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    • 1. 发明授权
    • Controlled closing of MEMS switches
    • MEMS开关的控制闭合
    • US08653699B1
    • 2014-02-18
    • US12117976
    • 2008-05-09
    • David C. DeningTony Ivanov
    • David C. DeningTony Ivanov
    • H01H3/00
    • H01H1/0036H01H1/66H01H59/0009Y10T307/747Y10T307/76
    • For the present invention, multiple MEMS switches that are similar in nature are provided along with switch control circuitry. Of the MEMS switches, one MEMS switch is reserved as a dummy MEMS switch while the one or more remaining MEMS switches are active, and are thus used during normal operation of the electronic circuitry that incorporates the MEMS switches. The switch control circuitry will use the dummy MEMS switch to adaptively determine an actuation signal that is sufficient to effect a near closing or soft closing of the dummy MEMS switch. The switch control circuitry may also determine a closing time that defines a time when the dummy MEMS switch closes relative to application of the actuation signal. The actuation signal and closing time may be updated regularly, if not continuously.
    • 对于本发明,本质上类似的多个MEMS开关与开关控制电路一起提供。 在MEMS开关中,一个MEMS开关被保留为虚拟MEMS开关,而一个或多个剩余的MEMS开关是有源的,并且因此在包含MEMS开关的电子电路的正常操作期间被使用。 开关控制电路将使用虚拟MEMS开关来自适应地确定足以实现虚拟MEMS开关的接近闭合或软闭合的致动信号。 开关控制电路还可以确定关闭时间,该闭合时间限定了虚拟MEMS开关相对于致动信号的施加而闭合的时间。 致动信号和关闭时间可以定期更新,如果不是连续的。
    • 4. 发明授权
    • Matching network for a dual mode RF amplifier
    • 双模RF放大器的匹配网络
    • US06658265B1
    • 2003-12-02
    • US09557547
    • 2000-04-25
    • Victor E. SteelDavid C. Dening
    • Victor E. SteelDavid C. Dening
    • H04M100
    • H03F3/191H03F2200/111H03F2200/451H03H7/38H03H2007/386H04B1/0003H04B1/0458H04B1/406
    • The present invention provides a dual mode amplifier capable of operating in a common (even) mode for one frequency band and a differential (odd) mode for a second frequency band. In the common mode, the amplifier provides two identical signals to a matching network, and in the differential mode, the amplifier provides two signals that are 180° out-of-phase from one another to the matching network. The matching network is configured to maintain the same input and output impedance regardless of whether the amplifier is operating in the common or differential mode. Furthermore, the matching network is preferably configured to terminate second harmonics for each frequency band without affecting the fundamental tone for the other bands, even if the bands are an octave apart. Since the matching network operates on two signals, either common or differential signals, a power combining network is typically required to combine the two signals into a single signal for transmission.
    • 本发明提供一种双模式放大器,其能够以用于第二频带的一个频带和差分(奇数)模式的公共(偶数)模式工作。 在共模中,放大器为匹配网络提供两个相同的信号,在差分模式下,放大器提供两个信号,这两个信号彼此相差180°到匹配网络。 匹配网络被配置为保持相同的输入和输出阻抗,而不管放大器是工作在公共还是差分模式。 此外,匹配网络优选地被配置为终止每个频带的二次谐波,而不影响其他频带的基本音调,即使频带是八度分开。 由于匹配网络在两个信号(通用或差分信号)上工作,通常需要功率组合网络来将两个信号组合成单个信号用于传输。
    • 5. 发明授权
    • Adaptive impedance translation circuit
    • 自适应阻抗转换电路
    • US08472910B1
    • 2013-06-25
    • US12498084
    • 2009-07-06
    • Marcelo J. FrancoDavid C. DeningRobert J. Baeten
    • Marcelo J. FrancoDavid C. DeningRobert J. Baeten
    • H04B1/26
    • H04B1/0458H03D7/161H03D9/06H04B1/18
    • The present invention relates to an adaptable RF impedance translation circuit that includes a first group of inductive elements cascaded in series between an input and an output without any series switching elements, a second group of inductive elements cascaded in series, and a group of switching elements that are capable of electrically coupling the first group of inductive elements to the second group of inductive elements. Further, the adaptable RF impedance translation circuit includes at least one variable shunt capacitance circuit electrically coupled between a common reference and at least one connection node in the adaptable RF impedance translation circuit, which includes control circuitry to select either an OFF state or an ON state associated with each of the switching elements and to select a capacitance associated with each variable shunt capacitance circuit to control impedance translation characteristics of the adaptable RE impedance translation circuit.
    • 本发明涉及一种适应性RF阻抗转换电路,其包括串联在输入和输出之间的第一组感性元件,不包括任何串联开关元件,串联级联的第二组电感元件和一组开关元件 其能够将第一组电感元件电耦合到第二组电感元件。 此外,适应性RF阻抗转换电路包括电耦合在适应性RF阻抗转换电路中的公共参考和至少一个连接节点之间的至少一个可变分流电容电路,其包括选择OFF状态或ON状态的控制电路 与每个开关元件相关联并且选择与每个可变分流电容电路相关联的电容以控制可适应的RE阻抗转换电路的阻抗平移特性。
    • 6. 发明授权
    • Switching power converter that supports both a boost mode of operation and a buck mode of operation using a common duty-cycle timing signal
    • 使用公共占空比定时信号同时支持升压工作模式和降压工作模式的开关电源转换器
    • US07336056B1
    • 2008-02-26
    • US11619892
    • 2007-01-04
    • David C. Dening
    • David C. Dening
    • G05F1/10G05F1/652G05F1/24
    • H02M3/157H02M3/1582H02M3/1588Y02B70/1466
    • The present invention is a switching power converter that supports both a boost mode of operation and a buck mode of operation, uses one energy storage element, transitions smoothly between boosting and bucking, and avoids simultaneous boosting and bucking. The switching power converter uses a common duty-cycle timing signal and a common duty-cycle setpoint signal to provide a smooth transition between boosting and bucking, and to eliminate overlap between boosting and bucking. A voltage input error integrator is used to integrate out errors between an output voltage and a setpoint voltage to provide the common duty-cycle setpoint signal. Duty-cycle error integrators are used to integrate out errors between the common duty-cycle setpoint signal and the actual duty-cycle of either the buck converter or the boost converter. Non-overlapping boost operating and buck operating ranges are provided by the common duty-cycle setpoint signal.
    • 本发明是一种支持升压操作模式和降压操作模式的开关电源转换器,使用一个能量存储元件,在升压和降压之间平滑地转换,并避免同时升压和降压。 开关功率转换器使用公共占空比定时信号和公共占空比设定点信号来提供升压和降压之间的平滑过渡,并消除升压和降压之间的重叠。 电压输入误差积分器用于整合输出电压和设定值电压之间的误差,以提供公共占空比设定点信号。 负载周期误差积分器用于整合公共占空比设定点信号与降压转换器或升压转换器的实际占空比之间的误差。 非重叠升压操作和降压工作范围由公共占空比设定值信号提供。
    • 9. 发明授权
    • Integrated lateral high-voltage metal oxide semiconductor field effect transistor
    • 集成横向高压金属氧化物半导体场效应晶体管
    • US07989889B1
    • 2011-08-02
    • US12140491
    • 2008-06-17
    • Daniel Charles KerrDavid C. DeningJulio Costa
    • Daniel Charles KerrDavid C. DeningJulio Costa
    • H01L29/66
    • H01L29/868H01L29/1045H01L29/66659H01L29/7436H01L29/7835H03F3/213
    • The present invention relates to integration of a lateral high-voltage metal oxide semiconductor field effect transistor (LHV-MOSFET) with other circuitry on a semiconductor wafer, which may be fabricated using low-voltage foundry technology, such as a low-voltage complementary metal oxide semiconductor (LV-CMOS) process. The other circuitry may include low-voltage devices, such as switching transistors used in logic circuits, computer circuitry, and the like, or other high-voltage devices, such as a microelectromechanical system (MEMS) switch. The source to drain voltage capability of the LHV-MOSFET may be increased by using an intrinsic material between the source and the drain. The gate voltage capability of the LHV-MOSFET may be increased by using an insulator material, such as a thick oxide, between the gate and the channel of the LHV-MOSFET.
    • 本发明涉及横向高压金属氧化物半导体场效应晶体管(LHV-MOSFET)与半导体晶片上的其它电路的集成,其可以使用低压铸造技术制造,例如低电压互补金属 氧化物半导体(LV-CMOS)工艺。 另一电路可以包括诸如用于逻辑电路,计算机电路等的开关晶体管或诸如微机电系统(MEMS)开关的其他高电压器件的低电压器件。 可以通过在源极和漏极之间使用本征材料来增加LHV-MOSFET的漏极电压能力源。 可以通过在LHV-MOSFET的栅极和沟道之间使用诸如厚氧化物的绝缘体材料来增加LHV-MOSFET的栅极电压能力。
    • 10. 发明授权
    • Amplitude modulated switching voltage regulator
    • 幅度调制开关电压调节器
    • US07557551B1
    • 2009-07-07
    • US11457557
    • 2006-07-14
    • Thomas A. SomervilleMichael R. KayDavid C. Dening
    • Thomas A. SomervilleMichael R. KayDavid C. Dening
    • G05F1/00H01Q11/12
    • H04B1/0483
    • The present invention is a high efficiency AM switching voltage regulator used to provide an AM output signal to an AM RF power amplifier, wherein the AM output signal is proportional to an AM input signal. The AM output signal includes an AM output voltage and an AM supply current, which represents a sum of an AM output current and a shunt current The AM output voltage provides an envelope supply voltage to the AM RF power amplifier. The switching voltage regulator includes a switching current regulator coupled to a linear shunt voltage regulator. The switching current regulator provides AM output current for the AM RF power amplifier and a small amount of shunt current for the linear shunt voltage regulator, which regulates the AM output voltage by controlling the shunt current. The switching current regulator regulates the AM supply current in proportion to a time-averaged value of shunt current.
    • 本发明是一种用于向AM RF功率放大器提供AM输出信号的高效AM开关电压调节器,其中AM输出信号与AM输入信号成比例。 AM输出信号包括AM输出电压和AM电源电流,其表示AM输出电流和分流电流之和.AM输出电压为AM RF功率放大器提供包络电源电压。 开关稳压器包括耦合到线性分流电压调节器的开关电流调节器。 开关电流调节器为AM RF功率放大器提供AM输出电流,并为线性分流电压调节器提供少量并联电流,通过控制分流电流来调节AM输出电压。 开关电流调节器与分流电流的时间平均值成比例地调节AM电源电流。