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首页> 外文期刊>Solid-State Circuits, IEEE Journal of >A Background Self-Calibrated 6b 2.7 GS/s ADC With Cascade-Calibrated Folding-Interpolating Architecture
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A Background Self-Calibrated 6b 2.7 GS/s ADC With Cascade-Calibrated Folding-Interpolating Architecture

机译:具有级联校准的折叠-插值架构的后台自校准6b 2.7 GS / s ADC

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We have developed a 6b 2.7 GS/s folding ADC with on-chip background self-calibration in 90 nm CMOS technology. The ADC achieves high-speed operation of 2.7 GS/s at low power consumption of 50 mW from a 1.0 V power supply and the figure of merit (FOM) is 0.47 pJ/conversion-step. The key technique is a digital background self-calibration architecture which compensates for the large mismatch of small devices in the ADC and also corrects the ADC characteristics degradation during operation due to the drift of environmental factors such as temperature. This background calibration technique suited for multi-GHz operation is realized by two-channel ADC architecture and digital smoothing technique, which uses averaging of two comparator offsets and reconfiguration of reference connection. To minimize the power dissipation, a cascade-calibrated folding-interpolating architecture has been developed. It reduces the overall analog power of our design by 50%, compared with a conventional architecture which applies calibration only to preamplifiers. By utilizing these low-power techniques, we have successfully developed a low-power ADC with all functions including the background self-calibration control circuit.
机译:我们开发了6b 2.7 GS / s折叠ADC,具有90 nm CMOS技术的片内背景自校准功能。 ADC通过1.0 V电源在50 mW的低功耗下实现了2.7 GS / s的高速运行,品质因数(FOM)为0.47 pJ /转换步长。关键技术是数字背景自校准体系结构,该体系结构可补偿ADC中小型设备的巨大失配,还可以纠正由于环境因素(例如温度)的漂移而在操作过程中ADC特性下降的情况。这种适用于多GHz操作的背景校准技术是通过两通道ADC架构和数字平滑技术实现的,该技术使用两个比较器偏移的平均值和参考连接的重新配置。为了最小化功耗,已经开发出级联校准的折叠插值架构。与仅将校准应用于前置放大器的传统架构相比,它将设计的整体模拟功率降低了50%。利用这些低功耗技术,我们成功开发了一种低功耗ADC,具有所有功能,包括后台自校准控制电路。

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