Abstract:
PROBLEM TO BE SOLVED: To provide a print method and a print system for erasing print data sequentially from a section considered to be significant by a user in a print system equipped with a computer and a printer. SOLUTION: This print data erasing system is provided with a means for enabling a user to instruct the significant section of print data on a computer, wherein significance instruction information and print data obtained from it are transmitted to a printer, and when erasing the print data, the printer erases the data from the significant section in the print databased on the significance instruction information. COPYRIGHT: (C)2009,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a printing system allowing prompt printing when setting the limited number of copies to a work and performing sales in work sales or the like, and allowing management of work data to be printed and the setting of the limited number of the copies when distributing the work data to area base devices. SOLUTION: This printing system has: a central base device managing a total printed copy number of the work; and the area base devices each printing the work. Each the area base device previously stores a large amount of image data whose transmission via the Internet is not realistic in a printer of the area base device, in the printing system having printers. COPYRIGHT: (C)2009,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a print system in which restoration and reprint of important image data are difficult even in a system having only one printer, in a printer preserving image data received from a host computer in a built-in nonvolatile memory unit. SOLUTION: In the print system in which the host computer is connected to the printer via a host interface such as a network, there is provided a data discrimination means for discriminating whether or not the importance of the received image data portion is high. Further, if it is discriminated that the above image data portion has a low degree of importance, print processing is performed while the above image data portion is preserved in a memory means provided in the printer. COPYRIGHT: (C)2009,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a document formation program for using a template enabling formation of a document with high probability of successful print with a current ink residual amount of a printer when the ink residual amount of the printer is reduced. SOLUTION: The priority for presenting a template such that the usage of an ink with less ink residual quantity is minimized is raised. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PURPOSE: To simplify the configuration of interlace driving circuit by controlling the potential of a control-electrode domain of a photo sensor cell in a selected field. CONSTITUTION: When the primary field is selected and positive voltage is impressed to a drive line 106, a capacitor 111 for bootstrap is charged, and the potential of the drive line 106 is maintained in the positive potential. When a drive pulse DP is impressed to a terminal 121, the potential of the drive line 106 is boosted, and the positive potential of the drive pulse DP is transmitted to a horizontal line 112, which is impressed to each capacitor electrode 10 of the photosensor cell 30 of the primary line as the reading voltage, and accordingly the reading operation is performed. When a high-level output is outputted from the output terminal L2 of a vertical shift register 32, capacitors 110 and 111 are charged, the potential is impressed to each photosensor of the primary and secondary lines by the bootstrap operation, and accordingly the refresh operation is performed. COPYRIGHT: (C)1986,JPO&Japio
Abstract:
PURPOSE:To form an adequately deep element isolating region free of lateral expansion by a method wherein a polycrystalline semiconductor layer is deposited on a non-single-crystal layer and an element isolating region is formed by exploiting the difference between polycrystalline semiconductor and single- crystal semiconductor in terms of the speed of impurity diffusion. CONSTITUTION:At a location whereat an element isolating region is to be formed on a single-crystal semiconductor substrate 1, a non-single-crystal film 30 is formed of an oxide film or polycrystalline silicon film or the like. Next, silicon is epitaxially grown on the substrate 1, provided with said film 30, for the formation of an epitaxial layer 4. Polycrystalline silicon 6 is deposited on the polycrystalline silicon 5 and epitaxial layer 4 resulting from said epitaxial growth, and then diffused with boron B. In this process, boron B is diffused into only the polycrystalline silicon 6 due to the difference in the speeds allowing the diffusion. Next, etch-back is accomplished for the polycrystalline silicon 6 and the impurity-affected portion of the epitaxial layer 4, in that order, for the realization of a flattened surface. The polycrystalline silicon 6 diffused with boron B is to serve as an element isolating region.
Abstract:
PURPOSE:To improve the reproducibility of both luminance and chrominance signals by giving gamma compensation to the output of an image pickup device before the separation of a signal and then weighting with a prescribed cycle to the signal after the compensation. CONSTITUTION:The output of an image pickup device 2 undergoes gamma compensation through a gamma compensation circuit 13 and then weighting by a weighting circuit 14 with a cycle corresponding to the repeating cycle of a color filter obtained by a pulse signal generator 15. Then the output of the device 2 passes through an LPF9 to obtain a low band component YL of a Y signal. While the output of the circuit 13 is sampled and held by sample-holding circuit 3 and 4 to obtain an R and a B signal. At the same time, the output of the circuit 13 is led to a BPF16 to obtain the high band component YH of the luminance signal. Then the signals YL, R and B are calculated by a color difference signal producing circuit 11 to form each color difference signal. While the signals YL and YH are added by an adder 17, and an NTSC signal is produced by an encoder 12.
Abstract:
PURPOSE:To improve the color reproducibility and sensitivity, by controlling the storage time at each part corresponding to each color filter of an image pickup means depending on a respective color filter. CONSTITUTION:Charges stored in a photodiode section 14 are absorbed in a drain via a clear line 122 by outputting a clear pulse with shift registers 111, 112. An output in response to the amount of charges discharged during the period until being scanned with a readout scanning after the clear operation is obtained at an output terminal 20. The color filters are arranged on the photodiode section 14. The timing of the output of the clear pulse is changed depending on each filter and the storage time at each part corresponding to each color filter is controlled.
Abstract:
PURPOSE:To reduce the size and cost of a color picture recorder by scanning optical beams from a plurality of semiconductor lasers disposed in an array on a ribbon coated with various types of heat sensitive inks in stripe state to impart fluidity and sublimation thereto. CONSTITUTION:Optical beams from a light source 1 in which light emitting points 7g, 7b, 7r of a plurality of semiconductor laser elements driven independently on the same wafer are formed via a collimator lens 2 in parallel beams, are reflected and deflected via a rotary polygonal mirror 3, and a spot is formed on a transfer ribbon 5 through a focusing lens 4. Thus, the dye adhered to the ribbon 5 is transferred to a recording sheet 6. Green dye 5g, blue dye 5b and red dye 5r are coated in stripe stage in lateral direction of the transfer ribbon 5, and the optical beams of the respective light emitting points 7g, 7b, 7r are scanned (deflected) on the dyes 5g, 5b, 5r.
Abstract:
PROBLEM TO BE SOLVED: To provide a printing apparatus and a printing system capable of setting printed matter used for sales promotion for every sales shop, and printing the required number in a minimum time. SOLUTION: The printing apparatus includes a printing data preserving means preserving the printing data; an associating means associating an ID identifying a commodity with the printing data; an ID inputting means inputting the ID of the commodity; an identification information creating means creating the identification information for identifying the associated information when the associating means associates the inputted ID of the commodity; an identification information storing and managing means storing and managing the created identification information; an identification information inputting means inputting the identification information; and a printing means printing based on the printing data associated with the inputted identification information. COPYRIGHT: (C)2009,JPO&INPIT