首页> 外文会议>Frontiers in Biomedical Devices Conference; 20070607-08; Irvine,CA(US) >A FREQUENCY COUNTER BASED ANALOG-TO-DIGITAL CONVERTER FOR A LOW-POWER RFID BIOMEDICAL TELEMETRY SYSTEM
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A FREQUENCY COUNTER BASED ANALOG-TO-DIGITAL CONVERTER FOR A LOW-POWER RFID BIOMEDICAL TELEMETRY SYSTEM

机译:低功耗RFID生物医学遥测系统的基于频率计数器的模数转换器

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This paper describes a method for determining a digital representation of a remote sensing element using a novel and lower power method of analog to digital conversion [1], This conversion process is most effective for low-frequency and very low current Radio Frequency Identification (RFID) sensing systems where the sensing element tags are powered by an inductively coupled carrier signal of fixed frequency. This method eliminates the need for a traditional, large and power-hungry Analog-to-Digital Converter (ADC). This approach is being developed for an orthopedic application that measures the invivo strain on titanium rods to help surgeons better understand the progress of fusion in spinal fusion surgery [2]. Previous work has been shown using the difference of two clocks for sending digital data from the reader to the tag [3], whereas this approach is optimized for sending digital data in the other direction, from tag to the reader. The sensor element may be a resistive or capacitive device integrated into an oscillator of variable frequency. This variable oscillation signal is then divided down and used as the time base to a frequency counter clocked by the recovered carrier signal. In recovering and using the carrier signal as an internal clock, an additional on chip oscillator is not necessary. The resultant value then undergoes additional post processing to add a unique identification string, a CRC check word, Manchester encoding, and Frequency-Shift Key (FSK) encoding for load modulation transmission [3,4].
机译:本文介绍了一种使用新颖且低功耗的模数转换方法[1]来确定遥感元件的数字表示的方法。该转换过程对于低频和超低电流射频识别(RFID)最有效)传感系统,其中传感元件标签由固定频率的电感耦合载波信号供电。这种方法消除了对传统的大型且耗电的模数转换器(ADC)的需求。这种方法是为骨科应用开发的,该工具可测量钛棒上的体内应变,以帮助外科医生更好地了解脊柱融合手术中融合的进展[2]。使用两个时钟的差值显示了以前的工作,这两个时钟用于将数字数据从读取器发送到标签[3],而此方法经过优化,可以从标签到读取器向另一个方向发送数字数据。传感器元件可以是集成到可变频率的振荡器中的电阻或电容装置。然后,将这个可变的振荡信号进行分频,并用作由恢复的载波信号提供时钟的频率计数器的时基。在恢复载波信号并将其用作内部时钟时,不需要额外的片上振荡器。然后,对结果值进行额外的后处理,以添加唯一的标识字符串,CRC校验字,曼彻斯特编码和频移键控(FSK)编码,以进行负载调制传输[3,4]。

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