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Alternating-current thin-film electroluminescent device modeling via SPICE Fowler-Nordheim diode

机译:通过SPICE Fowler-Nordheim二极管对交流薄膜电致发光器件进行建模

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A novel SPICE model is proposed for simulating the electrical characteristics of alternating-current thin-film electroluminescent (ACTFEL) devices. The model consists of two capacitors, representing the top and bottom insulators of the ACTFEL device, connected to a Fowler-Nordheim diode shunted by a resistor, which account for conduction and leakage, respectively, in the ACTFEL phosphor layer. A software interface is developed so that the user may conveniently input the two adjustable model parameters (trap barrier height and phosphor shunt resistance) as well as five parameters corresponding to the physical structure of the ACTFEL device (electron effective mass, device area, insulator capacitance, phosphor thickness, and phosphor dielectric constant). Excellent agreement is obtained between measured and simulated electrical characteristics for evaporated ZnS:Mn ACTFEL devices.
机译:提出了一种新颖的SPICE模型来模拟交流薄膜电致发光(ACTFEL)器件的电特性。该模型由两个电容器组成,分别代表ACTFEL器件的顶部和底部绝缘体,它们连接到由电阻分流的Fowler-Nordheim二极管,分别负责ACTFEL荧光粉层中的传导和泄漏。开发了软件界面,以便用户可以方便地输入两个可调模型参数(陷阱势垒高度和磷光分流电阻)以及与ACTFEL器件的物理结构相对应的五个参数(电子有效质量,器件面积,绝缘体电容) ,荧光粉厚度和荧光粉介电常数)。对于蒸发的ZnS:Mn ACTFEL器件,在实测和模拟的电气特性之间获得了极好的一致性。

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