RETAIL INTERNET OF THINGS (IoT) PLATFORM WITH IN-STORE CONTACTLESS CALL BUTTON
20210375116 · 2021-12-02
Inventors
- Julia Truchsess (Sandy Hook, CT, US)
- Bill Dussinger (Cumberland, RI, US)
- Mark Barnes (Newport, RI, US)
Cpc classification
G08B25/12
PHYSICS
G08B21/182
PHYSICS
International classification
Abstract
The present invention describes a contactless signaling system for retail and other commercial environments whereby customers or workers can submit requests for assistance without the need to physically touch any button or other input device. A contactless call button unit comprises a proximity sensor operatively communicating with transmission means for sending a signal to at least one of a hub appliance and an employee communication receiver. The proximity sensor is triggered without requiring the user to physically contact the call button unit. Instead, when a portion of the user's body, such as the user's hand or finger, is within a predefined distance from the call button unit for a predefined period of time, a signal will be transmitted with a call request message.
Claims
1. A contactless client signaling system for use within a retail Internet of Things (IoT) platform, said contactless client signaling system comprising: a contactless call button unit in operative communication with at least one of a hub appliance and an employee communication receiver for providing an alert signal when said call button unit is engaged, said call button unit comprising a proximity sensor and a transmitter, wherein the alert signal is transmitted by the transmitter when the proximity sensor is triggered, said proximity sensor being triggered when a portion of a user's body is within a predefined distance from the call button unit; wherein the proximity sensor can be triggered without any direct contact between the user and the call button unit.
2. The contactless client signaling system according to claim 1, wherein the proximity sensor comprises a capacitance sensor.
3. The contactless client signaling system according to claim 1, wherein the proximity sensor comprises a pyroelectric sensor.
4. The contactless client signaling system according to claim 1, wherein the proximity sensor comprises a reflected light sensor.
5. The contactless client signaling system according to claim 1, wherein the proximity sensor comprises an ultrasonic sensor.
6. The contactless client signaling system according to claim 1, wherein the proximity sensor comprises an ambient light sensor.
7. The contactless client signaling system according to claim 1, wherein the predefined distance is between about 1 inch and about 12 inches.
8. The contactless client signaling system according to claim 7, wherein the predefined distance is between about 1 inch and about 3 inches.
9. The contactless client signaling system according to claim 1, wherein the proximity sensor will not be triggered unless a portion of the user's body with within the predefined distance from the call button unit for a predefined period of time.
10. The contactless client signaling system according to claim 1, wherein the call button unit is in operative communication with a communication device that operates when the proximity sensor is triggered.
11. The contactless client signaling system according to claim 10, wherein the communication device comprises at least one of an intercom speaker; an intercom microphone; an interactive digital display; a video conferencing system; and a signal light.
12. A contactless client signaling system for use within a retail Internet of Things (IoT) platform, said contactless client signaling system comprising: a contactless call button unit in operative communication with at least one of a hub appliance and an employee communication receiver for providing an alert signal when said call button unit is engaged, said call button unit comprising a proximity sensor and a transmitter, wherein the alert signal is transmitted by the transmitter when the proximity sensor is triggered, said proximity sensor being triggered when a portion of a user's body is within a predefined distance from the call button unit; and a communication device located proximate the call button unit that is operable when the proximity sensor is triggered; wherein the proximity sensor can be triggered without any direct contact between the user and the call button unit; and wherein the proximity sensor will not be triggered unless a portion of the user's body with within the predefined distance from the call button unit for a predefined period of time.
13. The contactless client signaling system according to claim 12, wherein the communication device comprises at least one of an intercom speaker; an intercom microphone; an interactive digital display; a video conferencing system; and a signal light.
14. The contactless client signaling system according to claim 12, wherein the proximity sensor comprises a capacitance sensor.
15. The contactless client signaling system according to claim 12, wherein the proximity sensor comprises a pyroelectric sensor.
16. The contactless client signaling system according to claim 12, wherein the proximity sensor comprises a reflected light sensor.
17. The contactless client signaling system according to claim 12, wherein the proximity sensor comprises an ultrasonic sensor.
18. The contactless client signaling system according to claim 12, wherein the proximity sensor comprises an ambient light sensor.
19. The contactless client signaling system according to claim 12, wherein the predefined distance is between about 1 inch and about 12 inches.
20. The contactless client signaling system according to claim 19, wherein the predefined distance is between about 1 inch and about 3 inches.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
[0027] Referring to
[0028] In alternate embodiments of the present invention, the call buttons 102 can be in direct communication with an employee communication receiver device (such as, a worker's radio, phone, tablet, computer, walkie-talkie, or other receiver device) so that a customer's call request can be sent to a designated employee for response. In this regard, individual call buttons 102 can be connected to specifically designated employees, such as, for example, covering different departments of a retail store. Even when requests from the call buttons 102 are routed to employee communication receiver devices in this manner, the signals may also be send to the central hub appliance 106.
[0029] In accordance with embodiments of the present invention, the call button 102 can be triggered without the user needing to make direct contact with the call button unit 102 in any way. Instead, a “touchless” or “contactless” call button 102 can be triggered without requiring the customer to touch the button 102. An embodiment of a contactless call button unit 102 in accordance with the present invention is illustrated in
[0030] In operation, when a portion of the user's body, typically the user's hand or finger, is placed in close proximity with the call button unit 102, the proximity sensor 120 will be triggered. In accordance with the present invention, the user's hand must be within a predefined distance from the call button unit 102 in order to trigger a call message. Preferably, the user's hand must be in the range of about 1 inch to about 12 inches to trigger the proximity sensor 120, and more preferably between about 1 inch to about 3 inches. Optimally, the call button unit 102 should not be so sensitive as to be easily triggered merely by customers passing by the call button unit 102. In alternate embodiments, the proximity sensor 120 may require the user to be proximal the sensor 120 for a predefined period of time in order to trigger a call message. For example, in preferred embodiments, the user much be positioned by the sensor 120 between about 0 seconds and about 5 seconds in order to trigger the call button 102, and more preferably between about 0 seconds and about 3 seconds, and even more preferably between about 0.5 seconds and about 3 seconds, so that so the sensor is not easily triggered merely by customers or objects passing by the call button unit 102 for a fleeting moment. Once the proximity sensor 120 is triggered, the microcontroller can transmit a signal via a transmitter to a receiver 104 in the IoT platform 100.
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[0036] The present invention can further comprise a facility-wide signaling system comprised of a central hub appliance 106 and a plurality of contactless call buttons 102 distributed throughout the floorplan of the facility that can be activated without the need for physical touch or contact with the user. The signaling system will be able to discern from which call button 102 the message originated and be able to alert a store employee of where assistance is needed. In alternate embodiments, when a call button 102 is triggered, a line of communication can be created directly between a remotely located store employee, for example, by means of a computer workstation or via a tablet or phone, and a customer whereby the employee can interact aurally and/or visually with the customer through devices associated with the call button unit 102.
[0037] In alternate embodiments, the call button unit 102 can include aural or visual components that can be triggered by the proximity sensor such as generally illustrated in
[0038] The foregoing description of embodiments of the present invention has been presented for the purpose of illustration and description. It is not intended to be exhaustive or to limit the invention to the form disclosed. Obvious modifications and variations are possible in light of the above disclosure. The embodiments described were chosen to best illustrate the principles of the invention and practical applications thereof to enable one of ordinary skill in the art to utilize the invention in various embodiments and with various modifications as suited to the particular use contemplated.