Cibula Edvard, Donlagić Denis
Faculty of Electrical Engineering and Computer Science, University of Maribor, Smetanova 17, 2000 Maribor, Slovenia.
Appl Opt. 2005 May 10;44(14):2736-44. doi: 10.1364/ao.44.002736.
The fabrication and experimental investigation of a miniature optical fiber pressure sensor for biomedical and industrial applications are described. The sensor measures only 125 microm in diameter. The essential element is a thin polymer diaphragm that is positioned inside the hollow end of an optical fiber. The cavity at the fiber end is made by a simple and effective micromachining process based on wet etching in diluted HF acid. Thus a Fabry-Perot interferometer is formed between the inner fiber-cavity interface and the diaphragm. The fabrication technique is described in detail. Different sensor prototypes were fabricated upon 125 microm-diameter optical fiber that demonstrated pressure ranges from 0 to 40 and from 0 to 1200 kPa. A resolution of less than 10 Pa was demonstrated in practice. The fabrication technique presented facilitates production of simple and low-cost disposable pressure sensors by use of materials with that ensure the required biocompatibility.
本文描述了一种用于生物医学和工业应用的微型光纤压力传感器的制造及实验研究。该传感器直径仅为125微米。其核心元件是一个薄聚合物隔膜,位于光纤的空心端内部。光纤端部的腔体通过基于在稀释氢氟酸中湿法蚀刻的简单有效微加工工艺制成。这样就在光纤内腔体界面和隔膜之间形成了一个法布里 - 珀罗干涉仪。详细描述了制造技术。在直径为125微米的光纤上制造了不同的传感器原型,其显示的压力范围为0至40千帕和0至1200千帕。实际中证明分辨率小于10帕。所提出的制造技术有助于通过使用具有确保所需生物相容性的材料来生产简单且低成本的一次性压力传感器。