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    • 5. 发明授权
    • Sheet stacking apparatus
    • 纸张堆垛装置
    • US08083225B2
    • 2011-12-27
    • US12869989
    • 2010-08-27
    • Taki OhishiMasahiro HagiwaraMasayasu Suzuki
    • Taki OhishiMasahiro HagiwaraMasayasu Suzuki
    • B65H43/00
    • B65H31/02B65H29/52B65H31/26B65H2401/113B65H2404/63B65H2404/693B65H2405/115B65H2511/17B65H2511/514B65H2513/50B65H2701/1313B65H2701/1912B65H2220/11B65H2220/01
    • A banknote stacking apparatus includes a banknote stacking plate 1 on which banknotes are to be stacked, a first banknote press member 11 fixed to a support shaft 10 so as to be swingably together with the support shaft 10, a second banknote press member 15 which is formed of a synthetic resin sheet having flexibility, whose upstream end portion is fixed to the banknote stacking apparatus and whose downstream end portion is fixed to the first banknote press member 11 and a solenoid 27 for driving the first banknote press member 11 and the banknote stacking apparatus is constituted so that when a banknote is fed into the banknote stacking apparatus and the first banknote press member 11 is driven by the solenoid 27, the first banknote press member 11 is swung and presses a portion of a banknote close to the front end portion thereof and the second banknote press member 15 is swung together with the first banknote press member 11 and deformed so as to form a convex portion 15c projecting toward the banknote, whereby a portion of the banknote close to the rear end portion thereof is pressed by the convex portion 15c of the second banknote press member 15. According to the thus constituted banknote stacking apparatus, a banknote can be stacked on the banknote stacking plate 1 in the desired manner using a single drive means.
    • 纸币堆垛装置包括纸币堆叠纸币1的纸币堆叠板1,与支撑轴10一起可摆动地固定在支撑轴10上的第一纸币按压部件11,第二纸币按压部件15, 由具有柔性的合成树脂片形成,其上游端部固定在纸币堆叠装置上,其下游端部固定在第一纸币按压部件11上,螺线管27用于驱动第一纸币按压部件11和纸币堆叠 设备被构造成使得当纸币被馈送到纸币堆垛装置中并且第一纸币按压部件11被螺线管27驱动时,第一纸币按压部件11被摆动并按压靠近前端部分的纸币的一部分 并且第二纸币按压部件15与第一纸币按压部件11一起摆动并变形,以形成凸出部分15c 朝向纸币,由此靠近其后端部的纸币的一部分被第二纸币按压部件15的凸部15c按压。根据这样构成的纸币堆垛装置,可以将纸币堆叠在纸币堆叠 板1以期望的方式使用单个驱动装置。
    • 6. 发明授权
    • Surface wave excitation plasma processing system
    • 表面波激发等离子体处理系统
    • US08018162B2
    • 2011-09-13
    • US11910202
    • 2006-04-26
    • Masayasu SuzukiTetsuya Saruwatari
    • Masayasu SuzukiTetsuya Saruwatari
    • H05B31/26
    • H01J37/32192H05H1/46
    • To sustain uniform generation of plasma constantly over a large area. In the surface wave excitation plasma processing device, a plasma source includes: a microwave generator, a microwave waveguide and a dielectric block; and a plasma source also includes: a microwave generator, a microwave waveguide and a dielectric block. The lid of a chamber is fixed onto the microwave waveguides in parallel, and the dielectric blocks disposed in the chamber. A reflecting plate is disposed between the dielectric blocks so that electromagnetic waves propagating through the dielectric blocks are prevented from advancing into the counterpart dielectric blocks as reflected waves. Consequently, the plasma sources are controlled independently. Furthermore, a side reflector is disposed at outer circumference of each of the dielectric blocks so that a standing waves of the electromagnetic waves propagating through the dielectric blocks is formed thus forming a large area standing wave mode of surface waves uniformly.
    • 为了在大面积上不断地维持等离子体的等离子体生成。 在表面波激发等离子体处理装置中,等离子体源包括:微波发生器,微波波导和介质块; 并且等离子体源还包括:微波发生器,微波波导和介质块。 腔室的盖子平行地固定在微波波导上,并且介质块设置在腔室中。 反射板设置在介质块之间,从而防止通过介质块传播的电磁波作为反射波而前进到对方介质块。 因此,等离子体源被独立地控制。 此外,侧反射器设置在每个介质块的外周,从而形成传播通过介质块的电磁波的驻波,从而形成均匀的表面波的大面积驻波模式。
    • 7. 发明授权
    • Apparatus for converting images of vehicle surroundings
    • 用于转换车辆环境图像的装置
    • US07868913B2
    • 2011-01-11
    • US10959219
    • 2004-10-07
    • Masayasu SuzukiTakeshi AkatsukaKen Oizumi
    • Masayasu SuzukiTakeshi AkatsukaKen Oizumi
    • H04N7/18
    • H04N7/181B60R1/00B60R2300/105B60R2300/30B60R2300/802
    • An aspect of the present invention provides an apparatus for converting images of vehicle surroundings that includes, at least one camera configured to start, upon receiving a synchronizing signal, photographing the surroundings of a vehicle and outputting image data representative of the photographs, an output memory configured to store image data to be displayed on a display installed in the vehicle, a pattern memory configured to store destination addresses of the output memory, and an image converter configured to generate the synchronizing signal, obtain the image data from the camera, and transfer part or the whole of the image data to the output memory according to the destination addresses stored in the pattern memory.
    • 本发明的一个方面提供了一种用于转换车辆周围环境的装置,其包括:至少一个摄像机,被配置为在接收到同步信号时拍摄车辆的周围并输出表示照片的图像数据;输出存储器 被配置为存储要显示在安装在车辆上的显示器上的图像数据,被配置为存储输出存储器的目的地地址的图案存储器,以及被配置为生成同步信号的图像转换器,从相机获取图像数据, 部分或全部图像数据根据存储在图案存储器中的目的地地址输出到输出存储器。
    • 8. 发明申请
    • SURFACE WAVE EXCITATION PLASMA PROCESSING SYSTEM
    • 表面波激发等离子体处理系统
    • US20090232715A1
    • 2009-09-17
    • US11910202
    • 2006-04-26
    • Masayasu SuzukiTetsuya Saruwatari
    • Masayasu SuzukiTetsuya Saruwatari
    • H05H1/46
    • H01J37/32192H05H1/46
    • To sustain uniform generation of plasma constantly over a large area. In the surface wave excitation plasma processing device, a plasma source includes: a microwave generator, a microwave waveguide and a dielectric block; and a plasma source also includes: a microwave generator, a microwave waveguide and a dielectric block. The lid of a chamber is fixed onto the microwave waveguides in parallel, and the dielectric blocks disposed in the chamber. A reflecting plate is disposed between the dielectric blocks so that electromagnetic waves propagating through the dielectric blocks are prevented from advancing into the counterpart dielectric blocks as reflected waves. Consequently, the plasma sources are controlled independently. Furthermore, a side reflector is disposed at outer circumference of each of the dielectric blocks so that a standing waves of the electromagnetic waves propagating through the dielectric blocks is formed thus forming a large area standing wave mode of surface waves uniformly.
    • 为了在大面积上不断地维持等离子体的等离子体生成。 在表面波激发等离子体处理装置中,等离子体源包括:微波发生器,微波波导和介质块; 并且等离子体源还包括:微波发生器,微波波导和介质块。 腔室的盖子平行地固定在微波波导上,并且介质块设置在腔室中。 反射板设置在介质块之间,从而防止通过介质块传播的电磁波作为反射波而前进到对方介质块。 因此,等离子体源被独立地控制。 此外,侧反射器设置在每个介质块的外周,从而形成传播通过介质块的电磁波的驻波,从而形成均匀的表面波的大面积驻波模式。