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1.利用Matlab进行产生频率为1000Hz和6000Hz的正弦信号,利用FDATOOL设计FIR滤波器(fs=16000Hz),以滤波6000Hz分量,并利用SPTOOL工具对信号滤波进行仿真与验证。
2.从MIC端口(J5)输入频率为1000Hz和6000Hz正弦信号的叠加信号,编写实时FIR滤波程序,选择合适的滤波器参数,滤除6000Hz的频率分量,利用示波器在SPEAKER端口(J6)观察输出波形。分析信号的频谱结构,设计满足要求的数字滤波器,-1. The use of Matl
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使用ME300B开发板通过51单片机读取AD数据并通过串口将数据上传到PC,再使用MATLAB作图,实现简单的示波器功能-ME300B development board through the use of single-chip microcomputer 51 to read through the serial data and AD data uploaded to the PC, re-use MATLAB mapping to achieve a simple oscillosco
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清华版的labview教程12.2.5,讲的很具体详细,分类明确,是初学者比较好的资料-Tsinghua University tutorial labview version 12.2.5, talking about very specific details, a clear classification is relatively good information for beginners
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labview 中通过调用MATLAB节点来对示波器数据进行小波去噪并显示-By calling MATLAB in labview nodes to wavelet denoising and display the data of the oscilloscope
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单片机MSP430实现示波器功能,有相应的MATLAB上位机配合使用,亲测可用。-MCU MSP430 to achieve the oscilloscope function, there is a corresponding MATLAB PC with the use of pro test can be used.
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