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Time-Interleaved and Circuit-Shared Dual-Channel 10 b 200 MS/s 0.18 $mu{rm m}$ CMOS Analog-to-Digital Convertor

机译:时间交错和电路共享的双通道10 b 200 MS / s 0.18 $ mu {rm m} $ CMOS模数转换器

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This paper proposes a 10 b 200 MS/s pipeline analog-to-digital convertor (ADC) for high-quality video systems based on double-channel and op-amp sharing schemes to minimize power consumption and channel mismatch. The double channel time-interleaved scheme reduces the required operating speed of amplifiers in the sample-and-hold amplifier and multiplying digital-to-analog (D/A) converters by 50%. The switched and shared op-amp with two input pairs amplifies each channel signal without extra series switches while minimizing the gain, bandwidth and offset mismatches between channels. The low-jitter sampling clock with a 50% duty cycle improves the dynamic performance of the wideband input signals significantly. The Flash ADCs employ a differential difference amplifier type pre-amp to continuously process dual-channel outputs. The prototype ADC in a 0.18 $mu{rm m}$ CMOS technology demonstrates the measured differential nonlinearity and integral nonlinearity within 0.62 and 0.99 LSB, respectively. At 200 MS/s, the ADC shows a maximum SNDR of 52.8 dB and a maximum SFDR of 60.4 dB. The ADC with an active die area of 1.28 ${rm mm}^{2}$ consumes 54.0 mW at 1.8 V.
机译:本文基于双通道和运算放大器共享方案,提出了一种用于高质量视频系统的10 b 200 MS / s流水线模数转换器(ADC),以最大程度地降低功耗和通道失配。双通道时间交错方案将采样保持放大器中的放大器所需的工作速度降低,并将数模(D / A)转换器倍增50%。具有两个输入对的开关共享运算放大器无需额外的串联开关即可放大每个通道信号,同时最大程度地减小通道之间的增益,带宽和失调失配。占空比为50%的低抖动采样时钟可显着改善宽带输入信号的动态性能。闪存ADC采用差分差分放大器类型的前置放大器来连续处理双通道输出。采用0.18μmrms $ CMOS技术的原型ADC分别证明了在0.62和0.99 LSB范围内测得的差分非线性和积分非线性。在200 MS / s的速率下,ADC的最大SNDR为52.8 dB,最大SFDR为60.4 dB。有源芯片面积为1.28 $ {rm mm} ^ {2} $的ADC在1.8 V时的功耗为54.0 mW。

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