US2012208056A1PendingUtilityA1

Secondary battery

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Assignee: TAKAGI KUMIKOPriority: May 17, 2006Filed: Apr 25, 2012Published: Aug 16, 2012
Est. expiryMay 17, 2026(expired)· nominal 20-yr term from priority
H01M 4/386H01M 50/103H01M 50/538H01M 10/0431Y02E60/10H01M 10/0525H01M 4/38H01M 10/0587H01M 4/387Y02P70/50H01M 10/052H01M 4/134H01M 4/583H01M 4/364
52
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Claims

Abstract

A battery including: a spirally wound electrode body in which a cathode having a cathode active material layer on a strip-shaped cathode current collector and an anode having an anode active material layer on a strip-shaped anode current collector are layered with a separator in between, and spirally wound in a planular state; and a lead joined to the cathode current collector or the anode current collector in a center portion of the spirally wound electrode body. An inner circumferential end of the cathode active material layer is provided in a region where the inner circumferential end does not overlap with the lead in a short axis direction of the spirally wound electrode body.

Claims

exact text as granted — not AI-modified
1 . A secondary battery comprising:
 a spirally wound electrode body in which a cathode having a cathode active material layer on a strip-shaped cathode current collector and an anode having an anode active material layer on a strip-shaped anode current collector are layered with a separator in between, and spirally wound in a planular state; and   a lead connected to the cathode current collector in a center portion of the spirally wound electrode body,   wherein
 a spirally winding center side end of the cathode active material layer is provided in a region where the spirally winding center side end does not overlap with the cathode lead in a short axis direction of the spirally wound electrode body, 
 a spirally winding center side of the anode active material layer is provided in a region where the spirally winding center side end overlaps with the cathode lead in a short axis direction of the spirally wound electrode body, 
 the spirally wound electrode body is structured so that the spirally winding center side end and a spirally winding outer circumferential side end of the cathode active material layer and the spirally winding center side end of the anode active material layer are located on one side of two regions divided by a long axis, and 
 a flat portion having the spirally winding center side end of the cathode active material layer and a flat portion having the spirally winding outer circumferential side end of the cathode active material layer do not overlap each other in the short axis direction.

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