Advanced Battery Development

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Advanced Battery Development ( advanced-battery-development )

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III.A.2 EV Battery Technology Assessment Tataria – USABC, Kepler – Farasis Figure III - 5 shows cycling data for several early prototypes of the 30 Ah cell design tested at Farasis before the final production build. These cells were cycled with a C/3 charge and discharge rate. 35000 30000 25000 20000 15000 10000 5000 0 FEI-2 30Ah Large Pouch Cells C/3 Charge, C/3 Discharge 0 50 100 150 200 250 300 Cycle Figure III - 5: 30 Ah Li-ion pouch cell cycling data: C/3 charge, C/3 discharge Farasis shipped a large quantity of processed cathode material to its factory in March 2013 for the final deliverable cell build. Approximately 80 30 Ah cells were built at the factory using a design based on the 25 Ah production pouch cell form factor. Seventy cells were shipped to Farasis in Hayward, CA and 46 of these cells were shipped to Idaho National Laboratory for performance testing, Sandia National Laboratory for safety testing, and the National Renewable Energy Laboratory for thermal evaluation. The cells will be tested at these facilities and at Farasis over the next 6 months. Conclusions and Future Directions Farasis has successfully delivered large high energy density Li-ion pouch cells for evaluation by USABC and DOE aimed at meeting the USABC PHEV battery performance targets. These cells will be evaluated both at Farasis and at the National Laboratories over the coming months. Farasis will continue its development of this high capacity Li-ion cathode chemistry to further improve the performance of this system. This technology has the potential to meet the long term USABC goals for PHEV and EV battery systems. Energy Storage R&D 34 FY 2013 Annual Progress Report Discharge Capacity (Ah)

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