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
    • 4. 发明授权
    • Distributed systems in test environments
    • 分布式系统在测试环境中
    • US07454659B1
    • 2008-11-18
    • US11028171
    • 2004-12-30
    • Thomas GaudetteLoren DeanGreg Taillefer
    • Thomas GaudetteLoren DeanGreg Taillefer
    • G06F11/00
    • G06F11/3664G06F11/3404G06F11/3696
    • A method, system and computer program product is disclosed for conducting a test in a distributed fashion in a test environment. A host or client may define a test for testing units under test to evaluate the parameters and characteristics of the units under test. The host or client can distribute at least a portion of the test to a remote instrument that includes a worker. The worker enables the instrument to perform at least portion of the test defined in the host or client. The instrument conduct the at least a portion of the test and may provide the results of the at least a portion of the test for the host or client. As such, the present invention allows the use of multiple resources on a network to conduct the test in a distributed fashion.
    • 公开了一种用于在测试环境中以分布式方式进行测试的方法,系统和计算机程序产品。 主机或客户端可以定义测试中的测试单元的测试,以评估被测单元的参数和特性。 主机或客户端可以将至少一部分测试分发到包括工作人员的远程工具。 工作人员使仪器能够执行主机或客户端中定义的测试的至少一部分。 仪器进行测试的至少一部分,并且可以为主机或客户端提供测试的至少一部分的结果。 因此,本发明允许在网络上使用多个资源以分布式方式进行测试。
    • 5. 发明申请
    • SYSTEM AND METHOD FOR USING MODEL ANALYSIS TO GENERATE DIRECTED TEST VECTORS
    • 使用模型分析生成方向测试矢量的系统和方法
    • US20080109194A1
    • 2008-05-08
    • US11970897
    • 2008-01-08
    • Thomas Gaudette
    • Thomas Gaudette
    • G06G7/48
    • G06F17/5022G06F11/261
    • In one embodiment, a system model models characteristics of a real-world system. The system model includes a plurality of sub-portions that each correspond to a component of the real-world system. A plurality of test vectors are applied to the system model and coverage achieved by the test vectors on the sub-portions of the system model is measured. In response to a failure of the real world system, a suspected failed component of the real-world system is matched to a particular sub-portion of the system model. A test vector to be applied to the real-world system to test the suspected failed component is selected in response to coverage achieved on the particular sub-portion of the system model.
    • 在一个实施例中,系统模型对现实世界系统的特征进行建模。 系统模型包括多个子部分,每个子部分对应于真实世界系统的部件。 将多个测试向量应用于系统模型,并测量由系统模型的子部分上的测试向量实现的覆盖。 为了应对现实世界系统的故障,现实世界系统的可疑故障组件与系统模型的特定子部分相匹配。 响应于在系统模型的特定子部分实现的覆盖,选择要应用于真实世界系统以测试可疑故障组件的测试向量。
    • 6. 发明申请
    • Instrument-based distributed computing systems
    • 基于仪器的分布式计算系统
    • US20070124363A1
    • 2007-05-31
    • US11301061
    • 2005-12-12
    • Roy LurieThomas Gaudette
    • Roy LurieThomas Gaudette
    • G06F15/16
    • G06F9/5072G06F11/3664H04L41/00H04L67/10
    • An instrument-based distributed computing system is disclosed that accelerates the measurement, analysis, verification and validation of data in a distributed computing environment. A large computing work can be performed in a distributed fashion using the instrument-based distributed system. The instrument-based distributed system may include a client that creates a job. The job may include one or more tasks. The client may distribute a portion of the job to one or more remote workers on a network. The client may reside in an instrument. One or more workers may also reside in instruments. The workers execute the received portion of the job and may return execution results to the client. As such, the present invention allows the use of instrument-based distributed system on a network to conduct the job and facilitate decreasing the time for executing the job.
    • 公开了一种基于仪器的分布式计算系统,可加速分布式计算环境中数据的测量,分析,验证和验证。 可以使用基于仪器的分布式系统以分布式方式执行大型计算工作。 基于仪器的分布式系统可以包括创建作业的客户端。 该作业可能包括一个或多个任务。 客户端可以将作业的一部分分发给网络上的一个或多个远程工作人员。 客户可能驻留在仪器中。 一个或多个工人也可以居住在仪器中。 工作人员执行接收到的部分工作,并可能将执行结果返回给客户端。 因此,本发明允许在网络上使用基于仪器的分布式系统进行作业并且有助于减少执行作业的时间。
    • 7. 发明申请
    • Electromagnetic shield assembly
    • 电磁屏蔽总成
    • US20060002099A1
    • 2006-01-05
    • US10882886
    • 2004-06-30
    • Edward StonehamThomas Gaudette
    • Edward StonehamThomas Gaudette
    • H05K9/00
    • H05K9/0024H01L2224/48091H01L2224/73265H01L2924/00014
    • An example of an electromagnetic (EM) shield assembly may include a top and sides, which together form a chamber configured to house a circuit assembly. The EM shield assembly may include a conductive shield layer and a dielectric layer. The top may include a conductive strip extending along the dielectric layer, while one or more sides may each include a via extending through the dielectric layer. A via may be adapted to provide a connection between a circuit conductor inside or outside the chamber with the conductive strip. In this manner the vias and the conductive strip are capable of forming a continuous circuit path within the EM shield assembly. Alternatively or additionally, some EM shield assemblies may include resistive material included on the interior surface.
    • 电磁(EM)屏蔽组件的示例可以包括顶部和侧面,它们一起形成用于容纳电路组件的室。 EM屏蔽组件可以包括导电屏蔽层和电介质层。 顶部可以包括沿着电介质层延伸的导电条,而一个或多个边可以各自包括延伸通过介电层的通孔。 通孔可以适于提供室内或室外的电路导体与导电带之间的连接。 以这种方式,通孔和导电条能够在EM屏蔽组件内形成连续的电路。 或者或另外,一些EM屏蔽组件可以包括内表面上包括的电阻材料。
    • 8. 发明授权
    • System and method for enabling simultaneous calibration and imaging of a medium
    • 允许同时校准和成像介质的系统和方法
    • US06956650B2
    • 2005-10-18
    • US10045309
    • 2002-01-10
    • David A. BoasJoe CulverSimon ArridgeThomas Gaudette
    • David A. BoasJoe CulverSimon ArridgeThomas Gaudette
    • A61B5/00G01N21/47G01N21/59G01N21/49
    • A61B5/0073A61B5/0091A61B5/1495A61B2560/0233A61B2562/0233A61B2562/046G01N21/4795
    • The methods and systems are provided that alleviate the impact of experimental systematic errors. These calibration methods and systems can be based on the discovery that by including source and detector calibration factors as part of the inverse calculation for image reconstruction, image artifacts can be significantly reduced. The novel methods and systems enhance contrast in images of the distribution of the radioactive properties of a medium, and enable improved detection of, for example, spatial variations in optical properties within highly scattering media, such as human or animal tissue. The novel methods and systems receive radiation which exits from the medium. Then, one or more optical properties of the medium are derived using the received radiation and one or more calibration factors, wherein the calibration factors are variables. Subsequently, a distribution of the optical properties in the medium is determined using the derived optical properties.
    • 提供了减轻实验系统误差影响的方法和系统。 这些校准方法和系统可以基于以下发现:通过将源和检测器校准因子作为图像重构的逆计算的一部分,可以显着减少图像伪影。 新颖的方法和系统增强了介质的放射性质分布的图像中的对比度,并且能够改进例如在高度散射介质(例如人或动物组织)内的光学性质的空间变化的检测。 新颖的方法和系统接收从介质离开的辐射。 然后,使用接收的辐射和一个或多个校准因子导出介质的一个或多个光学性质,其中校准因子是变量。 随后,使用衍生的光学性质确定介质中的光学性质的分布。
    • 9. 发明授权
    • Signal definitions or descriptions in graphical modeling environments
    • 图形建模环境中的信号定义或描述
    • US08849642B2
    • 2014-09-30
    • US11012376
    • 2004-12-14
    • Thomas Gaudette
    • Thomas Gaudette
    • G06F17/50G06F11/26G06F13/10
    • G06F17/5009G06F11/261G06F13/105G06F17/50
    • Methods, system and computer program products are disclosed for providing a graphical modeling environment in which a graphical model is generated and executed. In the graphical modeling environment, elements are provided to define or describe signals associated with resources that are coupled to the graphical modeling environment. The high-level signal definition or description elements define or describe the signals associated with the resources regardless of the hardware of the resources. With the use of high-level signal definition or description elements, the users have the capability to deal with the signals transmitted to/from the resources without the specific knowledge of the hardware of the resources.
    • 公开了方法,系统和计算机程序产品,用于提供其中生成和执行图形模型的图形建模环境。 在图形建模环境中,提供元素以定义或描述与耦合到图形建模环境的资源相关联的信号。 高级信号定义或描述元素定义或描述与资源相关联的信号,而不管资源的硬件。 通过使用高级信号定义或描述元素,用户有能力处理从资源传输的信号,而不需要资源的硬件的具体知识。
    • 10. 发明申请
    • Graphical state machine based programming for a graphical user interface
    • 用于图形用户界面的图形状态机编程
    • US20070266329A1
    • 2007-11-15
    • US11880368
    • 2007-07-20
    • Thomas Gaudette
    • Thomas Gaudette
    • G06F3/048
    • G06F8/34
    • In one embodiment, a graphical arrangement of one or more interface elements and a definition of one or more events associated with the interface elements is used to build a state diagram model of a graphical user interface (GUI). The state diagram model of the GUI includes a plurality of states, and one or more transitions linking at least some of the states. The state diagram model may be displayed to a user, and in some cases, simulated to test functionality of the GUI. In response to user input, the state diagram model may be modified to change functionality of the GUI and/or to add functionality to the GUI. The GUI may then be generated from the state diagram model.
    • 在一个实施例中,使用一个或多个接口元件的图形布置以及与接口元件相关联的一个或多个事件的定义来构建图形用户界面(GUI)的状态图模型。 GUI的状态图模型包括多个状态,以及链接至少一些状态的一个或多个转换。 状态图模型可以显示给用户,并且在某些情况下,被模拟以测试GUI的功能。 响应于用户输入,可以修改状态图模型以改变GUI的功能和/或向GUI添加功能。 然后可以从状态图模型生成GUI。