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MP2188 Datasheet(PDF) 14 Page - Monolithic Power Systems |
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MP2188 Datasheet(HTML) 14 Page - Monolithic Power Systems |
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14 / 17 page ![]() MP2188 – DUAL 3A, 5.5V, 1.2MHz, SYNCHRONOUS STEP-DOWN SWITCHER MP2188 Rev. 1.01 www.MonolithicPower.com 14 2/2/2016 MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited. © 2016 MPS. All Rights Reserved. The input capacitor can be electrolytic, tantalum or ceramic. When using electrolytic or tantalum capacitors, use a small high-quality ceramic capacitor (0.1μF), placed as close to the IC as possible. When using ceramic capacitors, make sure that they have enough capacitance to prevent excessive voltage ripple at input. The input voltage ripple caused by capacitance can be estimated by: ) V V 1 ( V V C f I V IN OUT IN OUT IN S LOAD IN − × × × = Δ Selecting the Output Capacitor The output capacitor (COUT) maintains the output DC voltage. Use ceramic capacitors. Low-ESR capacitors keep the output voltage ripple low. The output voltage ripple can be estimated by: ) C f 8 1 R ( ) V V 1 ( L f V V OUT S ESR IN OUT S OUT OUT × × + × − × × = Δ Where L is the inductor value and RESR is the equivalent series resistance of the output capacitor. Using ceramic capacitors, the impedance at the switching frequency is dominated by the capacitance. The output voltage ripple is mainly caused by the capacitance. For simplification, the output voltage ripple can be estimated by: ) V V 1 ( C L f 8 V V IN OUT OUT 2 S OUT OUT − × × × × = Δ For tantalum or electrolytic capacitors, the ESR dominates the impedance at the switching frequency. For simplification, the output ripple can be approximated as: ESR IN OUT S OUT OUT R ) V V 1 ( L f V V × − × × = Δ The characteristics of the output capacitor also affect the stability of the regulation system. PCB Recommendation of MP2188 Proper layout of the switching power supplies is very important, and sometimes critical for proper operation. For high-frequency switching converters, poor layout could lead to poor line or load regulation and stability issues. The high current paths (GND, IN, and SW) should be placed very close to the device using short, direct, and wide traces. The input capacitor needs to be as close as possible to the IN and GND pins. The external feedback resistors should be placed next to the FB pin. Keep the switching node SW short and away from the feedback network. For MP2188 PCB layout, there are two recommended layouts for selecting. Figure 2 (refer to schematic figure 4) shows symmetric PCB layout. If the layout is space limited, and has to be asymmetric, a ferrite bead (The Impedance should >220mΩ@100MHz) is suggested to separate the two input of each channel. Figure 3 (refer to schematic figure 5) shows asymmetric PCB layout. Figure 2: symmetric PCB layout Figure 3: asymmetric PCB layout |
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