2009•The Journal of the Korea institute of electronic communication sciencesRequires access

Multi-channel Incremental Data Converters

Sung-Hwan Bae, Changki Lee, Daeik Kim

Open publisher page 2 citations

Abstract

Incremental converters provide a solution for such measurement applications, as they retain most of the advantages of conventional ΔΣ converters, and yet they are capable of offset-free and accurate conversion. Most of the previous research on incremental converters was for single-channel and dc signal applications, where they can perform extremely accurate data conversion with more than 20-bit resolution. In this paper, a design technique for implementing multi-channel incremental data converters to convert narrow bandwidth ac signals is discussed. It incorporates the operation principle, topology, and digital decimation filter design. The theoretical results are verified by simulation results.

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What this paper is about

Incremental converters provide a solution for such measurement applications, as they retain most of the advantages of conventional ΔΣ converters, and yet they are capable of offset-free and accurate conversion. Most of the previous research on incremental converters was for single-channel and dc signal applications, where they can perform extremely accurate data conversion with more than 20-bit resolution. In this paper, a design technique for implementing multi-channel incremental data converters to convert narrow bandwidth ac signals is discussed. It incorporates the operation principle, topology, and digital decimation filter design. The theoretical results are verified by simulation results.

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Available abstract

Incremental converters provide a solution for such measurement applications, as they retain most of the advantages of conventional ΔΣ converters, and yet they are capable of offset-free and accurate conversion. Most of the previous research on incremental converters was for single-channel and dc signal applications, where they can perform extremely accurate data conversion with more than 20-bit resolution. In this paper, a design technique for implementing multi-channel incremental data converters to convert narrow bandwidth ac signals is discussed. It incorporates the operation principle, topology, and digital decimation filter design. The theoretical results are verified by simulation results.

Key concepts: Converters, Decimation, Electronic engineering, Offset (computer science), Data conversion, Channel (broadcasting), Computer science, Bandwidth (computing)

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