1. Technical Field
This invention relates to basketball goals generally consisting of a backboard assembly and a basketball goal support assembly. More particularly, the present invention relates to such a goal where the backboard assembly can be decoupled from the basketball goal support assembly and replaced.
2. Background Information
The game of basketball is popular throughout the world. Part of its popularity may stem from the simplicity of equipment used, i.e., at least one elevated basket and a ball. More commonly, the equipment is at least one basketball goal, which includes a backboard, a rim assembly, a basketball goal support, and a basketball. Additionally, its popularity may stem from the fact that basketball can be played outdoors and indoors, which lends itself to be played year round.
Notwithstanding, basketball goals are known to deteriorate, break, or even become dated. For example, a basketball player can exert enough force and torque on a basketball goal to distort permanently the rim assembly, shatter the backboard, or even break the basketball goal support mechanism. When this occurs, especially to the backboard and/or the rim assembly, the game, practice, or recreation of basketball must be stopped to permit facilities personnel to replace the old basketball goal with a new basketball goal. Generally, regardless of what is in need of repair, the broken basketball goal is moved away on its wheels and replaced with a new basketball goal that is moved in and fixed to the floor. Yet, the cost and expense of having one or more replacement basketball goals in storage can be great in terms of equipment and inventory space.
Alternatively, if only the backboard and/or rim assembly is in need of repair, it would be advantageous to only replace what is needed without moving the entire basketball goal and to do so quickly. Depending on the number of fasteners and couplings that engage the basketball goal to the basketball goal support, the time to replace the basketball goal can last for about twenty minutes to about one hour or more. During this hiatus, players can cool off, spectators can lose interest, and the total time for the game can be extended for a period of time.
Various basketball goals have been conceived to allow for a quicker replacement. Many involve only the rim assembly, and many of these involve only rim assemblies for the outdoors. Here, the rim assemblies generally include a rim and a mounting plate. The mounting plate would then attach via a fastener or shaft to a receiving plate that is attached to the backboard. Typically, the rim assemblies for the outdoors are more inexpensive and lesser in quality than the rim assemblies for the indoors. The rim assemblies for the indoors, including gymnasiums and arenas, are generally “commercial grade” because of the construction and materials used to account for the amount of use and mobility of basketball goals. Because of this higher quality, indoor basketball goals are more typically replaced with a new basketball goal, instead of replacing the part on the spot.
Accordingly, there remains a need for a basketball goal to be quickly replaced. In particular, there remains a need to replace the backboard and rim assembly on the spot during a timeout (a few minutes) or during a halftime (about twenty minutes). Furthermore, there remains a need to replace the backboard and rim assembly on the spot without having to replace the entire basketball goal.
The shortcomings of the prior art are addressed generally by a basketball goal that can include one or more couplings that permit the quick change and replacement with another basketball goal, yet also permit during normal use and impact, the rim to be maintained at its conventional position and effective rigidity. Particularly, the basketball goal may include a quick change backboard bracket system. The quick change backboard bracket system can comprise a backboard, a first yoke member, a rim assembly, a second yoke member, bracing means for coupling the backboard to a basketball goal support, or any combination. The backboard can have a peripheral frame with a bracket. The first yoke member can comprise a central plate coupled to the backboard and a left web and a right web fixed to the central plate. The left and right webs can extend rearwardly and each web may have a slot, an opening, or both. The rim assembly can be coupled to the central plate of the first yoke member through the backboard. The second yoke member can comprise a middle plate coupled to a basketball goal support, a left arm and a right arm fixed to the middle plate, a coupling shaft, and a connecting pin. The left and right arms can extend frontwardly and each arm may have a first aperture and a second aperture. The coupling shaft can be dimensioned to fit within, and positioned through, each first aperture. Additionally, the coupling shaft can be dimensioned to engage the slot of the first yoke member. The connecting pin can be dimensioned to engage each opening of the first yoke member and each second aperture of the second yoke member.
Another embodiment of the quick change backboard bracket system can comprise a backboard assembly and a basketball goal support assembly as components of a kit. The backboard assembly can include a backboard, a first yoke member, and a rim assembly similar to that described above. The basketball goal support assembly can include a basketball goal support comprising a second yoke member, a coupling shaft, a connecting pin, and a bracing member to couple the corner brackets of the backboard similar to that described above.
Yet, another embodiment provides a method of replacing the backboard assembly using the quick change backboard bracket system. The method can comprise the steps of providing a first backboard assembly and a second backboard assembly like the first backboard assembly. The connecting pin can be disengaged from each opening of the first backboard assembly and each second aperture of the basketball goal support assembly. The bracing member of the basketball goal support assembly can be decoupled from each bracket of the first backboard. The slot of the first backboard assembly also can be disengaged from the coupling shaft of the basketball goal support assembly. The connecting pin can be engaged to each opening of the second backboard assembly, which has replaced the position of the first backboard assembly, and each second aperture. The bracing member can be coupled to each bracket of the second backboard assembly. The slot of the second backboard assembly also can be engaged to the coupling shaft.
For the purposes of promoting an understanding of the principles of the invention, reference will now be made to the embodiments illustrated in the drawings, and specific language will be used to describe the same. It should nevertheless be understood that no limitation of the scope of the invention is thereby intended, such alterations and further modifications in the illustrated device, and such further applications of the principles of the invention as illustrated therein being contemplated as would normally occur to one skilled in the art to which the invention relates.
a is a rear perspective view of a backboard assembly including a rim assembly and a first and second yoke member of one embodiment of the invention.
b is a rear perspective view of a rim assembly and a first yoke member of one embodiment of the invention.
c is a rear perspective detail view of one corner of the backboard showing a coupling between a corner bracket and a bracing member.
a is a front perspective view of a first yoke member decoupled from a second yoke member of an alternative embodiment of the invention.
b is a front perspective view of a first yoke member decoupled from a second yoke member of an alternative embodiment of the invention.
The quick change backboard bracket system 10 can allow for a quick and easy removal and replacement of the backboard assembly 14. The various components of the quick change backboard bracket system 10 are dimensioned to have tolerances to ensure that the basketball goal system as assembled has the desired stability in the case of a dunk shot or a player hanging on the rim. Furthermore, it is desired that no special tools be required for replacing the backboard assembly 14.
The backboard 20 of the backboard assembly 14 has a peripheral frame 22 as shown in
The backboard 20 can further include at least one bracket 23 that can couple to a bracing member 52. One embodiment of the backboard 20 and the bracket 23 is shown in
The bracing means 12 may have a single bracing member 52. Other embodiments of the bracing means 12 may have two or more bracing members 52. The bracing member 52 can have a basketball goal support coupling 54 on a connecting arm portion 17 of the basketball goal support assembly. The basketball goal support coupling 54 may be used to couple the backboard 20 to the basketball goal support 50. In addition, the bracing means 12 can comprise at least one or more supporting members 55, preferably two supporting members 55, 56. One embodiment of the bracing means 12 is two supporting members 55, 56, shown in
In
Referring to
Each web 31, 33 can have a slot 34a, 34b, at least one opening 36a, 36b, or both. Each slot 34a, 34b can have one direction or can be multi-directional. Preferably, each slot 34a, 34b in
Referring to
The quick change backboard bracket system 10 may also include the second yoke member 60, with one embodiment shown in
The second yoke member 60 can also include a left arm 61 and a right arm 63, which can be fixed to the middle plate 62. The left and right arms 61, 63 can extend frontwardly toward the backboard 20 in the vertical position, perpendicular to the backboard 20. Each arm 61, 63 can have a first 66a, 66b and a second aperture 68. Each first aperture 66a, 66b can be dimensioned to receive a coupling shaft 64 as shown in
Moreover, each second aperture 68 can be dimensioned to receive the connecting pin 70 as shown in
The connecting pin 70 is dimensioned to engage each opening 36a, 36b of the first yoke member 30. Means 71 for engaging the connecting pin 70 to and from each opening 36a, 36b and each second aperture 68 can include a retainer pin 72, as shown in
The first yoke member 30 and the second yoke member 60 can be constructed of a metal channel, e.g., a steel channel or iron channel. Alternatively, the first yoke member 30 and the second yoke member 60 can be constructed from multi-metal pieces welded or secured together by any means known by those skilled in the art.
Referring to
In an another embodiment shown in
The central plate 132a of the first yoke member 130 can be coupled through a backboard to a rim assembly, similar to what is shown in
A coupling shaft 164 can be dimensioned to fit within, and positioned through, each first opening 134a or 134b of one of the first yoke member 130 and second yoke member 160. Also, the coupling shaft 164 can be dimensioned to engage either each second opening 136a or 136b of another of the first yoke member 130 and second yoke member 160, whichever is the opposite of the one yoke member having the first openings engaged to the coupling shaft 164.
A connecting pin 170 can be dimensioned to fit within and to engage to each first opening 134a or 134b of another of the first yoke member 130 and the second yoke member 160, whichever yoke member is opposite to the one that has the first openings engaged to the coupling shaft 164. The connecting pin 170 can also be dimensioned to fit within and to engage each second opening 136a or 136b of one of the first yoke member 130 and the second yoke member 160, whichever yoke member is opposite to the one that has the second openings to be engaged to the coupling shaft 164. This second opening 136a or 136b can have an elliptical edge.
To illustrate, the coupling shaft 164 can be dimensioned to fit within, and is positioned through, each first opening 134a of the webs 131a, 133a of the first yoke member 130 as shown in
The opposite may also be employed. Referring to
Another embodiment provides a method of replacing a backboard assembly 14 using the quick change backboard bracket system 10 or 110. The method of replacing is better illustrated by the difference in positions of the yoke members between
The first backboard assembly 14 can then be removed and set aside and can be replaced with the second backboard assembly. Each slot 34a, 34b of the second backboard assembly can be engaged to the coupling shaft 64 of the basketball goal support assembly 16. The connecting pin 70 can be engaged to each opening 36a, 36b of the second backboard assembly and each second aperture 68 of the basketball goal support assembly 16. The bracing member 52 of the basketball goal support assembly 16 can be coupled to each bracket 23 of the second backboard. Preferably, these steps in combination with the quick change backboard bracket system can be completed quickly. For instance, the steps may be capable of completion during a timeout or halftime.
It is therefore intended that the foregoing detailed description be regarded as illustrative rather than limiting, and that it be understood that it is the following claims, including all equivalents, that are intended to define the spirit and scope of this invention.
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Number | Date | Country | |
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20090163305 A1 | Jun 2009 | US |