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MIC33M350 Scheda tecnica(PDF) 18 Page - Microchip Technology |
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MIC33M350 Scheda tecnica(HTML) 18 Page - Microchip Technology |
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18 / 32 page ![]() MIC33M350 DS20006348B-page 18 2020-2021 Microchip Technology Inc. 4.6 Output Voltage Setting The MIC33M350 device has two pins, VSEL1 and VSEL2, which are used for choosing between nine predefined voltage settings: 0.6V, 0.8V, 0.9V, 1.0V, 1.2V, 1.5V, 1.8V, 2.5V, 3.3V. These pins can be tied to VIN, GND or left floating. The relationship between VSEL1/VSEL2 and the output voltage is shown in Table 4-1. VOUT should be connected exactly to the desired Point-of-Load (POL) regulation, avoiding parasitic resistive drops. It is possible to fine-tune the desired output voltage by adding a series resistor on the VOUT pin. This allows slightly higher output value programming, but should not exceed 5% deviation from the VSEL selected value. EQUATION 4-1: 4.7 Converter Stability/Output Capacitor The MIC33M350 device utilizes an internal compensation network and is designed to provide stable operation with output capacitors, from 47 µF to 1000 µF. This greatly simplifies the design, where you can add supplementary output capacitance without having to worry about stability . 4.8 Soft Start Excess bulk capacitance on the output can cause excessive input inrush current. The MIC33M350 soft start feature forces the output voltage to rise gradually, keeping the inrush current at reasonable levels. This is particularly important in battery-powered applications. When the Enable pin goes high, the output voltage starts to rise. Once the soft start period has finished, the Power Good comparator is enabled and the Power Good output goes high. The output voltage soft start time is determined by the soft start equation below. The Soft Start Time, tSS can be calculated by Equation 4-2. EQUATION 4-2: . 4.9 Dropout Operation As the input voltage approaches the output voltage, the minimum on-time limits the maximum duty cycle. To achieve 100% duty cycle, the high-side switch is latched when the duty cycle reaches around 92% and stays latched until the output voltage falls 4% below its regulated value. In dropout, the output voltage is determined by the input voltage minus the voltage drop across the high-side MOSFET. TABLE 4-1: OUTPUT VOLTAGE SETTINGS VSEL2 VSEL1 VOUT GND GND 0.6V GND OPEN 0.8V GND VIN 0.9V OPEN GND 1.0V OPEN OPEN 1.2V OPEN VIN 1.5V VIN GND 1.8V VIN OPEN 2.5V VIN VIN 3.3V RVOUT 8.2 k TRIM = Where: RVOUT =VOUT series resistance needed for a TRIM% output voltage increase tSS VOUT tRAMP = tSS 1.0V 800 s V = tss 800 s 0.8 ms == Where: VOUT =1.0V tRAMP =800 µs/V |
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