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TPS61253_016 データシート(PDF) 19 Page - Texas Instruments |
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TPS61253_016 データシート(HTML) 19 Page - Texas Instruments |
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19 / 37 page ![]() C 4.7 I F C 10 F O m SW VIN EN VOUT BP GND L 1 H V IN 2.65 V .. 4.85 V V OUT 5.0 V at 700mA TPS61256 Copyright © 2016, Texas Instruments Incorporated 19 TPS61253, TPS61254, TPS61256, TPS61258, TPS61259, TPS612592 www.ti.com SLVSAG8G – SEPTEMBER 2011 – REVISED JUNE 2016 Product Folder Links: TPS61253 TPS61254 TPS61256 TPS61258 TPS61259 TPS612592 Submit Documentation Feedback Copyright © 2011–2016, Texas Instruments Incorporated (1) See Third-Party Products Discalimer (2) Inductor used to characterize TPS61254YFF, TPS61255YFF, TPS61256YFF and TPS61257YFF devices. (3) Inductor used to characterize TPS61253YFF, TPS61258YFF and TPS61259YFF devices. 10 Application and Implementation NOTE Information in the following applications sections is not part of the TI component specification, and TI does not warrant its accuracy or completeness. TI’s customers are responsible for determining suitability of components for their purposes. Customers should validate and test their design implementation to confirm system functionality. 10.1 Application Information With a wide input voltage range of 2.3 V to 5.5 V, the TPS6125x supports applications powered by Li-Ion batteries with extended voltage range. Intended for low-power applications, it supports up to 800-mA load current from a battery discharged as low as 2.65 V and allows the use of low cost chip inductor and capacitors. Different fixed voltage output versions are available from 3.15 V to 5.0 V. The TPS6125x offers a very small solution size due to minimum amount of external components. It allows the use of small inductors and input capacitors to achieve a small solution size. During shutdown, the load is completely disconnected from the battery. 10.2 Typical Application This section details an application with TPS61256 to output fixed 5.0 V. Figure 28. Smallest Solution Size Application 10.2.1 Design Requirements In this example, TPS61256 is used to design a 5-V power supply with up to 700-mA output current capability. The TPS61256 can be powered by one-cell Li-ion battery, and in this example the input voltage range is from 2.65 V to 4.85 V. 10.2.2 Detailed Design Procedure Table 3. List of Components REFERENCE DESCRIPTION PART NUMBER, MANUFACTURER(1) L(2) 1.0 μH, 1.8 A, 48 mΩ, 3.2 x 2.5 x 1.0mm max. height LQM32PN1R0MG0, muRata L(3) 1.0 μH, 3.7 A, 37 mΩ, 3.2 x 2.5 x 1.2mm max. height DFE322512C, TOKO CI 4.7 μF, 6.3 V, 0402, X5R ceramic GRM155R60J475M, muRata CO 10 μF, 6.3 V, 0603, X5R ceramic GRM188R60J106ME84, muRata 10.2.2.1 Inductor Selection A boost converter normally requires two main passive components for storing energy during the conversion, an inductor and an output capacitor. It is advisable to select an inductor with a saturation current rating higher than the possible peak current flowing through the power switches. The inductor peak current varies as a function of the load, the input and output voltages and can be estimated using Equation 4. |
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