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ZXLD1371QESTTC Datasheet(PDF) 28 Page - Diodes Incorporated |
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ZXLD1371QESTTC Datasheet(HTML) 28 Page - Diodes Incorporated |
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28 / 42 page ![]() ZXLD1371 ZXLD1371 Document number: DS35436 Rev. 1 - 2 28 of 42 www.diodes.com February 2012 © Diodes Incorporated A Product Line of Diodes Incorporated Applications Information (cont.) The ZXLD1371 sets the ripple current, ΔIL, to between nominally 10% and 30% of the mean coil current, ICOIL, which is found from Equation 8. The device adjusts the ripple current within this range in order to regulate the switching frequency. We therefore need to use a ΔIL value of 20% of ICOIL to find an inductance which is optimized for the input voltage range. The range of ripple current control is also modulated by other circuit parameters as follows. ∆I LMAX = 0.06 +0.24 VADJ VREF 1-D GI_ADJ ICOIL ∆I LMIN = 0.02 +0.08 VADJ VREF 1-D GI_ADJ ICOIL Equation 20 ∆I LMID = 0.04 +0.16 VADJ VREF 1-D GI_ADJ ICOIL If ADJ is connected to REF, this simplifies to ∆I LMAX = 0.3 1-D GI_ADJ ICOIL ∆I LMIN = 0.1 1-D GI_ADJ ICOIL Equation 20a ∆I LMID = 0.2 1-D GI_ADJ ICOIL where ΔILMID is the value we must use in Equation 18. We have now established the inductance value. The chosen coil should saturate at a current greater than the peak sensed current. This saturation current is the DC current for which the inductance has decreased by 10% compared to the low current value. Assuming ±10% ripple current, we can find this peak current from Equation 8, adjusted for ripple current: ICOILPEAK = 1.1 ILED for Buck ICOILPEAK = 1.1 IINMAX for Boost Equation 21 ICOILPEAK = 1.1 IINMAX + ILED for Buck-boost where IINMAX is the value of IIN at minimum VIN. The mean current rating is also a factor, but normally the saturation current is the limiting factor. The following websites may be useful in finding suitable components www.coilcraft.com www.niccomp.com www.wuerth-elektronik.de MOSFET Selection The ZXLD1371 requires an external NMOS FET as the main power switch with a voltage rating at least 15% higher than the maximum circuit voltage to ensure safe operation during the overshoot and ringing of the switch node. The current rating is recommended to be at least 10% higher than the average transistor current. The power rating is then verified by calculating the resistive and switching power losses. Resistive power losses The resistive power losses are calculated using the RMS transistor current and the MOSFET on-resistance. Calculate the current for the different topologies as follows: Buck mode Boost / Buck-boost mode switching P resistive P P + = LED I MOSFETMAX I = MAX D 1 LED I MOSFETMAX I − = |
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