标题: | 具有交错型迟滞延迟元件的低功耗数位控制振荡器 A low power digitally controlled oscillator based on interlaced hysteresis delay cells |
作者: | 游佳融 李镇宜 电机学院电子与光电学程 |
关键字: | 数位控制振荡器;全数位锁相回路;DCO;ADPLL |
公开日期: | 2011 |
摘要: | 随着晶片制程技术的进步,可携式产品变得越来越热门。在可携式产品应用中功耗就变成很重要的问题。全数位锁相回路在通讯系统中应用很广。在全数位锁相回路电路里,数位控制振荡器是一个关键性的元件。数位控制振荡器的操作频率和灵敏度可以影响整个全数位锁相回路的性能,不只如此,功耗的比例是全数位锁相回路50%以上。设计一个低功耗的全数位锁相回路,降低数位控制振荡器的功耗是一个非常有效率的方法。 本论文将会提出一个具有低功耗的新型延迟元件。这个交错型迟滞延迟元件可以节省电源,达到低功耗,小面积和高效能。数位控制振荡器架构采用串联和改良型二权重式架构,但是这个架构会延生出一些问题,例如最快频率限制和突波(glitch)问题。这些问题在本论文中会被一一解决。我们使用标准元件库来设计整个晶片,并利用合成软体及自动布局工具实现电路,最后以90奈米1P9M标准CMOS制程来完成晶片。 本论文提出的交错型迟滞延迟元件和标准元件(AND gate)相比可节省87%的功耗,本论文提出的数位振荡器为480MHz,功率消耗为128uW。 As technology advances, portable devices become more and more popular. In portable devices, the power consumption becomes an important design issue. An all digital phase lock loop (ADPLL) has been widely used in frequency synthesizer and communication systems. Digitally controlled oscillator (DCO) is the key component of performance and power of ADPLLs. The operated range and delay resolution of the DCO dominate jitter and output range of an ADPLL. A DCO occupies over 50% power consumption of an ADPLL. Power reduction on a DCO can effectively cut down the overall ADPLL power. This work proposes a novel delay cell in low power applications. The interlaced hysteresis delay cell has low power consumption, small area and high quality. The DCO structure uses the modified binary-weighted delay stage and cascade-stage structure. However, the disadvantages of the structure are the serious glitches and the limited fastest frequency. The proposed solution uses a synchronization cell to avoid glitches. Moreover, the proposed DCO also increases the fastest frequency. This chip is implemented with standard cell library by synthesis and auto place-and-route tools. The low power DCO is fabricated in 90nm 1P9M standard CMOS process. The proposed IHDC reduces over 87% power consumption on the standard DCO which is based on AND gates. The power consumption of the proposed DCO is 128uW at 480MHz. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT079867504 http://hdl.handle.net/11536/48677 |
显示于类别: | Thesis |
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