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MP2119 Datasheet(PDF) 10 Page - Monolithic Power Systems |
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MP2119 Datasheet(HTML) 10 Page - Monolithic Power Systems |
10 / 12 page MP2119 – 2A, 6V SYNCHRONOUS STEP-DOWN SWITCHING REGULATOR MP2119 Rev. 0.94 www.MonolithicPower.com 10 4/22/2011 MPS Proprietary Information. Unauthorized Photocopy and Duplication Prohibited. © 2011 MPS. All Rights Reserved. External Schottky Diode For this part, an external schottky diode is recommended to be placed close to "SW" and "GND" pins, especially when the output current is close to 2A. With the external schottky diode, the voltage spike and negative kick on "SW" pin can be minimized; moreover, the conversion efficiency can also be improved a little. For the external schottky diode selection, it's noteworthy that the maximum reverse voltage rating of the external diode should be larger than the maximum input voltage. As for the current rating of this diode, 0.5A rating should be sufficient. PCB Layout PCB layout is very important to achieve stable operation. It is highly recommended to duplicate EVB layout for optimum performance. If change is necessary, please follow these guidelines as follows. Here, the typical application circuit is taken as an example to illustrate the key layout rules should be followed. 1) For MP2119, a PCB layout with more than (or) four layers is recommended. 2) The high current paths (GND, IN and SW) should be placed very close to the device with short, direct and wide traces. 3) For MP2119, two input ceramic capacitors (2 x (10µF~22µF)) are strongly recommended to be placed on both sides of the MP2119 package and keep them as close as possible to the “IN” and “GND” pins. If this placement is not possible, a ceramic cap (10µF~47µF) must be placed across PIN7-“IN”and PIN9-“GND” since the internal Vcc supply is powered from PIN7, and good decoupling is needed to avoid any interference issues. 4) The external feedback resistors shall be placed next to the FB pin. Keep the FB trace as short as possible. Don’t place test points on FB trace if possible. 5) Keep the switching node SW short and away from the feedback network. Top Layer Inner Layer1 Inner Layer2 |
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