Abstract:
Disclosed herein is cleaning structure attachable to a submersible pool cleaning vehicle (PCV). In one exemplary embodiment the PCV has an endless loop track and a chassis therefore. The cleaning structure attaches to the chassis and acts as a cap covering the drive wheels and track. The cleaning structure includes a base and bristles extending outwardly therefrom. The bristles define fingers. In one embodiment, the fingers are of a uniform length. In another embodiment, the fingers are of a graduated length. Others embodiments include the fingers being distributed on the base in a random pattern.In one embodiment, the cleaning structure defines a single insert. In another, the cleaning structure includes multiple inserts.
Abstract:
Disclosed herein is an electrically conductive buoyant cable. The cable includes an electrical conductor member having at least one electrical conductor. The cable also includes a filler layer that consists of buoyant materials with relative density lower than 1. The filler layer surrounds and encloses the electrical conductor member. The invention includes a jacket, which, in one embodiment, contains a small quantity of filler material or no filler material. The jacket surrounds the filler layer. In one embodiment, the filler layer and the jacket are made of the same material.
Abstract:
Disclosed herein is an automated pool cleaning vehicle (PCV) having a middle roller. The PCV having a housing. The housing defines an interior. Located within the interior is a pump and a filter bag. The housing also includes a bottom, which is generally curved in a concave manner. The housing further includes a chassis. The pump creates a vacuum for sucking up dirt and debris into the filter bag through intakes in the housing. The housing including first and second pairs of wheels connected to the chassis. Between the front and second wheels is a middle roller, also connected to the chassis. In a first embodiment, the middle roller includes a single roller, which is approximately the same diameter as the wheels of the first and second pairs of wheels. In other embodiments, the wheels of the middle roller are larger or smaller. In yet another embodiment, the middle roller includes a series of wheels.
Abstract:
Disclosed herein is an adapter for allowing add-on devices to be attached to an above ground pool. The adapter includes a housing having a first opening for allowing water in, defining an inlet. The housing having a second opening adapted for compatible connection with an existing above ground pool return fitting. The second opening defining an outlet from which the water flows into the return fitting after traveling through the housing. The housing having an open end and the open end being adapted for receiving a device module. The housing including a means for detecting water flow through the housing, the water detection means physically moving in response to the flow of water; and the device module connectable with the housing and including activation means for activating the device in response to the flow of water.
Abstract:
Disclosed herein is a pool cleaning an electric pool cleaning vehicle having a drive assembly and including an advanced system for draining water from the vehicle as the vehicle is removed from a pool of water. The vehicle includes a housing defining a body shell and the body shell having an interior cavity and an electrical power cord to supply power to the vehicle having a connection point on the vehicle. A filtering system is located within the body cavity. The vehicle includes a drain door assembly and the drain door assembly has an inlet connected to the filtering system. A handle is located adjacent the electrical cord connection point, sized and shaped to easily lift the vehicle filled with water out of a pool and the drain door assembly being on an opposed portion of the vehicle from the handle.
Abstract:
Disclosed herein is an automated pool cleaning vehicle (PCV) having a middle roller. The PCV having a housing. The housing defines an interior. Located within the interior is a pump and a filter bag. The housing also includes a bottom, which is generally curved in a concave manner. The housing further includes a chassis. The pump creates a vacuum for sucking up dirt and debris into the filter bag through intakes in the housing. The housing including first and second pairs of wheels connected to the chassis. Between the front and second wheels is a middle roller, also connected to the chassis. In a first embodiment, the middle roller includes a single roller, which is approximately the same diameter as the wheels of the first and second pairs of wheels. In other embodiments, the wheels of the middle roller are larger or smaller. In yet another embodiment, the middle roller includes a series of wheels.
Abstract:
Disclosed herein is a pool cleaning an electric pool cleaning vehicle having a drive assembly and including an advanced system for draining water from the vehicle as the vehicle is removed from a pool of water. The vehicle includes a housing defining a body shell and the body shell having an interior cavity and an electrical power cord to supply power to the vehicle having a connection point on the vehicle. A filtering system is located within the body cavity. The vehicle includes a drain door assembly and the drain door assembly has an inlet connected to the filtering system. A handle is located adjacent the electrical cord connection point, sized and shaped to easily lift the vehicle filled with water out of a pool and the drain door assembly being on an opposed portion of the vehicle from the handle.
Abstract:
Disclosed herein is an improved pool cleaning vehicle. The vehicle includes a housing, a bottom frame and a filter bag between the housing the bottom frame and attached to the bottom frame. The vehicle includes an intake and an outlet, both of which are in communication with the filter bag. The housing is releaseably attached to the bottom frame and the filter bag releaseably connected to the bottom frame. A V-shaped self locking clip with normally outwardly extending legs serves as the attachment member and when urged toward each other with the housing in the locked position allows for easy release. At least one of the intake or outlet includes a filter member. The filter member includes a means for attachment and a particulate filter member for filtering particulates from the water. The filter member is attached to the vehicle at or proximate to the perimeter of the intake or outlet.
Abstract:
Disclosed herein is an improved pool cleaning vehicle. The vehicle includes a housing, a bottom frame and a filter bag between the housing the bottom frame and attached to the bottom frame. The vehicle includes an intake system for causing water to enter the vehicle housing and to trap dirt and debris in the filter bag. The intake system includes more than one intake, which are typically mounted front and aft of the vehicle. The vehicle includes an outlet for flowing water passing through the filter bag back into the pool. Of course, both of the intake and outlet ports are in communication with the filter bag. The housing typically includes a bottom frame. Both the housing and the bottom frame have side openings defining vents, which serve as side intake ports. In an exemplary embodiment, the intake ports include a duct attached thereto. The duct has an open duct intake. In another exemplary embodiment, the front and/or aft intake port include a duct.
Abstract:
Disclosed herein is a floating pool water controller for dispensing germicide and antimicrobial material into a swimming pool based upon real time pool conditions. The controller includes the ability to adjust to these ever changing conditions in real time, and, to do so remotely. The controller includes a housing adapted for floating on the pool water. Additionally, a dispenser is provided for dispensing Cu ion into the pool and includes a dispenser assembly connected to the housing. The controller is provided with a controller for adjusting the amount of Cu ion dispensed into the pool water. And, the controller includes a probe extending from the housing into the pool water for sensing pool conditions. Thus, upon sensing the pool conditions in real time, the controller can be adjusted to dispense the proper amount of Cu ion into the pool water.