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L6714 Datasheet(PDF) 58 Page - STMicroelectronics |
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L6714 Datasheet(HTML) 58 Page - STMicroelectronics |
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58 / 70 page ![]() System control loop compensation L6714 58/70 Where: ● RSENSE is the MOSFET RdsON or the Inductor DCR depending on the sensing element selected; ● is the equivalent output resistance determined by the droop function; ● ZP(s) is the impedance resulting by the parallel of the output capacitor (and its ESR) and the applied load RO; ● ZF(s) is the compensation network impedance; ● ZL(s) is the parallel of the N inductor impedance; ● A(s) is the error amplifier gain; ● is the PWM transfer function where ∆VOSC is the oscillator ramp amplitude and has a typical value of 4V. Removing the dependence from the Error Amplifier gain, so assuming this gain high enough, and with further simplifications, the control loop gain results: The system Control Loop gain (See Figure 23) is designed in order to obtain a high DC gain to minimize static error and to cross the 0dB axes with a constant -20dB/dec slope with the desired crossover frequency ωT. Neglecting the effect of ZF(s), the transfer function has one zero and two poles; both the poles are fixed once the output filter is designed (LC filter resonance ωLC) and the zero (ωESR) is fixed by ESR and the Droop resistance. Figure 23. Equivalent control loop block diagram (left) and bode diagram (right). To obtain the desired shape an RF - CF series network is considered for the ZF(s) implementation. A zero at ωF = 1/RFCF is then introduced together with an integrator. This integrator minimizes the static error while placing the zero ωF in correspondence with the L- C resonance assures a simple -20dB/dec shape of the gain. In fact, considering the usual value for the output filter, the LC resonance results to be at frequency lower than the above reported zero. R DROOP R SENSE Rg --------------------- R FB ⋅ = PWM 4 5 --- V IN ∆V OSC ------------------- ⋅ = G LOOP s () 4 5 --- V IN ∆V OSC ---------------------- Z F s () R FB --------------- R O R DROOP + R O R L N ------- + -------------------------------------------- 1s C O R DROOP //R O ESR + () ⋅⋅ + s 2 C O L N ----- ⋅⋅ s L N R O ⋅ ---------------------- C O ESR ⋅ C O R L N ------- ⋅ ++ 1 + ⋅ + ------------------------------------------------------------------------------------------------------------------------------------------------------------- ⋅⋅ ⋅ ⋅ – = VID FB COMP VSEN FBR FBG 64k 64k 64k RF CF RFB DROOP PWM L / N ESR CO RO d VOUT VOUT VOUT ZF(s) ZFB(s) REMOTE BUFFER dB ω ZF(s) GLOOP(s) K ω LC = ωF ω ESR ω T RF[dB] |
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