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ZLED7530 데이터시트(PDF) 18 Page - List of Unclassifed Manufacturers |
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ZLED7530 데이터시트(HTML) 18 Page - List of Unclassifed Manufacturers |
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18 / 24 page ![]() ZLED7530 High Current 40V LED Driver with Switch Dimming Data Sheet August 16, 2011 © 2011 Zentrum Mikroelektronik Dresden AG — Rev.1.2 All rights reserved. The material contained herein may not be reproduced, adapted, merged, translated, stored, or used without the prior written consent of the copyright owner. The information furnished in this publication is subject to changes without notice. 18 of 23 kHz 8 . 121 s 56 . 5 s 64 . 2 1 T T 1 f OFF ON LX = + = + = µ µ 3 . 0 s 56 . 5 s 64 . 2 s 64 . 2 T T T V 12 V 4 . 3 V V D OFF ON ON IN LED LX ≈ + = + ≈ = = µ µ µ ( ) s A V V A H t OFF µ µ 56 . 5 26 . 0 30 . 0 333 . 0 36 . 0 4 . 3 333 . 0 3 . 0 220 = Ω + Ω ∗ + + ∗ ∗ = ( ) s A V V A H t ON µ µ 64 . 2 27 . 0 26 . 0 3 . 0 333 . 0 4 . 3 12 333 . 0 3 . 0 220 = Ω + Ω + Ω ∗ − − ∗ ∗ = The inductance value has an equivalent effect on tON and tOFF and therefore affects the switching frequency. For the same reason, the inductance has no influence on the duty cycle, for which the relationship of the summed LED forward voltages n * VF to the input voltage VIN is a reasonable approximation. Because the input voltage is a factor in the ON time, variations in the input voltage affect the switching frequency and duty cycle. To achieve optimum performance, duty cycles close to 0.5 at the nominal average supply voltage are preferable for improving the temperature stability of the output current. Equations (5), (6), (7), and (8) provide an example of calculating tON, tOFF, operating frequency fLX, and duty cycle DLX when using a 220µH inductor for L1 and VIN=12V, Rs = 0.30 , rL=0.26 , VLED=3.4V, IAVG =333mA, VD=0.36V, and RLX=0.27 . Example: (5) (6) (7) (8) For the L1 inductor, use a coil with a continuous current rating higher than the required mean output current and a saturation current that exceeds the peak output current by 30% to 50% for robustness against transient con- ditions; e.g., during start-up. 3.3.3 Bypass Capacitor C1 The bypass capacitor C1 has two functions: maintaining operating voltage and bypassing the current ripple of the switching converter. In general, low ESR capacitors must be used. If the circuit is supplied by rectified line voltage, C1 must provide enough charge to maintain the ZLED7x30’s minimum operating voltage as well as the forward voltage of the LED string to keep the application working even if the rectified supply voltage periodically drops below these values. A rough estimate for the minimum capacity needed can be calculated with equation (9). |
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