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LTM4607 数据表(PDF) 14 Page - Linear Technology |
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LTM4607 数据表(HTML) 14 Page - Linear Technology |
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14 / 24 page ![]() LTM4607 14 4607f APPLICATIONS INFORMATION at buck mode, we can get the current ripple ratio of the current ripple ΔIL to the maximum inductor current IL as follows: ΔIL I L = (V IN –VOUT )• VOUT 2 V IN •L • f •P Figure 3. shows the current ripple ratio at different input voltages based on the inductor values: 2.5μH, 3.3μH, 4.7μH and 6μH. If we need about 40% ripple current ratio at all inputs, the 4.7μH inductor can be selected. At buck mode, sensing resistor selection is based on the maximum output current and the allowed maximum sensing threshold 130mV. R SENSE = 2 • 130mV 2• (P / V OUT ) −ΔIL Consider the safety margin about 30%, we can choose the sensing resistor as 9mΩ. For the input capacitor, use a low ESR sized capacitor to handle the maximum RMS current. Input capacitors are required to be placed adjacent to the module. In Figure 16, the 10μF ceramic input capacitors are selected for their ability to handle the large RMS current into the converter. The 100μF bulk capacitor is only needed if the input source impedance is compromised by long inductive leads or traces. For the output capacitor, the output voltage ripple and transient requirements require low ESR capacitors. If assuming that the ESR dominates the output ripple, the output ripple is as follows: ΔVOUT(P-P) = ESR • ΔIL If a total low ESR of about 5mΩ is chosen for output ca- pacitors, the maximum output ripple of 21.5mV occurs at the input voltage of 36V with the current ripple at 4.3A. Boost Mode Operation For boost mode operation, use input voltage VIN = 5V to 12V, VOUT = 12V and f = 400kHz. Set the PLLFLTR pin and RFB as in buck mode. If the maximum output power P is 60W at boost mode and the module efficiency η is about 95%, we can get the current ripple ratio of the current ripple ΔIL to the maximum inductor current IL as follows: ΔIL I L = (V OUT − VIN )• VIN 2η V OUT •L • f •P Figure 4 shows the current ripple ratio at different input voltages based on the inductor values: 1.5μH, 2.5μH, 3.3μH and 4.7μH. If we need 30% ripple current ratio at all inputs, the 3.3μH inductor can be selected. At boost mode, sensing resistor selection is based on the maximum input current and the allowed maximum sensing threshold 160mV. R SENSE = 2 • 160mV 2• P η •VIN(MIN) + ΔIL Consider the safety margin about 30%, we can choose the sensing resistor as 7mΩ. Figure 3. Current Ripple Ratio at Different Inputs for Buck Mode INPUT VOLTAGE VIN (V) 12 18 0.8 0.6 2.5μH 3.3μH 6μH 0.4 0.2 0 4607 F03 24 30 36 4.7μH |
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