会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 3. 发明申请
    • COMPACT WIDE-ANGLE PIXELLATED ACTIVE OPTICAL LINK
    • 紧凑的宽角度有源光学链路
    • US20100135668A1
    • 2010-06-03
    • US12623298
    • 2009-11-20
    • Paul AmadeoAllen RipingillDavid RobinsonIrene Chen
    • Paul AmadeoAllen RipingillDavid RobinsonIrene Chen
    • H04B10/02H04B10/06
    • H04B10/1125
    • A system, method, and optical communication device are disclosed. The system can include a plurality of optically coupled nodes forming an optical communication network. Each node may include an array of pixel elements, each pixel element having an optical detector and an active optical source. The pixel array may be disposed in a backplane of a lens that is configured to map incoming optical signals to pixel locations in the backplane according to their respective angles of incidence and to minimize a deviation at each pixel location between incoming optical signals arriving at the optical detector and emissions from the optical source. The node may include a processor and memory. The processor can register senders in the optical network at locations in the pixel array and can generate routing information by which to route communications from the registered senders to other pixel elements for transmission to their respective destinations.
    • 公开了一种系统,方法和光通信设备。 该系统可以包括形成光通信网络的多个光耦合节点。 每个节点可以包括像素元件的阵列,每个像素元件具有光学检测器和有源光源。 像素阵列可以被布置在透镜的背板中,其被配置为根据入射光的入射角将入射光信号映射到背板中的像素位置,并且使到达光入射光信号处的每个像素位置处的偏差最小化 检测器和来自光源的发射。 节点可以包括处理器和存储器。 处理器可以在光学网络中在像素阵列中的位置处注册发送者,并且可以生成路由信息,通过该路由信息来将登记的发送者的通信路由到其他像素元素,以便传输到它们各自的目的地。
    • 5. 发明授权
    • Smartcard interconnect
    • 智能卡互连
    • US08348171B2
    • 2013-01-08
    • US13030993
    • 2011-02-18
    • Paul AmadeoJose FloresRobert Kraft
    • Paul AmadeoJose FloresRobert Kraft
    • G06K19/06
    • G06K19/07749G06K19/07752G06K19/07779G06K19/07781Y10T29/49162
    • A smart card inlay and method for assembling the same are provided. The method includes attaching a first trace to a substrate, attaching a second trace to the substrate, attaching an antenna wire to the substrate, coupling a first end of the antenna wire to a first area of the first trace, and coupling a second end of the antenna wire to a first area of the second trace. A second area of the first trace and a second area of the second trace are configured to be coupled to an integrated circuit (IC) or IC module, and the first area of the first trace is located away from the second area of the first trace and the first area of the second trace is located away from the second area of the second trace.
    • 提供了一种用于组装智能卡嵌体和方法。 该方法包括将第一迹线附接到衬底,将第二迹线附接到衬底,将天线连接到衬底,将天线线的第一端耦合到第一迹线的第一区域,以及将第 天线连接到第二迹线的第一区域。 第一迹线的第二区域和第二迹线的第二区域被配置为耦合到集成电路(IC)或IC模块,并且第一迹线的第一区域位于远离第一迹线的第二区域 并且第二迹线的第一区域位于远离第二迹线的第二区域的位置。
    • 6. 发明授权
    • Compact wide-angle pixellated active optical link
    • 紧凑型广角像素激活光学链路
    • US08837949B2
    • 2014-09-16
    • US12623298
    • 2009-11-20
    • Paul AmadeoAllen RipingillDavid RobinsonIrene Chen
    • Paul AmadeoAllen RipingillDavid RobinsonIrene Chen
    • H04B10/00H04B10/112
    • H04B10/1125
    • A system, method, and optical communication device are disclosed. The system can include a plurality of optically coupled nodes forming an optical communication network. Each node may include an array of pixel elements, each pixel element having an optical detector and an active optical source. The pixel array may be disposed in a backplane of a lens that is configured to map incoming optical signals to pixel locations in the backplane according to their respective angles of incidence and to minimize a deviation at each pixel location between incoming optical signals arriving at the optical detector and emissions from the optical source. The node may include a processor and memory. The processor can register senders in the optical network at locations in the pixel array and can generate routing information by which to route communications from the registered senders to other pixel elements for transmission to their respective destinations.
    • 公开了一种系统,方法和光通信设备。 该系统可以包括形成光通信网络的多个光耦合节点。 每个节点可以包括像素元件的阵列,每个像素元件具有光学检测器和有源光源。 像素阵列可以被布置在透镜的背板中,其被配置为根据入射光的入射角将入射光信号映射到背板中的像素位置,并且使到达光入射光信号处的每个像素位置处的偏差最小化 检测器和来自光源的发射。 节点可以包括处理器和存储器。 处理器可以在光学网络中在像素阵列中的位置处注册发送者,并且可以生成路由信息,通过该路由信息来将登记的发送者的通信路由到其他像素元素,以便传输到它们各自的目的地。
    • 8. 发明授权
    • Phase-modulating communication device
    • 相位调制通信设备
    • US08204384B2
    • 2012-06-19
    • US12623356
    • 2009-11-20
    • Paul AmadeoAllen RipingillDavid RobinsonIrene Chen
    • Paul AmadeoAllen RipingillDavid RobinsonIrene Chen
    • H04B10/00
    • H04B10/2587H04B10/1123
    • A system, method, and communication device are disclosed. The system can include an optical interrogator and a phase-modulating communication device. The communication device can include a retro-optimized lens, a phase modulator, and a processor. The retro-optimized lens can be a non-imaging optical arrangement configured to minimize deviation between an incoming signal and a reflected signal used for return link communications. The processor can be configured to calibrate a modulation path length of the communication device based on a wavelength of the communication signal and can control an operation of the phase-modulator to send phase-coded messages to the interrogator. Optionally, the processor can perform a real-time phase calibration of the communication device using feedback from the interrogator.
    • 公开了一种系统,方法和通信设备。 该系统可以包括光学询问器和相位调制通信设备。 通信设备可以包括复现优化的镜头,相位调制器和处理器。 复现优化的透镜可​​以是非成像光学装置,其被配置为最小化用于返回链路通信的输入信号和反射信号之间的偏差。 处理器可以被配置为基于通信信号的波长来校准通信设备的调制路径长度,并且可以控制相位调制器的操作以将相位编码的消息发送到询问器。 可选地,处理器可以使用来自询问器的反馈来执行通信设备的实时相位校准。
    • 10. 发明申请
    • SMARTCARD INTERCONNECT
    • 智能卡互联
    • US20110204147A1
    • 2011-08-25
    • US13030993
    • 2011-02-18
    • Paul AmadeoJose FloresRobert Kraft
    • Paul AmadeoJose FloresRobert Kraft
    • G06K19/077H05K3/32
    • G06K19/07749G06K19/07752G06K19/07779G06K19/07781Y10T29/49162
    • A smart card inlay and method for assembling the same are provided. The method includes attaching a first trace to a substrate, attaching a second trace to the substrate, attaching an antenna wire to the substrate, coupling a first end of the antenna wire to a first area of the first trace, and coupling a second end of the antenna wire to a first area of the second trace. A second area of the first trace and a second area of the second trace are configured to be coupled to an integrated circuit (IC) or IC module, and the first area of the first trace is located away from the second area of the first trace and the first area of the second trace is located away from the second area of the second trace.
    • 提供了一种用于组装智能卡嵌体和方法。 该方法包括将第一迹线附接到衬底,将第二迹线附接到衬底,将天线连接到衬底,将天线线的第一端耦合到第一迹线的第一区域,以及将第 天线连接到第二迹线的第一区域。 第一迹线的第二区域和第二迹线的第二区域被配置为耦合到集成电路(IC)或IC模块,并且第一迹线的第一区域位于远离第一迹线的第二区域 并且第二迹线的第一区域位于远离第二迹线的第二区域的位置。