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    • 31. 发明申请
    • COHERENT OPTICAL RECEIVER DEVICE AND COHERENT OPTICAL RECEIVING METHOD
    • 相关光接收器件和相干光接收方法
    • US20130287393A1
    • 2013-10-31
    • US13980307
    • 2012-01-20
    • Masao MorieKouichi Suzuki
    • Masao MorieKouichi Suzuki
    • H04B10/61
    • H04B10/07955H04B10/611H04B10/616H04B10/6166
    • In a coherent optical receiver device, the control process for keeping received signals in high quality is complicated, therefore, a coherent optical receiver device according to an exemplary aspect of the invention includes a coherent optical receiver receiving input signal light; an input power monitor obtaining input power information determined on the basis of the power of the input signal light; a local oscillator connected to the coherent optical receiver; and a controller connected to the coherent optical receiver, the input power monitor, and the local oscillator; wherein the coherent optical receiver comprises a 90-degree hybrid circuit, a photoelectric converter, and an amplifier; the input power monitor is disposed in the optical path of the input signal light in a stage preceding the amplifier; and the controller obtains the input power information from the input power monitor and controls the power of local oscillation light output from the local oscillator on the basis of the input power information.
    • 在相干光接收机装置中,用于保持高质量的接收信号的控制过程是复杂的,因此,根据本发明的示例性方面的相干光接收机装置包括接收输入信号光的相干光接收机; 输入功率监视器,其基于输入信号光的功率确定输入功率信息; 连接到相干光接收机的本地振荡器; 以及连接到相干光接收器,输入功率监视器和本地振荡器的控制器; 其中所述相干光接收机包括90度混合电路,光电转换器和放大器; 输入功率监视器设置在输入信号光的光路中,处于放大器之前的阶段; 并且控制器从输入功率监视器获取输入功率信息,并且基于输入功率信息来控制从本地振荡器输出的本地振荡光的功率。
    • 35. 发明申请
    • BREEDING SUPPORT SYSTEM
    • 育种支持系统
    • US20080147458A1
    • 2008-06-19
    • US11874363
    • 2007-10-18
    • Akihiro YamazakiShuzo GotohKenji NishiiTakahiro KusanoHirokazu HayashiKouichi Suzuki
    • Akihiro YamazakiShuzo GotohKenji NishiiTakahiro KusanoHirokazu HayashiKouichi Suzuki
    • G06F19/00
    • A01K29/005A01K11/008A01K29/00G06Q10/063
    • A breeding support system including at least one information terminal for processing breeding information associated with breeding work of at least one individual breeding object, the system comprising: individual information collecting means for collecting individual information indicating a time-variable change of an individual condition of the individual breeding object; specified breeding work requirement determination means for determining a requirement for a specified breeding work from among all breeding work in accordance with a profile of the time-variable change of the individual condition; breeding guidance generation means for generating at least one breeding guidance announcing a requirement of the specified breeding work determined; and breeding guidance supply means for supplying the generated breeding guidance as the breeding information to the information terminal.
    • 一种育种支持系统,包括至少一个信息终端,用于处理与至少一个个体育种对象的育种工作相关的育种信息,所述系统包括:个人信息收集装置,用于收集指示个体信息的个体状况的时间变化的个体信息 个体育种对象; 指定育种工作要求确定装置,用于根据个体状况的时间变化的轮廓,从所有育种工作中确定特定育种工作的要求; 育种指导生成装置,用于生成至少一个育种指导,宣布确定的指定育种工作的要求; 以及用于将生成的育种指导作为育种信息提供给信息终端的育种指导提供装置。
    • 36. 发明申请
    • Circuit for controlling phase with improved linearity of phase change
    • 控制相位的电路具有改善的相变线性度
    • US20060208784A1
    • 2006-09-21
    • US11209518
    • 2005-08-24
    • Kouichi Suzuki
    • Kouichi Suzuki
    • H03K5/13
    • H03K5/13H03K2005/00052
    • A circuit for controlling phase includes a first node providing a current responsive to a first clock signal, a first plurality of switch circuits coupled to the first node, a first plurality of current supply sources coupled to the first plurality of switch circuits, respectively, a second node providing a current responsive to a second clock signal, a second plurality of switch circuits coupled to the second node, and a second plurality of current supply sources coupled to the second plurality of switch circuits, respectively, wherein the first node and the second node are coupled to combine the first clock signal and the second clock signal, at least one of the first plurality of current supply sources having a current supply amount different from another, and at least one of the second plurality of current supply sources having a current supply amount different from another.
    • 用于控制相位的电路包括提供响应于第一时钟信号的电流的第一节点,耦合到第一节点的第一多个开关电路,分别耦合到第一多个开关电路的第一多个电流源, 第二节点提供响应于第二时钟信号的电流,耦合到第二节点的第二多个开关电路以及分别耦合到第二多个开关电路的第二多个电流源,其中第一节点和第二节点 耦合第一时钟信号和第二时钟信号,所述第一多个电流源中的至少一个具有不同于另一个的电流供应量,并且所述第二多个电流源中的至少一个具有电流 供应量不同于另一个。
    • 37. 发明申请
    • Image pick-up inspection equipment and method
    • 图像检测设备及方法
    • US20060170911A1
    • 2006-08-03
    • US11263917
    • 2005-11-02
    • Takanori OkitaKouichi Suzuki
    • Takanori OkitaKouichi Suzuki
    • G01N21/88
    • G01N21/95684G01N2021/95661H01L24/48H01L24/85H01L2224/05554H01L2224/45015H01L2224/48463H01L2224/859H01L2924/00014H01L2224/45099H01L2924/20752H01L2224/05599
    • Even when component parts lap up and down spatially on the surface of a semiconductor device, without being influenced by an upper component, an image pick-up and inspection of a lower component is conducted. Having objective lens system opposing the imaged surface of semiconductor device, and imaging lens system arranged between this objective lens system and image sensor, the F value of objective lens system is made into 1.5 or less, and an imaged surface is photoed and inspected. Having objective lens system opposing an imaged surface, and imaging lens system arranged between this objective lens system and imaging surface, and the imaging lens system having several lenses with which focal distances differ, according to the desired magnification, a predetermined lens among the plurality of lenses is arranged in the predetermined location of an optical axis, other lenses are evacuated from an optical axis, and an imaged surface is photoed and inspected.
    • 即使在不受上部部件的影响的情况下,也可以在半导体器件的表面上空间地组装上述部件,进行下部部件的摄像和检查。 具有与半导体器件的成像面相对的物镜系统和配置在该物镜系统与图像传感器之间的摄像透镜系统,物镜系统的F值为1.5以下,成像面被照相和检查。 具有与成像面相对的物镜系统,以及配置在该物镜系统与成像面之间的摄像透镜系统,具有若干透镜的成像透镜系统,根据所需的倍率,焦距不同,多个透镜系统中的预定透镜 透镜布置在光轴的预定位置,其他透镜从光轴排出,并且成像的表面被照相和检查。