摘要:
A planar light source device capable of preventing the occurrence of a luminescent line in the vicinity of a light incident end face without interrupting an incident light incoming from a primary light source and entering at a light incident end face, and being not likely to cause a decrease in incident light quantity, that is, without lowering entire luminance and producing dark lines to be caused when light to be originally guided is shaded. A platy light guide (3) that guides light emitted from a primary light source (1) and has a light incident end face (31) for receiving light from the primary light source (1) and a light emitting face (33) for outputting the guided light which is formed with a light absorption zone (36) extending along the light incident end face (31) and having a width of 50 to 1000 μm, and a side edge closer to the light incident end face (31) of the light absorption zone (36) is up to 300 μm away from the light incident end face (31). The light incident end face (31) is so constructed that light emitted from the primary light source (1) is incident as far as the boundary with the light emitting face (33).
摘要:
There is provided an inkjet printing apparatus which executes a proper recovery operation in accordance with the demounting time period of an ink tank and information of the ink tank. In the inkjet printing apparatus of this invention, the demounting time period and information of the ink tank are used as parameters for determining the condition of a recovery operation after the ink tank is once demounted and thereafter mounted again. Since recovery is done in consideration of the degrees of ink evaporation and an increase in viscosity, wasteful ink consumption can be suppressed while a necessary recovery operation is performed.
摘要:
A liquid droplet ejection device for ejecting a liquid from a nozzle of a head to a workpiece, the liquid droplet ejection device including: a table for loading the workpiece; a first shifting section capable of shifting the table in a first direction and in a second direction approximately intersecting the first direction at a right angle; a plurality of carriages having the head; and a second shifting section capable of positioning each of the carriages by mutually shifting each of the carriages along the second direction.
摘要:
A first light diffusion layer (1) and a second light diffusion layer (2) are provided. The first light diffusion layer (1) is formed by dispersing a first light diffuser (1B) comprising fine particles in a first base material (1A) formed of transparent resin by 20 to 50 wt %, the fine particles of the first light diffuser having a refractive index different from that of the first base material by 0.07 to 0.17 and having a weight average particle diameter of 1 to 12 &mgr;m, and the first light diffusion layer having a thickness of 50 to 200 &mgr;m. The second light diffusion layer (2) is formed by dispersing a second light diffuser (2B) comprising fine particles having a weight average particle diameter of 1 to 12 &mgr;m in a second base material (2A) formed of transparent resin by 0.1 to 10.0 wt %, and the second light diffusion layer having a thickness of 500 to 5000 &mgr;m and a Haze value of 50 to 85%.
摘要:
Illuminating light is two-dimensionally scanned without changing the ability to focus the illuminating light on a specimen. Provided is a microscope apparatus including a spatial light modulator that modulates the wavefront of illuminating light; a scanner that two-dimensionally scans the illuminating light by pivoting two mirrors; a relay optical system that relays an image in the scanner to a pupil position of an objective optical system; and a beam-shift mechanism that moves rays of the illuminating light between the modulator and the objective optical system in response to pivoting of the mirrors. The beam-shift mechanism moves the rays such that the image at the pupil position, when assuming that the mirrors are stationary, is moved in the direction opposite to the direction in which the image relayed to the pupil position by the relay optical system, when assuming that the mirrors are pivoted with the rays fixed, is moved.
摘要:
A printing apparatus and a printing method are capable of not permitting a printable ratio of each printing scan to have a deviation and, even if a sudden conveyance shift occurs, outputting a uniform and smooth image in the whole area of the print medium. In order to achieve this, when performing multipass printing of 2M passes, a mask such that a printable area overlapping ratio that relates to straddling between Pass M and Pass M+1 is set higher than the printable area overlapping ratio that relates to straddling between two other consecutive passes is used. By this configuration, even if a complementary relationship of dots collapses due to a sudden conveyance shift or the like and thereby a density reduction is anticipated, by an overlapped dot being separated, increase of the density is accelerated, and it becomes possible to mitigate the above-mentioned density reduction.
摘要翻译:打印装置和打印方法能够不允许每个打印扫描的可打印比率具有偏差,并且即使发生突然的输送偏移,在打印介质的整个区域中输出均匀且平滑的图像。 为了实现这一点,当进行2M遍的多次打印时,将与Pass M和Pass M + 1之间的跨越相关的可打印区域重叠比设置为高于与两个之间跨越的可打印区域重叠比的掩码 使用其他连续通行证。 通过这种结构,即使由于突然的输送移动等引起的点的互补关系崩溃,从而预期密度降低,通过分离的重叠点,加速了密度的增加,并且可以减轻 上述密度降低。
摘要:
The present invention is directed to an image forming apparatus including a supply unit configured to supply a sheet, a recording unit configured to perform recording by discharging a plurality of colors of inks onto the sheet, a reading unit configured to read out an image of the sheet, a drying unit configured to dry the sheet on which recording is provided by the recording unit, and a control unit configured to perform control so as to record an inspection pattern onto the sheet by the recording unit and so as to readout the inspection pattern of the sheet by the reading unit after the sheet on which the inspection pattern is recorded passes through the drying unit in order to acquire inspection data of the inspection pattern of the sheet.
摘要:
On performing a predetermined printing operation, whether or not, among a plurality of printing elements, only a part of the printing elements are applied is detected. If it is judged that only the part of the printing elements are used, a judgment is made whether or not the preliminary discharge operation is performed based on the number of discharges for the part of the printing elements, and if it is not judged that only the part of the printing elements are used, a judgment is made whether or not the preliminary discharge operation is performed based on the number of discharges for all of the printing elements of the printing head. This eliminates an unnecessary preliminary discharge for non-printing elements even in a printing operation mode in which only a part of the printing elements are applied.
摘要:
An ink jet printing apparatus printing on a print medium includes a print head having a plurality of ejection ports for ejecting ink while scanning in a scan direction, and a conveyance unit including a pair of rollers for conveying the print medium in a conveyance direction crossing the scan direction by rotation of the rollers. The rollers are provided at a position at an upper stream side in the conveying direction of the print medium from a print position at which printing by the print head is performed. A detection unit is configured to detect a downstream side end of the print medium conveyed by the pair of rollers, with the detection unit arranged at a position that is a distance from the pair of rollers, in the conveyance direction, corresponding to a length of the print medium. In addition, a change unit is configured to change the ejection ports available for printing according to an error in conveyance detected by the detection unit.
摘要:
After a first scan in a forward direction, conveying corresponding to one nozzle block is performed, and then in a second scan in a backward direction, printing of a “printing area 1,” which is a unit area, is completed. Then after completion of printing of the unit area, conveying corresponding to 14 nozzle blocks is performed. Then by reciprocal third and fourth scans, printing of a “printing area 2” is completed in a likewise manner. Subsequently, two scans in a reciprocal manner are performed in a likewise manner to perform printing of each unit area. In any unit area, printing time intervals between scans are such that, at a same position in a scan direction, the time interval is the same. Consequently, differences in density between unit areas that are adjacent in a conveying direction of a printing medium, that is, between-band unevenness becomes more difficult to recognize.