Patent classifications
F24F1/04
PORTABLE DEHUMIDIFIER WITH REMOTE MOISTURE SENSOR
A portable dehumidifier includes a remote moisture sensor that is capable of being physically positioned at a location that is remote from a portable housing of the portable dehumidifier to sense moisture at the location. In some instances, the remote moisture sensor may be positioned near or on clothing in order to sense the dryness of the clothing and/or positioned near or on floors, walls, furniture, etc., in order sense the dryness thereof in connection with water damage restoration.
PORTABLE AIR CONDITIONING UNIT WINDOW INSTALLATION SYSTEM
A portable air conditioner unit window installation system having a closure plate, a vent opening through the closure plate, a clamp fixture located adjacent to the vent opening in a longitudinal direction of the closure plate, and a clamp movably mounted to the clamp fixture.
PORTABLE AIR CONDITIONING UNIT WINDOW INSTALLATION SYSTEM
A portable air conditioner unit window installation system having a closure plate, a vent opening through the closure plate, a clamp fixture located adjacent to the vent opening in a longitudinal direction of the closure plate, and a clamp movably mounted to the clamp fixture.
WINDOW AIR CONDITIONING UNIT INSTALLATION SYSTEM
A window air conditioner installation system comprising a top rail, a bottom rail, a first vertical rail configured to connect to the top rail and the bottom rail, and a second vertical rail configured to connect to the top rail and the bottom rail. A clamp fixture is connected to the top rail, and a clamp is movably mounted to the clamp fixture. The clamp is movable between a first clamp position in which a clamp face is a first distance from the top rail in a depth direction, a second clamp position in which the clamp face is a second distance from the top rail in the depth direction.
WINDOW AIR CONDITIONING UNIT INSTALLATION SYSTEM
A window air conditioner installation system comprising a top rail, a bottom rail, a first vertical rail configured to connect to the top rail and the bottom rail, and a second vertical rail configured to connect to the top rail and the bottom rail. A clamp fixture is connected to the top rail, and a clamp is movably mounted to the clamp fixture. The clamp is movable between a first clamp position in which a clamp face is a first distance from the top rail in a depth direction, a second clamp position in which the clamp face is a second distance from the top rail in the depth direction.
Portable environment control system and method of use
A portable environment control system is configured to condition the air within an enclosure, such as by heating, cooling, humidifying or dehumidifying. The portable environmental control system has a conduit that is attached at one end to an environment control device and attached at the opposing outlet end to a partition coupling. The partition coupling is configured over an opening in a partition, such as an exterior wall of a recreation vehicle. Airflow from the environment control device is configured to flow through the conduit and through the partition coupling to an enclosure. The portable environment control system is quick and easy to install and allows for closure of an opening in a partition with a flange cover. The portable environment control system may have an inlet and outlet conduit to provide air flow to and draw air flow from an enclosure, respectively.
Portable environment control system and method of use
A portable environment control system is configured to condition the air within an enclosure, such as by heating, cooling, humidifying or dehumidifying. The portable environmental control system has a conduit that is attached at one end to an environment control device and attached at the opposing outlet end to a partition coupling. The partition coupling is configured over an opening in a partition, such as an exterior wall of a recreation vehicle. Airflow from the environment control device is configured to flow through the conduit and through the partition coupling to an enclosure. The portable environment control system is quick and easy to install and allows for closure of an opening in a partition with a flange cover. The portable environment control system may have an inlet and outlet conduit to provide air flow to and draw air flow from an enclosure, respectively.
Portable Building Containing Cabinets for Safely Storing Hazardous Production Materials
A storage system comprising a portable building having a climate-controlled interior space and a plurality of hazardous materials storage cabinets disposed in the interior space. The portable building contains no water sprinklers and no smoke detectors and has a floor that is sealed to prevent leakage of liquid. Each cabinet comprises metal double walls separated by an air space and a liquid-tight containment sump. Each cabinet is configured so that fire cannot spread from a space above a shelf to a space below the shelf. The storage system further comprises an electrical power connection and an HVAC unit mounted to an exterior of the portable building.
Portable air conditioner
A portable air conditioner (10) that has a loading chamber (30) substantially separated from a heat-transfer chamber (32) within a housing (20). Heat-transfer cells (40) for holding a phase-changeable, frozen substance such as ice (3), have an open end that is accessible from the loading chamber (30) and have cell housings (42, 44) disposed within the heat-transfer chamber (32). An air-flow mechanism (62) causes air to be drawn in through at least one air-intake opening (60), circulated among the heat-transfer cells (40) and urged outwardly of the unit housing (20) through at least one air-outlet opening (70, 72).
Portable air conditioner
A portable air conditioner (10) that has a loading chamber (30) substantially separated from a heat-transfer chamber (32) within a housing (20). Heat-transfer cells (40) for holding a phase-changeable, frozen substance such as ice (3), have an open end that is accessible from the loading chamber (30) and have cell housings (42, 44) disposed within the heat-transfer chamber (32). An air-flow mechanism (62) causes air to be drawn in through at least one air-intake opening (60), circulated among the heat-transfer cells (40) and urged outwardly of the unit housing (20) through at least one air-outlet opening (70, 72).