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An innovative digital control architecture for low-voltage, high-current DC-DC converters with tight voltage regulation
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Mixed-signal voltage-mode control for DC-DC converters with inherent analog derivative action
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May
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S. Saggini, P. Mattavelli, M. Ghioni, and M. Redaelli, "Mixed-signal voltage-mode control for DC-DC converters with inherent analog derivative action," IEEE Trans. Power Electron.,vol. 23, pp. 1485-1493, May 2008.
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A mixed-signal synchronous/asynchronous control for high-frequency DC-DC boost converters
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S. Saggini, P. Mattavelli, G. Garcea, and M. Ghioni, "A mixed-signal synchronous/asynchronous control for high-frequency DC-DC boost converters," IEEE Trans. Ind. Electron., vol. 55, pp. 2053-2060, May 2008.
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High-bandwidth multisampled digitally controlled DCDC converters using ripple compensation
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L. Corradini, P. Mattavelli, E. Tedeschi, and D. Trevisan, "High-bandwidth multisampled digitally controlled DCDC converters using ripple compensation," IEEE Trans. Ind. Electron.,vol. 55, pp. 1501-1508, Apr. 2008.
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Corradini, L.1
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8
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24044523158
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Dynamic hysteresis band control of the buck converter with fast transient response
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July
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Kelvin Ka-Sing Leung and Henry Shu-Hung Chung, "Dynamic hysteresis band control of the buck converter with fast transient response," IEEE Trans. Circuits Syst. II, vol. 52, pp. 398-402, July 2005.
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Leung, K.K.-S.1
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Non-linear digital control breaks bandwidth limitations
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1620619, Twenty-First Annual IEEE Applied Power Electronics Conference and Exposition, APEC '06
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A. Soto, P. Alou, and J.A. Cobos, "Nonlinear digital control breaks bandwidth limitations," in Proc. IEEE Applied Power Electronics Conf., 2006, pp. 724-730. (Pubitemid 44523483)
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Soto, A.1
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10
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65949107847
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A very fast control based on hysteresis of the cout current with a frequency loop to operate at constant frequency
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Santa C. Huerta, P. Alou, J. A. Olivier, O. Garcia, J. A. Cobos, and A. Abou-Alfotouh, "A very fast control based on hysteresis of the cout current with a frequency loop to operate at constant frequency," in Proc. IEEE Applied Power Electronics Conf., 2009, pp. 799-805.
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Santa, C.1
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11
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34547094357
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A new digital control algorithm to achieve optimal dynamic performance in DC-to-DC converters
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July
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G. Feng, E. Meyer, and Y.-F. Liu, "A new digital control algorithm to achieve optimal dynamic performance in DC-to-DC converters," IEEE Trans. Power Electron., vol. 22, pp. 1489-1498, July 2007.
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Feng, G.1
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Continuous-time digital controller for high-frequency DC-DC converters
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Mar.
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Zhenyu Zhao and A. Prodic, "Continuous-time digital controller for high-frequency DC-DC converters," IEEE Trans. Power Electron., vol. 23, pp. 564-573, Mar. 2008.
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Zhao, Z.1
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An optimal control method for buck converters using a practical capacitor charge balance technique
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July
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E. Meyer, Zhiliang Zhang, and Y.-F. Liu, "An optimal control method for buck converters using a practical capacitor charge balance technique," IEEE Trans. Power Electron., vol. 23, pp. 1802-1812, July 2008.
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Meyer, E.1
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47249133827
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Proximate time-optimal digital control for synchronous buck DC-DC converters
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July
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V. Yousefzadeh, A. Babazadeh, B. Ramachandran, E. Alarcon, L. Pao, and D. Maksimovic, "Proximate time-optimal digital control for synchronous buck DC-DC converters," IEEE Trans. Power Electron., vol. 23, pp. 2018-2026, July 2008.
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Yousefzadeh, V.1
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15
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52349121948
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Time optimal, parameters-insensitive digital controller for DC-DC buck converters
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A. Costabeber, L. Corradini, P. Mattavelli, and S. Saggini, "Time optimal, parameters-insensitive digital controller for DC-DC buck converters," in Proc. IEEE Power Electronics Specialist Conf., 2008, pp. 1243-1249.
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Costabeber, A.1
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56649117743
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Time optimal, parameters-insensitive digital controller for VRM applications with adaptive voltage positioning
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L. Corradini, A. Costabeber, P. Mattavelli, and S. Saggini, "Time optimal, parameters-insensitive digital controller for VRM applications with adaptive voltage positioning," in Proc. IEEE Workshop on Computers in Power Elecronics, 2008, pp. 1-8.
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Digital control law using a novel load current estimator principle for improved transient response
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S. Effler, A. Kelly, M. Halton, T. Kruger, and K. Rinne, "Digital control law using a novel load current estimator principle for improved transient response," in Proc. IEEE Power Electronics Specialist Conf., 2008, pp. 4585-4589.
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Effler, S.1
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18
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77952134951
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NXP Semiconductors, Eindhoven, Netherlands
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"PIP212-12M data sheet," NXP Semiconductors, Eindhoven, Netherlands.
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PIP212-12M Data Sheet
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19
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77952144129
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Fairchild Semiconductors, San Jose, USA
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"FDMF8700 data sheet," Fairchild Semiconductors, San Jose, USA.
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FDMF8700 Data Sheet
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High-frequency digital PWM controller IC for DC-DC converters
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Jan.
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B. J. Patella, A. Prodic, A. Zirger, and D. Maksimovic, "High-frequency digital PWM controller IC for DC-DC converters," IEEE Trans. on Power Electron., vol. 18, pp. 438-446, Jan. 2003.
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Patella, B.J.1
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Design of a digital PID regulator based on look-up tables for control of high-frequency DC-DC converters
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A. Prodic and D. Maksimovic, "Design of a digital PID regulator based on look-up tables for control of high-frequency DC-DC converters," in Proc. IEEE Workshop on Computers in Power Elecronics, 2002, pp. 18-22.
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