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LED171596ARSLR Datasheet(PDF) 147 Page - Texas Instruments |
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LED171596ARSLR Datasheet(HTML) 147 Page - Texas Instruments |
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147 / 153 page ![]() 147 LED171596A www.ti.com SNVSAY2 – OCTOBER 2017 Submit Documentation Feedback Copyright © 2017, Texas Instruments Incorporated Figure 309. LED PWM Phase Shift 3 9 Power Supply Recommendations 9.1 Power Start-up and Shutdown Sequence The preferred power start-up sequence for the LED171596A is to apply VDD first then VDDIO followed by VLED while keeping EN input low where t1 ≥ t2 ≥ 0 (refer to ). The VDD and VDDIO supplies can be applied simultaneously provided that VDD ≥ VDDIO in transition. The preferred power shutdown sequence is the exact opposite of start-up, EN set low then VLED removed followed by VDDIO removed and finally VDD removed where t1 ≥ t2 ≥ t3 ≥ 0 (refer to ). 9.2 VLED Input Supply Recommendations The LED171596A is designed to operate from a 0-V to 6.1-V VLED voltage supply. The VLED supply must be well regulated and able to provide the peak current required by the LED configuration without voltage drop under load transients (start-up or rapid brightness change). The resistance of the input supply rail must be low enough such that the input current transient does not cause the VLED supply voltage to droop below LED Vf + VSAT voltage. TI recommends bulk decoupling located close to the VLED pin to minimize the impact of the VLED input supply rail resistance. 9.3 VDD Input Supply Recommendations The LED171596A is designed to operate from a 2.9-V to 3.5-V VDD voltage supply. This input supply must be well regulated and be able to provide the peak current required by the LED configuration. The resistance of the VDD supply rail must be low enough such that the input current transient does not cause the LED171596A VIN supply voltage to droop below the maximum VDDPOR voltage. Additional bulk decoupling located close to the VDD bypass capacitor may be required to minimize the impact of the VDD input supply rail resistance. |
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