Abstract:
A heat pump water heater appliance is provided including a tank defining an interior volume, a sealed system configured for heating water within the interior volume, and a casing. The casing defines an airflow inlet and an airflow exhaust, and the tank and an evaporator of the sealed system are disposed within the casing. A transition member is also provided, including a first end attached to the casing over the airflow inlet and a second end. A passage is defined between the first and second ends. Additionally, a filter tray is removably positioned in the passage of the transition member, allowing, e.g., a user or operator to easily remove and/or replace filter medium supported by the filter tray without disassembling the transition member or any ductwork attached thereto.
Abstract:
A heat pump water heater appliance includes a tank that defines an interior volume. A drain pan is positioned below an evaporator of a sealed system. A liquid monitoring sensor has a voltage divider with a pair of probes. The probes of the pair of probes extend into the drain pan. A related method for operating a heat pump water heater appliance is also provided.
Abstract:
A flow diverter device includes a diverter body. The diverter body defines therein two inlet channels and an outlet channel and includes a diverter valve defining therein a connecting channel. The diverter valve is movable between a first position wherein the connecting channel fluidly connects one of the inlet channels with the outlet channel only and a second position wherein the connecting channel fluidly connects the other of the inlet channels with the outlet channel only. The flow diverter device further includes a sleeve component including a secondary inlet channel and a secondary outlet channel. The sleeve component is connectable to the diverter body.
Abstract:
A flow diverter device includes a diverter body. The diverter body defines therein two inlet channels and an outlet channel and includes a diverter valve defining therein a connecting channel. The diverter valve is movable between a first position wherein the connecting channel fluidly connects one of the inlet channels with the outlet channel only and a second position wherein the connecting channel fluidly connects the other of the inlet channels with the outlet channel only. The flow diverter device further includes a sleeve component including a secondary inlet channel and a secondary outlet channel. The sleeve component is connectable to the diverter body.
Abstract:
A heat pump water heater appliance includes a tank that defines an interior volume. A drain pan is positioned below an evaporator of a sealed system. A liquid monitoring sensor has a voltage divider with a pair of probes. The probes of the pair of probes extend into the drain pan. A related method for operating a heat pump water heater appliance is also provided.
Abstract:
A water filter assembly includes a first filter cartridge and a second filter cartridge mounted to a manifold. The first and second filter cartridges are plumbed into the manifold such that unfiltered water from an inlet of the manifold flows in parallel to the first and second filter cartridges. A third filter cartridge is also mounted to the manifold. The third filter cartridge is plumbed into the manifold such that filtered water from the first and second filter cartridges is directed into the third filter cartridge.
Abstract:
A flow diverter device includes a valve body component defining therein two inlet channels and an outlet channel; and a rotatable diverter component comprising an exterior side wall and defining therein a connecting channel in the form of an annular slot positioned around a portion of the exterior side wall. The rotatable diverter component is rotatably received by the valve body component and being movable between a first position where the connecting channel fluidly connects one of the inlet channels with the outlet channel only and a second position where the connecting channel fluidly connects the other of the inlet channels with the outlet channel only.
Abstract:
A flow diverter device includes a valve body component defining therein two inlet channels and an outlet channel; and a rotatable diverter component comprising an exterior side wall and defining therein a connecting channel in the form of an annular slot positioned around a portion of the exterior side wall. The rotatable diverter component is rotatably received by the valve body component and being movable between a first position where the connecting channel fluidly connects one of the inlet channels with the outlet channel only and a second position where the connecting channel fluidly connects the other of the inlet channels with the outlet channel only.