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An asymmetric-voltage-biased current-mode sensing scheme for fast-read embedded flash macros
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An asymmetric-voltage-biased current-mode sensing scheme for fast-read embedded flash macros

Meng-Fan Chang, Yu-Fan Lin, Yen-Chen Liu, Jui-Jen Wu, Shin-Jang Shen, Wu-Chin TsaiYu-Der Chih
IEEE Journal of Solid-State Circuits, 卷.50(9), 頁碼.2188-2198
09/2015

摘要

Current-mode sense amplifier (CSA) Flash Electrical and Electronic Engineering
Current-mode sense amplifiers (CSA) are commonly used in eNVM, because of their fast read speed at large bitline (BL) loads and small cell read currents. However, conventional CSAs are unable to achieve fast random read access time (T AC ), due to significant summed input offsets (I OS -SUM) at read-path. This work proposes a calibration-based asymmetric-voltage-biased CSA (AVB-CSA) to suppress I OS -SUM and enable high-speed sensing without the need for run-time offset-cancellation operations. This work then fabricated two 90 nm AVB-CSA 1 Mb Flash testchips (with and without BL-length test-modes). The AVB-CSA eFlash macros with 512 rows achieved T AC of 3.9 ns at nominal VDD (1.2 V). The BL-length test-mode experiments confirmed a 1.53 × improvement in T AC using AVB-CSA with a BL-length of 2048-rows operating at VDD=0.8 V.

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