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    • 1. 发明授权
    • Resonant frequency tracking system and method for use in a radio frequency (RF) power supply
    • 用于射频(RF)电源的谐振频率跟踪系统和方法
    • US06730894B2
    • 2004-05-04
    • US10302981
    • 2002-11-25
    • Leslie L. ThompsonGary A. SchwenckDaniel J. Lincoln
    • Leslie L. ThompsonGary A. SchwenckDaniel J. Lincoln
    • H05B608
    • H02M7/48H05B6/04H05B6/06
    • An RF power supply that is capable of tracking rapid changes in the resonant frequency of a load and capable of quickly responding to varying load conditions so as to deliver the desired amount of power. The present invention also provides an RF power supply capable of delivering a wide range of power over a broad frequency range to a load that is remotely located from the power supply. According to one embodiment, the RF power supply includes a direct current (DC) voltage source that provides a DC voltage within a predetermined voltage range; an amplifier, coupled to the DC voltage source, that provides an alternating voltage to a tank circuit connected to an output of the RF power supply; a frequency controller, coupled to the amplifier, to set the frequency of the alternating voltage produced by the amplifier; and a sensor, coupled to the load, to provide a signal to the frequency controller, where the frequency controller sets the frequency of the alternating voltage based on the signal received from the sensor.
    • 一种RF电源,其能够跟踪负载的谐振频率的快速变化,并且能够快速响应于变化的负载条件,以便输送期望的功率量。 本发明还提供一种RF电源,其能够在宽的频率范围内向远离电源的负载提供宽范围的电力。 根据一个实施例,RF电源包括提供DC电压在预定电压范围内的直流(DC)电压源; 耦合到DC电压源的放大器,其向连接到RF电源的输出端的电路提供交流电压; 耦合到放大器的频率控制器,用于设置由放大器产生的交流电压的频率; 以及耦合到负载的传感器,以向频率控制器提供信号,其中频率控制器基于从传感器接收的信号来设置交流电压的频率。
    • 3. 发明授权
    • System and method for providing RF power to a load
    • 向负载提供射频功率的系统和方法
    • US06271508B1
    • 2001-08-07
    • US09528182
    • 2000-03-17
    • Leslie L. ThompsonGary A. SchwenckDaniel J. Lincoln
    • Leslie L. ThompsonGary A. SchwenckDaniel J. Lincoln
    • H05B608
    • H02M7/48H05B6/04H05B6/06
    • An RF power supply that is capable of tracking rapid changes in the resonant frequency of a load and capable of quickly responding to varying load conditions so as to deliver the desired amount of power. The present invention also provides an RF power supply capable of delivering a wide range of power over a broad frequency range to a load that is remotely located from the power supply. According to one embodiment, the RF power supply includes a direct current (DC) voltage source that provides a DC voltage within a predetermined. voltage range; an amplifier, coupled to the DC voltage source, that provides an alternating voltage to a tank circuit connected to an output of the RF power supply; a frequency controller, coupled to the amplifier, to set the frequency of the alternating voltage produced by the amplifier, and a sensor, coupled to the load, to provide a signal to the frequency controller, where the frequency controller sets the frequency of the alternating voltage based on the signal received from the sensor.
    • 一种RF电源,其能够跟踪负载的谐振频率的快速变化,并且能够快速响应于变化的负载条件,以便输送期望的功率量。 本发明还提供一种RF电源,其能够在宽的频率范围内向远离电源的负载提供宽范围的电力。 根据一个实施例,RF电源包括提供预定值内的DC电压的直流(DC)电压源。 电压范围 耦合到DC电压源的放大器,其向连接到RF电源的输出端的电路提供交流电压; 频率控制器,耦合到放大器,以设置由放大器产生的交流电压的频率,以及耦合到负载的传感器,以向频率控制器提供信号,其中频率控制器设置交替的频率 基于从传感器接收的信号的电压。
    • 4. 发明授权
    • RF power supply
    • 射频电源
    • US06521874B2
    • 2003-02-18
    • US09922655
    • 2001-08-07
    • Leslie L. ThompsonGary A. SchwenckDaniel J. Lincoln
    • Leslie L. ThompsonGary A. SchwenckDaniel J. Lincoln
    • H05B608
    • H02M7/48H05B6/04H05B6/06
    • An RF power supply that is capable of tracking rapid changes in the resonant frequency of a load and capable of quickly responding to varying load conditions so as to deliver the desired amount of power. The present invention also provides an RF power supply capable of delivering a wide range of power over a broad frequency range to a load that is remotely located from the power supply. According to one embodiment, the RF power supply includes a direct current (DC) voltage source that provides a DC voltage within a predetermined voltage range; an amplifier, coupled to the DC voltage source, that provides an alternating voltage to a tank circuit connected to an output of the RF power supply; a frequency controller, coupled to the amplifier, to set the frequency of the alternating voltage produced by the amplifier; and a sensor, coupled to the load, to provide a signal to the frequency controller, where the frequency controller sets the frequency of the alternating voltage based on the signal received from the sensor.
    • 一种RF电源,其能够跟踪负载的谐振频率的快速变化,并且能够快速响应于变化的负载条件,以便输送期望的功率量。 本发明还提供一种RF电源,其能够在宽的频率范围内向远离电源的负载提供宽范围的电力。 根据一个实施例,RF电源包括提供DC电压在预定电压范围内的直流(DC)电压源; 耦合到DC电压源的放大器,其向连接到RF电源的输出端的电路提供交流电压; 耦合到放大器的频率控制器,用于设置由放大器产生的交流电压的频率; 以及耦合到负载的传感器,以向频率控制器提供信号,其中频率控制器基于从传感器接收的信号来设置交流电压的频率。
    • 5. 发明授权
    • System and method for providing RF power to a load
    • 向负载提供射频功率的系统和方法
    • US06255635B1
    • 2001-07-03
    • US09113518
    • 1998-07-10
    • Leslie L. ThompsonGary A. SchwenckDaniel J. Lincoln
    • Leslie L. ThompsonGary A. SchwenckDaniel J. Lincoln
    • H05B608
    • H02M7/48H05B6/04H05B6/06
    • An RF power supply that is capable of tracking rapid changes in the resonant frequency of a load and capable of quickly responding to varying load conditions so as to deliver the desired amount of power. The present invention also provides an RF power supply capable of delivering a wide range of power over a broad frequency range to a load that is remotely located from the power supply. According to one embodiment, the RF power supply includes a direct current (DC) voltage source that provides a DC voltage within a predetermined voltage range; an amplifier, coupled to the DC voltage source, that provides an alternating voltage to a tank circuit connected to an output of the RF power supply; a frequency controller, coupled to the amplifier, to set the frequency of the alternating voltage produced by the amplifier; and a sensor, coupled to the load, to provide a signal to the frequency controller, where the frequency controller sets the frequency of the alternating voltage based on the signal received from the sensor.
    • 一种RF电源,其能够跟踪负载的谐振频率的快速变化,并且能够快速响应于变化的负载条件,以便输送期望的功率量。 本发明还提供一种RF电源,其能够在宽的频率范围内向远离电源的负载提供宽范围的电力。 根据一个实施例,RF电源包括提供DC电压在预定电压范围内的直流(DC)电压源; 耦合到DC电压源的放大器,其向连接到RF电源的输出端的电路提供交流电压; 耦合到放大器的频率控制器,用于设置由放大器产生的交流电压的频率; 以及耦合到负载的传感器,以向频率控制器提供信号,其中频率控制器基于从传感器接收的信号来设置交流电压的频率。
    • 7. 发明授权
    • Class E amplifier with inductive clamp
    • E级放大器带感应钳
    • US07397676B2
    • 2008-07-08
    • US11619246
    • 2007-01-03
    • Daniel J. LincolnPaul G. Bennett
    • Daniel J. LincolnPaul G. Bennett
    • H02H7/122
    • H02H7/122H02M7/48H02M7/493H02M7/537H02M7/538H02M7/5387H03F1/52H03F3/2173H03F3/2176H03F2200/33H03F2200/441
    • A power supply including an inverter receiving a DC input signal from a DC input source (11). The inverter is implemented as a single-ended inverter. Each inverter is driven by a signal source (13A, 13B), which outputs an AC signal. The output from each inverter is input to a first stage harmonic filter. The power supply includes an output circuit that includes a rectifier (D1) arranged about a point so that if the inverter attempts to drive the point beyond a predetermined voltage, the rectifier conducts in order to return at least one of power and current to the DC input source. The output from the first harmonic filter (L1A, C1; L1B, C1) is output to a second harmonic filter (L2, C2) and is then output from the power supply.
    • 一种电源,包括从DC输入源(11)接收DC输入信号的逆变器。 逆变器实现为单端逆变器。 每个逆变器由输出AC信号的信号源(13A,13B)驱动。 每个逆变器的输出输入到第一级谐波滤波器。 电源包括输出电路,其包括围绕点布置的整流器(D1),使得如果逆变器试图将点驱动超过预定电压,则整流器进行导通,以将功率和电流中的至少一个返回到 直流输入源。 来自第一谐波滤波器(L 1 A,C 1; L 1 B,C 1)的输出被输出到二次谐波滤波器(L 2,C 2),然后从电源输出。
    • 8. 发明授权
    • Self-calibration timing circuit
    • 自校准定时电路
    • US5438599A
    • 1995-08-01
    • US129913
    • 1993-09-30
    • Daniel J. Lincoln
    • Daniel J. Lincoln
    • H03K3/011H03K3/03H03D3/02
    • H03K3/011H03K3/03
    • A method and apparatus for a "self-calibration timing circuit" is utilized to dynamically compensate for inherent performance differences between individual semiconductor dice, and for a wide range of different operating temperature and voltage parameters. The present invention accomplishes this by utilizing circuits which are deposed on the semiconductor die. These circuits consist of a relaxation oscillator running at the natural frequency of the silicon die, a gated counter counting the number of cycles of the relaxation oscillator frequency during a reference clock period to produce a ratio thereof, and a decision circuit that utilizes this ratio to optimize a system clock frequency for best system operation.
    • 用于“自校正定时电路”的方法和装置用于动态补偿各​​个半导体晶片之间以及宽范围的不同工作温度和电压参数的固有性能差异。 本发明通过利用被放置在半导体管芯上的电路来实现。 这些电路由在硅芯片的固有频率下运行的弛豫振荡器构成,门控计数器在参考时钟周期内对张弛振荡器频率的周期数进行计数,以产生其比率;以及判定电路,其利用该比率 优化系统时钟频率以实现最佳系统运行。
    • 9. 发明授权
    • Class E amplifier with inductive clamp
    • E级放大器带感应钳
    • US07180758B2
    • 2007-02-20
    • US10760174
    • 2004-01-16
    • Daniel J. LincolnPaul G. Bennett
    • Daniel J. LincolnPaul G. Bennett
    • H02H7/122
    • H02H7/122H02M7/48H02M7/493H02M7/537H02M7/538H02M7/5387H03F1/52H03F3/2173H03F3/2176H03F2200/33H03F2200/441
    • A power supply including an inverter receiving a DC input signal from a DC input source (11). The inverter is implemented as a single-ended inverter. Each inverter is driven by a signal source (13A, 13B), which outputs an AC signal. The output from each inverter is input to a first stage harmonic filter. The power supply includes an output circuit that includes a rectifier (D1) arranged about a point so that if the inverter attempts to drive the point beyond a predetermined voltage, the rectifier conducts in order to return at least one of power and current to the DC input source. The output from the first harmonic filter (L1A, C1; L1B, C1) is output to a second harmonic filter (L2, C2) and is then output from the power supply.
    • 一种电源,包括从DC输入源(11)接收DC输入信号的逆变器。 逆变器实现为单端逆变器。 每个逆变器由输出AC信号的信号源(13A,13B)驱动。 每个逆变器的输出输入到第一级谐波滤波器。 电源包括输出电路,其包括围绕点布置的整流器(D1),使得如果逆变器试图将点驱动超过预定电压,则整流器进行导通,以将功率和电流中的至少一个返回到 直流输入源。 来自第一谐波滤波器(L 1 A,C 1; L 1 B,C 1)的输出被输出到二次谐波滤波器(L 2,C 2),然后从电源输出。
    • 10. 发明授权
    • Class E amplifier with inductive clamp
    • E级放大器带感应钳
    • US06885567B2
    • 2005-04-26
    • US10657825
    • 2003-09-08
    • Daniel J. LincolnPaul G. Bennett
    • Daniel J. LincolnPaul G. Bennett
    • H01J37/32H02M7/48H02M7/493H02M7/537H02M7/538H02M7/5387H02H7/122
    • H02M7/493H01J37/32082H01J37/32522H02M7/537H02M7/538H02M7/5387
    • A power supply including an inverter receiving a DC input signal from a DC input source (11). The inverter is comprised of two half bridges (S1 A, S2A and S1B, S2B). Each inverter is driven by a signal source (13A, 13B), which outputs an AC signal. The output from each inverter is input to a first stage harmonic filter. The power supply includes an output circuit that includes first and second rectifiers (D1, D2) arranged about a point so that if the inverter attempts to drive the point beyond a predetermined first and second voltage, the respective rectifier conducts in order to return at least one of power and current to the DC input source. The output from the first harmonic filter (L1A, C1; L1B, C1) is output to a second harmonic filter (L2, C2) and is then output from the power supply.
    • 一种电源,包括从DC输入源(11)接收DC输入信号的逆变器。 逆变器由两个半桥(S1A,S2A和S1B,S2B)组成。 每个逆变器由输出AC信号的信号源(13A,13B)驱动。 每个逆变器的输出输入到第一级谐波滤波器。 电源包括输出电路,其包括围绕点布置的第一和第二整流器(D 1,D 2),使得如果逆变器试图将点驱动超过预定的第一和第二电压,则各个整流器进行导通以返回 至少一个功率和电流到DC输入源。 来自第一谐波滤波器(L 1 A,C 1; L 1 B,C 1)的输出被输出到二次谐波滤波器(L 2,C 2),然后从电源输出。