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A 28nm Nonvolatile AI Edge Processor using 4Mb Analog-Based Near-Memory-Compute ReRAM with 27.2 TOPS/W for Tiny AI Edge Devices
會議論文

A 28nm Nonvolatile AI Edge Processor using 4Mb Analog-Based Near-Memory-Compute ReRAM with 27.2 TOPS/W for Tiny AI Edge Devices

Tai-Hao Wen, Je-Min Hung, Hung-Hsi Hsu, Yuan Wu, Fu-Chun Chang, Chung-Yuan Li, Chih-Han Chien, Chin-I Su, Win-San Khwa, Jui-Jen Wu, …
Digest of Technical Papers - Symposium on VLSI Technology, 卷.2023-June
2023

摘要

multiply-and-accumulation (MAC) nonvolatile compute-in-memory (nvCIM) nonvolatile memory (NVM) Electrical and Electronic Engineering
Tiny AI edge processors prefer using nvCIM to achieve low standby power, high energy efficiency (EF), and short wakeupto-response latency (TWR). Most nvCIMs use in-memory computing for MAC operations; however, this imposes a tradeoff between EF and accuracy, due to MAC accumulationnumber (NACU) versus signal margin and readout quantization. To achieve high EF and high accuracy, we developed a systemlevel nvCIM-friendly control scheme and a nvCIM macro with two analog near-memory computing schemes. The proposed 28nm nonvolatile AI edge processor with 4Mb ReRAMnvCIM achieved high EF (27.2 TOPS/W), short TWR (3.19 ms), and low accuracy loss (<0.5%) The EF of the ReRAM-nvCIM macro was 38.6 TOPS/W.

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