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首页> 外文期刊>Journal of semiconductor technology and science >An Optimized Stacked Driver for Synchronous Buck Converter
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An Optimized Stacked Driver for Synchronous Buck Converter

机译:同步降压转换器的优化堆栈驱动器

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Half-rail stacked drivers are used to reduce power consumption of the drivers for synchronous buck converters. In this paper, the stacked driver is optimized by matching the average charging and discharging currents used by high-side and low-side drivers. By matching the two currents, the average intermediate bias voltage can remain constant without the aid of the voltage regulator as long as the voltage ripple stays within the window defined by the hysteresis of the regulator. Thus the optimized driver in this paper can minimize the power consumption in the regulator. The current matching requirement yields the value for the intermediate bias voltage, which deviates from the half-rail voltage. Furthermore the required capacitance is also reduced in this design due to decreased charging current, which results in significantly reduced die area. The detailed analysis and design of the stacked driver is verified through simulations done using 5V MOSFET parameters of a typical 0.35- μm CMOS process. The difference in power loss between the conventional half-rail driver and the proposed driver is less than 1%. But the conventional half-rail driver has excess charge stored in the capacitor, which will be dissipated in the regulator unless reused by an external circuit. Due to the reduction in the required capacitance, the estimated saving in chip area is approximately 18.5% compared to the half-rail driver.
机译:半轨堆叠式驱动器用于减少同步降压转换器的驱动器的功耗。在本文中,通过匹配高端和低端驱动器使用的平均充电和放电电流来优化堆叠驱动器。通过使两个电流匹配,只要电压纹波保持在调节器滞后所定义的窗口内,平均中间偏置电压就可以在不借助电压调节器的情况下保持恒定。因此,本文中优化的驱动器可以将调节器的功耗降至最低。电流匹配要求产生中间偏置电压的值,该值偏离半轨电压。此外,由于减小了充电电流,因此在该设计中还减少了所需的电容,从而显着减小了芯片面积。通过使用典型的0.35μmCMOS工艺的5V MOSFET参数进行的仿真,可以验证堆叠驱动器的详细分析和设计。常规半轨驱动器与提出的驱动器之间的功率损耗差异小于1%。但是传统的半轨驱动器中有多余的电荷存储在电容器中,除非由外部电路重新使用,否则这些电荷会在调节器中消散。由于所需电容的减少,与半轨驱动器相比,估计的芯片面积节省约为18.5%。

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