Performance Comparison of FRD and SiC Schottky Diode in Si/SiC Hybrid Switch Power Module

Author(s):  
Zhong Zeng ◽  
Zongjian Li ◽  
Yizhe Liu ◽  
Zhizhi He ◽  
Xi Jiang ◽  
...  
2014 ◽  
Vol 599-601 ◽  
pp. 1657-1660
Author(s):  
Shu Zhen Liu

Switch power module parallel operation system is one of the technological developing directions of power with high-power output and uninterruptible supply. The paper puts forward a concept to design switch power module parallel operation system, which adopts two TPS5430 chips to compose DC-DC cell parallel and through their load sharing to control chip UCC39002 to implement DC-DC unit outputting equalized current. It succeeds in building experimental prototype.


2012 ◽  
Vol 717-720 ◽  
pp. 1147-1150
Author(s):  
Nii Adotei Parker-Allotey ◽  
Dean P. Hamilton ◽  
Olayiwola Alatise ◽  
Michael R. Jennings ◽  
Philip A. Mawby ◽  
...  

This paper will demonstrate how the newer Silicon Carbide material semiconductor power devices can contribute to carbon emissions reduction and the speed of adoption of electric vehicles, including hybrids, by enabling significant increases in the driving range. Two IGBT inverter leg modules of identical power rating have been manufactured and tested. One module has silicon-carbide (SiC) Schottky diodes as anti-parallel diodes and the other silicon PiN diodes. The power modules have been tested and demonstrate the superior electrothermal performance of the SiC Schottky diode over the Si PiN diode leading to a reduction in the power module switching losses.


2012 ◽  
Vol 132 (4) ◽  
pp. 524-525
Author(s):  
Ryozo Itoh ◽  
Kouichi Ishizaka ◽  
Yasuhiko Neba ◽  
Hirokazu Matsumoto ◽  
Takahiro Haraguchi

1988 ◽  
Vol 49 (C2) ◽  
pp. C2-443-C2-446 ◽  
Author(s):  
A. K. KAR ◽  
R. M. HARRIS ◽  
G. S. BULLER ◽  
S. D. SMITH ◽  
A. C. WALKER

Author(s):  
Molla Asmare ◽  
Mustafa Ilbas

Nowadays, the most decisive challenges we are fronting are perfectly clean energy making for equitable and sustainable modern energy access, and battling the emerging alteration of the climate. This is because, carbon-rich fuels are the fundamental supply of utilized energy for strengthening human society, and it will be sustained in the near future. In connection with this, electrochemical technologies are an emerging and domineering tool for efficiently transforming the existing scarce fossil fuels and renewable energy sources into electric power with a trivial environmental impact. Compared with conventional power generation technologies, SOFC that operate at high temperature is emerging as a frontrunner to convert the fuels chemical energy into electric power and permits the deployment of varieties of fuels with negligible ecological destructions. According to this critical review, direct ammonia is obtained as a primary possible choice and price-effective green fuel for T-SOFCs. This is because T-SOFCs have higher volumetric power density, mechanically stable, and high thermal shocking resistance. Also, there is no sealing issue problem which is the chronic issues of the planar one. As a result, the toxicity of ammonia to use as a fuel is minimized if there may be a leakage during operation. It is portable and manageable that can be work everywhere when there is energy demand. Besides, manufacturing, onboard hydrogen deposition, and transportation infrastructure connected snags of hydrogen will be solved using ammonia. Ammonia is a low-priced carbon-neutral source of energy and has more stored volumetric energy compared with hydrogen. Yet, to utilize direct NH3 as a means of hydrogen carrier and an alternative green fuel in T-SOFCs practically determining the optimum operating temperatures, reactant flow rates, electrode porosities, pressure, the position of the anode, thickness and diameters of the tube are still requiring further improvement. Therefore, mathematical modeling ought to be developed to determine these parameters before planning for experimental work. Also, a performance comparison of AS, ES, and CS- T-SOFC powered with direct NH3 will be investigated and best-performed support will be carefully chosen for practical implementation and an experimental study will be conducted for verification based on optimum parameter values obtained from numerical modeling.


1999 ◽  
Author(s):  
C-C. Chen ◽  
C. Lai ◽  
T. Shih

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