Urban Pawel L
Department of Applied Chemistry, National Chiao Tung University, Hsinchu 300, Taiwan.
Analyst. 2015 Feb 21;140(4):963-75. doi: 10.1039/c4an02013h.
This minireview discusses universal electronic modules (generic programmable units) and their use by analytical chemists to construct inexpensive, miniature or automated devices. Recently, open-source platforms have gained considerable popularity among tech-savvy chemists because their implementation often does not require expert knowledge and investment of funds. Thus, chemistry students and researchers can easily start implementing them after a few hours of reading tutorials and trial-and-error. Single-board microcontrollers and micro-computers such as Arduino, Teensy, Raspberry Pi or BeagleBone enable collecting experimental data with high precision as well as efficient control of electric potentials and actuation of mechanical systems. They are readily programmed using high-level languages, such as C, C++, JavaScript or Python. They can also be coupled with mobile consumer electronics, including smartphones as well as teleinformatic networks. More demanding analytical tasks require fast signal processing. Field-programmable gate arrays enable efficient and inexpensive prototyping of high-performance analytical platforms, thus becoming increasingly popular among analytical chemists. This minireview discusses the advantages and drawbacks of universal electronic modules, considering their application in prototyping and manufacture of intelligent analytical instrumentation.
本综述讨论了通用电子模块(通用可编程单元)以及分析化学家如何使用它们来构建廉价、微型或自动化设备。最近,开源平台在精通技术的化学家中颇受欢迎,因为其应用通常不需要专业知识和资金投入。因此,化学专业的学生和研究人员在阅读几个小时的教程并经过反复试验后,就能轻松开始应用这些平台。单板微控制器和微型计算机,如Arduino、Teensy、Raspberry Pi或BeagleBone,能够高精度地收集实验数据,并有效控制电势和驱动机械系统。它们可以使用C、C++、JavaScript或Python等高阶语言轻松编程。它们还可以与包括智能手机以及电信信息网络在内的移动消费电子产品相连接。更具挑战性的分析任务需要快速的信号处理。现场可编程门阵列能够高效且低成本地实现高性能分析平台的原型制作,因此在分析化学家中越来越受欢迎。本综述讨论了通用电子模块在智能分析仪器的原型制作和制造中的应用,分析了其优缺点。