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ADP150ACBZ-3.3-R7 データシート(PDF) 5 Page - Analog Devices |
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ADP150ACBZ-3.3-R7 データシート(HTML) 5 Page - Analog Devices |
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5 / 8 page ![]() Evaluation Board User Guide UG-054 Rev. 0 | Page 5 of 8 3.288 3.5 3.7 3.9 4.1 4.3 4.5 4.7 4.9 5.1 5.3 5.5 VIN (V) LINE REGULATION MEASUREMENTS For line regulation measurements, the output of the regulator is monitored while its input is varied. For good line regulation, the output must change as little as possible with varying input levels. To ensure that the device is not in dropout mode during this measurement, VIN must be varied between VOUTNOM + 0.4 V (or 2.2 V, whichever is greater) and VINMAX. For example, for an ADP150 with a fixed 3.3 V output, VIN must be varied between 3.7 V and 5.5 V. This measurement can be repeated under different load conditions. Figure 7 shows the typical line regulation performance of an ADP150 with a fixed 3.3 V output. 3.300 3.290 3.292 3.294 3.296 3.298 IOUT = 0.1mA IOUT = 1mA IOUT = 10mA IOUT = 150mA IOUT = 50mA IOUT = 100mA Figure 7. Output Voltage (VOUT) vs. Input Voltage (VIN) at TA = 25°C LOAD REGULATION MEASUREMENTS For load regulation measurements, the output of the regulator is monitored while the load is varied. For good load regulation, the output must change as little as possible with varying load. The input voltage must be held constant during this measure- ment. The load current can be varied from 0 mA to 150 mA. Figure 8 shows the typical load regulation performance of an ADP150 with a fixed 3.3 V output for an input voltage of 3.7 V. 3.298 3.291 3.292 3.293 3.294 3.295 3.296 3.297 3.290 0.01 1000 100 10 1 0.1 IOUT (mA) Figure 8. Output Voltage (VOUT) vs. Load Current (IOUT) at VIN = 3.7 V, VOUT = 3.3 V, TA = 25°C DROPOUT VOLTAGE MEASUREMENTS Dropout voltage can be measured using the configurations shown in Figure 5 and Figure 6. Dropout voltage is defined as the input-to-output voltage differential when the input voltage is set to the nominal output voltage. This applies only to output voltages above 2.2 V. Dropout voltage increases with larger loads. For more accurate measurements, a second voltage meter can be used to monitor the input voltage across the input capacitor. The input supply voltage may need to be adjusted to account for IR drops, especially if large load currents are used. Figure 9 shows the typical curve of dropout voltage measurements with different load currents. 80 70 60 50 40 30 20 10 0 1 10 100 1000 IOUT (mA) Figure 9. Dropout Voltage vs. Load Current (IOUT) at VOUT = 3.3 V, TA = 25°C |
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