US2022395151A1PendingUtilityA1

Modular household blower system

Assignee: PHILLIP SHARON ELIZABETHPriority: Jun 14, 2021Filed: Jun 14, 2021Published: Dec 15, 2022
Est. expiryJun 14, 2041(~14.9 yrs left)· nominal 20-yr term from priority
A47L 7/00A47L 5/225A47L 5/14A47L 9/08
24
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Claims

Abstract

A blower system for drying a surface has an upright housing top that enables a user to maneuver the unit over various surfaces easily. A central feature of this system is a modular design for a unit that dries surfaces. This modular design enables a user to reconfigure the dryer as needed for a particular drying application. The modular capability and the upright standing design of the system allow a person to use this device and system for convenience. The blower of this device can be self-contained and detachable, which will enable a user to operate the drying function conveniently. The capability to detach a dryer module enables one to use this device for additional applications such as using the blower function to displace objects such as leaves.

Claims

exact text as granted — not AI-modified
1 . A system for using a hand-controlled device for drying a surface area comprising:
 an upright housing with an upper end and a lower end, said upper end forming a handle enabling a user to maneuver said housing from a standing position, said upright housing also having internal channels that provide for airflow to travel through the upright housing;   a blower module positioned in said upright housing for generating and supplying airflow to dry a surface, said blower module having a inlet port for receiving airflow and an exhaust port for dispending airflow from said blower module and an air channel through air travels in said blower module from said inlet port through said exhaust port;   an exhaust module forming the lower end of said upright module through which airflow from said detachable blower module is dispended directly onto a surface for drying; and   a power source in said blower module for providing power to dispense airflow to dry a surface.   
     
     
         2 . The surface drying system as described in  1  wherein said blower module further comprises a heating element positioned in the air channel between said inlet port and said outlet port for heating air as air flows through the channel and out of said exhaust port and onto a surface area for drying. 
     
     
         3 . The surface drying system as described in  2  wherein said blower module further comprises a heating element controller for controlling a heat intensity range of said heating element in order to heat air passing across said heating element at different temperatures. 
     
     
         4 . The surface drying system as described in  claim 2  wherein said blower module further comprises a fan element capable of operating at multiple speeds to vary air velocity of air passing through said blower module and across said heating element. 
     
     
         5 . The surface drying system as described in  claim 1  wherein said upright housing has:
 an internal air channel connected to said blower module intake port for intake of air into said blower module; and 
 connections to a power source to supply power to said blower module. 
 
     
     
         6 . The surface drying system as described in  claim 5  wherein said exhaust module further comprises an air channel in connection with the air channel of said blower module, said air channel of said exhaust module directs air from said blower module onto a desired surface for drying. 
     
     
         7 . The surface drying system as described in  claim 2  wherein said blower module further comprises an additional power source for powering said blower module. 
     
     
         8 . The surface drying system as described in  claim 7  wherein said blower module is detachable from said upright housing. 
     
     
         9 . The surface drying system as described in  claim 2  wherein said blower module further comprises a tube element with a top end attached to blower module and a bottom end attached to said exhaust module, wherein said tube element is detachable from said exhaust module enabling said blower module to dispense air from said blower module through said tube element and onto a surface for drying. 
     
     
         10 . The surface drying system as described in  claim 9  further comprising blowing attachments capable of connecting to the bottom end of said tube element for directing air flow from said blowing element onto a specific area of a surface. 
     
     
         11 . The surface drying system as described in  claim 6  wherein said exhaust module further comprises a plurality of bristle position on an exhaust module bottom and air in contact with surface for drying, said bristles capable of assisting in removing water and moisture from a surface. 
     
     
         12 . The surface drying system as described in  claim 8  wherein said blower module is detached from said upright housing and functions as a separate blower device for drying surfaces. 
     
     
         13 . A system for using a hand-controlled device for cleaning a surface area comprising:
 an upright housing with an upper end and a lower end, said upper end forming a handle enabling a user to maneuver said housing from a standing position, said upright housing also having internal channels that provide for airflow to travel through the upright housing;   a detachable blower module positioned in said upright housing for generating and supplying airflow to dry a surface, said blower module having a inlet port for receiving airflow and an exhaust port for dispending airflow from said blower module and an air channel through air travels in said blower module from said inlet port through said exhaust port;   a detachable suction module positioned in said upright housing for providing suction to remove dirt and particles from a surface, said vacuum module having a channel connected to a surface contact module through which dirt and particles would travel up to the vacuum module.   surface contact module forming the lower end of said upright module through which airflow from said detachable blower module is dispended directly onto a surface for drying; and   a power source for providing power to said blower module and said suction module.   
     
     
         14 . The surface cleaning system as described in  claim 13  wherein said detachable blower module and detachable suction module are simultaneously positioned in said upright module. 
     
     
         15 . The surface cleaning system as described in  claim 14  further comprising a switch capable of enabling and disabling said blower module and said suction modules. 
     
     
         16 . The surface cleaning system as described in  claim 13  wherein said detachable blower module and detachable suction module are interchangeably positioned in said upright module. 
     
     
         17 . The surface cleaning system as described in  claim 13  wherein said detachable suction module further comprises a collection element to receive and store contents received into said detachable suction module. 
     
     
         18 . A system for using a hand-controlled device for cleaning a surface area comprising:
 an upright housing with an upper end and a lower end, said upper end forming a handle enabling a user to maneuver said housing from a standing position, said upright housing also having internal channels that provide for airflow to travel through the upright housing;   a detachable cleaning module positioned in said upright housing, said module having a blower element capable of generating and supplying airflow to dry a surface, said blower element having a inlet port for receiving airflow and an exhaust port for dispending airflow from said blower element and an air channel through air travels in said blower module from said inlet port through said exhaust port, said detachable cleaning module further comprising a suction element for providing suction to remove dirt and particles from a surface, said suction element having a channel connected to a surface contact module through which dirt and particles would travel up to the suction element.   surface contact module forming the lower end of said upright module through which airflow from said detachable blower element is dispended directly onto a surface for drying; and   a power source for providing power to said blower element and said suction element.   
     
     
         19 . The surface cleaning system as described in  claim 18  further comprising a switch capable of enabling and disabling said blower element and said suction element.

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