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MP2125 Scheda tecnica(PDF) 7 Page - Monolithic Power Systems |
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MP2125 Scheda tecnica(HTML) 7 Page - Monolithic Power Systems |
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7 / 10 page ![]() MP2125 – DUAL 1.5A, 1.2MHZ SYNCHRONOUS STEP-DOWN CONVERTER MP2125 Rev. 1.0 www.MonolithicPower.com 7 12/24/2013 MPS Proprietary Information. Unauthorized Photocopy and Duplication Prohibited. © 2013 MPS. All Rights Reserved. OPERATION The MP2125 is a dual channel, fixed frequency, current mode step-down converter, optimized for low voltage, Li-Ion battery powered applications where high efficiency and small size are critical. MP2125 integrates two high side PFET main switches and two low side synchronous rectifiers. It always operates in continuous conduction mode, simplifies the control scheme and eliminates the random spectrum noise due to discontinuous conduction mode. The steady state duty cycle D for this mode can be calculated as: % 100 V V % 100 f T D IN OUT OSC ON × ≈ × × = Where TON is the main switch on time and fOSC is the oscillator frequency (1.2MHz typ.). Current Mode PWM Control Slope compensated current mode PWM control provides stable switching and cycle-by-cycle current limiting for superior load and line response as well as protection of the internal main switches and synchronous rectifiers. The MP2125 switches at a constant frequency (1.2MHz) and modulates the inductor peak current to regulate the output voltage. Specifically, for each cycle the PWM controller forces the inductor peak current to an internal reference level derived from the feedback error voltage. At normal operation for each channel, the main switch is turned on at each rise edge of the internal oscillator, and remains on for a certain period of time to ramp up the inductor current. As soon as the inductor current reaches the reference level, the main switch is turned off and immediately the synchronous rectifier will be turned on to provide the inductor current. The synchronous rectifier will stay on until the next oscillator cycle. Dropout Operation The MP2125 allows the main switch to remain on for more than one switching cycle to increase the duty cycle when the input voltage is dropping close to the output voltage. When the duty cycle reaches 100%, the main switch is held on continuously to deliver current to the output up to the PFET current limit. In this case, the output voltage becomes the input voltage minus the voltage drop across the main switch and the inductor. Maximum Load Current The MP2125 can operate down to 2.7V input voltage; however the maximum load current decreases at lower input due to a large IR drop on the main switch and synchronous rectifier. The slope compensation signal reduces the peak inductor current as a function of the duty cycle to prevent sub-harmonic oscillations at duty cycles greater than 50%. Conversely, the current limit increases as the duty cycle decreases. Short Circuit Protection When the output is shorted to ground, the oscillator frequency is reduced to prevent the inductor current from increasing beyond the PFET current limit. The PFET current limit is also reduced to lower the short circuit current. The frequency and current limit will return to the normal values once the short circuit condition is removed and the feedback voltage approaches 0.8V. |
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