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    • 4. 发明申请
    • CHARGE PUMP CIRCUIT, INTEGRATED CIRCUIT, ELECTRONIC DEVICE AND METHOD THEREFOR
    • 充电泵电路,集成电路,电子设备及其方法
    • US20160126831A1
    • 2016-05-05
    • US14872150
    • 2015-10-01
    • MediaTek Singapore Pte. Ltd.
    • Paul FowersManel Collados Asensio
    • H02M3/07
    • H02M3/07H02M1/36H02M2003/071
    • A charge pump circuit for generating a negative voltage has: a clock generator arranged to output at least one clock signal; a switched capacitor voltage inverter circuit including capacitive elements wherein the switched capacitor voltage inverter circuit receives the at least one clock signal and generates a negative voltage therefrom. The charge pump circuit further has a regulation control loop providing a feedback path from an output of the switched capacitor voltage inverter circuit to a supply input of the switched capacitor voltage inverter circuit, and an output arranged to output a generated negative voltage. The feedback path has an operational amplifier configured to generate a maximum charging supply voltage from a fed back level-shifted negative voltage and apply the maximum charging supply voltage to the input supply of the switched capacitor voltage inverter to charge at least one of the capacitive elements during a loop start up.
    • 用于产生负电压的电荷泵电路具有:时钟发生器,被布置为输出至少一个时钟信号; 包括电容元件的开关电容器电压逆变器电路,其中所述开关电容器电压反相器电路接收所述至少一个时钟信号并从其产生负电压。 电荷泵电路还具有调节控制环路,其提供从开关电容器电压逆变器电路的输出到开关电容器电压逆变器电路的电源输入端的反馈路径,以及布置成输出产生的负电压的输出。 反馈路径具有运算放大器,其被配置为从反馈电平移位负电压产生最大充电电源电压,并将最大充电电源电压施加到开关电容器电压逆变器的输入电源,以对至少一个电容元件充电 在循环启动期间。
    • 5. 发明授权
    • Charge pump power savings
    • 充电泵省电
    • US09312755B2
    • 2016-04-12
    • US13785601
    • 2013-03-05
    • QUALCOMM Incorporated
    • Le WangVijayakumar Dhanasekaran
    • H03B1/00H03K3/00H02M3/07
    • H02M3/07H02M2003/071
    • Exemplary embodiments are directed to systems, devices, methods, and computer-readable media for reducing static and dynamic power consumption of a charge pump. In one embodiment, a device may include a plurality of switches, each switch of the plurality having a gate coupled to a dedicated driver of a plurality of drivers. The device may further include at least one clamp switch coupled to at least one driver of the plurality of drivers and configured to adjust a rail voltage of the at least one driver if an input voltage is greater than a threshold voltage. In another embodiment, the device may include a plurality of multiplexers, each multiplexer of the plurality of multiplexers coupled to a portion of an associated switch of the plurality of switches and configured to disable the portion of the associated switch if a clock frequency of the charge pump is below a threshold frequency.
    • 示例性实施例涉及用于减少电荷泵的静态和动态功耗的系统,设备,方法和计算机可读介质。 在一个实施例中,设备可以包括多个开关,多个开关中的每个开关具有耦合到多个驱动器的专用驱动器的栅极。 该装置还可以包括耦合到多个驱动器中的至少一个驱动器的至少一个钳位开关,并被配置为如果输入电压大于阈值电压则调整至少一个驱动器的轨道电压。 在另一个实施例中,设备可以包括多个多路复用器,多个复用器的每个多路复用器耦合到多个交换机中的相关联的开关的一部分,并且被配置为如果电荷的时钟频率 泵低于阈值频率。
    • 6. 发明申请
    • CHARGE PUMP CIRCUIT
    • 充电泵电路
    • US20160028306A1
    • 2016-01-28
    • US14822559
    • 2015-10-08
    • Cirrus Logic International Semiconductor Ltd.
    • John P. LessoPeter J. FrithJohn L. Pennock
    • H02M3/07H03G3/30
    • H02M3/07H02M2003/071H02M2003/072H03G3/30
    • A bipolar output charge pump circuit having a network of switching paths 110 for selectively connecting an input node (VV) and a reference node (VG) for connection to an input voltage, a first pair of output nodes (VP, VN), two pairs of flying capacitor nodes (CF1A, CF1B; CF2A, CF2B), and a controller for controlling the switching of the network of switching paths. The controller is operable to control the network of switching paths when in use with two flying capacitors (CF1, CF2) connected to the two pairs of flying capacitor nodes, to provide a first mode and a second mode when in use with two flying capacitors connected to the flying capacitor nodes, wherein at least the first mode corresponds to a bipolar output voltage of +/−3VV, +/−VV/5 or +/−VV/6.
    • 一种双极性输出电荷泵电路,具有用于选择性地连接输入节点(VV)和用于连接到输入电压的参考节点(VG)的开关路径110的网络,第一对输出节点(VP,VN),两对 的飞行电容器节点(CF1A,CF1B; CF2A,CF2B)和用于控制切换路径网络的切换的控制器。 当与两对飞跨电容器节点连接的两个浮动电容器(CF1,CF2)使用时,该控制器可操作以控制开关路径网络,以在连接两个飞行电容器时提供第一模式和第二模式 其中至少第一模式对应于+/- 3VV,+/- VV / 5或+/- VV / 6的双极性输出电压。
    • 7. 发明申请
    • DRIVE CIRCUIT AND METHOD
    • 驱动电路和方法
    • US20160020697A1
    • 2016-01-21
    • US14751370
    • 2015-06-26
    • Semiconductor Components Industries, LLC
    • Johan Camiel Julia Janssens
    • H02M3/158
    • H02M3/07H01L41/042H02M2003/071H04R3/00
    • In accordance with an embodiment, a transformer-less drive circuit is provided that includes a switch control network having an output terminal connected to a first switch and another output terminal connected to a second switch. A driver connected to the second switch. In accordance with another embodiment, a method for generating a drive signal is provided that includes charging a first energy storage element to a first voltage level and a second energy storage element to a second voltage level. The charge stored in the second energy storage element is increased so that the second energy storage element stores a voltage at a third voltage level. The terminals of the second energy storage element are alternately connected to a fourth voltage level. The second energy storage element is used to supply or drive a driver.
    • 根据实施例,提供了一种无变压器驱动电路,其包括具有连接到第一开关的输出端子和连接到第二开关的另一输出端子的开关控制网络。 连接到第二开关的驱动器。 根据另一个实施例,提供了一种用于产生驱动信号的方法,其包括将第一能量存储元件充电到第一电压电平并将第二能量存储元件充电到第二电压电平。 存储在第二能量存储元件中的电荷增加,使得第二能量存储元件将电压存储在第三电压电平。 第二能量存储元件的端子交替地连接到第四电压电平。 第二能量存储元件用于提供或驱动驾驶员。
    • 9. 发明申请
    • POWER CONVERTER
    • 电源转换器
    • US20150214848A1
    • 2015-07-30
    • US14606517
    • 2015-01-27
    • Denso Corporation
    • Kazuhiro UMETANI
    • H02M3/335H02M1/14
    • H02M3/07H02M1/14H02M1/32H02M7/103H02M2001/009H02M2001/346H02M2003/071H02M2003/072H02M2003/1586Y02B70/1491
    • In a power converter, at least two main current paths each including an inductor and a transistor are connected between input terminals, and at least two storage circuits each including capacitors are correspondingly connected to branch nodes of the main current paths. Diodes are connected between the storage circuits. The transistors of the main current paths are interleaved. When one of the transistors is turned off, a current flowing in the corresponding inductor flows into the corresponding storage circuit to turn on the diodes and to charge the capacitors of the corresponding storage circuit. When another one of the transistors is turned off, a current flowing in the corresponding inductor flows into the corresponding storage circuit to turn on the diodes and charge the capacitors of the corresponding storage circuit.
    • 在功率转换器中,每个包括电感器和晶体管的至少两个主电流路径连接在输入端子之间,并且每个包括电容器的至少两个存储电路相应地连接到主电流路径的分支节点。 二极管连接在存储电路之间。 主电流路径的晶体管是交错的。 当晶体管中的一个截止时,流过对应的电感器的电流流入对应的存储电路,以接通二极管并对相应的存储电路进行充电。 当另一个晶体管截止时,流过对应的电感器的电流流入对应的存储电路,以接通二极管并对相应的存储电路进行充电。