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MP3313GC Datasheet(PDF) 16 Page - Monolithic Power Systems |
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MP3313GC Datasheet(HTML) 16 Page - Monolithic Power Systems |
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16 / 26 page ![]() MP3313 – 3-CHANNEL, LINEAR/EXPONENTIAL DIMMING, WLED DRIVER W/ I2C MP3313 Rev1.0 www.MonolithicPower.com 16 8/2/2017 MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited. © 2017 MPS. All Rights Reserved. The ramp time in either mapping mode can be calculated with Equation (13): RAMP PWM1 PWM0 t RAMP | 2047 D 2047 D 1| (13) 3. Internal register multiplies PWM duty before ramping: LED slope step controlled by internal register and PWM duty. When the brightness control mode bits are set to 010, the LED current is controlled by the input PWM dimming duty multiplied by the internal brightness register. The slope step is also controlled by the PWM dimming duty multiplied by the brightness register. In linear mode, the LEDs can be calculated with Equation (14) and Equation (15): ILED0 PWM0 I 40.806 A 12.195 A Code0 D (14) ILED1 PWM1 I 40.806 A 12.195 A Code1 D (15) In exponential mode, the LEDs can be calculated with Equation (16) and Equation (17): PWM0 Code0 D ILED0 I 51.1 A 1.003040572 (16) PWM1 Code1 D ILED1 I 51.1 A 1.003040572 (17) The ramp time in either mapping mode can be calculated with Equation (18): RAMP PWM1 PWM0 t RAMP | Code1 D Code0 D 1| (18) 4. Ramp before internal register multiplies input PWM dimming duty, LED slope step controlled by internal register only: When the brightness control mode bits are set to 011, the LED current is controlled by the input PWM dimming duty multiplied by the internal brightness register. The slope step is controlled by the internal brightness register only. In this mode, the LED current jumps immediately when the external PWM dimming duty changes. Then the LED current changes step-by-step to the new brightness register. In linear mapping mode, the original current can be calculated with Equation (19): ILED0- PWM0 I 40.806 A 12.195 A Code0 D (19) The LED current jumps immediately when the duty changes, as shown in Equation (20): ILED0+ PWM1 I 40.806 A 12.195 A Code0 D (20) The LED current follows the code changes shown in Equation (21): ILED1 PWM1 I 40.806 A 12.195 A Code1 D (21) In exponential mapping mode, the original current can be calculated with Equation (22): PWM0 Code0 D ILED0- I 51.1 A 1.003040572 (22) The LED current jumps immediately when the duty changes, as shown in Equation (23): PWM1 Code0 D ILED0+ I 51.1 A 1.003040572 (23) Then, the LED current follows the code changes shown in Equation (24): PWM1 Code1 D ILED1 I 51.1 A 1.003040572 (24) The ramp time in either mode can be calculated with Equation (25): RAMP t RAMP | Code1 Code0 1| (25) For example, the PWM duty changes from 50% to 100%, and the brightness register changes from 1024 to 2047, the slope is 1ms/step in linear analog dimming. The original LED current can be calculated with Equation (26): ILED0- I 40.806 A 12.195 A (1024 0.5) 6.28mA (26) Then the LED current jumps immediately, as shown in Equation (27): ILED0+ I 40.806 A 12.195 A (1024 1) 12.52mA (27) The LED current rise up step-by-step, shown in Equation (28): ILED1 I 40.806 A 12.195 A (2047 1) 25mA (28) The ramp-up time can be calculated with Equation (29): RAMP t 1ms / step | 2047 1024 1| 1022ms (29) |
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