首页> 外文期刊>Microelectronics international: Journal of ISHM--Europe, the Microelectronics Society--Europe >Low-power wireless smart data acquisition system for monitoring pressure in medical application
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Low-power wireless smart data acquisition system for monitoring pressure in medical application

机译:用于医疗应用中压力监测的低功耗无线智能数据采集系统

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Purpose - To develop a wireless sensor micro-systems containing all the components of data acquisition system, such as sensors, signal-conditioning circuits, analog-digital converter, embedded microcontroller unit (MCU), and RF communication modules. This has now become the focus of attention in many biomedical applications. Design/methodology/approach - The system prototype consists of miniature FSK transceiver integrated with MCU in one small package, chip antenna, and capacitive interface circuitry based on Delta-sigma modulator. At the base station side, an FSK receiver/transmitter is connected to another MCU unit, which send the received data or received instructions from a PC through a graphical user interface GUI. Industrial, scientific and medical band RF (433 MHz) was used to achieve half duplex communication between the two sides. A digital filtering has been used in the capacitive interface to reduce noise effects forming capacitance to digital converter. All the modules of the mixed signal system are integrated in a printed circuit board of size 22.46 x 20.168 mm. Findings - An innovation circuits and system techniques for building advanced smart medical devices have been discussed. Low-power consumption and high reliability are among the main criteria that must be given priority when designing such wirelessly powered microsystems. Switched capacitors readout circuits have been found to be suitable for pressure sensing low-power applications. Research limitations/implications - The presented wireless prototype needs a second phase of development that will lead to a further reduction in both size and power consumption. Currently, the main limitation of the RF system is the number of working hours according to the selected battery. Practical implications - The developed system was found to be useful in terms of measuring pressure and temperature in a system of either slow or fast physical change. It would be a good idea to explore the system performance in human or animal trials. Originality/value - This paper fulfils useful information for capacitive interface circuitries and presents a new short-range wireless system that has different design features.
机译:目的-开发一个无线传感器微系统,其中包含数据采集系统的所有组件,例如传感器,信号调节电路,模数转换器,嵌入式微控制器单元(MCU)和RF通信模块。现在,这已成为许多生物医学应用中关注的焦点。设计/方法/方法-系统原型包括微型FSK收发器,该收发器与MCU集成在一个小封装中,芯片天线和基于Delta-sigma调制器的电容接口电路。在基站侧,FSK接收器/发送器连接到另一个MCU单元,后者通过图形用户界面GUI从PC发送接收到的数据或接收到的指令。工业,科学和医疗频段RF(433 MHz)用于实现两侧之间的半双工通信。电容性接口中已使用数字滤波,以减少形成数字转换器电容的噪声影响。混合信号系统的所有模块都集成在尺寸为22.46 x 20.168 mm的印刷电路板上。发现-已经讨论了用于构建高级智能医疗设备的创新电路和系统技术。低功耗和高可靠性是设计此类无线微型系统时必须优先考虑的主要标准之一。已发现开关电容器读出电路适用于压力感应低功率应用。研究局限性/含义-提出的无线原型需要第二阶段的开发,这将导致尺寸和功耗的进一步降低。当前,RF系统的主要限制是根据所选电池的工作时间数。实际意义-所开发的系统在测量物理变化缓慢或快速变化的系统中的压力和温度方面很有用。在人类或动物试验中探索系统性能将是一个好主意。原创性/价值-本文提供了有关电容接口电路的有用信息,并提出了一种具有不同设计功能的新型短距离无线系统。

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