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An 8b 250MS/s 0.13µm CMOS ADC using variable references for VGA-to-WUXGA scaler chips

机译:一个8b 250MS / s 0.13µm CMOS ADC,使用可变基准电压源用于VGA至WUXGA定标器芯片

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This work proposes an 8b 250MS/s 0.13µm CMOS two-step pipeline ADC using variable references for VGA-to-WUXGA scaler chip applications. The input sample-and-hold amplifier employs MOS capacitor-based gate-bootstrapping circuits to keep the on-resistance of sampling switches constant and to sample wide-band wide-range variable inputs with least distortion. The capacitors of the proposed multiplying D/A converter are laid out in a high matching one-dimensional symmetric shape rather than the conventional common-centroid topology to save chip area. The proposed on-chip current and voltage reference circuits generate variable bottom-side reference voltages with a fixed top-side reference using a single external voltage for processing wide-range variable analog inputs. The two-step reference selection scheme reduces considerably power and area in the last-stage 5b flash ADC. The prototype ADC in a 0.13µm CMOS demonstrates measured differential and integral non-linearities within 0.35 and 0.54 LSB, respectively. The ADC shows a maximum SNDR and SFDR of 44.4 and 56.1 dB at 250 MS/s, respectively. The ADC with an active die area of 0.72 mm2 consumes 58.8–62.4 mW depending on input modes at 250 MS/s and 1.2 V.
机译:这项工作提出了一个8b 250MS / s 0.13µm CMOS两步流水线ADC,使用可变基准电压源来实现VGA至WUXGA定标器芯片的应用。输入采样保持放大器采用基于MOS电容器的栅极自举电路,以保持采样开关的导通电阻恒定,并以最小的失真采样宽带宽范围可变输入。所提出的乘法D / A转换器的电容器以高匹配的一维对称形状而不是传统的公共质心拓扑布局,以节省芯片面积。拟议的片上电流和电压基准电路使用单个外部电压生成具有固定顶侧基准的可变底侧基准电压,以处理宽范围可变模拟输入。两步基准选择方案可显着降低最后一级5b闪存ADC的功耗和面积。 0.13µm CMOS中的原型ADC分别显示了在0.35 LSB和0.54 LSB范围内测得的差分和积分非线性。 ADC在250 MS / s时的最大SNDR和SFDR分别为44.4 dB和56.1 dB。有源管芯面积为0.72 mm 2 的ADC的功耗为58.8–62.4 mW,具体取决于250 MS / s和1.2 V时的输入模式。

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