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MP28248GD датащи(PDF) 11 Page - Monolithic Power Systems |
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MP28248GD датащи(HTML) 11 Page - Monolithic Power Systems |
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11 / 19 page ![]() MP28248 – 3A, 4.2V-20V INPUT, FAST-TRANSIENT SYNCHRONOUS STEP-DOWN CONVERTER IN QFN12 (2X3mm) MP28248 Rev 1.0 www.MonolithicPower.com 11 1/5/2012 MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited. © 2012 MPS. All Rights Reserved. OPERATION PWM Operation The MP28248 is a fully-integrated, synchronous, rectified, step-down switch converter. The device uses constant-on-time (COT) control to provide fast transient response and easy loop stabilization. At the beginning of each cycle, the high-side MOSFET (HS-FET) turns ON whenever the feedback voltage (VFB) is lower than the reference voltage (VREF)—a low VFB indicates insufficient output voltage. The input voltage and the frequency-set resistor determine the ON period as follows: 7 ON IN 9.3 R (k ) t40(ns) V(V) 0.4 (1) After the ON period elapses, the HS-FET enters the OFF state. By cycling HS-FET between the ON and OFF states, the converter regulates the output voltage. The integrated low-side MOSFET (LS-FET) turns on when the HS-FET is in its OFF state to minimize the conduction loss. Shoot-through occurs when both the HS-FET and the LS-FET are turned on at the same time, causing a dead short between input and GND. Shoot-through dramatically reduces efficiency, and the MP28248 avoids this by internally generating a dead-time (DT) between when HS- FET turns off and LS-FET turns on, and when LS-FET turns off and HS-FET turns on. Heavy-Load Operation Figure 2: Heavy-Load Operation During heavy-load operation—when the output current is high—the MP28248 enters continuous- conduction mode (CCM) where the HS-FET and LS-FET repeat the on/off operation described for PWM operation, the inductor current never goes to zero, and the switching frequency (fSW) is fairly constant. Figure 2 shows the timing diagram during this operation. Light-Load Operation During light-load operation—when the output current is low—the MP28248 reduces the switching frequency to maintain high efficiency, and the inductor current drops near zero. When the inductor current reaches zero, the LS-FET driver goes into tri-state (high Z). The current modulator controls the LS-FET and limits the inductor current to around -1mA as shown in Figure 3. Hence, the output capacitors discharge slowly to GND through LS-FET, R1, and R2. This operation greatly improves device efficiency when the output current is low. Figure 3: Light-Load Operation Light-load operation is also called skip mode because the HS-FET does not turn on as frequently as during heavy-load conditions. The frequency at which the HS-FET turns on is a function of the output current—as the output current increases, the time period that the current modulator regulates becomes shorter, and the HS-FET turns on more frequently. The switching frequency increases in turn. The output current reaches the critical level when the current modulator time is zero, and can be determined using the following equation: IN OUT OUT OUT SW IN (V -V ) V I= 2L f V (2) The device reverts to PWM mode once the output current exceeds the critical level. After that, the switching frequency stays fairly constant over the output current range. |
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