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用于能量回收逻辑的正弦功率时钟电路 被引量:1
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作者 戴宏宇 周润德 《微电子学》 CAS CSCD 北大核心 2004年第1期71-73,76,共4页
 分析了功率时钟对电容负载充电与回收的物理过程,研究了正弦功率时钟产生电路的基本结构,考虑了功率时钟的频率与相位的稳定性。在此基础上,提出了稳定功率时钟频率与相位的功率时钟产生电路,即接入外部参考时钟,使振荡电路与参考时...  分析了功率时钟对电容负载充电与回收的物理过程,研究了正弦功率时钟产生电路的基本结构,考虑了功率时钟的频率与相位的稳定性。在此基础上,提出了稳定功率时钟频率与相位的功率时钟产生电路,即接入外部参考时钟,使振荡电路与参考时钟同步。用0.8μmDPDMCMOS工艺实现了一个简化的两相正弦功率时钟产生电路,通过物理测试,验证了电路的工作原理。 展开更多
关键词 能量回收 正弦功率时钟电路 低功耗 荷回收 CMOS逻辑
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DESIGN OF TWO-PHASE SINUSOIDAL POWER CLOCK AND CLOCKED TRANSMISSION GATE ADIABATIC LOGIC CIRCUIT 被引量:5
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作者 Wang Pengjun Yu Junjun 《Journal of Electronics(China)》 2007年第2期225-231,共7页
First the research is conducted on the design of the two-phase sinusoidal power clock generator in this paper. Then the design of the new adiabatic logic circuit adopting the two-phase sinusoidal power clocks--Clocked... First the research is conducted on the design of the two-phase sinusoidal power clock generator in this paper. Then the design of the new adiabatic logic circuit adopting the two-phase sinusoidal power clocks--Clocked Transmission Gate Adiabatic Logic (CTGAL) circuit is presented. This circuit makes use of the clocked transmission gates to sample the input signals, then the output loads are charged and discharged in a fully adiabatic manner by using bootstrapped N-Channel Metal Oxide Semiconductor (NMOS) and Complementary Metal Oxide Semiconductor (CMOS) latch structure. Finally, with the parameters of Taiwan Semiconductor Manufacturing Company (TSMC) 0.25um CMOS device, the transient energy consumption of CTGAL, Bootstrap Charge-Recovery Logic (BCRL) and Pass-transistor Adiabatic Logic (PAL) including their clock generators is simulated. The simulation result indicates that CTGAL circuit has the characteristic of remarkably low energy consumption. 展开更多
关键词 Circuit design Two-phase sinusoidal power clock Clock generator Clocked Transmission Gate Adiabatic Logic (CTGAL) circuit
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