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    • 61. 发明授权
    • Fiber coupler manufacturing apparatus having an automatic breaking test
device
    • 具有自动断裂测试装置的光纤耦合器制造装置
    • US5306323A
    • 1994-04-26
    • US907023
    • 1992-07-01
    • Hiroaki TakimotoHiroshi SuganumaKazuhiko Arimoto
    • Hiroaki TakimotoHiroshi SuganumaKazuhiko Arimoto
    • G01M11/08G02B6/255G02B6/28C03B37/023
    • G01M11/088G02B6/2551G02B6/2835
    • The present invention provides a fiber coupler manufacturing apparatus comprising a pair of fiber holding portions and a fiber clamp disposed on each of the fiber holding portions for holding at least two optical fibers. A weight and pulley system is arranged wherein a first weight is coupled to each of the fiber holding portions to pull the fiber holding portions away from each other to apply tension to the optical fibers. A heating unit is disposed between the fiber holding portions and proximate to the optical fibers to heat the optical fibers. A second weight is coupled to either the fiber holding portions or the first weight and rests on a movable platform. As the movable platform descends in a vertical direction, the second weight applies additional force to the fiber holding portions and thus applies additional tension to the optical fibers.
    • 本发明提供了一种光纤耦合器制造装置,其包括一对光纤保持部和设置在每个光纤保持部上的用于保持至少两根光纤的光纤夹。 布置了重量和滑轮系统,其中第一重物联接到每个纤维保持部分以将纤维保持部分彼此远离以向光纤施加张力。 加热单元设置在光纤保持部分之间并且靠近光纤以加热光纤。 第二重物耦合到纤维保持部分或第一重物,并且搁置在可移动平台上。 当可移动平台在垂直方向上下降时,第二重量对纤维保持部分施加额外的力,因此对光纤施加额外的张力。
    • 67. 发明授权
    • Boiler structure
    • 锅炉结构
    • US09291343B2
    • 2016-03-22
    • US13056219
    • 2009-07-02
    • Hiroshi SuganumaYuichi KanemakiKazuhiro Domoto
    • Hiroshi SuganumaYuichi KanemakiKazuhiro Domoto
    • F22B21/00F22B21/02
    • F22B21/02F22B35/108F22B35/12
    • Provided is a boiler structure that allows for appropriate flow-rate distribution for each furnace wall by using a simple configuration without any moving parts in a wide thermal-load range of a furnace from a partial load to a rated load. In a boiler structure having a furnace water-wall formed of multiple boiler evaporation tubes and configured to generate steam by heating water inside the furnace when the water that is pressure-fed to the boiler evaporation tubes flows inside the tubes, the boiler structure includes a pressure-loss adjusting section, for an internal fluid, provided in an outlet connection tube that connects outlets of water walls obtained by dividing the furnace water-wall into multiple parts.
    • 提供了一种锅炉结构,其允许通过使用简单的构造来允许每个炉壁的适当的流量分布,在炉的宽热负荷范围内没有任何移动部件从部分负载到额定负载。 在具有由多个锅炉蒸发管形成的炉水壁构成的锅炉结构中,在通过加压到锅炉蒸发管的水流入管内时,通过对炉内的水进行加热来生成蒸汽,锅炉结构包括: 用于内部流体的压力损失调节部分,设置在将炉壁水分为多个部分而获得的水壁出口连接的出口连接管中。
    • 69. 发明授权
    • Imaging apparatus
    • 成像设备
    • US08456561B2
    • 2013-06-04
    • US12962319
    • 2010-12-07
    • Eiichiro YamadaHiroshi SuganumaYuji Kobayashi
    • Eiichiro YamadaHiroshi SuganumaYuji Kobayashi
    • H04N5/225
    • H04N5/235H04N5/2254H04N5/2256H04N5/361
    • Provided is an imaging apparatus capable of obtaining images of an object at high precision even if the intensities of illuminating light temporally varies. The imaging apparatus 1 comprises a lamp unit 10, lens 21, a half mirror 22, a lens 23, a liquid crystal tunable filter 24, a lens 25, a reference mirror 31, a reference mirror 32, an image capturing unit 40, an operation unit 50, and a display unit 60. The reference mirrors 31 and 32 are provided at the positions to which illuminating light led by an optical system for illuminating light is irradiated and which are located at a part of the view of the image capturing unit 40. The operation unit 50 corrects the value of the image part of the object 2 by using the value of the image part of the reference mirrors 31 and 32 out of the images captured by the image capturing unit 40.
    • 提供一种能够即使照射光的强度在时间上变化也能够以高精度获得被摄体的图像的摄像装置。 成像装置1包括灯单元10,透镜21,半透半反镜22,透镜23,液晶可调滤光器24,透镜25,参考镜31,参考镜32,图像捕获单元40, 操作单元50和显示单元60.参考镜31和32设置在照射由照明光的光学系统引导的照明光的位置处,并且位于图像捕获单元的视图的一部分 操作单元50通过使用由图像捕获单元40捕获的图像中的参考镜31和32的图像部分的值来校正对象2的图像部分的值。