Abstract:
The disclosure relates to a method and apparatus for preventing oxidation or contamination during a circuit printing operation. The circuit printing operation can be directed to OLED-type printing. In an exemplary embodiment, the printing process is conducted at a load-locked printer housing having one or more of chambers. Each chamber is partitioned from the other chambers by physical gates or fluidic curtains. A controller coordinates transportation of a substrate through the system and purges the system by timely opening appropriate gates. The controller may also control the printing operation by energizing the print-head at a time when the substrate is positioned substantially thereunder.
Abstract:
Provided are a printed matter inspection device, a printed matter inspection method, a program, and a printing apparatus capable of suppressing erroneous detection in detection of a defect occurring in one direction. The printed matter inspection device and the printing apparatus include a print data acquisition unit that acquires print data, an imaging data acquisition unit that acquires imaging data of a printed matter, a registration processing unit that executes registration between the print data and the imaging data by applying a specified registration accuracy, and an inspection processing unit that acquires defect information of the imaging data based on the print data. A learning model that has been learned by using a disturbance-imparted learning data set having, as an input, disturbance-imparted imaging data in which a disturbance that shifts a position of the imaging data in a direction intersecting a relative transport direction between the printing section and the medium in the printing apparatus is imparted, and having defect information as an output is applied to the inspection processing unit.
Abstract:
An individual identifying device includes a plurality of generation units and an imaging unit. The generation units generate a pattern on an object. The imaging unit acquires an image of the pattern in conjunction with generation of the pattern.
Abstract:
The disclosure relates to a method and apparatus for preventing oxidation or contamination during a circuit printing operation. The circuit printing operation can be directed to OLED-type printing. In an exemplary embodiment, the printing process is conducted at a load-locked printer housing having one or more of chambers. Each chamber is partitioned from the other chambers by physical gates or fluidic curtains. A controller coordinates transportation of a substrate through the system and purges the system by timely opening appropriate gates. The controller may also control the printing operation by energizing the print-head at a time when the substrate is positioned substantially thereunder.
Abstract:
The ink jet recording method according to the invention is characterized by that at least one of an ink and a surface treatment agent contains a resin that melts or softens at a fixing temperature by heat treatment; the surface treatment agent contains at least two kinds of particles different in particle size that do not melt at the fixing temperature; the particles contain first particles and second particles having a particle size larger than that of the first particles; and the second particles have a particle size falling within a range of more than 50 nm to less than 110 nm.
Abstract:
An inkjet forming method is provided and is a three-dimensional object forming method for forming a three-dimensional object in which a target object and a removable portion are integrally formed by vertically stacking a plurality of forming layers in a vertical direction. The inkjet forming method includes: forming the forming layer to include a target layer to be the target object after shaping and a removable layer to be the removable portion after shaping; with respect to the forming layers being vertically stacked in the vertical direction, forming the removable layer to be arranged at an outside of the target layer, and forming an outer contour of the removable layer disposed at a lower side outward than an outer contour of the removable layer disposed at an upper side; and during forming the forming layers, forming the target layer and the removable layer simultaneously with ink droplets ejected by an inkjet printing.
Abstract:
An imprint apparatus, comprises: a discharge unit that discharges a liquid onto a substrate; a storage unit that stores a plurality of discharge conditions for the discharge unit; and a control unit that controls the discharge unit based on a discharge condition that is stored in the storage unit, wherein the control unit selects the discharge condition from the plurality of discharge conditions in accordance with a discharge spacing for discharging the liquid.
Abstract:
In an example, a printing device can include a pivot point, a bias arm formed of a rigid member to rotate about the pivot point, the bias arm comprising a first end to extend into a print zone and a second end opposite the first end, and a spring in communication with the second end of the bias arm to bias the first end to contact the platen.
Abstract:
Provided is a method of manufacturing a recorded matter including applying a first ink including a volatile first liquid to an intermediate transfer medium having ultraviolet transmittance; applying, using an ink jet method, second ink including a coloring agent and a polymerizable compound polymerized by irradiation of ultraviolet to locations on the intermediate transfer medium where first ink is applied; partially polymerizing the polymerizable compound by irradiating surface side of the intermediate transfer medium to which the second ink is applied with ultraviolet rays from the opposite side surface; transferring the second ink irradiated by ultraviolet in the polymerizing of the polymerizable compound to a recording medium; and curing the polymerizable compound configuring the second ink transferred to the recording medium.
Abstract:
A printhead assembly including an ink cartridge body made of a material selected from the group of materials consisting of: nylon, polyethersulfone, polypropylene, polyethylene, polyoxymethylene and other materials that are compatible with ketone, acetate and alcohol based inks, an ink reservoir disposed within the ink cartridge body and adapted to receive and contain ink, and a printhead chip provided on the ink cartridge body and in fluid communication with the ink reservoir so as to receive ink from the ink reservoir for ejection of the ink onto a print medium.