Abst'/> The design and analysis of dual control voltages delay cell for low power and wide tuning range ring oscillators in 65?nm CMOS technology for CDR applications
首页> 外文期刊>AEU: Archiv fur Elektronik und Ubertragungstechnik: Electronic and Communication >The design and analysis of dual control voltages delay cell for low power and wide tuning range ring oscillators in 65?nm CMOS technology for CDR applications
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The design and analysis of dual control voltages delay cell for low power and wide tuning range ring oscillators in 65?nm CMOS technology for CDR applications

机译:低功率和宽调谐范围环振荡器双控制电压延迟电池的设计与分析65架CDM CMOS技术CDR应用

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AbstractIn this paper three delay cell structures used in four-stage ring oscillator are evaluated. In the first structure, the control voltage is employed to the gate of PMOS transistors which are inserted in series with the input PMOS transistors. In this case the minimum power dissipation is gained. Since the control voltage is injected to the PMOS transistors parallel with input transistors, the better tuning range in higher frequency and lower phase noise is achieved. In order to make a tradeoff between the tuning range, phase noise and power dissipation, the PMOS transistors activated with the control voltage are applied to the oscillator in both the series and parallel paths. In improved structure, the oscillator works in 2.65–13.93?GHz under 1?V supply voltage in 65?nm CMOS technology. The phase noise is ?94.33?dBc/Hz at 1?MHz offset from 3.7?GHz center frequency, while the power dissipation is 328.6?μW and the chip area is 139.5??m2.]]>
机译:<![cdata [ 抽象 在本文中评估了四级环形振荡器中使用的三个延迟单元结构。在第一结构中,控制电压用于PMOS晶体管的栅极,其与输入PMOS晶体管串联插入。在这种情况下,获得了最小功耗。由于控制电压被注入与输入晶体管平行的PMOS晶体管,因此实现了更高频率和更低的相位噪声的更好的调谐范围。为了在调谐范围,相位噪声和功耗之间进行折衷,用控制电压激活的PMOS晶体管在串联和并行路径中施加到振荡器。在改进的结构中,振荡器在2.65-13.93中工作为2.65-13.93?GHz在65°C CMOS技术中为1?V电源电压。相位噪声是94.33?DBC / Hz,1?MHz从3.7?GHz中心频率偏移,而功耗为328.6?μW和芯片面积为139.5 ?? M 2 ]]>

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