IP Library Granted Patent US 10,633,012
Granted Patent B2
US 10,633,012 · App. 14/956,773 · Granted Apr 28, 2020

Self-checkout in retail stores

Inventors: Simon Phillips (York, GB); Alan Johnson (Essex, GB)
Assignee: Mastercard International Incorporated
B62B5/0096B60B19/00G06Q20/208G06Q30/0633G07G1/0036G07G1/0081B60B33/0015B60B2200/432B62B3/14B62B2203/50
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Quick Facts
Patent No.
US 10,633,012
App. No.
14/956,773
Granted
Apr 28, 2020
Kind
B2
Abstract

A wheel assembly for installation on a shopping cart to retro-fit the shopping cart for facilitating self-checkout. The wheel assembly may include a support structure and a wheel rotatably supported on the support structure. The wheel assembly may further include a rechargeable battery supported by the support structure and a charging module supported on the support structure. In addition, the wheel assembly may include a force-detection module configured to provide a signal related to an item event in which an item is deposited within the shopping cart. Still further, the wheel assembly may include a processing and communications unit configured to receive the signal from the force-detection module. The processing and communications unit may transmit the signal to a device that is separate from the wheel assembly.

Claims (18)

1. A wheel assembly for installation on a shopping cart to retro-fit the shopping cart for facilitating self-checkout by replacing a wheel on the shopping cart with the wheel assembly, said wheel being a first wheel, the wheel assembly comprising:

a support structure;

a second wheel rotatably supported on the support structure;

a mounting mechanism secured or integral to the support structure to allow the wheel assembly to be retrofittingly mounted to a body of the shopping cart;

a rechargeable battery supported by the support structure;

a charging module supported on the support structure, the charging module configured to convert rotational energy of the wheel into electrical energy for charging the rechargeable battery;

a force-detection module supported on the support structure and configured to provide a signal related to an item event in which an item is deposited within the shopping cart; and

a processing and communications unit configured to receive the signal from the force-detection module and to transmit said signal to a device that is separate from the wheel assembly.

2. The wheel assembly of claim 1 , wherein the device that is separate from the wheel assembly is another wheel assembly.

3. The wheel assembly of claim 1 , wherein the device that is separate from the wheel assembly is a mobile device.

4. The wheel assembly of claim 3 , wherein the mobile device is a payment-enabled smartphone.

5. The wheel assembly of claim 1 , wherein the processing and communications unit is configured to engage in wireless communication with a device that is separate from the wheel assembly.

6. The wheel assembly of claim 1 , wherein the force-detection module includes a strain-gauge.

7. A method comprising:

receiving, in a shopping cart wheel assembly, a signal indicative of an event in which an item is deposited within a shopping cart; and

reporting the event to a mobile device from a processing and communications unit of the wheel assembly; said reporting including reporting a weight of the item;

the method further comprising:

prior to the reporting step, calculating the weight of the item based at least in part on signals received from a plurality of other wheel assemblies.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 2, 2015
From: PHILLIPS, SIMON; JOHNSON, ALAN
To: MASTERCARD INTERNATIONAL INCORPORATED
Reel/Frame 037189/0977 →
Continuity (1)
Related Publication 20170158215A1 · Jun 8, 2017