Abstract:
According to some embodiments, a heating, ventilating and air conditioning (HVAC) system comprises a circulation fan, one or more humidity sensors operable to sense humidity data associated with an enclosed space, and a controller. In operation, the controller receives the humidity data from the one or more humidity sensors and receives air quality data associated with at least one air pollutant. The controller determines, based on the air quality data, that a threshold associated with the air pollutant has been exceeded and determines, based on the humidity data, that a threshold associated with humidity has not been exceeded. The controller operates the circulation fan in response to determining that the threshold associated with the air pollutant has been exceeded and the threshold associated with humidity has not been exceeded, the circulation fan operated for filtration purposes while not servicing any conditioning demand.
Abstract:
A controller for a zoned HVAC system and interface screens for controlling a zoned HVAC system are disclosed herein. In one embodiment, the controller includes: (1) a processor configured to direct operation of the HVAC system according to operating data for zones thereof and (2) a display configured to provide a zone dashboard screen including a zone information area for each of the zones, wherein each the zone information area has a defined shape and is configured to provide operating data for a single one of the zones and receive a user input that selects the single one of the zones for the processor to control.
Abstract:
A HVAC system that employs atmospheric data, a controller for an HVAC system and a graphical user interface that receives atmospheric data are provided is disclosed. In one embodiment the HVAC system includes: (1) an interface that receives atmospheric data for an installed location of the HVAC system and (2) a controller that configures the HVAC system based on the atmospheric data.
Abstract:
A thermostat includes a front housing, a rear housing interoperably coupled to the front housing, at least one sensor integrated with the front housing, a display integrated with the front housing, and processing circuitry interoperably coupled to the at least one sensor and the display. The display is a touch-screen display and is configured to demonstrate a user-interface screen. The user-interface screen comprises a horseshoe-shaped temperature scale, a heat set-point control, and a cool set-point control. The heat set-point control and the cool set-point control are positioned on the horseshoe-shaped temperature scale. The horseshoe-shaped temperature scale can be adjusted by dragging at least one of the heat set-point control and the cool set-point control along circumferential edges of the horseshoe-shaped temperature scale.
Abstract:
A thermostat includes a front housing, a rear housing interoperably coupled to the front housing, at least one sensor integrated with the front housing, a display integrated with the front housing, and processing circuitry interoperably coupled to the at least one sensor and the display. The processing circuitry is configured to periodically activate the at least one sensor, receive data from the at least one sensor and determine, from the received data, whether movement has occurred. Responsive to a determination that the movement has occurred, determine whether the movement is by a human and responsive to a determination that the movement was not by the human, adjust display attributes.
Abstract:
A thermostat includes a front housing, a rear housing interoperably coupled to the front housing, at least one sensor integrated with the front housing, a display integrated with the front housing, and processing circuitry interoperably coupled to the at least one sensor and the display. The processing circuitry is configured to periodically activate the at least one sensor, receive data from the at least one sensor and determine, from the received data, whether movement has occurred. Responsive to a determination that the movement has occurred, determine whether the movement is by a human and responsive to a determination that the movement was not by the human, adjust display attributes.
Abstract:
According to some embodiments, a heating, ventilating and air conditioning (HVAC) system comprises a circulation fan, one or more humidity sensors operable to sense humidity data associated with an enclosed space, and a controller. In operation, the controller receives the humidity data from the one or more humidity sensors and receives air quality data associated with at least one air pollutant. The controller determines, based on the air quality data, that a threshold associated with the air pollutant has been exceeded and determines, based on the humidity data, that a threshold associated with humidity has not been exceeded. The controller operates the circulation fan in response to determining that the threshold associated with the air pollutant has been exceeded and the threshold associated with humidity has not been exceeded, the circulation fan operated for filtration purposes while not servicing any conditioning demand.
Abstract:
A home environment system includes a programmable thermostat and at least one server configured to communicate with the programmable thermostat via a wireless network. The at least one server is configured to receive information regarding work performed on at least one component of an HVAC system, generate a first report regarding the work performed, receive information regarding subsequent work performed on the at least one component of the HVAC system, generate a second report regarding the subsequent work performed, and perform a comparison between the first report and the second report. The at least one server is further configured to generate a comparison report that indicates differences between the first report and the second report and forward the generated comparison report to at least one of the programmable thermostat and at least one communication device.