IP Library Granted Patent US 9,287,058
Granted Patent B2
US 9,287,058 · App. 14/005,472 · Granted Mar 15, 2016

Accumulator device

Inventors: Nobuo Ando (Nakakoma-gun, JP); Teruaki Tezuka (Kofu, JP); Yuu Watanabe (Hokuto, JP); Makoto Taguchi (Kai, JP); Kenji Kojima (Kofu, JP); Takashi Chiba (Nirasaki, JP); Hirobumi Suzuki (Nirasaki, JP)
Assignee: JM Energy Corporation
H01G11/26H01G11/06H01G11/22H01G11/50H01G11/70H01M4/02H01M10/0431H01M10/42H01M10/0525H01M2004/021H01M2010/4292Y02E60/13Y02T10/7011Y02T10/7022
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Quick Facts
Patent No.
US 9,287,058
App. No.
14/005,472
Granted
Mar 15, 2016
Kind
B2
Abstract

An accumulator device which provides a high energy density and high output power is provided. The accumulator device (D) includes a positive electrode in which a positive electrode layer (A) is formed, a negative electrode in which a negative electrode layer (B) is formed, and an electrolytic solution (C). The accumulator device is characterized by satisfying that 1.02≦W A /W B ≦2.08 and that 390 μm≦T A ≦750 μm, where W A is the weight of the positive electrode layer (A), W B is the weight of the negative electrode layer (B), and T A is the thickness of the positive electrode in which the positive electrode layer (A) is formed.

Claims (48)

1. An accumulator device (D), comprising:

a positive electrode in which a positive electrode layer (A) is formed;

a negative electrode in which a negative electrode layer (B) is formed; and

an electrolytic solution (C);

wherein:

the accumulator device (D) satisfies:

1.02≦ W A /W B ≦2.08;

390μm≦ T A ≦750μm;

0.19≦( W A +W B )/ W D ≦0.28; and

1.58≦ W C /( W A +W B )≦1.85;

W A is the weight of the positive electrode layer (A);

W B is the weight of the negative electrode layer (B);

T A is the thickness of the positive electrode in which the positive electrode layer (A) is formed;

W D is the weight of the accumulator device (D); and

W C is the weight of the electrolytic solution (C).

2. The accumulator device according to claim 1 , wherein the accumulator device (D) satisfies 500≦√(T A 2 ×W A /W B )≦1000.

3. The accumulator device according to claim 1 , wherein:

the accumulator device (D) satisfies 100 μm≦T B ≦300 μm; and

T B is the thickness of the negative electrode in which the negative electrode layer (B) is formed.

4. The accumulator device (D) according to claim 1 , comprising a laminated-type electrode unit or a wound-type electrode unit.

5. The accumulator device (D) according to claim 4 , comprising a laminated-type electrode unit or a wound-type electrode unit in which the positive electrode and the negative electrode are laminated or wound with a separator interposed therebetween;

wherein the positive electrode comprises a plurality of current collectors with holes penetrating across front and back surfaces, the plurality of current collectors being laminated with the positive electrode layer interposed therebetween.

6. The accumulator device according to claim 1 , serving as a lithium ion capacitor.

7. The accumulator device (D) according to claim 1 , wherein:

the accumulator device (D) satisfies:

0.19≦( W A +W B )/ W D ≦0.28; and

1.58≦ W C /( W A +W B )≦1.85;

W D is the weight of the accumulator device (D); and

W C is the weight of the electrolytic solution (C).

8. An accumulator device (D), comprising:

a positive electrode in which a positive electrode layer (A) is formed;

a negative electrode in which a negative electrode layer (B) is formed; and

an electrolytic solution (C);

wherein:

the accumulator device (D) satisfies:

1.02≦ W A /W B ≦2.08;

390μm≦ T A ≦750μm; and

500≦√( T A 2 ×W A /W B )≦1000;

W A is the weight of the positive electrode layer (A);

W B is the weight of the negative electrode layer (B); and

T A is the thickness of the positive electrode in which the positive electrode layer (A) is formed.

9. The accumulator device according to claim 8 or claim 7 , wherein:

the accumulator device (D) satisfies 100 μm≦T B ≦300 μm; and

T B is the thickness of the negative electrode in which the negative electrode layer (B) is formed.

10. The accumulator device (D) according to claim 8 or claim 7 , comprising a laminated-type electrode unit or a wound-type electrode unit.

11. The accumulator device (D) according to claim 10 , comprising a laminated-type electrode unit or a wound-type electrode unit in which the positive electrode and the negative electrode are laminated or wound with a separator interposed therebetween;

wherein the positive electrode comprises a plurality of current collectors with holes penetrating across front and back surfaces, the plurality of current collectors being laminated with the positive electrode layer interposed therebetween.

12. The accumulator device according to claim 8 or claim 7 , serving as a lithium ion capacitor.

Assignments (2)
CHANGE OF NAME Recorded Jan 15, 2021
From: JM ENERGY CORPORATION
To: MUSASHI ENERGY SOLUTIONS CO., LTD.
Reel/Frame 055010/0052 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 18, 2013
From: ANDO, NOBUO; TEZUKA, TERUAKI; WATANABE, YUU; TAGUCHI, MAKOTO; KOJIMA, KENJI; CHIBA, TAKASHI; SUZUKI, HIROBUMI
To: JM ENERGY CORPORATION
Reel/Frame 031232/0339 →
Priority Claims (2)
JP 2011-060192 · Mar 18, 2011 · national
JP 2011-209125 · Sep 26, 2011 · national
Continuity (1)
Related Publication 20140002959A1 · Jan 2, 2014