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首页> 外文期刊>ECS Journal of Solid State Science and Technology >Equivalent Circuits and Efficacy of Single-Layer ACPEL Devices
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Equivalent Circuits and Efficacy of Single-Layer ACPEL Devices

机译:单层ACPEL器件的等效电路和功效

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A series resistance - capacitance equivalent circuit has been used to_describe a single layer AC Powder Electroluminescence (ACPEL) lamp in operation. The two crucial components of this practical equivalent circuit are frequency and voltage dependent and have been independently determined for a single layer ACPEL device over a range of 50-800 Hz and 10-150 V. The organic binder containing a ferroelectric component is mainly responsible for determining the capacitive element since it acts in series with a larger capacitative contribution mainly from the phosphor. The series resistive element will be determined by mainly the phosphor particles, and the remarkable changes in the effective series resistance and capacitance of the lamp structure are shown to be brought about by the activation of the ZnS phosphor. The effective resistance is consistent with a model where conductivity is governed by the average charge recombination time under given internal field and frequency conditions. Using the effective resistance and capacitance values of our equivalent circuit, the average rate of energy dissipation can be easily calculated as a function of applied voltage and frequency. For sinusoidal waveforms, first indications are that efficacy will be optimized at low voltages, but only weakly dependent on frequency.
机译:已经使用串联电阻-电容等效电路来描述工作中的单层AC粉末电致发光(ACPEL)灯。该实用等效电路的两个关键组件取决于频率和电压,并且是针对单层ACPEL器件在50-800 Hz和10-150 V范围内独立确定的。包含铁电组件的有机粘合剂主要负责确定电容性元件,因为它与主要来自磷光体的较大电容贡献串联作用。串联电阻元件将主要由磷光体颗粒决定,并且显示出有效的串联电阻和灯结构电容的显着变化是由ZnS磷光体的活化引起的。有效电阻与在给定的内部场和频率条件下电导率由平均电荷复合时间决定的模型一致。使用等效电路的有效电阻和电容值,可以很容易地根据施加电压和频率来计算平均能量耗散率。对于正弦波形,第一个迹象是功效将在低电压下得到优化,但仅弱依赖于频率。

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