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Impedance-based temperature measurement method for organic light-emitting diodes (OLEDs)

机译:基于阻抗的有机发光二极管的温度测量方法(OLEDS)

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摘要

This short communication presents a method to measure the integral temperature of organic light-emitting diodes (OLEDs). Based on electrochemical impedance measurements at OLEDs, a non-zero intercept frequency (NZIF) can be determined which is related to the OLED temperature. The NZIF is defined as the frequency at which the imaginary part of the impedance is equal to a predefined (non-zero) constant. The advantage of using an impedance-based temperature indication method through an NZIF is that no hardware temperature sensors are required and that temperature measurements can be performed relatively fast. An experimental analysis reveals that the NZIF is clearly temperature dependent and, moreover, also DC current dependent. Since the NZIF can readily be measured this impedance-based temperature indication method is therefore simple and convenient for many applications using OLEDs and offers an alternative for traditional temperature sensing.
机译:该短期通信提供了一种测量有机发光二极管(OLED)的整体温度的方法。 基于OLED的电化学阻抗测量,可以确定与OLED温度有关的非零截距频率(NZIF)。 NZIF被定义为阻抗的虚部等于预定义(非零)常数的频率。 通过NZIF使用阻抗的温度指示方法的优点是不需要硬件温度传感器,并且可以相对较快地执行温度测量。 实验分析表明,NZIF显然是温度依赖性,而且也是直流电流依赖性。 由于NZIF可以容易地测量,这种基于阻抗的温度指示方法因此对于使用OLED的许多应用来说简单方便,并且提供了传统温度感测的替代方案。

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