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    • 71. 发明申请
    • System and Method for Optical Input/Output Arrays
    • 光输入/输出阵列的系统和方法
    • US20160062043A1
    • 2016-03-03
    • US14475145
    • 2014-09-02
    • Huawei Technologies Co., Ltd.
    • Dritan Celo
    • G02B6/34
    • G02B6/34G02B6/124G02B6/30H04B10/40H04B10/801H04L45/00H04L45/62
    • System and method embodiments are provided for high density on-chip optical input/output (I/O) arrays with partition waveguide routing topology. System and apparatus embodiments for on-chip optical I/O arrays provide for doubling the density of optical I/O arrays in a given footprint on a photonic integrated circuit (PIC) chip. System and apparatus embodiments for on-chip optical I/O arrays also provide waveguide routing topology to provide signal feedback to facility automated active alignment and coupling of optical fiber arrays in to surface grating coupler elements without use of waveguide crossings and without intersecting with waveguides connecting devices to I/O ports. In an embodiment, a PIC chip includes a plurality of first optical I/O elements and a plurality of second optical I/O elements, wherein a row of I/O elements comprises alternating ones of the first optical I/O elements and the second optical I/O elements.
    • 为具有分区波导路由拓扑的高密度片上光输入/输出(I / O)阵列提供了系统和方法实施例。 用于片上光学I / O阵列的系统和设备实施例提供了在光子集成电路(PIC)芯片上的给定占用空间中将光学I / O阵列的密度加倍。 用于片上光学I / O阵列的系统和装置实施例还提供波导路由拓扑以提供信号反馈以将光纤阵列自动主动对准和耦合到表面光栅耦合器元件中,而不使用波导交叉并且不与波导连接相交 设备到I / O端口。 在一个实施例中,PIC芯片包括多个第一光学I / O元件和多个第二光学I / O元件,其中一行I / O元件包括交替的第一光学I / O元件和第二光学I / 光学I / O元件。
    • 74. 发明授权
    • Optical connector and stack module including the same
    • 光连接器和堆叠模块包括它们
    • US09246591B2
    • 2016-01-26
    • US13828165
    • 2013-03-14
    • Samsung Electronics Co., Ltd.
    • Bo-Seong KimChang-Hoon Han
    • H04B10/00H04B10/40H04B10/80
    • H04B10/40H04B10/801
    • An optical connector for directly transferring data is disclosed. The optical connector includes a first input device connected to a first data source and to which a first input signal is applied, a first light emitting device connected to the first input device and generating a first optical signal corresponding to the first input signal, a first light receiving device positioned close to the first light emitting device in such a configuration that the first optical signal directly reaches the first light receiving device from the first light emitting device, the first light receiving device generating a first output signal corresponding to the first optical signal, and a first output device connected to the first light receiving device and to a second data source to which the first output signal is transferred. Large-sized data may be transferred at high speed and high reliability without light transfer units.
    • 公开了一种用于直接传送数据的光连接器。 光连接器包括连接到第一数据源并且被施加第一输入信号的第一输入装置,连接到第一输入装置并产生对应于第一输入信号的第一光信号的第一发光装置,第一 光接收装置以第一光信号从第一发光装置直接到达第一光接收装置的方式配置在靠近第一发光装置的位置,第一光接收装置产生对应于第一光信号的第一输出信号 以及连接到第一光接收装置和传送第一输出信号的第二数据源的第一输出装置。 大尺寸数据可以高速和高可靠性传输,无需光传输单元。
    • 78. 发明申请
    • OPTICAL MODULE AND TRANSMITTING DEVICE
    • 光模块和传输设备
    • US20150277071A1
    • 2015-10-01
    • US14441650
    • 2013-03-15
    • HITACHI, LTD.
    • Yasunobu MatsuokaYoungkun Lee
    • G02B6/42H04B10/80H04B10/50
    • G02B6/4292G02B6/3897G02B6/4214G02B6/4249G02B6/428G02B6/43H04B10/501H04B10/801
    • A parallel optical module includes a light-emitting or light-receiving element array 101 placed on a substrate 100, an optical connector 103 optically connecting the optical element array 101 and an external optical fiber array 105, the optical connector 103 having a shape of at least an octahedron which is bilaterally symmetrical about the center of the outer shape thereof viewed along the optical axis direction, and an engaging member 104 placed on the same substrate 100 as the substrate on which the optical element array 101 is mounted, the engaging member having a groove onto which the optical connector 103 is fitted. A side wall of the groove of the engaging member 104 has an inclination corresponding to, among each surface of the optical connector 103, a second surface 110 adjacent to a first surface 109 facing the optical element array 101 in the direction perpendicular to the substrate.
    • 平行光学模块包括放置在基板100上的发光或光接收元件阵列101,光学连接器103光学连接光学元件阵列101和外部光纤阵列105,光学连接器103的形状为 至少一个八边形,其沿着光轴方向观察其外形的中心是双边对称的;以及接合构件104,放置在与安装有光学元件阵列101的基板相同的基板100上,接合构件具有 光连接器103安装在其上的凹槽。 接合构件104的槽的侧壁在光连接器103的每个表面中具有与垂直于基板的方向相对的第一表面109相对于面向光学元件阵列101的第一表面109的倾斜。
    • 80. 发明授权
    • Method and apparatus for a wireless optical link
    • 无线光链路的方法和装置
    • US09048959B2
    • 2015-06-02
    • US13624435
    • 2012-09-21
    • Nokia Corporation
    • Martti VoutilainenRiku Suomela
    • H04B10/00H04B10/04H04B10/06H04B10/80H04M1/00H04B5/00H04B10/114H04M1/725
    • H04B10/801H04B5/0037H04B10/1143H04B10/806H04M1/003H04M1/72527H04M2250/04
    • Example method, apparatus, and system embodiments are disclosed to provide a high data throughput optical communication link. An example embodiment comprises: a high frequency optical receiver configured to receive signals modulated with high frequency data; an optical waveguide having a receiving portion and a transmitting portion juxtaposed with the receiver, configured to transfer signals incident on the receiving portion, to the transmitting portion, and to transmit the signals to the receiver; a guide portion configured to releasably engage another apparatus, for positioning the waveguide with respect to the other apparatus, to receive at the receiving portion of the waveguide, signals from the other apparatus, for delivery to the receiver; and a wireless power circuit configured to exchange wireless power with the other apparatus, to convert between electrical signals modulated with high frequency data and the optical signals modulated with high frequency data received by the waveguide.
    • 公开了示例性方法,装置和系统实施例以提供高数据吞吐量光通信链路。 一个示例实施例包括:高频光接收机,被配置为接收用高频数据调制的信号; 具有接收部分和与接收器并置的发送部分的光波导,被配置为将入射在接收部分上的信号传送到发送部分,并将信号发送到接收机; 引导部分,其构造成可释放地接合另一装置,用于相对于另一装置定位波导,以在波导的接收部分处接收来自另一装置的信号,以便传送到接收机; 以及无线电力电路,被配置为与其他装置交换无线电力,以在由高频数据调制的电信号和由波导接收的高频数据调制的光信号之间进行转换。