Proceedings of 2015 Photonics & Electromagnetics Research Symposium, Prague, July 6 - 9,Page(s)158-161
Abstract
In this paper, a multi-channel digital temperature acquisition system is proposed.
Based on System on a Programmable Chip (SOPC) and 1-wire bus technologies, the temperature
acquisition node is designed. The data acquired is transferred to the host computer through
RS232 serial interface. The software on the computer analyzes and processes the received data
to achieve the real-time monitoring and display of the temperature through the User Interface
(UI). Programmable resolution 1-wire digital thermometer DS18B20 is adopted in this design.
The acquisition node is configured by NIOS soft core CPU using Verilog HDL and C language,
meanwhile, the UI on the PC is designed in Visual Basic language. The temperature sensor has
an operating temperature range of −55◦ to 125◦ . The resolution of the acquisition is 0.0625◦
and the display resolution is 0.01◦ . All simulations in the design are done in Quartus and
Modelsim tools. Finally, the operation of the temperature acquisition system is validated on an
Altera Cyclone II series FPGA chip. The measure results are displayed on both the local LCD
module of the acquisition node and the UI of the host computer. The system can also give out
alarm signals when the temperature acquired exceeds the threshold set through software. Due
to the use of SOPC technology, the system is of high integration, high design flexibility, small
volume and low power consumption. The system can be widely used in areas such as intelligent
greenhouses, temperature monitoring systems inside storehouses, equipments, or machinery, and
process control systems.
Citation
W. He,
Ding-Hong Jia,
and
Quanyuan Feng,
"A Multi-channel Digital Temperature Acquisition System Based on SOPC," Proceedings of 2015 Photonics & Electromagnetics Research Symposium, Prague, July 6 - 9,Page(s)158-161