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    • 14. 发明授权
    • Continuous paper cutting device for a thermal printer
    • 用于热敏打印机的连续切纸装置
    • US5961233A
    • 1999-10-05
    • US942827
    • 1997-10-02
    • Masaaki Sano
    • Masaaki Sano
    • B41J11/70B65H35/10
    • B41J11/70B65H35/10
    • In a thermal printer, a continuous paper cutting device has an upper and a lower separator located downstream of a platen in the intended direction of paper transport and positioned to face each other with the intermediary of a continuous paper. The upper and lower separators are each provided with an arcuate end in place of a sharp edge for cutting the paper. The paper is formed with notches at opposite ends of each perforation. When a peforation immediately following the printed part of the paper reaches a predetermined position downstream of the arcuate ends of the separators in the direction of paper transport, the paper is brought to a stop. Therefore, the device allows the operator to separate the printed part from the paper along the perforation without resorting to cutters having sharp edges.
    • 在热敏打印机中,连续切纸装置具有位于压板的预定方向的纸张输送方向下游的上隔板和下隔板,并且以连续纸为中心定位成彼此面对。 上隔板和下隔板分别设置有弓形端部,代替用于切割纸张的锋利边缘。 纸张在每个穿孔的相对端形成有凹口。 当纸张的印刷部分之后的孔洞在纸张传送方向上到达分离器的弓形端的下游的预定位置时,停止纸张。 因此,该装置允许操作者沿着穿孔将印刷部分与纸张分开,而不需要使用具有尖锐边缘的切割器。
    • 16. 发明授权
    • Transformer bobbin
    • 变压器筒管
    • US5321572A
    • 1994-06-14
    • US849284
    • 1992-03-10
    • Seiki ShibuiMasaaki Sano
    • Seiki ShibuiMasaaki Sano
    • H01F27/32H01F5/02H01F27/40H02H7/04H01F15/10H01F27/30
    • H01F27/402H01F5/02H01F2005/022H01F2027/406
    • A transformer bobbin is provided comprising a frame of approximately a rectangular shape, a first wall arranged on one end of the frame, a second wall arranged on the other end of the frame, and a center wall arranged between the first wall and the second wall. The frame, the first wall, and the center wall constitute in combination a primary winding section. The frame, the center wall, and the second wall constitute in combination a secondary winding section. In particular, the primary winding section has a container case detachably mounted thereto for selective assignment for use. Also, the container is arranged for accommodating a current disconnecting means for deenergizing a transformer circuit when the coil temperature increases up to a limit level.
    • 提供了一种变压器线轴,包括大致矩形的框架,布置在框架的一端的第一壁,布置在框架的另一端的第二壁和布置在第一壁和第二壁之间的中心壁 。 框架,第一壁和中心壁组合形成初级绕组部分。 框架,中心壁和第二壁组成二次绕组部分。 特别地,初级绕组部分具有可拆卸地安装在其上的容器壳体,用于选择性分配使用。 此外,容器被布置成用于在线圈温度升高到极限水平时容纳用于使变压器电路断电的电流断开装置。
    • 19. 发明授权
    • Stratospheric airship
    • 平流层飞艇
    • US06427943B2
    • 2002-08-06
    • US09765764
    • 2001-01-18
    • Yoshio YokomakuKeiji KomatsuMasaaki SanoJunichi Kimura
    • Yoshio YokomakuKeiji KomatsuMasaaki SanoJunichi Kimura
    • B64B158
    • B64B1/60B64B1/02
    • A stratospheric airship capable of substantially and smoothly varying the volume of a buoyant gas is provided so as to allow the airship to stably ascend into the stratosphere and keep a station therein. A stratospheric airship includes a gas envelope defined by a ship hull, the gas envelope being divided by a diaphragm into a buoyant gas compartment containing a buoyant gas and an air compartment containing air, the stratospheric airship being allowed to ascend by varying the volume ratio between the buoyant gas and the air, wherein the periphery of the diaphragm is coupled to the ship hull generally at the midpoint along the vertical dimension thereof, and a central portion of the diaphragm is coupled to a suspension chord whose upper and lower ends are coupled respectively to the upper and lower surfaces of the ship hull. The sloshing phenomenon of the diaphragm is suppressed, whereby the change in the shape thereof is balanced, and thus there is no asymmetric distribution of the buoyant gas. Therefore, it is possible to smoothly change the volume ratio between the buoyant gas and the air in the air compartment, thereby allowing the stratospheric airship to stably ascend into the stratosphere and keep a station therein.
    • 提供能够基本上平稳地改变浮力气体体积的平流层飞艇,以允许飞艇稳定地上升进入平流层并在其中保持站。 平流层飞艇包括由船体限定的气体信封,气体信封被隔膜分隔成包含浮力气体的浮力气室和包含空气的空气室,允许平流层飞艇通过改变 浮力气体和空气,其中隔膜的周边通常在其垂直尺寸的中点处连接到船体,并且隔膜的中心部分耦合到悬挂弦杆,其上端和下端分别连接 到船体的上表面和下表面。 隔膜的晃动现象被抑制,其形状的变化是平衡的,因此浮力气体没有不对称的分布。 因此,能够平滑地改变空气室内的浮力气体和空气之间的体积比,从而使平流层飞艇稳定地上升到平流层并保持站内。