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    • 1. 发明申请
    • Clean assembling module device, produciton system formed with the module, industrial robot, and pollution spred prevention system
    • 清洁装配模块装置,与模块组成的生产系统,工业机器人,污染防疫系统
    • US20060151013A1
    • 2006-07-13
    • US10516767
    • 2003-05-29
    • Haruhiro TsunetaKazuhide KoikeYoshiki ShimuraShiro SatoKazuyoshi Yasukawa
    • Haruhiro TsunetaKazuhide KoikeYoshiki ShimuraShiro SatoKazuyoshi Yasukawa
    • B08B3/04
    • F24F3/1607B25J18/04B25J21/005F24F11/30F24F11/77F24F2011/0004F24F2110/50F24F2110/64
    • A clean assembling module device that achieves cleanliness of a work area where assembling, processing, transportation, etc. of a work item are performed and that can be downsized. The invention also includes a production system, an industrial robot, and a pollution spread prevention system that are formed with the device. A clean assembling module device is provided with clean air generation means on the top of the device and is formed so as to have a work area, a clean air retaining/exhausting area and a mechanism section area, in that order from the top side of the device. The outer periphery of the work area is shielded by a clean area shielding wall. Fluid resistance between the work area and the clean air retaining/exhausting area is controlled by a partition wall having small holes. Air came through the work area and the clean air retaining/exhausting area is exhausted by an air exhausting fan to outside the device. The work area is positively pressurized, and the mechanism section area is negatively pressurized relative to the work area. Pressure in the clean air retaining/exhausting area is adjusted by the small holes of the partition wall and by rotation speed of the air exhausting fan so as to be intermediate between the pressure in the work area and the pressure in the mechanism section area.
    • 实现工件的组装,加工,运输等工作区域的清洁的清洁的组装模块装置,并且可以减小尺寸。 本发明还包括由该装置形成的生产系统,工业机器人和污染扩散预防系统。 清洁的组装模块装置在装置的顶部设置有清洁空气产生装置,并且形成为具有工作区域,清洁空气保持/排出区域和机构部分区域,从顶部 装置。 工作区域的外围被干净的区域屏蔽墙屏蔽。 工作区域和清洁空气保持/排出区域之间的流体阻力由具有小孔的分隔壁控制。 空气通过工作区域,清洁的空气保持/排出区域被排风扇排出到设备外部。 工作区域是积极加压的,机构部分区域相对于工作区域是负压的。 清洁空气保持/排出区域中的压力通过分隔壁的小孔和排气风扇的转速调节,以便在工作区域中的压力和机构部分区域中的压力之间。
    • 2. 发明申请
    • Lens plate, method for manufacturing the same and image transfer device
    • 透镜板,其制造方法和图像转印装置
    • US20070241469A1
    • 2007-10-18
    • US11810871
    • 2007-06-07
    • Hiroyuki NemotoShiro Sato
    • Hiroyuki NemotoShiro Sato
    • B29D11/00
    • G02B3/0031B29D11/00278G02B3/0056G02B3/0062G02B3/0068G02B5/005
    • Spherical convex micro-lenses are arranged between rectangular grooves adjacent to each other of a lens plate. The arrangement of convex micro-lenses is made to be in parallel with the short-side direction of the lens plate, namely, the direction of the rectangular grooves. Since stray light appears mainly on the convex micro-lenses arranged in the long-side direction of the lens plate, the stray light to appear in the long-side direction of the lens plate is removed by forming grooves at regular intervals in the long-side direction of the lens plate and forming a light absorbing film in each of the rectangular grooves. Or the stray light to appear in the long-side direction of the lens plate is removed by making the direction of arrangement of convex micro-lenses different from the long-side direction of the lens plate.
    • 球面凸形微透镜布置在透镜板彼此相邻的矩形槽之间。 使凸形微透镜的布置与透镜板的短边方向,即矩形凹槽的方向平行。 由于杂散光主要出现在布置在透镜板的长边方向上的凸形微透镜上,所以通过在长条形图案中以规则的间隔形成凹槽来除去出现在透镜板的长边方向上的杂散光, 在每个矩形槽中形成光吸收膜。 或者通过使凸型微透镜的排列方向与透镜板的长边方向不同,来除去出现在透镜板的长边方向上的杂散光。
    • 3. 发明授权
    • Variable magnification projection device
    • 可变放大投影装置
    • US4330179A
    • 1982-05-18
    • US148814
    • 1980-05-12
    • Shiro Sato
    • Shiro Sato
    • G03B17/12G03B21/00G02B7/14G02B15/10
    • G03B21/00G03B17/12
    • A variable magnification projection device includes a principal lens displaceable along its optical path and at least a supplementary lens movable into and out of the optical path at a fixed conjugate distance from the principal lens as the latter is displaced. The supplementary lens is linearly movable along a sliding rail extending perpendicular to the optical path and is so coupled to a fixed frame of the device that as the principal lens is displaced along the path, it is automatically moved from a first position remote from the path to a second position in which its optical axis and that of the principal lens coincide.
    • 可变放大倍数投影装置包括可沿着其光路移位的主透镜和至少一个辅助透镜,该补偿透镜以与主透镜相距的固定共轭距离可移动进出光路。 辅助透镜可沿着垂直于光路延伸的滑动导轨线性移动,并且被连接到装置的固定框架,当主透镜沿着路径移位时,辅助透镜从远离路径的第一位置自动移动 到其光轴和主透镜的光轴重合的第二位置。
    • 5. 发明申请
    • Lens plate, method for manufacturing the same and image transfer device
    • 透镜板,其制造方法和图像转印装置
    • US20050002105A1
    • 2005-01-06
    • US10878580
    • 2004-06-28
    • Hiroyuki NemotoShiro Sato
    • Hiroyuki NemotoShiro Sato
    • G02B3/00G02B5/22F21V7/04G02B27/10
    • G02B3/0031B29D11/00278G02B3/0056G02B3/0062G02B3/0068G02B5/005
    • Spherical convex micro-lenses are arranged between rectangular grooves adjacent to each other of a lens plate. The arrangement of convex micro-lenses is made to be in parallel with the short-side direction of the lens plate, namely, the direction of the rectangular grooves. Since stray light appears mainly on the convex micro-lenses arranged in the long-side direction of the lens plate, the stray light to appear in the long-side direction of the lens plate is removed by forming grooves at regular intervals in the long-side direction of the lens plate and forming a light absorbing film in each of the rectangular grooves. Or the stray light to appear in the long-side direction of the lens plate is removed by making the direction of arrangement of convex micro-lenses different from the long-side direction of the lens plate.
    • 球面凸形微透镜布置在透镜板彼此相邻的矩形槽之间。 使凸形微透镜的布置与透镜板的短边方向,即矩形凹槽的方向平行。 由于杂散光主要出现在布置在透镜板的长边方向上的凸形微透镜上,所以通过在长条形图案中以规则的间隔形成凹槽来除去出现在透镜板的长边方向上的杂散光, 在每个矩形槽中形成光吸收膜。 或者通过使凸型微透镜的排列方向与透镜板的长边方向不同,来除去出现在透镜板的长边方向上的杂散光。
    • 6. 发明授权
    • Printing apparatus
    • 印刷装置
    • US5638750A
    • 1997-06-17
    • US604922
    • 1996-02-22
    • Shiro Sato
    • Shiro Sato
    • B41L13/02B05C17/08
    • B41L13/02
    • A printing apparatus is provided, which comprises a platform, pressing member which is pivotably supported on the platform and capable of carrying a stencil on a side facing the platform, and a frame member. The frame member is disposed between the platform and the pressing member and movable together with the pressing member with a predetermined angle relative to the pressing member being kept constant until the frame member contacts a sheet of paper stacked on the platform, and may be given a biased force against movement to the pressing member. On the frame member, is disposed a paper holding means which can be a resilient sheet capable of sticking to and peelably holding a sheet of paper. After printing is over, the pressing member is raised. The frame member holds on the platform the uppermost sheet of paper that has been printed so as to be peeled off from the stencil. After peeled, the uppermost sheet of paper is held and raised by the paper holding means as the frame member is raised together with the pressing member. The paper holding means is elastically deformed by the rotation of the frame member and the weight of paper, and thus the raised sheet of paper takes an inclined form so that it can readily be taken out of the printing apparatus by operators.
    • 提供了一种打印装置,其包括平台,可枢转地支撑在平台上并且能够在面向平台的一侧承载模板的按压构件和框架构件。 框架构件设置在平台和按压构件之间,并且与按压构件一起以预定角度相对于按压构件一直保持恒定直到框架构件接触堆叠在平台上的纸张,并且可以给予 偏压力抵抗按压构件的运动。 在框架构件上设置有纸保持装置,该纸保持装置可以是能够粘附并可剥离地保持一张纸的弹性片。 打印结束后,按压部件升起。 框架构件在平台上保持已经被打印以从模板剥离的最上面的纸张。 剥离后,当框架构件与按压构件一起升高时,最上面的纸被纸保持装置保持和升高。 纸张保持装置通过框架构件的旋转和纸张的重量而弹性变形,因此,升高的纸张呈倾斜形状,使得其能够容易地由操作者从打印设备中取出。