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DI-67 Folha de dados(PDF) 2 Page - Power Integrations, Inc. |
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DI-67 Folha de dados(HTML) 2 Page - Power Integrations, Inc. |
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2 / 2 page ![]() www.powerint.com A 10/03 DI-67 Power Integrations 5245 Hellyer Avenue San Jose, California 95138 MAIN PHONE NUMBER APPLICATIONS HOTLINE APPLICATIONS FAX For a complete listing of worldwide sales offices, +1 408-414-9200 +1 408-414-9660 +1 408-414-9760 please visit www.powerint.com The PI logo, TOPSwitch, TinySwitch, LinkSwitch and EcoSmart are registered trademarks of Power Integrations. PI Expert and DPA-Switch are trademarks of Power Integrations. Copyright 2003, Power Integrations Power Integrations reserves the right to make changes to its products at any time to improve reliability or manufacturability. Power Integrations does not assume any liability arising from the use of any device or circuit described herein, nor does it convey any license under its patent rights or the rights of others. The products and applications illustrated herein may be covered by one or more U.S. and foreign patents or potentially by pending U.S. and foreign patent applications assigned to Power Integrations. A complete list of Power Integrations' patents may be found at www.powerint.com. For the latest updates, visit www.powerint.com 025 50 Time (ms) 0.5 A/Div. 100 V/Div. 0.5 A/Div. 0 A 0 V 0 A Table 1. Transformer Construction Information. Core Bobbin Winding Details Winding Order (pin numbers) Primary Inductance Primary Resonant Frequency Leakage Inductance TRANSFORMER PARAMETERS EF-20 or Equivalent ALG of 1570 nH/T2 Miles-Platts EF0700 EF20 8 Pin Horizontal Primary: 70T, 2 layers, 29 AWG Secondary: 13T, 2 x 32 AWG Triple Insulated Wire Bias: 9T, 2 x 23 AWG Primary: 2-5, tape Secondary: 8-7, tape Primary: 5-1, tape Bias: 3-4, tape 3 layers 350 µH ±10% 2.0 MHz (Min) 10 µH (Max) Figure 2. PFC LED Driver Waveforms. Top: Input Current at 120 VAC 60 Hz. Middle: C3 Capacitor Voltage. Bottom: Output Current (with 20 V LED Load). Figure 3. PFC Driver Current vs. Temperature. Key Design Points • To have high power factor, a constant duty factor must be maintained over the 8.33 ms half cycle period. Therefore, the bias supply voltage and the U1 CONTROL pin current must remain extremely constant. The values of C6 and C8 must be chosen accordingly. • Decreasing the value of C8 will reduce the turn-on delay time, but will also degrade the power factor. • Because low-cost is the goal of this low-loop-gain design, the tolerance of the output current depends on the CTR of the opto-coupler and the (unregulated) value of the bias voltage. The restricted AC input voltage range allows using the forward (not flyback) configuration for the bias winding. If the AC input voltage range is extended, voltage regulation of the bias supply circuit will be required. -40 0 -20 20 40 60 80 Ambient Temperature (°C) 700 680 660 720 740 LED Current must be maintained within manufacturer's specified temperature range. +5% Upper Specification Limit -5% Lower Specification Limit |
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