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TPS53353 датащи(PDF) 24 Page - Texas Instruments |
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TPS53353 датащи(HTML) 24 Page - Texas Instruments |
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24 / 37 page ![]() ( ) ( ) æ ö - ´ æ ö - ´ ´ ´ W ç ÷ ç ÷ ç ÷ ´ ´ è ø è ø W = m IN OUT OUT OCP DS(on) SW IN TRIP TRIP V V V 1 I 32 R m 2 L f V R (k ) I ( A) ( ) ( ) ( ) ( ) ( ) - ´ = + ´ ´ ´ IN OUT OUT max TRIP IND peak SW IN DS on max V V V V 1 I 32 R L f V ( ) ( ) ( ) ( ) ( ) ( ) ( ) - ´ - ´ = ´ = ´ ´ ´ IN OUT OUT IN OUT OUT max max SW IN OUT SW IN(max) IND ripple max max V V V V V V 1 3 L I f V I f V TPS53353 SLUSAK2B – AUGUST 2011 – REVISED FEBRUARY 2015 www.ti.com 8.2.2.2 Detailed Design Procedure 8.2.2.2.1 External Component Selection Refer to the External Component Selection Using All Ceramic Output Capacitors section for guidelines for this design with all ceramic output capacitors. The external components selection is a simple process when using organic semiconductors or special polymer output capacitors. 1. SELECT OPERATION MODE AND SOFT-START TIME Select operation mode and soft-start time using Table 3. 2. SELECT SWITCHING FREQUENCY Select the switching frequency from 250 kHz to 1 MHz using Table 1. 3. CHOOSE THE INDUCTOR The inductance value should be determined to give the ripple current of approximately 1/4 to 1/2 of maximum output current. Larger ripple current increases output ripple voltage and improves signal-to-noise ratio and helps ensure stable operation, but increases inductor core loss. Using 1/3 ripple current to maximum output current ratio, the inductance can be determined by Equation 8. (13) The inductor requires a low DCR to achieve good efficiency. It also requires enough room above peak inductor current before saturation. The peak inductor current can be estimated in Equation 9. (14) 4. EXTERNAL COMPONENT SELECTION WITH ALL CERAMIC OUTPUT CAPACITORS Refer to the External Component Selection Using All Ceramic Output Capacitors section to select external components because ceramic output capacitors are used in this design. 5. CHOOSE THE OVERCURRENT SETTING RESISTOR The overcurrent setting resistor, RTRIP, can be determined by . where • ITRIP is the TRIP pin sourcing current (10 µA). • RDS(on) is the thermally compensated on-time resistance value of the low-side MOSFET. (15) Use an RDS(on) value of 1.6 mΩ for an overcurrent level of approximately 20 A. Use an RDS(on) value of 1.7 m Ω for overcurrent level of approximately 10 A. 8.2.2.2.2 External Component Selection Using All Ceramic Output Capacitors When a ceramic output capacitor is used, the stability criteria in Equation 6 cannot be satisfied. The ripple injection approach as shown in Figure 41 is implemented to increase the ripple on the VFB pin and make the system stable. In addition to the selections made using Steps 1 through Step 6 in the section, the ripple injection components must be selected. The C2 value can be fixed at 1 nF. The value of C1 can be selected from 10 nF to 200 nF. 24 Submit Documentation Feedback Copyright © 2011–2015, Texas Instruments Incorporated Product Folder Links: TPS53353 |
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