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TPSM82810PVCAR Datasheet(PDF) 17 Page - Texas Instruments |
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TPSM82810PVCAR Datasheet(HTML) 17 Page - Texas Instruments |
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17 / 40 page ![]() 3. In the "Design Considerations" section select your design priorities. 4. View your design proposal and compare the generated design with other possible solutions from Texas Instruments. The WEBENCH Power Designer provides a customized schematic along with a list of materials with real-time pricing and component availability. In most cases, these actions are available: • Run electrical simulations to see important waveforms and circuit performance • Export customized schematic and layout into popular CAD formats • Print PDF reports for the design, and share the design with colleagues Get more information about WEBENCH tools here: Design and simulation tools. 9.2.2.2 Setting the Output Voltage The output voltage of the TPSM8281x is adjustable. Choose resistors R1 and R2 to set the output voltage within a range of 0.6V to 5.5V according to Equation 10. To keep the feedback (FB) net robust from noise, set R2 equal to or lower than 100kΩ to have at least 6µA of current in the voltage divider. OUT OUT FB V V R1 R2 1 R2 1 V 0.6V § · § · u u ¨ ¸ ¨ ¸ © ¹ © ¹ (6) Lower values of FB resistors achieve better noise immunity at the expense of reduced light load efficiency. Details about optimizing feedback resistor networks can be found in the analog design journal article Design considerations for a resistive feedback divider in a DC/DC converter. 9.2.2.3 Feedforward capacitor A feedforward capacitor (CFF) is recommended in parallel with R1 in order to improve the transient response. Regardless of the FB resistor values, the CFF value must always be 10pF. 9.2.2.4 Input Capacitor For most applications, a 22µF nominal ceramic capacitor is recommended. The input capacitor buffers the input voltage for transient events and also decouples the converter from the supply. A X7R or X7T multilayer ceramic capacitor (MLCC) is recommended for best filtering and must be placed between VIN and GND as close as possible to those pins. For applications with ambient temperatures below 85°C, a capacitor with X5R dielectric can be used. Ceramic capacitors have a DC-Bias effect, which has a strong influence on the final effective capacitance. Choose the right capacitor carefully in combination with considering the package size and voltage rating. The minimum required input capacitance is 5µF. 9.2.2.5 Output Capacitor The architecture of the TPSM8281x allows the use of ceramic output capacitors which have low equivalent series resistance (ESR). These capacitors provide low output voltage ripple and are recommended. To keep the low resistance up to high frequencies and to get a narrow capacitance variation with temperature, TI recommends to use an X7R or X7T dielectric. At temperatures below 85°C, an X5R dielectric can be used. Using a higher capacitance 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 470µF in any of the compensation settings. The minimum capacitance required on the output depends on the compensation setting and output voltage as shown in Table 8-1. For output voltages below 1V, the minimum required capacitance increases linearly from 32µF at 1V to 53µF at 0.6V with the compensation setting for smallest output capacitance. Other compensation settings scale the same. Ceramic capacitors have a DC-Bias effect, which has a strong influence on the final effective capacitance. Choose the right capacitor carefully in combination with considering the package size and voltage rating. www.ti.com TPSM82810, TPSM82813 SLUSDN6D – SEPTEMBER 2019 – REVISED JUNE 2026 Copyright © 2026 Texas Instruments Incorporated Submit Document Feedback 17 Product Folder Links: TPSM82810 TPSM82813 |
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