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Fast adaptive comparator offset calibration in pipeline ADC with self-repairing thermometer to binary encoder

机译:带有自修复温度计至二进制编码器的流水线ADC中的快速自适应比较器失调校准

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This paper presents a fast background calibration method for comparator offsets in pipeline ADCs and analyzes the practical considerations in a 1.8 V 0.18 mu m 100Msps pipeline ADC with 15-bit resolution (74 dB-Signal-to-noise plus Distortion Ratio [SNDR]). A self-repairing (SR) thermometer-to-binary encoder is developed to deal with malfunctioning in presence of high comparator offsets greater than one-half least-significant bit (LSB). In this situation, the effective thresholds between two adjacent comparators could be inverted leading to a faulty behavior with conventional architectures. The proposed solution allows a dynamic assignment of the calibration code associated to each comparator improving convergence speed. As demonstrator, its application to a 15-bit pipeline ADC using a novel calibrated dynamic-latch comparator (DLC) with internal threshold reference generation and no preamplifier is presented, showing a reduction on the total power consumption of 22% with respect to a design without calibration targeting the same specifications.
机译:本文提出了一种用于流水线ADC中比较器失调的快速背景校准方法,并分析了具有15位分辨率(74 dB信噪比和失真比[SNDR])的1.8 V 0.18μm100Msps流水线ADC的实际考虑因素。 。开发了一种自修复(SR)温度计到二进制编码器,以处理比较器偏移大于一半最小有效位(LSB)的情况下的故障。在这种情况下,两个相邻比较器之间的有效阈值可能会反转,从而导致常规体系结构出现错误行为。提出的解决方案允许动态分配与每个比较器关联的校准代码,从而提高收敛速度。作为演示者,介绍了其在具有新型校准动态锁存比较器(DLC),内部阈值参考产生且不带前置放大器的15位流水线ADC中的应用,相对于设计,这表明总功耗降低了22%无需针对相同规格进行校准。

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