2006•Unpublished venueRequires access

A New High Precision Low Offset Dynamic Comparator for High Resolution High Speed ADCs

Vipul Katyal, R.L. Geiger, Degang Chen

Open publisher page 42 citations

Abstract

A new low offset dynamic comparator for high resolution high speed analog-to-digital application has been designed. Inputs are reconfigured from the typical differential pair comparator such that near equal current distribution in the input transistors can be achieved for a meta-stable point of the comparator. Restricted signal swing clock for the tail current is also used to ensure constant currents in the differential pairs. Simulation based sensitivity analysis is performed to demonstrate the robustness of the new comparator with respect to stray capacitances, common mode voltage errors and timing errors in a TSMC 0.18mu process. Less than 10mV offset can be easily achieved with the proposed structure making it favorable for flash and pipeline data conversion applications

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What this paper is about

A new low offset dynamic comparator for high resolution high speed analog-to-digital application has been designed. Inputs are reconfigured from the typical differential pair comparator such that near equal current distribution in the input transistors can be achieved for a meta-stable point of the comparator. Restricted signal swing clock for the tail current is also used to ensure constant currents in the differential pairs. Simulation based sensitivity analysis is performed to demonstrate the robustness of the new comparator with respect to stray capacitances, common mode voltage errors and timing errors in a TSMC 0.18mu process. Less than 10mV offset can be easily achieved with the proposed structure making it favorable for flash and pipeline data conversion applications

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Available abstract

A new low offset dynamic comparator for high resolution high speed analog-to-digital application has been designed. Inputs are reconfigured from the typical differential pair comparator such that near equal current distribution in the input transistors can be achieved for a meta-stable point of the comparator. Restricted signal swing clock for the tail current is also used to ensure constant currents in the differential pairs. Simulation based sensitivity analysis is performed to demonstrate the robustness of the new comparator with respect to stray capacitances, common mode voltage errors and timing errors in a TSMC 0.18mu process. Less than 10mV offset can be easily achieved with the proposed structure making it favorable for flash and pipeline data conversion applications

Key concepts: Comparator, Comparator applications, Offset (computer science), Computer science, Swing, Robustness (evolution), Electronic engineering, Transistor

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