Abstract:
PROBLEM TO BE SOLVED: To provide a device and a method for remote diagnosis which can remotely take a concrete diagnosis corresponding to the use state of a printer while reducing the load on the printer, and a computer-readable program storage medium where a program having a remote diagnosing function is recorded. SOLUTION: This device is provided with detecting means 68a to 68d which detect the states of printers 5 and 5a printing on recording paper 27, diagnosing means 173 and 173a, and 175 and 176 which remotely diagnose the states of the printers 5 and 5a detected by the detecting means 68a to 68d through communication media 71 and 72, and 89 and 90 and send the diagnosis results of the states of the printers 5 and 5a to the printers 5 and 5a through the communication media 71 and 72, and 89 and 90, and a display means 76 which displays the diagnosis results.
Abstract:
PROBLEM TO BE SOLVED: To provide an ink jet printer and its head cartridge in which various types of head cartridge are prevented from being loaded at an erroneous loading position. SOLUTION: The head cartridge 120a comprises an ink jet head 120, and a plurality of ink holding containers containing ink being ejected from the head wherein each ink holding container 122 is connected with one head chip having a plurality of nozzles. A plurality of head chips are arranged along the longitudinal direction while being shifted alternately, in the way, in the direction perpendicular to the longitudinal direction to have an overlap 120d at the end part. A space 122e is formed by shifting the space for containing the ink holding container at the end part in the longitudinal direction based on the overlap and the space has a different shape corresponding to the type of the cartridge.
Abstract:
PROBLEM TO BE SOLVED: To obtain a resolution exceeding the pixel interval regardless of the interval of pixel which is the drive source of ink ejection and to obtain a continuous gradation from low gradation to highest density. SOLUTION: The printer head 120 for recording on a recording medium with ink comprises a plurality of ink ejecting parts 125a arranged along a direction substantially perpendicular to the feeding direction of the recording medium and ejecting ink respectively, and a plurality of drive sources 126a for driving respective ink ejecting parts to eject ink wherein each drive source 126a drives a plurality of ink ejecting parts 171b, respectively.
Abstract:
PROBLEM TO BE SOLVED: To provide an apparatus and a method for forming an image which enable easy attainment of prints of high image quality in a small number of sheets, one to several sheets in particular, by using a lithographic printing system. SOLUTION: This apparatus for forming an image is equipped with ink 1 of which the viscoelasticity is changed by a change in temperature and which solidifies in reaction to light, a recording body 2 having a surface of ink repulsing properties, an ink supplying mechanism 4 which supplies the ink 1 to the recording body 2, a light source 6 for heating which makes the temperature of the ink 1 rise at the time when the ink 1 and the recording body 2 are in contact, a light source 7 for optical reaction which makes the ink 1 solidify at the time when the ink 1 and the recording body 2 are in contact and an impression cylinder 9 which transfers the ink 1 on the recording body 2 to an object 8 of transfer.
Abstract:
PROBLEM TO BE SOLVED: To provide an ink supplying apparatus completely automated by maintaining an ink film thickness suitable for printing before and during printing, and automatically recovering residual ink on an ink roller after finishing the printing, thereby eliminating ink cleaning. SOLUTION: The ink supplying apparatus comprises a plate cylinder 1 having a plate material wound on an outer periphery, an ink roller 4 having an elastic member for coating the surface of the material with a predetermined amount of ink 2 and wound on its outer periphery, an ink fountain 3 for holding ink, a metering edge member 5 for uniformly coating the roller 4 with the ink 2, a driving mechanism 10 for controlling a rotational speed of the roller 4, and an attaching/detaching mechanism 11 for attaching or detaching the cylinder 1 to or from the roller 4. In this case, the mechanism 10 decelerates the rotational speed of the roller 4 after a printing is finished.
Abstract:
PURPOSE:To obtain a plate cylinder device preventing the occurrence of noise and the scatter of ink between a doctor blade and a last winding end of a plate on a plate cylinder used for a printing device. CONSTITUTION:A title device is so constructed that a doctor blade 3 cannot be caught by a step of a last winding end 10 of an overlap part 11 formed when a plate cylinder 4 is formed by winding a sheet-form plate 4a on a cylindrical roller 4b.
Abstract:
PURPOSE:To make the production easy by adhering the peripheral edge part of a transparent substrate to a crystal thin plate having the electrooptic effect by a transparent adhesive agent to form banks and introducing a conductive pattern to the inside and charging the transparent adhesive agent from charging entrances provided in the bank part. CONSTITUTION:A crystal thin plate 23 having the electrooptic effect is adhered to a transparent substrate 26 by a transparent adhesive agent 27 whose thickness is controlled by a bank 31. External leading-out terminals of a transparent conductive film 25 are connected to a conductive pattern 29 from the side of the substrate 26 wider than the crystal thin plate 23 through the conductive bank 31. The bank 31 which consists of the transparent adhesive agent and adheres the crystal thin plate 23 and the substrate 26 to each other is provided with plural charging entrances omitted in the figure, and the transparent insulating adhesive agent 27 is charged from them. Thus, the thickness is uniform, and the crystal thin plate 23 and the transparent substrate 26 are adhered to each other strongly, and external leads are connected surely and easily, and the occurrence of defective goods on production is reduced.
Abstract:
PROBLEM TO BE SOLVED: To improve versatility without causing variations in holding force for roll paper.SOLUTION: There are included: a holder body 31 provided with a first connection 39a and a cylindrical part 38 inserted into the inside of the roll paper; a slide pipe 32 having a second connection 42a which is so supported as to slide by the holder body, and in which a screw groove part 41a is formed in its inner surface; a rotary shaft 33 having a screw shaft part 43a that is screwed to the screw groove part and an operation part 45; a plurality of first links 34 whose one end is rotatably connected to the first connection or the second connection; and second links 35 whose one end is rotatably connected to the second connection or the first connection and whose other end is rotatably connected to the other end of the first link each other. The section where the other end of the first link and the other end of the second link are connected forms a link connection part 49, and the position of the link connection part is caused to change in the radial direction of the cylindrical part when the slide pipe is moved to the cylindrical part by the rotation of the rotary shaft.
Abstract:
PROBLEM TO BE SOLVED: To exhibit a high cleaning effect with simple configuration, in either case that a liquid ejecting apparatus employs a line head system or is applicable to full-color.SOLUTION: The liquid ejecting apparatus includes: a sponge roller 61 for cleaning the ink ejecting surface of the line head; a first slider 62, a second slider 63, a first connection bar 64a, a second connection bar 65 and a link plate 66, all of which are prepared for switching the attitude of the sponge roller 61 between a preparation attitude where the longitudinal direction of the sponge roller 61 is parallel to the arraying direction of the nozzle arrays and a cleaning attitude where the longitudinal direction of the sponge roller 61 is perpendicular to the arraying direction of the nozzle arrays; and a moving means for moving the sponge roller 61 in the arraying direction of the nozzle arrays.
Abstract:
PROBLEM TO BE SOLVED: To supply (fill) ink to a liquid ejecting head (consumption object of the liquid) in a short time by quickly removing the air in a transfer course of the ink (liquid) and bubbles within the ink. SOLUTION: A liquid supply device has a line head 20 which can eject the supplied ink from a nozzle, a transfer pump 50 for transferring the ink ejected by the line head 20, a supply pipe 87 arranged to supply the ink transferred by the transfer pump 50 to a supply port 20a formed in the line head 20, a discharge pipe 88 arranged to discharge the ink in the line head 20 from a discharge opening 20b formed on the opposite side of the supply port 20a, and a subtank 40 which temporarily stores the ink transferred by the transfer pump 50 before supplying to the line head 20. When a volume in the subtank 40 is made Vs and a total volume in the line head 20, transfer pump 50, supply pipe 87 and discharge pipe 88 is made Vh, Vs≥Vh is held. COPYRIGHT: (C)2010,JPO&INPIT