首页> 外文期刊>Circuits and Systems II: Express Briefs, IEEE Transactions on >Low-Power Floating-Point Adaptive-CORDIC-Based FFT Twiddle Factor on 65-nm Silicon-on-Thin-BOX (SOTB) With Back-Gate Bias
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Low-Power Floating-Point Adaptive-CORDIC-Based FFT Twiddle Factor on 65-nm Silicon-on-Thin-BOX (SOTB) With Back-Gate Bias

机译:具有背栅偏置的65nm薄盒硅(SOTB)上基于低功耗浮点自适应CORDIC的FFT旋转因子

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In this brief, a silicon-on-thin-BOX (SOTB) implementation of single-precision floating-point fast-Fourier-transform (FFT) twiddle factor (TF) is presented. The architecture of the proposed TF is developed based on the adaptive method of the coordinate rotation digital computer (CORDIC) algorithm. The 65-nm SOTB technology was chosen because of its ultra-low-power advantage. Furthermore, the back-gate bias technique can be applied on an SOTB chip to adjust the operation for high-performance or low-power requirement. The layout of the SOTB 65-nm TF core is about 22 869 gate-count on the die area of 86 721 mu m(2). The measurement results show that the core reached its highest operating frequency of 55 MHz at the 1.2-V supply voltage (V-DD) with the forward back-gate bias (FBB) >= 1.5 V. The power and energy consumptions at this point were 1.54 mW and 27.91 pJ/cycle, respectively. The lowest operating V-DD was at 0.5 V with the FBB >= 0.5 V. In the standby mode, when the clock-gating technique was deployed, the leakage current can be reduced to 0.4 nA at the 0.4 V V-DD and -2.5-V reverse back-gate bias (RBB).
机译:在本简介中,介绍了单精度浮点快速傅里叶变换(FFT)旋转因子(TF)的薄盒式硅(SOTB)实现。基于坐标旋转数字计算机(CORDIC)算法的自适应方法,开发了所提出的TF的体系结构。选择65纳米SOTB技术是因为它具有超低功耗的优势。此外,可以在SOTB芯片上应用背栅偏置技术,以针对高性能或低功耗要求调整操作。 SOTB 65 nm TF内核的布局在86 721μm(2)的管芯面积上约为22 869门数。测量结果表明,在正向背栅偏置(FBB)> = 1.5 V的情况下,内核在1.2 V电源电压(V-DD)时达到了其最高工作频率55 MHz。此时的功耗和能耗分别为1.54 mW和27.91 pJ /周期。 FBB> = 0.5 V时,最低工作V-DD为0.5V。在待机模式下,采用时钟门控技术时,在0.4 V V-DD时,泄漏电流可以降至0.4 nA,并且- 2.5V反向背栅偏置(RBB)。

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