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DFE252012PD-R47M Datasheet(PDF) 18 Page - Texas Instruments |
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DFE252012PD-R47M Datasheet(HTML) 18 Page - Texas Instruments |
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18 / 35 page ![]() Table 10-1. Typical Inductors (continued) TYPE INDUCTANCE [µH] CURRENT [A] (1) FOR DEVICE NOMINAL SWITCHING FREQUENCY DIMENSIONS [LxBxH] mm MANUFACTURER(2) XEL4020-561ME 0.56 µH, ±20% 9.9 TPS62810-Q1, TPS62813-Q1, TPS62812-Q1 2.25 MHz 4 × 4 × 2.1 Coilcraft XEL4030-471ME 0.47 µH, ±20% 12.3 TPS62810-Q1, TPS62813-Q1, TPS62812-Q1 2.25 MHz 4 × 4 × 3.1 Coilcraft XEL3515-561ME 0.56 µH, ±20% 4.5 TPS62813-Q1, TPS62812-Q1 2.25 MHz 3.5 × 3.2 × 1.5 Coilcraft XFL3012-331MEB 0.33 µH, ±20% 2.6 TPS62811-Q1 TPS62812-Q1 ≥ 3.5 MHz 3 × 3 × 1.3 Coilcraft XPL2010-681ML 0.68 µH, ±20% 1.5 TPS62811-Q1 2.25 MHz 2 x 1.9 x 1 Coilcraft DFE252012PD-R47M 0.47 µH, ±20% see data sheet TPS62812-Q1, TPS62813-Q1 2.25 MHz 2.5 × 2 × 1.2 Murata (1) Lower of IRMS at 20°C rise or ISAT at 20% drop. (2) See the Third-party Products Disclaimer. Calculating the maximum inductor current using the actual operating conditions gives the minimum saturation current of the inductor needed. TI recommends a margin of about 20% to add. A larger inductor value is also useful to get lower ripple current, but increases the transient response time and size as well. 10.1.3 Capacitor Selection 10.1.3.1 Input Capacitor For most applications, 22 µF nominal is sufficient and recommended. The input capacitor buffers the input voltage for transient events and also decouples the converter from the supply. TI recommends a low-ESR multilayer ceramic capacitor (MLCC) for best filtering and must be placed between VIN and GND as close as possible to those pins. 10.1.3.2 Output Capacitor The architecture of the TPS6281x-Q1 allows the use of tiny ceramic output capacitors with low equivalent series resistance (ESR). These capacitors provide low output voltage ripple and are recommended. To keep its low resistance up to high frequencies and to get narrow capacitance variation with temperature, TI recommends to use dielectric X7R, X7T, or an equivalent. Using a higher value has advantages like smaller voltage ripple and a tighter DC output accuracy in power save mode. By changing the device compensation with a resistor from COMP/FSET to GND, the device can be compensated in three steps based on the minimum capacitance used on the output. The maximum capacitance is 470 µF in any of the compensation settings. The minimum capacitance required on the output depends on the compensation setting as well as on the current rating of the device. TPS62810-Q1 and TPS62813-Q1 require a minimum output capacitance of 27 µF while the lower current versionsTPS62812-Q1and TPS62811-Q1 requires 15 µF at minimum. The required output capacitance also changes with the output voltage. For output voltages below 1 V, the minimum increases linearly from 32 µF at 1 V to 53 µF at 0.6 V for the TPS62810-Q1, the TPS62813-Q1 with the compensation setting for smallest output capacitance. Other compensation ranges for TPS62811-Q1 and TPS62812-Q1 , or both are equivalent. See Table 9-1 and Table 9-2 for details. TPS62810-Q1, TPS62811-Q1, TPS62812-Q1, TPS62813-Q1 SLVSDU1J – AUGUST 2018 – REVISED MARCH 2023 www.ti.com 18 Submit Document Feedback Copyright © 2023 Texas Instruments Incorporated Product Folder Links: TPS62810-Q1 TPS62811-Q1 TPS62812-Q1 TPS62813-Q1 |
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