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    • 1. 发明申请
    • CLASS D AMPLIFIER WITH INCREASED EFFICIENCY
    • 具有提高效率的D类放大器
    • US20090033419A1
    • 2009-02-05
    • US11831941
    • 2007-07-31
    • Lance WestonTony T. LiJohn J. Ryan
    • Lance WestonTony T. LiJohn J. Ryan
    • H03F3/217H03F3/38
    • H03F3/2173H03F1/0205H03F2200/03H03F2200/114H03F2200/321H03F2200/351
    • The present invention is a method of operating a speaker by converting an audio signal to a pulse-width modulated signal that has a plurality of positive pulses and a plurality of negative pulses as a function of the audio signal, then driving an H-bridge circuit interconnected to a speaker, wherein the H-bridge circuit comprises an A-side and a B-side, wherein the A-side comprises a first switching transistor and a second switching transistor, and wherein the B-side comprises a first switching transistor and a second switching transistor. For each positive pulse, the A-side of the H-bridge circuit is driven by pushing the first switching transistor of the A-side while grounding the second switching transistor of the A-side. For each negative pulse, the B-side of the H-bridge circuit is driven by pushing the first switching transistor of the B-side while grounding the second switching transistor of the B-side.
    • 本发明是一种通过将音频信号转换成具有作为音频信号的函数的多个正脉冲和多个负脉冲的脉冲宽度调制信号来操作扬声器的方法,然后驱动H桥电路 互连到扬声器,其中所述H桥电路包括A侧和B侧,其中所述A侧包括第一开关晶体管和第二开关晶体管,并且其中所述B侧包括第一开关晶体管和 第二开关晶体管。 对于每个正脉冲,通过在A侧的第二开关晶体管接地的同时推动A侧的第一开关晶体管来驱动H桥电路的A侧。 对于每个负脉冲,通过在B侧的第二开关晶体管接地的同时推动B侧的第一开关晶体管来驱动H桥电路的B侧。
    • 6. 发明授权
    • Systems and methods for peak-seeking control
    • 寻峰控制的系统和方法
    • US08447443B1
    • 2013-05-21
    • US13367990
    • 2012-02-07
    • John J RyanJason L Speyer
    • John J RyanJason L Speyer
    • G05B19/042G06F17/00
    • G05B13/042
    • A computerized system and method for peak-seeking-control that uses a unique Kalman filter design to optimize a control loop, in real time, to either maximize or minimize a performance function of a physical object (“plant”). The system and method achieves more accurate and efficient peak-seeking-control by using a time-varying Kalman filter to estimate both the performance function gradient (slope) and Hessian (curvature) based on direct position measurements of the plant, and does not rely upon modeling the plant response to persistent excitation. The system and method can be naturally applied in various applications in which plant performance functions have multiple independent parameters, and it does not depend upon frequency separation to distinguish between system dimensions.
    • 用于峰值寻找控制的计算机化系统和方法,其使用独特的卡尔曼滤波器设计实时优化控制回路,以最大化或最小化物理对象(“工厂”)的性能功能。 该系统和方法通过使用时变卡尔曼滤波器基于工厂的直接位置测量来估计性能函数梯度(斜率)和Hessian(曲率)来实现更精确和有效的峰值寻找控制,并且不依赖 对植物对持续激发的反应建模。 该系统和方法可以自然地应用于各种应用中,其中工厂性能功能具有多个独立参数,并且其不依赖于频率分离以区分系统尺寸。
    • 7. 发明申请
    • Automatic Power Shut-Off To At Least A Portion Of A Cooking Apparatus
    • 自动关机至少一部分烹饪设备
    • US20110083562A1
    • 2011-04-14
    • US12575561
    • 2009-10-08
    • John J. RyanRonald R. Weiss
    • John J. RyanRonald R. Weiss
    • A23L1/18H05B1/02
    • H05B1/0261A23L7/161
    • Methods to control power to a cooking appliance are provided. The methods include monitoring a power signal to the portion of the cooking appliance, including monitoring a current and/or voltage of the power signal. The methods also include selectively interrupting power to the portion of the cooking appliance in response to: determining that the current fails to exceed a current threshold within a time threshold, determining that the voltage fails to exceed a voltage threshold within a time threshold, deter mining that the current exceeds a current threshold for a first time threshold but fails to exceed the current threshold for a second time threshold, and determining that the voltage exceeds a voltage threshold for a first time threshold but fails to exceed the voltage threshold for a second time threshold. The methods also include temperature sensing and controlling the power signal based thereupon.
    • 提供了控制烹饪器具电源的方法。 所述方法包括监测到烹饪器具的部分的功率信号,包括监测功率信号的电流和/或电压。 所述方法还包括响应于:确定电流在时间阈值内不能超过电流阈值,确定电压在时间阈值内不能超过电压阈值,从而阻止烹饪器具的部分电力,阻止采矿 电流超过第一时间阈值的电流阈值,但是不能超过第二时间阈值的电流阈值,并且确定电压超过第一时间阈值的电压阈值,但是不能超过电压阈值第二次 阈。 该方法还包括温度检测和基于此的功率信号的控制。
    • 9. 发明授权
    • Insulating wire separator apparatus for piping systems
    • 用于管道系统的绝缘线分离装置
    • US07090175B1
    • 2006-08-15
    • US09866593
    • 2001-05-30
    • John J. Ryan, IIIJulius Martin
    • John J. Ryan, IIIJulius Martin
    • F16L3/22
    • F16L1/11
    • An insulating wire separator for piping systems which protects buried pipes and cable from becoming damaged or melted from an accidental electrical charge, or caused by a lightning strike. The insulating wire separator is a multi-purpose clip device used to connect a tracer wire to conduits, cables, or piping. Tracer wires are used to permit detection of buried plastic conduits, cables, or piping using conventional detection methods. The insulating wire separator includes a main conduit receiving portion having an outer strengthening rib. The insulating wire separator includes an arm portion connected to a wire clip portion. Along the arm portion, near the main conduit receiving portion, is a plate portion. The insulating wire separator can be installed on either side or on top of conduits, cables, or piping. The insulating wire separator is preferably composed of a resilient material such as plastic or rubber, so that the insulating wire separator can be resiliently deformed to receive conduits, cables, or piping as well as tracer wires. The insulating wire separator is preferably color coded, with a different color used for each utility.
    • 用于管道系统的绝缘线分离器,其保护埋管和电缆免受意外电荷损坏或熔化,或由雷击引起。 绝缘线分离器是用于将示踪线连接到导管,电缆或管道的多功能夹子装置。 示踪线用于允许使用常规检测方法检测掩埋的塑料管道,电缆或管道。 绝缘线分离器包括具有外部加强肋的主导管接收部分。 绝缘线分离器包括连接到线夹部分的臂部分。 沿主臂部分,靠近主导管接收部分是板部分。 绝缘线分离器可以安装在导管,电缆或管道的任一侧或顶部。 绝缘线分离器优选由诸如塑料或橡胶的弹性材料组成,使得绝缘线分离器可以弹性变形以接收导管,电缆或管道以及示踪线。 绝缘线分离器优选为彩色编码,具有用于每个实用程序的不同颜色。