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LTC3111 датащи(PDF) 21 Page - Linear Technology |
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LTC3111 датащи(HTML) 21 Page - Linear Technology |
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21 / 32 page ![]() LTC3111 21 3111fa For more information www.linear.com/LTC3111 APPLICATIONS INFORMATION too high in frequency. The third pole at frequency fPOLE3 provides attenuation of high frequency switching noise. The transfer function of the compensated Type III error amplifier from the input of the resistor divider to the output of the error amplifier, COMP, is: VCOMP VO = GCOMP • 1 + s 2• π • fZERO1 • 1 + s 2• π • fZERO2 s• 1 + s 2• π • fPOLE2 • 1 + s 2• π • fPOLE3 The compensation gain is given by the following equation. The simpler approximate value is sufficiently accurate in most cases since CFB is typically much larger in value than CPOLE. GCOMP ≅ 1 R1• CFB +CPOLE ( ) ≅ 1 R1•CFB ThepoleandzerofrequenciesoftheTypeIIIcompensation network can be calculated from the following equations where all frequencies are in Hz, resistances are in ohms, and capacitances are in farads. fZERO1= 1 2• π •RFB •CFB fZERO2 = 1 2• π R1+RFF ( )•CFF ≅ 1 2• π •R1•CFF fPOLE2 = 1 2• π • CFB •CPOLE CFB +CPOLE •RFB ≅ 1 2• π •RFB •CPOLE fPOLE3 = 1 2• π •RFF •CFF Inmostapplicationsthecompensationnetworkisdesigned so that the loop crossover frequency is above the resonant frequency of the power stage, but sufficiently below the boostmoderight-half-planezerotominimizetheadditional phaseloss.Oncethecrossoverfrequencyisdecidedupon, the phase boost provided by the compensation network is centered at that point in order to maximize the phase margin. A larger separation in frequency between the zeros and higher order poles will provide a higher peak phase boost but may also increase the gain of the error amplifier which can push out the loop crossover to a higher frequency. The Q of the power stage can have a significant influence on the design of the compensation network because it determineshowrapidlythe180°ofphaselossinthepower stage occurs. For very low values of series resistance, RS, the Q will be higher and the phase loss will occur sharply. In such cases, the phase of the power stage will fall rapidly to –180° above the resonant frequency and the total phase margin must be provided by the compensation network. fZERO1 PHASE GAIN –20dB/DEC –20dB/DEC fZERO2 3111 F08 f fPOLE2 fPOLE3 Figure 8: Type III Compensation Bode Plot |
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