Abstract:
A method and device for predicting errors in a computing system are disclosed. The error prediction method includes: receiving log data generated by the computing system during operation of the computing system; tokenizing the log data into tokens; inputting the tokens to a discriminator model which generates scores of the respective tokens, each score corresponding to a probability that the corresponding token is an anomaly token; determining an anomaly score based on the scores; and determining a likelihood of future occurrence of an error in the computing system based on the anomaly score.
Abstract:
The present invention relates to a composition for an organic optoelectronic element, an organic optoelectronic element and a display device, the composition including a first compound for an organic optoelectronic element, represented by a combination of Chemical Formula 1 and Chemical Formula 2; and a second compound for an organic optoelectronic element, represented by a combination of Chemical Formula 3 and Chemical Formula 4. In Chemical Formula 1 to Chemical Formula 4, each substituent is defined as that in the specification.
Abstract:
An electronic device comprises a substrate; a main coil mounted on the substrate; and at least one auxiliary coil disposed near the main coil and electromagnetically coupled to the main coil, wherein the main coil is configured to receive an electromagnetic field generated by the at least one auxiliary coil.
Abstract:
A clothes treating apparatus capable of improving filter cleaning efficiency by a cleaning nozzle. The clothes treating apparatus includes: a cabinet; a tub inside the cabinet, being in a shape of a cylinder, and including an air outlet formed in a circumference of the tub and a tub duct protruding outward from the tub and configured to guide air discharged through the air outlet, the tub duct having a duct opening formed in a side of the tub duct; a filter case to which a filter is installed to filter a foreign material included in air passing through the air outlet, the filter case coupled to the tub duct; and a cleaning nozzle including a nozzle inserted into the tub duct through the duct opening to be positioned inside the tub duct and configured to spray water toward the filter.
Abstract:
An electronic apparatus includes: a processor configured to implement at least one function of the electronic apparatus by executing a program stored in a memory; execute a self-test application provided for a self-test of an error in response to occurrence of the error related to the function, and identify a test routine for the error among one or more test routines; obtain a test result of the error by testing the function based on the identified test routine, and output information about the obtained test result to a display.
Abstract:
A semiconductor device includes standard cells disposed in a first direction parallel to an upper surface of a substrate and a second direction intersecting the first direction, each standard cell including an active region, a gate structure disposed to intersect the active region, source/drain regions on the active region at both sides of the gate structure, and first interconnection lines electrically connected to the active region and the gate structures; filler cells disposed between at least portions of the standard cells, each filler cell including a filler active region and a filler gate structure disposed to intersect the filler active region; and a routing structure disposed on the standard cells and the filler cells and including second interconnection lines electrically connecting the first interconnection lines of different standard cells to each other, wherein the second interconnection lines includes a first line having a first width and a second line having a second width larger than the first width.
Abstract:
An electronic device and a method control applications in the electronic device. The method of controlling applications in the electronic device includes: executing a plurality of applications in a foreground and a background; detecting the number of touch points input to a touch screen to select an application according to the detected number of the touch points; detecting a touch gesture for controlling the selected application; and controlling the selected application according to the detected touch gesture.
Abstract:
The present disclosure relates to a 5th generation (5G) or 6th generation (6G) communication system for supporting a data transmission rate higher than that of a 4th generation (4G) communication system such as long term evolution (LTE). According to various embodiments, an antenna of a wireless communication system comprises: a first transmission line; a first layer including a plurality of opening parts; a second layer including a plurality of dielectrics; and a third layer in which a plurality of antenna elements corresponding to the plurality of dielectrics is arranged, wherein a first surface of each of the plurality of dielectrics can be arranged to face the first layer, a second surface of each of the plurality of dielectrics, which is opposite to the first surface, can be arranged to face the third layer, and each of the plurality of antenna elements can be arranged to be positioned on the second surface of a corresponding dielectric from among the plurality of dielectrics.
Abstract:
An electronic apparatus disposed in a vehicle is provided. The electronic apparatus includes an input device including a body configured to be rotatable and pushable and a display disposed on the body; and a processor configured to acquire profile data of a user including preset information for function of the vehicle, control the display to display basic user interface (UI) corresponding to the function of the vehicle based on the acquired profile data of the user, and control a function of the vehicle corresponding to the basic UI in response to receiving an input on the input device.
Abstract:
A semiconductor device including a substrate; a lower electrode on the substrate; a magnetic tunnel junction structure on the lower electrode, the magnetic tunnel junction structure including a pinned layer, a tunnel barrier layer, and a free layer which are sequentially stacked; an upper electrode on the magnetic tunnel junction structure; and an oxidation control layer between the free layer and the upper electrode, the oxidation control layer including at least one filter layer and at least one oxide layer, wherein the at least one filter layer includes MoCoFe.