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Analysis of Switching Energy and Delay for Magnetic Logic Devices

机译:磁逻辑器件的开关能量和延迟分析

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Magnetic logic is considered as one of the alternate technologies to the existing CMOS engineering in designing digital logic circuits. In magnetic logic, the spin directions are considered as logic levels instead of electric charge used in CMOS modules. If magnetic dots are suitably arranged, antiferromagnetic and ferromagnetic coupling can be utilized to represent a digital circuit. In this paper, we have studied different shapes of magnetic material such as ellipsoidal, funnel, dome, d, rectangle, and pacman to determine the magnetic interplay between the input and other arranged logical dots. The logical operation is dependent on the parity and the overall assembly of dots. All the selected shapes in this study, exhibited ferromagnetic and antiferromagnetic coupling between the dots, which wasfurther employed to design inverter digital circuit. A comparative analysis in terms of switching energy, and propogation delay were investigated for inverter logic design. Among all the selected shapes, the ellipsoidal profile was best suited to develop digital circuits with respect to energy-delay product. The performance of a multiplexer circuit consisting of AND and OR logic output was investigated using ellipsoidal and rectangular shaped ferro-magnetic dots.
机译:在设计数字逻辑电路时,磁逻辑被认为是现有CMOS工程的替代技术之一。在磁逻辑中,自旋方向被视为逻辑电平,而不是CMOS模块中使用的电荷。如果适当地布置磁点,则可以利用反铁磁和铁磁耦合来表示数字电路。在本文中,我们研究了磁性材料的不同形状,例如椭圆形,漏斗形,圆顶形,d形,矩形和pacman,以确定输入和其他排列的逻辑点之间的磁性相互作用。逻辑运算取决于点的奇偶校验和整体。在这项研究中,所有选定的形状都表现出点之间的铁磁和反铁磁耦合,这进一步被用于设计逆变器数字电路。对开关逻辑和传播延迟进行了比较分析,以进行逆变器逻辑设计。在所有选定的形状中,椭圆轮廓最适合于开发有关能量延迟积的数字电路。使用椭圆形和矩形铁磁点研究了由AND和OR逻辑输出组成的多路复用器电路的性能。

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