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L6718 数据表(PDF) 51 Page - STMicroelectronics |
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L6718 数据表(HTML) 51 Page - STMicroelectronics |
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51 / 71 page ![]() DocID023399 Rev 3 51/71 L6718 Output voltage positioning Equation 1 Considering now the matching of the time constant between the inductor and the R-C filter applied (time constant mismatches cause the introduction of poles into the current reading network causing instability. In addition, it is also important for the load transient response and to let the system show resistive equivalent output impedance) it results: Equation 2 Figure 11. Current reading The current read through the CSxP / CSxN pairs is converted into a current IINFOx proportional to the current delivered by each phase and the information regarding the average current IAVG = ΣIINFOx / N is internally built into the device (N is the number of working phases). The error between the read current IINFOx and the reference IAVG is then converted into a voltage that, with a proper gain, is used to adjust the duty cycle whose dominant value is set by the voltage error amplifier in order to equalize the current carried by each phase. 8.2 Multi-phase section - defining load-line The L6718 introduces a dependence of the output voltage on the load current recovering part of the drop due to the output capacitor ESR in the load transient. Introducing a dependence of the output voltage on the load current, a static error, proportional to the output current, causes the output voltage to vary according to the sensed current. Figure 11 shows the current sense circuit used to implement the load-line. The current flowing across the inductor(s) is read through the R-C filter across the CSxP and CSxN pins. RG programs a trans-conductance gain and generates a current ICSx proportional to the current of the phase. The sum of the ICSx current is then sourced by the FB pin (IDROOP). RFB gives the final gain to program the desired load-line slope (Figure 10). I CSxN DCR R G ------------- 1s L DCR ⁄ ⋅ + 1s R C ⋅⋅ + -------------------------------------------- I ⋅ PHASEx ⋅ = L DCR ------------- RC I CSxN R L R G -------- I PHASEx ⋅ = ⇒ ⋅ I INFOx == Lx CSxP CSxN DCRx R C RG IPHASEx Inductor DCR Current Sense ICSxN=IINFOx V OUT AM12885v1 |
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