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
    • 2. 发明申请
    • OPTICAL PULSE SOURCE
    • 光学脉冲源
    • US20130271824A1
    • 2013-10-17
    • US13797665
    • 2013-03-12
    • John Redvers ClowesAnatoly Borisovich GrudininIan Michael GodfreyKestutis Vysniauskas
    • John Redvers ClowesAnatoly Borisovich GrudininIan Michael GodfreyKestutis Vysniauskas
    • H01S3/067
    • H01S3/11G02F1/383H01S3/005H01S3/0057H01S3/0092H01S3/067H01S3/06712H01S3/06754H01S3/06758H01S3/109H01S3/1618H01S3/2308
    • The invention can include an apparatus for producing optical pulses, comprising an oscillator for producing optical pulses at a first optical pulse repetition frequency, the optical pulses having a first wavelength; a first optical fiber amplifier; a second optical fiber amplifier; a pulse picker located between the first and second optical fiber amplifiers, the pulse picker operable to reduce the optical pulse repetition frequency of optical pulses, wherein the first amplifier amplifies optical pulses at the first optical pulse repetition frequency and the second amplifier amplifies optical pulses at a reduced optical pulse repetition frequency that is less than the first optical pulse repetition frequency; a nonlinear optical fiber receiving amplified optical pulses having the reduced optical pulse repetition frequency and the first wavelength to produce, at the reduced optical pulse frequency, optical pulses that include one or more nonlinearly produced wavelengths different than the first wavelength; and wherein the pulse picker and the first and second optical fiber amplifiers are located between the oscillator and the nonlinear optical fiber.
    • 本发明可以包括用于产生光脉冲的装置,包括用于以第一光脉冲重复频率产生光脉冲的振荡器,所述光脉冲具有第一波长; 第一光纤放大器; 第二光纤放大器; 位于第一和第二光纤放大器之间的脉冲拾取器,脉冲拾取器可操作以减少光脉冲的光脉冲重复频率,其中第一放大器以第一光脉冲重复频率放大光脉冲,第二放大器放大光脉冲 减少的光脉冲重复频率小于第一光脉冲重复频率; 接收具有减小的光脉冲重复频率和第一波长的放大的光脉冲的非线性光纤,以减小的光脉冲频率产生包括一个或多个非线性产生的不同于第一波长的波长的光脉冲; 并且其中所述脉冲拾取器和所述第一和第二光纤放大器位于所述振荡器和所述非线性光纤之间。
    • 3. 发明申请
    • Blast resistant video recording device
    • 防爆视频录像设备
    • US20100073493A1
    • 2010-03-25
    • US12232802
    • 2008-09-24
    • Michael GodfreyChristopher Knight
    • Michael GodfreyChristopher Knight
    • H04N5/228H04N5/225H04N5/76
    • H04N5/76H04N5/765
    • A video recording device adapted to be resistive to thermal and mechanical shocks experienced in a catastrophic event, the device including a plurality of interchangeable components, the device comprising: a housing; a video component releasably mounted in the housing and having a lens for capturing images from an external environment of the device and a digital processor for producing digital data from the captured images; a memory component releasably mounted in the housing and releasably coupled to the video component adapted for storing the digital data received from the video component, the memory component including a non-volatile memory unit and an enclosure adapted for inhibiting the transfer of thermal and mechanical shocks from the external environment to the non-volatile memory unit, the non-volatile memory unit enclosed in the enclosure; and an interface component releasably mounted in the housing and releasably coupled to the video component and the memory component, the interface component adapted for providing power and data communication from the external environment to the video component and the memory component.
    • 一种视频记录装置,适于抵抗在灾难性事件中遇到的热和机械冲击,该装置包括多个可互换部件,该装置包括:壳体; 可释放地安装在壳体中并具有用于从设备的外部环境捕获图像的透镜和用于从所捕获的图像产生数字数据的数字处理器的视频部件; 可释放地安装在壳体中并且可释放地耦合到视频组件的存储器组件,适用于存储从视频组件接收的数字数据,存储器组件包括非易失性存储器单元和适于禁止热和机械冲击传输的外壳 从外部环境到非易失性存储器单元,包围在外壳中的非易失性存储器单元; 以及可释放地安装在所述壳体中并且可释放地耦合到所述视频组件和所述存储器组件的接口组件,所述接口组件适于提供从所述外部环境到所述视频组件和所述存储器组件的电力和数据通信。
    • 4. 发明授权
    • Dynamically configured on-chip communications paths based on statistical analysis
    • 基于统计分析的动态配置的片上通信路径
    • US06247161B1
    • 2001-06-12
    • US09145011
    • 1998-09-01
    • J. Andrew LambrechtAlfred C. HartmannGary Michael Godfrey
    • J. Andrew LambrechtAlfred C. HartmannGary Michael Godfrey
    • G06F1750
    • G06F17/5054G06F17/5077
    • A computer chip including a data transfer network which comprises a plurality of communications links for transmitting data, a plurality of communication nodes, and a plurality of modules. Each of the communication nodes is directly connected to two or more other communication nodes through respective ones of the communications links. Each communication node is operable to communicate data over the respective one of the communications links. Each module is coupled to at least one of the communication nodes, and the modules are operable to communicate with each other through the communication nodes. The communication nodes are operable to create dynamic routes for the data transferred between any two or more of the plurality of modules over the respective ones of the communications links. The communication nodes form the dynamic routes based on statistical data on previous transmissions between the modules. Each communication node may include respective configuration logic for dynamically configuring the dynamic routes, and each configuration logic may include a memory for storing the statistical data on previous transmissions that passed through the respective communications node. The data transfer network may also comprise a routing module for controlling the dynamic routes based on statistical data. The routing module couples to each communication node and monitors the configuration logic. When present and functioning, the routing module adapts the dynamic routes based on an analysis of the statistical data. The statistical data includes one or more of the following for each respective transmission: priority, source module, destination module, number of data units, elapsed transfer time or minimum required transfer time, and total number of transmissions which pass through a given communications node.
    • 一种包括数据传输网络的计算机芯片,包括用于发送数据的多个通信链路,多个通信节点和多个模块。 每个通信节点通过相应的通信链路直接连接到两个或更多个其他通信节点。 每个通信节点可操作以在相应的一个通信链路上传送数据。 每个模块耦合到至少一个通信节点,并且模块可操作以通过通信节点彼此通信。 通信节点可操作以为通过各个通信链路的多个模块中的任意两个或多个之间传送的数据创建动态路由。 通信节点基于模块之前的传输的统计数据形成动态路由。 每个通信节点可以包括用于动态地配置动态路由的相应配置逻辑,并且每个配置逻辑可以包括用于存储通过相应通信节点的先前传输的统计数据的存储器。 数据传输网络还可以包括用于基于统计数据来控制动态路由的路由模块。 路由模块耦合到每个通信节点并监视配置逻辑。 当存在和运行时,路由模块将根据统计数据的分析来调整动态路由。 统计数据包括每个相应传输的一个或多个以下内容:优先级,源模块,目的地模块,数据单元数,经过的传送时间或最小所需传输时间,以及通过给定通信节点的传输总数。
    • 5. 发明授权
    • Fluid dispensing system
    • 流体分配系统
    • US6010740A
    • 2000-01-04
    • US941855
    • 1997-09-30
    • Clinton W. RutledgeMichael GodfreyIan J. BuckleyWilliam W. Weil
    • Clinton W. RutledgeMichael GodfreyIan J. BuckleyWilliam W. Weil
    • G03G15/10B05B12/04B05C5/02B21D51/30B65B7/00B05D1/00
    • B05C5/022B05C5/0216B05C5/0225
    • An apparatus and method for controlling the opening of a solenoid actuated valve in a sealant dispensing gun are disclosed. A proximity sensor is provided adjacent a portion of the needle valve stem in order to sense when the needle valve has reached its open position. A dispense timer is initiated when the proximity sensor indicates that the needle valve has reached its open position. In this manner, the needle valve may be maintained in its open position for the desired dispense time only without regard to the response time of the solenoid device. Also disclosed is an apparatus and method for adjusting the valve open limit of a sealant dispensing device which incorporates a solenoid or motor actuated valve open limit device. A flow sensor is located in-line with the sealant supply path of a dispensing gun in order to monitor the dispense weight during each valve open cycle. A moving average of the dispense rates may then be calculated and compared to predetermined limits. If the limits are exceeded, the processor the processor automatically adjusts the solenoid or motor actuated valve open limit device in the proper direction in order to bring the dispense rate back into the proper dispense rate range.
    • 公开了一种用于控制密封剂分配枪中的电磁致动阀的打开的装置和方法。 在针阀杆的一部分附近设置接近传感器,以便在针阀到达其打开位置时感测。 当接近传感器指示针阀已经达到其打开位置时,启动分配定时器。 以这种方式,针阀可以保持在其打开位置以达到期望的分配时间,而不考虑螺线管装置的响应时间。 还公开了一种用于调节密封剂分配装置的阀开启极限的装置和方法,其包括螺线管或电动机致动阀开启极限装置。 流量传感器与分配枪的密封剂供应路径成一直线,以便在每个阀打开循环期间监测分配重量。 然后可以计算分配速率的移动平均值并将其与预定限制进行比较。 如果超出极限值,则处理器处理器将自动调整电磁阀或电动阀驱动的阀门开启极限装置的正确方向,以使分配速率恢复到适当的分配速率范围。