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    • 4. 发明授权
    • Data communication system with self-test facility
    • 具有自检设施的数据通信系统
    • US06862701B2
    • 2005-03-01
    • US09801031
    • 2001-03-06
    • Richard C. WalkerPatricia A. Thaler
    • Richard C. WalkerPatricia A. Thaler
    • H04L12/26H04L1/24H04L29/14G01R31/28
    • H04L1/244H04L1/203H04L1/241H04L1/242
    • Self testing of a data communication system that includes a presettable scrambler and a complementary presettable descrambler is performed by presetting the presettable scrambler to a preset state. A seed payload field is scrambled using the presettable scrambler to generate fields of a test sequence. The fields of the test sequence are transmitted and corresponding received test sequence fields are received. The received test sequence fields are descrambled using the presettable descrambler to generate respective recovered test sequence fields. Differences between the recovered test sequence fields and the seed payload field are then detected as errors. In an embodiment, the seed payload field and the preset state of the presettable scrambler are chosen to generate a test sequence that imposes a known stress, such as a given run length, to the data communication system.
    • 通过将预设的加扰器预设为预设状态来执行包括可预置的加扰器和互补预设解扰器的数据通信系统的自检。 使用可预设扰频器对种子有效载荷字段进行加扰,以生成测试序列的字段。 发送测试序列的字段并接收相应的接收到的测试序列字段。 接收的测试序列字段使用可预设的解扰器进行解扰,以产生相应的恢复的测试序列字段。 然后将恢复的测试序列字段和种子有效负载字段之间的差异检测为错误。 在一个实施例中,选择种子有效载荷字段和预设的加扰器的预设状态以产生将已知应力(例如给定的行程长度)施加到数据通信系统的测试序列。
    • 6. 发明授权
    • Multiplexer with channel sectioning, selectivity actuated current sources, and common-base amplifiers
    • 具有通道分段,选择性驱动电流源和公共基极放大器的多路复用器
    • US06760349B1
    • 2004-07-06
    • US09654635
    • 2000-09-05
    • Peter HoGraham M. FlowerRichard C. Walker
    • Peter HoGraham M. FlowerRichard C. Walker
    • H04J302
    • H04J3/047H03K17/6264
    • A multiplexer for use with switching apparatus for data communication networks. The multiplexer topology includes two or more groupings, or sections, each containing a plurality of individual channels. Each of the channels has an input buffer amplifier and an output Ft-doubler circuit. The outputs of all of the channels within a each particular channel section are connected in parallel relation, and fed to respective common-base transistor amplifiers. The outputs of all of the common-base amplifiers for each channel section, in turn, are connected in parallel and fed to the inputs of a pair of emitter-follower amplifiers. Through the use of selectively actuated current sources, each multiplexer channel is normally biased off, unless that channel is selected for a switching operation. Bleeder current sources are applied to the emitters of the common-base amplifiers to reduce output jitter from the channels which are biased off. The multiplexer architecture provides high speed operation from channel sectioning, and low power consumption by reducing both the amount of current drawn and the voltage potential necessary, to operate the multiplexer.
    • 一种用于数据通信网络的交换装置的多路复用器。 复用器拓扑包括两个或更多个分组,每个分组包含多个单独的信道。 每个通道都有一个输入缓冲放大器和一个输出Ft倍增电路。 每个特定通道部分内的所有通道的输出以并联方式连接,并馈送到相应的公共基极晶体管放大器。 每个通道部分的所有公共基极放大器的输出又并联连接并馈送到一对发射极跟随放大器的输入端。 通过使用选择性激励的电流源,除非为切换操作选择了该通道,否则每个复用器通道通常被偏置。 泄放电流源被施加到公共基极放大器的发射极,以减少偏置的通道的输出抖动。 多路复用器架构通过减少所需的电流量和所需的电压来提供通道分段的高速操作和低功耗,以操作多路复用器。
    • 8. 发明授权
    • Powder transfer from supersack containers and dispersion into a
homogeneous slurry
    • 粉末从超级容器和分散体转移到均匀的浆料中
    • US5507602A
    • 1996-04-16
    • US322497
    • 1994-10-14
    • Richard C. Walker
    • Richard C. Walker
    • B65B69/00B65G53/26B65G53/38
    • B65B69/0075B65B69/0091
    • Apparatus with a horizontally stretched flexible membrane is used to sealingly support a lower, openable end portion of an air-permeable sack containing powder material. A conical funnel-like sealable portion of the apparatus immediately beneath the membrane may be connected to a mechanism for applying a suction. This suction uses inward air flow from the ambient atmosphere through the air-permeable wall of the sack and the powder material contained therein, to generate a fluidized air/powder material outflow from the lower opening of the sack. The funnel-like element guides this flow and enables transfer of the air-fluidized powder material flow. To form a slurry, a conventional disperser/mixer mechanism dipped into a quantity of liquid in a tank may be connected to a suction duct to apply the desired suction. Fluidized air/powder material flow then is intensely and rapidly stirred with the liquid to form a slurry.
    • 具有水平拉伸的柔性膜的装置用于密封地支撑含有透气袋的粉末材料的下部可打开的端部。 紧邻膜下方的装置的锥形漏斗状密封部分可以连接到用于施加抽吸的机构。 该抽吸使用从周围大气通过袋的透气壁和容纳在其中的粉末材料的向内空气流,以产生从袋的下部开口流出的流化空气/粉末材料。 漏斗状元件引导该流动并且能够传送空气流动的粉末材料流。 为了形成浆料,在槽中浸入一定量的液体的常规分散机/混合机构可以连接到抽吸管道以施加所需的抽吸。 然后将流化空气/粉末物料流与液体剧烈且快速地搅拌以形成浆料。
    • 10. 发明授权
    • PFN/TRAC system FAA upgrades for accountable remote and robotics control to stop the unauthorized use of aircraft and to improve equipment management and public safety in transportation
    • PFN / TRAC系统FAA升级为负责任的遥控和机器人控制,以停止未经授权使用飞机,并改进设备管理和交通运输中的公共安全
    • US06965816B2
    • 2005-11-15
    • US10260525
    • 2002-10-01
    • Richard C. Walker
    • Richard C. Walker
    • B64C13/20B64D45/00G07C5/00G06F19/00G06F7/00
    • G07C5/008B64C13/20B64D45/0015B64D2045/0035B64D2045/0045B64D2045/0055G08B13/1965G08B27/008G08B31/00Y02T50/44
    • This invention, a Protected Primary Focal Node PFN is a Trusted Remote Activity Controller TRAC and mobile communication router platform that provides accountable remote and robotics control to transportation vehicles by interfacing with the vehicles E/E systems. It connects each vehicle either on the earth's surface or near the earth's surface with application specific intranets for air, sea and land travel, via either host commercial servers or agency providers through wireless communication gateways and then further interfaces these vehicles in a larger machine messaging matrix via wireless and IP protocols to further coordinate movement assess and manage equipment use and impact on the world resources, societies infrastructure and the environment. This filing focuses directly on PFN/TRAC System use to augment and upgrade public safety and security in the Airline Industry and restrict any unauthorized use of an aircraft. Additionally, this application and related filings teaches the PFN/TRAC System™ use for all vehicle platforms to increase safety and security in a free society like the United State of America. The other related filings instruct in the technology's use for robust and accountable remote control for personal applications, stationary equipment and standalone functions, and coordinates them and interfaces them within the communication matrix. The TRAC controller also performs translation and repeating functions across a wide variety of communication protocols to complete a more mobile flexible matrix or web. This connected communication matrix of computers and humans provides an enhanced Human Machine Interfacing HMI scenario both locally and systemically in real-time for improve equipment management and world stability.
    • 本发明,受保护的主要焦点节点PFN是可信赖的远程活动控制器TRAC和移动通信路由器平台,其通过与车辆E / E系统接口来为运输车辆提供负责任的远程和机器人控制。 它通过无线通信网关通过主机商业服务器或代理提供商将每个车辆在地球表面或地球表面附近与应用特定的空中,海上和陆地旅行的内部网络连接,然后在更大的机器消息矩阵中将这些车辆进一步接口 通过无线和IP协议进一步协调运动评估和管理设备使用和对世界资源,社会基础设施和环境的影响。 该文件直接关注PFN / TRAC系统用途,以增强和提升航空业的公共安全和安保,并限制任何未经授权的飞机使用。 此外,该应用程序和相关文件教导了PFN / TRAC系统(TM)用于所有车辆平台,以增加像美利坚合众国这样的自由社会的安全和安保。 其他相关文件指示该技术用于个人应用,固定设备和独立功能的强大和负责任的远程控制,并协调它们并在通信矩阵内将它们进行接口。 TRAC控制器还通过各种通信协议执行翻译和重复功能,以完成更多移动的灵活矩阵或网络。 这种连接的计算机和人类通信矩阵实时提供了本地和全系统的增强的人机界面HMI场景,以改善设备管理和世界稳定性。