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ACT512 Datasheet(PDF) 9 Page - Active-Semi, Inc |
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ACT512 Datasheet(HTML) 9 Page - Active-Semi, Inc |
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9 / 14 page ![]() ACT512 Rev 4, 13-Feb-14 Innovative PowerTM - 9 - www.active-semi.com Copyright © 2014 Active-Semi, Inc. Active-Semi Proprietary―For Authorized Recipients and Customers ActiveQR TM is a trademark of Active-Semi. TYPICAL APPLICATION CONT’D Determining the value of the current sense resistor (R7) uses the maximum current in the design. So the input primary maximum current at maximum load: Since the ACT512 internal current limit is set to 0.96V, the design of the current sense resistor is given by: The voltage feedback resistors are selected according to the design. Because the line UVLO is 75VDC, the upper feedback resistor is given by: The lower feedback resistor is selected as: When selecting the output capacitor, a low ESR electrolytic capacitor is recommended to minimize ripple from the current ripple. The approximate equation for the output capacitance value is given by: Two 680µF electrolytic capacitors are used to further reduce the output ripple. PCB Layout Guideline Good PCB layout is critical to have optimal performance. Decoupling capacitor (C4) and feedback resistor (R5/R6) should be placed close to VDD and FB pin respectively. There are two main power path loops. One is formed by C1/C2, primary winding, mosfet transistor and current sense resistor (R9). The other is secondary winding, rectifier D8 and output capacitors (C5/C6). Keep these loop areas as small as possible. Connecting high current ground returns, the input capacitor ground lead, and the ACT512 GND pin to a single point (star ground configuration). (11) (12) Ω 87 . 0 1 . 1 96 . 0 I V R OCP _ p CS CS ≈ = = (13) Ω k 9 . 54 mA 2 . 0 56 10 60 I N N V R UVLO _ FB p A UVLO _ INDC UP _ FB ≈ × × = × × = (14) Ω Ω k 7 . 11 k 9 . 54 2 . 2 1 . 1 ) 45 . 0 12 ( 2 . 2 R V N N ) V V ( V R UP _ FB FB S A D OUT LOW _ FB FB ≈ × × + = + = - - F 533 mV 50 k 75 2 V f I C RIPPLE sw OUT OUT μ = × = × = (15) A 1 . 1 86 . 0 75 8 . 0 12 6 . 2 2 f L V I 2 I sw P OUT OCP _ OUT OCP _ p = × × × × = × × × × = η |
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