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'Seminar 800 Topic 7 - Control Loop Design' - TI.com

Lloyd Dixonmargin. Thus a phase lag of 117 at fc correspondsto a 63 phase 1 shows the gain -phase plots of two aver-age current mode Control loops and their transientresponse to a step change in load current. Bothloops cross over at 10 plots are simplified gain -phase plots thatare convenient for depicting the frequency charac-teristics of a feedback 1 POLE loop has one active pole from 10 Hzto over lookHz. Thus the phase lag atfc is 90 andthe phase margin is also 90 . Note that with the -1slope associated with a single pole, the gain doesnot rise rapidly at lower frequencies. The lowerSummary:This paper surveys many practical aspects ofcontrol circuit design . topics include: differentapproaches for achieving Nyquist stability criteria,transient response vs. phase margin, low frequencyaccuracy vs. the shape of the Bode plot, why it isdangerous to depend on conditional stability,achieving the maximum crossover frequency of aswitched loop.

gain/bandwidth will hurt power supply characteris-tics such as regulation and audio susceptibility. Note also that the transient response is slower.

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  Seminars, Design, Loops, Control, Topics, Seminar 800 topic 7 control loop design

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Transcription of 'Seminar 800 Topic 7 - Control Loop Design' - TI.com