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LP5569 数据表(PDF) 13 Page - Texas Instruments |
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LP5569 数据表(HTML) 13 Page - Texas Instruments |
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13 / 93 page ![]() Cycle Time 1/fPWM LED0 LED3 LED6 LED1 LED4 LED7 LED2 LED5 LED8 Phase 1 Phase 2 Phase 3 Phase 1 Phase 2 Phase 3 0 mA 0 mA 0 mA Copyright © 2016, Texas Instruments Incorporated 1LSB 256 (9-bit) 2048 (12-bit) 256 4/8 (9-bit) 2052 (12-bit) 257 (9-bit) 2056 (12-bit) 13 LP5569 www.ti.com SNVSAP8A – JULY 2017 – REVISED SEPTEMBER 2017 Product Folder Links: LP5569 Submit Documentation Feedback Copyright © 2017, Texas Instruments Incorporated 8.3 Feature Description 8.3.1 Current Sinks 8.3.1.1 Overview The LP5569 LED drivers are constant-current sources. Maximum output-current scale can be programmed by control registers up to 25.5 mA. The overall maximum current is set by 8-bit output current-control registers with 100-μA step size. Each of the 9 LED drivers has a separate output-current control register. The LED luminance pattern (dimming) is controlled with a PWM technique, which has 12-bit resolution during ramping and 8-bit user control. The LED current-sink PWM frequency is 20 kHz. High 20-kHz PWM frequency and 12-bit control accuracy are achieved by using 3-bit dithering for PWM control. There is a 9-bit pure PWM resolution generated in the PWM generators, and one least-significant bit (1 LSB) is toggled in eight periods to output a smaller average step. For 3-bit dithering, every eighth pulse is made 1 LSB longer to increase the average value by 1 / 8th. Figure 12 shows an example of 9-bit PWM value, step of 4 / 8 (0.5) and its 12-bit representation. Figure 12. Dithering A phase-shift PWM scheme allows delaying the time when each LED driver is active. When the LED drivers are not activated simultaneously, the peak load current from the charge-pump output is greatly decreased. This also reduces input-current ripple and ceramic-capacitor audible ringing. LED drivers are grouped into three different phases. In phase 1, the rising edge of the PWM pulse is fixed in time. In phase 2, the middle point of the PWM pulse is fixed, and the pulse spreads to both directions when PWM duty cycle is increased. Phase 3 has a fixed falling edge, that is, the rising edge of the pulse is changed when the duty cycle changes. Figure 13. LED Phase Shift LED dimming is controlled according to an exponential or linear scale (see Figure 14) In exponential mode, the PWM output percent can be approximated by the following two equations: • Less than or equal to code 64: y = 0.0125x – 0.0066. • Greater than code 64: y = 0.7835e0.0217x . |
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