| 전자부품 데이터시트 검색엔진 |
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LP55281TL/NOPB 데이터시트(PDF) 33 Page - Texas Instruments |
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LP55281TL/NOPB 데이터시트(HTML) 33 Page - Texas Instruments |
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33 / 42 page ![]() 0.0 100.0 200.0 300.0 400.0 500.0 TIME (é s) 5.1 4.8 4.4 4.1 3.7 3.4 VOUT TARGET VALUE = 5V VIN = 3.6V 5.1 4.8 4.4 4.1 3.7 3.4 TIME (100 é s/DIV) ILOAD = 50 mA VIN = 3.0V TO 3.6V VOUT = 5V (10 mV/DIV) VIN = 1V/DIV TIME (200 ns/DIV) 33 LP55281 www.ti.com SNVS458D – JUNE 2007 – REVISED OCTOBER 2016 Product Folder Links: LP55281 Submit Documentation Feedback Copyright © 2007–2016, Texas Instruments Incorporated 8.2.2.1.4 Output Diode, D1 A Schottky diode must be used for the output diode. To maintain high efficiency the average current rating of the Schottky diode must be larger than the peak inductor current (1 A). Schottky diodes with a low forward drop and fast switching speeds are ideal for increasing efficiency in portable applications. Choose a reverse breakdown of the Schottky diode larger than the output voltage. Do not use ordinary rectifier diodes, since slow switching speeds and long recovery times cause the efficiency and the load regulation to suffer. 8.2.2.1.5 Inductor, L The high switching frequency of the LP55281 device enables the use of the small surface mount inductor. A 4.7- µH shielded inductor is suggested for 2-MHz operation, use 10 µH at 1 MHz. The inductor should have a saturation current rating higher than the peak current it will experience during circuit operation (approximately 1 A). Less than 300-m Ω ESR is suggested for high efficiency. Open core inductors cause flux linkage with circuit components and interfere with the normal operation of the circuit. This should be avoided. For high efficiency, choose an inductor with a high frequency core material such as ferrite to reduce the core losses. To minimize radiated noise, use a toroid, pot core or shielded core inductor. TI recommends inductors LPS3015 and LPS4012 from Coilcraft and VLF4012 from TDK. 8.2.3 Application Curves Figure 27. Boost Typical Waveforms With 100 mA Load Figure 28. Boost Line Regulation Figure 29. Boost Start-up With No Load 50 - 100 mA Figure 30. Boost Load Regulation |
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