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    • 3. 发明申请
    • Coupling optical system for optical communications
    • 光通信耦合光学系统
    • US20060262427A1
    • 2006-11-23
    • US11429988
    • 2006-05-09
    • Masao MoriYu KitaharaMakoto OomuraYoko YamamotoToshiaki Katsuma
    • Masao MoriYu KitaharaMakoto OomuraYoko YamamotoToshiaki Katsuma
    • G02B13/02G01J1/04
    • G02B6/4206G02F1/167G02F2001/294
    • A coupling optical system for coupling light into an optical fiber of an optical communications system includes a liquid that includes a dispersion of microscopic particles and two transparent media that hold the liquid between them along an optical axis. The refractive power of the liquid is variable according to the electromagnetic field applied to the liquid to vary the migration of the microscopic particles of the dispersion within the liquid. The position of a light collecting point of the coupling optical system is adjustable based on the variation in the refractive power of the liquid so that light can be efficiently coupled into optical fibers at different distances along the optical axis from the coupling optical system. At the light collecting point, the end surface of an optical fiber collects light from a light source or another optical fiber. One or more collimator lenses may help converge the light.
    • 用于将光耦合到光通信系统的光纤中的耦合光学系统包括液体,其包括微观颗粒的分散体和沿着光轴将液体保持在它们之间的两个透明介质。 液体的屈光力根据施加到液体的电磁场而变化,以改变液体中分散体的微观颗粒的迁移。 耦合光学系统的聚光点的位置可以基于液体的屈光力的变化来调节,使得光可以有效地耦合到光耦合光学系统沿光轴不同的距离。 在光收集点,光纤的端面收集来自光源或另一光纤的光。 一个或多个准直透镜可以帮助会聚光。
    • 7. 发明授权
    • Polymer fuel cell stack and polymer fuel cell separator pair
    • 聚合物燃料电池堆和聚合物燃料电池隔板对
    • US09005840B2
    • 2015-04-14
    • US13386957
    • 2010-07-14
    • Takashi MorimotoToshihiro MatsumotoAtusi MurataMitsuo YoshimuraYoko Yamamoto
    • Takashi MorimotoToshihiro MatsumotoAtusi MurataMitsuo YoshimuraYoko Yamamoto
    • H01M2/18H01M8/02H01M8/10
    • H01M8/0254H01M8/0206H01M8/0263H01M8/0267H01M8/0273H01M8/0276H01M8/0286H01M8/2483H01M2008/1095Y02E60/50
    • A fuel cell separator pair has first and second separators having front and back surfaces, a corrugated plate portion shaped in a wave form at the central portion, and a flat plate portion formed in the peripheral portion and surrounding the corrugated plate portion, wherein the corrugated plate portion of the front surface constitutes a reaction gas channel and the corrugated plate portion of the back surface constitutes a coolant channel. The back surfaces of the first and second separators are facing each other. The flat plate portions of the first and second separators are arranged on top of each other so as to be in contact with each other. The flat plate portion of the second separator protrudes toward the outside beyond the flat plate portion of the first separator. The fuel cell separator pair has a seal member (A) disposed on the flat plate portion of the front surface of the first separator, a seal member (B) disposed on the flat plate portion of the front surface of the second separator, and a seal member (C) disposed on the region protruding beyond the flat plate portion of the first separator in the flat plate portion of the back surface of the second separator.
    • 一种燃料电池隔板对具有前后表面的第一和第二隔板,在中央部形成为波浪状的波纹板部,以及形成于周边部并围绕波纹板部的平板部, 前表面的板部分构成反应气体通道,并且后表面的波纹板部分构成冷却剂通道。 第一和第二分离器的后表面彼此面对。 第一和第二分离器的平板部分彼此顶起设置成彼此接触。 第二分离器的平板部向外侧突出超过第一分离器的平板部。 燃料电池分离器对具有设置在第一分离器的前表面的平板部分上的密封构件(A),设置在第二分离器的前表面的平板部分上的密封构件(B) 密封构件(C),设置在第二隔板的背面的平板部中突出超过第一隔板的平板部的区域。
    • 9. 发明授权
    • Image scanning lens and image scanning device that uses same
    • 图像扫描镜头和使用相同的图像扫描装置
    • US06999246B2
    • 2006-02-14
    • US11045364
    • 2005-01-31
    • Yoko YamamotoHiromitsu Yamakawa
    • Yoko YamamotoHiromitsu Yamakawa
    • G02B15/14G02B9/34
    • G02B9/34G02B13/24
    • An image scanning lens includes four lens components that may include five lens elements as follows: a first lens element having negative refractive power and a meniscus shape with its convex surface on the object side, a second lens element having positive refractive power and a meniscus shape with its convex surface on the object side, a stop, a third biconcave lens element cemented to a fourth biconvex lens element, and a fifth lens element having negative refractive power and a meniscus shape with its concave surface on the object side. The image scanning lens satisfies certain conditions related to the focal lengths of the first, second, and third lens components of the image scanning lens and to the anomalous dispersion of the second lens element. An image scanning device, such as an image scanner, with an image pickup device, such as a CCD, uses the image scanning lens.
    • 图像扫描透镜包括可以包括以下的五个透镜元件的四个透镜部件:具有负屈光力的第一透镜元件和在物体侧具有凸面的弯月形状,具有正折射力的第二透镜元件和弯月面形状 在其物体侧具有凸面,具有固定到第四双凸透镜元件的止挡件,第三双凹透镜元件和具有负屈光力的第五透镜元件和具有在物体侧上的凹面的弯液面形状。 图像扫描透镜满足与图像扫描透镜的第一,第二和第三透镜部件的焦距相关的特定条件以及第二透镜元件的异常色散。 诸如CCD的图像拾取装置的诸如图像扫描仪的图像扫描装置使用图像扫描透镜。
    • 10. 发明授权
    • Facsimile apparatus capable of preventing receipt of unauthorized
facsimile transmissions
    • 能够防止未经授权的传真发送接收的传真装置
    • US5406387A
    • 1995-04-11
    • US215654
    • 1994-03-22
    • Yoko Yamamoto
    • Yoko Yamamoto
    • H04M11/00H04N1/00H04N1/32
    • H04N1/32005
    • A facsimile apparatus capable of performing the closed communication with specific calling offices by the setting in a called office. The called office previously registers identification data of predetermined calling offices. When a call is received from a calling office, the called office detects the identification data of the calling office from a control signal for standardized transmission control procedures received from the calling office, and compares the detected identification data with the registered identification data. When coincidence between the both identification data is detected, the communication is enabled between these offices.
    • 一种传真装置,能够通过在被叫办公室中的设置来执行与特定呼叫局的闭合通信。 被叫办公室以前注册了预定呼叫处的识别数据。 当从呼叫局接收到呼叫时,被叫办公室从用于从呼叫局接收的标准化传输控制程序的控制信号中检测呼叫局的识别数据,并将检测到的识别数据与登记的识别数据进行比较。 当检测到两个识别数据之间的一致性时,这些办公室之间能够进行通信。