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Techniques for efficient power management.

机译:有效的电源管理技术。

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摘要

Rapid advances in the semiconductor industry have led to the proliferation of electronic devices and information technology. Complementary metal oxide semiconductor (CMOS) integrated circuit technology is being aggressively scaled according to Moore's law to meet the ever increasing demand for low power, low area and high performance. Minimizing the power density and high power efficiency are quintessential needs for today's electronics market. This research addresses the problem with the following contributions.;A bidirectional single supply level shifter design to reduce on-chip power supply routing congestion and increase efficiency in on-chip power distribution is proposed. It has a wide voltage shifting range, functional at low supply voltages and requires no special threshold voltage (VT) devices that increase the cost of fabrication. Further, it's flexible to operate at all combinations of supply voltages in the range and thus enables fine grain dynamic voltage scaling (DVS) required in on-chip power management. This dissertation also explores a low power, zero static current, reliable and high performance level shifter circuit to enable use of low voltage core transistors in high voltage designs.;This dissertation explores dierent ecient power supply designs to address power management at the supply generation level. Firstly, a high peak power efficiency discontinuous conduction mode (DCM) buck converter is proposed for portable applications. The proposed design has a very fast adaptive dead-time circuit, inherent pulse skipping mode during light loads to improve the overall eciency of a DCM converter. Secondly, a wide output voltage range digitally controlled single inductor dual output (SIDO) boost converter is proposed. The proposed minimum phase converter has no positive zero in the control to output transfer function of the boost plant and is linearized across operating points using input-output linearization technique, thus has flexibility to transition across dierent output voltages required in DVS environments. Further, the research also extends the analysis to a n-output converter. Lastly, this dissertation proposes use of nano-electromechanical (NEM) relays in integrated power management. NEM relay is an ideal switch and hence is a very promising class of emerging devices. This research explores NEMS and hybrid NEMS-CMOS based power management circuits for high power eciency. An ultra low power NEMS charge pump and a heterogeneous NEMS-CMOS based DCM buck converter are proposed for lower area and enhanced power efficiency.
机译:半导体行业的飞速发展导致电子设备和信息技术的激增。互补金属氧化物半导体(CMOS)集成电路技术正在根据摩尔定律进行大规模扩展,以满足对低功耗,小面积和高性能不断增长的需求。最小化功率密度和高功率效率是当今电子市场的基本需求。本研究通过以下贡献解决了该问题:提出了一种双向单电源电平转换器设计,以减少片上电源路由拥塞并提高片上配电效率。它具有宽电压范围,可在低电源电压下工作,并且不需要特殊的阈值电压(VT)器件,而这会增加制造成本。此外,它还可以灵活地在该范围内的所有电源电压组合下工作,因此可以实现片上电源管理所需的细粒度动态电压缩放(DVS)。本文还探讨了一种低功耗,零静态电流,可靠,高性能的电平转换器电路,以使低压核心晶体管能够在高压设计中使用。本论文探索了不同的有效电源设计,以解决电源产生级的电源管理问题。 。首先,提出了一种针对便携式应用的高峰值功率效率非连续传导模式(DCM)降压转换器。所提出的设计具有非常快速的自适应死区时间电路,在轻负载期间具有固有的脉冲跳跃模式,以提高DCM转换器的整体效率。其次,提出了一种宽输出电压范围的数控单电感双输出升压转换器。所提出的最小相位转换器在控制升压装置的输出传递函数时没有正零,并且使用输入-输出线性化技术在工作点之间进行了线性化,因此具有在DVS环境中所需的不同输出电压之间转换的灵活性。此外,研究还将分析扩展到n输出转换器。最后,本文提出了在集成电源管理中使用纳米机电继电器。 NEM继电器是理想的开关,因此是一类非常有前途的新兴设备。这项研究探索了基于NEMS和基于混合NEMS-CMOS的电源管理电路,以实现高功率效率。提出了一种超低功耗NEMS电荷泵和一个基于NEMS-CMOS的异构DCM降压转换器,以减小面积并提高电源效率。

著录项

  • 作者

    Manohar, Sujan Kundapur.;

  • 作者单位

    The University of Texas at Dallas.;

  • 授予单位 The University of Texas at Dallas.;
  • 学科 Engineering Electronics and Electrical.;Energy.;Nanotechnology.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 193 p.
  • 总页数 193
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 康复医学;
  • 关键词

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