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LED6000PHR 数据表(PDF) 41 Page - STMicroelectronics |
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LED6000PHR 数据表(HTML) 41 Page - STMicroelectronics |
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41 / 49 page ![]() DocID027777 Rev 2 41/49 LED6000 Application notes - alternative topologies 49 6.3 Floating boost The floating-boost topology fits the application with an input voltage range always lower than the output voltage, VOUT, which is the voltage drop across the LEDs and the sensing resistor. The floating boost (see Figure 30) requires the same components count as the buck conversion. Figure 30. Floating-boost topology In this topology the output voltage is referred to VIN and not to GND. The device is supplied by VOUT as a consequence the maximum voltage drop across the LEDs string is 61 V. In floating-boost topology working in the continuous conduction mode (CCM), the HS MOS on-time interval, D, is given by: Equation 35 However, due conduction losses, the real duty cycle is always higher than the ideal one. The real value should be used in the following formulas. The peak current flowing in the embedded switch is: Equation 36 While its average current level is equal to: Equation 37 This is due to the fact that the current flowing through the internal power switch is delivered to the output only during the OFF phase. OUT IN OUT V V V D SW IN OUT RIPPLE OUT SW f L D V D I I D I I 2 1 2 1 D I I OUT SW 1 |
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