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LP8733-Q1 Datasheet(PDF) 64 Page - Texas Instruments |
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LP8733-Q1 Datasheet(HTML) 64 Page - Texas Instruments |
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64 / 86 page ![]() Table 8-2. Recommended Buck Input Capacitor (X7R Dielectric) MANUFACTURER PART NUMBER VALUE CASE SIZE DIMENSIONS L × W × H (mm) VOLTAGE RATING Murata GCM21BR71A106KE22 10 µF (10%) 0805 2 × 1.25 × 1.25 10 V 8.2.1.3 Buck Output Capacitor Selection The output capacitor COUT_BUCK0 and COUT_BUCK1 are shown in Section 8.2. A ceramic local output capacitor of 22 μF is required per phase. Use ceramic capacitors, X7R type; do not use Y5V or F. DC bias voltage characteristics of ceramic capacitors must be considered. The output filter capacitor smooths out current flow from the inductor to the load, which helps maintain a steady output voltage during transient load changes and reduces output voltage ripple. These capacitors must be selected with sufficient capacitance and sufficiently low ESR and ESL to perform these functions. The minimum effective output capacitance to ensure good performance is 10 μF per phase, including the DC voltage rolloff, tolerances, aging, and temperature effects. The output voltage ripple is caused by the charging and discharging of the output capacitor and due to its RESR. The RESR is frequency dependent (and temperature dependent); ensure the value used for selection process is at the switching frequency of the part. See Table 8-3. POL capacitors CPOL_BUCKx can be used to improve load transient performance and to decrease the ripple voltage. A higher output capacitance improves the load step behavior, reduces the output voltage ripple, and decreases the PFM switching frequency. However, output capacitance higher than 150 μF per phase is not necessarily of any benefit. The output capacitor may be the limiting factor in the output voltage ramp, see Section 6 for maximum output capacitance for different slew-rate settings. For large output capacitors, the output voltage might be slower than the programmed ramp rate at voltage transitions, because of the higher energy stored on the output capacitance. Also at start-up, the time required to charge the output capacitor to target value might be longer. At shutdown, the output voltage is discharged to a 0.6 V level using forced-PWM operation. This can increase the input voltage if the load current is small and the output capacitor is large compared to input capacitor. Below the 0.6 V level, the output capacitor is discharged by the internal discharge resistor, and with large capacitor more time is required to settle VOUT down as a consequence of the increased time constant. Table 8-3. Recommended Buck Output Capacitors (X7R Dielectric) MANUFACTURER PART NUMBER VALUE CASE SIZE DIMENSIONS L × W × H (mm) VOLTAGE RATING Murata GCM31CR71A226KE02 22 µF (10%) 1206 3.2 × 1.6 × 1.6 10 V 8.2.1.4 LDO Input Capacitor Selection The input capacitors CIN_LDO0 and CIN_LDO1 are shown in the Table 8-4. A ceramic input capacitor of 2.2 μF, 6.3 V is sufficient for most applications. Place the input capacitor as close as possible to the VIN_LDOx pin and AGND pin of the device. A larger value or higher voltage rating improves the input voltage filtering. Use X7R type of capacitors, not Y5V or F. DC bias characteristics of capacitors must be considered, the minimum effective input capacitance to ensure good performance is 0.6 μF per LDO input at maximum input voltage including tolerances, ambient temperature range, and aging. See Table 8-4. Table 8-4. Recommended LDO Input Capacitors (X7R Dielectric) MANUFACTURER PART NUMBER VALUE CASE SIZE DIMENSIONS L × W × H (mm) VOLTAGE RATING Murata GCM188R70J225KE22 2.2 µF (10%) 0603 1.6 × 0.8 × 0.8 6.3 V Murata GCM21BR71C475KA73 4.7 µF (10%) 0805 2 × 1.25 × 1.25 16 V 8.2.1.5 LDO Output Capacitor Selection The output capacitors COUT_LDO0 and COUT_LDO1 are shown in the Section 8.2. A ceramic output capacitor of minimum 1.0 μF is required. Place the output capacitor as close to the VOUT_LDOx pin and AGND pin of the device as possible. Use X7R type of capacitors, not Y5V or F. DC bias characteristics of capacitors must be LP8733-Q1 SNVSB64A – JUNE 2019 – REVISED JUNE 2021 www.ti.com 64 Submit Document Feedback Copyright © 2022 Texas Instruments Incorporated Product Folder Links: LP8733-Q1 |
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