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MP3378E 数据表(PDF) 19 Page - Monolithic Power Systems |
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MP3378E 数据表(HTML) 19 Page - Monolithic Power Systems |
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19 / 23 page ![]() MP3378E – 4-CHANNEL WLED CONTROLLER WITH BUCK CONVERTER MP3378E Rev. 1.02 www.MonolithicPower.com 19 5/26/2017 MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited. © 2017 MPS. All Rights Reserved. Table 1: The Range of PWM Dimming Duty fPWM (Hz) Dmin Dmax 100<f 200 0.30% 100% 200<f 500 0.75% 100% 500<f 1k 1.50% 100% 1k<f 2k 3.00% 100% 2k<f 5k 7.50% 100% 5k<f 10k 15.00% 100% 10k<f 20k 30.00% 100% 2. Analog Dimming For analog dimming, apply a PWM signal or a DC voltage signal to ADIM. An internal RC filter (10M Ω resistor and 100pF capacitor) is integrated to ADIM. If a PWM signal is applied to ADIM, a >20kHz frequency is recommended for better PWM signal filtering performance and to ensure the amplitude voltage is higher than 1.5V, and the low-level voltage is less than 0.4V. For the DC signal input, apply a DC input signal ranging from 0.41V to 1.49V to set the LED current from minimum to full scale linearly. BUCK CONVERTER SECTION: Setting the Output Voltage The external resistor divider is used to set the output voltage. The feedback resistor R1 also sets the feedback loop bandwidth with the internal compensation capacitor. When R1 is fixed, R2 is then given by Equation (13): OUT2 R1 R2 V 1 0.8V (13) The T-type network is highly recommended (see Figure 5). FB R1 R2 RT 12 VOUT2 Figure 5: T-type Network Table 2 below lists the recommended T-type resistor values for the common 5V output voltage. Table 2: Resistor Selection for Common Output Voltages VOUT2 (V) R1 (kΩ) R2 (kΩ) RT (kΩ) L2 (µH) Co (µF) 5 40.2 7.5 51 10 66 Selecting the Inductor A 4.7µH to 10µH inductor with a DC current rating at least 25% higher than the maximum load current is recommended for most applications. For the highest efficiency, the inductor DC resistance should be less than 15mΩ. For most designs, the inductance value can be derived from Equation (14): OUT2 IN2 OUT2 IN2 L2 OSC V (V V ) L2 V I F (14) Where ΔI L2 is the inductor ripple current. Set the inductor current to be approximately 30% of the maximum load current. The maximum inductor peak current is calculated with Equation (15): L2 L2(MAX) LOAD2 I II 2 (15) |
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