VOLTAGE REGULATOR WITH IMPROVED LOAD REGULATION USING ADAPTIVE BIASING
    1.
    发明申请
    VOLTAGE REGULATOR WITH IMPROVED LOAD REGULATION USING ADAPTIVE BIASING 有权
    使用自适应偏置改进负载调节的电压调节器

    公开(公告)号:US20050168272A1

    公开(公告)日:2005-08-04

    申请号:US10770149

    申请日:2004-02-02

    IPC分类号: G05F1/10 G05F1/565 G05F3/02

    CPC分类号: G05F1/565

    摘要: A low drop out voltage regulator (10) that receives an input voltage and generates a substantially constant output voltage includes a gain stage (12), a buffer stage (14), an output driver transistor (16), and first and second load current sense circuits (18, 20). The first load current sense circuit is connected between the output driver transistor and the buffer stage and adaptively increases a bias current of the buffer stage as a function of the load current. The second load current sense circuit is connected between the output driver transistor and the gain stage and adaptively decreases a bias current of the gain stage as the load current increases.

    摘要翻译: 接收输入电压并产生基本上恒定的输出电压的低压降稳压器(10)包括增益级(12),缓冲级(14),输出驱动晶体管(16)和第一和第二负载电流 感测电路(18,20)。 第一负载电流检测电路连接在输出驱动晶体管和缓冲级之间,并根据负载电流自适应地增加缓冲级的偏置电流。 第二负载电流检测电路连接在输出驱动晶体管和增益级之间,随着负载电流的增加自适应地减小增益级的偏置电流。

    POWER MANAGEMENT IN INTEGRATED CIRCUITS USING PROCESS DETECTION
    2.
    发明申请
    POWER MANAGEMENT IN INTEGRATED CIRCUITS USING PROCESS DETECTION 审中-公开
    使用过程检测的集成电路中的电源管理

    公开(公告)号:US20070152739A1

    公开(公告)日:2007-07-05

    申请号:US11617770

    申请日:2006-12-29

    IPC分类号: G05F1/10

    CPC分类号: G05F1/56

    摘要: A power management system for managing power in an integrated circuit includes a controller and a voltage generator. The controller generates a control signal based on one or more process corners of the integrated circuit. The voltage generator generates a supply voltage based on the control signal, and provides the supply voltage to the integrated circuit to manage the power within the integrated circuit.

    摘要翻译: 用于管理集成电路中的电力的电力管理系统包括控制器和电压发生器。 控制器基于集成电路的一个或多个处理角产生控制信号。 电压发生器基于控制信号产生电源电压,并且向集成电路提供电源电压以管理集成电路内的电力。

    Charge pump circuit for high side drive circuit and driver driving voltage circuit
    3.
    发明申请
    Charge pump circuit for high side drive circuit and driver driving voltage circuit 有权
    充电泵电路用于高侧驱动电路和驱动驱动电压电路

    公开(公告)号:US20060267671A1

    公开(公告)日:2006-11-30

    申请号:US11441415

    申请日:2006-05-25

    IPC分类号: G05F1/10

    摘要: A charge pump circuit for a high side drive circuit and a driver driving voltage circuit that stably output a voltage when input voltage is low. The charge pump circuit includes first and second transistors, first and second capacitors, and first to third diodes. The first capacitor has a high voltage side, connected to a load driving power supply voltage via the first diode, and a low voltage side, connected to the load driving power supply voltage via the first transistor or grounded via the second transistor driven in synchronization with the first transistor. The high voltage side is supplied, via the third diode, with a low side drive voltage that is as an output voltage of a low side charge pump, and functions to output high side drive voltage to a high side pre-driver circuit via the second diode.

    摘要翻译: 用于高侧驱动电路的电荷泵电路和当输入电压低时稳定地输出电压的驱动器驱动电压电路。 电荷泵电路包括第一和第二晶体管,第一和第二电容器以及第一至第三二极管。 第一电容器具有高电压侧,经由第一二极管连接到负载驱动电源电压,以及低压侧,经由第一晶体管连接到负载驱动电源电压,或者经由与第一晶体管同步驱动的第二晶体管接地 第一个晶体管。 高压侧通过第三二极管供给作为低端电荷泵的输出电压的低侧驱动电压,并且用于通过第二二极管将高侧驱动电压输出到高侧预驱动器电路 二极管。

    Voltage regulator having improved IR drop

    公开(公告)号:US20060170402A1

    公开(公告)日:2006-08-03

    申请号:US11047494

    申请日:2005-01-31

    IPC分类号: G05F1/56 G05F1/40

    CPC分类号: G05F1/56

    摘要: A regulated power source for supplying power to an external circuit includes a voltage sensing circuit and a voltage regulator. The voltage sensing circuit generates a feedback voltage by comparing voltage drops at a plurality of sense points within the external circuit. The feedback voltage is based on the maximum voltage drop at the sense points. The voltage regulator regulates the voltage supplied to the external circuit in accordance with the feedback voltage.