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首页> 外文期刊>IEEE Journal of Solid-State Circuits >Low-Voltage Embedded NAND-ROM Macros Using Data-Aware Sensing Reference Scheme for VDDmin, Speed and Power Improvement
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Low-Voltage Embedded NAND-ROM Macros Using Data-Aware Sensing Reference Scheme for VDDmin, Speed and Power Improvement

机译:使用数据感知传感参考方案的低压嵌入式NAND-ROM宏,可实现VDDmin,速度和功耗的提高

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摘要

Density-prioritized memories such as NAND-ROM require a longer single-ended bitline (BL) sensing scheme to maintain high cell array efficiency and therefore suffer from a reduced BL sensing margin at ultra-low supply voltages (VDD) for read-0. This is the result of 1) reduced BL discharge driving current due to limited cell size and driving voltage; and 2) a larger BL false drop noise for read-1. This study proposes a data-aware sensing reference (DASR) scheme, capable of maintaining sensing margins for both read-0 and read-1 under given timing constraints. The key mechanism involved in maintaining the sensing margin is the adaptive changing of the reference voltage (VREF), such that the sensing headroom or potential range (VBL-VREF) for read-1 and read-0 overlap, as in differential BL sensing. Two 256 Kb DASR NAND-ROM macros, with and without code-inversion schemes, were fabricated using a 90 nm bulk CMOS logic process. The 256 Kb DASR NAND-ROM macros are functional down to 0.25 V. DASR also increases the access speed by 66.7% at 0.31 V VDD, compared with the conventional approach without the proposed DASR scheme.
机译:诸如NAND-ROM之类的密度优先存储器需要较长的单端位线(BL)感应方案,以保持较高的单元阵列效率,因此在读取-0的超低电源电压(VDD)时,BL感应裕度降低。这是因为1)由于单元尺寸和驱动电压的限制而降低了BL放电驱动电流;和2)较大的BL误读噪声为read-1。这项研究提出了一种数据感知传感参考(DASR)方案,该方案能够在给定的时序约束下为read-0和read-1维持传感裕量。维持感测裕度所涉及的关键机制是自适应改变参考电压(VREF),以使与差分BL感测相同,读1和读0的感测余量或电位范围(VBL-VREF)重叠。使用90 nm体CMOS逻辑工艺制造了两个带和不带代码反转方案的256 Kb DASR NAND-ROM宏。 256 Kb DASR NAND-ROM宏的功能可低至0.25V。与没有建议的DASR方案的传统方法相比,在0.31 V VDD时DASR的访问速度也提高了66.7%。

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