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L6710 Fiches technique(PDF) 21 Page - STMicroelectronics |
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L6710 Fiches technique(HTML) 21 Page - STMicroelectronics |
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21 / 34 page ![]() 21/34 L6710 Figure 14. Current Sharing Control Loop. Where ∆IREAD is the difference between one phase current and the ideal current (IMAX/2). For Rsense=4m Ω and Imax=40A the current sharing error is equal to 2.5%, neglecting errors due to Rg and Rsense mismatches. Average Current Mode (ACM) Control Loop The average current mode control loop is reported in figure 15. The current information IFB sourced by the FB pin flows into RFB implementing the dependence of the output voltage from the read current. The ACM control loop gain results (obtained opening the loop after the COMP pin) Where: ■ 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 two inductor impedance; ■ A(s) is the error amplifier gain; ■ is the ACM PWM transfer function where Vosc is the oscillator ramp amplitude and has a typical value of 3V Removing the dependence from the Error Amplifier gain, so assuming this gain high enough, the control loop gain results: With further simplifications, it results: L1 L2 + + PWM1 1/5 1/5 IINFO2 IINFO1 PWM2 COMP VOUT CURRENT SHARING DUTY CYCLE CORRECTION D02IN1393 G LOOP s ) () PWM Z F s () R DROOP Z P s () + () ⋅ ⋅ Z P s () Z L s () + () Z F s () As () --------------- 1 1 As () ------------ + R FB ⋅ + ⋅ -------------------------------------------------------------------------------------------------------------------- – = R DROOP Rsense Rg ---------------------- R FB ⋅ = PWM 4 5 --- V IN ∆V OSC ------------------- ⋅ = G LOOP s () 4 5 --- V IN ∆V OSC ------------------- Z F s () Z P s () Z L s () + ------------------------------------ Rs Rg -------- Z P s () R FB --------------- + ⋅⋅ ⋅ – = G LOOP s () 4 5 --- V IN ∆V OSC ------------------- Z F s () R FB --------------- Ro R DROOP + Ro R L 2 ------- + ------------------------------------- 1s Co R DROOP //Ro ESR + () ⋅ ⋅ + s 2 Co L 2 --- s L 2Ro ⋅ --------------- Co E SR Co R L 2 ------- ⋅ + ⋅ + 1 + ⋅ + ⋅ ⋅ ---------------------------------------------------------------------------------------------------------------------------------- ⋅⋅ ⋅ – = |
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