Lithium reservoir system and method for rechargeable lithium...

Electrical connectors – Preformed panel circuit arrangement – e.g. – pcb – icm – dip,... – With mating connector which receives panel circuit edge

Reexamination Certificate

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C429S063000, C429S064000, C429S007000, C429S009000, C429S050000

Reexamination Certificate

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07726975

ABSTRACT:
A lithium-ion battery cell includes at least two working electrodes, each including an active material, an inert material, an electrolyte and a current collector, a first separator region arranged between the at least two working electrodes to separate the at least two working electrodes so that none of the working electrodes are electronically connected within the cell, an auxiliary electrode including a lithium reservoir, and a second separator region arranged between the auxiliary electrode and the at least two working electrodes to separate the auxiliary electrode from the working electrodes so that none of the working electrodes is electronically connected to the auxiliary electrode within the cell.

REFERENCES:
patent: 6335115 (2002-01-01), Meissner
patent: 6766817 (2004-07-01), da Silva
patent: 6918404 (2005-07-01), da Silva
patent: 7066586 (2006-06-01), da Silva
patent: 2006/0093871 (2006-05-01), Howard et al.
patent: WO 2007/006121 (2007-01-01), None
Christensen et al., “Effect of anode film resistance on the charge/discharge capacity of a lithium-ion battery,” Journal of the Electrochemical Society, 150 (2003) A1416.
Christensen et al., “Cyclable Lithium and Capacity Loss in Li-ion Cells,” Journal of the Electrochemical Society, 152 (2005) A818.
Aora et al., “Mathematical Modeling of the Lithium Deposition Overcharge Reaction in Lithium-ion Batteries Using Carbon-based Negative Electrodes,” Journal of the Electrochemical Society, 146 (1999) 3543.

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