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Set-triggered-parallel-reset memristor logic for high-density heterogeneous-integration friendly normally off applications
Journal article   Peer reviewed

Set-triggered-parallel-reset memristor logic for high-density heterogeneous-integration friendly normally off applications

Meng-Fan Chang, Shu-Meng Yang, Chia-Chen Kuo, Ting-Chin Yang, Che-Ju Yeh, Tun-Fei Chien, Li-Yue Huang, Shyh-Shyuan Sheu, Pei-Ling Tseng, Yu-Sheng Chen, …
IEEE Transactions on Circuits and Systems II: Express Briefs, Vol.62(1), pp.80-84
01/01/2015

Abstract

Memristor logics resistive memory device
Memristor devices are promising as high-density computing logic for non-high-speed normally off applications using heterogeneous technologies. This brief proposes a set-triggered-parallel-reset memristor logic (STPR-ML)-based on back-end-of-line-based bipolar-type memristor devices to reduce the area overhead and increase compatibility with standard and nonstandard CMOS processes. The proposed STPR-ML has two subsets: with and without nonvolatile storage capability. Two types of physical structures are also proposed for STPR-ML: 2-D and 3-D. A test chip using 2-D HfO x memristor devices was fabricated using a CMOS process to confirm the functionality of the nand, nor, and xor gates used in STPR-ML. The proposed STPR-ML achieves a 2 ∼ 8 × reduction in area compared with CMOS logic gates with four or more inputs.

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