Structure and method for extending battery life
A battery sleeve for extending the operational life of one or more batteries, the battery sleeve comprising a positive conductive electrode configured such that when the battery sleeve is coupled to at least one battery, the positive conductive electrode of the sleeve serves as the new positive terminal of the at least one battery.
1. A battery sleeve for extending the operational life of a battery, comprising:
a positive conductive electrode;
an insulating layer extending below the positive conductive electrode such that when the sleeve is coupled to a battery, the positive conductive electrode is positioned above the positive terminal of the battery with the insulating layer insulating the positive conductive electrode from the positive terminal of the battery;
a negative conductive electrode configured so that when the battery sleeve is coupled to the battery, the negative conductive electrode is in electrical contact with the negative terminal of the battery;
a middle portion connecting an upper portion of the battery sleeve to a lower portion of the battery sleeve, the upper portion of the battery sleeve being configured so that when the battery sleeve is coupled to a battery, the upper portion of the battery sleeve partially wraps around the exterior of the battery in order to secure the battery sleeve to the battery; and
a voltage regulator circuit adapted so that when the battery sleeve is coupled to a battery, the voltage regulator circuit receives voltages provided on the positive and negative terminals of the battery and provides an output signal on an output terminal electrically connected to the positive conductive electrode, the voltage regulator being further adapted so that when a battery is coupled to power a battery-operated electronic equipment through the battery sleeve, the output signal is provided to the battery-operated electronic equipment through the positive conductive electrode,
wherein the battery sleeve is adapted to be removable and reusable with batteries that plug into the battery compartment of battery-operated electronic equipment, and when the battery sleeve is coupled to a battery, a height of the battery is increased such that the added height of the battery is less than a compressible length of the spring in the battery compartment of battery-operated electronic equipment so that the battery with the battery sleeve coupled thereto fits in the battery compartment of battery-operated electronic equipment.
2. The battery sleeve of claim 1 wherein the voltage regulator is housed in an upper portion of the battery sleeve near the positive conductive electrode.
3. The battery sleeve of claim 1 wherein the voltage regulator is housed in a lower portion of the battery sleeve near the negative conductive electrode.
4. The battery sleeve of claim 1 wherein the battery sleeve is configured so that when the sleeve is coupled to a battery, the negative terminal of the battery is externally electrically accessible, and the positive terminal of the battery is covered by the insulating layer such that the positive terminal is not externally electrically accessible.
5. The battery sleeve of claim 1 wherein the battery sleeve is adapted to be coupled to a disposable battery.
6. The battery sleeve of claim 1 wherein the battery sleeve is adapted to be coupled to a rechargeable battery.
7. The battery sleeve of claim 1 wherein the voltage regulator circuit is adapted to provide a substantially constant output voltage as the output voltage of the battery is reduced.
8. The battery sleeve of claim 1 wherein when the battery sleeve is coupled to a battery, the negative conductive electrode is in physical contact with the negative terminal of the battery.