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MP3383GS 数据表(PDF) 17 Page - Monolithic Power Systems |
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MP3383GS 数据表(HTML) 17 Page - Monolithic Power Systems |
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17 / 23 page ![]() MP3383 – 4-STRING, MAX 80V VOUT, STEP-UP WLED CONTROLLER MP3383 Rev. 1.0 MonolithicPower.com 17 5/2/2022 MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited. © 2022 MPS. All Rights Reserved. The maximum duty cycle (DMAX) can be calculated using Equation (8): OUT IN(MIN) MAX OUT VV D V − (8) The MOSFET’s current rating should be 1.5 times greater than IRMS(MAX). The MOSFET’s RDS(ON) determines the conduction loss (PCOND), which can be calculated using Equation (9): 2 COND RMS DS(ON) P = I R k (9) Where k is the MOSFET ’s temperature coefficient. The switching loss is related to QGD and QGS, which determine the commutation time. QGS is the charge between the threshold voltage and the plateau voltage when a driver charges the gate, which can be read in the VGS vs. QG chart of the MOSFET datasheet. QGD is the charge during the plateau voltage. These two parameters are required to estimate the turn-on and turn-off losses (PSW), which can be calculated using Equation (10): = + − − GS G SW DS IN SW DR TH GD G DS IN SW DR PLT QR P V I f VV QR V I f VV (10) Where VDR is the drive voltage, VTH is the threshold voltage, VPLT is the plateau voltage, VDS is the drain-to-source voltage, and RG is the gate resistance. RG is recommended to be between 10Ω and 20Ω. Note that calculating the switching loss is the most difficult part of loss estimation. Equation (10) provides a simplified equation. For more accurate estimates, the calculations become significantly more complex. The total gate charge (QG) is used to calculate the gate drive loss (PDR). PDR can be calculated using Equation (11): SW DR G DR f V Q P = (11) Selecting the Output Capacitor The output capacitor (COUT) keeps the VOUT ripple small and ensures feedback loop stability. COUT impedance must be low at fSW. Ceramic capacitors with X7R dielectrics are recommended for their low ESR characteristics. A 4.7 μF ceramic capacitor in parallel with a 22μF to 47 μF electrolytic capacitor is sufficient for most applications. Setting the Over-Voltage Protection (OVP) Open-string protection is achieved by detecting VOVP. In some cases, an LED string open fault results in VFB always being 0V. The MP3383 continues boosting VOUT higher and higher. If VOUT reaches the configured OVP threshold, OVP is triggered. To ensure that the chip functions properly, an appropriate VOVP is required. The recommended VOVP is about 1.1 to 1.2 times greater than VOUT for normal operation. VOVP is set by an external resistor on OVP, and can be calculated using Equation (12): HIGH OVP LOW R V 2(V) (1 ) R = + (12) Where RHIGH and RLOW are the voltage divider resistors between VOUT and GND. Expanding LED Channels The MP3383 can expand the number of LED channels by using two or three ICs in parallel. To connect two ICs for a total of eight LED strings, connect the VCC pins of the master IC and the slave IC together to power the slave IC ’s internal logic circuitry. Connect the COMP pins of the slave IC and the master IC together to regulate the voltage of all eight LED strings. The slave IC ’s MOSFET driving signal is not used. The boost converter can be driven by the master IC only. Do not leave t he slave IC’s ISENSE pin floating; connect it to ground. Apply the EN and DIM signals to both ICs. |
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