IP Library Granted Patent US 12695133
Granted Patent B2
US 12695133 · App. 18/187,167 · Granted Jul 28, 2026

Temperature control mechanism for battery cell

Inventors: Marc Juzkow (Livermore, CA); Edward Thomas Sweet (Burlingame, CA); Austin L. Newman (Castro Valley, CA); Pum Sang Cho (San Carlos, CA); Ernest Villanueva (San Francisco, CA); JoeBen Bevirt (Santa Cruz, CA); Luigi Abbate (Redwood City, CA); Jon Wagner (Belmont, CA)
Assignee: Joby Aero, Inc.
H01M10/654H01M10/0585H01M10/613H01M10/647H01M10/6554H01M10/6556H01M50/105H01M50/112H01M50/121H01M50/124H01M50/1243H01M50/186H01M50/193H01M50/512H01M50/531
View Patent ↗
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 12695133
App. No.
18/187,167
Granted
Jul 28, 2026
Kind
B2
Abstract

A battery cell that includes a plurality of anodes and a plurality of cathodes is provided. The battery cell has a pouch laminate disposed over the plurality of anodes and the plurality of cathodes along with a temperature control mechanism centrally located within the pouch laminate. The temperature control mechanism is disposed between anodes of the plurality of anodes and cathodes of the plurality of cathodes such that the temperature control mechanism is centrally located within battery cell. The temperature control mechanism can regulate a temperature of the battery cell while also regulate an amount of pressure applied to the plurality of anodes and cathodes. The temperature control mechanism can include passageways through which heat transfer fluid can pass that be used to regulate the temperature and the pressure.

Claims (46)

1 . A battery cell comprising:

a plurality of anodes;

a plurality of cathodes;

a pouch laminate disposed over the plurality of anodes and the plurality of cathodes; and

a temperature control mechanism centrally located within the pouch laminate, wherein the temperature control mechanism:

is disposed between anodes of the plurality of anodes and cathodes of the plurality of cathodes such that the temperature control mechanism is centrally located within a battery cell;

is formed from a flexible material that flexes upon the application of a fluidic pressure;

includes passageways through which a heat transfer fluid travels; and

is configured such that when the heat transfer fluid travels through the passageways, the temperature control mechanism is configured to expand and apply pressure on the battery cell.

2 . The battery cell of claim 1 , wherein the pouch laminate includes a sealant layer formed on an inside surface thereof and the temperature control mechanism has a co-polymer propylene and polyethylene (CPP) layer disposed on sides thereof.

3 . The battery cell of claim 2 , wherein the pouch laminate CPP layer is fused with the temperature control mechanism CPP layer thereby forming a hermetic seal.

4 . The battery cell of claim 1 , wherein temperature control mechanism has an ovoid configuration.

5 . The battery cell of claim 1 , wherein the temperature control mechanism includes a first hollow plate coupled with a second hollow plate, wherein a sealed hollow cavity is formed between the first hollow plate and the second hollow plate.

6 . The battery cell of claim 5 , wherein the temperature control mechanism includes an input port, an output port, and the passageways are fluidly coupled with the input port and the output port.

7 . A battery cell comprising:

an anode having a single current collector and a plurality of active areas, wherein the plurality of anode active areas form first stacks;

a cathode having a single current collector and a plurality of active areas, wherein the plurality of cathode active areas form second stacks;

a solid-state electrolyte layer separating the anode and the cathode;

a pouch laminate disposed over the anode and the cathode; and

a temperature control mechanism centrally located within the pouch laminate, wherein the temperature control mechanism:

is disposed between the first and second stacks such that the temperature control mechanism is centrally located within battery cell;

is formed from a flexible material that flexes upon the application of a fluidic pressure;

includes passageways through which a heat transfer fluid travels; and

is configured such that when the heat transfer fluid travels through the passageways, the temperature control mechanism is configured to expand and apply pressure on the battery cell.

8 . The battery cell of claim 7 , wherein the pouch laminate includes a co-polymer propylene and polyethylene (CPP) layer formed on an inside surface thereof and the temperature control mechanism has a CPP layer disposed on sides thereof.

9 . The battery cell of claim 8 , wherein the pouch laminate CPP layer is fused with the temperature control mechanism CPP layer thereby forming a hermetic seal.

10 . The battery cell of claim 7 , wherein temperature control mechanism has an ovoid configuration.

11 . The battery cell of claim 7 , wherein the temperature control mechanism includes a first hollow plate coupled with a second hollow plate, wherein a sealed hollow cavity is formed between the first hollow plate and the second hollow plate.

12 . The battery cell of claim 11 , wherein the temperature control mechanism includes an input port, an output port, and the passageways are fluidly coupled with the input port and the output port.

13 . A battery cell comprising:

a plurality of anodes;

a plurality of cathodes;

a solid-state electrolyte layer separating an anode of the plurality of anodes and a cathode of the plurality of cathodes;

a pouch laminate disposed over the plurality of anodes and the plurality of cathodes; and

an ovoid temperature control mechanism centrally located within the pouch laminate, wherein the temperature control mechanism is disposed between anodes of the plurality of anodes and cathodes of the plurality of cathodes such that the temperature control mechanism;

is centrally located within battery cell;

is formed from a flexible material that flexes upon the application of a fluidic pressure;

includes passageways through which a heat transfer fluid travels; and

is configured such that when the heat transfer fluid travels through the passageways, the temperature control mechanism is configured to expand and apply pressure on the battery cell.

14 . The battery cell of claim 13 , wherein the pouch laminate includes a co-polymer propylene and polyethylene (CPP) layer formed on an inside surface thereof and the temperature control mechanism has a CPP layer disposed on sides thereof.

15 . The battery cell of claim 14 , wherein the pouch laminate CPP layer is fused with the temperature control mechanism CPP layer thereby forming a hermetic seal.

16 . The battery cell of claim 13 , the temperature control mechanism including:

a first hollow plate coupled with a second hollow plate, wherein a sealed hollow cavity is formed between the first hollow plate and the second hollow plate;

an input port;

an output port; and

the passageways are fluidly coupled with the input port and the output port.