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Packaging of a thin film sensor for trans epidermal water loss measurements

机译:用于跨表皮水损测量的薄膜传感器的包装

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The water content in the superficial part of the human skin is one index to evaluate the skin health. In the past we have developed a packaging concept -which brings a sensor chip carrying a comb-shaped electrode system into intimate contact with the skin. The electrical impedance between these electrodes can be used as a measure for the water content of the skin. However, we have recently found that the same sensor chip used with a slightly altered packaging concept can measure the transepidermal water loss (TEWL), which is another indicator for the skin health. In our paper we report on the interconnection and packaging technique of this advanced measuring system for the evaluation of human skin. Furthermore, we present some first measurement results. The basic structure of the sensor consists of a thin film interdigital electrode system deposited on a ceramic substrate by rf-sputtering. Thin wires are guided through funnel-shaped holes arranged in the center of the contact pads. A CO_2 laser with a wavelength in the medium infrared range is used to produce these holes. The wires are bonded to the contact metallizations by using conductive adhesives. In the case of TEWL measurements the sensor chip does not touch the skin. The chip is placed in a distance of a few millimeters away from the skin. The electrical impedance of the electrode system depends on the stream of water molecules emitted from the skin. This kind of measurement does not suffer from pollution of the sensor chip by the oily substances of the skin surface. Therefore, the results are more reproducible compared to classical skin impedance measurements.
机译:人体皮肤浅层部分的水含量是评估皮肤健康的一指。在过去,我们开发了一种包装概念 - 将传感器芯片带入携带梳形电极系统的传感器芯片与皮肤紧密接触。这些电极之间的电阻抗可用作皮肤含水量的量度。然而,我们最近发现与略微改变的包装概念一起使用的相同传感器芯片可以测量Transepidermal水损失(TEWL),这是皮肤健康的另一个指标。在我们的论文中,我们报告了这种先进测量系统的互连和包装技术,以评估人体皮肤。此外,我们介绍了一些第一个测量结果。传感器的基本结构包括通过RF溅射沉积在陶瓷基板上的薄膜偶极电极系统。通过布置在接触垫的中心的漏斗形孔中引导薄的电线。使用介质红外范围的波长的CO_2激光器用于产生这些孔。通过使用导电粘合剂将导线粘合到接触金属化上。在TEWL测量的情况下,传感器芯片不会触及皮肤。芯片放置在距离皮肤几毫米的距离。电极系统的电阻抗取决于从皮肤发出的水分子流。这种测量不会受到皮肤表面的油性物质的传感器芯片的污染。因此,与经典皮肤阻抗测量相比,结果更可重复。

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