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MIC2182 bảng dữ liệu(PDF) 30 Page - Microchip Technology |
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MIC2182 bảng dữ liệu(HTML) 30 Page - Microchip Technology |
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30 / 40 page ![]() MIC2182 DS20006644A-page 30 2022 Microchip Technology Inc. and its subsidiaries 5.11 PCB Layout and Checklist PCB layout is critical to achieve reliable, stable and efficient performance. A ground plane is required to control EMI and minimize the inductance in power and signal return paths. The following guidelines should be followed to insure proper operation of the circuit. • Signal and power grounds should be kept separate and connected at only one location. Large currents or high di/dt signals that occur when the MOSFETs turn on and off must be kept away from the small signal connections. • The connection between the current-sense resistor and the MIC2182 current-sense inputs (Pins 8 and 9) should have separate traces, routed from the terminals directly to the IC pins. The traces should be routed as closely as possible to each other and their length should be minimized. Avoid running the traces under the inductor and other switching components. A 1 nF to 0.1 µF capacitor placed between Pins 8 and 9 will help attenuate switching noise on the current sense traces. This capacitor should be placed close to Pins 8 and 9. • When the high-side MOSFET is switched on, the critical flow of current is from the input capacitor through the MOSFET, inductor, sense resistor, output capacitor, and back to the input capacitor. These paths must be made with short, wide pieces of trace. It is good practice to locate the ground terminals of the input and output capacitors close to each other. • When the low-side MOSFET is switched on, current flows through the inductor, sense resistor, output capacitor, and MOSFET. The source of the low-side MOSFET should be located close to the output capacitor. • The freewheeling diode, D1 in the Block Diagrams, conducts current during the dead time, when both MOSFETs are off. The anode of the diode should be located close to the output capacitor ground terminal and the cathode should be located close to the input side of the inductor. • The 4.7 µF capacitor, which connects to the VDD terminal (Pin 11) must be located right at the IC. The VDD terminal is very noise sensitive and placement of this capacitor is very critical. Connections must be made with wide trace. The capacitor may be located on the bottom layer of the board and connected to the IC with multiple vias. • The VIN bypass capacitor should be located close to the IC and connected between Pins 10 and 12. Connections should be made with a ground and power plane or with short, wide trace. |
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