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    • 32. 发明授权
    • Truck transport apparatus
    • 卡车运输设备
    • US06595141B2
    • 2003-07-22
    • US09824857
    • 2001-04-04
    • Shinji IshikawaHeihachi Kobayashi
    • Shinji IshikawaHeihachi Kobayashi
    • B65G3506
    • B61B13/00B62D65/18
    • A truck transport apparatus comprises a trolley running rail 11, a front trolley 32 and a rear trolley 33 arranged along the rail 11 in a truck running direction, a truck body 35 connected to the front trolley 32 and the rear trolley 33 at a lengthwise intermediate portion of each trolley so as to permit each trolley to pivotally move horizontally, a driven rod 38 having a front end connected to a rear end of the front trolley 32 so as to make the front trolley 32 free to pivotally move horizontally and a rear end connected to a front end of the rear trolley 33 so as to make the rear trolley 33 free to pivotally move horizontally, and a pair of transport rollers 84, 87 for holding the driven rod 38 therebetween from opposite sides thereof to give the rod a propelling force. The driven rod 38 is extended when the truck is about to move into a curved path of movement from a straight path of movement, while the rod 38 is contracted when the truck is about to move into the straight path from the curved path.
    • 卡车运输装置包括沿着卡车运行方向沿轨道11布置的台车运行轨道11,前手推车32和后小车33,在纵向中间连接到前手推车32和后手推车33的卡车主体35 每个手推车的一部分,以允许每个手推车水平枢转地移动;从动杆38,其前端连接到前手推车32的后端,以使前手推车32自由地水平地枢​​转运动,后端 连接到后台车33的前端,以使后推车33自由地水平地枢​​转;以及一对输送辊84,87,用于将从动杆38从其相对侧保持在其间,从而使杆成为推进 力。 当卡车将从直线运动路径移动到弯曲的运动路径中时,从动杆38延伸,而当卡车将从弯曲路径移动到直线路径中时,杆38收缩。
    • 33. 发明授权
    • Optical fiber, light-emitting module, and optical fiber amplifier
    • 光纤,发光模块和光纤放大器
    • US06327412B1
    • 2001-12-04
    • US09445086
    • 1999-12-02
    • Motoki KakuiShinji IshikawaTakashi Sasaki
    • Motoki KakuiShinji IshikawaTakashi Sasaki
    • G02B602
    • G02B6/02028G02B6/03633G02B6/4206G02B2006/2839H01S3/094003H01S3/094011
    • An optical fiber amplifier comprises an amplifying optical fiber 60 for optically amplifying signal light according to pumping light incident thereon, a semiconductor light-emitting device 10 for emitting the pumping light; a light-collecting optical system 30 for collecting the pumping light; and waveguide optical fibers 20 to 22 for guiding light through core regions to the amplifying optical fiber, in which the waveguide optical fibers 20 to 22 are disposed such that a maximum width direction of the core region at an input face thereof aligns with a maximum width direction of an incident beam, and the maximum width D [&mgr;m] of the core region at the input face satisfies L ⁢   ⁢ sin ⁢   ⁢ θ NA ≤ D ≤ L where NA is the numerical aperture, L [&mgr;m] is the maximum width of a light-emitting region of the semiconductor light-emitting device 10, and &thgr; is the output divergent angle of the emitted light in the maximum width direction of the light-emitting region.
    • 光纤放大器包括:放大光纤60,用于根据入射到其上的泵浦光光学放大信号光;发射泵浦光的半导体发光器件10; 用于收集泵浦光的聚光光学系统30; 以及用于将光通过芯区域引导到放大光纤的波导光纤20至22,其中波导光纤20至22布置成使得其输入面处的芯区域的最大宽度方向与最大宽度对齐 入射光束的方向和输入面的芯区域的最大宽度D m满足其中NA是数值孔径,L [m]是半导体发光器件的发光区域的最大宽度 10,θ是发光区域的最大宽度方向的发射光的输出发散角。
    • 37. 发明授权
    • Varible operation sensation input device
    • 可变操作感觉输入装置
    • US08659402B2
    • 2014-02-25
    • US12885190
    • 2010-09-17
    • Yoshitsugu WakitaShinji Ishikawa
    • Yoshitsugu WakitaShinji Ishikawa
    • H04B3/36G08B6/00G05G9/00B60K17/04G06F3/033G06F19/00
    • G06F3/03548G06F3/016G06F2203/015
    • A variable operation sensation input device includes: an operation member slidable along a plane including first and second directions perpendicular to each other; a first driving member including a first engagement portion driven by sliding movement of the operation member in the first direction; a second driving member including a second engagement portion driven by sliding movement of the operation member in the second direction; a first motor connected to the first driving member via a first power transmission section; a second motor connected to the second driving member via a second power transmission section; a first detection section detecting a movement state of the operation member in the first direction; a second detection section detecting a movement state of the operation member in the second direction; and a control section controlling a driving of the motors on the basis of outputs of the first and second detection sections.
    • 可变操作感觉输入装置包括:操作构件,其沿着包括彼此垂直的第一和第二方向的平面滑动; 第一驱动构件,包括通过操作构件在第一方向上的滑动运动而驱动的第一接合部; 第二驱动构件,包括通过操作构件沿第二方向的滑动而被驱动的第二接合部; 经由第一电力传输部分连接到第一驱动部件的第一电动机; 经由第二电力传输部分连接到第二驱动部件的第二电动机; 第一检测部,其检测所述操作部件在所述第一方向上的移动状态; 第二检测部,检测所述操作部件在所述第二方向上的移动状态; 以及控制部,其基于所述第一检测部和所述第二检测部的输出来控制所述电动机的驱动。
    • 38. 发明授权
    • Oscillator circuit
    • 振荡电路
    • US08487709B2
    • 2013-07-16
    • US13122694
    • 2010-07-22
    • Shinji IshikawaIchiro Yamane
    • Shinji IshikawaIchiro Yamane
    • H03B5/32
    • H03B5/36H03B5/06H03B2200/0046H03B2200/0094H03K3/0307H03L3/00
    • An oscillator circuit comprises a piezoelectric vibrator, an amplifier device including inverters provided in a plurality of stages, and an inverter control device. The inverters provided in the plurality of stages includes a performance-variable inverter configured which is operational in both of an initial phase of oscillation startup and a post-startup phase where the oscillation is stabilized and capable of a variable performance depending on whether the initial phase of oscillation startup or the post-startup phase where the oscillation is stabilized, and an ON/OFF inverter which is operational in the initial phase of oscillation startup and disconnected in the post-startup phase where the oscillation is stabilized. The inverter control device have the performance-variable inverter and the ON/OFF inverter both operational and lowers the performance of the performance-variable inverter in the initial phase of oscillation startup, and the inverter control device disconnects the ON/OFF inverter and increases the performance of the performance-variable inverter in the post-startup phase where the oscillation is stabilized.
    • 振荡电路包括压电振动器,包括设置在多个级中的反相器的放大器装置和逆变器控制装置。 设置在多级中的逆变器包括:性能可变逆变器,其配置为在振荡启动的初始阶段和振荡稳定的后启动阶段两者中都可操作,并且能够根据初始阶段 振荡启动或振荡稳定的后启动阶段,以及在振荡稳定初始阶段中振荡启动的初始阶段和断开的ON / OFF逆变器。 逆变器控制装置具有性能可变的变频器和ON / OFF变频器,在起动初始阶段均可使运行性能可变变频器的性能降低,变频器控制装置断开ON / OFF变频器, 性能可变的逆变器在振荡稳定的后启动阶段的性能。
    • 39. 发明授权
    • Optical amplification fiber, optical amplifier module, optical communication system and optical amplifying method
    • 光放大光纤,光放大器模块,光通信系统和光放大方法
    • US07436583B2
    • 2008-10-14
    • US10933473
    • 2004-09-03
    • Motoki KakuiTetsuya HarunaShinji Ishikawa
    • Motoki KakuiTetsuya HarunaShinji Ishikawa
    • H01S3/00H01S3/10H04B10/12
    • H01S3/06754G02B6/02H01S3/06708H01S3/06716H01S3/06758H01S3/06766H01S3/094011
    • The present invention relates to an optical amplification fiber and others capable of effectively reducing nonlinear interaction between signal channels even in transmission of multiplexed signal light containing multiple signal channels arranged in high density and also effectively reducing bending loss. An optical amplification module has an optical isolator, a WDM coupler, an Er-doped optical fiber (EDF) as an optical amplification fiber, a WDM coupler, and an optical isolator, which are arranged in order on a signal light propagation path from an input connector to an output connector, and further has a pumping light source connected to the WDM coupler and a pumping light source connected to the other WDM coupler. The EDF, at the wavelength of 1607 nm, has a mode field diameter (MFD) of 10 μm or more to the fundamental mode and a MAC number (=MFD/cutoff wavelength) of 6.8 or less to the fundamental mode.
    • 本发明涉及一种光放大光纤和其他能够有效降低信号通道之间的非线性相互作用的技术,即使在包含以高密度布置的多个信号通道的多路复用信号光的传输中,并且还有效地减少了弯曲损耗。 光放大模块具有光隔离器,WDM耦合器,作为光放大光纤的掺铒光纤(EDF),WDM耦合器和光隔离器,它们依次布置在信号光传播路径上 输入连接器连接到输出连接器,并且还具有连接到WDM耦合器的泵浦光源和连接到另一WDM耦合器的泵浦光源。 在1607nm波长处的EDF具有基本模式的10mum以上的模场直径(MFD),与基本模式的MAC数(= MFD /截止波长)为6.8以下。
    • 40. 发明授权
    • Optical fiber and fiber grating type filter including the same
    • 光纤和光纤光栅类型的滤光片包括相同的
    • US07203399B2
    • 2007-04-10
    • US10747085
    • 2003-12-30
    • Shinji IshikawaToshiki TaruMasakazu ShigeharaMasaki Ohmura
    • Shinji IshikawaToshiki TaruMasakazu ShigeharaMasaki Ohmura
    • G02B6/00
    • G02B6/03694G02B6/02085G02B6/02119G02B6/03611
    • The present invention relates to an optical fiber having a structure which allows further improvements to be made both in terms of lower reflectance and narrower bandwidth, and to a fiber grating type filter including the optical fiber. The optical fiber applied to the fiber grating type filter comprises a core region extending along a predetermined axis, and a cladding region provided on an outer periphery of the core region. The core region does not contain any photosensitive dopant which contributes to predetermined wavelength light photosensitivity as a glass property, but a part of the cladding region contain such a photosensitive dopant. By means of this composition, it is possible to form a grating, which has a grating plane slanted by a predetermined angle with respect to the optical axis, in a part of the cladding region surrounding the core region.
    • 本发明涉及具有能够进一步改善低反射率和较窄带宽的结构的光纤以及包括该光纤的光纤光栅型滤光器。 施加到光纤光栅型滤光器的光纤包括沿着预定轴线延伸的芯区域和设置在芯区域的外周上的包层区域。 核心区域不含任何有助于作为玻璃性能的预定波长光敏性的光敏掺杂剂,但是包层区域的一部分含有这种光敏掺杂剂。 通过这种组合,可以形成光栅,该光栅具有相对于光轴倾斜预定角度的光栅平面,该光栅平面围绕着核心区域的一部分包层区域。