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MP3383 数据表(PDF) 14 Page - Monolithic Power Systems |
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MP3383 数据表(HTML) 14 Page - Monolithic Power Systems |
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14 / 23 page ![]() MP3383 – 4-STRING, MAX 80V VOUT, STEP-UP WLED CONTROLLER MP3383 Rev. 1.0 MonolithicPower.com 14 5/2/2022 MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited. © 2022 MPS. All Rights Reserved. OPERATION The MP3383 is a configurable constant- frequency, peak current control mode, step-up converter with 4-channel regulated current sources to drive an array of up to four white LED strings. Internal 12V Regulator The MP3383 includes an internal linear regulator (VCC). When the input voltage (VIN) exceeds 13V, VCC outputs a 12V power supply to the external MOSFET gate driver and the internal control circuitry. The VCC voltage (VCC) drops to 0V when the chip shuts down. The MP3383 features under-voltage lockout (UVLO). The chip is disabled until VCC exceeds the UVLO threshold. The UVLO hysteresis is approximately 500mV. System Start-Up When enabled, the MP3383 checks the topology connection first by monitoring the over-voltage protection (OVP) pin. This determines whether a Schottky diode is connected or the boost output is shorted to GND. An OVP voltage (VOVP) exceeding 50mV allows the chip to switch normally. Otherwise, switching is disabled. The MP3383 also checks other safety limits after passing the OVP test, including UVLO, over- temperature protection (OTP), and over-current protection (OCP). If all protection tests pass, the chip then begins boosting the step-up converter with an internal soft start (SS). To prevent a large inrush current, the enable (EN) signal should occur after the establishment of VIN and the pulse-width modulation (PWM) dimming signal during the start-up sequence. Step-Up Converter At the beginning of each switching cycle, the internal clock turns on the external MOSFET. During normal operation, the minimum turn-on time of the external MOSFET is around 150ns. Adding a stabilizing ramp to the current-sense amplifier ’s output prevents subharmonic oscillations for duty cycles greater than 50%, which is then fed into the PWM comparator. When the summed voltage reaches the error amplifier (EA)’s output voltage (VCOMP), the external MOSFET turns off. VCOMP is an amplified signal of the difference between the reference voltage (VREF) and the feedback voltage (VFB). The converter automatically chooses the lowest active LEDx pin voltage (VLEDx) to provide a sufficient bus voltage to power all LED strings. If VFB drops below VREF, the EA’s output voltage (VCOMP) increases. This results in more current flowing through the MOSFET, increasing the power delivered to the output and forming a closed loop that regulates the output voltage (VOUT). Under light-load operation, especially if VOUT ≈ VIN, the converter runs in pulse-skipping mode. In this mode, the MOSFET turns on for a minimum on time and then the converter discharges the power to the load for the remaining period. The external MOSFET remains off until VOUT must be boosted again. Dimming Control The MP3383 provides two dimming methods: PWM dimming and analog dimming. For PWM dimming, apply a PWM signal to the PWM pin. The LED current (ILED) is chopped by this PWM signal, and the average ILED is equal to ISET x DDIM, where DDIM is the PWM dimming signal’s duty cycle, and ISET is the full-scale ILED set by the ISET resistance (RISET). For analog dimming, apply a PWM signal to the ADIM pin. An internal RC filter (10M Ω resistor and 100pF capacitor) is integrated to ADIM. This PWM signal is filtered to the DC voltage by the internal RC filter. The ILED amplitude is equal to ISET x DDIM, where DDIM is the PWM dimming signal’s duty cycle, and ISET is the full-scale ILED set by RISET. A 20kHz or greater PWM signal is recommended for improved filtering. Operating Switching Frequency (fSW) The MP3383 ’s switching frequency (fSW) is set through an external resistor on the OSC pin. This helps optimize both the size of the external components and system efficiency . |
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