The Application of CAN Bus Microcontroller MC9S08DZ60 in Automotive Electronic Control Unit

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Abstract:

Take the microcontroller MC9S08DZ60 which integrated CAN controller for example, the design of automotive electronic control unit was introduced, meanwhile shown the hardware structure and software design processes. This circuit has characteristics of simple hardware, low cost, high reliability, real-time. It has provided a scientific basis for the development of the CAN communication electronic control unit based on MC9S08DZ60 microprocessor.

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Periodical:

Advanced Materials Research (Volumes 694-697)

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2608-2611

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May 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] LIU Cheng-zhi, DING Guo-Liang, YUAN Liang. Analysis for Real-Time Performance of Improved CAN Protocol. Computer Technology and Development ,July 2012, Vol 22(7): 81-84.

Google Scholar

[2] GUO Xiao-song, WANG Zhen-ye, YU Chuang-qiang. Research of the Fault Tolerant Redundant Technology Based on CAN Bus. Computer Measurement & Control,2009,17(1):60-62.

Google Scholar

[3] JI Jing-hong, YANG Fang, CHEN Guang-da. Application of Lighting Control System to Car Based on CAN Bus. Journal of Northeast Agricultural University, Jan 2009,40(1):108-111.

Google Scholar

[4] LUO Feng, SUN Ze-chang. Principle, Design and Application of Automotive CAN Bus System. Publishing House of Electronics Industry,2011.7.

Google Scholar

[5] NI Zhang, FAN Xin, PAN Mao-hui.Design of Electric Vehicle Light Contol System Based on CAN Bus. Transducer and Micro-system Technologies,2011,30(12):82-84.

Google Scholar

[6] YU Guo-guang, LIU Jin-gao. Application of CAN Bus Technology in Vehide System. Computer Science, Apr 2009. Vol.36(4A):276-278.

Google Scholar

[7] LIU Yu, ZHANG Yi-min, SONG Gui-qiu. The Data Transmission Reliability Analysis in Automotive CAN Bus. Machinery Design & Manufacture,2011,12:130-132.

Google Scholar