会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • Charge current reduction for current limited switched power supply
    • 当前有限开关电源的充电电流降低
    • US08513920B2
    • 2013-08-20
    • US12384188
    • 2009-04-01
    • Stefano ScaldaferriEric MarschalkowskiChristian Wolf
    • Stefano ScaldaferriEric MarschalkowskiChristian Wolf
    • H02J7/00
    • H02M3/158H02J7/0052H02J2007/0059Y02B40/90
    • Circuits and methods for a switched power converter providing charge power for at least one battery and at the same time delivering current to operate an electronic device, wherein the converter is enabled to operate out of current limit mode, for the maximum possible range of system load requirements, have been achieved. The input current of the power converter is measured within each cycle-by-cycle, i.e. within each cycle of an external clock reference and the charge current is reduced if the input current exceeds a defined portion, e.g. 80% of the maximum allowable input current. The power converter may only enter current limited operation after the charge current has been already reduced to zero. Operating out of current limit mode ensures a maximum efficiency of the converter, maximize the current deliverable to a given load and minimizes subharmonics in the output current and voltage, thereby minimizing interference with other system component.
    • 用于为至少一个电池提供充电电力并且同时传送电流以操作电子设备的开关电力转换器的电路和方法,其中所述转换器能够在限流模式下操作,以实现系统负载的最大可能范围 要求已经实现。 功率转换器的输入电流在逐周期内,即在外部时钟参考的每个周期内测量,并且如果输入电流超过限定部分,则充电电流减小。 80%的最大允许输入电流。 功率转换器只能在充电电流已经降到零之后才进入电流限制运行。 超出电流限制模式的运行确保了转换器的最大效率,最大限度地提高给定负载的电流,并最大限度地减少输出电流和电压中的次谐波,从而最大限度地减少与其他系统组件的干扰。
    • 4. 发明授权
    • Analog current limit adjustment for linear and switching regulators
    • 线性和开关稳压器的模拟电流限制调整
    • US08564273B2
    • 2013-10-22
    • US13068634
    • 2011-05-16
    • Stefano ScaldaferriChristian WolfEric Marschalkowski
    • Stefano ScaldaferriChristian WolfEric Marschalkowski
    • G05F5/00G05F1/565
    • H02M3/156
    • Circuits and methods for dynamic adjustment of the current limit of a power management unit to avoid unwanted automatic interruption of the power flow have been disclosed. The invention can be applied to switched and linear DC-to-DC converters. The power management unit is automatically adjusted to the output resistance of a power source (including interconnect resistance). The invention maximizes the time and hence the power transferred from a power management unit to the system (including the battery, in case of battery operated systems). The input current is reduced, thus increasing the input voltage in case of a high voltage drop across the internal resistance including interconnections between power source and power management unit.
    • 已经公开了用于动态调整功率管理单元的电流限制以避免不必要的电力流的自动中断的电路和方法。 本发明可以应用于开关和线性DC-DC转换器。 电源管理单元自动调整为电源的输出电阻(包括互连电阻)。 本发明最大限度地延长了从电力管理单元传送到系统(包括电池,在电池供电系统的情况下)的时间,从而使电力最大化。 输入电流减小,从而在包括电源和电源管理单元之间的互连的内部电阻上的高压降的情况下增加输入电压。
    • 5. 发明申请
    • Analog current limit adjustment for linear and switching regulators
    • 线性和开关稳压器的模拟电流限制调整
    • US20120268094A1
    • 2012-10-25
    • US13068634
    • 2011-05-16
    • Stefano ScaldaferriChristian WolfEric Marschalkowski
    • Stefano ScaldaferriChristian WolfEric Marschalkowski
    • G05F1/571
    • H02M3/156
    • Circuits and methods for dynamic adjustment of the current limit of a power management unit to avoid unwanted automatic interruption of the power flow have been disclosed. The invention can be applied to switched and linear DC-to-DC converters. The power management unit is automatically adjusted to the output resistance of a power source (including interconnect resistance). The invention maximizes the time and hence the power transferred from a power management unit to the system (including the battery, in case of battery operated systems). The input current is reduced, thus increasing the input voltage in case of a high voltage drop across the internal resistance including interconnections between power source and power management unit.
    • 已经公开了用于动态调整功率管理单元的电流限制以避免不必要的电力流的自动中断的电路和方法。 本发明可以应用于开关和线性DC-DC转换器。 电源管理单元自动调整为电源的输出电阻(包括互连电阻)。 本发明最大限度地延长了从电力管理单元传送到系统(包括电池,在电池供电系统的情况下)的时间,从而使电力最大化。 输入电流减小,从而在包括电源和电源管理单元之间的互连的内部电阻上的高压降的情况下增加输入电压。
    • 8. 发明申请
    • Charge current reduction for current limited switched power supply
    • 当前有限开关电源的充电电流降低
    • US20100237845A1
    • 2010-09-23
    • US12384188
    • 2009-04-01
    • Stefano ScaldaferriEric MarschalkowskiChristian Wolf
    • Stefano ScaldaferriEric MarschalkowskiChristian Wolf
    • G05F5/00
    • H02M3/158H02J7/0052H02J2007/0059Y02B40/90
    • Circuits and methods for a switched power converter providing charge power for at least one battery and at the same time delivering current to operate an electronic device, wherein the converter is enabled to operate out of current limit mode, for the maximum possible range of system load requirements, have been achieved. The input current of the power converter is measured within each cycle-by-cycle, i.e. within each cycle of an external clock reference and the charge current is reduced if the input current exceeds a defined portion, e.g. 80% of the maximum allowable input current. The power converter may only enter current limited operation after the charge current has been already reduced to zero. Operating out of current limit mode ensures a maximum efficiency of the converter, maximize the current deliverable to a given load and minimizes subharmonics in the output current and voltage, thereby minimizing interference with other system component.
    • 用于为至少一个电池提供充电电力并且同时传送电流以操作电子设备的开关电力转换器的电路和方法,其中所述转换器能够在限流模式下操作,以实现系统负载的最大可能范围 要求已经实现。 功率转换器的输入电流在逐周期内,即在外部时钟参考的每个周期内测量,并且如果输入电流超过限定部分,则充电电流减小。 80%的最大允许输入电流。 功率转换器只能在充电电流已经降到零之后才进入电流限制运行。 超出电流限制模式的运行确保了转换器的最大效率,最大限度地提高给定负载的电流,并最大限度地减少输出电流和电压中的次谐波,从而最大限度地减少与其他系统组件的干扰。
    • 9. 发明授权
    • Bidirectional current sense
    • 双向电流感
    • US08796998B2
    • 2014-08-05
    • US13068205
    • 2011-05-05
    • Christian WolfStefano Scaldaferri
    • Christian WolfStefano Scaldaferri
    • H02J7/16G01R31/08G05F1/00
    • G01R31/3613G01R19/0092
    • Method and circuits for sensing a bidirectional current without requiring an external sense resistor are disclosed. In a preferred embodiment the invention is applied for fuel gauging of one or more batteries and comprises a charger/active diode, which can source current into the battery and sink current from the battery to supply a mobile electronic device. The invention can be applied to any other application requiring sensing of bidirectional currents. A regulated cascode forces a voltage drop over a power transistor and a sense transistor to be the same. A feedback current is measured by an ADC. The integration of these current measurements over time is equal to the actual charge of the battery.
    • 公开了用于感测双向电流而不需要外部检测电阻器的方法和电路。 在优选实施例中,本发明应用于一个或多个电池的燃料测量,并且包括充电器/有源二极管,其可以将电流流入电池并从电池吸收电流以供应移动电子设备。 本发明可以应用于需要感测双向电流的任何其它应用。 调节共源共栅势必强制功率晶体管和感测晶体管上的电压降相同。 反馈电流由ADC测量。 随着时间的推移,这些电流测量的集成等于电池的实际充电量。
    • 10. 发明申请
    • Bidirectional current sense
    • 双向电流感
    • US20120268075A1
    • 2012-10-25
    • US13068205
    • 2011-05-05
    • Christian WolfStefano Scaldaferri
    • Christian WolfStefano Scaldaferri
    • H02J7/04G01N27/416G01R19/00
    • G01R31/3613G01R19/0092
    • Method and circuits for sensing a bidirectional current without requiring an external sense resistor are disclosed. In a preferred embodiment the invention is applied for fuel gauging of one or more batteries and comprises a charger/active diode, which can source current into the battery and sink current from the battery to supply a mobile electronic device. The invention can be applied to any other application requiring sensing of bidirectional currents. A regulated cascode forces a voltage drop over a power transistor and a sense transistor to be the same. A feedback current is measured by an ADC. The integration of these current measurements over time is equal to the actual charge of the battery.
    • 公开了用于感测双向电流而不需要外部检测电阻器的方法和电路。 在优选实施例中,本发明应用于一个或多个电池的燃料测量,并且包括充电器/有源二极管,其可以将电流流入电池并从电池吸收电流以供应移动电子设备。 本发明可以应用于需要感测双向电流的任何其它应用。 调节共源共栅势必强制功率晶体管和感测晶体管上的电压降相同。 反馈电流由ADC测量。 随着时间的推移,这些电流测量的集成等于电池的实际充电量。