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AP6502ASP-13 датащи(PDF) 9 Page - Diodes Incorporated |
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AP6502ASP-13 датащи(HTML) 9 Page - Diodes Incorporated |
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9 / 14 page ![]() AP6502A Document number: DS35812 Rev. 4 - 2 9 of 14 www.diodes.com August 2015 © Diodes Incorporated AP6502A Application Information (cont.) Compensation Components (continued) Where VFB is the feedback voltage (0.925V), RLOAD is the load resistor value, GCS is the current sense trans-conductance and AVEA is the error amplifier voltage gain. The control loop transfer function incorporates two poles, one is due to the compensation capacitor (C3) and the output resistor of error amplifier, and the other is due to the output capacitor and the load resistor. These poles are located at: VEA EA P1 A 3 C 2 G f LOAD P2 R 2 C 2 1 f Where GEA is the error amplifier trans-conductance. One zero is present due to the compensation capacitor (C3) and the compensation resistor (R3). This zero is located at: 3 R 3 C 2 1 fZ1 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 crucial. A rule of thumb is to set the crossover frequency to below one-tenth of the switching frequency. Use the following procedure to optimize the compensation components: 1. Choose the compensation resistor (R3) to set the desired crossover frequency. Determine the R3 value by the following equation: FB OUT CS G EA FB OUT CS EA V V G fs 1 . 0 2 C 2 V V G G fc 2 C 2 3 R Where fC is the crossover frequency, which is typically less than one tenth of the switching frequency. 2. Choose the compensation capacitor (C3) to achieve the desired phase margin set the compensation zero, fZ1, to below one fourth of the crossover frequency to provide sufficient phase margin. Determine the C3 value by the following equation: fc 3 R 2 3 C Where R3 is the compensation resistor value. VOUT (V) CIN/C1 (µF) COUT/C2 (µF) RC/R3 (kΩ) CC/C3 (nF) L1 (µH) 1.2 22 47 3.24 6.8 3.3 1.8 22 47 6.8 6.8 3.3 2.5 22 47 6.8 6.8 10 3.3 22 47 6.8 6.8 10 5 22 47 6.8 6.8 10 12 22 47 6.8 6.8 15 Table 2. Recommended Component Selection |
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