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    • 41. 发明申请
    • POWER SUPPLY CIRCUIT
    • 电源电路
    • US20120043953A1
    • 2012-02-23
    • US13206819
    • 2011-08-10
    • Takuro OHMARU
    • Takuro OHMARU
    • G05F1/618
    • H02M3/156
    • In the case where the duty cycle of the PWM signal exists and the duty cycle of the PWM signal is constant for a certain period, a feedback control circuit is operated intermittently with the duty cycle fixed. Specifically, a power supply circuit includes an A/D converter circuit for forming a digital value based on an analog value obtained by monitoring an output voltage based on a reference voltage, a digital filter circuit for smoothing the digital value, a PWM signal generator circuit for generating a PWM signal based on an output value of the digital filter circuit, and an operation mode control circuit for controlling a circuit operation mode based on the duty cycle of the PWM signal.
    • 在存在PWM信号的占空比并且PWM信号的占空比在一定时间内恒定的情况下,反馈控制电路在占空比固定的情况下间歇地操作。 具体地说,电源电路包括A / D转换器电路,用于基于通过基于参考电压监视输出电压获得的模拟值形成数字值,用于平滑数字值的数字滤波器电路,PWM信号发生器电路 用于基于数字滤波器电路的输出值产生PWM信号;以及操作模式控制电路,用于基于PWM信号的占空比来控制电路操作模式。
    • 43. 发明申请
    • Converter device and uninterruptible power supply equipped with one such device
    • 转换器和不间断电源配备一个这样的设备
    • US20110260543A1
    • 2011-10-27
    • US13064652
    • 2011-04-06
    • Corentin Rizet
    • Corentin Rizet
    • H02J9/06G05F1/618
    • H02M1/34H02M7/48Y10T307/625
    • A three-level reversible converter comprising two main switching units respectively equipped with a first and second main switch, a main switching point, and a third main switch common to the two main switching units, comprising: capacitors connected between said main switching point and said three levels, a first two-level auxiliary switching unit connected to a first auxiliary switching point, a second three-level auxiliary switching unit connected to a second auxiliary switching point, and a transformer equipped with windings connected between the main switching point and the auxiliary switching points. An uninterruptible power supply provided with this converter.
    • 一种三电平可逆转换器,包括分别配备有两个主开关单元公共的第一和第二主开关,主开关点和公共的第三主开关的两个主开关单元,包括:连接在所述主开关点和所述 三级,连接到第一辅助切换点的第一二级辅助切换单元,连接到第二辅助切换点的第二三级辅助切换单元,以及配备有连接在主切换点和辅助切换点之间的线圈的变压器 切换点。 此转换器提供的不间断电源。
    • 44. 发明申请
    • SYSTEM AND METHOD OF INTERMITTENT DIODE BRAKING FOR MULTIPLE PHASE VOLTAGE REGULATOR
    • 用于多相电压调节器的间歇二极管制动系统和方法
    • US20110241640A1
    • 2011-10-06
    • US13047378
    • 2011-03-14
    • Weihong QiuChun CheungFaisal Ahmad
    • Weihong QiuChun CheungFaisal Ahmad
    • G05F1/618
    • H02M3/1584
    • A method of operating a regulator controller IC for performing intermittent diode braking for controlling a multiple phase voltage regulator. The method includes receiving at least one signal for detecting repetitive load transients, determining a rate of the repetitive load transients, generating diode braking control signals, each for applying diode braking to a corresponding one of multiple phases for at least one load transient when the repetitive load transients are below a first rate, and controlling the diode braking control signals to drop application of diode braking of at least one phase for at least one load transient when the repetitive load transients are at least the first rate. The method may include rotating the application of diode braking among the phases during successive applications of diode braking. The method may include dropping an increased number of phases for diode braking as the rate of repetitive load transients is increased.
    • 一种用于执行用于控制多相电压调节器的间歇二极管制动的调节器控制器IC的方法。 该方法包括接收至少一个用于检测重复负载瞬变的信号,确定重复负载瞬变的速率,产生二极管制动控制信号,每个用于将二极管制动施加到至少一个负载瞬变的相应的一个相, 当重复负载瞬变至少为第一速率时,负载瞬变低于第一速率,并且控制二极管制动控制信号以降低至少一个相位的二极管制动的至少一个负载瞬变的应用。 该方法可以包括在二极管制动的连续应用期间在相间旋转二极管制动的应用。 该方法可以包括当重复负载瞬变的速率增加时,减少用于二极管制动的增加的相位数。
    • 46. 发明申请
    • Power regulator and controlling method thereof
    • 电力调节器及其控制方法
    • US20110215782A1
    • 2011-09-08
    • US12932183
    • 2011-02-18
    • Shuai Cheng
    • Shuai Cheng
    • G05F1/618
    • G05F1/10
    • Methods and circuits related to power regulation are disclosed. In one embodiment, a power regulator for converting an input electrical signal to an output electrical signal to supply power to a load, can include: (i) a power stage having switching devices and a filter; (ii) a regulation signal generator for the switching devices that includes a feedback circuit and a PWM, the feedback circuit receiving an output signal from the power stage, the PWM receiving an output from the feedback circuit, and generating a PWM control signal; (iii) a constant time generator receiving the PWM control signal and generating a constant time signal based on the PWM control signal duty cycle; and (iv) a logic/driving circuit receiving the PWM control signal and the constant time signal, and controlling operation of the switching devices to modulate the output signal from the power stage, and maintaining a pseudo constant operation frequency.
    • 公开了与功率调节相关的方法和电路。 在一个实施例中,用于将输入电信号转换为输出电信号以向负载供电的功率调节器可以包括:(i)具有开关装置和滤波器的功率级; (ii)用于包括反馈电路和PWM的开关装置的调节信号发生器,所述反馈电路接收来自所述功率级的输出信号,所述PWM接收来自所述反馈电路的输出,以及产生PWM控制信号; (iii)恒定时间发生器接收所述PWM控制信号,并且基于所述PWM控制信号占空比产生恒定时间信号; 以及(iv)接收所述PWM控制信号和所述恒定时间信号的逻辑/驱动电路,以及控制所述开关器件的操作以调制来自所述功率级的输出信号,以及维持伪恒定工作频率。
    • 47. 发明申请
    • DC-TO-DC CONVERTER
    • 直流到直流转换器
    • US20110199065A1
    • 2011-08-18
    • US13094234
    • 2011-04-26
    • Tomohiro KUME
    • Tomohiro KUME
    • G05F1/618
    • H02M3/156
    • A DC-to-DC converter includes a triangular wave generator, a variable gain amplifier configured to amplify an error between a reference voltage and a feedback voltage which is a feedback of an output voltage so that a gain relatively decreases as an input voltage increases, and relatively increases as the input voltage decreases, and a comparator configured to compare an output of the triangular wave generator with an output of the variable gain amplifier. The variable gain amplifier includes a differential pair configured to convert the feedback voltage and the reference voltage into currents, a Gilbert cell circuit configured to differentially receive the currents output from the differential pair, an output conversion circuit configured to convert differential outputs from the Gilbert cell circuit into a single output, and a tail current source configured to supply, to the differential pair, tail currents having a magnitude corresponding to the input voltage.
    • DC-DC转换器包括三角波发生器,可变增益放大器,被配置为放大参考电压和作为输出电压的反馈的反馈电压之间的误差,使得增益随着输入电压的增加而相对减小, 并且随着输入电压降低而相对增加,并且比较器被配置为将三角波发生器的输出与可变增益放大器的输出进行比较。 可变增益放大器包括被配置为将反馈电压和参考电压转换成电流的差分对,配置成差分地接收从差分对输出的电流的吉尔伯特单元电路,被配置为转换来自吉尔伯特单元的差分输出的输出转换电路 电路转换成单个输出,并且尾电流源被配置为向差分对提供具有对应于输入电压的幅度的尾部电流。
    • 49. 发明申请
    • Synchronous buck converter using shielded gate field effect transistors
    • 同步降压转换器采用屏蔽栅场效应晶体管
    • US20110163732A1
    • 2011-07-07
    • US12845999
    • 2010-07-29
    • Steven SappAshok ChallaChristopher B. Kocon
    • Steven SappAshok ChallaChristopher B. Kocon
    • G05F1/618
    • H01L29/7813H01L29/407H01L29/7803
    • A synchronous buck converter includes a high-side switch and a low-side switch serially coupled to one another. The low-side switch includes a field effect transistor that comprises: a trench extending into a drift region of the field effect transistor; a shield electrode in a lower portion of the trench, wherein the shield electrode is insulated from the drift region by a shield dielectric; a gate electrode in the trench over the shield electrode, wherein the gate electrode is insulated from the shield electrode by an inter-electrode dielectric; source regions adjacent the trench; a source metal contacting the source regions; and a resistive element having one end contacting the shield electrode and another end contacting the source metal in the field effect transistor.
    • 同步降压转换器包括彼此串联耦合的高侧开关和低侧开关。 低侧开关包括场效应晶体管,其包括:延伸到场效应晶体管的漂移区域的沟槽; 在所述沟槽的下部中的屏蔽电极,其中所述屏蔽电极通过屏蔽电介质与所述漂移区域绝缘; 在所述屏蔽电极上的沟槽中的栅电极,其中所述栅电极通过电极间电介质与所述屏蔽电极绝缘; 与沟槽相邻的源区; 源极金属与源极区域接触; 以及电阻元件,其一端接触屏蔽电极,另一端接触场效应晶体管中的源极金属。
    • 50. 发明申请
    • SWITCHING VOLTAGE REGULATOR AND RELATED FEED-FORWARD CONTROL METHOD
    • 开关电压调节器及相关进给控制方法
    • US20110148372A1
    • 2011-06-23
    • US12970612
    • 2010-12-16
    • Adalberto MarianiGiulio Renato Corva
    • Adalberto MarianiGiulio Renato Corva
    • G05F1/618
    • H02M3/156H02M2001/0022H02M2001/0025H02M2003/1586H03K7/08
    • A method of controlling a pulse width modulated (PWM) voltage regulator including a control circuit of a power stage, and a circuit configured to determine a duration of charge phases and further configured to receive a charge signal and to generate a logic command may include controlling, using the control circuit, switches of the power stage as a function of the logic command at an end of a charge phase and at a start of a discharge phase of an output capacitance. The method may also include generating the charge signal to be one of enabled and disabled during charge phases and another of enabled and disabled during discharge phases, and delaying, at each PWM cycle, the logic command with respect to a previous PWM cycle to compensate at least one of a phase and a frequency difference between each PWM cycle and a reference clock signal.
    • 一种控制包括功率级的控制电路的脉宽调制(PWM)电压调节器的方法,以及配置成确定充电阶段的持续时间并进一步被配置为接收充电信号并产生逻辑命令的电路可以包括控制 在充电阶段结束时和在输出电容的放电阶段开始时,使用控制电路,功率级的开关作为逻辑指令的函数。 该方法还可以包括在充电阶段期间将充电信号产生为使能和禁用之一,以及在放电阶段期间启用和禁用另一个充电信号,并在每个PWM周期延迟关于先前PWM周期的逻辑指令以在 每个PWM周期和参考时钟信号之间的相位和频率差中的至少一个。