Donlagic Denis, Cibula Edvard
Faculty of Electrical Engineering and Computer Science, University of Maribor, Smetanova 17, 2000 Maribor, Slovenia.
Opt Lett. 2005 Aug 15;30(16):2071-3. doi: 10.1364/ol.30.002071.
The design and fabrication of a miniature fiber Fabry-Perot pressure sensor with a diameter of 125 microm are presented. The essential element in the process is a thin SiO2 diaphragm that is fusion spliced at the hollow end of an optical fiber. Good repeatability and high sensitivity of the sensor are achieved by on-line tuning of the diaphragm thickness during the sensor fabrication process. Various sensor prototypes were fabricated, demonstrating pressure ranges of from 0 to 40 kPa to 0 to 1 MPa. The maximum achieved sensitivity was 1.1 rad/40 kPa at 1550 nm, and a pressure resolution of 300 Pa was demonstrated in practice. The presented design and fabrication technique offers a means of simple and low-cost disposable pressure sensor production.
介绍了一种直径为125微米的微型光纤法布里-珀罗压力传感器的设计与制造。该工艺的关键元件是一个薄的SiO₂ 膜片,它熔接在光纤的空心端。通过在传感器制造过程中对膜片厚度进行在线调整,实现了传感器良好的重复性和高灵敏度。制造了各种传感器原型,其压力范围为0至40 kPa至0至1 MPa。在1550 nm处实现的最大灵敏度为1.1 rad/40 kPa,实际压力分辨率为300 Pa。所提出的设计和制造技术提供了一种简单且低成本的一次性压力传感器生产方法。