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Mathematical modeling and analysis of new modified glitch free adiabatic inverter circuit with trapezoidal power supply

机译:新型梯形电源无故障绝热逆变器电路的数学建模与分析

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The growing demand of low power electronics equipments has forced the research community to think of some methods by which energy of a circuit can be recycled and then adiabatic logic was born. The literature has experienced a numerous number of adiabatic circuits which faces a lot of complication in terms of glitch, noise and huge no. of transistors employed leading to the increase in device area. In this work, we have presented a new model of GFCAL circuit removing the diodes from its original architectures. The mathematical modeling of the energy of inverter circuit employing the new logic has been presented considering a Trapezoidal power supply considering it could be a good option for the adiabatic circuit as it will charge the load capacitor optimally giving lesser energy dissipation in ON path resistance. The simulation of the circuit is done in 180 nm process technology and compared the result with conventional CMOS.
机译:低功率电子设备的需求不断增长,迫使研究人员考虑了一些方法,通过这些方法可以回收电路中的能量,然后产生了绝热逻辑。文献中已经经历了许多绝热回路,这些回路在毛刺,噪声和巨大噪声方面都面临着许多复杂性。所使用的晶体管数量的增加导致器件面积的增加。在这项工作中,我们提出了一种新的GFCAL电路模型,该模型从其原始架构中去除了二极管。考虑梯形电源,已经提出了采用新逻辑的逆变器电路能量的数学模型,考虑到它可能是绝热电路的一个不错的选择,因为它将对负载电容器进行最佳充电,从而在导通路径电阻上具有较小的能量耗散。电路仿真是在180 nm工艺技术中完成的,并将结果与​​常规CMOS进行了比较。

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