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LED6000PHTR 数据表(PDF) 25 Page - STMicroelectronics |
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LED6000PHTR 数据表(HTML) 25 Page - STMicroelectronics |
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25 / 49 page ![]() DocID027777 Rev 2 25/49 LED6000 Application notes - step-down conversion 49 Different capacitors can be considered: Electrolytic capacitors These are the most commonly used due to their low cost and wide range of operative voltage. The only drawback is that, considering ripple current rating requirements, they are physically larger than other capacitors. Ceramic capacitors If available for the required value and voltage rating, these capacitors usually have a higher RMS current rating for a given physical dimension (due to the very low ESR). The drawback is their high cost. Tantalum capacitor Small, good quality tantalum capacitors with very low ESR are becoming more available. However, they can occasionally burn if subjected to a very high current, for example when they are connected to the power supply. The amount of the input voltage ripple can be roughly overestimated by Equation 9. Equation 9 In case of MLCC ceramic input capacitors, the equivalent series resistance (RES,IN) is negligible. In addition to the above considerations, a ceramic capacitor with an appropriate voltage rating and with a value 1 µF or higher should always be placed across VIN and power ground and across VCC and the IC GND pins, as close as possible to the LED6000 device. This solution is necessary for spike filtering purposes. 5.2 Output capacitor and inductor selection The output capacitor is very important in order to satisfy the output voltage ripple requirement. Using a small inductor value is useful to reduce the size of the choke but increases the current ripple. So, to reduce the output voltage ripple, a low ESR capacitor is required. The current in the output capacitor has a triangular waveform which generates a voltage ripple across it. This ripple is due to the capacitive component (charge and discharge of the output capacitor) and the resistive component (due to the voltage drop across its ESR). So the output capacitor must be selected in order to have a voltage ripple compliant with the application requirements. The allowed LED current ripple ( ILED,PP) is typically from 2% to 5% of the LED DC current. OUT IN ES SW IN OUT PP IN I R F C I D D V , , 1 |
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