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    • 1. 发明授权
    • Optical transmission module with light element temperature control
    • 光传输模块具有灯光温度控制
    • US06868235B2
    • 2005-03-15
    • US09946966
    • 2001-09-04
    • Shigeru TokitaTadashi HatanoFumihide MaedaYoichi HonzawaKatsumi Saito
    • Shigeru TokitaTadashi HatanoFumihide MaedaYoichi HonzawaKatsumi Saito
    • H01S5/024H04B10/04H04B10/06H04B10/08
    • H01S5/02415H01S5/06804
    • An optical transmitter receiver module and an apparatus incorporating the same module are provided, which realizes the reduction of power consumption and the enlargement of the operating temperature range. As an example, an optical transmitter module is provided which comprises a light emitting element to generate a light signal, a signal processing circuit to transmit an electrical signal to the light emitting element and a voltage regulating circuit to lower a power voltage so as to supply the signal processing circuit with a constant voltage, wherein the module is further provided with a current regulating circuit to shunt a part of a current to be supplied into the voltage regulating circuit from a power source so as to generate a control current and a temperature controller to receive the control current so as to control a temperature of the light emitting element, wherein the module is further provided with a temperature detector to detect the temperature of the light emitting element and a temperature controlling circuit to control the control current according to an electrical signal output by the temperature detector.
    • 提供了一种光发射机接收机模块和结合相同模块的装置,实现了功耗的降低和工作温度范围的扩大。 作为示例,提供了一种光发射器模块,其包括用于产生光信号的发光元件,将信号发送到发光元件的信号处理电路和用于降低电源电压的电压调节电路,以便供应 所述信号处理电路具有恒定电压,其中所述模块还设置有电流调节电路,以从电源分流要供给到所述电压调节电路的电流的一部分,以便产生控制电流和温度控制器 以接收控制电流以控制发光元件的温度,其中模块还设置有温度检测器以检测发光元件的温度和温度控制电路,以根据电气来控制控制电流 信号由温度检测器输出。
    • 2. 发明申请
    • Transurethral diagnostic method and treatment method using ultrasonic endoscope
    • 经尿道诊断方法及治疗方法采用超声内窥镜
    • US20070038089A1
    • 2007-02-15
    • US11477671
    • 2006-06-29
    • Tadashi HatanoShoji KogaKoji Shimomura
    • Tadashi HatanoShoji KogaKoji Shimomura
    • A61B8/00
    • A61B8/12A61B1/307A61B8/0833A61B8/0841A61B8/445
    • An ultrasonic endoscope has an ultrasonic probe, an observation optical system and a channel for inserting a medical instrument. A transurethral diagnostic method using the ultrasonic endoscope comprising step of inserting an insertion portion of the ultrasonic endoscope toward a target diagnostic portion through a urethral, step of starting transmission of an ultrasonic wave from the ultrasonic probe which has reached the vicinity of the target diagnostic portion and displaying at least a B-mode image of the target diagnostic portion on a screen, step of identifying a puncture position from the B-mode image displayed on the screen, and step of puncturing the puncture position identified on the screen with a medical instrument through the channel for inserting the medical instrument.
    • 超声波内窥镜具有超声波探头,观察光学系统和用于插入医疗器械的通道。 一种使用超声波内窥镜的经尿道诊断方法,其特征在于,包括以下步骤:通过尿道将超声波内窥镜的插入部插入到目标诊断部,从超声波探头开始向目标诊断部附近开始发送超声波的步骤 以及在屏幕上显示所述目标诊断部分的至少B模式图像;从显示在所述屏幕上的B模式图像识别穿刺位置的步骤,以及用医疗仪器对所述屏幕上识别的穿刺位置进行穿刺的步骤 通过插入医疗器械的通道。
    • 4. 发明授权
    • Optical transmission module
    • 光传输模块
    • US07035302B2
    • 2006-04-25
    • US10384509
    • 2003-03-06
    • Tomokazu TanakaCleitus AntonyHiroo MatsueHideki MurakawaTadashi Hatano
    • Tomokazu TanakaCleitus AntonyHiroo MatsueHideki MurakawaTadashi Hatano
    • H01S3/00
    • H01S5/042H01S5/0427
    • The present invention provides an optical transmission module having a laser diode that generates laser beams and a differential type current switch provided with a first switch and a second switch in order to supply a modulating current to the laser diode. A terminal of the laser diode and the first switch are connected in series through a first transmission line and a first capacitor, the other terminal of the laser diode and the second switch are connected in series through a second transmission line and a second capacitor. The current driven by the second switch is terminated by a resistor connected to the first switch and the current driven by the first switch is terminated by a resistor connected to the second switch. Thus, the laser diode is modulated bidirectionally.
    • 本发明提供了一种具有产生激光束的激光二极管和设置有第一开关和第二开关的差分型电流开关以便向激光二极管提供调制电流的光传输模块。 激光二极管和第一开关的端子通过第一传输线和第一电容器串联连接,激光二极管的另一端和第二开关通过第二传输线和第二电容器串联连接。 由第二开关驱动的电流被连接到第一开关的电阻器终止,并且由第一开关驱动的电流由连接到第二开关的电阻端接。 因此,激光二极管被双向调制。
    • 5. 发明申请
    • Receptacle type optical apparatus
    • 插座式光学装置
    • US20080008429A1
    • 2008-01-10
    • US11699563
    • 2007-01-30
    • Futoshi EndouTadashi HatanoSatoshi MotohiroHiroyoshi Ishii
    • Futoshi EndouTadashi HatanoSatoshi MotohiroHiroyoshi Ishii
    • G02B6/36
    • G02B6/421G02B6/3821G02B6/3893G02B6/4292
    • A receptacle type optical apparatus is provided that prevents occurrence of misalignment in coupling optical waveguides. The receptacle type optical apparatus includes an optical device module having a light-emitting device and a light-receiving device, and an enclosure that stores the optical device module, the receptacle type optical apparatus allowing a part of an optical connector to be inserted inside the enclosure and establishing connection with the optical connector. An inner spatial area is formed in the enclosure that allows the part of the optical connector and the optical device module to be swingable with respect to a predetermined position in the optical device module. Furthermore, a support member is provided to swingably support the part of the optical connector and the optical device module integrally at the predetermined position. Accordingly, the receptacle type optical apparatus allows the optical connector and the optical device module to swing integrally, thereby preventing occurrence of misalignment in coupling optical waveguides.
    • 提供一种插座型光学装置,其防止耦合光波导中的未对准的发生。 插座式光学装置包括具有发光装置和受光装置的光学装置模块,以及存储光学装置模块的外壳,容纳型光学装置将光连接器的一部分插入到 外壳并与光连接器建立连接。 在外壳中形成内部空间区域,其允许光学连接器的一部分和光学装置模块相对于光学装置模块中的预定位置摆动。 此外,提供支撑构件以将光学连接器的一部分和光学装置模块一体地支撑在预定位置。 因此,插座型光学装置允许光学连接器和光学器件模块一体地摆动,从而防止耦合光波导中的未对准的发生。