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    • 71. 发明授权
    • Method and device for controlling bias of optical modulator
    • 用于控制光调制器偏置的方法和装置
    • US07899338B2
    • 2011-03-01
    • US10550770
    • 2004-03-26
    • Yoshihiro HashimotoJunichiro IchikawaKaoru HigumaTakahisa Fujita
    • Yoshihiro HashimotoJunichiro IchikawaKaoru HigumaTakahisa Fujita
    • H04B10/04H04B10/121
    • G02F1/0327G02F1/0123G02F1/035G02F1/225G02F2201/58
    • A method and device for adequately controlling the DC bias of each of the optical modulating sections of an optical modulator even while the optical modulator is operating in normal mode and even with a simple structure. An optical modulator bias controller (B) for controlling the DC bias of each optical modulating section of an optical modulator (1) is characterized by comprising DC bias application means (3) for applying a DC bias to each of the optical modulating sections, a low-frequency signal superimposing circuit (2) for superimposing a low-frequency signal fB with a specific frequency on a modulating signal b applied to each optical modulating section, optical sensing means (9) for sensing a change of the intensity of the light wave passing through the combining section, and bias control means (4) for extracting the change of the intensity of light corresponding to the low-frequency signal from the optical sensing means and controlling the DC bias application means according to the extracted change of the intensity of light.
    • 即使在光调制器以正常模式操作并且甚至具有简单结构的情况下也可以充分地控制光调制器的每个光调制部分的DC偏置的方法和装置。 用于控制光调制器(1)的每个光调制部分的DC偏压的光调制器偏置控制器(B)的特征在于包括用于向每个光调制部分施加DC偏压的DC偏压施加装置(3) 低频信号叠加电路(2),用于将具有特定频率的低频信号fB叠加到施加到每个光调制部分的调制信号b上;光检测装置(9),用于感测光波强度的变化 通过组合部分,以及用于从光学感测装置中提取与低频信号相对应的光强变化的偏压控制装置(4),并根据提取的光强度变化对DC偏压施加装置进行控制 光。
    • 72. 发明授权
    • Optical modulator
    • 光调制器
    • US07751724B2
    • 2010-07-06
    • US11624887
    • 2007-01-19
    • Yoshihiro HashimotoShingo MoriNorikazu MiyazakiKaoru HigumaToshio Sakane
    • Yoshihiro HashimotoShingo MoriNorikazu MiyazakiKaoru HigumaToshio Sakane
    • H04B10/04
    • G02F1/2255H04B10/505H04B10/5053H04B10/5165
    • An optical modulator is provided which includes: an optical splitting part that splits an input light wave into two light waves; two optical waveguides that propagate the two light waves into which the input light wave is split, respectively; a first SSB modulating part that is provided in one of the two optical waveguides and modulates a light wave, which propagates into the first SSB modulating part, with a carrier frequency so that the light wave is converted into a different light wave having a single side band; a second SSB modulating part that is provided in the other of the two optical waveguides and modulates a light wave, which propagates into the second SSB modulating part, with a data signal in order to generate a signal light wave having a different single side band; and an optical combining part that combines the light wave modulated by the first SSB modulating part with the signal light wave generated by the second SSB modulating part.
    • 提供了一种光调制器,其包括:将输入光波分成两个光波的光分裂部分; 分别传播输入光波被分裂成的两个光波的两个光波导; 设置在两个光波导中的一个中的第一SSB调制部分,以载波频率调制传播到第一SSB调制部分的光波,使得光波被转换为具有单侧的不同光波 带; 设置在所述两个光波导中的另一个中的第二SSB调制部分,并且利用数据信号调制传播到所述第二SSB调制部分的光波,以产生具有不同单边带的信号光波; 以及光合成部,其将由第一SSB调制部调制的光波与由第二SSB调制部生成的信号光波组合。
    • 73. 发明授权
    • Method for changing frequency and base station in radio optical fusion communication system
    • 无线光融合通信系统中频率和基站的改变方法
    • US07697846B2
    • 2010-04-13
    • US10590518
    • 2005-02-21
    • Yozo ShojiHiroyo OgawaYoshihiro Hashimoto
    • Yozo ShojiHiroyo OgawaYoshihiro Hashimoto
    • H04B10/00H04B10/04
    • G02F1/2255G02F2/002H04B10/25758
    • In a radio optical fusion communication system with the integration of an optical fiber transmission path and a radio propagation path, wherein by first and second light sources, an intermediate-frequency signal generating means for generating a modulating signal at an intermediate frequency band, a modulator for modulating an optical signal from the first light source into an SSB modulated optical signal using the intermediate-frequency signal, and an optical mixer for mixing the modulated optical signal with the optical signal from the second light source to obtain an optical transmission signal in a base station, the frequency of either of the optical signals is controlled such that the difference in frequency between the optical signals is a desired frequency of a modulated radio signal, thus switching the frequency channel of the modulated radio signal in the radio propagation path.
    • 在具有光纤传输路径和无线电传播路径的集成的无线光学融合通信系统中,其中,通过第一和第二光源,产生用于产生中频带的调制信号的中频信号发生装置,调制器 用于使用中频信号将来自第一光源的光信号调制成SSB调制光信号;以及光混合器,用于将调制光信号与来自第二光源的光信号混合,以获得光传输信号 控制光信号的频率,使得光信号之间的频率差是调制无线信号的期望频率,从而在无线传播路径中切换调制无线信号的频道。
    • 75. 发明申请
    • Soil microorganism-housing biosensors and their uses
    • 土壤微生物生物传感器及其用途
    • US20070148725A1
    • 2007-06-28
    • US10579670
    • 2004-11-05
    • Yoshihiro HashimotoIsao Karube
    • Yoshihiro HashimotoIsao Karube
    • C12Q1/04
    • C12Q1/02
    • Microorganism sensors used in environment assessment technologies and the like, instead of being used to detect environmental components and determine their concentrations, were used as tools to evaluate the ability of target soil microorganisms to adapt to various field soil environments, and comparative studies were performed. As a result, the present inventors found that by using the microorganism sensors to examine the growth potential of general soil microorganisms and pathogenic microorganisms in ecosystems, the balance in the soil ecosystems could be monitored, and further, the risk of disease occurrence and the bio-controlling effect of general soil microorganisms could also be determined.
    • 用于环境评估技术等的微生物传感器,而不是用于检测环境成分并确定其浓度,被用作评估目标土壤微生物适应各种田间土壤环境的能力的工具,并进行了比较研究。 结果发现,通过使用微生物传感器检测生态系统中一般土壤微生物和致病微生物的生长潜力,可以监测土壤生态系统的平衡,进一步监测疾病发生的风险和生物 也可以确定一般土壤微生物的控制效应。
    • 76. 发明授权
    • Differential voltage measuring apparatus and semiconductor testing apparatus
    • 差分电压测量仪和半导体测试仪
    • US07138819B2
    • 2006-11-21
    • US10517349
    • 2003-06-12
    • Yoshihiro Hashimoto
    • Yoshihiro Hashimoto
    • G01R31/26
    • G01R31/3004G01R19/10
    • There is provided a semiconductor testing apparatus comprising a current measuring portion which converts a load current quantity at the time of application of a relatively high test voltage to a DUT to fall within a low-voltage range, and then subjects the low-voltage range to quantization conversion with a predetermined measurement resolution even when the relatively high test voltage is applied to the DUT. This is a differential voltage measuring apparatus comprising: an applied voltage source which applies a predetermined constant voltage to a load device; current/voltage converting means for directly inserting a predetermined resistance between an output end of the applied voltage source and the load device, and converts a quantity of a current flowing through the load device into a voltage; and current measuring means which switches and receives a common mode voltage and a detection voltage in time series, shifts the received voltages to predetermined low voltages, and outputs low-voltage measurement data obtained by receiving each of the shifted voltages and subjecting this voltage to quantization conversion.
    • 提供一种半导体测试装置,其包括电流测量部分,其将施加相对高的测试电压时的负载电流量转换为DUT以落入低电压范围内,然后使低电压范围 即使当相对高的测试电压被施加到DUT时,也具有预定的测量分辨率的量化转换。 这是一种差分电压测量装置,包括:向负载装置施加预定恒定电压的施加电压源; 电流/电压转换装置,用于在施加的电压源的输出端和负载装置之间直接插入预定电阻,并将流过负载装置的电流量转换为电压; 以及电流测量装置,其以时间序列转换和接收共模电压和检测电压,将接收的电压移动到预定的低电压,并输出通过接收每个移位电压而获得的低电压测量数据,并将该电压进行量化 转换。
    • 77. 发明申请
    • Power supply device, test apparatus, and power supply voltage stabilizing device
    • 电源装置,试验装置和电源稳压装置
    • US20060072273A1
    • 2006-04-06
    • US11284224
    • 2005-11-21
    • Yoshihiro Hashimoto
    • Yoshihiro Hashimoto
    • H02H3/08
    • G01R31/31721
    • A power supply device for supplying source current to an electronic device comprises: a current output unit for outputting output current including at least the source current as a component of the current thereof; a connection resistor which electrically connects the current output unit and the electronic device for supplying the source current to the electronic device; a low-pass filter for allowing the output voltage of the current output unit to pass through; a differential detection unit for detecting the electric potential difference between the output voltage of the low-pass filter and the electric potential at the device-side terminal of the connection resistor; and a parallel load unit which is connected to the output terminal of the current output unit in parallel with the connection resistor, and which has a function of consuming a partial current which is a part of the output current of the current output unit in a case that the electric potential difference detected by the differential detection unit is smaller than a predetermined value, and which has a function of stopping reception of the partial current in a case that the electric potential difference detected by the differential detection unit has become greater than a predetermined value.
    • 一种用于向电子设备提供源电流的电源装置包括:电流输出单元,用于输出至少包括源电流作为其电流的分量的输出电流; 连接电阻器,其将所述电流输出单元和所述电子设备电连接,用于向所述电子设备提供所述源电流; 用于允许电流输出单元的输出电压通过的低通滤波器; 差分检测单元,用于检测低通滤波器的输出电压与连接电阻器的器件侧端子之间的电位之间的电位差; 以及并联负载单元,其与连接电阻器并联连接到电流输出单元的输出端子,并且具有在一个情况下消耗作为当前输出单元的输出电流的一部分的部分电流的功能 由差分检测单元检测到的电位差小于预定值,并且在差分检测单元检测到的电位差已经变得大于预定值的情况下具有停止部分电流的接收的功能 值。
    • 79. 发明申请
    • Testing device and testing method
    • 检测装置及检测方法
    • US20050209801A1
    • 2005-09-22
    • US11131151
    • 2005-05-17
    • Yoshihiro Hashimoto
    • Yoshihiro Hashimoto
    • G01R31/26G01R19/00G01R31/319
    • G01R31/31924
    • A testing device that tests an electronic device includes a detection-voltage outputting unit operable to output a current detection voltage based on a power source current that the electronic device receives from a power source, a transmission line operable to transmit the current detection voltage, a detection amplifier operable to output an amplifier output voltage based on the current detection voltage received through the transmission line, a switching unit operable to select whether the current detection voltage is supplied to the detection amplifier, an integrator operable to output an integral value that is obtained by integrating values based on the amplifier output voltage, and a decision unit operable to decide whether the electronic device is good or bad based on the integral value.
    • 测试电子装置的测试装置包括:检测电压输出单元,用于基于电子设备从电源接收的电源电流输出电流检测电压;可传输电流检测电压的传输线; 检测放大器,用于基于通过传输线接收的电流检测电压输出放大器输出电压;切换单元,用于选择是否将电流检测电压提供给检测放大器;积分器,其可操作以输出获得的积分值 通过基于放大器输出电压积分值,以及判定单元,其可操作以基于积分值来确定电子设备是好还是坏。