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    • 31. 发明申请
    • Discharge method, color filter manufacturing method, electro-optical apparatus, and electronic device
    • 放电方法,滤色器制造方法,电光装置和电子装置
    • US20070111626A1
    • 2007-05-17
    • US11594101
    • 2006-11-08
    • Tsuyoshi Kato
    • Tsuyoshi Kato
    • H01J9/38
    • G02B5/201
    • A discharge method is provided to discharge a liquid containing a functional material from a plurality of nozzles of a droplet discharge head to a plurality of film formation regions of a discharge medium in synchronization with a relative movement of the discharge medium and the droplet discharge head. The discharge method includes performing a first discharge step in which the liquid is discharged from a plurality of nozzles in a nozzle row so that the liquid is not discharged simultaneously from adjacent nozzles positioned over the film formation regions, and performing a second discharge step in which the liquid is discharged from a plurality of nozzles in the nozzle row in a different combination from the nozzles used in the first discharging step so that the liquid is not discharged simultaneously from adjacent nozzles positioned over the film formation regions.
    • 提供一种放电方法,其与包括放电介质和液滴排放头的相对运动同步地将含有功能材料的液体从液滴喷射头的多个喷嘴排出到排放介质的多个成膜区域。 排出方法包括执行第一排出步骤,其中液体从喷嘴列中的多个喷嘴排出,使得液体不会从位于成膜区域上的相邻喷嘴同时排出,并且执行第二排出步骤,其中 液体从喷嘴排中的多个喷嘴以与第一喷射步骤中使用的喷嘴不同的组合排出,使得液体不会从位于成膜区域上的相邻喷嘴同时排出。
    • 32. 发明申请
    • Droplet discharge method, electro-optical device, and electronic device
    • 液滴放电法,电光装置及电子装置
    • US20070003689A1
    • 2007-01-04
    • US11451565
    • 2006-06-13
    • Tsuyoshi KatoKazumi Aruga
    • Tsuyoshi KatoKazumi Aruga
    • B05D5/00B05D5/12
    • G02B5/201B41J2202/09
    • A droplet discharge method includes performing a plurality of scans in which a discharge head and a substrate are scanned relative to each other, discharging droplets of a plurality of types of functional liquid from the discharge head onto a plurality of prescribed portions on the substrate that are arranged in a matrix while the discharge head and the substrate are scanned. The discharging of the droplets includes discharging the droplets onto the prescribed portions over the plurality of scans so that centers of newly discharged droplets are made to land at one of positions that overlap with centers of landing positions of the droplets already discharged to the prescribed portions and positions that are offset in a row direction and in a column direction of the matrix from the centers of the landing positions of the droplets already discharged to the prescribed portions.
    • 液滴喷射方法包括执行多个扫描,其中排出头和基底相对于彼此扫描,将多种类型的功能液体的液滴从排出头排出到基板上的多个规定部分上 在排出头和基板被扫描的同时排列成矩阵。 液滴的排放包括在多次扫描中将液滴喷射到规定的部分上,使得新排出的液滴的中心在与已经排放到规定部分的液滴的着陆位置的中心重叠的位置处降落, 从已经排放到规定部分的液滴的着陆位置的中心沿矩阵的行方向和列方向偏移的位置。
    • 38. 发明授权
    • Method for injection molding of plastic products having excellent transcription properties
    • 具有优异转录特性的塑料制品的注射成型方法
    • US06203731B1
    • 2001-03-20
    • US09174262
    • 1998-10-16
    • Tsuyoshi KatoHirofumi TateyamaHideyuki IshiyamaKiyoshi Suzuki
    • Tsuyoshi KatoHirofumi TateyamaHideyuki IshiyamaKiyoshi Suzuki
    • B29C4573
    • B29C45/00B29C33/04B29C33/3842B29C45/73B29C45/78B29C2033/042B29C2045/7325B29C2045/7356B29C2045/7393B29C2945/7604B29C2945/7626B29C2945/76531B29C2945/76739
    • If the surface of metallic mold should not be highly transcribed to the surface of product in injection molding the plastic products, the transcription defects such as weld, shrinkage, etc. are caused to the surface of product. Further, if the resin should be exposed to the surface of high temperature metallic mold more than necessary during the molding, the filler and the like of glass and so forth are contained into the resin, and in this case, they are left over on the surface of metallic mold, resulting in the transcription defect. These problems can be solved by heating the surface temperature of metallic mold higher than the glass transfer temperature of resin if the resin is non-crystal and higher than the fusion point temperature if the resin crystal, with the temperature raising speed of more than 2° C. every second, maintaining this temperature during the resin charging, and by cooling at the lowering speed of more than 2° C. every second after the completion of charging. This temperature control shall be conducted with the feed back control while detecting the surface temperature of metallic mold by the temperature detection sensor mounted at the position close to the surface of metallic mold.
    • 如果金属模具的表面在注射成型塑料制品时不会高度转录到产品的表面,则产品的表面会引起诸如焊接,收缩等的转录缺陷。 此外,如果在模制过程中树脂应该暴露于高温金属模的表面,则玻璃等的填料等被包含在树脂中,并且在这种情况下, 金属模具的表面,导致转录缺陷。 如果树脂是非晶体的,加热金属模具的表面温度高于树脂的玻璃转移温度,如果树脂晶体高于熔点温度,则升温速度大于2°可以解决这些问题 C.每秒钟,在树脂充电期间保持该温度,并且在充电完成后每秒钟以大于2℃的降低速度冷却。 通过安装在靠近金属模具表面的位置的温度检测传感器检测金属模具的表面温度,进行反馈控制。
    • 39. 发明授权
    • Engaging mechanism and a holder using therefor
    • 啮合机制和使用它的持有人
    • US5890831A
    • 1999-04-06
    • US886251
    • 1997-07-01
    • Tsuyoshi Kato
    • Tsuyoshi Kato
    • B60N2/015B60N2/90F16B19/00F16B21/07F16B7/04
    • F16B21/075B60N2/015Y10T403/587Y10T403/60Y10T403/606
    • A holder of the present invention is formed of a leg portion having an opening at an upper portion thereof; a flange extending outwardly from a vicinity of the opening; outer pawls projecting from the leg portion to sandwich a peripheral edge of a fitting hole together with the flange therebetween; and thick frame portions. When the leg portion of the holder is inserted into the fitting hole, the outer pawls are resiliently deformed toward depressed portions of the leg portion. When an impact is applied to the holder, abutting surfaces of the outer pawls are strongly pressed against the peripheral edge of the fitting hole. However, side surfaces of the frame portions are pressed against the peripheral edge of the fitting hole to prevent damage of the outer pawls. Thus, the holder having a reduced inserting force and improved impact resistance can be obtained.
    • 本发明的保持器由在其上部具有开口的腿部部分形成; 从开口附近向外延伸的凸缘; 从脚部突出的外爪与其间的凸缘一起夹住装配孔的周边边缘; 和厚的框架部分。 当保持器的腿部插入到装配孔中时,外爪朝向腿部的凹陷部弹性变形。 当冲击被施加到保持器时,外爪的邻接表面被强力地压靠在装配孔的周缘上。 然而,框架部分的侧表面被压靠在装配孔的周缘上,以防止外爪的损坏。 因此,可以获得具有减小的插入力和改进的耐冲击性的保持器。