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    • 1. 发明授权
    • Wireless patient monitoring system
    • 无线病人监护系统
    • US08480577B2
    • 2013-07-09
    • US11205792
    • 2005-08-17
    • Mark Joseph Tuccillo
    • Mark Joseph Tuccillo
    • A61B5/00
    • H03F3/24A61B5/0006A61B5/0456A61B5/055G01R33/3692H03F3/45475H03F3/60H03F9/00H03F2200/114H03F2203/45566H03F2203/45662
    • A wireless patient monitoring system. In one embodiment the system has a first patient monitoring subsystem including a plurality of sensors and sensor modules; and a processor-transceiver in communication with the plurality of sensors and sensor modules; and a first clinician display subsystem including a processor-transceiver. The processor-transceiver of the first clinician display subsystem broadcasts, on a first predetermined frequency, the frequency the processor-transceiver of the first clinician display subsystem will use to communicate with the processor-transceiver of the first patient monitoring subsystem. The processor-transceiver of the first patient monitoring subsystem then transmits and receives data on the frequency that the processor-transceiver of the first clinician display subsystem will use to communicate with the processor-transceiver of the first patient monitoring subsystem. The processor-transceiver of the first patient monitoring subsystem reverts to the first frequency if communication with the processor-transceiver of the first clinician display subsystem is lost.
    • 无线患者监护系统。 在一个实施例中,系统具有包括多个传感器和传感器模块的第一患者监控子系统; 以及与所述多个传感器和传感器模块通信的处理器收发器; 以及包括处理器收发器的第一临床医生显示子系统。 第一临床医生显示子系统的处理器收发器以第一预定频率广播第一临床医生显示子系统的处理器收发器将用于与第一患者监视子系统的处理器收发器通信的频率。 第一患者监视子系统的处理器收发器然后以第一临床医生显示子系统的处理器收发器将用于与第一患者监视子系统的处理器收发器通信的频率来发送和接收数据。 如果与第一临床医生显示子系统的处理器收发器的通信丢失,则第一患者监视子系统的处理器收发器恢复到第一频率。
    • 2. 发明授权
    • Asymmetric rise/fall time and duty cycle control circuit
    • 不对称上升/下降时间和占空比控制电路
    • US07764885B2
    • 2010-07-27
    • US11626081
    • 2007-01-23
    • The'Linh NguyenTimothy G. Moran
    • The'Linh NguyenTimothy G. Moran
    • H04B10/00
    • H03F3/45475H03F3/45085H03F2203/45134H03F2203/45324H03F2203/45566H03F2203/45631H03F2203/45641H03F2203/45654H03K5/1565
    • Modules and signal control circuits configured to at least partially compensate for or adjust for asymmetric rise/fall time. The circuit may include a first input node configured to receive a first data signal and a second input node configured to receive a second data signal that is complementary of the first data signal. The circuit may also include a first stage having a first node coupled to the first input node and a second node coupled to the second input node and a second stage having a first node coupled to a third node of the first stage and a second node coupled to a fourth node of the first stage. The second stage may be configured to drive a load such as a laser. The circuit may further include a third input node configured to receive a third data signal and a fourth input node configured to receive a fourth data signal that is the complementary of the third data signal. Additionally, a control stage having a first node coupled the third input node, having a second node coupled to the fourth input node, having a third node coupled to the third node of the first stage and having a fourth node coupled to the fourth node of the first stage.
    • 模块和信号控制电路被配置为至少部分地补偿或调整不对称的上升/下降时间。 电路可以包括被配置为接收第一数据信号的第一输入节点和被配置为接收与第一数据信号互补的第二数据信号的第二输入节点。 电路还可以包括具有耦合到第一输入节点的第一节点和耦合到第二输入节点的第二节点的第一阶段和具有耦合到第一阶段的第三节点的第一节点的第二阶段和耦合到第二节点的第二节点 到第一级的第四个节点。 第二级可以被配置为驱动诸如激光器的负载。 电路还可以包括被配置为接收第三数据信号的第三输入节点和被配置为接收作为第三数据信号的互补的第四数据信号的第四输入节点。 另外,控制级具有耦合第三输入节点的第一节点,具有耦合到第四输入节点的第二节点,具有耦合到第一级的第三节点的第三节点,并且具有耦合到第四节点的第四节点的第四节点 第一阶段
    • 5. 发明授权
    • Adjustable differential input and output drivers
    • 可调差分输入和输出驱动器
    • US07245144B1
    • 2007-07-17
    • US11169242
    • 2005-06-27
    • Wilson WongSergey Shumarayev
    • Wilson WongSergey Shumarayev
    • H03K17/16
    • H03K19/018564H03F3/45928H03F2203/45078H03F2203/45082H03F2203/45101H03F2203/45134H03F2203/45138H03F2203/45154H03F2203/45222H03F2203/45541H03F2203/45566H03F2203/45626H03F2203/45681H03F2203/45686
    • Systems and methods are provided using common-mode-voltage bias circuitry to make common-mode-voltage adjustments to differential driver circuitry in integrated circuit differential communications links. Adjustable bias circuitry may be controlled using static and dynamic control signals. Dynamic control signals can be produced by core logic on a programmable logic device or other integrated circuit. Static control signals can be produced by programmable elements. Bias circuit adjustments made at one end of a differential link can be used to improve performance at either end of the link or can be used to improve power consumption or to balance power and performance considerations. The same integrated circuit design can be used in both AC-coupled and DC-coupled environments. The bias circuitry can be formed from an adjustable current source and adjustable resistor. The current source and adjustable resistors can be controlled by the same control signals.
    • 使用共模电压偏置电路提供系统和方法,以对集成电路差分通信链路中的差分驱动器电路进行共模电压调整。 可调节的偏置电路可以使用静态和动态控制信号来控制。 动态控制信号可以由可编程逻辑器件或其他集成电路上的核心逻辑产生。 静态控制信号可以由可编程元件产生。 差分链路一端进行的偏置电路调整可用于提高链路两端的性能,或者可用于提高功耗或平衡功率和性能考虑。 同样的集成电路设计可用于交流耦合和直流耦合环境。 偏置电路可以由可调电流源和可调电阻器形成。 电流源和可调电阻可由相同的控制信号控制。
    • 7. 发明申请
    • Multi-band amplifier
    • 多频段放大器
    • US20040130392A1
    • 2004-07-08
    • US10695042
    • 2003-10-28
    • Noriaki Saito
    • H03F003/68
    • H03F3/68H03F1/223H03F1/26H03F3/189H03F3/4508H03F3/45089H03F3/45094H03F2200/111H03F2200/372H03F2200/429H03F2203/45566
    • In a multi-band amplifier, provided are a first differential voltage-to-current converting circuit for converting a first frequency signal into a current and outputting the current, a second differential voltage-to-current converting circuit for converting a second frequency signal into a current and outputting the current, and a current transposition point connected in phase with and in parallel with output terminals of the first and second differential voltage-to-current converting circuits. A base-grounded amplifying circuit is connected in phase with and in series with an output terminal of the current transposition point. With this configuration, the circuit of a virtual ground point and the following of after voltage-to-current conversion can be provided in common by using a cascode amplifier as a low-noise amplifier, making it possible to constitute a multi-band amplifier minimized in the connection loss resulting from interconnection.
    • 在多频带放大器中,提供了用于将第一频率信号转换为电流并输出电流的第一差分电压 - 电流转换电路,用于将第二频率信号转换成第二频率信号的第二差分电压 - 电流转换电路 电流并输出电流,以及与第一和第二差分电压 - 电流转换电路的输出端相同相并联并联的当前转置点。 基极接地放大电路与当前转置点的输出端相同相并串联连接。 利用这种配置,可以通过使用共源共栅放大器作为低噪声放大器来共同地提供虚拟接地点的电路和以后的电压 - 电流转换之后的电路,使得可以构成多频带放大器最小化 在互连造成的连接损失。