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首页> 外文期刊>Journal of Micromechanics and Microengineering >Temperature-controlled transfer and self-wiring for multi-color light-emitting diode arrays
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Temperature-controlled transfer and self-wiring for multi-color light-emitting diode arrays

机译:用于多色发光二极管阵列的温度控制的传输和自布线

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摘要

We propose an integration method for arranging light-emitting diode (LED) bare chips on a flexible substrate for multi-color inorganic LED displays. The LED bare chips (240μm× 240μm × 75μm), which were diced on an adhesive sheet by the manufacturer, were transferred to a flexible polyimide substrate by our temperature-controlled transfer (TCT) and self-wiring (SW) processes. In these processes, low-melting point solder (LMPS) and poly-(ethylene glycol) (PEG) worked as adhesive layers for the LED chips during the TCT processes, and the adhesion force of the LMPS and PEG layers was controlled by changing the temperature to melt and solidify the layers. After the TCT processes, electrical connection between the transferred LED chips and the flexible substrate was automatically established via the SW process, by using the surface tension of the melted LMPS. This TCT/SW method enabled us to (i) handle arrays of commercially available bare chips, (ii) arrange multiple types of chips on the circuit substrate by simply repeating the TCT processes and (iii) establish electrical connection between the chips and the substrate automatically. Applying this transfer printing and wiring method, we experimentally demonstrated a 5-by-5 flexible LED array and a two-color (blue and green) LED array.
机译:我们提出了一种用于在多色无机LED显示器的柔性基板上排列发光二极管(LED)裸芯片的集成方法。由制造商切成小片的LED裸芯片(240μm×240μm×75μm)通过我们的温度控制转移(TCT)和自布线(SW)工艺转移到柔性聚酰亚胺衬底上。在这些过程中,低熔点焊料(LMPS)和聚(乙二醇)(PEG)在TCT过程中用作LED芯片的粘合层,并且通过改变LED的厚度来控制LMPS和PEG层的粘合力温度以熔化和固化各层。在TCT工艺之后,利用熔化的LMPS的表面张力,通过SW工艺自动建立了转移的LED芯片与柔性基板之间的电连接。这种TCT / SW方法使我们能够(i)处理市售裸芯片的阵列,(ii)通过简单地重复TCT过程在电路基板上布置多种类型的芯片,以及(iii)在芯片与基板之间建立电连接自动。应用这种转移印刷和布线方法,我们通过实验演示了5 x 5柔性LED阵列和两种颜色(蓝色和绿色)的LED阵列。

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