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    • 3. 发明申请
    • BIOLOGICAL INFORMATION MEASUREMENT APPARATUS
    • 生物信息测量装置
    • US20110190641A1
    • 2011-08-04
    • US13061079
    • 2008-08-28
    • Kiyoshi TateishiYoshinori Kimura
    • Kiyoshi TateishiYoshinori Kimura
    • A61B6/00
    • A61B5/0261A61B2560/0242A61B2560/0276
    • Disclosed herein is a biological information measurement apparatus for rendering laser light incident on an examinee and measuring a state of internal tissue of the examinee based on light scattered within the examinee. The biological information measurement apparatus includes a laser light source for emitting the laser light, photoelectric conversion means for receiving the scattered light and generating a measurement signal based on the scattered light, signal amplification means for generating an amplified signal by amplifying a signal level of the measurement signal, signal supply means for intermittently supplying the measurement signal to the signal amplification means, first output means for intermittently holding the amplified signal corresponding to a period in which the measurement signal is supplied to the signal amplification means and outputting the held signal as a first signal, second output means for intermittently holding the amplified signal corresponding to a period in which the measurement signal is not supplied to the signal amplification means and outputting the held signal as a second signal, signal subtraction means for generating a subtraction signal based on a difference between the first signal and the second signal, and arithmetic output means for arithmetically outputting information about the internal tissue of the examinee based on the subtraction signal.
    • 这里公开了一种生物信息测量装置,用于使入射到受检者上的激光,并且基于受检者内的光散射来测量受检者的内部组织的状态。 生物信息测量装置包括用于发射激光的激光源,用于接收散射光并基于散射光产生测量信号的光电转换装置,用于通过放大放大信号的信号电平来产生放大信号的信号放大装置 测量信号,用于将测量信号间歇地提供给信号放大装置的信号提供装置,用于将对应于测量信号的周期的放大信号间歇地保持到信号放大装置的第一输出装置,并将所保持的信号作为 第一信号,第二输出装置,用于将对应于测量信号未被提供给信号放大装置的周期的放大信号间歇地保持,并将所保持的信号作为第二信号输出;信号相减装置,用于产生基于 差异 使用第一信号和第二信号,以及算术输出装置,用于基于减法信号算术输出关于受检者的内部组织的信息。
    • 4. 发明申请
    • LIGHT-EMITTING SENSOR DEVICE AND METHOD FOR MANUFACTURING THE SAME
    • 发光传感器装置及其制造方法
    • US20110260176A1
    • 2011-10-27
    • US12991964
    • 2008-05-12
    • Atsushi OnoeYoshinori Kimura
    • Atsushi OnoeYoshinori Kimura
    • H01L33/00
    • A61B5/0261A61B5/6826A61B5/6838A61B2562/0233A61B2562/028A61B2562/046A61B2562/12
    • A light-emitting sensor device is provided with: a substrate (110); an irradiating part (120), disposed on the substrate, for applying light to a specimen; a light receiving part (150), disposed on the substrate, for detecting light from the specimen caused by the applied light; a front plate (190) disposed to face the substrate, on a front surface side of the substrate in which the irradiating part is disposed; and an adhesive part (180) which is formed to surround each of the irradiating part and the light receiving part viewed in a two-dimensional manner on the substrate, which includes a light shielding adhesive, and which bonds the substrate and the front plate to each other. By this, the light-emitting sensor device is suitable for mass production, and it is possible to detect a predetermined type of information, such as a blood flow velocity, on a specimen, highly accurately.
    • 发光传感器装置具有:基板(110); 照射部(120),设置在所述基板上,用于向样本施加光; 设置在所述基板上的用于检测由所施加的光引起的来自所述样本的光的光接收部分(150); 在所述基板的配置有所述照射部的前表面侧配置有与所述基板对置配置的前板(190) 以及粘合部(180),其形成为包围在包含遮光性粘合剂的基板上以二维方式观察的照射部和受光部的每一个,并且将基板和前板接合到 彼此。 由此,发光传感器装置适合于批量生产,可以高精度地检测样品上的预定类型的诸如血流速度的信息。
    • 7. 发明授权
    • Controller apparatus for synchronous motor and controlling method thereof
    • 同步电机控制装置及其控制方法
    • US07129672B2
    • 2006-10-31
    • US11226280
    • 2005-09-15
    • Yoshinori KimuraNobuo Arakawa
    • Yoshinori KimuraNobuo Arakawa
    • H02P1/46
    • H02P3/24H02K16/02H02K21/14
    • For providing a controller apparatus for a synchronous motor and a controlling method thereof, enabling to be manufactured, easily and cheaply, and to obtain a lock mechanism, but without necessity of mechanisms, such as, an electromotive lock mechanism, wherein the controller apparatus for the synchronous motor, which has a stator 20 wound with AC windings 21U, 21V and 21W, and a rotor 30 installed within an inside of the stator, rotatably, therein, comprises an inverter 200 for supplying AC voltages having a predetermined voltage/frequency characteristic to the AC windings, which are wound around poles of the stator of the synchronous motor; and further, the inverter is so controlled that the AC voltages, being supplied from the inverter to the AC windings wound around the poles of the stator is changed into DC voltages to be supplied thereto, when rotation of said rotor is zero (0) and also when a lock function signal is ON in condition thereof, thereby obtaining a lock condition of holding a rotating position of the rotor to the stator.
    • 为了提供同步电动机的控制装置及其控制方法,能够制造,容易且廉价地获得锁定机构,而不需要诸如电动锁定机构的机构,其中, 具有缠绕有交流绕组21U,21V和21W的定子20的同步电动机和安装在定子内部的可转动的转子30包括逆变器200,用于提供具有预定电压的AC电压 交流绕组的频率特性,其缠绕在同步电动机的定子的极点上; 此外,逆变器被控制成使得当所述转子的旋转为零(0)时,从逆变器提供给绕在定子的极上的交流绕组的交流电压变为供给到其的直流电压,并且 当锁定功能信号为ON时,也可以获得将转子的转动位置保持在定子上的锁定状态。
    • 8. 发明授权
    • Method for manufacturing a multi-wavelength integrated semiconductor laser
    • 多波长集成半导体激光器的制造方法
    • US08236588B2
    • 2012-08-07
    • US12158648
    • 2006-12-14
    • Mamoru MiyachiYoshinori Kimura
    • Mamoru MiyachiYoshinori Kimura
    • H01S3/063
    • H01S5/4043H01S5/0216H01S5/0224H01S5/02272H01S5/024H01S5/22H01S5/405H01S5/4087Y10S438/977
    • An object is to provide a multi-wavelength integrated semiconductor laser device which can reduce variations in emission point distance, can be formed by simplified manufacturing processes, and can provide improve electric characteristics.A first semiconductor laser element 100 having an active layer AL1 for emitting a laser beam of a first wavelength from its light-emitting point X1 and a second semiconductor laser element 200 having an active layer AL2 for emitting a laser beam of a second wavelength from its light-emitting point X2 are bonded to each other via an adhesive layer MC made of metal. At least either one of the semiconductor laser elements has a ridge waveguide made of an n-type semiconductor. The semiconductor laser elements 100 and 200 are bonded via the metal adhesive layer MC at the sides of their respective p-type semiconductors. A submount SUB is bonded to the first semiconductor laser element 100 via metal at a side where its ridge waveguide is formed.
    • 本发明的目的是提供一种可以减少发射点距离的变化的多波长集成半导体激光器件,可以通过简化的制造工艺形成,并且可以提供改善的电气特性。 具有从其发光点X1发射第一波长的激光束的有源层AL1的第一半导体激光元件100和具有从其发光点X1发射第二波长的激光束的有源层AL2的第二半导体激光元件200 发光点X2通过由金属制成的粘合剂层MC彼此结合。 半导体激光元件中的至少一个具有由n型半导体构成的脊状波导。 半导体激光元件100和200通过金属粘合剂层MC在它们各自的p型半导体的侧面接合。 底座SUB通过金属在其脊形波导形成的一侧与第一半导体激光元件100接合。
    • 10. 发明授权
    • Self-luminous sensor device
    • 自发光传感器装置
    • US08591426B2
    • 2013-11-26
    • US12991965
    • 2008-05-12
    • Atsushi OnoeYoshinori Kimura
    • Atsushi OnoeYoshinori Kimura
    • A61B5/02A61B5/00
    • A61B5/0261A61B5/02028A61B5/6826A61B5/6838A61B5/7207
    • A light-emitting sensor device is provided with a substrate (110); an irradiating part (120), disposed on the substrate, for applying light to a specimen; a light receiving part (150), disposed on the substrate, for detecting light from the specimen caused by the applied light; a light scattering part, disposed at least one of between the irradiating part and the specimen and between the specimen and the light receiving part, for scattering at least one of light emitted from the irradiating part and the light from the specimen. The sensor device stably detects a predetermined type of information, such as a blood flow velocity, on the specimen.
    • 发光传感器装置设置有基板(110); 照射部(120),设置在所述基板上,用于向样本施加光; 设置在所述基板上的用于检测由所施加的光引起的来自所述样本的光的光接收部分(150); 配置在所述照射部与所述检体之间以及所述检体与所述受光部之间的至少其中之一的光散射部,用于散射从所述照射部发射的光和来自所述检体的光中的至少一种。 传感器装置稳定地检测对样本的预定类型的诸如血流速度的信息。