首页 | 本学科首页   官方微博 | 高级检索  
     


Functional Demonstration of a Memristive Arithmetic Logic Unit (MemALU) for In‐Memory Computing
Authors:Long Cheng  Yi Li  Kang‐Sheng Yin  Si‐Yu Hu  Yu‐Ting Su  Miao‐Miao Jin  Zhuo‐Rui Wang  Ting‐Chang Chang  Xiang‐Shui Miao
Abstract:The development of in‐memory computing has opened up possibilities to build next‐generation non‐von‐Neumann computing architecture. Implementation of logic functions within the memristors can significantly improve the energy efficiency and alleviate the bandwidth congestion issue. In this work, the demonstration of arithmetic logic unit functions is presented in a memristive crossbar with implemented non‐volatile Boolean logic and arithmetic computing. For logic implementation, a standard operating voltage mode is proposed for executing reconfigurable stateful IMP, destructive OR, NOR, and non‐destructive OR logic on both the word and bit lines. No additional voltages are needed beyond “VP” and its negative component. With these basic logic functions, other Boolean functions are constructed within five devices in at most five steps. For arithmetic computing, the fundamental functions including an n‐bit full adder with high parallelism as well as efficient increment, decrement, and shift operations are demonstrated. Other arithmetic blocks, such as subtraction, multiplication, and division are further designed. This work provides solid evidence that memristors can be used as the building block for in‐memory computing, targeting various low‐power edge computing applications.
Keywords:arithmetic computing  crossbar  in‐memory computing  memristors  stateful logic
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号