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SC2621STRT 数据表(PDF) 9 Page - Semtech Corporation |
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SC2621STRT 数据表(HTML) 9 Page - Semtech Corporation |
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9 / 10 page ![]() 9 2003 Semtech Corp. www.semtech.com POWER MANAGEMENT SC2621 Applications Information (Cont.) and attenuate high frequency noise. 100 1K 10K 100K 1M -60 -30 0 30 60 Fo Fz Fz1 Fz2 Fp1 Fp2 Fc FR EQ UENCY (Hz ) COM PENSATOR GAI N CON VERT ER G AIN LOO P GA IN 100 1K 10K 100K 1M -60 -30 0 30 60 Fo Fz Fz1 Fz2 Fp1 Fp2 Fc FR EQ UENCY (Hz ) COM PENSATOR GAI N CON VERT ER G AIN LOO P GA IN Fig. 4. Bode plots for control loop design Rbot Vo C1 VREF 0.5V R2 R3 Rtop 3 2 1 C2 C3 Vc Fig. 5. Compensation network The top resistor Rtop of the voltage divider in Fig. 5 can be chosen from 1k to 5k. Then the bottom resistor Rbot is found from: top O bot R V V V R × - = 5 . 0 5 . 0 where 0.5V is the internal reference voltage of the SC2621. The other components of the compensator can be cal- culated using following design procedure: (1). Plot the converter gain, including LC filter and PWM modulator. (2). Select the open loop crossover frequency Fc located at 10% to 20% of the switching frequency. At Fc, find the required DC gain. (3). Use the first compensator pole Fp1 to cancel the ESR zero Fz. (4). Have the second compensator pole Fp2 at half the switching frequency to attenuate the switching ripple and high frequency noise. (5). Place the first compensator zero Fz1 at or below 50% of the power stage resonant frequency Fo. (6). Place the second compensator zero Fz2 at or below the power stage resonant frequency Fo. A MathCAD program is available upon request for the calculation of the compensation parameters. LA LA LA LA LAYYYYYOUT GUIDELINES OUT GUIDELINES OUT GUIDELINES OUT GUIDELINES OUT GUIDELINES The switching regulator is a high di/dt power circuit. Its Printed Circuit Board (PCB) layout is critical. A good lay- out can achieve an optimum circuit performance while minimizing the component stress, resulting in better sys- tem reliability. During PCB layout, the SC2621 controller, MOSFETs, inductor, and power decoupling capacitors have to be considered as a unit. The following guidelines are typically recommended for using the SC2621 controller. (1). Place a 4.7uF to 10uF ceramic capacitor close to the drain of top MOSFET for the high frequency and high current decoupling. The loop formed by the capacitor, the top and bottom MOSFETs must be as small as pos- sible. Keep the input bulk capacitors close to the drain of the top MOSFETs. (2). Place the SC2621 over a quiet ground plane to avoid pulsing current noise. Keep the ground return of the gate drive short. (3). Connect bypass capacitors as close as possible to the decoupling pins (DRV and Vcc) to the ground pin GND. The trace length of the decoupling capasitor on DRV pin should be no more than 0.2” (5mm). (4). Locate the components of the bootstrap circuit close to the SC2621. |
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