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MP4690 датащи(PDF) 7 Page - Monolithic Power Systems |
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MP4690 датащи(HTML) 7 Page - Monolithic Power Systems |
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7 / 11 page ![]() MP4690 – SMART BYPASS FOR LED OPEN PROTECTION MP4690 Rev. 1.0 www.MonolithicPower.com 7 7/7/2011 MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited. © 2011 MPS. All Rights Reserved. APPLICATION INFORMATION Open LED protection serves as an electronic shunt to provide a current bypass for a single LED that fails due to an open circuit. A typical forward voltage drop of a normally on-state LED is approximately 3V, which is below the MP4690 turn-on threshold. When an LED is open, the voltage across the opened LED is boosted up by LED controller, causing the protection device to turn on. The MP4690 integrates a low 220mΩ on- resistance N-channel MOSFET to reduce the turn-on power loss. This feature makes the MP4690 suitable for one-, two-, or three-watt LEDs that have a nominal 3V forward voltage drop. The MP4690 is a two terminal device, which automatically resets if the LED heals itself or is replaced. Applying the Open LED Protection The protection applies to any designs and it is easy to implement. By connecting one MP4690 in parallel with each LED in a string, the string is protected from an open-circuit failure. Figure 1 shows a typical LED driver circuit with open LED protection device, MP4690. Figure 1. LED Open Protection Circuit The LED driver can be any kind of topology that can provide constant current output, such as Buck, Boost or Buck-Boost converter. Adding an Inductor to Smooth LED Current There are many kinds of LED driver circuits. Some require output capacitors while others do not. When the MP4688 LED driver is used, there is no need to add an external inductor. Figure 2 No Output Capacitor LED Driver As shown in Figure 2, since there is no output capacitor, the LED string is connected to the buck output inductor L1 directly. In case an open circuit happens at LED1, for example, the inductor L1 still maintains the LED current. At the same time, the voltage across the open circuit LED1 is boosted up immediately. U1 clamps the voltage at 7V. After about 120ns delay, the internal MOSFET of U1 turns on, thus the bypass circuit is established. During the 120ns period, the current flow in LED2, LED3 is nearly unchanged. That’s a benefit of the output inductor L1, which acts like a current source. For LED drivers that require output capacitors, maybe an additional inductor with small value is needed for short LED strings (<5 LEDs). Otherwise, the LED current will drop to zero rapidly when any LED open circuit happens and the MP4690 doesn’t have enough time to turn on the switch. Figure 3 is an example of an LED driver circuit with an output capacitor. |
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