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    • 4. 发明授权
    • Automatic-exposure control device for optical instruments
    • 光学仪器自动曝光控制装置
    • US4100558A
    • 1978-07-11
    • US623541
    • 1975-10-17
    • Hiroshi KoikeShoji SuzukiTakeki Asakawa
    • Hiroshi KoikeShoji SuzukiTakeki Asakawa
    • G03B9/02H01F7/13H02K7/14H02K41/035
    • H02K41/0358G03B9/02H01F7/13H02K7/14
    • Herein disclosed is an electromagnetic rotary motion device including permanent magnets establishing a pair of spaced concentric and coextensive circular or semicircular air gaps and a rotor unit including armatures which are movable in a circular path in and along the spaced air gaps in response to an electric control signal impressed thereon. A typical application of the rotary motion device is a diaphragm-assisted exposure control arrangement of an optical instrument, such as for example as a still camera, a cinema motion camera or a television camera, wherein the diaphragm is driven by the rotor unit for providing a degree of exposure which is optimum for the brightness of an object to be photographed or televised.
    • 这里公开了一种电磁旋转运动装置,其包括建立一对间隔开的同心和共同延伸的圆形或半圆形气隙的永磁体和包括电枢的转子单元,转子单元包括电枢,其可响应于电控制在沿着间隔开的气隙中并且沿着间隔的气隙沿圆形路径移动 信号在其上。 旋转运动装置的典型应用是光学仪器的光圈辅助曝光控制装置,例如静止照相机,电影运动摄像机或电视摄像机,其中隔膜由转子单元驱动以提供 对被拍摄或电视对象的亮度最佳的曝光程度。
    • 5. 发明授权
    • Transmission type confocal laser microscope
    • 透射型共焦激光显微镜
    • US5506725A
    • 1996-04-09
    • US365433
    • 1994-12-28
    • Hiroshi KoikeShoji Suzuki
    • Hiroshi KoikeShoji Suzuki
    • G02B21/00G02B21/06
    • G02B21/0068G02B21/0072
    • A transmission type confocal laser microscope has a transmission side objective lens below a specimen stage, which comprises an objective lens unit which is movable in an optical axis direction and a fixed relay lens unit, wherein movement of the objective lens unit for focus adjustment will not change the optical path after the relay lens unit. The microscope further includes an optical path switch on an optical path in the rear of the transmission side objective lens for switching between the optical path to the concave mirror and another optical path; and a target in a position optically equivalent to the concave mirror, which is illuminated by a light source for adjusting the transmission side objective lens for focusing.
    • 透射型共聚焦激光显微镜在试样台下方具有透光侧物镜,其包括可在光轴方向上移动的物镜单元和固定中继透镜单元,其中用于调焦的物镜单元的移动不会 改变中继透镜单元后的光路。 显微镜还包括在透射侧物镜的后部的光路上的光路开关,用于在凹面镜的光路与另一光路之间切换; 以及光学上等同于凹面镜的位置的目标,该凹面镜由用于调整用于聚焦的透射侧物镜的光源照射。
    • 7. 发明申请
    • TIME-SERIES DATA DIAGNOSING/COMPRESSING METHOD
    • 时间序列数据诊断/压缩方法
    • US20130097128A1
    • 2013-04-18
    • US13643588
    • 2010-04-26
    • Shoji SuzukiJunsuke FujiwaraHideaki Suzuki
    • Shoji SuzukiJunsuke FujiwaraHideaki Suzuki
    • G06F17/30
    • G06F17/30067G05B23/0264G06F17/30371
    • An allowable error used for compressing time-series data can be set without knowledge of equipment. It is possible to prevent the data from being lost not only in the event of an abnormality, but also during a period in which an evidence of a predicted abnormality is detected. In addition, it is also possible to verify the properness of a set allowable error. Thus, the amount of data gathered and stored in a memory can be reduced without losing information required for detection of an evidence of a predicted abnormality occurring in the equipment of interest. As a result, it is possible to provide a time-series data diagnosing/compressing method capable of gathering time-series data with a high degree of efficiency and a data gathering/storing apparatus adopting the method. That is to say, in accordance with the present invention, there is provided a predicted-failure-evidence diagnosing section not depending on the equipment and not requiring knowledge of the equipment and, on the basis of a result of a predicted-abnormality-evidence diagnosis carried out by this section on time-series data gathered from the equipment, an allowable error used for compressing the gathered data can be set and managed in order to compress the data if the result of the diagnosis is normal or restrict the compression of the data during a period in which an evidence of a predicted abnormality is detected. Thus, the amount of data stored in a memory can be reduced.
    • 用于压缩时间序列数据的允许误差可以在不了解设备的情况下进行设置。 可以防止数据在异常的情况下丢失,而且可以在检测出预测的异常的证据的期间内丢失。 此外,还可以验证设定的允许误差的正确性。 因此,可以减少收集和存储在存储器中的数据量,而不会丢失在感兴趣的设备中发现的预测异常的证据的检测所需的信息。 结果,可以提供能够以高效率收集时间序列数据的时间序列数据诊断/压缩方法和采用该方法的数据收集/存储装置。 也就是说,根据本发明,提供了不依赖于设备而不需要设备知识的预测故障证据诊断部分,并且基于预测的异常证据的结果 本节对从设备收集的时间序列数据进行诊断,可以设置和管理用于压缩收集的数据的容许误差,以便在诊断结果正常的情况下压缩数据,或者限制压缩 检测到预测异常的证据的期间的数据。 因此,可以减少存储在存储器中的数据量。
    • 9. 发明申请
    • Ratchet wrench handle
    • 棘轮扳手手柄
    • US20110067531A1
    • 2011-03-24
    • US12805600
    • 2010-08-09
    • Shoji Suzuki
    • Shoji Suzuki
    • B25B13/46
    • B25B13/463
    • In order to avoid any unintended positive or reverse switch operation of a ratchet wrench handle A, an operation piece 9 is swingably supported by an axis in a handle head 1a; a set of operation claws 12 for positive rotation and those 13 for reverse rotation are disposed on one and the other portions of a distal end surface of said operation piece 9 that faces a rotation member 3; said operation piece 9 is also provided with a cam edge 16 recessed like an arc in the direction of said distal end surface; a pressing pin 15 is provided in a switch member 14 in such a manner that said pressing pin 15 can freely move into and out of said switch member 14, and contacts under pressure said cam edge 16 by way of a biasing force of a spring.
    • 为了避免棘轮扳手A的任何意外的正向或反向切换操作,操作件9由手柄头1a中的轴可摆动地支撑; 一组用于正旋转的操作爪12和反向旋转的操作爪12设置在所述操作件9的面向旋转构件3的远端表面的一个和另一个部分上; 所述操作件9还设置有沿着所述远端表面的方向凹陷成弧形的凸轮边缘16; 按压销15设置在开关构件14中,使得所述按压销15可以自由地移动进入和离开所述开关构件14,并且通过弹簧的偏压力在压力下接触所述凸轮边缘16。