首页> 外文会议>Conference on Sensors, MEMS, and Electro-Optical Systems >Design issues of a low cost lock-in amplifier readout circuit for an infrared detector
【24h】

Design issues of a low cost lock-in amplifier readout circuit for an infrared detector

机译:用于红外探测器的低成本锁定放大器读出电路的设计问题

获取原文

摘要

In the past, high resolution thermal sensors required expensive cooling techniques making the early thermal imagers expensive to operate and cumbersome to transport, limiting them mainly to military applications. However, the introduction of uncooled microbolometers has overcome many of earlier problems and now shows great potential for commercial optoelectric applications. The structure of uncooled microbolometer sensors, especially their smaller size, makes them attractive in low cost commercial applications requiring high production numbers with relatively low performance requirements. However, the biasing requirements of these microbolometers cause these sensors to generate a substantial amount of noise on the output measurements due to self-heating. Different techniques to reduce this noise component have been attempted, such as pulsed biasing currents and the use of blind bolometers as common mode reference. These techniques proved to either limit the performance of the microbolometer or increase the cost of their implementation. The development of a low cost lock-in amplifier provides a readout technique to potentially overcome these challenges. High performance commercial lock-in amplifiers are very expensive. Using this as a readout circuit for a microbolometer will take away from the low manufacturing cost of the detector array. Thus, the purpose of this work was to develop a low cost readout circuit using the technique of phase sensitive detection and customizing this as a readout circuit for microbolometers. The hardware and software of the readout circuit was designed and tested for improvement of the signal-to-noise ratio (SNR) of the microbolometer signal. An optical modulation system was also developed in order to effectively identify the desired signal from the noise with the use of the readout circuit. A data acquisition and graphical user interface sub system was added in order to display the signal recovered by the readout circuit. The readout circuit was able to enhance the SNR of the microbolometer signal significantly. It was shown that the quality of the phase sensitive detector plays a significant role in the effectiveness of the readout circuit to improve the SNR.
机译:过去,高分辨率热传感器需要昂贵的冷却技术,这使得早期的热成像仪操作昂贵且运输麻烦,主要将其限制在军事应用中。但是,未冷却的测微热计的引入已经克服了许多较早的问题,现在在商业光电应用中显示出巨大的潜力。未冷却的测微辐射热计传感器的结构,尤其是其较小的尺寸,使其在要求大量生产且性能要求相对较低的低成本商业应用中具有吸引力。但是,这些微辐射热测量仪的偏置要求会导致这些传感器由于自身发热而在输出测量结果中产生大量噪声。已经尝试了降低该噪声分量的不同技术,例如脉冲偏置电流和使用盲测辐射热计作为共模参考。这些技术被证明限制了测微辐射热计的性能或增加了其实施成本。低成本锁定放大器的开发提供了一种读出技术,可以潜在地克服这些挑战。高性能商用锁定放大器非常昂贵。将其用作微测辐射热计的读出电路将消除探测器阵列的低制造成本。因此,这项工作的目的是使用相敏检测技术开发一种低成本的读出电路,并将其定制为微辐射热计的读出电路。设计并测试了读出电路的硬件和软件,以改善微辐射热计信号的信噪比(SNR)。为了使用读出电路有效地从噪声中识别出所需的信号,还开发了光调制系统。为了显示由读出电路恢复的信号,增加了数据采集和图形用户界面子系统。读出电路能够显着提高微辐射热计信号的SNR。结果表明,相敏检测器的质量在读出电路提高SNR的有效性中起着重要作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号