A Novel Double-Density Hemi-Cylindrical (HC) Structure to Produce More than Double Memory Density Enhancement for 3D NAND Flash

Hang-Ting Lue, Teng-Hao Yeh, Pei-Ying Penny Du, Roger Lo, Wei-Chen Chen, Tzu‐Hsuan Hsu, Chia-Tze Huang, Guan-Ru Lee, Chih‐Ping Chen, Yu-Wei Jiang, Min-Feng Hung, Yan-Ru Su, Li-Yang Liang, Chih‐Wei Hu, Chia-Jung Chiu, Keh-Chung Wang, Chih-Yuan Lu · 2019

A novel hemi-cylindrical (HC) 3D NAND Flash architecture is demonstrated for the first time. HC 3D NAND squeezes the gate-all-around (GAA) hole in one direction, followed by a slit cut to split the GAA device to produce twin cells. It creates ~ 2.6 times of memory density increase than standard GAA 3D NAND at the same stacking layer. Both experimental and simulation results clarify that the "non-local" effect of channel potential can essentially "smooth" the non-uniform curvature effect thus the HC 3D NAND device possesses regular P/E window characteristics even it is not a regular shape of GAA. Good 100K PE cycling endurance and post 10K-cycled 150C retention are demonstrated. HC 3D NAND structure has potential to further scale 3D NAND device in lateral dimension, with the advances of processing technologies.

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