All climate battery and manufacturing and using the same
A rechargeable battery, module or a pack, having different levels of internal resistance that operate at different temperatures are disclosed. In a subfreezing environment, the battery can exhibit high resistance which once operated or activated, generates heat internally to warm up the battery quickly. Once the batter reaches normal operating temperatures, the battery can switch to a low resistance operating mode, thereby delivering superior power and energy despite operating in a very low ambient temperature.
1. A rechargeable battery comprising:
at least one negative terminal and at least one positive terminal forming an internal resistance (R 1 ) over a temperature range of the battery between a first temperature (T 1 ) and a second temperature (T 2 );
at least one high resistance terminal electrically connected to at least one resistor sheet within or adjacent a cell of the battery forming a second internal resistance (R 2 ) wherein R 2 is higher than R 1 ; and
a switch configured to electrically connect or disconnect the at least one high resistance terminal with either the at least one positive terminal or the at least one negative terminal.
2. The rechargeable battery according to claim 1 , wherein the at least one resistor sheet is within a cell of the battery.
3. The rechargeable battery according to claim 1 , wherein the at least one high resistance terminal is an additional positive terminal.
4. The rechargeable battery according to claim 1 , wherein the at least one resistor sheet comprises nickel, copper, aluminum, or combinations thereof.
5. The rechargeable battery according to claim 4 , wherein the at least one resistor sheet is positioned within a cell of the battery.
6. The rechargeable battery according to claim 1 , wherein the at least one resistor sheet is made of graphite, highly ordered pyrolytic graphite (HOPG), stainless steel, nickel, chrome, nichrome, copper, aluminum, titanium, or combinations thereof.
7. The rechargeable battery according to claim 1 , wherein the at least one resistor sheet has a thickness of 1-150 micrometers.
8. The rechargeable battery according to claim 1 , wherein the at least one resistor sheet is sandwiched inside an electrode-separator stack or sandwiched inside or between jelly roll electrode assemblies.
9. The rechargeable battery according to claim 1 , wherein the at least one resistor sheet is configured to have two tabs, with one tab electrically connected to other electrode tabs in the battery, and the other tab of the at least one resistor sheet electrically connected to the at least one high-resistance terminal.
10. The rechargeable battery according to claim 1 , comprising several resistor sheets embedded within a stack of electrode separator assemblies wherein each resistor sheet has two tabs, with one tab electrically connected to other electrode tabs in the battery, and the other tab of the resistor sheet electrically connected to the at least one high-resistance terminal.
11. The rechargeable battery according to claim 1 , wherein the at least one resistor sheet has a resistance in units of Ohm equal to the numerical value of between 0.1 to 5 divided by the battery's capacity in Amp-hours (Ah).
12. The rechargeable battery according to claim 1 , wherein the at least one high resistance terminal is an additional negative terminal.
13. The rechargeable battery according to claim 1 , wherein the switch is a thermally activated switch configured to electrically connect or disconnect the at least one high resistance terminal with either the at least one positive terminal or the at least one negative terminal when a temperature of the battery is below T 1 .
14. The rechargeable battery according to claim 1 , wherein the battery is a nickel-metal hydride battery.
15. The rechargeable battery according to claim 1 , wherein the battery is a lithium ion battery.
16. A battery system comprising the rechargeable battery according to claim 1 and a controller configured to operate the switch to change the internal resistance to R 2 when a temperature of the battery is below T 1 .
17. A rechargeable battery comprising:
an anode electrically connected to a negative terminal;
a cathode electrically connected to a positive terminal;
a high resistance terminal electrically connected to at least one resistor sheet which is electrically connected to either the negative terminal or the positive terminal; and
a switch configured to electrically connect or disconnect the high resistance terminal to either the negative terminal or the positive terminal.
18. The rechargeable battery according to claim 17 , wherein the at least one resistor sheet is adjacent a cell of the battery.
19. The rechargeable battery according to claim 17 , wherein the at least one high resistance terminal is an additional negative terminal.
20. The rechargeable battery according to claim 17 , wherein the at least one high resistance terminal is an additional positive terminal.
21. The rechargeable battery according to claim 17 , wherein the at least one resistor sheet is made of graphite, highly ordered pyrolytic graphite (HOPG), stainless steel, nickel, chrome, nichrome, copper, aluminum, titanium, or combinations thereof.
22. The rechargeable battery according to claim 17 , wherein the at least one resistor sheet has a resistance in units of Ohm equal to the numerical value of between 0.1 to 5 divided by the battery's capacity in Amp-hours (Ah).
23. A rechargeable battery comprising:
an anode electrically connected to a negative terminal;
a cathode electrically connected to a positive terminal;
a high resistance terminal electrically connected to at least one resistor sheet which is electrically connected to either the negative terminal or the positive terminal, wherein the at least one resistor sheet is within a cell of the battery; and
a switch configured to electrically connect or disconnect the high resistance terminal to either the negative terminal or the positive terminal.
24. The rechargeable battery according to claim 23 , wherein the at least one resistor sheet comprises nickel, copper, aluminum, or combinations thereof.
25. The rechargeable battery according to claim 23 , wherein the at least one resistor sheet has a resistance in units of Ohm equal to the numerical value of between 0.1 to 5 divided by the battery's capacity in Amp-hours (Ah).