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LED6000PHR 数据表(PDF) 27 Page - STMicroelectronics |
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LED6000PHR 数据表(HTML) 27 Page - STMicroelectronics |
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27 / 49 page ![]() DocID027777 Rev 2 27/49 LED6000 Application notes - step-down conversion 49 Equation 12 In order to guarantee a maximum current ripple in every condition, Equation 12 must be evaluated in case of maximum input voltage, assuming VOUT fixed. Increasing the value of the inductance helps to reduce the current ripple but, at the same time, strongly impacts the converter response time in case of high frequency dimming requirements. On the other hand, with a lower inductance value the regulator response time is improved but the power conversion efficiency is impacted and the output capacitor must be increased to limit the current ripple flowing through the LEDs. As usually, the L-CO choice is a trade-off among multiple design parameters. 5.3 Compensation strategy The compensation network must assure stability and good dynamic performance. The loop of the LED6000 is based on the voltage mode control. The error amplifier is an operational amplifier with high bandwidth. So, by selecting the compensation network the E/A is considered as ideal, that is, its bandwidth is much larger than the system one. Figure 16. Switching regulator control loop simplified model SW L IN OUT OUT F I V V V L 1 |
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