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A Purely MUX Based High Speed Barrel Shifter VLSI Implementation Using Three Different Logic Design Styles

机译:基于三种不同逻辑设计风格的纯基于MUX的高速桶式移位器VLSI实现

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Barrel shifter is one of the important data path elements and widely used in many key computer operations from address decoding to computer arithmetic, using basic operations like data shifting and rotation. In this paper MUX based barrel shifter circuits are designed and implemented in 0.6um, N-well CMOS process using three different logic design styles, namely, optimized static CMOS, transmission gate (TG) CMOS and dual rail domino CMOS logic. The proposed barrel shifter architecture implementation shows large reduction in the propagation delay, while keeping the almost similar average power consumption as compared to the implementation by Ramin Rafati [10]. A further inter comparison of implementations using three different logic design styles for various performance and characteristic parameters like circuit delay, average power, maximum instantaneous power, leakage Power, transistor count, layout core area, total routing length and number of via are presented.
机译:桶形移位器是重要的数据路径元素之一,并使用诸如数据移位和循环的基本操作,广泛用于从地址解码到计算机算术的许多关键计算机操作中。本文采用三种不同的逻辑设计风格,即优化的静态CMOS,传输门(TG)CMOS和双轨多米诺CMOS逻辑,在0.6um N阱CMOS工艺中设计并实现了基于MUX的桶形移位器电路。与Ramin Rafati [10]的实现相比,桶形移位器体系结构的实现显示了传播延迟的大幅降低,同时保持了几乎相似的平均功耗。给出了使用三种不同逻辑设计风格的各种性能和特性参数(如电路延迟,平均功率,最大瞬时功率,泄漏功率,晶体管数量,布局核心面积,总布线长度和过孔数量)的实现方式的进一步相互比较。

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