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MP3313 数据表(PDF) 15 Page - Monolithic Power Systems |
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MP3313 数据表(HTML) 15 Page - Monolithic Power Systems |
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15 / 26 page ![]() MP3313 – 3-CHANNEL, LINEAR/EXPONENTIAL DIMMING, WLED DRIVER W/ I2C MP3313 Rev.1.0 www.MonolithicPower.com 15 8/2/2017 MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited. © 2017 MPS. All Rights Reserved. PWMSR1:0 bit = 00, sample frequency = 800kHz. PWMSR1:0 bit = 01, sample frequency = 4MHz (default). PWMSR1:0 bit = 1x, sample frequency = 24MHz. Choose a PWM sample frequency based on the required dimming resolution, input dimming frequency, and efficiency (the higher the sample frequency, the higher the input consumption current is). A low-level PWM signal that lasts for a certain amount of time can disable the device (see Table 2). The lower the PWM sample frequency is, the longer the PWM shutdown time is. Table 2: PWM Shutdown Time vs. Sample Frequency fsample (Hz) TPWM_SD (ms) 24M 0.6 4M 3 800k 25 PWM Hysteresis To prevent the input PWM dimming signal jitter from causing LED flicker, the MP3313 offers selectable PWM hysteresis. HYS2:0 = 000: no hysteresis HYS2:0 = 001: 1 clock HYS2:0 = 100: 4 clock (default) HYS2:0 = 110: 6 clock Where 1 clock = 1/fsample. Different sample rates produce different clocks. The PWM hysteresis is active only when the direction of the LED brightness changes. Once the LED brightness direction changes, the input PWM signal must overcome the hysteresis, and then the brightness changes. Otherwise, if the LED brightness changing direction remains the same, the PWM signal hysteresis function is unused. Brightness Control Mode The LED current is controlled either by the input PWM dimming signal or internal brightness register. Five different brightness control modes can be selected and set by the BRTMD2:0 bit. 1. Internal register only: When the brightness control mode bits are set to 000, the LED current is controlled by the internal brightness register only without the PWM signal. The LED current changes only when the eight MSBs are written. Write three LSBs first, then write eight MSBs for 11-bit brightness change. In linear mapping mode, the LEDs can be calculated with Equation (4) and Equation (5): ILED0 I 40.806 A 12.195 A Code0 (4) ILED1 I 40.806 A 12.195 A Code1 (5) In exponential mapping mode, the LEDs can be calculated with Equation (6) and Equation (7): Code0 ILED0 I 51.1 A 1.003040572 (6) Code1 ILED1 I 51.1 A 1.003040572 (7) The ramp time in either mapping mode can be calculated with Equation (8): RAMP t RAMP (Code1 Code0 1) (8) 2. Input PWM duty only: When the brightness control mode bits are set to 001, the LED current is controlled by the input dimming signal only. The internal brightness code is ignored. The MP3313 samples the PWM signal and translates it into an 11-bit code to regulate the current. Choose the corresponding PWM frequency based on the PWM sample rate and resolution request. In linear mapping mode, the LEDs can be calculated with Equation (9) and Equation (10): ILED0 PWM0 I 40.806 A 12.195 A 2047 D (9) ILED1 PWM1 I 40.806 A 12.195 A 2047 D (10) In exponential mapping mode, the LEDs can be calculated with Equation (11) and Equation (12): PWM0 2047 D ILED0 I 51.1 A 1.003040572 (11) PWM1 2047 D ILED1 I 51.1 A 1.003040572 (12) |
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