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MP6004 Datasheet(PDF) 21 Page - Monolithic Power Systems |
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MP6004 Datasheet(HTML) 21 Page - Monolithic Power Systems |
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21 / 23 page ![]() MP6004—PRIMARY-SIDE REGULATED FLYBACK/BUCK 80V DCDC CONVERTER MP6004 Rev. 1.0 www.MonolithicPower.com 21 4/14/2015 MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited. © 2015 MPS. All Rights Reserved. 6. Use a single point connection between power GND and signal GND. Vias around GND and the thermal pad are recommended to lower the die temperature. Figure 8—Recommended flyback layout For buck application: 1. Keep the input loop as short as possible between the input capacitor, rectifier diode, SW, and GND plane for minimal noise and ringing. 2. Keep the output loop between the rectifier diode, the output capacitor, and the inductor as short as possible. 3. Place the VCC capacitor close to VCC for the best decoupling. The current setting resistor R3 should be placed as close to ILIM and AGND as possible. 4. Connect the output voltage sense and VIN power supply from the output capacitor with parallel traces. The feedback trace should be far away from noise sources (such as SW). The trace connected to FB2 should be short. 5. Use a single point connection between power GND and signal GND. Vias around GND and the thermal pad are recommended to lower the die temperature. 1 2 1 2 1 2 Top Layer Bottom Layer Via VIN VINGND VOUT VOUTGND Figure 9—Recommended buck layout Design Example Table 1 shows a design example following the application guidelines for the following specifications in flyback applications: Table 1—Flyback design example VIN 36 V-72 V VOUT 12 V IOUT 0 A-1 A The typical application circuit for VOUT = 12 V in Figure 10 shows the detailed application schematic and is the basis for the typical performance waveforms. For more detailed device applications, please refer to the related evaluation board datasheet. Table 2 shows a design example following the application guidelines for the following specifications in buck applications: Table 2—Buck design example VIN 36 V-72 V VOUT 12 V IOUT 0 A-1 A The typical application circuit is shown in Figure 11. For more detailed device applications, please refer to the related evaluation board datasheet. |
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