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High-resolution multiple channel frequency counter using spartan-3E FPGA

机译:使用Spartan-3E FPGA的高分辨率多通道频率计数器

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Frequency counter resolution, accuracy and precision are importance parameters of the quartz crystal microbalance signal acquisition. The sensitivity of the quartz crystal microbalance is not only depended on the resonance frequency of the sensor but also the resolution of the counter. Higher counter resolution results in higher sensitivity measurement of the sensor output. In this work, a three-channel reciprocal frequency counter was developed using FPGA and implemented using VHDL code. The precision and resolution of the system depend on the system clock source. In this development, a high-precision TCXO oscillator with a resonance frequency of 100MHz is used as a reference oscillator. From this oscillator, one-second time gate and period measurement is constructed in the FPGA. In each measurement channel, dual digital counters were implemented. One counter counts the incoming signal in between one-second gate, and the other counter is counting the 100MHz signal from the beginning to the end of the counted signal within the one-second gate. The accuracy of the frequency measurement of the counter was calibrated using 10MHz standard rubidium oscillator. The developed system shows a good performance and able to count incoming signal with an accuracy of 0.1 Hz for one second acquisition time.
机译:频率计数器分辨率,精度和精度是石英晶体微稳态信号采集的重要性参数。石英晶体微稳态的灵敏度不仅依赖于传感器的谐振频率,而且依赖于柜台的分辨率。更高的计数器分辨率导致传感器输出的更高灵敏度测量。在这项工作中,使用FPGA开发了一个三通道互易频率计数器,并使用VHDL码实现。系统的精度和分辨率取决于系统时钟源。在该开发中,使用具有100MHz的共振频率的高精度TCXO振荡器作为参考振荡器。从该振荡器,在FPGA中构建了一秒钟的时间栅极和周期测量。在每个测量通道中,实现了双数码计数器。一个计数器在一秒门之间计数输入信号,另一个计数器正在从一秒门内的计数信号的开始到结束时将100MHz信号计数。使用10MHz标准铷振荡器校准计数器频率测量的准确性。开发系统显示出良好的性能,并且能够在一个初始采集时间内计算具有0.1Hz的精度的传入信号。

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