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MP2930 Datasheet(PDF) 13 Page - Monolithic Power Systems |
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MP2930 Datasheet(HTML) 13 Page - Monolithic Power Systems |
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13 / 24 page ![]() MP2930 - 4-PHASE PWM CONTROLLER WITH 8-BIT DAC CODE MP2930 Rev. 1.01 www.MonolithicPower.com 13 10/30/2013 MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited. © 2013 MPS. All Rights Reserved. Connect a resistor ROFS between OFS to GND to generate a negative offset. The voltage across it is regulated to 0.4V, and IOFS flows out of OFS. The negative offset is: OFS R REF R 0.4 OFFSET V (10) The maximum Negative Offset for MP2930 is 150mV. Enable and Disable While in shutdown mode, the PWM outputs are held in a Hi-Z state, and the SD signal is pulled low to assure the Intelli-phase remain off. The following input conditions must be met to start MP2932. 1. VCC must reach the internal power-on reset (POR) rising threshold. 2. EN_PWR is used to coordinate the power sequencing between VCC and another voltage rail. The enable comparator holds the MP2932 in shutdown until the voltage at EN_PWR rises above 0.875V. 3. The voltage on EN_VTT must be higher than 0.875V to enable the controller. This pin is typically connected to the output of VTT VR. 10k Ω 910 Ω MP2930 INTERNAL CIRCUIT EXTERNAL CIRCUIT VCC EN_PWR ENABLE COMPARATOR 0.875V 0.875V EN_VTT POR CIRCUIT +12V SOFT-START AND FAULT LOGIC Figure 6 —Power Sequencing Using Threshold Sensitive Enable (EN) Function When all conditions are satisfied, MP2930 begins the soft-start and ramps the output voltage to 1.1V first. After remaining at 1.1V for some time, MP2930 reads the ID code at ID input pins. If the ID code is valid, MP2930 will regulate the output to the final ID setting. If the ID code is OFF code, MP2930 will shutdown, and cycling VCC, EN_PWR or EN_VTT is needed to restart. Soft-Start MP2930 based VR has 4 periods during soft- start as shown in Figure 7. After VCC, EN_VTT and EN_PWR reach their POR/enable thresholds, the controller will have fixed delay period td1. After this delay period, the VR will begin first soft-start ramp until the output voltage reaches 1.1V voltage. Then, the controller will regulate the VR voltage at 1.1V for another fixed period td3. At the end of td3 period, MP2930 reads the ID signals. If the ID code is valid, MP2930 will initiate the second soft-start ramp until the voltage reaches the ID voltage minus offset voltage. VOUT td1 td2 td3 td4 td5 500us/DIV EN_VTT VR_RDY 1.1V Figure 7 —Soft-Start Waveforms The soft-start time is the sum of the 4 periods, as shown in Equation (12): d4 t d3 t d2 t d1 t SS t (12) td1 is a fixed delay with the typical value as 1.36ms. td3 is determined by the fixed 85µs plus the time to obtain valid ID voltage. If the ID is valid before the output reaches the 1.1V, the minimum time to validate the ID input is 500ns. Therefore the minimum td3 is about 86µs. During td2 and td4, MP2930 digitally controls the DAC voltage change at 6.25mV per step. The time for each step is determined by the frequency of the soft-start oscillator which is |
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