The present invention relates to portable fans and, more particularly, to a fan that can function as an air circulator and a cooling fan, independently or simultaneously.
Portable fans are employed for a variety of purposes including air circulation and convective cooling. Portable fans are relatively small and light, and are intended to be placed on the floor or on a countertop. The most frequently used forms of portable fans are the box fan and the pedestal fan which have an axial flow fan contained within an enclosure which is placed on the floor or mounted atop a pedestal, respectively.
Many improvements have been included in the design of portable fans to optimize or enhance their performance as coolers and air circulators. Specifically, improvements have been made in controlling the volume and direction of airflow to suit the purpose for which the fan is employed.
To enhance the convective cooling ability of fans, different ways of directing the air-stream generated by a fan towards a particular target have been developed. For example, fan enclosures have been pivotally mounted atop a pedestal so that the fan can be angularly rotated about the vertical axis to adjust the direction of the airflow in the horizontal plane. To adjust the vertical elevation of the airflow, fans have been rotatably mounted to a U-shaped base forming a yoke-like structure, thereby allowing the fan to be adjusted so that the airflow is directed at a specific target in the vertical plane. These two adjustment configurations, in combination, allow the air-stream generated by a fan to be directed toward any target within a room regardless of where the base of the fan is located.
Another use of portable fans is general air circulation. Directed airflow may cool one target, but may not generally reduce or equilibrate the temperature of a room. This latter problem further persists in part due to the stratification of the air temperature in a room. To break up the stratification of the air in a room, a floor circulator can be employed to vertically direct the air flow from the fan to create turbulence within a room and break down the stratification.
U.S. Pat. No. 2,667,301 demonstrates the complementary nature of air circulation and convective cooling. This patent discloses a fan mounted to a base unit which allows the vertical direction of the generated airflow to be altered by rotating the fan about a horizontal mounting axis. The fan further includes legs on the front face of the fan that allow the fan to be placed flat against the floor to circulate room air by creating turbulent vertical flow.
The present invention is directed to a fan assembly that can be used as a cooling fan or an air circulator. The fan assembly can provide the cooling and air circulation functions simultaneously or separately. The intensity of each provided function can be individually controlled and directed.
The fan assembly includes a base unit forming a yoke-like structure, a mounting frame rotatably coupled to the base unit, and a plurality of blower housings, each enclosing a fan, coupled to the mounting frame. The mounting frame is rotatable about an axis, preferably parallel to the support plane of the base. At least one of the blower housings is rotatably mounted to the mounting frame.
The fan assembly can be positioned so that all fans are directed at a specific object, thereby cooling the object. Alternatively, the fan assembly can be positioned so that all fans are directed upward or downward, either slightly or completely, thereby maximizing the air circulation within a room. The mounting frame may be rotated so that at least one fan blower provides air circulation, and at least one fan blower directs its air flow at a specific object. Thus, the fan simultaneously provides both air circulation and air cooling.
In a preferred embodiment, the blower housing that is rotatably mounted to the mounting frame is rotatable about an axis parallel to the axis of rotation of the mounting frame. However, it is contemplated that any rotatably mounted blower housings can be rotatable along any axis. It is further contemplated that one or more of the blower housings are rotatably mounted to the mounting frame. Preferably, the fan assembly is portable and includes a carrying handle for easily carrying the assembly.
In a preferred embodiment of this invention, the fan assembly includes two blower housings. A first blower housing rotatably mounted to the mounting frame so that it is rotatable about an axis parallel to the axis of rotation of the mounting frame. The second blower housing is fixed within the mounting frame. In this embodiment, if the fan assembly is placed on the floor such that the axis of rotation of the mounting frame and the rotatable blower housing are within the same vertical plane, both fan blowers direct air within the same vertical plane. Thus, the direction of the air flow in the vertical plane of the fixed blower housing is controlled by the rotation of the mounting frame, and the direction of the air flow of the rotatable blower housing is controlled by the rotatable mounting of the blower housing to the mounting frame. Additionally, it is preferred that the rotatable blower housing includes a positioning handle that allows the airflow from both fans to be adjusted by manipulating the rotation and position of the positioning handle.
The fan assembly may provide multiple speeds of rotation for each fan. The fan speed may be controlled by a single controller, or preferably the fan assembly provides individual control of the speed of rotation of each blower. Individual fan control provides for individual control over the degree of cooling and the degree of air circulation.
The foregoing and other features of the present invention will be more readily apparent from the following detailed description and drawings of illustrative embodiments of the invention in which:
Referring now to the drawings, the present invention is directed to a fan assembly that can be used as a cooling fan or an air circulator. The fan assembly can provide the cooling and air circulation simultaneously or independently. The intensity of each provided function can be individually controlled and directed.
Referring to
The fan assembly can be positioned such that all fans are directed at a specific object, thereby cooling the object. Alternatively, the fan assembly can be positioned so that blower housings 30 and 40 are directed upward or downward, either slightly or completely, thereby maximizing the air circulation within a room. The mounting frame 20 may be rotated so that blower housing 30 provides air circulation, and rotatably mounted blower housing 40 may be positioned so that its air flow is directed at a specific object. The fan, thus, simultaneously provides both air circulation and air cooling.
In one embodiment, shown in
The base unit 10 provides support for the fan when it is placed on the ground or other flat surface. The area of support of the base unit 10 is preferably sufficiently sized to maintain the fan's upright position by ensuring the center of gravity of the fan assembly is located within the area of support for all possible fan positions. Alternatively, the base unit 10 may be mounted to the wall or another surface, in which case the base unit 10 would not be required to support the fan's upright position.
In one embodiment, shown in
The fan assembly may include a carrying handle 90 to assist in the transportation of the assembly. The handle may be located anywhere on the fan assembly. In one preferred embodiment, the carrying handle 90 is located on the top of the blower housing 30 on top of the fan assembly. This location provides the greatest stability since, when the fan assembly is lifted by the carrying handle 90 from an upright position, the center of gravity of the fan assembly will be generally below the carrying handle 90. Alternatively, the carrying handle 90 could be located on the mounting frame 20 or on the base unit 10 to provide stability while being transported.
The fan assembly may provide multiple speeds of rotation for each fan. The fan speed may be controlled by a single controller, or preferably the fan assembly includes individual controllers 80 that adjust the speed of rotation of each individual blower. Individual fan controllers 80 provide for individual control over the degree of cooling and the degree of air circulation. The embodiment shown in
The fan assembly further includes electrical wiring to provide power to the fans. The wiring may be provided directly to each fan motor 110 and 120. Preferably, the wiring is placed inside the fan assembly, thereby minimizing the exposed and visible wiring. Internal wiring increases the safety of the device by minimizing exposed wiring, and enhances the esthetic of the fan assembly. Specifically, in reference to the embodiment shown in
While the invention has been shown by way of reference to a dual use air circulator and a cooling fan and particularly shown and described with reference to preferred embodiments thereof, it will be understood by those skilled in the art that the present invention may be utilized in any air circulator and a cooling fan and that various changes in form and details may be made therein without departing from the spirit and scope of the invention.
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Number | Date | Country | |
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20070166155 A1 | Jul 2007 | US |