IP Library Patent Application 11766031
Patent Application
App. No. 11/766,031

Buttonless Battery Charger Interface

Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US None
App. No.
11/766,031
Abstract

According to the invention, a battery charging apparatus with a plurality of modes for charging a battery is disclosed. The apparatus may have a battery receptacle and a command processor. The battery receptacle may be adapted to detachably and mechanically couple with the battery and may be adapted to detachably and electrically couple the battery with a battery charging circuit. The command processor may be configured to: detect a first at least partial mechanical coupling of the battery with the battery receptacle; detect a first at least partial mechanical decoupling of the battery from the battery receptacle; detect a first at least partial mechanical recoupling of the battery with the battery receptacle; and/or to communicate a first instruction to the battery charging circuit based at least in part on detecting the first at least partial mechanical recoupling within a particular time period after the first at least partial mechanical decoupling.

Claims (54)

1 . A battery charging apparatus with a plurality of modes for charging a battery, the battery charging apparatus comprising:

a battery receptacle, wherein:

the battery receptacle is adapted to detachably and mechanically couple with the battery; and

the battery receptacle is adapted to detachably and electrically couple the battery with a battery charging circuit; and

a command processor, wherein:

the command processor is configured to detect a first at least partial mechanical coupling of the battery with the battery receptacle;

the command processor is further configured to detect a first at least partial mechanical decoupling of the battery from the battery receptacle;

the command processor is further configured to detect a first at least partial mechanical recoupling of the battery with the battery receptacle; and

the command processor is further configured to communicate a first instruction to the battery charging circuit based at least in part on detecting the first at least partial mechanical recoupling within a particular time period after the first at least partial mechanical decoupling.

2 . The battery charging apparatus with the plurality of modes for charging the battery of claim 1 , wherein the first instruction is based at least in part on an automatic determination of at least one characteristic of the battery.

3 . The battery charging apparatus with the plurality of modes for charging the battery of claim 1 , wherein the command processor is further configured to communicate a second instruction to the battery charging circuit based at least in part on detecting the first at least partial mechanical coupling, and wherein the second instruction is based at least in part on an automatic determination of at least one characteristic of the battery.

4 . The battery charging apparatus with the plurality of modes for charging the battery of claim 1 , wherein:

the command processor is further configured to detect a second at least partial mechanical decoupling of the battery from the battery receptacle;

the command processor is further configured to detect a second at least partial mechanical recoupling of the battery with the battery receptacle; and

the command processor is further configured to communicate a second instruction to the battery charging circuit based at least in part on detecting the second at least partial mechanical recoupling within a particular time period after the second at least partial mechanical decoupling.

5 . The battery charging apparatus with the plurality of modes for charging the battery of claim 4 , wherein:

the command processor is further configured to detect a third at least partial mechanical decoupling of the battery from the battery receptacle;

the command processor is further configured to detect a third at least partial mechanical recoupling of the battery with the battery receptacle; and

the command processor is further configured to communicate a third instruction to the battery charging circuit based at least in part on detecting the third at least partial mechanical recoupling of the battery within a particular time period after the third at least partial mechanical decoupling.

6 . The battery charging apparatus with the plurality of modes for charging the battery of claim 1 , wherein the particular time period after the first at least partial mechanical decoupling comprises a time period between a first point in time and a second point in time, and the first point in time is at the first at least partial mechanical decoupling.

7 . The battery charging apparatus with the plurality of modes for charging the battery of claim 1 , wherein the particular time period after the first at least partial mechanical decoupling comprises a time period between a first point in time and a second point in time, and the first point in time is a certain time after the first at least partial mechanical decoupling.

8 . The battery charging apparatus with the plurality of modes for charging the battery of claim 1 , wherein the battery charging apparatus further comprises an indicator configured to inform a user of a last instruction communicated to the battery charging circuit.

9 . The battery charging apparatus with the plurality of modes for charging the battery of claim 1 , wherein the charging circuit is configured to operate in a plurality of modes, and wherein the plurality of modes are selected from the group consisting of a calibration mode, a quick charging mode, a slow charging mode, and a discharge mode.

10 . The battery charging apparatus with the plurality of modes for charging the battery of claim 1 , wherein the first instruction comprises a mode instruction directing the battery charging circuit to operate in at least one of a plurality of modes.

11 . A method for communicating one or more instructions to an electrical apparatus with a battery receptacle, the method comprising:

detecting a first at least partial mechanical coupling of a battery with the battery receptacle;

detecting a first at least partial mechanical decoupling of the battery from the battery receptacle;

detecting a first at least partial mechanical recoupling of the battery with the battery receptacle; and

communicating a first instruction to the electrical apparatus based at least in part on detecting the first at least partial mechanical recoupling within a particular time period after the first at least partial mechanical decoupling.

12 . The method for communicating one or more instructions to the electrical apparatus with the battery receptacle of claim 11 , the method further comprising determining at least one characteristic of the battery, wherein the first instruction is based at least in part on the at least one characteristic of the battery.

13 . The method for communicating one or more instructions to the electrical apparatus with the battery receptacle of claim 11 , the method further comprising:

determining at least one characteristic of the battery;

communicating a second instruction to the electrical apparatus based at least in part on detecting the first at least partial mechanical coupling, wherein the second instruction is based at least in part on an automatic determination of characteristics of the battery.

14 . The method for communicating one or more instructions to the electrical apparatus with the battery receptacle of claim 11 , the method further comprising:

detecting a second at least partial mechanical decoupling of the battery from the battery receptacle;

detecting a second at least partial mechanical recoupling of the battery with the battery receptacle; and

communicating a second instruction to the electrical apparatus based at least in part on detecting the second at least partial mechanical recoupling within a particular time period after the second at least partial mechanical decoupling.

15 . The method for communicating one or more instructions to the electrical apparatus with the battery receptacle of claim 14 , the method further comprising:

detecting a third at least partial mechanical decoupling of the battery from the battery receptacle;

detecting a third at least partial mechanical recoupling of the battery with the battery receptacle; and

communicating a third instruction to the electrical apparatus based at least in part on detecting the third at least partial mechanical recoupling within a particular time period after the third at least partial mechanical decoupling.

16 . The method for communicating one or more instructions to the electrical apparatus with the battery receptacle of claim 11 , the method further comprising informing a user of a last instruction communicated to the electrical apparatus.

17 . A machine-readable medium having machine-executable instructions configured to perform the machine-implementable method for communicating one or more instructions to an electrical apparatus with a battery receptacle of claim 11 .

18 . A machine adapted to perform the machine-implementable method for communicating one or more instructions to an electrical apparatus with a battery receptacle of claim 11 .

19 . An electrical apparatus with a battery receptacle, the electrical apparatus comprising:

a battery receptacle, wherein:

the battery receptacle is adapted to detachably and mechanically couple with the battery; and

the battery receptacle is adapted to detachably and electrically couple the battery with the electrical apparatus; and

a command processor, wherein:

the command processor is configured to detect a first at least partial mechanical coupling of the battery with the battery receptacle;

the command processor is further configured to detect a first at least partial mechanical decoupling of the battery from the battery receptacle;

the command processor is further configured to detect a first at least partial mechanical recoupling of the battery with the battery receptacle; and

the command processor is further configured to communicate a first instruction to the electrical apparatus based at least in part on detecting the first at least partial mechanical recoupling within a particular time period after the first at least partial mechanical decoupling.

20 . The electrical apparatus with a battery receptacle of claim 19 , wherein the first instruction comprises a mode instruction directing the electrical apparatus to operate in at least one of a plurality of modes.

Assignments (7)
RELEASE OF SECURITY INTEREST Recorded Mar 18, 2014
From: RBS CITIZENS, N.A., AS AGENT
To: ICC-NEXERGY, INC.; ELPAC ELECTRONICS, INC.; ELPAC CHINA HOLDINGS, INC.; NEXERGY, INC.; NEXERGY PROMARK, LLC; NEXERGY TAUBER, LLC; NEXERGY D.C., LLC
Reel/Frame 032467/0647 →
MERGER Recorded Nov 17, 2011
From: NEXERGY, INC.
To: ICC-NEXERGY, INC.
Reel/Frame 027242/0244 →
RELEASE OF SECURITY INTEREST Recorded Nov 29, 2010
From: ROYNAT MERCHANT CAPITAL INC.
To: NEXERGY, INC.
Reel/Frame 025424/0857 →
SECURITY AGREEMENT Recorded Nov 22, 2010
From: ICC-NEXERGY, INC.; ELPAC ELECTRONICS, INC.; ELPAC CHINA HOLDINGS, INC.; NEXERGY, INC.; NEXERGY PROMARK, LLC; NEXERGY TAUBER, LLC; NEXERGY D.C., LLC
To: RBS CITIZENS, N.A., AS AGENT
Reel/Frame 025411/0942 →
MERGER Recorded Oct 27, 2010
From: ELECTRITEK-AVT, INC.
To: NEXERGY, INC.
Reel/Frame 025204/0102 →
SECURITY AGREEMENT Recorded Feb 6, 2008
From: NEXERGY, INC.
To: ROYNAT MERCHANT CAPITAL, INC.
Reel/Frame 020471/0258 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 6, 2007
From: IBRAHIM, RANDOLPH A.
To: ELECTRITEK-AVT, INC.
Reel/Frame 019792/0132 →