Graf M, Frey U, Taschini S, Hierlemann A
ETH Zurich, Physical Electronics Laboratory, HPT-H4.2, CH-8093 Zurich, Switzerland.
Anal Chem. 2006 Oct 1;78(19):6801-8. doi: 10.1021/ac060467d.
A monolithic stand-alone gas sensor system is presented, which includes on a single chip an array of three metal oxide-coated micro hot plates with integrated MOS-transistor heaters, as well as a specifically designed digital system architecture. An octagonal-shaped micro hot plate design with MOS-transistor heaters has been adopted for the three gas sensors. The integrated circuitry includes a programmable digital temperature regulation, digital sensor readout units, and a standard serial interface. The programmable digital temperature controllers enable individual regulation of the micro hot plate temperatures in constant or dynamic mode. Nanocrystalline tin oxide thick films with different Pd dopings (undoped, 0.2 and 3 wt %) were used. Gas test measurements for environmentally relevant gases were carried out and evidenced detection limits of less than 1 ppm for carbon monoxide, or 100 ppm for methane, both at 40% relative humidity. Temperature modulation techniques were successfully applied for improved analyte discrimination.
本文介绍了一种单片式独立气体传感器系统,该系统在单个芯片上包括一个由三个涂覆金属氧化物的微热板组成的阵列,这些微热板带有集成的MOS晶体管加热器,以及一种专门设计的数字系统架构。三个气体传感器采用了带有MOS晶体管加热器的八角形微热板设计。集成电路包括可编程数字温度调节、数字传感器读出单元和标准串行接口。可编程数字温度控制器能够在恒定或动态模式下对微热板温度进行单独调节。使用了具有不同钯掺杂(未掺杂、0.2重量%和3重量%)的纳米晶氧化锡厚膜。对环境相关气体进行了气体测试测量,结果表明,在相对湿度为40%时,一氧化碳的检测限小于1 ppm,甲烷的检测限为100 ppm。温度调制技术已成功应用于改善分析物的辨别能力。