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基于EDA技术的电源温度控制系统设计

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高功率电源在工作过程中产生大量热量,电源温度控制对电源稳定性和输出效率具有重要影响。针对电源温控问题,基于电子设计自动化(EDA)技术,设计一种新型数字电源温度控制系统。该系统由前端温度传感器、模数转换器、现场可编程逻辑门阵列(FPGA)处理器、数模转换器及后端制冷模块组成,运用FPGA处理器进行精确的温度逻辑控制和实时通信,以实现对温度的精密动态监控及调节。通过模拟仿真与实验验证,对设计方案的性能进行评估。结果显示,方案具备可行性与稳定性。
Design of power supply temperature control system based on EDA technology
High power supplies generate a large amount of heat during operation,and temperature control of the power supply has a significant impact on the stability and output efficiency of the power supply.In response to the issue of power supply temperature control,this article designs a new digital power supply temperature control system based on Electronic Design Automation(EDA)technology.The system consists of a front-end temperature sensor,analog-to-digital converter,FPGA processor,analog-to-digital converter,and a back-end refrigeration module.The core of the system is to use FPGA processors for precise temperature logic control and real-time communication,in order to achieve precise dynamic monitoring and adjustment of temperature.Through simulation and experimental verification,the performance of the design scheme is evaluated.The results show that the scheme is feasible and stable.

high power power suppliestemperature controlEDA technologyVHDL languageFPGA chip

张晋宁

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山西机电职业技术学院,山西 长治 046000

高功率电源 温度控制 EDA技术 VHDL语言 FPGA芯片

山西机电职业技术学院教改类课题

JWC-23004

2024

智能城市
辽宁省科学技术情报研究所

智能城市

ISSN:2096-1936
年,卷(期):2024.10(7)