IEEE Trans Ultrason Ferroelectr Freq Control. 2022 Oct;69(10):2785-2797. doi: 10.1109/TUFFC.2022.3189338. Epub 2022 Sep 27.
Microultrasound (micro-US) has become an invaluable tool for preclinical research and in emerging applications in clinical diagnosis and treatment guidance. Several such applications can benefit from arrays with a small footprint and endoscopic form factor. However, critical challenges arise in making electrical connections to array elements in such spatial constraints. In this work, we describe a method to pattern a high-density flexible circuit cabling on a copper-on polyimide film, using laser ablation of a polymer resist and wet etching, and then demonstrate a connection to a micro-US array. We investigate laser ablation process parameters and evaluate the ability to consistently pattern continuous copper traces. A minimum 30- [Formula: see text] pitch was achieved with 5- [Formula: see text]-wide electrode lines, and continuity of a 5-m-long trace is demonstrated. A flexible circuit with 30-mm-long traces with 30- [Formula: see text] line and 30- [Formula: see text] space before fan-out was fabricated to connect in an interleaved manner to a 32-element array with 30- [Formula: see text] element pitch. Metal deposition and laser ablation were used to connect and pattern the element electrodes to the copper traces of the flexible circuit. Electrical and acoustic measurements show good yield and consistent impedance across channels. Element pulse-echo tests demonstrated device functionality; the two-way pulse had 43-MHz center frequency and 40% fractional bandwidth (-6 dB). The proposed manufacturing methods facilitate the prototyping and fabrication of flexible endoscopic or small-footprint micro-US devices.
微超声(micro-US)已成为临床诊断和治疗指导中新兴应用的基础研究中不可或缺的工具。在这些应用中,有几个应用可以受益于具有小尺寸和内窥镜形式因素的阵列。然而,在这种空间限制下,要实现与阵列元件的电气连接,会出现一些关键的挑战。在这项工作中,我们描述了一种在铜聚酰亚胺薄膜上形成高密度柔性电路布线的方法,该方法使用聚合物抗蚀剂的激光烧蚀和湿法刻蚀,并展示了与微超声阵列的连接。我们研究了激光烧蚀工艺参数,并评估了一致地形成连续铜迹的能力。通过使用 5-[Formula: see text]-宽的电极线实现了最小 30-[Formula: see text]的间距,并且证明了 5m 长的迹线的连续性。制造了具有 30-[Formula: see text]线和 30-[Formula: see text]间距的 30-mm 长迹线的柔性电路,以交错方式连接到具有 30-[Formula: see text]元件间距的 32 元件阵列。金属沉积和激光烧蚀用于将元件电极连接并形成到柔性电路的铜迹线上。电气和声学测量显示出良好的产率和通道之间一致的阻抗。元件脉冲回波测试证明了器件的功能;双向脉冲的中心频率为 43MHz,带宽为 40%(-6dB)。所提出的制造方法促进了柔性内窥镜或小尺寸微超声设备的原型制作和制造。