Design on a New Alarm Which Can Blast the Automotive Galss

Design on a New Alarm Which Can Blast the Automotive Galss

Yueting Ben Xiaorong WangGuanghua Li Xuejiao Li 

Institute of Mechanical Engineering, Jiangsu University of Science and Technology, Zhenjiang 212003, China

Corresponding Author Email: 
wrr31@qq.com
Page: 
21-24
|
DOI: 
http://dx.doi.org/10.18280/mmep.010205
Received: 
N/A
| |
Accepted: 
N/A
| | Citation

OPEN ACCESS

Abstract: 

With the single chip microcomputer PIC16F877A as the core,combined with MQ2 Smoke Detection circuit, DS18B20 temperature detection circuit, NRF24L01 Wireless Transceiver module, LCD1602 LCD Display Module,  Infrared Remote Control circuit, Key Control circuit, Alarm circuit, Blast Automotive Glass Device circuit and other peripheral auxiliary circuit, constitute a the intelligent automatically Blast Automotive Glass Device system which contains multiple testing end and an execution end. Smoke and temperature alarm value can be adjusted through the keys and remote control. When the actual value from the smoke preseting value is less than 20 or the actual temperature value from the preseting value is less than 10, Teating end and executive end will send the first warning. If the actual temperature value or actual smoke value exceeds the corresponding preseting value,both ends will be alarming, within 10 seconds, if nobody take the initiative to close the alarm, the executive end will turn on the Blast Automotive Glass Device.In the monitoring,the executive end accepted data from each end of the detecting data every moment, and display through the LCD screen in order.

Keywords: 

PIC16F877A, alarm, automatic blast automotive glass device

1. Introduction
2. The Circuit Structure of Automatic Blast Automotive Glass Device
3. Software Design of the Blast Automotive Glass Device System
4. Conclusion
  References

[1] Kovendi Zoltan, Alarm with Sound and Light for Critical Concentration of Methane Gas in the Air, Journal of Computer Science and Control Systems, Vol.1, No.1, pp.146, 2008.

[2] Takeuchi Akihiro, Hirose Minoru, Shinbo Toshiro, Imai Megumi, Mamorita Noritaka and Ikeda Noriaki, Development of an Alarm Sound Database and Simulator, Journal of Clinical Monitoring and Computing, Vol.20, No.5, pp.317-27, 2006.

[3] Thomas Cleary, Results from a Full-Scale Smoke Alarm Sensitivity Study, Fire Technology, Vol.50, No.3, pp.775-790, 2014.

[4] Dai Yue and Jordan Larry M., Multiple Patterns and Components of Persistent Inward Current with Serotonergic Modulation in Locomotor Activity-Related Neurons in Cfos-EGFP Mice, Journal of Neurophysiology, Vol.103, No.4, pp.1712-27, 2010.

[5] Chen Jing and  Fu Jingqi, Fire Alarm System Based on Multi-Sensor Bayes Network, Procedia Engineering, Vol.29, pp.2551-2555, 2012.

[6] Yousif I. and Al Mashhadany, Design and Implementation of Electronic Control Trainer with PIC Microcontroller, Intelligent Control and Automation, Vol.03, No.03, pp.222-228, 2012.

[7] Yishan Zeng and Jun Qian, Designs of a Fire Detecting And Fire Pre-Warning System Based on Single Chip Microcomputer, Procedia Engineering, Vol.7, pp.360-365, 2010.

[8] Yongxian Song, Yuan Feng, Juanli Ma and Xianjin Zhang, Design of LED Display Control System Based on AT89C52 Single Chip Microcomputer, Journal of Computers, Vol.6, No.4,  pp.718-724, 2011.

[9] MA Shu-guang, Construction of Wireless Fire Alarm System Based on ZigBee, Technology Procedia Engineering, Vol.11, pp.308-313, 2011.