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SSL21081AT 数据表(PDF) 11 Page - NXP Semiconductors |
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SSL21081AT 数据表(HTML) 11 Page - NXP Semiconductors |
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11 / 22 page ![]() SSL21081AT All information provided in this document is subject to legal disclaimers. © NXP B.V. 2013. All rights reserved. Product data sheet Rev. 6 — 3 October 2013 11 of 21 NXP Semiconductors SSL21081AT Compact non-dimmable LED driver IC When the voltage on the NTC pin exceeds Vth(high)NTC (see Figure 6 (4)), the converter delivers nominal output current. When the voltage is lower than this level, the peak current is gradually reduced until Vth(low)NTC is reached (see Figure 6 (3)). The peak current is now half the peak current of nominal operation. When Vact(tmr)NTC is passed (see Figure 6 (2)), a timer starts to run to distinguish between the following situations: • If the low-level Vdeact(tmr)NTC is not reached within time tto(deact)NTC (see Figure 6 (1)), LED overtemperature is detected. The IC stops switching and attempts to restart from the HV pin voltage. The converter restarts from an NTC protection shutdown when the voltage on the NTC pin exceeds Vth(high)NTC (see Figure 6 (4)). It is assumed that the reduction in peak current does not result in a lower NTC temperature and LED OTP is activated. • If the low-level Vdeact(tmr)NTC is reached within the time tto(deact)NTC (see Figure 6 (1)) it is assumed that the pin is pulled down externally. The restart function is not triggered. Instead, the output current is reduced to zero. PWM regulation and consequently LED output current regulation can be implemented this way. The output current rises again when the voltage exceeds Vth(low)NTC. 8.7.1 Soft-start function The NTC pin can be used to make a soft start function. During switch-on, the level on the NTC pin is low. By connecting a capacitor (in parallel with the NTC resistor), a time constant can be defined. The time constant causes the level on the NTC pin to increase slowly. When passing level Vth(low)NTC (see Figure 6 (3)), the converter starts with half of the maximum current. The output current slowly increases to maximum when Vth(high)NTC (see Figure 6 (4)) is reached. 8.8 Heat sink The copper of the PCB acts as the heat sink for SSL21081AT applications. Equation 1 shows the relation between the maximum allowable power dissipation P and the thermal resistance from junction to ambient. (1) Where: Rth(j-a) = thermal resistance from junction to ambient Tj(max) = maximum junction temperature Tamb = ambient temperature P = power dissipation R th j a – T jmax T amb – P = |
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