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    • 1. 发明申请
    • MULTIPLE OUTPUT DYNAMICALLY REGULATED CHARGE PUMP POWER CONVERTER
    • 多输出动态调节充电泵功率转换器
    • WO0219508A3
    • 2002-06-06
    • PCT/US0126661
    • 2001-08-27
    • UNIV ILLINOIS
    • NEBRIGIC DRAGAN DANILOJEVTITCH MILAN MARCELGARTSTEIN VLADIMIRMILAM WILLIAM THOMASSHERRILL JAMES VIGBUSKO NICHOLASHANSEN PETER
    • H02M3/07
    • H02M3/07H02M2001/009H02M2003/072
    • A charge pump power converter efficiently provides electrical power by dynamically controlling a switch matrix (48) of the charge pump (44). Instead of open-loop oscillator-based control, a dynamic controller (50) provides power upon demand by sensing the output voltage and changing the operating frequency of the charge pump in response. Moreover, this closed-loop dynamic control intrinsically voltage regulates the output voltage of the charge pump power converter without the inefficient addition of a step-down voltage regulator, downstream of the power converter. Additional efficiencies are achieved through maintaining the voltage ripple across the fly capacitor (Cf) and/or the load capacitor (Cl). Also, a three-state control scheme is used to charge the fly capacitor, wait for the output voltage to drop to a predetermined level, and discharge the fly capacitor. Furthermore, a multiple-output charge pump power converter provides multiple voltage levels for devices such as portable communication electronic devices.
    • 电荷泵功率转换器通过动态地控制电荷泵(​​44)的开关矩阵(48)来有效地提供电力。 代替基于开环振荡器的控制,动态控制器(50)根据需要通过感测输出电压和响应地改变电荷泵的工作频率来提供功率。 此外,这种闭环动态控制本质上是电压调节电荷泵功率转换器的输出电压,而不会在功率转换器的下游没有降压稳压器的低效添加。 通过保持跨越电容器(Cf)和/或负载电容器(C1)的电压纹波来实现额外的效率。 此外,使用三态控制方案对飞电容器进行充电,等待输出电压下降到预定电平,并对放电电容器放电。 此外,多输出电荷泵功率转换器为诸如便携式通信电子设备的装置提供多个电压电平。
    • 2. 发明申请
    • DYNAMICALLY-CONTROLLED, INTRINSICALLY REGULATED CHARGE PUMP POWER CONVERTER
    • 动态控制,内部调节充电泵功率转换器
    • WO0171895A3
    • 2002-06-27
    • PCT/US0109022
    • 2001-03-21
    • UNIV ILLINOIS
    • NEBRIGIC DRAGAN DANILOJEVTITCH MILAN MARCELGARTSTEIN VLADIMIRMILAM WILLIAM THOMASSHERRILL JAMES VIGBUSKO NICHOLASHANSEN PETER
    • H02J7/00H02M3/07H02M3/158
    • H02J7/0065H02M3/07H02M3/1588H02M2003/072H04R2225/31H04R2225/33Y02B40/90Y02B70/1466
    • A charge pump power converter efficiently provides electrical power by dynamically controlling a switch matrix of the charge pump. Instead of open-loop oscillator-based control, a dynamic controller provides power upon demand by sensing the output voltage and changing the operating frequency of the charge pump in response. Moreover, this closed-loop dynamic control intrinsically voltage regulates the output voltage of the charge pump power converter without the inefficient addition of a step-down voltage regulator, downstream of the power converter. In addition, this closed-loop dynamic control allows for maintaining a desired output voltage even with variations in the input voltage. Also, the dynamic control accommodates the advantages of using ultra-capacitors in the charge pump. The power converter is capable of operating with a sub-one volt input voltage incorporating low-threshold, low on-resistance power MOSFET switches in the switch matrix of the charge pump. A progressive start-up circuit further allows the power converter to start from a discharged state even with a sub-one volt input voltage.
    • 电荷泵功率转换器通过动态地控制电荷泵的开关矩阵来有效地提供电力。 代替基于开环振荡器的控制,动态控制器通过感测输出电压并响应于改变电荷泵的工作频率来提供功率。 此外,这种闭环动态控制本质上是电压调节电荷泵功率转换器的输出电压,而不会在功率转换器的下游没有降压稳压器的低效添加。 此外,该闭环动态控制允许即使在输入电压变化的情况下仍保持期望的输出电压。 此外,动态控制适应于在电荷泵中使用超级电容器的优点。 电源转换器能够在电荷泵的开关矩阵中使用包含低阈值,低导通电阻功率MOSFET开关的亚一伏输入电压进行工作。 逐行启动电路还允许功率转换器即使在亚一伏输入电压下也从放电状态开始。
    • 3. 发明申请
    • ULTRA-CAPACITOR BASED DYNAMICALLY REGULATED CHARGE PUMP POWER CONVERTER
    • 基于超导电容器的动态调节充电泵功率转换器
    • WO0171893A3
    • 2002-02-28
    • PCT/US0108455
    • 2001-03-16
    • UNIV ILLINOIS
    • NEBRIGIC DRAGAN DANILOJEVTITCH MILAN MARCELGARTSTEIN VLADIMIRMILAM WILLIAM THOMASSHERRILL JAMES VIGBUSKO NICHOLASHANSEN PETER
    • H02M3/07
    • H02M3/07H02M2003/072
    • A charge pump power converter efficiently provides electrical power by dynamically controlling a switch matrix of the charge pump that includes a flying ultra-capacitor C F. Instead of open-loop oscillator-based control, a dynamic controller provides power upon demand by sensing the output voltage and changing the operating frequency of the charge pump in response. Moreover, this closed-loop dynamic control intrinsically voltage regulates the output voltage of the charge pump power converter without the inefficient addition of a step-down voltage regulator, downstream of the power converter. In addition, this closed-loop dynamic control allows for maintaining a desired output voltage even with variations in the input voltage. Further efficiency is achieved by controlling the charging and discharging of the flying ultra-capacitor C F, both in rate of current change and in voltage ripple.
    • 电荷泵功率转换器通过动态地控制包括飞行超电容器C F的电荷泵的开关矩阵来有效地提供电力。 代替基于开环振荡器的控制,动态控制器通过感测输出电压并响应于改变电荷泵的工作频率来提供功率。 此外,这种闭环动态控制本质上是电压调节电荷泵功率转换器的输出电压,而不会在功率转换器的下游没有降压稳压器的低效添加。 此外,该闭环动态控制允许即使在输入电压变化的情况下仍保持期望的输出电压。 通过控制飞越的超级电容器C F的充电和放电,在电流变化率和电压纹波下都能实现更高的效率。
    • 4. 发明申请
    • ACTIVE PACKAGE FOR INTEGRATED CIRCUIT
    • 集成电路的有源封装
    • WO0139252A9
    • 2002-09-26
    • PCT/US0032198
    • 2000-11-22
    • UNIV ILLINOISNEBRIGIC DRAGAN DANILOJEVTITCH MILAN MARCELHUANG CHOW-CHIKERR KENDALL WILLIAM
    • NEBRIGIC DRAGAN DANILOJEVTITCH MILAN MARCELHUANG CHOW-CHIKERR KENDALL WILLIAM
    • H01L23/12H01L23/50H01L23/64H01L23/66H01L23/58
    • H01L23/647H01L23/50H01L23/642H01L23/645H01L2224/16
    • An active package for an integrated circuit may include an integrated circuit and an active component that is part of the circuit topology for the integrated circuit. The active component forms at least a portion of the housing for the integrated circuit. The integrated circuit may be housed in a shell formed by one or more discrete components. The active package may be formed in the same geometry and dimensions as a standard passive integrated circuit package, or may be formed in a shape to fit inside a standard or specially made battery package, or for another special application. A smart component may include a discrete component or a semiconductor-based resistor, capacitor or inductor, and a separate integrated circuit housed in the same housing as the discrete component or a semiconductor-based resistor, capacitor or inductor. The integrated circuit may control at least one electrical parameter of the discrete component or a semiconductor-based resistor, capacitor or inductor. In one embodiment, the integrated circuit may maintain the resistance, resistivity, capacitance, inductance, etc. of the component inside a narrow range in order to create a high-precision component regardless of changes in environmental changes such as temperature, pressure, humidity, etc.
    • 用于集成电路的有源封装可以包括集成电路和作为集成电路的电路拓扑的一部分的有源部件。 有源部件形成用于集成电路的壳体的至少一部分。 集成电路可以容纳在由一个或多个分立组件形成的外壳中。 有源封装可以与标准无源集成电路封装形成为相同的几何形状和尺寸,或者可以形成为适合标准或专门制造的电池封装内的形状,或者用于其他特殊应用。 智能组件可以包括分立组件或基于半导体的电阻器,电容器或电感器以及与分立组件或基于半导体的电阻器,电容器或电感器一起容纳在同一壳体中的单独的集成电路。 集成电路可以控制分立组件或基于半导体的电阻器,电容器或电感器的至少一个电参数。 在一个实施例中,集成电路可以将部件的电阻,电阻率,电容,电感等保持在窄范围内,以便创建高精度部件,而不管环境变化如温度,压力,湿度等的变化。 等等