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28 nm UTBB-FDSOI energy efficient and variation tolerant custom digital-cell library with application to a subthreshold MAC block

机译:28 nm UTBB-FDSOI高效节能且耐变化的定制数字单元库,适用于亚阈值MAC块

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This paper presents the design of digital logic cells for subthreshold applications using 28 nm ultra-thin body and box fully depleted silicon on insulator technology. The sizing approach relies on balancing pull-up/pull-down networks (PUN/PDN) strength ratio by applying an additional forward back-gate biasing (FBB) voltage to the back-gate of PMOS transistors. The minimum width of PMOS and NMOS transistors have been chosen by taking the narrow width effect into account. Moreover, to increase the functional yield of the logic cells, a trade-off has been made between Ion/Ioff ratio and energy consumption through increasing the channel length by 4 nm. Energy consumption of logic gates analyzed using ring-oscillators consisting of basic logic gates. It has been shown that balancing logic gates through applying an additional FBB to the PMOS back-gate instead of up-sizing PUN results in 30% lower energy consumption in ring-oscillators. An 8-bit multiply-accumulate (MAC) block was synthesized using the fully customized logic cells with asymmetric back-gate biasing. Compared to a state-of-the art MAC, the energy consumption of our MAC was improved by 21% at a relatively high speed (147 MHz).
机译:本文介绍了使用28 nm超薄主体和盒式完全耗尽硅绝缘子技术的亚阈值应用数字逻辑单元的设计。尺寸确定方法依赖于通过向PMOS晶体管的背栅施加额外的正向背栅偏置(FBB)电压来平衡上拉/下拉网络(PUN / PDN)强度比。通过考虑窄宽度效应来选择PMOS和NMOS晶体管的最小宽度。此外,为了增加逻辑单元的功能产量,通过将沟道长度增加4nm,在Ion / Ioff比和能量消耗之间进行了折衷。使用由基本逻辑门组成的环形振荡器分析逻辑门的能耗。已经表明,通过向PMOS背栅施加额外的FBB而不是加大PUN的尺寸来平衡逻辑门,可使环形振荡器的能耗降低30%。使用具有非对称背栅偏置的完全定制逻辑单元合成了一个8位乘法累加(MAC)块。与最先进的MAC相比,我们MAC的能耗在相对较高的速度(147 MHz)下提高了21%。

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