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AD586 Datasheet(PDF) 44 Page - Analog Devices |
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AD586 Datasheet(HTML) 44 Page - Analog Devices |
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44 / 48 page ![]() AD5735 Data Sheet Rev. B | Page 44 of 48 Reducing AICC Current Requirements Two main methods can be used to reduce the AICC current requirements. One method is to add an external compensation resistor, and the other is to use slew rate control. These methods can be used together. Adding an External Compensation Resistor A compensation resistor can be placed at the COMPDCDC_x pin in series with the 10 nF compensation capacitor. A 51 kΩ exter- nal compensation resistor is recommended. This compensation increases the slew time of the current output but reduces the AICC transient current requirements. Figure 80 shows a plot of AICC current for a 24 mA step through a 1 kΩ load when using a 51 kΩ compensation resistor. The compensation resistor reduces the current requirements through smaller loads even further, as shown in Figure 81. 0 4 12 8 16 24 20 28 32 0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0mA TO 24mA RANGE 1kΩ LOAD fSW = 410kHz INDUCTOR = 10µH (XAL4040-103) TA = 25°C 0 0.5 1.0 1.5 2.0 2.5 TIME (ms) AICC IOUT VBOOST Figure 80. AICC Current vs. Time for 24 mA Step Through 1 kΩ Load with External 51 kΩ Compensation Resistor 0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0mA TO 24mA RANGE 500Ω LOAD fSW = 410kHz INDUCTOR = 10µH (XAL4040-103) TA = 25°C 0 4 12 8 16 24 20 28 32 0 0.5 1.0 1.5 2.0 2.5 TIME (ms) AICC IOUT VBOOST Figure 81. AICC Current vs. Time for 24 mA Step Through 500 Ω Load with External 51 kΩ Compensation Resistor Using Slew Rate Control Using slew rate control can greatly reduce the current require- ments of the AVCC supply, as shown in Figure 82. 0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0mA TO 24mA RANGE 1kΩ LOAD fSW = 410kHz INDUCTOR = 10µH (XAL4040-103) TA = 25°C 0 4 12 8 16 24 20 28 32 0 1 2 3 4 5 6 TIME (ms) AICC IOUT VBOOST Figure 82. AICC Current vs. Time for 24 mA Step Through 1 kΩ Load with Slew Rate Control When using slew rate control, it is important to remember that the output cannot slew faster than the dc-to-dc converter. The dc-to-dc converter slews slowest at higher currents through large loads (for example, 1 kΩ). The slew rate is also dependent on the configuration of the dc-to-dc converter. Two examples of the dc-to-dc converter output slew are shown in Figure 80 and Figure 81. (VBOOST corresponds to the output voltage of the dc-to-dc converter.) |
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