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L6997STR Datasheet(PDF) 17 Page - STMicroelectronics |
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L6997STR Datasheet(HTML) 17 Page - STMicroelectronics |
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17 / 30 page ![]() 17/30 L6997S With our parameters: Lmin ≥ 2µH The saturation current must be higher then 5A 6.3 Output capacitor and ripple voltage The output capacitor is selected based on both static and dynamic output voltage accuracy. The static output voltage accuracy depends mostly on the ERS of the output capacitor, while the dynamic accuracy usually de- pends both on the ESR and capacitance value. If the static precision is ±1% for the 1.25V output voltage, the output ripple is ±12.5mV. To determine the ESR value from the output precision is necessary to calculate the ripple current: (21) Where FSW = 270kHz. From the Eq. above the ripple current is around 1.25A. So the ESR is given by: (22) The dynamic specifications are sometimes more relaxed than the static requirements, Anyway a minimum out- put capacitance must be ensured to avoid output voltage variation due to the charge and discharge of Cout dur- ing load transients. To allow the device control loop to work properly, the zero introduced by the output capacitor ESR ( τ = ESR · Cout) must be at least ten times smaller than switching frequency. Low ESR tantalum capacitors, which ESR zero is close to ten kHz, are suitable for output filtering. Output capacitor value COUT and its ESR, ESRCOUT, should be large enough and small enough, respectively, to keep output voltage within the accuracy range during a load transient, and to give the device a minimum signal to noise ratio. The current ripple flows through the output capacitors, so the should be calculated also to sustain this ripple: the RMS current value is given by Eq. 18. (23) But this is usually a negligible constrain. Possible solutions: Multilayer capacitors can not be used because their very low ESR. 6.4 MOSFET’s and Schottky Diodes A 3.3V bus powers the gate drivers of the device, the use ultra low level MOSFET is highly recommended, es- pecially for high current applications. The MOSFET breakdown voltage VBRDSS must be greater than VINMAX with a certain margin. The RDSON can be selected once the allowable power dissipation has been established. By selecting identical 330 µF EEFUE0D331R PANASONIC 220 µF2R5TPE220M POSCAP I ∆ Vin Vo – L ----------------------- Vo Vin --------- T sw ⋅⋅ = ESR V ripple ∆ I ∆ 2 ----- --------------------- 25mV 1.25 ---------------- = 20m Ω == Icout rms 1 23 ----------- I L ∆ = |
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