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Comparative Study of Op-Amp-based Integrators Suitable for Fractional -Order Controller Design.

, , , , , , , and . TSP, page 740-743. IEEE, (2019)

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Comparative Study of Op-Amp-based Integrators Suitable for Fractional -Order Controller Design., , , , , , , and . TSP, page 740-743. IEEE, (2019)Passive fractional-order components based on resistive-capacitive circuits with distributed parameters., , , and . TSP, page 638-642. IEEE, (2016)Universal Current Conveyor and Universal Voltage Conveyor Measurements and Modelling., , and . ICN/ICONS/MCL, page 173. IEEE Computer Society, (2006)Second-Order State-Variable Filter with Current Operational Amplifiers., and . ICONS, page 57-61. IEEE Computer Society, (2008)Design and Examples of Fractional-Order Capacitor Based on C-R-NC Layer Structure., , , , , , , , and . ICUMT, page 91-96. IEEE, (2023)FGIC44 - Fully Controllable Immittance Converter: Chip Performance Evaluation., , and . ICUMT, page 182-187. IEEE, (2021)Current conveyors in current-mode circuits approximating fractional-order low-pass filter., , , and . ECCTD, page 1-4. IEEE, (2017)Second-Order Multifunction Filters with Current Operational Amplifiers., and . PWC, volume 245 of IFIP, page 578-584. Springer, (2007)Synthesis of fractional-order elements using the RC-EDP approach., , , and . ECCTD, page 1-4. IEEE, (2017)Low-Pass Filter with UCC Suitable for Data Systems., , and . ICN/ICONS/MCL, page 153. IEEE Computer Society, (2006)