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Soft Switching on Center Driven Piezoelectric Transformer Based Inverters

机译:基于中心驱动压电变压器的逆变器软切换

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A new center-driven piezoelectric transformer vibrating at 3/2 λ mode is proposed in this paper. The modal electrode can provide full modal filtering effect for rectified input voltage. Both the theoretical results and the experimental verification are presented in this paper. From the two output sections of the center-driven piezoelectric transformer, which was polarized in opposite directions, out-of-phase output voltages at the designed third resonance frequency were output. Two center-driven piezoelectric transformer configurations were used to light CCFL. The first configuration connects two CCFLs (cold cathode fluorescent lamps) to the two output sections of the piezoelectric transformer and shows that the two CCFLs can be lit in sequence or simultaneously. The other one is that a single extra-long CCFL for large size LCD TV backlight can be connected between the two output electrode and the floating connection configuration can provide doubled driving voltage to light the extra long CCFL. Soft switching techniques were adopted to reduce the switching loss and to lower the wasste heat. The switching dead time between the on and off states was adjusted to make the end voltages of MOSFETs being charged and discharged to reach zero voltage right before switching, i.e., to drive the MOSFET in the so-called zero voltage switching (ZVS) condition. The modal filtering electrodes were also adopted to filter out the higher order harmonics while keeping the driving efficiency high. By combining the techniques mentioned above, an innovative piezoelectric transformer based inverter is completed and found to possess performance higher than traditional inverters.
机译:本文提出了一种在3/2λ模式下振动的新的中心驱动压电变压器。模态电极可以为整流输入电压提供全模频滤波效果。本文提出了理论结果和实验验证。从中心驱动的压电变压器中,将其在相反方向极化的两个输出部分,在所设计的第三谐振频率失相输出电压分别为输出。两个中心驱动的压电变压器配置用于浅光CCFL。第一配置将两个CCFL(冷阴极荧光灯)连接到压电变压器的两个输出部分,并显示两个CCFL可以依次或同时点燃。另一个是用于大尺寸LCD电视背光的单个超长CCFL可以连接在两个输出电极和浮动连接配置之间,可以提供加倍的驱动电压,以点击超长CCFL。采用软切换技术来减少开关损耗并降低散散热量。调整开关状态之间的切换死时间以使MOSFET的端部电压被充电和放电,以在切换之前右到达零电压,即在所谓的零电压切换(ZVS)条件下驱动MOSFET。也采用模态滤波电极来滤除较高的谐波,同时保持驱动效率高。通过组合上述技术,完成了一种基于创新的压电变压器的逆变器,并发现具有比传统逆变器高的性能。

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