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LED5000 数据表(PDF) 34 Page - STMicroelectronics |
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LED5000 数据表(HTML) 34 Page - STMicroelectronics |
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34 / 52 page ![]() Application notes - alternative topologies LED5000 34/51 Doc ID 023951 Rev 1 6 Application notes - alternative topologies Thanks to the wide input voltage range, the adjustable external compensation network and enhanced dimming capability, the LED5000 is suitable to implement boost and buck-boost topologies. 6.1 Inverting buck-boost The buck-boost topology fits the application with an input voltage range that overlaps the output voltage, which is the voltage drop across the LEDs and the sensing resistor. The inverting buck-boost (see Figure 23) requires the same component count as the buck conversion and it is more efficient than the positive buck-boost. A current generator based on this topology implies two main application constraints: ● the output voltage is negative so the LEDs must be reversed ● the device GND floats with the negative output voltage. The device is supplied between VIN and VOUT (<0). As a consequence: Equation 50 so: Equation 51 where VOUT<0. Figure 23. Inverting buck-boost Example 1 VIN RANGE=12-24 V, VFW_LED=3.7 V, nLED= 5 so VOUT=18.7 V V IN_MAX LED5000 V IN V OUT – = V IN V IN_MAX LED5000 V OUT + 48 V OUT + == VIN V REF ISW AM13507v1 |
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