首页> 外文会议>Conference on VLSI circuits and systems IV >Design of an miniaturized electrochemical instrument for in-situ O_2 monitoring
【24h】

Design of an miniaturized electrochemical instrument for in-situ O_2 monitoring

机译:用于原位O_2监控的小型化电化学仪器设计

获取原文

摘要

The authors are working toward the design of a device for the detection of oxygen, following a discrete and an integrated instrumentation implementation. The discrete electronics are also used for preliminary analysis, to confirm the validity of the conception of system, and its set-up would be used in the characterization of the integrated device, waiting for the chip fabrication. This paper presents the design of a small and portable potentiostat integrated with electrodes, which is cheap and miniaturized, which can be applied for on-site measurements for the simultaneous detection of O_2 and temperature in water systems. As a first approach a discrete PCB has been designed based on commercial discrete electronics and specific oxygen sensors. Dissolved oxygen concentration (DO) is an important index of water quality and the ability to measure the oxygen concentration and temperature at different positions and depths would be an important attribute to environmental analysis. Especially, the objective is that the sensor and the electronics can be integrated in a single encapsulated device able to be submerged in environmental water systems and be able to make multiple measurements. For our proposed application a small and portable device is developed, where electronics and sensors are miniaturized and placed in close proximity to each other. This system would be based on the sensors and electronics, forming one module, and connected to a portable notebook to save and analyze the measurements on-line. The key electronics is defined by the potentiostat amplifier, used to fix the voltage between the Working (WE) and Reference (RE) electrodes following an input voltage (Vin). Vin is a triangular signal, programmed by a LabView~? interface, which is also used to represent the CV transfers. To obtain a smaller and compact solution the potentiostat amplifier has also been integrated defining a full custom ASIC amplifier, which is in progress, looking for a point-of-care device. These circuits have been designed with a 0.13 μm technology from ST Microelectronics through the CMP-TIMA service.
机译:作者正在朝着分立和集成仪器实现之后地设计用于检测氧气的装置。离散电子器件还用于初步分析,以确认系统概念的有效性,其设置将用于集成装置的表征,等待芯片制造。本文介绍了与电极集成的小型和便携式电位器的设计,该电极廉价且小型化,其可用于在现场测量中进行同时检测水系统中的O_2和温度。作为第一种方法,基于商业离散电子和特定氧传感器设计了分立PCB。溶解氧浓度(DO)是水质的重要指标,并且测量不同位置和深度处的氧浓度和温度的能力将是环境分析的重要属性。特别是,目的是传感器和电子器件可以集成在能够浸没在环境水系统中的单个封装装置中,并且能够进行多次测量。对于我们所提出的应用,开发了一个小型和便携式设备,其中电子和传感器小型化并彼此紧密地放置。该系统将基于传感器和电子设备,形成一个模块,并连接到便携式笔记本,以在线节省和分析测量。关键电子器件由电位器放大器定义,用于在输入电压(VIN)之后的工作(WE)和参考(RE)电极之间的电压。 VIN是一个三角形信号,由LabVIEW编程〜?接口,也用于表示CV传输。为了获得较小而紧凑的解决方案,还集成了PotentioStat放大器,该放大器还集成了一个完整的自定义ASIC放大器,该放大器正在进行中,寻找护理点设备。这些电路通过CMP-TIMA服务设计了来自ST微电子的0.13μm技术。

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