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LTC3530 датащи(PDF) 12 Page - Linear Technology |
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LTC3530 датащи(HTML) 12 Page - Linear Technology |
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12 / 16 page ![]() LTC3530 12 3530fb where f = switching frequency in MHz. Therefore frequency selection is a compromise between the optimal efficiency and the smallest solution size. Closing the Feedback Loop The LTC3530 incorporates voltage mode PWM control. The control to output gain varies with operation region (buck, boost, buck/boost), but is usually no greater than 15. The output filter exhibits a double pole response, as given by: fFILTER —POLE = 1 2• •L • COUT Hz (in buck mode) fFILTER —POLE = VIN 2• VOUT • •L •COUT Hz (in boost mode) where L is in henries and COUT is in farads. The output filter zero is given by: fFILTER — ZERO = 1 2• •RESR •COUT Hz where RESR is the equivalent series resistance of the output capacitor. A troublesome feature in boost mode is the right-half plane zero (RHP), given by: fRHPZ= VIN 2 2• •IOUT •L • VOUT Hz The loop gain is typically rolled off before the RHP zero frequency. A simple Type I compensation network can be incorporated to stabilize the loop, but at a cost of reduced bandwidth and slower transient response. To ensure proper phase margin using Type I compensation, the loop must be crossed over a decade before the LC double pole. The unity-gain frequency of the error amplifier with the Type I compensation is given by: fUG = 1 2• •R1• CP1 Hz (referring to Figure 4). Most applications demand an improved transient response to allow a smaller output filter capacitor. To achieve a higher bandwidth, Type III compensation is required, providing two zeros to compensate for the double-pole response of the output filter. Referring to Figure 5, the location of the poles and zeros are given by: fPOLE1 1 2• • 32,000 •R1• CP1 Hz (which is extremely close to DC) fZERO1= 1 2• •RZ •CP1 Hz fZERO2 = 1 2• •R1• CZ1 Hz fPOLE2 = 1 2• •RZ •CP2 Hz where resistance is in ohms and capacitance is in farads. 1.215V R1 R2 3530 F03 FB 12 VC CP1 VOUT 11 – + ERROR AMP 1.215V R1 R2 3530 F04 FB 12 VC CP1 CZ1 RZ VOUT 11 CP2 – + ERROR AMP Figure 4. Error Amplifier with Type I Compensation Figure 5. Error Amplifier with Type III Compensation APPLICATIONS INFORMATION |
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