Abstract:
A transmitter for wirelessly controlling a plurality of remote electronic systems includes a memory, a transmitter circuit, and a control circuit. The memory is configured to store a plurality of control data messages, each control data message configured to control a different remote electronic system. The control circuit is configured to command the transmitter circuit to transmit a plurality of wireless control signals in response to a single event, each wireless control containing a different control data message.
Abstract:
Electronic systems are provided for secure actuation of a remote device such as a moveable barrier operator. The systems address the “man in the middle” problem of persons intercepting and duplicating radio frequency signals from a control device by introducing timing parameters into a bidirectional communication sequence between at least two devices.
Abstract:
An at least partially secure communication environment is provided in which accessory devices can be communicated with and controlled in the context of a movable barrier operator system. In one example approach, a gateway device can be configured to coordinate and control such communications in a secure manner. Three example approaches to such a communication environment include: a gateway device's receiving an accessory device control signal and sending a rolling code based accessory command signal to a target accessory device; receiving a rolling code based accessory device control signal and sending a command signal to an accessory device; and receiving a rolling code based accessory device control signal and sending a rolling code based accessory command signal to a target accessory device. Combinations are possible. An integrated system provides for automatic functioning of one device in response to status changes of one or more other devices.
Abstract:
A system for controlling a remote device includes a first trainable transceiver, a second trainable transceiver, and a cloud computing system configured to be in communication with the first trainable transceiver and the second trainable transceiver. The cloud computing system stores a code roll, and the cloud computing system transmits a current value of the code roll to the first trainable transceiver or the second trainable transceiver upon receiving a request transmission from the first trainable transceiver or the second trainable transceiver respectively.
Abstract:
A trainable transceiver for installation in a vehicle and for controlling a remote device includes a transceiver circuit configured, based on training information, to control the remote device, a communications device configured to communicate with a mobile communications device, an output device, and a control circuit coupled to the transceiver circuit, coupled to the communications device, and coupled to the output device. The control circuit is configured to receive notification information from the mobile communications device via the communications device, and wherein the control circuit is configured to generate an output using the output device based on the notification information.
Abstract:
A system for controlling a remote device including a trainable transceiver, communications electronics, and a processing circuit coupled to the trainable transceiver and the communications electronics. The processing circuit is configured to cause the trainable transceiver to control a remote device in response to a signal received from a cloud computing system, wherein the signal is received from the cloud computing system using the communications electronics.
Abstract:
A system for controlling a remote device includes a first trainable transceiver, a second trainable transceiver, and a cloud computing system configured to be in communication with the first trainable transceiver and the second trainable transceiver. The cloud computing system stores a code roll, and the cloud computing system transmits a current value of the code roll to the first trainable transceiver or the second trainable transceiver upon receiving a request transmission from the first trainable transceiver or the second trainable transceiver respectively.
Abstract:
An at least partially secure communication environment is provided in which accessory devices can be communicated with and controlled in the context of a movable barrier operator system. In one example approach, a gateway device can be configured to coordinate and control such communications in a secure manner. Three example approaches to such a communication environment include: a gateway device's receiving an accessory device control signal and sending a rolling code based accessory command signal to a target accessory device; receiving a rolling code based accessory device control signal and sending a command signal to an accessory device; and receiving a rolling code based accessory device control signal and sending a rolling code based accessory command signal to a target accessory device. Combinations are possible. An integrated system provides for automatic functioning of one device in response to status changes of one or more other devices.