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L6712AD 数据表(PDF) 19 Page - STMicroelectronics |
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L6712AD 数据表(HTML) 19 Page - STMicroelectronics |
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19 / 27 page ![]() 19/27 L6712A L6712 worst case is the response time after removal of the load with the minimum output voltage programmed and the maximum input voltage available. MAIN CONTROL LOOP The system control loop topology depends on the DROOP pin connection: if connected to FB (droop func- tion active) an Average Current Mode topology must be considered while, if connected to GND (droop function not active) a Voltage Mode topology must be considered instead. Anyway, the system control loop encloses the Current Sharing control loop to allow proper sharing to the inductor' currents. Each loop gives, with a proper gain, the correction to the PWMs in order to minimize the error in its regulation: the Current Sharing control loop equalize the currents in the inductors while the output voltage control loop fixes the output voltage equal to the reference programmed by VID (with or without the droop effect and with or without considering the Remote Amplifier Gain). Figure 12 reports the block diagram of the main control loop. Figure 12. Main Control Loop Diagram Current Sharing (CS) Control Loop Active current sharing is implemented using the information from Trans conductance differential amplifier. A current reference equal to the average of the read current (IAVG) is internally built; the error between the read current and this reference is converted to a voltage with a proper gain and it is used to adjust the duty cycle whose dominant value is set by the error amplifier at COMP pin (See fig. 13). The current sharing control is a high bandwidth control loop allowing current sharing even during load transients. The current sharing error is affected by the choice of external components; choose precise Rg resistor (±1% is necessary) to sense the current. The current sharing error is internally dominated by the voltage offset of Trans conductance differential amplifier; considering a voltage offset equal to 2mV across the sense resistor, the current reading error is given by the following equation: L1 L2 + + PWM1 1/5 + - 1/5 IINFO2 IINFO1 4/5 ZF(S) PWM2 CO FB COMP RO ERROR AMPLIFIER REFERENCE PROGRAMMED BY VID CURRENT SHARING DUTY CYCLE CORRECTION RFB D03IN1518 RA_Gain ∆I READ I MAX -------------------- 2mV R SENSE IMAX ⋅ ---------------------------------------- = |
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