摘 要
在当今社会,健康监测和疾病预防的重要性日益凸显,体温作为人体健康状况的重要指标之一,其准确测量对于疾病的诊断、治疗和预防具有关键意义。本文设计了基于STM32的红外体温计检测系统,旨在提高体温测量的精度、稳定性和智能化水平。
该系统结合了先进的红外测温技术和STM32微控制器的强大处理能力,通过合理的电路设计和软件编程,实现了高精度的体温测量,并添加了数据存储、历史记录查询、蓝牙通信等附加功能,以满足不同场景下的使用需求。同时,本系统还具备较强的环境适应性和稳定性,能够在复杂的工作环境中稳定运行,为医疗诊断和健康监测提供可靠的数据支持。此外,本研究还优化了系统性能和功耗,降低了设备成本,提高了产品的市场竞争力。
关键词:STM32单片机;红外传感器;体温计检测系统;液晶显示屏
ABSTRACT
In today's society, the importance of health monitoring and disease prevention is increasingly prominent. As one of the important indicators of human health status, the accurate measurement of body temperature is of key significance for the diagnosis, treatment and prevention of diseases. In this paper, an infrared thermometer detection system based on STM 32 is designed to improve the accuracy, stability and intelligence level of body temperature measurement.
The system combines advanced infrared temperature measurement technology and the powerful processing ability of STM 32 microcontroller, through reasonable circuit design and software programming, realizes high precision temperature measurement, and added data storage, history query, Bluetooth communication and other additional functions, to meet the use requirements in different scenarios. At the same time, the system also has strong environmental adaptability and stability, and can operate stably in the complex working environment, to provide reliable data support for medical diagnosis and health monitoring. In addition, this study also optimizes the system performance and power consumption, reduces the equipment cost, and improves the market competitiveness of the product.
Key words: STM 32 SU; infrared sensor; human temperature measurement system; LCD display
目 录
摘 要
ABSTRACT
目 录
1绪论
1.1选题背景及依据
1.2国内外研究现状
1.3研究内容
2 红外传感器体温计检测系统原理及方案设计
2.1温度测量技术的概述
2.2 红外测温原理及方法
2.3 红外传感器体温计检测系统的方案介绍
3 红外传感器体温计检测系统的硬件设计
3.1 单片机处理模块
3.2 红外测温模块
3.3 电源模块
3.4 键盘模块
3.5 OLED显示模块
4 红外传感器体温计检测系统的软件设计
4.1 主程序模块的设计
4.2 红外测温程序模块
4.3 键盘扫描程序模块
4.4 显示程序模块
5 红外传感器体温计检测系统仿真调试与分析
5.1系统调试
5.2 结果分析
结 论
致 谢
参考文献
附录一 原理图
附录二 元器件清单
附录三 程序












