IP Library Granted Patent US 10,852,047
Granted Patent B2
US 10,852,047 · App. 16/565,030 · Granted Dec 1, 2020

Portable cooler with active temperature control

Inventors: Clayton Alexander (Westlake Village, CA); Daren John Leith (Agoura Hills, CA); Mikko Juhani Timperi (San Marcos, CA); Christopher Thomas Wakeham (Solana Beach, CA); Jacob William Emmert (Westchester, CA); Joseph Lyle Koch (Anaheim, CA); Frank Victor Baumann (San Diego, CA); Clifton Texas Lin (San Diego, CA); Farzam Roknaldin (Coto De Caza, CA); Mark Channing Stabb (Solana Beach, CA)
Assignee: Ember Technologies, Inc.
F25D11/003F25B21/04F25B2321/0212F25B2321/0251F25D2400/361F25D2400/40F25D2700/12
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Quick Facts
Patent No.
US 10,852,047
App. No.
16/565,030
Granted
Dec 1, 2020
Kind
B2
Abstract

A portable cooler container with active temperature control system is provided. The active temperature control system is operated to heat or cool a chamber of a vessel to approach a temperature set point suitable for a medication stored in the cooler container.

Claims (32)

1. A portable cooler container with active temperature control, comprising:

a container body having a vacuum insulated chamber configured to receive and hold one or more containers of medicine;

a lid removably coupleable or hingedly coupleable to the container body to access the chamber; and

a temperature control system disposed in the container body between an outer container wall and the vacuum insulated chamber, the temperature control system comprising

one or more thermoelectric elements in thermal communication with an inner wall surface of the vacuum insulated chamber and operable to actively heat or cool at least a portion of the chamber, and

circuitry configured to control an operation of the one or more thermoelectric elements to heat or cool at least a portion of the vacuum insulated chamber to a predetermined temperature or temperature range; and

an electronic display screen configured to selectively display shipping information for the portable cooler container.

2. The portable cooler container of claim 1 , further comprising a button or touch screen manually actuatable by a user to automatically switch sender information and recipient information on the display screen to facilitate return of the portable cooler container to a sender.

3. The portable cooler container of claim 2 , further comprising one or more temperature sensors configured to sense a temperature in the vacuum insulated chamber and one or more GPS sensors configured to sense a location of the container, the one or more temperature sensors and one or more GPS sensors configured to communicate the sensed temperature data and location data to the circuitry, the circuitry configured to one or more of: a) store the sensed temperature data and location data in a memory of the container, b) wirelessly communicate the sensed temperature data and location data to a cloud-based data storage system, and c) wirelessly communicate the sensed temperature data and location data to a remote electronic device.

4. The portable container of claim 3 , further comprising one or more motion sensors configured to sense a motion of the container body and to communicate sensed motion data to the circuitry, the circuitry configured to one or more of: a) store the sensed motion data in the memory of the container, b) wirelessly communicate the sensed motion data to the cloud-based data storage system, and c) wirelessly communicate the sensed motion data to the remote electronic device.

5. The portable container of claim 4 , wherein the circuitry stores the sensed temperature data and sensed GPS data and sensed motion data in the memory of the container and one or both of wirelessly communicates the sensed temperature data and GPS data and motion data to the cloud-based data storage system and wirelessly communicates the sensed temperature data and GPS data and motion data to the remote electronic device.

6. The portable container of claim 3 , wherein the one or more thermoelectric elements are in thermal communication with the inner wall surface of the vacuum insulated chamber through a wall of the vacuum insulated chamber and are operable to heat or cool the vacuum insulated chamber via conduction heat transfer through the wall of the vacuum insulated chamber.

7. The portable cooler container of claim 1 , wherein the container body comprises an outer peripheral wall and a bottom portion attached to the outer peripheral wall, the vacuum insulated chamber suspended relative to the outer peripheral wall to define a hollow gap between the vacuum insulated chamber and the outer peripheral wall the gap being under vacuum, a base spaced apart from the bottom portion to define a cavity between the base and the bottom portion.

8. The portable cooler container of claim 7 , wherein the temperature control system further comprises a heat sink unit in thermal communication with one side of the one or more thermoelectric elements and one or more fans, the one or more fans operable to draw air through one or more air intake openings and flow air past the heat sink unit to remove heat from the heat sink unit and flow said air out through one or more exhaust openings, the circuitry configured to operate the one or more thermoelectric elements and the one or more fans to heat or cool at least a portion of the vacuum insulated chamber to the predetermined temperature or temperature range.

9. The portable cooler container of claim 8 , wherein the container body further comprises one or more electrical contacts configured to contact one or more electrical contacts of a power base when the container body is placed on the power base so that the circuitry controls the operation of the one or more thermoelectric elements and one or more fans when the container body is on the power base.

10. The portable container of claim 8 , further comprising one or more electrical connectors connectable to a power source to one or both of power the temperature control system and charge one or more batteries of the container.

11. The portable container of claim 1 , wherein the display screen is an electrophoretic display screen.

12. A portable cooler container with active temperature control, comprising:

a container body having a vacuum insulated chamber configured to receive and hold one or more containers of medicine; and

a temperature control system disposed in the container body between an outer container wall and the vacuum insulated chamber, the temperature control system comprising

one or more thermoelectric elements in thermal communication with an inner wall surface of the vacuum insulated chamber and operable to actively heat or cool at least a portion of the chamber, and

circuitry configured to control an operation of the one or more thermoelectric elements to heat or cool at least a portion of the vacuum insulated chamber to a predetermined temperature or temperature range; and

an electronic display screen actuatable to display shipping address information for the portable cooler container.

13. The portable cooler container of claim 12 , further comprising a button or touch screen manually actuatable by a user to automatically switch sender information and recipient information on the display screen to facilitate return of the portable cooler container to a sender.

14. The portable cooler container of claim 13 , further comprising one or more temperature sensors configured to sense a temperature in the vacuum insulated chamber and one or more GPS sensors configured to sense a location of the container, the one or more temperature sensors and one or more GPS sensors configured to communicate the sensed temperature data and location data to the circuitry, the circuitry configured to one or more of: a) store the sensed temperature data and location data in a memory of the container, b) wirelessly communicate the sensed temperature data and location data to a cloud-based data storage system, and c) wirelessly communicate the sensed temperature data and location data to a remote electronic device.

15. The portable container of claim 14 , further comprising one or more motion sensors configured to sense a motion of the container body and to communicate sensed motion data to the circuitry, the circuitry configured to one or more of: a) store the sensed motion data in the memory of the container, b) wirelessly communicate the sensed motion data to the cloud-based data storage system, and c) wirelessly communicate the sensed motion data to the remote electronic device.

16. The portable container of claim 15 , wherein the circuitry stores the sensed temperature data and sensed GPS data and sensed motion data in the memory of the container and one or both of wirelessly communicates the sensed temperature data and GPS data and motion data to the cloud-based data storage system and wirelessly communicates the sensed temperature data and GPS data and motion data to the remote electronic device.

17. The portable container of claim 14 , wherein the one or more thermoelectric elements are in thermal communication with the inner wall surface of the vacuum insulated chamber through a wall of the vacuum insulated chamber and are operable to heat or cool the vacuum insulated chamber via conduction heat transfer through the wall of the vacuum insulated chamber.

18. The portable cooler container of claim 12 , wherein the body comprises an outer peripheral wall and a bottom portion attached to the outer peripheral wall, the vacuum insulated chamber suspended relative to the outer peripheral wall to define a gap between the vacuum insulated chamber and the outer peripheral wall the gap being under vacuum, a base spaced apart from the bottom portion to define a cavity between the base and the bottom portion.

19. The portable cooler container of claim 18 , wherein the temperature control system further comprises a heat sink unit in thermal communication with one side of the one or more thermoelectric elements and one or more fans, the one or more fans operable to draw air through one or more air intake openings and flow air past the heat sink unit to remove heat from the heat sink unit and flow said air out through one or more exhaust openings, the circuitry configured to operate the one or more thermoelectric elements and the one or more fans to heat or cool at least a portion of the vacuum insulated chamber to the predetermined temperature or temperature range.

20. The portable container of claim 19 , further comprising one or more electrical connectors connectable to a power source to one or both of power the temperature control system and charge one or more batteries of the container.

21. The portable container of claim 12 , wherein the display screen is an electrophoretic display screen.

Assignments (6)
RELEASE OF SECURITY INTEREST Recorded Nov 15, 2024
From: GLENN J. KREVLIN, TRUSTEE OF THE GLENN J. KREVLIN 2007 REVOCABLE TRUST DATED JULY 25, 2007
To: EMBER LIFESCIENCES, INC.
Reel/Frame 069285/0806 →
RELEASE OF SECURITY INTEREST Recorded Nov 15, 2024
From: GLENN J. KREVLIN, TRUSTEE OF THE GLENN J. KREVLIN 2007 REVOCABLE TRUST
To: EMBER TECHNOLOGIES, INC.
Reel/Frame 069888/0626 →
SECURITY INTEREST Recorded Jul 29, 2022
From: EMBER LIFESCIENCES, INC.
To: KREVLIN, AS AGENT, GLENN
Reel/Frame 060672/0809 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 30, 2022
From: EMBER TECHNOLOGIES, INC.
To: EMBER LIFESCIENCES, INC.
Reel/Frame 060376/0072 →
RELEASE OF SECURITY INTEREST Recorded Jun 29, 2022
From: GLENN J. KREVLIN IRREVOCABLE TRUST FBO ADAM W. KREVLIN; GLENN J. KREVLIN IRREVOCABLE TRUST FBO SAM A. KREVLIN; GLENN J. KREVLIN, TRUSTEE OF THE GLENN J. KREVLIN 2007 REVOCABLE TRUST DATED JULY 25, 2007
To: EMBER TECHNOLOGIES, INC.
Reel/Frame 060352/0264 →
SECURITY INTEREST Recorded Jul 17, 2020
From: EMBER TECHNOLOGIES, INC.
To: KREVLIN, TRUSTEE OF THE GLENN J. KREVLIN 2007 REVOCABLE TRUST DATED JULY 25, 2007, GLENN J.
Reel/Frame 053238/0152 →
Continuity (5)
Division 16389483 · Apr 19, 2019
Provisional Application 62660013 · Apr 19, 2018
Provisional Application 62673596 · May 18, 2018
Provisional Application 62694584 · Jul 6, 2018
Related Publication 20190390890A1 · Dec 26, 2019
Cited By (3)
US 1,105,848 US 12,280,936 US 12,668,782