Abstract:
A semiconductor device includes a semiconductor substrate, a connection pad disposed on an interlayer insulating layer and electrically connected to an interconnection structure, a passivation layer disposed on the connection pad and having a first opening and a second opening, each exposing at least a portion of the connection pad, a first bump that includes a first lower conductive layer in contact with the connection pad within the first opening and a first upper conductive layer on the first lower conductive layer, and a second bump that includes a second lower conductive layer in contact with the connection pad within the second opening and a second upper conductive layer on the second lower conductive layer. The first and second lower conductive layers include the same material, and the first upper conductive layer and the second upper conductive layer include different materials.
Abstract:
A method of augmenting training data for a semiconductor process modeling includes obtaining a simulation input data set and a measurement data set, obtaining a simulation output data set generated based on performing simulation based on the simulation input data set, extracting reference noise information associated with the measurement data set from the measurement data set, extracting distribution information associated with each simulation case included in the simulation output data set based on synthesizing the reference noise information and the simulation output data set, generating a noise simulation data set based on sampling data based on the distribution information, and generating a synthesized data set based on synthesizing the simulation input data set, the noise simulation data set, and the measurement data set.
Abstract:
An electronic device is provided. The electronic device includes a first frame including a first surface, a second surface facing the direction opposite to that of the first surface, and a side surface encompassing the space between the first surface and the second surface, a guide path which is formed in the space of the first frame and which includes, from the side surface toward the space, an external environment connection hole formed at a specified depth, a first through-hole formed from the second surface up to the external environment connection hole, and a second through-hole formed at a location apart from the first through-hole so as to be formed from the first surface up to the second surface, and a sealing member including a sound module disposed on the first surface so as to correspond to the second through-hole, and a recess which is disposed on the second surface and connects the first through-hole to the second through-hole.
Abstract:
An electronic device is provided that includes a first housing, a second housing coupled to the first housing in a movable manner, a flexible display disposed on the first housing and the second housing and having a structure that is changeable with a movement of the second housing, a camera module in which an optical magnification can be set, and a processor. The camera module includes a first camera holder connected to the first housing and including a first lens module disposed along a first optical axis, and a second camera holder connected to the second housing and including at least a second lens module disposed along the first optical axis. The second camera holder is movable along the first optical axis with respect to the first camera holder with the movement of the second housing.
Abstract:
A display driving integrated circuit includes a common voltage buffer configured to provide a common voltage to a display panel and when a line outputting the common voltage and a gate line are short-circuited, apply a first current to the gate line or receive a second current from the gate line; a current generator configured to sum currents respectively corresponding to the first current and the second current and output an output current obtained by the summing; and a current detector configured to convert the output current into an output voltage and output a high or low signal based on a result of comparing the output voltage with a preset voltage.
Abstract:
An image sensor includes a Bayer pattern-type pixel array including a plurality of Bayer pattern-type extended blocks each having first to fourth pixel blocks, each of the first to fourth pixel blocks including first to fourth pixels, the first and fourth pixels of the first and fourth pixel blocks being configured to sense green light, the first and fourth pixels of the second and third pixel blocks being configured to sense red light and blue light, respectively, and the second and third pixels of the first to fourth pixel blocks being configured to sense white light, and a signal processing unit merging Bayer pattern color information generated from the first and fourth pixels of the first to fourth pixel blocks, and the Bayer pattern illuminance information generated from the second and third pixels of the first to fourth pixel blocks.
Abstract:
A system-on-chip includes a first intellectual property (IP) generating a plurality of request packets; and a second IP generating a plurality of response packets based on the plurality of request packets, wherein the second IP includes a plurality of processing elements processing the plurality of request packets and generating the plurality of response packets; a distributer, when the plurality of request packets are input from the first IP, determining a scheduling policy based on a packet type of the plurality of request packets and distributing the plurality of request packets to the plurality of processing elements according to the determined scheduling policy; and an aggregator, when the plurality of response packets are received from each of the plurality of processing elements, aggregating the plurality of response packets according to the determined scheduling policy.
Abstract:
Provided are a method and apparatus for controlling at least part of one or more functions of an electronic device so as to reduce power consumption. According to various embodiments, the electronic device may perform operations of identifying the number of one or more displays functionally connected with the electronic device, executing at least part of one or more functions of the one or more displays in a first power consumption mode if the number of one or more displays is singular, and executing at least part of one or more functions of the one or more displays in a second power consumption mode if the number of one or more displays is plural.
Abstract:
An electronic device may include at least one antenna, a wireless communication circuit configured to support a first communication protocol and a second communication protocol, and at least one processor. The at least one processor may control the wireless communication circuit to communicate with a base station through at least one first cell using the first communication protocol in at least one frequency band, and may control the wireless communication circuit to receive, from the base station, configuration information on a second cell using the second communication protocol different from the first communication protocol. The at least one processor may determine, based on the configuration information on the second cell, whether a frequency band of the second cell is included in the at least one frequency band, may determine whether a blocking condition is satisfied, and may control the wireless communication circuit to transmit a measurement result of the second cell to the base station or control the measurement result of the second cell not to be reported to the base station.
Abstract:
Disclosed is an electronic device including a memory module that includes at least one dynamic random access memory, and a processor configured to access the memory module, determine a corrected error count associated with an address of a corrected error in response to the corrected error being detected when data are read from the memory module, read an error log associated with the corrected error, determine a risk level of the corrected error based on the error log, and schedule a post package repair (PPR) for the address of the corrected error in response to the risk level of the corrected error being high.