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AAT1153 датащи(PDF) 11 Page - Advanced Analogic Technologies |
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AAT1153 датащи(HTML) 11 Page - Advanced Analogic Technologies |
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11 / 19 page ![]() AAT1153 2A Step-Down Converter PRODUCT DATASHEET 1153.2008.02.1.2 11 www .analogictech.com Applications Information PGND PGND LX LX EN IN AIN AGND FB AAT1153-0.6 C1 22μF VIN 2.5V-5.5V L1 2.2μH C3 22pF C2 22μF R1 634k Ω R2 316k Ω VOUT 1.8V, 2A 1 2 3 4 5 7 8 9 10 AGND 6 Figure 1: Basic Application Circuit for the Adjustable Output Version. PGND PGND LX LX EN IN AIN AGND OUT AAT1153-1.8 C1 22μF VIN 2.5V-5.5V L1 2.2μH C2 22μF VOUT 1.8V, 2A 1 2 3 4 5 7 8 9 10 AGND 6 Figure 2: Basic Application Circuit for the Fixed Output Versions. Setting the Output Voltage Figure 1 shows the basic application circuit with the AAT1153 adjustable output version while Figure 2 shows the application circuit with the AAT1153 fixed output ver- sion. For applications requiring an adjustable output voltage, the AAT1153-0.6 adjustable version can be externally programmed. Resistors R1 and R2 in Figure 1 program the output to regulate at a voltage higher than 0.6V. To limit the bias current required for the external feedback resistor string while maintaining good noise immunity, the minimum suggested value for R2 is 59kΩ. Although a larger value will further reduce quiescent cur- rent, it will also increase the impedance of the feedback node, making it more sensitive to external noise and interference. Table 1 summarizes the resistor values for various output voltages with R2 set to either 59kΩ for good noise immunity or 316kΩ for reduced no load input current. The adjustable version of the AAT1153, combined with an external feed forward capacitor (C3 in Figure 1), delivers enhanced transient response for extreme pulsed load applications. The addition of the feed forward capacitor typically requires a larger output capacitor C2 for stability. The external resistor sets the output voltage according to the following equation: ⎛⎞ VOUT = 0.6V · 1 + ⎝⎠ R1 R2 ⎛⎞ R1 = - 1 · R2 ⎝⎠ VOUT 0.6V Table 1 shows the resistor selection for different output voltage settings. VOUT (V) R2 = 59kΩ R1 (kΩ) R2 = 316kΩ R1 (kΩ) 0.8 19.6 105 0.9 29.4 158 1.0 39.2 210 1.1 49.9 261 1.2 59.0 316 1.3 68.1 365 1.4 78.7 422 1.5 88.7 475 1.8 118 634 1.85 124 655 2.0 137 732 2.5 187 1000 3.3 267 1430 Table 1: Resistor Selections for Different Output Voltage Settings (Standard 1% Resistors Substituted For Calculated Values). Inductor Selection For most designs, the AAT1153 operates with inductor values of 1μH to 4.7μH. Low inductance values are physically smaller but require faster switching, which results in some efficiency loss. The inductor value can be derived from the following equation: VOUT · (VIN - VOUT) VIN · ΔIL · fOSC L = Where ΔIL is inductor ripple current. Large value induc- tors lower ripple current and small value inductors result in high ripple currents. Choose inductor ripple current approximately 30% of the maximum load current 2A, or ΔI L = 600mA |
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