以低频网络为分析对象,采用数字式扫频的方法设计了低频扫描分析仪系统。系统主要由微控制器、扫频信号源、低通滤波器、幅度控制和峰值检波5个模块组成。其中扫频信号源以DDS专用芯片AD9833为核心构成,峰值检波采用运算放大器和分立元...以低频网络为分析对象,采用数字式扫频的方法设计了低频扫描分析仪系统。系统主要由微控制器、扫频信号源、低通滤波器、幅度控制和峰值检波5个模块组成。其中扫频信号源以DDS专用芯片AD9833为核心构成,峰值检波采用运算放大器和分立元件构成。系统软件采用C语言编写,能方便地进行修改和移植。经过测试,系统在50 Hz到20 k Hz频率范围内能够对被测网络的增益及±3 d B的带宽进行测量,最小扫频频率步进可以达到0.1 Hz,测量误差小于5%并能实现自动增益控制。展开更多
This paper proposes the design and research on the high bandwidth linear frequency sweep signal source involved in the readout unit module of the wireless passive pressure sensor in high temperature based on the princ...This paper proposes the design and research on the high bandwidth linear frequency sweep signal source involved in the readout unit module of the wireless passive pressure sensor in high temperature based on the principle of mutual inductance coupling which is applied widely at present. The operating principle of the linear sweep frequency source based on the direct digital frequency synthesis (DDS) technology is introduced, and the implementation method of the hardware circuit and logic sequential control process required in our system has been realized utilizing this technology. Through the experiments under different conditions of the step value, the sweep range and other related design indicators, the influence on the extraction method of resonance frequency information, extraction accuracy, and others during the readout system of the mutual inductance coupling sensor are analyzed and studied. The design of the linear frequency sweep signal source is realized with a resonance frequency change resolution of 6 kHz, a minimum step value of 1 kHz, and a precision of frequency for 0.116 Hz within the sweep width of 1 MHz - 100MHz. Due to the use of the integrated commercial chip, the linear sweep frequency source is made small in size, high working frequency, high resolution and low step values for the readout unit modularized of a higher application value.展开更多
文摘以低频网络为分析对象,采用数字式扫频的方法设计了低频扫描分析仪系统。系统主要由微控制器、扫频信号源、低通滤波器、幅度控制和峰值检波5个模块组成。其中扫频信号源以DDS专用芯片AD9833为核心构成,峰值检波采用运算放大器和分立元件构成。系统软件采用C语言编写,能方便地进行修改和移植。经过测试,系统在50 Hz到20 k Hz频率范围内能够对被测网络的增益及±3 d B的带宽进行测量,最小扫频频率步进可以达到0.1 Hz,测量误差小于5%并能实现自动增益控制。
文摘This paper proposes the design and research on the high bandwidth linear frequency sweep signal source involved in the readout unit module of the wireless passive pressure sensor in high temperature based on the principle of mutual inductance coupling which is applied widely at present. The operating principle of the linear sweep frequency source based on the direct digital frequency synthesis (DDS) technology is introduced, and the implementation method of the hardware circuit and logic sequential control process required in our system has been realized utilizing this technology. Through the experiments under different conditions of the step value, the sweep range and other related design indicators, the influence on the extraction method of resonance frequency information, extraction accuracy, and others during the readout system of the mutual inductance coupling sensor are analyzed and studied. The design of the linear frequency sweep signal source is realized with a resonance frequency change resolution of 6 kHz, a minimum step value of 1 kHz, and a precision of frequency for 0.116 Hz within the sweep width of 1 MHz - 100MHz. Due to the use of the integrated commercial chip, the linear sweep frequency source is made small in size, high working frequency, high resolution and low step values for the readout unit modularized of a higher application value.