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    • 11. 发明申请
    • Separator for Crank Housing Ventilation of an Internal Combustion Engine
    • 内燃机曲轴箱通风分离器
    • US20110108014A1
    • 2011-05-12
    • US12992607
    • 2009-05-12
    • Thomas SchleidenAndreas Weber
    • Thomas SchleidenAndreas Weber
    • F01M13/04
    • F01M13/04B01D45/06B01D45/14F01M2013/0066F01M2013/0072F01M2013/0427F01M2013/0433
    • The invention relates to a separator for crank housing ventilation of an internal combustion engine. The separator comprises at least one vortex chamber (2) extending along a longitudinal axis (3), wherein the vortex chamber (2) comprises an inlet for a ventilation stream (6), in particular a tangential inlet, relative to the longitudinal axis (3) at an end (4) on the inlet side. The vortex chamber (2) further comprises a common outlet (8) for the ventilation stream (6) and for oil entrained along with the ventilation stream (6), said common outlet being located at the end on the outlet side of the vortex chamber opposite the end (4) on the inlet side, relative to the longitudinal axis (3). The vortex chamber (2) is enclosed in the outlet (8) area thereof by an impact absorber (9) comprising an impact base (10) and a peripheral wall (11), wherein the impact base (10) covers the outlet (8) at a distance therefrom.
    • 本发明涉及一种用于内燃机的曲柄箱通风的分离器。 分离器包括沿着纵向轴线(3)延伸的至少一个涡流室(2),其中涡流室(2)包括相对于纵向轴线(6)的通风流(6)的入口,特别是切向入口 3)在入口侧的端部(4)处。 涡流室(2)还包括用于通风流(6)的公共出口(8)和与通气流(6)一起夹带的油,所述公共出口位于涡流室出口侧的端部 与入口侧的端部(4)相对于纵向轴线(3)相对。 涡流室(2)通过包括冲击底座(10)和周壁(11)的冲击吸收器(9)封闭在其出口(8)区域中,其中冲击底座(10)覆盖出口(8) )距离。
    • 12. 发明申请
    • Multi-channel optoelectronic module
    • 多通道光电模块
    • US20080187319A1
    • 2008-08-07
    • US11294743
    • 2005-12-06
    • James StewartStephen G. HoskingAnthony HoAndreas Weber
    • James StewartStephen G. HoskingAnthony HoAndreas Weber
    • H01S5/024H04B10/00
    • H04B10/572H01S5/02415H01S5/042H01S5/0612H01S5/0617H01S5/06837H01S5/0687H04B10/504
    • In one example, an optoelectronic transceiver includes an optical transmitter with which a set of operating wavelengths is associated. A temperature sensor and heat transfer device are thermally coupled with the optical transmitter, and drive circuitry is provided that is in communication with the heat transfer device. The optoelectronic transceiver further includes a control device in communication with the temperature sensor and with the driver circuitry. The control device includes a memory within which is stored several temperature control values, where each of the temperature control values is associated with a respective operating wavelength of the optical transmitter. Finally, the control device includes logic coupled with the memory, wherein an output of the logic is a command signal that concerns operation of the driver circuitry and corresponds with a selected operating wavelength. The command signal is based in part upon a temperature control value and input from the temperature sensor.
    • 在一个示例中,光电收发器包括与一组工作波长相关联的光发射器。 温度传感器和传热装置与光发射器热耦合,并且提供与传热装置连通的驱动电路。 光电收发器还包括与温度传感器和驱动器电路连通的控制装置。 控制装置包括存储器,在该存储器中存储有几个温度控制值,其中每个温度控制值与光发射器的相应工作波长相关联。 最后,控制装置包括与存储器耦合的逻辑,其中逻辑的输出是涉及驱动器电路的操作并对应于所选择的工作波长的命令信号。 命令信号部分地基于温度控制值和来自温度传感器的输入。
    • 13. 发明申请
    • MEASURING SIGNAL PROPAGATION AND ADJUSTABLE DELAYS IN ELECTRONIC DEVICES
    • 在电子设备中测量信号传播和可调延迟
    • US20070198202A1
    • 2007-08-23
    • US11669812
    • 2007-01-31
    • Alex FishmanSerguei DorofeevAndreas Weber
    • Alex FishmanSerguei DorofeevAndreas Weber
    • G06F19/00
    • G01R31/31728G01R31/3016
    • Systems and methods to measure signal propagation delay through objects. The system includes a controller, a single shot pulse generator, a first pulse/edge former, a multiplexer/demultiplexer, a second pulse/edge former, a timer, and a counter. The controller initializes the system, the clock and the counter. A pulse is sent from the single shot pulse generator to the first pulse/edge former. The pulse is propagated through the first pulse/edge former to the multiplexer, through a device under test, to the demultiplexer, and to the second pulse/edge former. The second pulse edge generator provides the pulse to the counter, which counts a predetermined number of pulses, and the clock, which measures the amount of time the counter counts the pulses. The propagation delay of the device under test is then calculated based on the counted number of pulses and the elapsed time measured by the clock.
    • 通过物体测量信号传播延迟的系统和方法。 该系统包括控制器,单次脉冲发生器,第一脉冲/边缘成形器,多路复用器/解复用器,第二脉冲/边缘形成器,定时器和计数器。 控制器初始化系统,时钟和计数器。 脉冲从单次脉冲发生器发送到第一个脉冲/边沿成像器。 脉冲通过第一脉冲/边沿形成器通过被测器件传播到多路复用器到解复用器和第二脉冲/边缘形成器。 第二脉冲沿发生器向计数器提供脉冲,该计数器计数预定数量的脉冲,以及测量计数器对脉冲进行计数的时间量的时钟。 然后根据计数的脉冲数和由时钟测量的经过时间计算被测器件的传播延迟。
    • 14. 发明授权
    • Digital control of optical transceiver transmitting and receiving elements
    • 光收发器发射和接收元件的数字控制
    • US07224904B1
    • 2007-05-29
    • US10282669
    • 2002-10-29
    • Giorgio GiarettaAndreas WeberDan Case
    • Giorgio GiarettaAndreas WeberDan Case
    • H04B10/00
    • H04B10/2504
    • An optical transceiver module having a digital control interface is disclosed. The optical transceiver module comprises a controller and integrated post-amplifier/laser driver, which are included on a printed circuit board disposed in the module. Transmitting and receiving optical sub-assemblies are also disposed in the module. A digital signal interface interconnects the controller with the integrated post-amplifier/laser driver. Digital control signals produced by the controller are transmitted via the digital signal interface to the integrated post-amplifier/laser driver. After receipt by the integrated post-amplifier/laser driver, the digital control signals are converted to analog control signals and forwarded to control amplifiers that use the control signals to vary a plurality of operating parameters of the transceiver module. The digital signal interface can also be employed to provide feedback to the controller relating to the operation of the control devices.
    • 公开了一种具有数字控制接口的光收发模块。 光收发器模块包括控制器和集成的后置放大器/激光驱动器,其包括在布置在模块中的印刷电路板上。 发射和接收光学子组件也设置在模块中。 数字信号接口将控制器与集成的后置放大器/激光驱动器互连。 由控制器产生的数字控制信号通过数字信号接口传送到集成的后置放大器/激光驱动器。 在由集成后置放大器/激光驱动器接收之后,数字控制信号被转换成模拟控制信号,并转发给使用控制信号的控制放大器来改变收发器模块的多个操作参数。 数字信号接口也可用于向控制器提供关于控制装置的操作的反馈。
    • 16. 发明授权
    • System and method for controlling polarity of a data signal
    • 用于控制数据信号极性的系统和方法
    • US07177547B1
    • 2007-02-13
    • US10282579
    • 2002-10-29
    • Dan CaseAndreas WeberGiorgio Giaretta
    • Dan CaseAndreas WeberGiorgio Giaretta
    • H04B10/00
    • H04B10/40
    • An integrated post-amplifier and laser driver assembly is provided that is implemented as a single integrated circuit and is configured to implement various effects, such as polarity control, concerning data signals received by an optical transceiver in conjunction with which the integrated post-amplifier and laser driver assembly is employed. The data signal polarity control is implemented, both in the post-amplifier assembly and the laser driver assembly, by an amplifier that changes the polarity of the data signal by modifying a relationship between first and second propagation paths of the data signal. The data signal polarity control is typically performed in response to a multiplexed digital control signal received at a digital control interface of the integrated post-amplifier and laser driver assembly.
    • 提供集成的后置放大器和激光驱动器组件,其被实现为单个集成电路,并且被配置为实现关于由光收发器接收的数据信号的各种效果,例如极性控制,其结合集成的后置放大器和 使用激光驱动器组件。 通过放大器在后置放大器组件和激光驱动器组件中实现数据信号极性控制,该放大器通过修改数据信号的第一和第二传播路径之间的关系来改变数据信号的极性。 数据信号极性控制通常响应于在集成后置放大器和激光驱动器组件的数字控制接口处接收到的多路复用数字控制信号来执行。