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Flexible Microsystems Using Over-molding Technology

机译:灵活的微系统,使用过模技术

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Today’s world is full of intelligent electronics and with the development of flexible printed electronics technologies, different integration approaches are of high demand. The combination of electronics with polymer is a new technology platform as it integrates multiple functionalities into plastic products. This work shows preliminary results in the integration of electronic components (e.g. NFC chips and LEDs) using over-molding technology. A significant degree of freedom in product design is obtained resulting in a low-cost fabrication of flexible smart objects. The integration is achieved by using adhesion between flexible circuits and injection molded plastics. In order to check the adhesion performance between the flexible circuit and polymer injected, the polyimide foils with patterned copper cladding were over-molded with different engineering plastics into the form of peel test specimens. The technology was shown by the realization of a demonstrator, in which LEDs are wirelessly powered using an NFC antenna and a chip. The NFC antenna is executed in the copper layer and the LEDs and NFC chip are soldered on the foil. The antenna and NFC chip can harvest the energy from (e.g. a smartphone) in order to power the LEDs. This is a simple example of wireless energy transfer that could be used to power circuits and readout sensor values using NFC without the need of having an integrated battery.
机译:今天的世界充满了智能电子,随着柔性印刷电子技术的发展,不同的一体化方法需求量很高。电子器件与聚合物的组合是一种新的技术平台,因为它将多种函数集成到塑料制品中。这项工作显示了使用过模技术的电子元件(例如NFC芯片和LED)集成的初步结果。获得自由的,在产品设计甲显著度导致柔性智能对象的低成本制造。通过使用柔性电路和注塑塑料之间的粘附来实现积分。为了检查柔性电路和注射聚合物之间的粘合性能,将具有图案化铜包层的聚酰亚胺箔用不同的工程塑料覆盖成剥离试样的形式。该技术由实现一个验证机,其中,LED被使用NFC天线和一个芯片无线供电的图示。 NFC天线在铜层中执行,并且LED和NFC芯片焊接在箔上。天线和NFC芯片可以从(例如智能手机)收集能量,以便为LED供电。这是无线能量传输的简单示例,可用于使用NFC电源电路和读出传感器值,而无需具有集成电池。

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