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MP2498 Folha de dados(PDF) 13 Page - Monolithic Power Systems |
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MP2498 Folha de dados(HTML) 13 Page - Monolithic Power Systems |
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13 / 16 page ![]() MP2498 –INTEGRATED 100V LOAD DUMP PROTECTION, 2A STEP-DOWN REGULATOR MP2498 Rev. 1.0 www.MonolithicPower.com 13 8/7/2012 MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited. © 2012 MPS. All Rights Reserved. The system may have another zero of importance, if the output capacitor has a large capacitance and/or a high ESR value. The zero, due to the ESR and capacitance of the output capacitor, is located at: ESR ESR 1 f 2π C2 R = ×× In this case, a third pole set by the compensation capacitor (C5) and the compensation resistor (R3) is used to compensate the effect of the ESR zero on the loop gain. This pole is located at: P3 1 f 2 π C5 R 3 = ×× The goal of compensation design is to shape the converter transfer function to get a desired loop gain. The system crossover frequency where the feedback loop has the unity gain is important. Lower crossover frequencies result in slower line and load transient responses, while higher crossover frequencies could cause system unstable. A good rule of thumb is to set the crossover frequency to approximately one-tenth of the switching frequency. Table 3—Compensation Values for Typical Output Voltage/Capacitor Combinations VOUT (V) L (µH) C2 (µF) R3 (kΩ) C3 (pF) C6 (pF) 1.8 4.7 33 32.4 680 None 2.5 4.7 - 6.8 22 26.1 680 None 3.3 6.8 -10 22 68.1 220 None 5 15 - 22 33 47.5 330 None 12 10 22 16 470 2 To optimize the compensation components for conditions not listed in Table 3, the following procedure can be used. 1. Choose the compensation resistor (R3) to set the desired crossover frequency. Determine the R3 value by the following equation: COUT EA CS FB 2 π C2 f V R3 GG V × × =× × Where fC is the desired crossover frequency. 2. Choose the compensation capacitor (C3) to achieve the desired phase margin. For applications with typical inductor values, setting the compensation zero, fZ1, below one forth of the crossover frequency provides sufficient phase margin. Determine the C3 value by the following equation: C 4 C3 2 π C2 f > ×× 3. Determine if the second compensation capacitor (C6) is required. It is required if the ESR zero of the output capacitor is located at less than half of the switching frequency, or the following relationship is valid: S ESR f 1 2π C2 R 2 < ×× If this is the case, then add the second compensation capacitor (C5) to set the pole fP3 at the location of the ESR zero. Determine the C5 value by the equation: ESR C2 R C5 R3 × = High Frequency Operation The switching frequency of MP2498 can be programmed up to 1.2MHz by an external resistor. The minimum on time of MP2498 is about 100ns (typ). Pulse skipping operation can be seen more easily at higher switching frequency due to the minimum on time. Since the internal bootstrap circuitry has higher impedance, which may not be adequate to charge the bootstrap capacitor during each (1-D)×Ts charging period, an external bootstrap charging diode is strongly recommended if the switching frequency is about 1.2MHz (see External Bootstrap Diode section for detailed implementation information). |
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