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A 24- μW 12-bit 1-MS/s SAR ADC With Two-Step Decision DAC Switching in 110-nm CMOS

机译:具有110nm CMOS的两步决策DAC开关的24μW12位1-MS / s SAR ADC

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This paper presents an energy-efficient 12-bit successive approximation (SA) register analog-to-digital converter (ADC) for high-performance sensor systems. The ADC uses a two-step decision digital-to-analog converter (DAC) switching scheme for improving the DAC linearity with small capacitor arrays. The scheme effectively eliminates the largest binary DAC middle-code transition glitch. The proposed switching scheme also tolerates DAC settling errors during SA. Avoiding unnecessary DAC switching error improves the spurious-free dynamic range (SFDR) and signal-to-noise-and-distortion ratio (SNDR). A reference-scaling binary capacitor DAC is used for improving the ADC energy efficiency without sacrificing production reliability. The implemented prototype in 0.11-μ CMOS occupies an active area of 0.097 mm2. At 1 MS/s, it consumes a total power of 24 μ from a 0.9 V supply. The measured differential nonlinearity and the integral nonlinearity are 0.4 least significant bit (LSB) and 0.7 LSB, respectively. Among 50 chips, the peak measured SNDR is 68.3 dB. The peak and the average of SFDR are 89 and 83.5 dB, respectively. The optimal effective number of bits is 11 bit at the Nyquist-rate input, which is equivalent to a figure of merit of 11.7 fJ/conversion-step.
机译:本文提出了一种用于高性能传感器系统的高能效12位逐次逼近(SA)寄存器模数转换器(ADC)。 ADC使用两步决策数模转换器(DAC)切换方案,以改善小型电容器阵列的DAC线性度。该方案有效地消除了最大的二进制DAC中码转换毛刺。提出的开关方案还可以容忍SA期间的DAC建立错误。避免不必要的DAC开关误差,可改善无杂散动态范围(SFDR)和信噪比与失真比(SNDR)。参考缩放二进制电容器DAC用于提高ADC的能效,而不会牺牲生产可靠性。采用0.11-μCMOS的已实现原型占用0.097 mm2的有效面积。在1 MS / s的速率下,它从0.9 V电源消耗的总功率为24μ。测得的差分非线性和积分非线性分别为0.4最低有效位(LSB)和0.7 LSB。在50个芯片中,测得的SNDR峰值为68.3 dB。 SFDR的峰值和平均值分别为89和83.5 dB。奈奎斯特速率输入的最佳有效位数为11位,这相当于11.7 fJ /转换步的品质因数。

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