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Reconfigurable arithmetic logic unit designed with threshold logic gates

机译:具有阈值逻辑门的可重构算术逻辑单元

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In recent years, there is a trend towards the development of reconfigurable circuits where devices using them offer flexibility and performance. Different technologies are explored, such as threshold logic gates (TLGs), which are one of the most promising future technologies, and researchers are examining and improving different characteristics such as density, performance and power dissipation. This research presents a 4-bit arithmetic logic unit (ALU), which was designed using TLGs through reconfigurable logic blocks with a universal circuit configured with three stages based on a floating-gate metal oxide semiconductor transistor with more than one control gate, which was named neu-complementary metal oxide semiconductor (nu-CMOS). The main contribution is that this device is configured as a nu-CMOS inverter and has the ability to program the threshold voltage of its transfer curve by applying an external voltage to the additional control gates. The number of input bits and the magnitude of the weighted input capacitances related to control gates of the nu-CMOS inverters is obtained and analyzed by using the graphical method (floating-gate potential diagram). Finally, the proposed 4-bit ALU shows similar results as those measured from the ALUs implemented in the field programmable gate array evaluation kit and the Motorola chip MC14581B.
机译:近年来,可重构电路的发展趋势是,使用它们的设备可提供灵活性和性能。人们探索了各种不同的技术,例如阈值逻辑门(TLG),这是最有前途的未来技术之一,研究人员正在研究和改进不同的特性,例如密度,性能和功耗。这项研究提出了一种4位算术逻辑单元(ALU),它是通过TLG通过可重构逻辑块设计的,该逻辑块具有一个通用电路,该电路由三级结构构成,该结构基于具有多个控制栅的浮栅金属氧化物半导体晶体管。名为neu互补金属氧化物半导体(nu-CMOS)。主要贡献在于,该器件被配置为nu-CMOS反相器,并能够通过向附加控制栅极施加外部电压来编程其传输曲线的阈值电压。通过使用图形方法(浮栅电位图)来获取和分析与nu-CMOS反相器的控制栅极相关的输入位数和加权输入电容的大小。最后,建议的4位ALU显示的结果与现场可编程门阵列评估套件和Motorola芯片MC14581B中实现的ALU的测量结果相似。

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