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ECS-MPI4040R4-6R8-R bảng dữ liệu(HTML) 21 Page - Kinetic Technologies. |
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21 / 37 page ![]() t KTZ8866 January 2022 - Revision 04b Page 21 of 37 Company Confidential Backlight PWM Hysteresis In backlight mode, if PWM dimming frequency is high and PWM dimming duty cycle is low, even the internal fast 20MHz sampling clock’s sampling error can be sufficient to cause the output LED current jitter. KTZ8866 implements PWM hysteresis control to minimize the jitter. It can be programmed by register 0x03 bits [2:0]. The input PWM duty cycle is converted to an internal 11-bit digital value, this PWM hysteresis decides how many LSBs of this 11-bit digital value is changed before the output LED current can follow the change. When PWM duty cycle changes in the same direction, no hysteresis exists. Only when the PWM duty cycle’s change starts to go in different direction, does the hysteresis starts to take effect, and only when the change is larger or equal to the number of LSBs programmed, the output LED current starts to follow the change. Table 2 shows the relationship between the minimum LSB(s) and the PWM duty cycle hysteresis. Table 3 summarizes register 0x03 bits [2:0 ]’s minimum setting to prevent jitter under different input PWM frequency conditions. The drawback of setting PWM hysteresis too high is that the output current becomes less accurate due to the hysteresis. Table 2. PWM Hysteresis PWM Register 0x03 Bits [2:0] Minimum LSB(s) PWM Duty Cycle Hysteresis 000 0 0/2047 = 0% 001 2 2/2047 = 0.10% 010 4 4/2047 = 0.20% 011 6 6/2047 = 0.29% 100 8 8/2047 = 0.39% 101 10 10/2047 = 0.48% 110 12 12/2047 = 0.59% 111 14 14/2047 = 0.68% Table 3. Register 0x03 Bits [2:0]’s Minimum Setting PWM Dimming Frequency (kHz) Sampling Error Register 0x03 Bits [2:0 ]’s Minimum Setting to Prevent Jitter 0.1 0.0005% 001 1 0.005% 001 5 0.025% 001 10 0.05% 001 20 0.1% 010 40 0.2% 011 100 0.5% 110 Turn On/Off Ramp When backlight mode is enabled from standby mode or disabled to standby mode, the LED current waveform’s turn on/off time is controlled by Turn On/Off Ramp Register 0x14 bits [7:4] and bits [3:0] respectively. The 16 options range from 512µs to 16384ms, with 8ms as default. The shape of the turn on/off ramp in backlight mode can also be programmed as exponential or linear through the Register 0x02 bit [1], with linear as default. LED Fault Protection Each current sink is protected against LED short or open conditions. The outcome of LED short event depends on the setting of LED_SHORT_MODE bit in register 0x10. If it is ‘1’ and LED short circuit condition arises, the current sink continues to regulate until VSINK > VSOV. When any sink node voltage goes above VSOV (6V) for more than 59ms (typ.), LED_SHORT flag will be set in 0x0F and that channel’s current sink will be turned off, and the other channel(s) will continue to work if they don’t trigger this fault condition. If it is ‘0’, the LED_SHORT flag will be set in 0x0F when VSINK > VSOV more than 59ms(typ.) is detected, but KTZ8866 will keep working as usual without turning off the shorted channel’s current sink until it reaches thermal shutdown. |
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