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L6751 датащи(PDF) 33 Page - STMicroelectronics |
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L6751 датащи(HTML) 33 Page - STMicroelectronics |
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33 / 59 page ![]() L6751 Output voltage positioning Doc ID 023992 Rev 1 33/59 Figure 7 shows the current sense circuit used to implement the load-line. The current flow- ing across the inductor DCR is read through RSG. RSG programs a trans-conductance gain and generates a current ISDROOP proportional to the current delivered by the single-phase section that is then sourced from the SFB pin with proper gain eventually adjusted by the PMBus commands. RSFB gives the final gain to program the desired load-line slope (Figure 6). The output characteristic vs. load current is then given by: Equation 7 where RSLL is the resulting load-line resistance implemented by the single-phase section. The RSFB resistor can then be designed according to the RSLL as follows: Equation 8 6.7 Dynamic VID transition support The L6751 manages dynamic VID transitions that allow the output voltage of both sections to be modified during normal device operation for power management purposes. OV, UV and OC signals are masked during every DVID transition and they are re-activated with proper delay to prevent from false triggering. When changing dynamically the regulated voltage (DVID), the system needs to charge or discharge the output capacitor accordingly. This means that an extra-current IDVID needs to be delivered (especially when increasing the output regulated voltage) and it must be con- sidered when setting the overcurrent threshold of both sections. This current results: Equation 9 where dVOUT / dTVID depends on the specific command issued (20 mV/μsec for SetVID_Fast and 5 mV/ μsec for SetVID_Slow). Overcoming the total OC threshold during the dynamic VID causes the device to latch and disable. Set proper filtering on ILIM to pre- vent from false total-OC tripping. As soon as the controller receives a new valid command to set the VID level for one (or both) of the two sections, the reference of the involved section steps up or down according to the target-VID with the programmed slope until the new code is reached. If a new valid command is issued during the transition, the device updates the target-VID level and performs the dynamic transition up to the new code. OV, UV are masked during the transition and re-activated with proper delay after the end of the transition to prevent from false triggering. V SOUT=VID R SFB I SDROOP ⋅ – VID R SFB DCR R SG ------------- I SOUT ⋅⋅ – VID R SLL I SOUT ⋅ – = R SFB R SLL R SG DCR ------------- ⋅ = I DVID C OUT dV OUT dT VID ------------------ ⋅ = |
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