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    • 2. 发明授权
    • Optical transmitter/receiver apparatus, method for fabricating the same and optical semiconductor module
    • 光发射机/接收机装置及其制造方法和光半导体模块
    • US06332719B1
    • 2001-12-25
    • US09129872
    • 1998-08-06
    • Tohru NishikawaTomoaki UnoGenji TohmonMasahiro Mitsuda
    • Tohru NishikawaTomoaki UnoGenji TohmonMasahiro Mitsuda
    • G02B636
    • G02B6/4246G02B6/4224
    • The optical transmitter/receiver apparatus of the invention includes: an optical fiber for transmitting/receiving an optical signal therethrough; and a first base including mutually spaced optical signal transmitting and receiving regions and a fiber end supporting region located between the optical signal transmitting and receiving regions. A semiconductor laser device for emitting the optical signal to be transmitted is secured to the optical signal transmitting region of the first base. A fiber end supporting portion for supporting one end of the optical fiber, to which the optical signal emitted from the semiconductor laser device is incident, is formed in the fiber end supporting region of the first base. A second base for supporting the body of the optical fiber is secured to the optical signal receiving region of the first base. A reflective filter for transmitting the optical signal to be transmitted, emitted from the semiconductor laser device, and for reflecting the optical signal to be received, incident through the other end of the optical fiber, is supported by being inserted into the second base and the body of the optical fiber. A light-receiving device for receiving the optical signal to be received, reflected by the reflective filter, is secured to the second base.
    • 本发明的光发射机/接收机装置包括:用于发送/接收光信号的光纤; 以及包括相互间隔开的光信号发送和接收区域的第一基座和位于光信号发射和接收区域之间的光纤端支撑区域。 用于发射要发射的光信号的半导体激光装置被固定到第一基座的光信号传输区域。 在第一基座的光纤端部支撑区域中形成用于支撑从半导体激光装置发射的光信号入射的光纤的一端的光纤端部支撑部。 用于支撑光纤主体的第二基座被固定到第一基座的光信号接收区域。 用于透射从半导体激光装置发射的待发射的光信号和用于反射通过光纤的另一端入射的待接收的光信号的反射滤波器被插入到第二基座中,并且 光纤本体。 用于接收由反射滤光器反射的待接收的光信号的光接收装置被固定到第二基座。
    • 7. 发明授权
    • Intermediate isolator type fiber amplifier and fiber transmission system
    • 中间隔离器型光纤放大器和光纤传输系统
    • US5914808A
    • 1999-06-22
    • US701987
    • 1996-08-23
    • Masahiro MitsudaJun OhyaTomoaki Uno
    • Masahiro MitsudaJun OhyaTomoaki Uno
    • G02F1/35H01S3/06H01S3/067H01S3/10H01S3/00
    • H01S3/06758
    • The fiber amplifier of this invention includes: a first rare earth element doped fiber; a second rare earth element doped fiber; and a pump light source for generating pump light for exciting the first rare earth element doped fiber and the second rare earth element doped fiber, the fiber amplifier receiving analog signal light and amplifying the analog signal light, wherein the fiber amplifier further includes a directional transmitter disposed between the first rare earth element doped fiber and the second rare earth element doped fiber, and a transmittance of the directional transmitter for at least light having the same wavelength as the signal light propagating from the first rare earth element doped fiber to the second rare earth element doped fiber is larger than a transmittance of the directional transmitter for the light propagating from the second rare earth element doped fiber to the first rare earth element doped fiber.
    • 本发明的光纤放大器包括:第一稀土元素掺杂光纤; 第二稀土元素掺杂光纤; 以及泵浦光源,用于产生用于激发第一稀土元素掺杂光纤和第二稀土元素掺杂光纤的泵浦光,所述光纤放大器接收模拟信号光并放大模拟信号光,其中光纤放大器还包括定向发射器 设置在第一稀土元素掺杂光纤和第二稀土元素掺杂光纤之间,并且定向发射器的透射率至少为与从第一稀土元素掺杂光纤传播到第二稀土元素掺杂光纤的信号光具有相同波长的光 对于从第二稀土元素掺杂光纤向第一稀土元素掺杂光纤传播的光,定向发送器的透射率大于地球元素掺杂光纤。
    • 10. 发明授权
    • Bidirectional optical semiconductor apparatus
    • 双向光半导体装置
    • US06264377B1
    • 2001-07-24
    • US09261960
    • 1999-03-03
    • Masahiro MitsudaTohru NishikawaTomoaki Uno
    • Masahiro MitsudaTohru NishikawaTomoaki Uno
    • G02B636
    • G02B6/4246
    • EA bidirectional optical semiconductor apparatus of the present invention includes: a substrate embedding an optical waveguide, through which output light and input light are propagated; a semiconductor light-emitting device for emitting the output light toward one end of the optical waveguide; an optical branching filter, provided in the optical waveguide, for transmitting at least part of the output light and guiding at least part of the input light to the outside of the optical waveguide; a semiconductor light-receiving device, provided over the substrate, for receiving the input light guided by the optical branching filter to the outside of the optical waveguide; and a light-blocking member, formed on the surface of the semiconductor light-receiving device, for blocking the light emitted from the semiconductor light-emitting device.
    • 本发明的EA双向光学半导体装置包括:嵌入光波导的基板,输出光和输入光通过该光波导传播; 用于向所述光波导的一端发射所述输出光的半导体发光装置; 设置在光波导中的光分路滤波器,用于传输至少部分输出光并将至少部分输入光引导到光波导的外部; 半导体光接收装置,设置在所述基板上,用于将由所述光分路滤波器引导的输入光接收到所述光波导的外部; 以及形成在半导体光接收装置的表面上的用于阻挡从半导体发光器件发射的光的遮光部件。