurality of sub-functions of the application program, receiving a second input selecting a second indication of a plurality of second indications, and displaying a third indication corresponding to a selected sub-function of the plurality of sub-functions in response to the selected second indication.
Abstract:
A method and electronic device implementing the same are disclosed herein. The electronic device includes a touchscreen which may detect a touch input, a hover input and a frequency from a stylus, and display a particular application. The device may further include a control unit implementing the method, which includes detecting, via the touchscreen, the hover input generated by proximity of the stylus to the touchscreen and the frequency generated by the stylus, and execute a function corresponding to the particular application, the hover input and the detected frequency.
Abstract:
A method of operating a window of an electronic device having a touch screen is provided. The method includes displaying a second window on a part of a first window, detecting a user input in the first window, and adjusting a position of the second window, when a distance between a position of the user input for the first window and the position of the second window is a preset threshold value or less.
Abstract:
A method and an apparatus for processing a contact list in a portable terminal are provided. A method of processing contact information of a portable terminal includes analyzing a schedule by analyzing contact information included in schedule information, re-arranging a subscriber display point of the contact list according to contact information included in the schedule information and displaying the contact list, and forming a communication link with a subscriber selected in the contact list and executing a contact. A schedule check and management operation of the portable terminal can be conveniently processed by only executing the contact application in which subscriber information is displayed with a list.
Abstract:
A flexible cover window of an electronic device is provided. The flexible cover window includes glass including a flat portion and a folding portion which extends from the flat portion and is thinner than the flat portion, and multiple coating layers located on the folding portion, wherein each of the multiple coating layers includes a first coating layer including a first portion which is at least partially located on a first edge area of the folding portion, and a second portion which is at least partially located on a second edge area opposite to the first edge area of the folding portion, wherein each of the first portion and the second portion has a first hardness, and a second coating layer which is at least partially in contact with the first portion and the second portion and has a second hardness higher than the first hardness.
Abstract:
According to various embodiments, a method of operating a network may comprise: obtaining, from a first cell from among a plurality of cells, information relating to the reception strength of a plurality of synchronized signal blocks (SSBs) from at least one cell from among the plurality of cells measured by first user equipment connected to the first cell, obtaining, from plurality of cells, the overlapping degrees between a first beamforming direction of a transmission signal for downlink traffic corresponding to a respective user equipment respectively connected to a respective cell among the plurality of cells and a plurality of second beamforming directions of a plurality of SSBs of the respective cell among the plurality of cells, determining, from the plurality of cells, a plurality of candidate cells for performing coordinated multi-point (COMP) with respect to the first user equipment, based on the information relating to the reception strength and the overlapping degrees, and determining at least one cell for performing COMP with respect to the first user equipment from among the plurality of candidate cells based on a comparison result of priorities set for plurality of candidate cells, respectively.