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RT6310C/CH 数据表(PDF) 39 Page - Richtek Technology Corporation |
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RT6310C/CH 数据表(HTML) 39 Page - Richtek Technology Corporation |
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39 / 54 page ![]() RT6310 Copyright © 2023 Richtek Technology Corporation. All rights reserved. is a registered trademark of Richtek Technology Corporation. DS6310-04 August 2023 www.richtek.com 39 Application Information Richtek’s component specification does not include the following information in the Application Information section. Thereby no warranty is given regarding its validity and accuracy. Customers should take responsibility to verify their own designs and reserve suitable design margin to ensure the functional suitability of their components and systems. A general RT6310 application circuit is shown in Typical Application Circuit section. External component selection is largely driven by the load requirement. In this section, the key external components such as the inductor L, the input capacitor CIN, the output capacitor COUT, the internal regulator capacitor CVCC, and the bootstrap capacitor CBOOT are introduced. Output Voltage Adjust The RT6310C/CH is internally built with feedback resistors for setting VOUT voltage to 5.1V. The FF pin is located between feedback R1 resistor (80k ) and feedback R2 resistor (40k ). In application, if slightly decreasing output voltage is needed, the additional resistor (R3) added between VOUT pin and FF pin decreases the output voltage. If the output voltage needs to increase slightly, the additional resistor (R4) added between FF pin and GND increases the output voltage. Please refer to the following equation and Figure 13. OUT _Valley REF REFF R1//R3 V = 1 + V , R2//R4 where R1 = 80k , R2 = 40k , V = 1.7V FF VOUT RT6310C/CH R3 VOUT R4 R1 R2 AGND 80k Ω 40k Ω Figure 13. RT6310C/CH Slightly Adjusts VOUT with FF Pin Inductor Selection The inductor selection makes trade-offs among size, cost, efficiency, and transient response requirements. Generally, three key inductor parameters are specified for operation with the device: inductance value (L), inductor saturation current (ISAT), and DC resistance (DCR). A good compromise between size and loss is a 30% peak-to- peak ripple current ΔIL to the IC rated current. The switching frequency, input voltage, output voltage, and selected inductor ripple current determines the inductor value as follows : ( ) OUT IN OUT IN SW L V V V L = V f I − Larger inductance values result in lower output ripple voltage and higher efficiency, but a slightly degraded transient response. Lower inductance values allow for smaller case size, but the larger ripple current increases the AC losses in the inductor. To enhance the efficiency, choose a low-loss inductor having the lowest possible DC resistance that fits in the allotted dimensions. The inductor value determines not only the ripple current but also the load current of boundary between DEM and CCM. In the applications, the RT6310 may encounter the events of power on inrush current (capacitive load or heavy load) and output overloading. The RT6310 provides the peak and valley current-limit protections to prevent the device from damages. Moreover, to make the current-limit protection effective, a saturation current rating of the inductor must be greater than the valley current limit of the RT6310. Input Capacitor Selection Input capacitance (CIN) is needed to filter the pulsating current at the drain of the high-side MOSFET. The large ripple voltage on VIN pin must be minimized by CIN. The peak-to-peak voltage ripple on input capacitor is |
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