Design of Multi-Mode Digital Frequency Source Based on Embedded System
Zejia Chen, Yu Liu, Yujie Dong, Tao Yang, Hao Peng · 2025
This paper proposes a multi-mode digital frequency source design based on an embedded system, constructing a hardware platform with Xilinx Zynq SoC and ADI AD9914 chip, and achieving high-precision signal generation through Direct Digital Synthesis (DDS) technology. By porting a customized Linux operating system and optimizing the software-hardware codesign architecture, the system's flexibility and scalability are significantly enhanced. The frequency source demonstrates stable performance with a frequency range of$0.4-1.4 \text{GHz}$and frequency switching speed below$1 \mu ~\mathrm{s}$. In single-frequency continuous wave mode, it achieves spurious suppression ratios better than -70 dBc within$400-800 \text{MHz}$and better than -50 dBc at$\mathbf{8 0 0 ~ M H z - 1. 4 ~ G H z}$.