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MCR03EZPFX2491 Datenblatt(PDF) 19 Page - International Rectifier |
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MCR03EZPFX2491 Datenblatt(HTML) 19 Page - International Rectifier |
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19 / 34 page ![]() Rev 11.0 PD-97505 IR3840AMPbF 19 Inductor Selection The inductor is selected based on output power, operating frequency and efficiency requirements. A low inductor value causes large ripple current, resulting in the smaller size, faster response to a load transient but poor efficiency and high output noise. Generally, the selection of the inductor value can be reduced to the desired maximum ripple current in the inductor . The optimum point is usually found between 20% and 50% ripple of the output current. For the buck converter, the inductor value for the desired operating ripple current can be determined using the following relation: Where: If Δi ≈ 33%(I o), then the output inductor is calculated to be 0.55μH. Select L=0.56 μH. The MPC1040LR56C from Delta provides a compact, low profile inductor suitable for this application. . the voltage Vc across C6 remains approximately unchanged and the voltage at the Boot pin becomes A bootstrap capacitor of value 0.1uF is suitable for most applications. Input Capacitor Selection The ripple current generated during the on time of the upper MOSFET should be provided by the input capacitor. The RMS value of this ripple is expressed by: Where: D is the Duty Cycle I RMS is the RMS value of the input capacitor current. Io is the output current. For I o=14A and D = 0.15, the IRMS = 5A. Ceramic capacitors are recommended due to their peak current capabilities. They also feature low ESR and ESL at higher frequency which enables better efficiency. For this application, it is advisable to have 4x10uF 16V ceramic capacitors ECJ-3YB1C106M from Panasonic. In addition to these, although not mandatory, a 1X330uF, 25V SMD capacitor EEV-FK1E331P may also be used as a bulk capacitor and is recommended if the input power supply is not located close to the converter. ....(12) .......... .......... ) ( D D I I o RMS − ∗ ∗ = 1 (13) .. .......... .......... .......... in o V V D = ) ( i Δ cycle Duty time on Turn frequency Switching current ripple Inductor Voltage Output voltage input Maximum = = = = = = D Δt F Δi V V s o in () (14) . .......... .......... .......... * ; s in o o in s o in F i V V V V L F D t t i L V V Δ ∗ ∗ − = ∗ = Δ Δ Δ ∗ = − 1 L IR 3840A Vc C6 VIN Vcc SW + - Boot PGnd Fig. 12. Bootstrap circuit to generate Vc voltage (11) .......... .......... .......... .......... D cc in Boot V V V V − + ≅ |
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