MLchartDataset catalogue

Patent · US10096187B2 · B2 · US

Automatic transmission of a barrier status and change of status over a network

(11) Publication number
US10096187B2
(21) Application number
14/682,931
(22) Filing date
2015-04-09
(30) Priority date
2015-04-09
(43) Publication date
2018-10-09
(45) Date of grant
2018-10-09
(51) IPC
E05F 1/00; E05F 15/00; G07C 9/00; E05F 15/668; E05F 15/70; E05F 15/77
(52) CPC
  • G07C Time or attendance registers; registering or indicating the working of machines; generating random numbers; voting or lottery apparatus; arrangements, systems or apparatus for checking not provided for elsewhere: 9/00571, 2009/00928
  • E05F Devices for moving wings into open or closed position; checks for wings; wing fittings not otherwise provided for, concerned with the functioning of the wing: 15/668, 15/70, 15/77
  • E05Y Indexing scheme associated with subclasses E05D and E05F, relating to construction elements, electric control, power supply, power signal or transmission, user interfaces, mounting or coupling, details, accessories, auxiliary operations not otherwise provided for, application thereof: 2400/66, 2400/80, 2400/8515, 2900/106
(73) Assignee
Overhead Door Corp
(72) Inventors
Tom Deneen; Brent Alan Rauscher; Brent Buescher, JR.; Mike Dragomier
(54) Title
Automatic transmission of a barrier status and change of status over a network
(57) Abstract

An Internet based system for remotely monitoring and changing the open/closed door status of a garage door. A position detector is coupled to the door. The position detector has at least one tilt switch, and preferably two substantially orthogonal with respect to one another, for determining the barrier status, which indicates whether the door is in the open or closed position, and a wireless transmitter that transmits the barrier status to a multi-functional control module based upon a change thereof and/or an automatic pre-established periodic pulse. A multi-functional control module transmits the barrier status, upon a change thereof and/or an automatic pre-established periodic pulse to the Internet Cloud, and thereafter to a Smartphone. No request is ever made to obtain door status. The control module also receives a command from the Internet Cloud to move one or more doors. The control module pushes the barrier status to the Internet in response to receipt thereof, and not in response to a request for the barrier status. A Smartphone sends the command to the Internet, receives the barrier status therefrom, and displays the barrier status.

Full text
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Claims (3)

  1. An Internet based communication system for remotely monitoring, as well as remotely changing, via the Internet, the open or closed door status of respective ones of a plurality of garage doors, the garage doors adapted to be respectively moved between their open and closed positions by, when actuated, associated door operators, the communication system comprising: door position detectors sufficiently proximate to respective ones of said plurality of garage doors to monitor and wirelessly transmit their respective open or closed door status; a control module in wireless communication with said door position detectors for receiving the so transmitted door status, the control module in wireless communication with a router; each of the door operators respectively conductively connected to the control module by way of wire connections through normally-open electrical relays, the closing of the electrical relay associated with its door operator enabling actuation of that door operator; the control module configured to (a) enable pairing of the electrical relays with respective door position detectors, and thus pairing with the garage doors to which the door position detectors are respectively associated, and (b) wirelessly transmit, via said router and the Internet, to an Internet server, first coded information representing (i) the open or closed door status of respective garage doors, (ii) the pairing of the electrical relays with the respective garage doors, and (iii) the identification of the said router; the Internet server configured to store said first coded information for subsequent transmission to a Smartphone; and the control module additionally configured to receive second coded information transmitted by the Smartphone representing (i) a change of door status command for each garage door selected by the user of the Smartphone, (ii) the pairing of the electrical relay with each so-selected garage door, and (iii) the identification of the said router, whereby each electrical relay paired with a selected garage door closes, thereby enabling the actuation of the associated door operator in compliance with the change of door status command.
  2. The communication system of claim 1, wherein the door position detectors push the door status to the control module at regular time intervals or change of door status, and without request therefor.
  3. The communication system of claim 1, wherein the control module pushes the first coded information to the Internet server at regular time intervals or change of door status, and without request therefor.

Description

The present disclosure relates to the field of remote monitoring and controlling, over a network, the status of a movable barrier, and more particularly to the field of remote monitoring and instructing changes to, over the Internet, the open or closed status of a movable garage door.

Movable barriers, such as upward acting sectional or single panel garage doors, residential and commercial rollup doors, and slidable and swingable gates, are used to alternatively allow and restrict entry to building structures and property. These barriers are driven between their respective open and closed positions by coupled barrier moving units, sometimes referred to as “barrier operators”, and in the specific case of a door, as “door operators,” and in the even more specific case of a garage door, as “garage door operators.”

For example, a typical garage door operator for driving an upward acting sectional garage door between its open and closed positions includes, as a central control unit, a microcontroller for (i) processing incoming user-actuated door instructions and (ii) generating output control signals corresponding to these instructions; a motor controller for receiving and transmitting these control signals to a motor; and a DC or AC motor drivingly coupled to the garage door. The user-actuated door instructions are in the form of wired or wireless signals transmitted to the microcontroller from interior or exterior wall consoles or from proximately located hand held or vehicle mounted RF transmitters.

Citations (62)

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Record as JSON
{
  "publication_number": "US10096187B2",
  "country": "US",
  "kind": "B2",
  "title": "Automatic transmission of a barrier status and change of status over a network",
  "abstract": "An Internet based system for remotely monitoring and changing the open/closed door status of a garage door. A position detector is coupled to the door. The position detector has at least one tilt switch, and preferably two substantially orthogonal with respect to one another, for determining the barrier status, which indicates whether the door is in the open or closed position, and a wireless transmitter that transmits the barrier status to a multi-functional control module based upon a change thereof and/or an automatic pre-established periodic pulse. A multi-functional control module transmits the barrier status, upon a change thereof and/or an automatic pre-established periodic pulse to the Internet Cloud, and thereafter to a Smartphone. No request is ever made to obtain door status. The control module also receives a command from the Internet Cloud to move one or more doors. The control module pushes the barrier status to the Internet in response to receipt thereof, and not in response to a request for the barrier status. A Smartphone sends the command to the Internet, receives the barrier status therefrom, and displays the barrier status.",
  "claims": [
    "1. An Internet based communication system for remotely monitoring, as well as remotely changing, via the Internet, the open or closed door status of respective ones of a plurality of garage doors, the garage doors adapted to be respectively moved between their open and closed positions by, when actuated, associated door operators, the communication system comprising: door position detectors sufficiently proximate to respective ones of said plurality of garage doors to monitor and wirelessly transmit their respective open or closed door status; a control module in wireless communication with said door position detectors for receiving the so transmitted door status, the control module in wireless communication with a router; each of the door operators respectively conductively connected to the control module by way of wire connections through normally-open electrical relays, the closing of the electrical relay associated with its door operator enabling actuation of that door operator; the control module configured to (a) enable pairing of the electrical relays with respective door position detectors, and thus pairing with the garage doors to which the door position detectors are respectively associated, and (b) wirelessly transmit, via said router and the Internet, to an Internet server, first coded information representing (i) the open or closed door status of respective garage doors, (ii) the pairing of the electrical relays with the respective garage doors, and (iii) the identification of the said router; the Internet server configured to store said first coded information for subsequent transmission to a Smartphone; and the control module additionally configured to receive second coded information transmitted by the Smartphone representing (i) a change of door status command for each garage door selected by the user of the Smartphone, (ii) the pairing of the electrical relay with each so-selected garage door, and (iii) the identification of the said router, whereby each electrical relay paired with a selected garage door closes, thereby enabling the actuation of the associated door operator in compliance with the change of door status command.",
    "2. The communication system of claim 1, wherein the door position detectors push the door status to the control module at regular time intervals or change of door status, and without request therefor.",
    "3. The communication system of claim 1, wherein the control module pushes the first coded information to the Internet server at regular time intervals or change of door status, and without request therefor."
  ],
  "description_excerpt": "The present disclosure relates to the field of remote monitoring and controlling, over a network, the status of a movable barrier, and more particularly to the field of remote monitoring and instructing changes to, over the Internet, the open or closed status of a movable garage door.\n\nMovable barriers, such as upward acting sectional or single panel garage doors, residential and commercial rollup doors, and slidable and swingable gates, are used to alternatively allow and restrict entry to building structures and property. These barriers are driven between their respective open and closed positions by coupled barrier moving units, sometimes referred to as “barrier operators”, and in the specific case of a door, as “door operators,” and in the even more specific case of a garage door, as “garage door operators.”\n\nFor example, a typical garage door operator for driving an upward acting sectional garage door between its open and closed positions includes, as a central control unit, a microcontroller for (i) processing incoming user-actuated door instructions and (ii) generating output control signals corresponding to these instructions; a motor controller for receiving and transmitting these control signals to a motor; and a DC or AC motor drivingly coupled to the garage door. The user-actuated door instructions are in the form of wired or wireless signals transmitted to the microcontroller from interior or exterior wall consoles or from proximately located hand held or vehicle mounted RF transmitters.",
  "cpc": [
    "G07C 9/00571",
    "E05F 15/668",
    "E05F 15/70",
    "E05F 15/77",
    "E05Y 2400/66",
    "E05Y 2400/80",
    "E05Y 2400/8515",
    "E05Y 2900/106",
    "G07C 2009/00928"
  ],
  "ipc": [
    "E05F 1/00",
    "E05F 15/00",
    "G07C 9/00",
    "E05F 15/668",
    "E05F 15/70",
    "E05F 15/77"
  ],
  "assignees": [
    "Overhead Door Corp"
  ],
  "inventors": [
    "Tom Deneen",
    "Brent Alan Rauscher",
    "Brent Buescher, JR.",
    "Mike Dragomier"
  ],
  "filing_date": "2015-04-09",
  "publication_date": "2018-10-09",
  "grant_date": "2018-10-09",
  "priority_date": "2015-04-09",
  "application_number": "US-201514682931-A",
  "family_id": "57111869",
  "cited_by_count": 33,
  "citations": [
    "US3833895A",
    "US4463292A",
    "US4821024A",
    "US5148159A",
    "US5402105A",
    "US5903226A",
    "USRE37784E1",
    "US5798681A",
    "US5872513A",
    "US6553238B1",
    "US6243000B1",
    "US6184787B1",
    "US6166634A",
    "US6388559B1",
    "US6615132B1",
    "US7161319B2",
    "US6011468A",
    "US7342368B2",
    "US6791467B1",
    "US6310548B1",
    "US6346889B1",
    "US6980117B1",
    "US20020183008A1",
    "US20020180600A1",
    "US7158043B2",
    "US6624605B1",
    "US20030076235A1",
    "US6597291B2",
    "US6724316B2",
    "US6975203B2",
    "USRE44816E1",
    "US7034484B2",
    "US6998977B2",
    "US20040212498A1",
    "US7071813B2",
    "US7224275B2",
    "US7181174B2",
    "USRE41452E1",
    "US7778604B2",
    "US6989760B2",
    "US7119681B2",
    "US8345010B2",
    "US7750890B2",
    "US7266344B2",
    "US7515063B2",
    "US7482923B2",
    "US8144011B2",
    "US7852212B2",
    "US7876218B2",
    "US7468676B2",
    "US7532709B2",
    "US7498936B2",
    "US8643465B2",
    "US8207818B2",
    "US8279040B2",
    "US20100297941A1",
    "US8587404B2",
    "US8421591B2",
    "US20110311052A1",
    "US8866583B2",
    "US20150077219A1",
    "US20150148983A1"
  ]
}

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