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    • 1. 发明申请
    • Optical Module
    • 光模块
    • US20080285914A1
    • 2008-11-20
    • US12120467
    • 2008-05-14
    • Yasunobu MatsuokaMakoto TakahashiKazuhiko Hosomi
    • Yasunobu MatsuokaMakoto TakahashiKazuhiko Hosomi
    • G02B6/26
    • G02B6/4246G02B6/12007G02B6/29361G02B6/29365H01L2224/48091H01L2924/00014
    • An optical module includes an optical element mount substrate having a laser diode and a photo detector mounted thereon on a straight line in a horizontal direction of the surface of the substrate, a first optical function integrate substrates, provided in its one surface with surfaces tilted at an angle to the parallel surface of the substrate for refracting light propagated in a substrate thickness direction, the two tilted surfaces being arranged to face each other. The photo detector and the first and second optical function integrate substrates are laminated in the substrate thickness direction, a first optical wavelength filter and a reflecting film having different wavelength transmissivities to the propagation light are provided in an optical path between the first and second tilted surfaces.
    • 光学模块包括具有激光二极管的光学元件安装基板和安装在基板表面的水平方向上的直线上的光电检测器,第一光学功能将基板设置在其一个表面上, 与基板的平行表面成一角度,用于折射在基板厚度方向上传播的光,所述两个倾斜表面被布置为彼此面对。 光检测器和第一和第二光学功能集成基板在基板厚度方向上层叠,在第一和第二倾斜表面之间的光路中设置有与传播光不同的透射率的第一光学波长滤波器和反射膜 。
    • 3. 发明授权
    • Optical module
    • 光模块
    • US07616845B2
    • 2009-11-10
    • US12120467
    • 2008-05-14
    • Yasunobu MatsuokaMakoto TakahashiKazuhiko Hosomi
    • Yasunobu MatsuokaMakoto TakahashiKazuhiko Hosomi
    • G02B6/12G02B6/32
    • G02B6/4246G02B6/12007G02B6/29361G02B6/29365H01L2224/48091H01L2924/00014
    • An optical module includes an optical element mount substrate having a laser diode and a photo detector mounted thereon on a straight line in a horizontal direction of the surface of the substrate, a first optical function integrate substrates, provided in its one surface with surfaces tilted at an angle to the parallel surface of the substrate for refracting light propagated in a substrate thickness direction, the two tilted surfaces being arranged to face each other. The photo detector and the first and second optical function integrate substrates are laminated in the substrate thickness direction, a first optical wavelength filter and a reflecting film having different wavelength transmissivities to the propagation light are provided in an optical path between the first and second tilted surfaces.
    • 光学模块包括具有激光二极管的光学元件安装基板和安装在基板表面的水平方向上的直线上的光电检测器,第一光学功能将基板设置在其一个表面上, 与基板的平行表面成一角度,用于折射在基板厚度方向上传播的光,所述两个倾斜表面被布置为彼此面对。 光检测器和第一和第二光学功能集成基板在基板厚度方向上层叠,在第一和第二倾斜表面之间的光路中设置有与传播光不同的透射率的第一光学波长滤波器和反射膜 。
    • 6. 发明申请
    • Optical Multiplexer/Demultiplexer
    • 光复用器/解复用器
    • US20080285974A1
    • 2008-11-20
    • US12120680
    • 2008-05-15
    • Makoto TakahashiYasunobu MatsuokaMasahiro Aoki
    • Makoto TakahashiYasunobu MatsuokaMasahiro Aoki
    • H04J14/02
    • G02B6/29365G02B6/29367G02B6/2938G02B6/42G02B6/4246
    • An optical multiplexer/demultiplexer comprising a member, of which first and second opposite planar surfaces are parallel to each other. The member includes therein a void, of which third and fourth opposite planar surfaces are in parallel to each other. An extension of a first line lying on the first planar surface and an extension of a third line lying on the third planar surface intersect each other in a cross section including the void of the member, a smaller one of intersection angles thereof being φ1. An extension of a second line lying on the second planar surface and an extension of a fourth line lying on the fourth planar surface intersect each other, a smaller one of intersection angles thereof being φ1. The third planar surface is provided on a part thereof with at least one high reflection coating film. The fourth planar surface is provided on a part thereof with at least one optical wavelength filter. At least parts of the high reflection coating film and the first optical wavelength filter are opposed to each other. The first optical wavelength filter transmits therethrough light of wavelength λ1 and reflects light of wavelength λ2 (here, wavelength λ1≠wavelength λ2). The member and an interior of the void are different in value of refractive index from each other.
    • 一种光信号多路复用器/解复用器,包括一第一和第二相对平面彼此平行的部件。 该构件包括其中第三和第四相对平面彼此平行的空隙。 位于第一平坦表面上的第一线的延伸部和位于第三平坦表面上的第三线的延伸线在包括构件的空隙的横截面中彼此相交,较小的一个相交角为φ1。 位于第二平坦表面上的第二线的延伸部和位于第四平坦表面上的第四线的延伸部彼此相交,较小的一个相交角为φ1。第三平面设置在其一部分上 与至少一个高反射涂膜。 第四平面在其一部分上设置有至少一个光波长滤波器。 高反射涂膜和第一光波长滤光片的至少一部分彼此相对。 第一光学波长滤波器透过波长为λ1的光并且反射波长λ2的光(这里,波长λ1 <>波长λ2)。 空隙的构件和内部的折射率值彼此不同。
    • 9. 发明申请
    • OPTICAL WAVEGUIDE SUBSTRATE AND SUBSTRATE MOUNTING PHOTOELECTRIC HYBRID CIRCUIT
    • 光波导基板和基板安装光电混合电路
    • US20100166363A1
    • 2010-07-01
    • US12438065
    • 2007-02-22
    • Yasunobu MatsuokaMasato Shishikura
    • Yasunobu MatsuokaMasato Shishikura
    • G02B6/12
    • G02B6/4214G02B6/12002G02B6/43
    • There are provided a substrate mounted with a photoelectric hybrid circuit having an optical path conversion mirror structure and optical waveguide wiring by reducing the number of parts and the number of fabrication steps, as well as most effectively implement high-density wiring for an optical connection between the optical waveguide and the photoelectric conversion element or optical waveguide array connector that are formed on the substrate, and a device. An optical waveguide layer 12 stacked on a substrate 10 and formed of a wiring core surrounded by a clad layer 11, and cores 15, 16 having tapered surfaces intersecting the respective wiring cores 13, 14 of the optical waveguide layer 12 perpendicularly are arranged, the tapered surfaces 15a, 16a of the cores 15, 16 having tapered surfaces are buried respectively in the wiring portion cores intersecting perpendicularly, and a first core 13 for turning the optical path of light propagating through the wiring portion core at the first core 15 with a tapered surface, and a second core 14 for turning the optical path of light passed through the first core 15 with a tapered surface at the second core 16 with a tapered surface are arranged alternately.
    • 提供了一种通过减少部件数量和制造步骤数量来安装具有光路转换镜结构和光波导布线的光电混合电路的基板,以及最有效地实现用于光连接的高密度布线 形成在基板上的光波导和光电转换元件或光波导阵列连接器以及装置。 垂直地布置有层叠在基板10上并且由包覆层11包围的布线芯构成的光波导层12和与光波导层12的各布线芯13,14交叉的锥形面的芯15,16。 具有锥形表面的芯子15,16的锥形表面15a,16a分别埋在与垂直相交的布线部分芯部中,第一芯子13用于转动在第一芯子15处通过布线部分芯部传播的光的光路, 并且用于在第二芯体16处以锥形表面转动通过第一芯15的光的光路的第二芯14交替布置。
    • 10. 发明授权
    • Optoelectronic integrated circuit board and communications device using the same
    • 光电集成电路板和通信设备使用相同
    • US07680367B2
    • 2010-03-16
    • 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。