Abstract:
An electronic device includes an analog front end (AFE) circuit including plural modules, and a processor that provides a user interface for a firmware update, determines a target module, of which offset calibration is to be performed, among the plural modules, based on a user input to the user interface, determines a position within in the AFE circuit to which a common mode voltage is to be applied to perform the offset calibration of the target module, and determines an offset calibration sequence including the target module and the position.
Abstract:
An electronic device includes an analog front end (AFE) circuit including plural modules, and a processor that provides a user interface for a firmware update, determines a target module, of which offset calibration is to be performed, among the plural modules, based on a user input to the user interface, determines a position within in the AFE circuit to which a common mode voltage is to be applied to perform the offset calibration of the target module, and determines an offset calibration sequence including the target module and the position.
Abstract:
A communication method of a base station is provided. The communication method of the base station includes determining, by the base station, an aggregate interference caused by a terminal in a heterogeneous cell, transmitting information about the aggregate interference to a higher layer node entity, receiving information about an almost blank subframe (ABS) pattern from the higher node entity, and configuring an ABS based on the information about the ABS pattern.
Abstract:
A communication method of a base station is provided. The communication method of the base station includes determining, by the base station, an aggregate interference caused by a terminal in a heterogeneous cell, transmitting information about the aggregate interference to a higher layer node entity, receiving information about an almost blank subframe (ABS) pattern from the higher node entity, and configuring an ABS based on the information about the ABS pattern.
Abstract:
A method of training a physical interface between a first device and a second device includes performing a first training of the physical interface by communicating with the second device by using a first candidate group of lanes from among a plurality of lanes; performing a second training of the physical interface by communicating with the second device by using a second candidate group of lanes from among the plurality of lanes, the second candidate group being different from the first candidate group; determining a lane group based on a result of the first training and a result of the second training; and setting the second device so that the determined lane group is used for the physical interface.
Abstract:
A method of training a physical interface between a first device and a second device includes performing a first training of the physical interface by communicating with the second device by using a first candidate group of lanes from among a plurality of lanes; performing a second training of the physical interface by communicating with the second device by using a second candidate group of lanes from among the plurality of lanes, the second candidate group being different from the first candidate group; determining a lane group based on a result of the first training and a result of the second training; and setting the second device so that the determined lane group is used for the physical interface.