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    • 2. 发明授权
    • Circuit for converting a transponder controller chip output into an appropriate input signal for a host device
    • 用于将应答器控制器芯片输出转换成用于主机设备的适当输入信号的电路
    • US07978800B2
    • 2011-07-12
    • US10678685
    • 2003-10-03
    • Darin J. DoumaRudolf J. HofmeisterStephen Nelson
    • Darin J. DoumaRudolf J. HofmeisterStephen Nelson
    • H03D3/24H04L7/02H03L7/00
    • H04L7/033H04L7/0083H04L7/10
    • A translation circuit for mediating between a fiber-optic controller chip and a host device. The translation circuit may be on a fiber-optic transponder. The controller chip includes a phase locked loop that outputs a short synchronization signal when a hunting frequency passes through a target data signal frequency while hunting for a data signal and outputs a synchronization signal when the phase locked loop is locked onto a data signal. The translation circuit distinguishes between the synchronization signals and generates a lock signal when the phase locked loop is locked onto a data signal, but does not when the hunting frequency passes through the target data signal frequency. The lock signal may be used by a host device into which the fiber-optic transponder has been in installed. Errors from misinterpreted signals can thus be mitigated.
    • 用于在光纤控制器芯片和主机设备之间进行中介的转换电路。 翻译电路可以在光纤转发器上。 控制器芯片包括一个锁相环,当寻线频率通过目标数据信号频率同时寻找数据信号时,输出一个短同步信号,并且当锁相环锁定在数据信号上时,输出同步信号。 平移电路区分同步信号,并且当锁相环被锁定在数据信号上时产生锁定信号,但是当寻呼频率通过目标数据信号频率时不会产生锁定信号。 锁定信号可以由安装有光纤转发器的主机设备使用。 因此可以减轻误解信号的错误。
    • 6. 发明申请
    • Variable rate stabilizer bar
    • 变速稳定杆
    • US20070170681A1
    • 2007-07-26
    • US11340301
    • 2006-01-26
    • Stephen NelsonLouis BradyJeffrey BennettGeoffrey White
    • Stephen NelsonLouis BradyJeffrey BennettGeoffrey White
    • B60G21/055
    • B60G21/0551B60G21/0555B60G2202/135B60G2204/1222B60G2204/1224B60G2206/427
    • Various embodiments of variable rate stabilizer bars are disclosed, including apparatus, vehicle, and kit implementations. Embodiments may have first and second stabilizer bar members. Each stabilizer bar member may be adapted to be operatively coupled to a respective, opposite ground-engaging element of a vehicle. Each stabilizer bar member may be configured to experience a torque about their longitudinal axis upon movement of the respective ground-engaging element relative to the vehicle when operatively coupled to the ground-engaging elements. Embodiments may have a torque transfer regulator, which may be operatively coupled to both stabilizer bar members. The torque transfer regulator may be configured to transfer a portion of the torque experienced by one of the stabilizer bar members to the other stabilizer bar member. Some embodiments may provide for active control of the degree of torque transfer from one ground-engaging element's suspension system to the other.
    • 公开了可变速率稳定器杆的各种实施例,包括装置,车辆和套件实现。 实施例可以具有第一和第二稳定杆构件。 每个稳定杆构件可以适于可操作地联接到车辆的相应的相对的地面接合元件。 每个稳定杆构件可构造成当可操作地联接到地面接合元件时相对于车辆移动时,相对于车辆运动时,绕其纵向轴线经受扭矩。 实施例可以具有扭矩传递调节器,其可操作地联接到稳定杆构件。 扭矩传递调节器可以被配置为将稳定杆中的一个所经历的扭矩的一部分传递到另一个稳定杆构件。 一些实施例可以提供对从一个地面接合元件的悬架系统到另一个接地元件的悬架系统的扭矩传递程度的主动控制。
    • 7. 发明申请
    • Optical transceiver module having adjustable signal polarity
    • 具有可调信号极性的光收发模块
    • US20060233553A1
    • 2006-10-19
    • US11386589
    • 2006-03-22
    • Stephen Nelson
    • Stephen Nelson
    • H04B10/00
    • H04B10/801
    • A system and method for selective inversion of the polarity of differential electrical data signals in connection with the operation of an optical transceiver module is disclosed. In one embodiment, an optical transceiver module is disclosed and comprises a receiver optical subassembly in operable communication with dual receive data signal streams that possess respectively differing polarities. A transmitter optical subassembly is also disclosed in operable communication with dual transmit data signal streams that possess respectively differing polarities. A first polarity switch is included and configured to selectively invert the polarities of the data signal streams of the receive data path, while a second polarity switch is included and configured to selectively invert the polarities of the data signal streams of the transmit data path. A register array is included in the module and has bits assignable by a controller that selectively enable operation of the polarity switches.
    • 公开了一种用于与光收发器模块的操作有关的差分电数据信号极性的选择性反转的系统和方法。 在一个实施例中,公开了光收发器模块,并且包括与具有分别具有不同极性的双接收数据信号流可操作地通信的接收机光学子组件。 还公开了一种与具有分别具有不同极性的双发送数据信号流可操作地通信的发射机光学子组件。 第一极性开关被包括并被配置为选择性地反转接收数据路径的数据信号流的极性,而第二极性开关被包括并被配置为选择性地反转发送数据路径的数据信号流的极性。 寄存器阵列包括在模块中,并且具有可由选择性地启用极性开关的操作的控制器分配的位。
    • 10. 发明申请
    • CENTRALIZED SYSTEM FOR ANALYZING SOFTWARE PERFORMANCE METRICS
    • 用于分析软件性能度量的集中式系统
    • US20090199160A1
    • 2009-08-06
    • US12023613
    • 2008-01-31
    • Girish VaitheeswaranSapan PanigrahiDaniel BretoiStephen NelsonGeorge Wu
    • Girish VaitheeswaranSapan PanigrahiDaniel BretoiStephen NelsonGeorge Wu
    • G06F9/44
    • G06F11/3688G06F11/3409G06F11/3414G06F11/3476G06F11/3684
    • Using a testing framework, developers may create a test module to centralize resources and results for a software test plan amongst a plurality of systems. With assistance from the testing framework, the test module may facilitate the creation of test cases, the execution of a test job for each test case, the collection of performance statistics during each test job, and the aggregation of collected statistics into organized reports for easier analysis. The test module may track test results for easy comparison of performance metrics in response to various conditions and environments over the history of the development process. The testing framework may also schedule a test job for execution when the various systems and resources required by the test job are free. The testing framework may be operating system independent, so that a single test job may test software concurrently on a variety of systems.
    • 使用测试框架,开发人员可以创建一个测试模块,以集中多个系统中的软件测试计划的资源和结果。 在测试框架的帮助下,测试模块可能有助于创建测试用例,为每个测试用例执行测试作业,在每个测试作业期间收集性能统计信息,并将收集的统计信息聚合到有组织的报告中,以便更容易 分析。 测试模块可以跟踪测试结果,以便在开发过程的历史上响应于各种条件和环境的性能指标进行比较。 当测试作业所需的各种系统和资源是免费的时,测试框架还可以安排测试作业执行。 测试框架可能与操作系统无关,因此单个测试作业可以在各种系统上同时测试软件。