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MP3336GC 数据表(PDF) 25 Page - Monolithic Power Systems |
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MP3336GC 数据表(HTML) 25 Page - Monolithic Power Systems |
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25 / 27 page ![]() MP3336 – DUAL-CHANNEL, FLASH, LED DRIVER WITH I 2C INTERFACE MP3336 Rev.1.01 www.MonolithicPower.com 25 5/16/2017 MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited. © 2017 MPS. All Rights Reserved. APPLICATION INFORMATION Selecting the Input Capacitor The input capacitor reduces the surge current drawn from the input supply and the switching noise from the device. The input capacitor impedance at the switching frequency should be less than the input source impedance to prevent the high-frequency switching current from passing through to the input. Ceramic capacitors with X5R or X7R dielectrics are recommended for their low ESR and small temperature coefficients. A capacitor with a higher value can help reduce input voltage ripple and noise. For most applications, a 10μF ceramic capacitor is sufficient. Selecting the Inductor The converter requires an inductor to supply a higher output voltage while being driven by the input voltage. An inductor with a larger value results in less ripple current, a lower peak inductor current, and reduced stress on the internal N-channel MOSFET, but also has a larger physical size, higher series resistance, and lower saturation current. Choose an inductor that does not saturate under the worst-case load conditions. Select the minimum inductor value to ensure that the boost converter works in continuous conduction mode with high efficiency and good EMI performance. Calculate the required inductance value using Equation (2) and Equation (3): 2 OUT SW LOAD η V D (1D) L 2 f I (2) IN OUT V D1 V (3) Where VIN and VOUT are the input and output voltages, fSW is the switching frequency, ILOAD is the LED load current, and η is the efficiency. The switching current is used for peak-current mode control. To avoid hitting the current limit, the worst-case inductor peak current should be less than 80% of the current-limit ILIM. For most applications, 0.47µH~2µH inductor is sufficient. Selecting the Output Capacitor The output capacitor keeps the output voltage ripple small and ensures feedback loop stability. The output capacitor impedance must be low at the switching frequency. Ceramic capacitors with X7R dielectrics are recommended for their low ESR characteristics. Ensure that the ceramic capacitance is dependent on the voltage rating. The DC bias voltage and the value can lose as much as 50% of their capacitance at the rated voltage rating. Ensure that enough of a voltage rating margin is left when selecting the component. A capacitance that is too low can cause loop instability. For most applications, a 10μF ceramic capacitor is sufficient. PCB Layout Guidelines Efficient PBC layout is critical for stable operation. For best results, follow the guidelines below. 1. Place a ceramic capacitor close to VIN. 2. Use a wider copper wire for input, output, and GND to improve thermal performance. 3. Put as many vias close to GND at the output and input capacitors as possible to improve thermal performance. |
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