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MIC33M350 Datasheet(PDF) 16 Page - Microchip Technology |
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MIC33M350 Datasheet(HTML) 16 Page - Microchip Technology |
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16 / 32 page ![]() MIC33M350 DS20006348B-page 16 2020-2021 Microchip Technology Inc. 3.1 Power Ground Pin (PGND) PGND is the ground path for the MIC33M350 buck converter power stage. The PGND pin connects to the sources of the low-side N-Channel MOSFETs, the negative terminals of input capacitors and the negative terminals of output capacitors. The loop for the Power Ground should be as small as possible and separate from the Analog Ground (AGND) loop. 3.2 Switch Node Pin (SW) The SW pin connects directly to the switch node. The Switching Node output pin is connected to the internal MOSFETs and inductor. Due to the high-speed switching on this pin, the SW pin should be routed away from sensitive nodes. The SW pin also senses the current by monitoring the voltage across the low-side MOSFET during off-time. 3.3 Input Voltage Pin (PVIN) This is an input supply to the source of the internal high-side P-channel MOSFET. The PVIN operating voltage range is from 2.4V to 5.5V. An input capacitor between PVIN and the Power Ground (PGND) pin is required and placed as close as possible to the IC. 3.4 Analog Voltage Input Pin (SVIN) The power to the internal reference and control sections of the MIC33M350. A 1.0 µF ceramic capacitor from SVIN to ground must be used. Internally connected to PVIN through a 10 resistor. 3.5 Output Voltage Selection Control Pin 2 (VSEL2) The Logic state of the VSEL1 and VSEL2 selects the output voltage. This input has three Digital states: High, Low and Floating. See Table 4-1. 3.6 Output Voltage Selection Control Pin 1 (VSEL1) The Logic state of the VSEL1 and VSEL2 selects the output voltage. This input has three Digital states: High, Low and Floating. See Table 4-1. 3.7 Enable Pin (EN) Logic high enables operation of the regulator. Logic low shuts down the device. In the OFF state, the supply current to the device is greatly reduced (typically 1.5 µA). The EN pin should not be left open. 3.8 Power Good Pin (PG) This is an open-drain output that indicates when the output voltage is higher than the 91% limit. There is a 4% hysteresis, therefore, PG will return to low when the falling output voltage falls below 87% of the target regulation voltage. 3.9 Output Voltage Sense Pin (VOUT) This pin is used to remotely sense the output voltage. Connect it to VOUT as close to the output capacitor as possible to sense output voltage. This pin also provides the path to discharge the output through an internal 10 resistor when it is disabled. 3.10 Analog Ground Pin (AGND) This is an internal signal ground for all low-power circuits. Connect it to ground plane. For the best load regulation, the connection path from AGND to the output capacitor ground terminal should be free from parasitic voltage drops. 3.11 EP1_PGND, EP2_PGND These pins electrically connected to the PGND pins. They must be connected with thermal vias to the ground plane to ensure adequate heat sinking. 3.12 EP_SW Exposed Pad (SW) This pin is electrically connected to the SW node. 3.13 OUT Exposed Pad (OUT) This pin is electrically connected to the OUT pins. It must be externally connected to the output power connection. |
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