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    • 42. 发明授权
    • Eyeball microscope
    • 眼球显微镜
    • US5177512A
    • 1993-01-05
    • US769792
    • 1991-10-02
    • Kuniomi AbeSusumu Fujita
    • Kuniomi AbeSusumu Fujita
    • A61B3/12A61B3/14A61B3/15
    • A61B3/135A61B3/156
    • An eyeball microscope used for observing or photographing epithelial and endothelial cells and likes of a cornea, which is provided with an illuminating optical system for projecting an illuminating light beam onto an object, an observing optical system for observing or photographing an imaging light beam from the object and parallel slits moving across the optical paths of both optical systems, and arranged to scan the object with optical images of some of the slits and observe imaging beams from the object through other slits, thereby shutting off all unwanted reflecting beams. In this invention, it is suited for both eye observation and photography by composing the slits of plural groups which are mutually different in design.
    • 一种眼球显微镜,用于观察或拍摄上皮和内皮细胞等角膜,其具有用于将照射光束投射到物体上的照明光学系统,用于观察或拍摄来自所述成像光束的成像光束的观察光学系统 物体和平行狭缝移动穿过两个光学系统的光路,并且被布置成用一些狭缝的光学图像扫描物体,并且通过其它狭缝观察来自物体的成像光束,从而关闭所有不需要的反射光束。 在本发明中,通过组合设计相互不同的多个组的狭缝,适用于眼睛观察和摄影。
    • 45. 发明申请
    • JIG PALLET
    • US20090289402A1
    • 2009-11-26
    • US12296863
    • 2007-04-13
    • Masanori TomiokaTomohisa NakamuraSusumu Fujita
    • Masanori TomiokaTomohisa NakamuraSusumu Fujita
    • B23Q1/25
    • B60R13/02Y10S269/905
    • A jig palette for conveying a workpiece that is placed on it and has a portion to be worked. The jig palette has a conveyance carriage (A) movable along a production line, a workpiece receiving member (B) provided at the conveyance carriage (A) and on which the workpiece is placed, a pressing mechanism (E) to be placed so as to face a peripheral section of the to-be-worked portion of the workpiece placed on the workpiece receiving member (B), and an opening/closing member (D) on which the pressing mechanism (E) is provided. When the opening/closing member (D) is being closed, the pressing mechanism (E) presses a peripheral section of the to-be-worked portion of the workpiece from above, and when being opened, the pressing is released, enabling the opening/closing member (D) to be opened and closed, with one end of the conveyance carriage (A) functioning as the support point, and allowing the workpiece to be taken out.
    • 用于输送放置在其上的工件并具有待加工部分的工具调色板。 工具调色板具有可沿着生产线移动的传送台(A),设置在传送台(A)上的工件接收构件(B),放置有工件的工件接收构件(B),被放置的按压机构 面对放置在工件接收构件(B)上的工件的待加工部分的周边部分,以及设置有按压机构(E)的打开/关闭构件(D)。 当打开/关闭构件(D)关闭时,按压机构(E)从上方按压被加工部分的周边部分,当打开时,按压被释放,使得打开/关闭构件 /关闭构件(D)打开和关闭,其中输送滑架(A)的一端用作支撑点,并允许工件被取出。
    • 49. 发明授权
    • Electronic timepiece having thermoelectric element
    • 具有热电元件的电子表
    • US06459658B1
    • 2002-10-01
    • US09199205
    • 1998-11-24
    • Susumu FujitaTokuya AkaseJoichi MiyazakiYoshimitsu Kurasawa
    • Susumu FujitaTokuya AkaseJoichi MiyazakiYoshimitsu Kurasawa
    • G04B100
    • G04G19/08G04C10/00
    • An electronic timepiece has a thermoelectric element for generating an electromotive force in response to a temperature difference thereacross. A booster circuit boosts the electromotive force generated by the thermoelectric element. A storage mechanism stores electrical power utilizing the electromotive force boosted by the booster circuit. A power monitoring circuit monitors the electromotive force boosted by the booster circuit to detect whether the boosted electromotive force is lower than a threshold value. An oscillation circuit is driven by electrical power stored in the storage mechanism. A dividing circuit frequency-divides a signal output by the oscillation circuit. A display mechanism is driven by a display driving circuit to display time in accordance with an output signal from the dividing circuit. A display drive controlling circuit stops operation of the display driving circuit when the power monitoring circuit detects that the boosted electromotive force is lower than the threshold value.
    • 电子钟表具有用于响应于其周围的温度差产生电动势的热电元件。 升压电路提高了由热电元件产生的电动势。 存储机构利用由升压电路提升的电动势来存储电力。 电力监视电路监视由升压电路升压的电动势,以检测升压电动势是否低于阈值。 振荡电路由存储在存储机构中的电力驱动。 分频电路对由振荡电路输出的信号进行频率分频。 显示机构由显示驱动电路驱动,以根据来自分频电路的输出信号显示时间。 当电源监视电路检测到升压电动势低于阈值时,显示驱动控制电路停止显示驱动电路的操作。