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ADP1034ACPZ-1-R7 数据表(PDF) 37 Page - Analog Devices |
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ADP1034ACPZ-1-R7 数据表(HTML) 37 Page - Analog Devices |
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37 / 41 page ![]() Data Sheet ADP1034 APPLICATIONS INFORMATION analog.com Rev. 0 | 37 of 41 BUCK REGULATOR COMPONENT SELECTION Inductor The value of the inductor for the ADP1034 buck regulator affects the efficiency and the output voltage ripple. Larger value inductors typically improve efficiency. However, for a given package size, as load increases, the dc resistance (DCR) and core losses eventually have an increased negative impact on efficiency. Using a smaller value inductor reduces output voltage ripple but can decrease the overall efficiency due to increased switching losses. Output Capacitor The output capacitor selection affects the output ripple voltage, load step transient, and the loop stability of the regulator. A 10 μF capacitor is recommended as a balance between performance and size, but larger capacitor can be used to reduce output ripple. INVERTING REGULATOR COMPONENT SELECTION Inductor The value of the inductor for the ADP1034 inverting regulator affects the efficiency and the output voltage ripple. Larger value inductors typically improve efficiency. However, for a given package size, as load increases, the DCR and core losses eventually have an increased negative impact on efficiency. Using a smaller value inductor reduces output voltage ripple but can decrease the overall efficiency due to increased switching losses. Output Capacitor The output capacitor selection affects the output ripple voltage, load step transient, and the loop stability of the regulator. A minimum of 4.7 µF capacitor is recommended to maintain stability across VOUT1 and the output load. Inverting Regulator Stability The ADP1034 inverting regulator uses internal compensation and operates with an inductance of 100 µH and a typical capacitance of 4.7 µF. Using different component values may result in instability of VOUT3, particularly if lower capacitance and smaller inductor values are used. Consult Analog Devices for guidance. Operating the inverter with the recommended inductor and output capacitor, the output is stable from no load to a 15 mA load for any output from −24 V to −2 V. When increasing the load beyond 15 mA, use a larger output capacitor to stabilize the feedback loop, particularly for lower output voltages. Table 20. Buck Regulator and Inverting Regulator Recommended Inductors Part Number Manufacturer Inductance (µH) DCR (Ω) Saturation Current1 (mA) Size: Length × Width × Height (mm) 744043101 Würth Elektronik 100 0.55 290 4.8 × 4.8 × 2.8 XFL3012-104MEB Coilcraft 100 2.63 280 3.2 × 3.2 × 1.3 LQH3NPN101MMEL Murata 100 1.59 260 3 × 3 × 1.4 SRN3015-101M Bourns 100 2.92 270 3 × 3 × 1.5 SRU2016-101Y Bourns 100 4.9 150 2.8 × 2.8 × 1.65 XFL2006-104MEB Coilcraft 100 11.1 115 2 × 2 × 0.6 1 30% drop in inductance. |
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