Abstract:
An electronic device includes a communication processor including a first communication circuitry, a second communication circuitry, and a temperature measurement sensor. The electronic device further includes an application processor that receives information via the second communication circuitry and determines whether to request the communication processor change modes. The communication processor receives a signal to change modes, release an RRC connection, and control the second communication circuitry to enter a sleep state.
Abstract:
An electronic device according to various embodiments may include: at least one communication processor configured to support at least one network communication, wherein the at least one communication processor is configured to: enter an inactive state based on detecting an RRC release message after establishing an RRC connection with a first cell and entering a connected state, identify that a service cannot be provided in the inactive state, perform a search until a timer started based on a reception of the RRC release message expires, and maintain the inactive state based on camping-on a selected cell based on a result of the search.
Abstract:
An electronic device includes at least one wireless communication circuit; a display, a processor, and a memory configured to store first information associated with new radio (NR) cell searching, the memory storing instructions that, when executed, cause the processor to receive a system information block (SIB) including information indicating that evolved terrestrial radio access network (E-UTRAN) new radio-dual connectivity (EN-DC) is possible, from a long-term evolution (LTE) base station by using the at least one wireless communication circuit; select a cell of the LTE base station based at least partly on the SIB, using the at least one wireless communication circuit; display a first indicator associated with availability of LTE on a partial region of the display, in response to selecting the cell of the LTE base station; after selecting the cell of the LTE base station, perform the NR cell searching based at least partly on the first information, using the at least one wireless communication circuit; display a second indicator associated with availability of NR on the partial region of the display, based at least partly on the result of the NR cell searching; and display a third indicator obtained by changing at least part of a color or shading of the second indicator, on the partial region of the display in response to performing data transmission to an NR base station after determining the result of the NR cell searching.
Abstract:
Provided are a terminal and a method for managing a call function of a terminal, including a call termination and call retransmission function based on a state of a terminal using a voice recognition or a sensor. The method for managing a call function of a terminal includes sequentially acquiring at least one input voice during a phone call, extracting a finally acquired voice from the at least one voice when call termination is requested, and storing information about the finally acquired voice in a database under a call termination command.
Abstract:
Provided are a terminal and a method for managing a call function of a terminal, including a call termination and call retransmission function based on a state of a terminal using a voice recognition or a sensor. The method for managing a call function of a terminal includes sequentially acquiring at least one input voice during a phone call, extracting a finally acquired voice from the at least one voice when call termination is requested, and storing information about the finally acquired voice in a database under a call termination command.
Abstract:
An electronic device according to various embodiments may include: at least one antenna; and at least one communication processor configured to upport first network communication with a first network and second network communication with a second network different from the first network. The at least one communication processor may be configured to: identify a first cumulative SAR value based on radiation of a communication signal corresponding to the first network communication via a first part of the at least one antenna and a second cumulative SAR value based on radiation of a communication signal corresponding to the second network communication via a second part of the at least one antenna; and adjust one of a transmission intensity of a first communication signal corresponding to the first network communication or a transmission intensity of a second communication signal corresponding to the second network communication, based on a designated condition satisfied by the first cumulative SAR value and the second cumulative SAR value.
Abstract:
An electronic device according to various embodiments may include: a communication circuit; a display; a memory; and at least one processor operably connected to the communication circuit, the display, and the memory. The at least one processor may be configured to control the electronic device to: identify a first network connection between the electronic device and a first external electronic device using the communication circuit. In response to the identification of the first network connection, the electronic device may identify a second external electronic device. In response to the identification of the second external electronic device, the at least one processor may display a UI for connecting the first external electronic device and the second external electronic device on the display. In response to an identification of an input on the UI, the at least electronic device may transmit, to the second external electronic device, information at least partially based on the first network connection and usable for establishing a second network connection between the first external electronic device and the second external electronic device.
Abstract:
An electronic device is disclosed. The electronic device includes a wireless communication circuitry, a processor operatively connected with the wireless communication circuitry, and a memory, operatively connected with the processor, storing configured network slice selection assistance information (NSSAI) and an application. The memory stores instructions, when executed, causing the processor to, when the electronic device is booted, identify a single-NSSAI (s-NSSAI) candidate group including at least one s-NSSAI, based on configuration information of the application, determine a specified number of s-NSSAIs among at least one s-NSSAI included in the configured NSSAI as a first requested NSSAI based on the number of s-NSSAIs included in the configured NSSAI and the s-NSSAI candidate group, and transmit a first registration request message including the first requested NSSAI, via the wireless communication circuitry.
Abstract:
A device and a method operative therein for sharing content with at least one second device. A messaging application is executed in which a contact list is displayed. A selection is detected, from among contacts displayed on the contact list, of only a portion of the contacts to receive shared content. Presence information is published to all of the contacts on the contact list. An indication of contents available for sharing is included in the presence information published to only the selected portion of the contacts. The device may be a control device in a local area network, and the shared content may be retrievable from a peripheral device controlled by the control device, where information on the peripheral device is included in the presence information.
Abstract:
Disclosed is a method of delivering policy information for offloading between different types of wireless communication systems by a first electronic device. The method includes: performing a tethering function; determining whether to release the tethering function; identifying a first electronic device connected based on the tethering function when the tethering function is released; delivering policy information for offloading between different types of wireless communication systems to the identified first electronic device; and releasing the tethering function after delivering the policy information to the first electronic device.