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    • 6. 发明授权
    • Driving method and driving circuit for piezoelectric transformer, cold cathode tube emission device, liquid crystal panel and liquid crystal panel built-in apparatus
    • 压电变压器,冷阴极管发射装置,液晶面板和液晶面板内置装置的驱动方法和驱动电路
    • US06509671B2
    • 2003-01-21
    • US09870979
    • 2001-05-31
    • Katsu TakedaHiroshi NakatsukaKatsunori MoritokiTakeshi Yamaguchi
    • Katsu TakedaHiroshi NakatsukaKatsunori MoritokiTakeshi Yamaguchi
    • H01L4108
    • H05B41/2822H01L41/044
    • A driving method and a driving circuit for a piezoelectric transformer are capable of driving the piezoelectric transformer with high driving efficiency independently of an impedance change of a load such as a cold cathode tube by corresponding to the characteristic variance of the piezoelectric transformer, thereby also suppressing mechanical damage to be imposed on the piezoelectric transformer itself even if the load changes abruptly. The piezoelectric transformer is driven with a predetermined first frequency, and a power supply for a load connected to the secondary side of the piezoelectric transformer is started, and when an impedance of a load changes and reaches a predetermined impedance during the power supply, the driving frequency of the piezoelectric transformer is changed without a sweep from the first frequency to a predetermined second frequency. Furthermore, the second frequency is determined by detecting characteristics of the piezoelectric transformer before supplying the load steadily with electric power.
    • 用于压电变压器的驱动方法和驱动电路能够独立于诸如冷阴极管的负载的阻抗变化而驱动具有高驱动效率的压电变压器,与压电变压器的特性变化相对应,从而也抑制 即使负载突然变化,也会对压电变压器本身施加机械损伤。 压电变压器以预定的第一频率驱动,并且开始连接到压电变压器的次级侧的负载的电源,并且当负载的阻抗在电源期间变化并达到预定的阻抗时,驱动 压电变压器的频率在没有从第一频率到预定的第二频率的扫描的情况下改变。 此外,通过在稳定地供给电力之前检测压电变压器的特性来确定第二频率。
    • 10. 发明授权
    • Piezoelectric transformer, piezoelectric transformer unit, inverter circuit, light emission control device, and liquid crystal display device
    • 压电变压器,压电变压器单元,逆变电路,发光控制装置和液晶显示装置
    • US07030538B2
    • 2006-04-18
    • US10172589
    • 2002-06-14
    • Hiroshi NakatsukaKatsu TakedaKatsunori MoritokiHiroshi FukushimaYusuke Adachi
    • Hiroshi NakatsukaKatsu TakedaKatsunori MoritokiHiroshi FukushimaYusuke Adachi
    • H01L41/08
    • H05B41/2822H01L41/107
    • A low loss, small scale piezoelectric transformer, suited for a cold cathode tube load, and having a high effective coupling factor, is provided using a piezoelectric plate having a single polarization direction. Controlling the dimensions of the third electrode portion 15a constituting the high impedance portion makes it possible easily to adjust the capacitance of the electrostatic capacitor formed between the first electrode portion 12 and the third electrode portion in accordance with the load. Also, the second electrode portion 13 and the fourth electrode portion 15b constituting the low impedance portion are substantially equal in area and the third electrode portion and the fourth electrode portion are formed in one piece, so that energy propagation efficiency can be increased. Consequently, the effective coupling factor resulting from the electrode structure and the vibration mode can be kept high even if the capacitance is changed freely, and thus high element efficiency and a small amount of generated heat can be maintained and stress can be decreased.
    • 使用具有单一偏振方向的压电板,提供适用于冷阴极管负载并具有高有效耦合系数的低损耗小型压电变压器。 控制构成高阻抗部分的第三电极部分15a的尺寸使得可以容易地根据负载来调节形成在第一电极部分12和第三电极部分之间的静电电容器的电容。 此外,构成低阻抗部的第二电极部13和第四电极部15b的面积大致相等,第三电极部和第四电极部形成为一体,能够提高能量传播效率。 因此,即使电容自由变化,由电极结构和振动模式产生的有效耦合因子也能够保持较高,从而可以保持高的元件效率和少量的发热,并且可以降低应力。