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MPQ8632-20 Scheda tecnica(PDF) 27 Page - Monolithic Power Systems |
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MPQ8632-20 Scheda tecnica(HTML) 27 Page - Monolithic Power Systems |
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27 / 46 page ![]() MPQ8632 HIGH EFFICIENCY 18V SYNCHRONOUS STEP-DOWN CONVERTER FAMILY FOR 4A TO 20A MPQ8632 Rev.1.24 www.MonolithicPower.com 27 8/28/2013 MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited. © 2013 MPS. All Rights Reserved. The ESR dominates the switching-frequency impedance for POSCAPs,. The ESR ramp voltage is high enough to stabilize the system. thus eliminating the need for an external ramp. Select a minimum ESR value around 12mΩ to ensure stable operation. For simplification, the output ripple can be approximated as: ESR IN OUT SW OUT OUT R ) V V 1 ( L F V V (26) Inductor The inductor supplies constant current to the output load while being driven by the switching input voltage. A larger value inductor results in less ripple current and lower output ripple voltage, but is larger physical size, has a higher series resistance, and/or lower saturation current. Generally, select an inductor value that allows the inductor peak-to-peak ripple current to 30% to 40% of the maximum switch current limit. Also, design for a peak inductor current that is below the maximum switch current limit. Calculate the inductance value as: ) V V 1 ( I F V L IN OUT L SW OUT (27) Whe re ΔI L is the peak-to-peak inductor ripple current. Choose an inductor that will not saturate under the maximum inductor peak current. The peak inductor current can be calculated as: ) V V 1 ( L F 2 V I I IN OUT SW OUT OUT LP (28) Table 2 lists a few highly-recommended high- efficiency inductors. Table 2 —Inductor Selection Guide Part Number Manufacturer Inductance (µH) DCR (mΩ) Current Rating (A) Dimensions L x W x H (mm 3) Switching Frequency (kHz) 744325072 Wurth 0.72 1.35 35 10.2 x 10.5 x 4.7 500 FDU1250C-1R0M TOKO 1 1.72 31.3 13.3 x 12.1 x 5 500 FDA1055-1R5M TOKO 1.5 2.8 24 11.6 x 10.8 x 5.5 500 744325180 Wurth 1.8 3.5 18 10.2 x 10.5 x 4.7 500 FDA1055-2R2M TOKO 2.2 3.94 20.6 11.6 x 10.8 x 5.5 500 FDA1055-3R3M TOKO 3.3 5.92 15.6 11.6 x 10.8 x 5.5 500 HC7-3R9-R Cooper 3.9 7.9 10.6 13.8 x 13 x 5.5 500 Typical Design Parameter Tables The following tables include recommended component values for typical output voltages (1V, 2.5V, 3.3V) and switching frequency (500kHz). Refer to Tables 3-9 for design cases without external ramp compensation. And Tables 10-16 are for design cases with external ramp compensation. An external ramp is not needed when using high-ESR output capacitors, such as electrolytic or POSCAPs. Use an external ramp when using low-ESR capacitors, such as ceramic capacitors. For cases not listed in this datasheet, an excel spreadsheet provided by local sales representatives can assist with the calculations. Table 3 —MPQ8632-4, F SW=500kHz, VIN=12V VOUT (V) L ( μH) R1 (k Ω) R2 (k Ω) R7 (k Ω) 1 1.8 13.3 20 357 2.5 3.3 63.4 20 887 3.3 3.9 91 20 1200 Table 4 —MPQ8632-6, F SW=500kHz, VIN=12V VOUT (V) L ( μH) R1 (k Ω) R2 (k Ω) R7 (k Ω) 1 1 13.3 20 357 2.5 2.2 63.4 20 887 3.3 3.3 91 20 1200 |
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