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AL1676 데이터시트(PDF) 9 Page - Diodes Incorporated |
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AL1676 데이터시트(HTML) 9 Page - Diodes Incorporated |
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9 / 15 page ![]() AL1676 Document number: DS38290 Rev. 1 - 2 9 of 15 www.diodes.com February 2016 © Diodes Incorporated AL1676 Functional Description and Application Information (Cont.) The detection circuit is activated after the LEB time. When the detection circuit sense the CS voltage is higher than 1V, the IC will turn off the switch to limit the output current. It automatically provides protection for the maximum LED current during operation. A propagation delay exists between over current detection and actual source-switch off, so the actual peak current is a little higher than the OCP level set by the R5. Over-Voltage Protection and Output-Open Protection (OVP) The AL1676 has output open voltage protection when the LED is open, which can prevent the output voltage from increasing to a very high value. This feature can help the system designer to select a smaller volume capacitor. The output voltage is set by the external resistor R3 shown in Figure 1. When LED is open, the tOFF_OVP time can be calculated as: _ 1 R5 CS OFF OVP OVP LV t V …………… (2) Where, VOVP is the output open voltage. VCS is the voltage on the CS pin when OVP happens. The output voltage is set by R3, and R3 is calculated as: 5 20 1 20 3 _ _ _ R V C L V V C t V R OVP REF REF ROVP CS REF OVP OFF REF ROVP …………… (3) Where, VROVP_REF is the internal ROVP pin 0.5V’s reference, CREF is the internal 6pF capacitor. Output-Short Protection (OSP) When LED is shorted, the device cannot detect the tOFF time, and the device controls the system operating at 5kHz low switching frequency. Thermal Foldback Protection (TFP) The AL1676 has a thermal foldback function and adopts self-adaptive control method, which can prevent the system from breaking down caused by high temperature. The overheating temperature is set at +150°C typical, when the junction temperature of the IC is higher than +150°C typical, the device will linearly decrease the internal reference voltage to decrease the output current. As a result of this feature, the device can control the system ’s output power at high ambient temperature, to control the quantity of heat of the system. This enhances the safety of the system at high temperature. The thermal foldback waveform is shown below: Figure 2. Thermal Foldback Waveform |
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