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LTM4677 датащи(PDF) 13 Page - Linear Technology |
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LTM4677 датащи(HTML) 13 Page - Linear Technology |
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13 / 34 page ![]() LTM4647 13 4647fb For more information www.linear.com/LTM4647 APPLICATIONS INFORMATION The LTM4647 device is an inherently current mode con- trolled device, so parallel modules will have good current sharing.Thiswillbalancethethermalsinthedesign.Tiethe COMPa, VFB, TRACK/SS and RUN pins of each LTM4647 together to share the current evenly. Figures 25 and 28 show a schematic of the parallel design. Table 2. PHASMD and CLKOUT Signal Relationship PHASMD GND 1/4 INTVCC FLOAT 3/4 INTVCC INTVCC CLKOUT 90° 90° 120° 60° 180° A multiphase power supply could significantly reduce the amount of ripple current in both the input and output capacitors. The RMS input ripple current is reduced by, and the effective ripple frequency is multiplied by, the number of phases used (assuming that the input voltage isgreaterthanthenumberofphasesusedtimestheoutput voltage). The output ripple amplitude is also reduced by the number of phases used. Input RMS Ripple Current Cancellation Application Note 77 provides a detailed explanation of multiphase operation. The input RMS ripple current can- cellation mathematical derivations are presented, and a graph is displayed representing the RMS ripple current reductionasafunctionofthenumberofinterleavedphases (see Figure 4). Soft-Start And Output Voltage Tracking The TRACK/SS pin provides a means to either soft-start the regulator or track it to a different power supply. A ca- pacitor on the TRACK/SS pin will program the ramp rate of the output voltage. An internal 1.25µA current source will charge up the external soft-start capacitor towards INTVCC voltage. When the TRACK/SS voltage is below 0.6V, it will take over the internal 0.6V reference voltage to control the output voltage. The total soft-start time can be calculated as: tSS = 0.6• CSS 1.25µA 0.75 0.8 4647 F04 0.7 0.65 0.6 0.55 0.5 0.45 0.4 0.35 0.3 0.25 0.2 0.15 0.1 0.85 0.9 DUTY CYCLE (VOUT/VIN) 0 0.05 0.10 0.15 0.20 0.25 0.30 0.35 0.40 0.45 0.50 0.55 0.60 1 PHASE 2 PHASE 3 PHASE 4 PHASE 6 PHASE Figure 4. Normalized Input RMS Ripple Current vs Duty Cycle for One to Six µModule Regulators (Phases) |
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