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62results about How to "Keep the quality" patented technology

Print schedule control equipment, print schedule control method, and program therefor

This invention aims at conducting a scheduling work of print processing efficiently. A device scheduler refers to print job composition information registered in step control information of the step “printer reservation” of other print job (other order) in a workflow information table, and a schedule information table. The device scheduler searches both other print jobs (proof print jobs and regular print jobs) that a to-be-registered proof print job having a processing time of the proof print job described above affects and other print jobs (proof print jobs and regular print jobs) that affect the to-be-registered proof print job. The device scheduler determines whether the to-be-registered proof print job can be registered in a schedule (there is no search result in Step 2017 described above). When the registration is not possible, the device scheduler informs an operator of the result that automatic scheduling is impossible.
Owner:CANON KK

Display driving circuit

In a display driving circuit according to the present invention, not all the pixel values (example : 0˜255) but only the values (example : 179˜255) of the significant partial range (N˜100%) have data of histogram of pixels of an image as a partial histogram, and when the pixel (Ds) at the significant t% rank order of the entire histogram is within the range of the partial histogram, the display driving circuit performs its operation in the same manner as in the case where it has the entire histogram, and when the pixel (Ds) is out of the range, the display driving circuit uses the range minimum value (N) in the place of the pixel of the significant t% rank order and performs its operation.
Owner:RENESAS ELECTRONICS CORP

Data compression apparatus and data compression program storage medium

There are provided a data compression apparatus and a data compression program capable of performing new and preferable compression processing applicable to compression of CT data. They are provided with: a thinning processing section which creates, by cyclically thinning out a numeric value from the sequence of numeric values constituting the data to be compressed, first data to be compressed which is constituted by a sequence of the numeric values taken out from the data to be compressed by the thinning out, and second data to be compressed which is constituted by a sequence of the remaining numeric values; a lossless compression section which performs lossless compression processing for the first data to be compressed which has been created by the thinning processing section; and a lossy compression section which performs lossy compression processing for the second data to be compressed which has been created by the thinning processing section.
Owner:FUJIFILM HLDG CORP +1

Organic electroluminescent device

An organic electroluminescent device provided with a lower electrode formed on a substrate, a light emitting unit having at least an organic light emitting layer and formed on the lower electrode, and a light transmissive upper electrode formed on the light emitting unit, wherein a connection layer for supplying a charge into the light emitting unit and a charge transport layer having charge transporting properties of a reverse conducting type against a charge to be injected from the upper electrode are stacked in this order from a side of the light emitting unit between the light emitting unit and the upper electrode.
Owner:SONY CORP

Method of motion prediction of multimedia video coding

A method of motion prediction of multimedia video coding includes the steps of a) defining that each of macroblocks of enhancement layers has corresponding BL_Residual, EL_Residual, and EL_ResidualME; b) acquiring the BL_Residual that the current macroblock corresponds to from one of the enhancement layers; c) identifying whether the BL_Residual is zero; if it is zero, apply the motion prediction of video coding to the current layer and then proceed to the step e); if it is not zero, proceed to the next step d); d) comparing the BL_Residual that the current macroblock corresponds to with a threshold; if the BL_Residual is smaller than the threshold, apply the motion prediction of video coding to the current layer; if the BL_Residual is bigger than the threshold, proceed to cross-layer-mode motion prediction of video coding; and e) ending.
Owner:NATIONAL CHUNG CHENG UNIV
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