IP Library Granted Patent US 12,686,316
Granted Patent B2
US 12,686,316 · App. 18/422,800 · Granted Jul 21, 2026

Smart temperature-controlled beverage cupholder

Inventors: Alok Anand (Troy, MI); Kevin W. Owens (Sterling Heights, MI); Cleavon Allen Tomlinson (Southfield, MI); Bilal Sakbani (Ferndale, MI)
Assignee: GM GLOBAL TECHNOLOGY OPERATIONS LLC
B60N3/104F25D31/007F25D2331/805F25D2331/809F25D2700/06
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 12,686,316
App. No.
18/422,800
Filed
Jan 25, 2024
Granted
Jul 21, 2026
Kind
B2
Art Unit
3763
USPC
62/244
Abstract

A cupholder temperature control system including a pressure sensor for detecting an object within a cupholder, a temperature sensor for detecting a current object temperature of the object, an optical sensor for capturing an image of the object, a processor to perform an image recognition algorithm to detect at least one of a logo, a bar code and a quick response code on the object, to determine the object is a beverage container in response to a detection of the at least one of the logo, the bar code and the quick response code, to generate a control signal in response to the current object temperature differing from an ambient temperature by a threshold amount and the object being a beverage container, and a heat transfer system configured to maintain the current object temperature of the object in response to the control signal.

Claims (37)

1 . A cupholder temperature control system comprising:

a sensor for detecting an object within a cupholder;

a temperature sensor for detecting a current object temperature of the object;

an optical sensor for detecting a quick response (QR) code on the object in response to a detection of the object within the cupholder;

a processor in operable communication with the sensor, the optical sensor, and the temperature sensor and configured to estimate a type of object and a contents of the object in response to the current object temperature and the QR code, retrieve a heating instruction in response to the contents of the object and generate a control signal in response to the current object temperature and the heating instruction; and

a heat transfer system in operable communication with the processor and configured to perform a heating function on the object in response to the control signal.

2 . The cupholder temperature control system of claim 1 , wherein the type of object includes at least one of a can and a cup.

3 . The cupholder temperature control system of claim 1 , wherein the heating instruction includes a temperature value associated with the contents of the object.

4 . The cupholder temperature control system of claim 1 wherein the wherein the contents of the object are estimated to be a coffee from a coffee shop and wherein the heating instruction includes a warming temperature associated with a coffee from the coffee shop.

5 . The cupholder temperature control system of claim 1 further including a pressure sensor and wherein the heat transfer system is activated in response an output of the pressure sensor corresponding to a weight of the object exceeding a threshold value.

6 . The cupholder temperature control system of claim 1 further including a pressure sensor situated within the cupholder and wherein a presence of the object is determined in response to a change in pressure detected by the pressure sensor.

7 . The cupholder temperature control system of claim 1 wherein an initial temperature setting of the heat transfer system is determined in response to the current object temperature.

8 . The cupholder temperature control system of claim 1 wherein an initial temperature setting of the heat transfer system is determined in response to a prior user defined temperature associated with the object.

9 . The cupholder temperature control system of claim 1 wherein the heat transfer system is activated in response to the current object temperature differing from an ambient temperature by a threshold temperature value.

10 . A method for controlling a cupholder temperature control system comprising:

detecting an object within a cupholder;

determining a current temperature of the object;

detecting, by an optical sensor, a quick response (QR) code on the object in response to a detection of the object within the cupholder;

estimating a type of object and a contents of the object in response to the current temperature of the object and the QR code;

retrieving a heating instruction in response to the contents of the object;

generating a control signal in response to the current temperature of the object and the heating instruction; and

activating a heat transfer system to perform a heating function on the object within the cupholder in response to the control signal.

11 . The method for controlling the cupholder temperature control system of claim 10 wherein the optical sensor is a camera and wherein a processor performs an image recognition algorithm to determine the object is the beverage container and wherein the type of object includes at least one of a can and a cup and wherein.

12 . The method for controlling the cupholder temperature control system of claim 10 wherein a determination that the object is the beverage container is performed in response to the current temperature of the object exceeding a threshold difference from an ambient temperature within a vehicle cabin.

13 . The method for controlling the cupholder temperature control system of claim 10 wherein a determination that the object is the beverage container is performed in response to the current temperature of the object exceeding a threshold difference from an ambient temperature outside of a vehicle including the cupholder.

14 . The method for controlling the cupholder temperature control system of claim 10 wherein the object is detected within the cupholder in response to a change in an output value of a pressure sensor situated within the cupholder.

15 . The method for controlling the cupholder temperature control system of claim 10 including generating a user interface in response to generating the control signal, receiving a user input corresponding to a temperature and controlling the heat transfer system in response to the temperature.

16 . The method for controlling the cupholder temperature control system of claim 10 including generating a user interface in response to generating the control signal, receiving a user input corresponding to a temperature, controlling the heat transfer system in response to the temperature and storing the temperature and an indication of the beverage container in a memory wherein the temperature is used as a default temperature for the heat transfer system in response to a detection of the beverage container within the cupholder.

17 . The method for controlling the cupholder temperature control system of claim 10 wherein the object is determined to be the beverage container in response to at least one of a logo, a bar code, and the quick response code on the beverage container.

18 . The method for controlling the cupholder temperature control system of claim 10 wherein the heating instruction includes a temperature value associated with the contents of the object and wherein the contents of the object are estimated to be a coffee from a coffee shop and wherein the heating instruction includes a warming temperature associated with a coffee from the coffee shop.

19 . A cupholder temperature control system comprising;

a pressure sensor for detecting an object within a cupholder;

a temperature sensor for detecting a current object temperature of the object;

an optical sensor for capturing an image of the object;

a processor in operable communication with the pressure sensor, the optical sensor, and the temperature sensor, the processor configured to perform an image recognition algorithm to detect a quick response (QR) code on the object, to determine the object is a beverage container in response to a detection of the quick response code, to estimate a contents of the object in response to the current object temperature and the QR code, retrieve a heating instruction in response to the contents of the object, to generate a control signal in response to the current object temperature differing from an ambient temperature by a threshold amount m the heating instructions, and the object being a beverage container; and

a heat transfer system in operable communication with the processor and configured to perform a heating function on the object to maintain the current object temperature of the object in response to the control signal.

20 . The cupholder temperature control system of claim 19 further including a user interface for providing an indication of an activation of the heat transfer system, for receiving a user input indicative of an alternate temperature and wherein the heat transfer system is further configured to operate at the alternate temperature in response to the user input.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 26, 2024
From: ANAND, ALOK; OWENS, KEVIN W.; TOMLINSON, CLEAVON ALLEN; SAKBANI, BILAL
To: GM GLOBAL TECHNOLOGY OPERTAIONS LLC
Reel/Frame 066252/0896 →
Continuity (1)
Related Publication 20250242739A1 · Jul 31, 2025
References Cited (7)
US 20160023585A1 · Salter · 2016 [cited by examiner]
US 20200047654A1 · Pine · 2020 [cited by examiner]
US 20200180490A1 · Benliyan · 2020 [cited by examiner]
US 20230169772A1 · Naparstek · 2023 [cited by examiner]
DE 102015112074A1 · 2016 [cited by applicant]
DE 102018128710B3 · 2020 [cited by applicant]
DE 102022125658A1 · 2024 [cited by applicant]