IP Library Granted Patent US 7,696,720
Granted Patent B2
US 7,696,720 · App. 11/698,850 · Granted Apr 13, 2010

Battery pack and electronic device

Assignee: Fujitsu Limited
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Quick Facts
Patent No.
US 7,696,720
App. No.
11/698,850
Granted
Apr 13, 2010
Kind
B2
Abstract

A battery pack includes a battery, a pair of output terminals connected to the battery, a switch inserted between the battery and one of the pair of output terminals, an acceleration sensor detecting a shock and outputting a detected value dependent thereon, and a control unit of a protection circuit. When a detected value of the acceleration sensor is equal to or greater than a predetermined threshold value, the control unit turns off the switch and thereby cuts off a current path between the battery and the pair of output terminals to cut off the current.

Claims (91)

1. A battery pack comprising:

a battery;

an output terminal outputting an output of the battery to the outside;

detection means for detecting a shock and outputting a detected value dependent on the detection;

output control means for cutting off the output of the battery from the output terminal when the detected value of the detection means is equal to or greater than a predetermined threshold value; and

a storage unit storing a shock history which is a history of shock detected by the detection means,

wherein the output terminal is a pair of terminals connected to the battery,

wherein the output control means further includes:

a switch inserted between the battery and one of the pair of terminals; and

a control unit cutting off a current path between the battery and the pair of terminals by turning off the switch when the detected value of the detection means is equal to or greater than the predetermined threshold value,

wherein, when the detected value of the detection means is equal to or greater than a threshold value, the control unit stores the detected value and a number of times of the detected value exceeding the threshold value as the shock history into the storage unit, and

wherein, when the control unit detects the instruction signal, the control unit reads the shock history from the storage unit, and turns on the switch when the number of times of the detected value exceeding the threshold value is equal to or less than a predetermined value so that a current path forms between the battery and the pair of output terminals to allow the current to flow, or leaves the switch unchanged at the off state when the number of times of the detected value exceeding the threshold value is greater than the predetermined value.

2. A battery pack comprising:

a battery;

an output terminal outputting an output of the battery to the outside, the output terminal being a pair of terminals connected to the battery;

detection means for detecting a shock and outputting a detected value dependent on the detection;

output control means for cutting off the output of the battery from the output terminal when the detected value of the detection means is equal to or greater than a predetermined threshold value;

a storage unit storing a shock history which is a history of shock detected by the detection means;

a fuse provided between the battery and the pair of output terminals; and

a fuse cutting circuit cutting the fuse,

wherein the output terminal is a pair of terminals connected to the battery,

wherein the output control means further includes:

a switch inserted between the battery and one of the pair of terminals; and

a control unit cutting off a current path between the battery and the pair of terminals by turning off the switch when the detected value of the detection means is equal to or greater than the predetermined threshold value,

wherein the control unit reads the shock history from the storage unit, and sends a cutting signal to the fuse cutting circuit when the number of times of the detected value exceeding the threshold value is greater than a predetermined value, and

wherein the fuse cutting circuit cuts the fuse based on the cutting signal.

3. The battery pack according to claim 2 , wherein the detection means is an acceleration sensor.

4. The battery pack according to claim 2 ,

wherein the switch and the control unit are integrally formed as a protection circuit, and

wherein the storage unit is provided separately from the protection circuit.

5. The battery pack according to claim 2 , wherein, when the control unit detects an instruction signal to instruct for executing a recovery processing, the control unit forms a current path between the battery and the pair of output terminals to allow the current to flow by turning on the switch.

6. The battery pack according to claim 2 , further comprising:

a recovery terminal provided separately from the pair of output terminals,

wherein the instruction signal is a voltage applied to the recovery terminal.

7. The battery pack according to claim 6 , wherein the voltage applied to the recovery terminal is a power source which drives the control unit.

8. The battery pack according to claim 2 , further comprising:

a data output terminal provided separately from the pair of output terminals and reading the shock history from the storage unit,

wherein the battery pack outputs the shock history through the data output terminal.

9. The battery pack according to claim 2 , further comprising:

a detection means output terminal provided separately from the pair of output terminals and reading the detected value from the detection means,

wherein the battery pack outputs the detected value through the detection means output terminal.

10. An electronic device comprising:

a battery pack detachably mounted on the electronic device; and

a load driven by an electric power supplied from the battery pack,

wherein the battery pack further comprises;

a battery;

an output terminal outputting an output of the battery to the outside;

detection means for detecting a shock and outputting a detected value dependent on the detection; and

output control means for cutting off an output of the battery from the output terminal when the detected value of the detection means is equal to or greater than a predetermined threshold value,

wherein the output terminal is a pair of terminals connected to the battery,

wherein the output control means further includes:

a switch inserted between the battery and one of the pair of terminals; and

a control unit cutting off a current path between the battery and the pair of terminals by turning off the switch when the detected value of the detection means is equal to or greater than the predetermined threshold value,

wherein the battery pack further comprises a storage unit storing a shock history which is a history of shock detected by the detection means,

wherein, when the detected value of the detection means is equal to or greater than a threshold value, the control unit stores the detected value and a number of times of the detected value exceeding the threshold value as the shock history into the storage unit,

wherein, when the control unit detects an instruction signal to instruct for executing a recovery processing, the control unit forms a current path between the battery and the pair of output terminals to allow the current to flow by turning on the switch, and

wherein, when the control unit detects the instruction signal, the control unit reads the shock history from the storage unit, and turns on the switch when the number of times of the detected value exceeding the threshold value is equal to or less than a predetermined value so that a current path forms between the battery and the pair of output terminals to allow the current to flow, or leaves the switch unchanged at the off state when the number of times of the detected value exceeding the threshold value is greater than the predetermined value.

11. An electronic device comprising:

a battery pack detachably mounted on the electronic device; and

a load driven by an electric power supplied from the battery pack,

wherein the battery pack further comprises;

a battery;

an output terminal outputting an output of the battery to the outside;

detection means for detecting a shock and outputting a detected value dependent on the detection; and

output control means for cutting off an output of the battery from the output terminal when the detected value of the detection means is equal to or greater than a predetermined threshold value,

wherein the output terminal is a pair of terminals connected to the battery,

wherein the output control means further includes:

a switch inserted between the battery and one of the pair of terminals; and

a control unit cutting off a current path between the battery and the pair of terminals by turning off the switch when the detected value of the detection means is equal to or greater than the predetermined threshold value,

wherein the battery pack further comprises a storage unit storing a shock history which is a history of shock detected by the detection means,

wherein, when the detected value of the detection means is equal to or greater than a threshold value, the control unit stores the detected value and a number of times of the detected value exceeding the threshold value as the shock history into the storage unit,

wherein the battery pack further comprises:

a fuse provided between the battery and the pair of output terminals; and

a fuse cutting circuit cutting the fuse,

wherein the control unit reads the shock history from the storage unit, and sends a cutting signal to the fuse cutting circuit when the number of times of the detected value exceeding the threshold value is greater than a predetermined value, and

wherein the fuse cutting circuit cuts the fuse based on the cutting signal.

12. The electronic device according to claim 11 , wherein the detection means is an acceleration sensor.

13. The electronic device according to claim 11 ,

wherein the switch and the control unit are integrally formed as a protection circuit, and

wherein the storage unit is provided separately from the protection circuit.

14. The electronic device according to claim 11 , wherein, when the control unit detects an instruction signal to instruct for executing a recovery processing, the control unit forms a current path between the battery and the pair of output terminals to allow the current to flow by turning on the switch.

15. The electronic device according to claim 11 ,

wherein the battery pack further comprises a recovery terminal provided separately from the pair of output terminals, and

wherein the instruction signal is a voltage applied to the recovery terminal.

16. The electronic device according to claim 15 , wherein the voltage applied to the recovery terminal is a power source which drives the control unit.

17. The electronic device according to claim 11 ,

wherein the battery pack further comprises a data output terminal provided separately from the pair of output terminals and reading the shock history from the storage unit, and

wherein the battery pack outputs the shock history through the data output terminal.

18. The electronic device according to claim 11 ,

wherein the battery pack further comprises a detection means output terminal provided separately from the pair of output terminals and reading the detected value from the detection means, and

wherein the battery pack outputs the detected value through the detection means output terminal.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE PATENT NUMBER RECORDED AS 7963671 PREVIOUSLY RECORDED ON REEL 048750 FRAME 0941. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Jun 11, 2019
From: FUJITSU LIMITED
To: FUJITSU CLIENT COMPUTING LIMITED
Reel/Frame 049440/0197 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 31, 2019
From: FUJITSU LIMITED
To: FUJITSU CLIENT COMPUTING LIMITED
Reel/Frame 048750/0941 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 29, 2007
From: HASEGAWA, TOHRU
To: FUJITSU LIMITED
Reel/Frame 018858/0316 →
Priority Claims (1)
JP 2006-268090 · Sep 29, 2006 · national
Continuity (1)
Related Publication 20080084180A1 · Apr 10, 2008