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Effectiveness of FRFET MOSFETs for the CCFL Inverters in LCD TVs

机译:液晶电视中CCFL逆变器FRFET MOSFET的有效性

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For the backlighting of most LCD panels such as TVs and monitors today, CCFL (cold cathode fluorescent lamp) is widely used because it can provide both low cost manufacturing and high quality color gamut. To illuminate the CCFL, half-bridge or full-bridge resonant inverters are necessary. Although resonant inverters can work under the ZVS condition when the PFM (pulse frequency modulation) method is applied, most major LCD manufacturers adopt the PWM (pulse width modulation) method to control their LCD's CCFL inverter because not only the color gamut might be varied but also its stability will be unstable when the inverter is operated by the PFM method due to its incremental resistance according to the varying the switching frequency. In the cases where CCFL inverter works with PWM method, the hard switching operation is inevitable and the additional diodes must be required because the reverse recovery behavior of the MOSFET's body diode is inferior to FRD (fast recovery diode), which causes a large amount of switching loss and it will even make the system failure due to the shoot-through current. In this paper, a newly improved FRFET MOSFET with superior reverse recovery characteristics is introduced and the experimental results for applying it to 42" LCD TV are presented. From these results, the validity of the new FRFET has been verified. The reverse recovery time is shorter than 40 ns and i{sub}(rr) is also much smaller than the typical power MOSFETs, which are sufficient to prevent the MOSFET's failures without the external diodes in CCFL BLU (back light unit) system.
机译:对于大多数LCD面板,如今天电视和显示器的背光,CCFL(冷阴极荧光灯)被广泛使用,因为它可以同时提供低成本制造和高品质的色域。照亮CCFL,半桥或全桥谐振逆变器是必要的。虽然谐振逆变器可以被施加PFM(脉冲频率调制)方法时ZVS条件下工作,大多数主要LCD制造商采用PWM(脉冲宽度调制)方法控制它们的LCD的CCFL逆变器,因为不仅色域可能被改变,但是还当逆变器由PFM方法,根据不同的开关频率操作,由于其电阻增加其稳定性将是不稳定的。在CCFL逆变器PWM方法作品中,硬切换操作是不可避免的和附加的二极管必须需要的,因为MOSFET的体二极管的反向恢复特性劣于FRD(快恢复二极管),这导致了大量的情况下开关损耗,它甚至会使系统故障是由于直通电流。在本文中,一个新改进的FRFET MOSFET,具有优异的反向恢复特性被引入并把它应用到42" LCD电视的实验结果。从这些结果,新FRFET的有效性已经被验证,反向恢复时间是短于40 ns的和I {}子(RR)也比典型的功率MOSFET,其足以防止MOSFET的故障,又不会在CCFL BLU(背光单元)系统中的外部二极管小得多。

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