FPGA-Based Multi-channel A/D Converter by optimal Duty-Cycle ModulationTtechnique

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Gisele Batrice Sonfack
Gisele Batrice Sonfack
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Tchitnga Robert
Tchitnga Robert

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FPGA-Based Multi-channel A/D Converter by optimal Duty-Cycle ModulationTtechnique

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References

11 Cites in Article
  1. G Sonfack,J Mbihi (2018). FPGA-Based Analog-to-Digital Conversion via Optimal Duty-Cycle Modulation.
  2. G Sonfack,J Mbihi,L Moffo (2017). Optimal Duty-Cycle Modulation Scheme for Analog-To-Digital Conversion Systems.
  3. Moffo Lonla,B,Jean Mbihi,Leandre Nneme Nneme (2014). Low Cost and High Quality Duty-Cycle Modulation Scheme and Applications.
  4. Moffo Lonla,B Mbihi,J Nneme Nneme,L Kom,M (2013). A Novel Digital-to-Analog Conversion Technique using Duty-Cycle Modulation.
  5. Moffo Lonla,B Mbihi,J (2016). Nouvelle technique de coversion N/A des signaux par modulation numérique en rapport cyclique et applications en instrumentation virtuelle.
  6. B Moffolonla,J Mbihi (2015). Novel Digital Duty-Cycle Modulation Scheme for FPGA-Based Digital-to-Analog Conversion.
  7. H Inose,Y Yasuda,J Murakami (1962). A Telemetering System by Code Modulation - Δ- ΣModulation.
  8. Noam Dolev,Avner Kornfeld,Avinoam Kolodny (2005). COMPARISON OF SIGMA–DELTA CONVERTER CIRCUIT ARCHITECTURES IN DIGITAL CMOS TECHNOLOGY.
  9. Jean Mbihi,Denis Dochain,André Turgeon (2005). Modelling of an autonomous power system at variable speed for transient simulation using Lagrange's laws.
  10. J Mbihi,F Ndjali Beng,M Kom,L Nneme Nneme (2012). A novel analog-to-digital conversion technique using nonlinear duty-cycle modulation.
  11. Nneme Nneme,L Mbihi,J (2014). Modeling and Simulation of a New Duty-Cycle Modulation Scheme for Signal Transmission System.

Funding

No external funding was declared for this work.

Conflict of Interest

The authors declare no conflict of interest.

Ethical Approval

No ethics committee approval was required for this article type.

Data Availability

Not applicable for this article.

How to Cite This Article

Gisele Batrice Sonfack. 2026. \u201cFPGA-Based Multi-channel A/D Converter by optimal Duty-Cycle ModulationTtechnique\u201d. Global Journal of Research in Engineering - F: Electrical & Electronic GJRE-F Volume 22 (GJRE Volume 22 Issue F1): .

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High-resolution FPGA-based multi-channel A/D converter for engineering applications.
Journal Specifications

Crossref Journal DOI 10.17406/gjre

Print ISSN 0975-5861

e-ISSN 2249-4596

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GJRE-F Classification: FOR Code: 090699
Version of record

v1.2

Issue date

February 9, 2022

Language
en
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FPGA-Based Multi-channel A/D Converter by optimal Duty-Cycle ModulationTtechnique

Gisele Batrice Sonfack
Gisele Batrice Sonfack
Tchitnga Robert
Tchitnga Robert

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