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TPS51113 датащи(PDF) 18 Page - Texas Instruments |
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TPS51113 датащи(HTML) 18 Page - Texas Instruments |
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18 / 26 page ![]() Input Capacitor Selection ( ) ( ) f IN OUT OUT IN min IN SW RIPPLE C I V C 44 F V V ´ = = m ´ ´ (30) ( ) ( ) IN IN RIPPLE ESR _ C C OUT RIPPLE V ESR 4.3 m I I 2 = = W æ ö + ç ÷ ç ÷ è ø (31) Choosing MOSFETS High-Side MOSFET Power Loss ( ) ( ) f 2 D1 S1 D2 S2 HFET _ Loss COND1 SW1 RMS1 IN SW DS on 1 I t I t P P P I R V 649 mW 6 2 ´ ´ æ ö = + = ´ + ´ + ´ = ç ÷ è ø (32) Synchronous Rectifier MOSFET Power Loss ( ) f f 2 SR _ Loss COND2 COND3 RR RMS2 O F D SW RR IN SW DS on 2 1 P P P P I R I V t Q V 382mW 2 = + + = ´ + ´ ´ ´ + ´ ´ ´ = é ù ë û Feedback Loop Compensation 0 OUT 1 f 6.0 kHz 2 L C = = p ´ ´ (34) Z OUT 1 f 18.8 kHz 2 ESR C = = p ´ ´ (35) TPS51113, TPS51163 SLUS864 – MAY 2009........................................................................................................................................................................................................ www.ti.com Considering 100 mV VRIPPLE(Cin) and 50 mV VRIPPLE(ESR_Cin), the input capacitance value and ESR value can be calculated according to Equation 7 and Equation 8, respectively. Therefore, two 22- µF ceramic capacitors with 2-mΩ ESR can meet this requirement. BSC079N03S is used for the high-side MOSFET. The on-resistance, RDS(on)1 is 7.9 mΩ. MOSFET switching-on time (ts1) and switching-off time (ts2) are approximately 9 ns and 24 ns, respectively. By using Equation 9 through Equation 13, the total power loss of the high-side MOSFET is estimated. BSC032N03S is used for the synchronous rectifier MOSFET. The on-resistance, RDS(on)1 is 3.2 mΩ. The body diode has a 0.84-V diode forward voltage and 15-nC reverse recovery charge. The output driver deadtime is 30 ns. By using Equation 14 through Equation 18, the total power loss of the synchronous MOSFET is estimated, (33) Since TPS51113 and TPS51163 utilize voltage-mode control for buck converters, Type III network is recommended for loop compensation. The converter utilizes a 1.5- µH inductor and 470-µF capacitor with 18-mΩ ESR. The double pole, determined by the L, and COUT of the buck converter, is derived by Equation 19 Also, the ESR zero of the buck converter can be achieved by using Equation 20. 18 Submit Documentation Feedback Copyright © 2009, Texas Instruments Incorporated Product Folder Link(s) :TPS51113 TPS51163 |
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