Abstract:
A self-storage facility having a variety of differing facility components (that utilize electricity) can couple those components to an electric mains to provide operating power. Upon sensing a lack of electrical power to that electric mains, however, these teachings can provide for actuating a back-up generator to provide back-up electrical power for some or all of those components. These teachings will also accommodate, if desired, using a renewable electrical source to provide the aforementioned electrical power to a disparate grouping of facility components. These teachings will also further accommodate, as desired, providing a source of direct current electrical power (such as a 48 volt direct current electrical power source) and then coupling that source to this disparate grouping of facility components to provide their required electrical power.
Abstract:
A system and method for training a learning transceiver to a movable barrier system includes a learning transceiver that is configured for being trained to the movable barrier system. To provide ease of use to consumers, a user is able to train the learning transceiver to the movable barrier system without needing to push a button on a movable barrier operator or use a pretrained transmitter. To this end, a movable barrier operator is configured to transmit a transmission signal to the learning transceiver including a rolling access code, which is used to train the learning transceiver. To maintain the security of the movable barrier system and to restrict unauthorized users from accessing the movable barrier system, the movable barrier operator waits to transmit the transmission signal, including the rolling access code, to the learning transceiver until it has received an indication that a predetermined event occurred.
Abstract:
A secure communication link (24) is provided between a movable barrier operator (23) and a peripheral alarm system (20). Information conveyed via this link is used by one, the other, or both such elements to further inform or direct their respective actions.
Abstract:
A method for use in relation to a security system includes receiving one or more items of information that each identify things or users associated with the security system, and forming a fixed portion of a security code using the one or more items of information. The fixed portion of the security code is stored in an apparatus that is configured to transmit the security code. A method and apparatus involving the receipt of such a security code are also disclosed. A method for use in relation to a security system includes generating a fixed portion of a security code, and setting a value of the fixed portion of the security code to a value that has a relationship to a fixed portion of a previously learned security code. The relationship indicates that the fixed portion of the security code is a replacement for the fixed portion of the previously learned security code. The fixed portion of the security code is stored in an apparatus that is configured to transmit the security code. A method and apparatus involving the receipt of such a security code are also disclosed.
Abstract:
A method for use in relation to a security system includes receiving one or more items of information that each identify things or users associated with the security system, and forming a fixed portion of a security code using the one or more items of information. The fixed portion of the security code is stored in an apparatus that is configured to transmit the security code. A method and apparatus involving the receipt of such a security code are also disclosed. A method for use in relation to a security system includes generating a fixed portion of a security code, and setting a value of the fixed portion of the security code to a value that has a relationship to a fixed portion of a previously learned security code. The relationship indicates that the fixed portion of the security code is a replacement for the fixed portion of the previously learned security code. The fixed portion of the security code is stored in an apparatus that is configured to transmit the security code. A method and apparatus involving the receipt of such a security code are also disclosed.
Abstract:
A system and method are provided that use at least one proximity sensor to illuminate a transmitter such that the transmitter can be seen by the user and/or to activate the transmitter so that the user can interface with the transmitter and send code to a receiver via the transmitter to effect an action, such as the opening or closing of a barrier or garage door. The transmitter can also be deactivated so that the proximity sensor is not continually triggering actions by the transmitter thereby potentially causing unwanted actions by the transmitter.
Abstract:
A movable barrier operator remote controller can comprise a vibration-powered electrical generator, a user interface, and a wireless transmitter configured to transmit a movable barrier operator communication in response to the user interface and as powered, at least in part, by the vibration-powered electrical generator. The controller can further comprise an electrical-energy storage unit (such as a battery and/or a capacitor) that is coupled to an electric power output of the vibration-powered electrical generator to thereby receive and store electric power from the vibration-powered electrical generator. So configured, the electrical-energy storage unit can provide operating power to the wireless transmitter on an as-needed basis.
Abstract:
A movable barrier operator system includes a motor that is used to move a movable barrier. The system also includes an audio amplifier device. First power is supplied to the audio amplifier device to thereby render corresponding content locally audible. Information regarding starting of the motor is received and the first power supplied to the audio amplifier device is automatically reduced in response to receiving the information.
Abstract:
A secure communication link (24) is provided between a movable barrier operator (23) and a peripheral alarm system (20). Information conveyed via this link is used by one, the other, or both such elements to further inform or direct their respective actions.
Abstract:
A movable barrier operator system includes a motor that is used to move a movable barrier. The system also includes an audio amplifier device. First power is supplied to the audio amplifier device to thereby render corresponding content locally audible. Information regarding starting of the motor is received and the first power supplied to the audio amplifier device is automatically reduced in response to receiving the information.