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LP5569 датащи(PDF) 16 Page - Texas Instruments |
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LP5569 датащи(HTML) 16 Page - Texas Instruments |
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16 / 93 page ![]() tJITTER 1/fPWM D/fPWM x D is tJITTER x fPWM or equal to #/6%¶V = ¨' [ 2048 codes. x For 11-bit resolution, #LSBs is equal to a hysteresis setting of LN(#/6%¶V)/LN(2). x For example, with a tJITTER of 1 µs and a fPWM of 5 kHz, the hysteresis setting should be: LN(1 µ s x 5 kHz x 2048)/LN(2) = 3.35 (4 LSBs). tJITTER Copyright © 2016, Texas Instruments Incorporated 16 LP5569 SNVSAP8A – JULY 2017 – REVISED SEPTEMBER 2017 www.ti.com Product Folder Links: LP5569 Submit Documentation Feedback Copyright © 2017, Texas Instruments Incorporated Feature Description (continued) 8.3.1.2.3.3 PWM Master Fader Hysteresis To prevent jitter on the input PWM signal from feeding through the PWM path and causing oscillations in the LED current, the LP5569 device offers seven selectable hysteresis settings. The hysteresis works by forcing a specific number of 11-bit LSB code transitions to occur in the input duty cycle before the LED current changes. Table 1 describes the hysteresis. The hysteresis only applies during a change in direction of brightness currents. Once the change in direction has taken place, the PWM input must overcome the required LSB(s) of the hysteresis setting before the brightness change takes effect. Once the initial hysteresis has been overcome and the direction in brightness change remains the same, the PWM-to-current response changes with no hysteresis. Table 1. PWM Input Hysteresis HYSTERESIS SETTING (0x80 bits [2:0]) MIN. CHANGE IN PWM PULSE DURATION (Δt) REQUIRED TO CHANGE LED CURRENT, AFTER DIRECTION CHANGE (for fPWM < 11.7 kHz) MIN. CHANGE IN PWM DUTY CYCLE (ΔD) REQUIRED TO CHANGE LED CURRENT AFTER DIRECTION CHANGE MIN (ΔILED), INCREASE FOR INITIAL CODE EXPONENTIAL MODE LINEAR MODE 000 (0 LSB) 1 / (fPWM × 2047) 0.05% 0.3% 0.05% 001 (1 LSB) 1 / (f PWM× 1023) 0.1% 0.61% 0.1% 010 (2 LSB) 1 / (fPWM × 511) 0.2% 1.21% 0.2% 011 (3 LSB) 1 / (fPWM × 255) 0.39% 2.4% 0.39% 100 (4 LSB) 1 / (fPWM × 127) 0.78% 4.74% 0.78% 101 (5 LSB) 1 / (fPWM × 63) 1.56% 9.26% 1.56% 110 (6 LSB) 1 / (fPWM × 31) 3.12% 17.66% 3.12% Figure 17. PWM Hysteresis Example |
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