Design of Magnetic Compression Plasma Fusion Power Supply Based on CAN Bus

Author(s):  
Zhiyuan Weng ◽  
Ge Li ◽  
Pengcheng Miao
2014 ◽  
Vol 16 (7) ◽  
pp. 716-720 ◽  
Author(s):  
Fengwei Zha ◽  
Zhiquan Song ◽  
Peng Fu ◽  
Lin Dong ◽  
Min Wang
Keyword(s):  

2013 ◽  
Vol 756-759 ◽  
pp. 4454-4459
Author(s):  
Jin Rui Nan ◽  
Jun Kui Huang ◽  
Zhi Chai

Electric vehicles use lots of ECU controllers in the CAN network, the quality of ECU parts used in vehicles is closely related to safe driving. This paper develops a kind of fault diagnostic equipment for electric vehicles ECU controllers. This device has designed digital input signal acquisition module, the output switch signal module, power supply module and fault simulation module based on CAN bus communication principle. Then we use LabVIEW developing computer program in order to monitor and control the whole system.


2013 ◽  
Vol 860-863 ◽  
pp. 2842-2845
Author(s):  
Liang Zhong Cui ◽  
Fu Liang Guo ◽  
Chao Qun Ang ◽  
Gang Zhou

An intelligent module is design for monitoring air pipeline pressure on ship. The project is proposed adopting DSP as control core and employing redundant CAN bus to ensure the data transmission reliability. The key solution such as power supply, signal conditioning and communication are introduced in detail. The intelligent diagnosis and communication protocol are also discussed in the end.


Author(s):  
A. Tanaka ◽  
M. Yamaguchi ◽  
T. Hirano

The plasma polymerization replica method and its apparatus have been devised by Tanaka (1-3). We have published several reports on its application: surface replicas of biological and inorganic specimens, replicas of freeze-fractured tissues and metal-extraction replicas with immunocytochemical markers.The apparatus for plasma polymerization consists of a high voltage power supply, a vacuum chamber containing a hydrocarbon gas (naphthalene, methane, ethylene), and electrodes of an anode disk and a cathode of the specimen base. The surface replication by plasma polymerization in negative glow phase on the cathode was carried out by gassing at 0.05-0.1 Torr and glow discharging at 1.5-3 kV D.C. Ionized hydrocarbon molecules diffused into complex surface configurations and deposited as a three-dimensionally polymerized film of 1050 nm in thickness.The resulting film on the complex surface had uniform thickness and showed no granular texture. Since the film was chemically inert, resistant to heat and mecanically strong, it could be treated with almost any organic or inorganic solvents.


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