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MP157GS Scheda tecnica(PDF) 11 Page - Monolithic Power Systems |
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MP157GS Scheda tecnica(HTML) 11 Page - Monolithic Power Systems |
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11 / 20 page ![]() MP157 –SMALLEST ENERGY EFFICIENT OFF-LINE REGULATOR WITH EXTENDED POWER RANGE MP157 Rev. 1.04 www.MonolithicPower.com 11 6/27/2016 MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited. © 2016 MPS. All Rights Reserved. OPERATION MP157 is a green mode operation regulator. With the load decreasing, the peak current and the switching frequency will both decreasing with the load. As a result, it still offers excellent efficiency performance at light load, thus better average efficiency is achieved. As shown in the typical application diagram, the regulator is designed to operate with a minimum number of external components. It incorporates the following features as described in the following sections. Start-up and Under Voltage Lock-out The internal high voltage regulator self-supplies the IC from the Drain pin. The IC starts switching and the internal high voltage regulator turns off as soon as the voltage on pin VCC reaches VCCOFF (4.6V, typical). the internal high voltage regulator turns on to charge the external Vcc capacitor When the Vcc voltage decreases below VCCON (4.45V, typical). So a small capacitor such as several uF capacitor is enough to hold on the voltage of Vcc and this can lower the cost by decreasing the value of the capacitor. When the voltage on Pin Vcc drops blow VCCstop (3.3V, typical), the IC stops working, then the internal high voltage regulator charges the Vcc capacitor again. When fault conditions happen, such as OLP, SCP, and OTP, the IC stops working and an internal current source, around 16uA, will discharge the Vcc capacitor, before the Vcc drops below VCCpro (2.4V, typical), the internal high voltage regulator will not start to charge the Vcc capacitor again. So when the fault conditions happen, the restart time can be calculated by the following equation, CC restart VCC VCC V2.4V 4.6V 2.4V tC C 16uA 3.5mA Figure 2 shows the typical waveform with VCC under voltage lock out. VCCOFF=4.6V VCCON=4.45V VCC Internal Current Source Driving Signal ON OFF VCCStop=3.3V Figure 2: VCC Under-Voltage Lock Out Constant Voltage Operation MP157 is a fully integrated regulator when used in the Buck solution, as shown in the typical application on page2. At the beginning of each cycle, the integrated MOSFET is turned ON when the feedback voltage is below the reference voltage — 2.5V, which indicates insufficient output voltage. The ON period is determined by the peak current limit. After the ON period elapses, the integrated MOSFET is turned OFF. The Freewheeling diode (D1) will not be turned ON until inductor (L1) charges the voltage of the sampling capacitor (C3) to equal the output voltage. The sampling capacitor voltage changes along with the output voltage. The sampling capacitor can sample and hold the output voltage to keep the output voltage regulated. The voltage of the sampling capacitor will decrease when the current of inductor is smaller than the output current. When the feedback voltage falls below the internal reference voltage — 2.5V, another switching cycle begins. The detail operation in CCM is shown as Figure 3. |
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