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IP1203PBF Datasheet(PDF) 13 Page - International Rectifier |
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IP1203PBF Datasheet(HTML) 13 Page - International Rectifier |
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13 / 23 page ![]() www.irf.com 13 iP1203PbF For better efficiency and low input ripple, select low ESR ceramic capacitors. The amount of the capaci- tors is determined based on the rms rating. In the above example, a total of 3 x 22µF, 2A capacitors will be required to support the input rms current. Output Capacitor CO Selection Selection of the output capacitors depends on two factors: a. Low effective ESR for ripple and load transient re- quirements To support the load transients and to stay within a specified voltage dip ∆V due to the transients, ESR selection should satisfy equation (4): R ESR ≤ ∆V / ILoadmax (4) Where, I Loadmax is the maximum load current. If output voltage ripple is required to be maintained at specified levels then the expression in equation (5) should be used to select the output capacitors. R ESR ≤ Vp-p / Iripple (5) Where, V p-p is the peak to peak output ripple voltage . I ripple is the inductor peak-to peak ripple current. In addition, the voltage ripple caused by the output capacitor needs to be significantly smaller than the ripple caused by the ESR of the capacitor. Use equa- tion (6) to satisfy this requirement. If the inductor current ripple I ripple is 30% of IOUT1, the 50mV peak to peak output voltage ripple requirement will be met if the total ESR of the output capacitors is less than 11mΩ. This will require 2 x 470µF POSCAP capacitors. Additional ceramic capacitors can be added in parallel to further reduce the ESR. Care should be given to properly compensate the control loop for low output capacitor ESR values. When selecting output capacitors, it is important to consider the overshoot performance of the power sup- ply. If the amount of capacitance is not adequate, then, when unloading the output, the magnitude of the over- shoot due to stored inductor energy, and depending on the speed of the response of the control loop, can exceed the overvoltage trip threshold of the iP1203PbF and can cause undesirable shutdown of the output. The magnitude of the overshoot should be kept below 1.125V OUT . To prevent the overshoot from tripping the output a delay can be added by in- stalling capacitor C14 as shown in Fig.14. b. Stability The value of the output capacitor ESR zero frequency f esr plays a major role in determining stability. fesr is calculated by the expression in equation (7). f ESR = 1 / (2 π x RESR x CO) (7) Details on how to consider this parameter to design for stability are outlined in the control loop compen- sation section of this datasheet. Inductor LO Selection Inductor selection is based on trade-offs between size and efficiency. Low inductor values result in smaller sizes, but can cause large ripple currents and lower efficiency. Low inductor values also benefit the tran- sient performance. The inductor L ois selected according to equation (8): L O = Vout x (1 - D) / (fsw x Iripple) (8) For the above example, and for I ripple of 30% of IOUT, LO is calculated to be 1.0µH. The core must be selected according to the peak of maximum output current. (6) ESR s o R f C × × > π 2 10 |
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