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    • 11. 发明申请
    • OPTOELECTRONIC INTEGRATED CIRCUIT BOARD AND COMMUNICATIONS DEVICE USING THE SAME
    • 光电集成电路板和使用该光电集成电路的通信设备
    • US20090080830A1
    • 2009-03-26
    • US11719319
    • 2005-11-16
    • Yasunobu MatsuokaMasato Shishikura
    • Yasunobu MatsuokaMasato Shishikura
    • G02B6/42
    • G02B6/43G02B6/4214H05K1/0274
    • In the optical connection between multi-layered optical waveguides and photoelectric converting elements or optical waveguide array connectors formed on a substrate, the optical coupling efficiency is to be prevented from degrading due to deviation of the optical axis positions between optical elements and the optical waveguide layers that is caused by a radiation due to a beam expansion or by a deviation of positioning layers in producing the optical waveguides. There are stacked, on a substrate, optical waveguide layers, each of which comprises a clad layer and a core having a higher refractive index than the clad layer, and optical elements formed on the uppermost optical waveguide layer. The optical elements are positioned such that they correspond to the optical path conversion mirrors of the cores of the underlaying optical waveguide layer. The light transmission/reception between the optical elements and the optical path conversion mirrors of the cores of the underlaying optical waveguide layer is performed via the cores of overlying optical waveguide layer.
    • 在形成在基板上的多层光波导与光电转换元件或光波导阵列连接器之间的光学连接中,由于光学元件与光波导层之间的光轴位置偏离,防止光耦合效率降低 这是由于在产生光波导中的光束膨胀或定位层的偏差引起的辐射。 在基板上层叠光波导层,每个光波导层包括覆盖层和具有比包层更高的折射率的芯,以及形成在最上面的光波导层上的光学元件。 光学元件被定位成使得它们对应于底层光波导层的芯的光路转换镜。 光学元件与底层光波导层的芯的光路转换反射镜之间的光发射/接收通过上覆光波导层的芯进行。
    • 17. 发明授权
    • Optoelectronic integrated circuit device and communications equipment using same
    • 光电集成电路设备和通信设备使用相同
    • US07657136B2
    • 2010-02-02
    • US11658587
    • 2004-09-29
    • Yasunobu MatsuokaMasato Shishikura
    • Yasunobu MatsuokaMasato Shishikura
    • G02B6/12
    • G02B6/4214G02B6/42G02B6/421G02B6/4249G02B6/4292G02B6/43
    • A photoelectric integrated circuit device, in which photonic devices provided on the same substrate as the LSI are densely arranged along the four sides of the LSI, and characteristic degradation of the laser diode or photo detector due to heat generation can be prevented, furthermore optical wiring is easily performed on the board. A quadrilateral package substrate 11; an LSI package 13 mounted on the package substrate 11; photonic devices 12 mounted along two or more sides of the LSI package 13; first photonic devices electrically connected to I/O terminals disposed on one side of the LSI package 13; second photonic devices electrically connected to I/O terminals disposed on a different side of the LSI package 13; first optical waveguides for connecting between the optical signal I/O terminals of the first photonic devices and an external component or device; and second optical waveguides for connecting between the optical I/O terminals of the second photonic devices and an external component or device; wherein the first and second optical waveguides are terminated on the same side edge of the package substrate 11.
    • 可以防止其中设置在与LSI相同的基板上的光子器件沿着LSI的四侧密集布置的光电集成电路器件,并且可以防止由于发热而导致的激光二极管或光电检测器的特性劣化,此外,光布线 很容易在电路板上执行。 四边形封装基板11; 安装在封装基板11上的LSI封装13; 沿着LSI封装13的两侧或两侧安装的光子器件12; 电连接到设置在LSI封装13一侧的I / O端子的第一光子器件; 电连接到设置在LSI封装13的不同侧的I / O端子的第二光子器件; 用于连接第一光子器件的光信号I / O端子与外部元件或器件之间的第一光波导; 以及用于连接第二光子器件的光学I / O端子和外部部件或器件的第二光波导; 其中第一和第二光波导端接在封装基板11的同一侧边上。
    • 18. 发明申请
    • PLANAR OPTICAL WAVEGUIDE ARRAY MODULE AND METHOD OF FABRICATING THE SAME
    • 平面光波导阵列模块及其制造方法
    • US20090297095A1
    • 2009-12-03
    • US12470502
    • 2009-05-22
    • Yasunobu Matsuoka
    • Yasunobu Matsuoka
    • G02B6/12B29D11/00
    • B29D11/00663G02B6/4249
    • The optical element array and an optical waveguide array are optically connected on the substrate. The optical waveguide array includes optical waveguide channels which are the outermost optical waveguide channels on both sides of optical waveguide array channels and each of which is provided with a mirror structure for light redirection. With the optical element array driven by a bias applied thereto, the optical waveguide array is brought near the optical element array. The optical axes of the optical waveguide array channels and the optical element array are aligned while monitoring optical signals outputted from the outermost optical waveguide channels on both sides of the optical waveguide array channels via the mirror structures for light redirection. The optical waveguide array is fixed to the substrate in such a position that the optical signals have a desired output value.
    • 光学元件阵列和光波导阵列在基板上光学连接。 光波导阵列包括光波导通道,它们是光波导阵列通道两侧的最外面的光波导通道,并且每个波导通道设置有用于光重定向的反射镜结构。 通过由施加到其上的偏压驱动的光学元件阵列,使光波导阵列靠近光学元件阵列。 光波导阵列通道和光学元件阵列的光轴在通过用于光重定向的反射镜结构监视从光波导阵列通道两侧的最外侧光波导通道输出的光信号的同时被对准。 光波导阵列固定在基板上,使光信号具有期望的输出值。