A power supply error correction method for single-ended digital audio class D amplifiers

Zeqi Yu, Fengqin Wang, Yangyu Fan

Research output: Contribution to journalArticlepeer-review

4 Scopus citations

Abstract

In single-ended digital audio class D amplifiers (CDAs), the errors caused by power supply noise in the power stages degrade the output performance seriously. In this article, a novel power supply error correction method is proposed. This method introduces the power supply noise of the power stage into the digital signal processing block and builds a power supply error corrector between the interpolation filter and the uniform-sampling pulse width modulation (UPWM) lineariser to pre-correct the power supply error in the single-ended digital audio CDA. The theoretical analysis and implementation of the method are also presented. To verify the effectiveness of the method, a two-channel single-ended digital audio CDA with different power supply error correction methods is designed, simulated, implemented and tested. The simulation and test results obtained show that the method can greatly reduce the error caused by the power supply noise with low hardware cost, and that the CDA with the proposed method can achieve a total harmonic distortion + noise (THD + N) of 0.058% for a –3 dBFS, 1 kHz input when a 55 V linear unregulated direct current (DC) power supply (with the –51 dBFS, 100 Hz power supply noise) is used in the power stages.

Original languageEnglish
Pages (from-to)2110-2124
Number of pages15
JournalInternational Journal of Electronics
Volume103
Issue number12
DOIs
StatePublished - 1 Dec 2016

Keywords

  • Class D amplifier (CDA)
  • digital
  • error correction
  • power supply noise
  • single-ended

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