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SP7663 Fiches technique(PDF) 12 Page - Sipex Corporation |
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SP7663 Fiches technique(HTML) 12 Page - Sipex Corporation |
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12 / 19 page ![]() 2 Feb2-07 Rev O SP7663 Wide Input Voltage Range 6A, 600kHz Buck Regulator © 2007 Sipex Corporation SP7663 Voltage Mode Control Loop with Loop Dynamic (SRz2Cz2+1)(SR1Cz3+1) (SRESRCOUT+1) [S^2LC OUT+S(RESR+RDC) COUT+1] VIN SR1Cz2(SRz3Cz3+1)(SRz2Cp1+1) VRAMP_PP VOUT (Volts) VREF (Volts) Notes: R ESR = Output Capacitor Equivalent Series Resistance. R DC = Output Inductor DC Resistance. V RAMP_PP = SP7662 Internal Ramp Amplitude Peak-to-Peak Voltage. Condition: Cz2>>Cp1&R1>>Rz3 OutputLoadResistance>>R ESR & RDC R2 VREF (R1+R2) or VOUT VFBK (Volts) TypeIIIVoltageLoop Compensation G AMP (s) Gain Block PWMStage G PWM Gain Block OutputStage G OUT (s) Gain Block VoltageFeedback G FBK Gain Block capacitor ESR and capacitance. Ignoring the inductor ripple current, the input voltage ripplecanbedeterminedby: ∆ViN = IOut(MAx)•reSr(CiN) + IOut(MAx)•VOut•(ViN - VOut) V2iN • ƒs • CiN The capacitor type suitable for the output capacitors can also be used for the input capacitors. However, exercise extra caution whentantalumcapacitorsareused.Tantalum capacitors are known for catastrophic failure when exposed to surge current, and input capacitors are prone to such surge current when power supplies are connected “live” to low impedance power sources. Although tantalum capacitors have been successfully employed at the input, it is generally not recommended. Loop Compensation Design The open loop gain of the whole system can be divided into the gain of the error ampli- fier,PWMmodulator,buckconverteroutput stage, and feedback resistor divider. In order to cross over at the desired frequency cut-off (FCO),thegainoftheerroramplifiermust compensate for the attenuation caused by the rest of the loop at this frequency. The goal of loop compensation is to manipu- late loop frequency response such that its crossover gain at 0db, results in a slope of -20db/decade. The first step of compensation design is to pick the loop crossover frequency. High crossover frequency is desirable for fast transientresponse,butoftenjeopardizesthe power supply stability. Crossover frequency should be higher than the ESR zero but less than /5 of the switching frequency or APPLICATIONS INFORMATION |
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