The present invention relates to the field of sports practice accessories. More particularly, the invention relates to a portable carrying bag for sport training equipment, specifically a ball launcher.
When transporting equipment for a sports practice, e.g., for a tennis practice, it is inconvenient to carry each of the items (e.g., one or more rackets and a plurality of tennis balls) of equipment separately. Tennis bags and backpacks are typically used for carrying rackets and tennis balls. Other bags include, among others, baseball bags and golf bags.
An important aspect of a sports training session is the preparation of the trainee for a match against an opponent. In order to simulate a match, automatic ball launching devices allow a trainee to be challenged to respond to balls being automatically launched in a manner that simulates plays of an opponent. Several commercially available automatic ball launching devices exist, however they are commonly bulky and heavy, and are therefore inconvenient to transport from one place to another (e.g., from home to the training field/court).
US Patent Application No. 2016/0310817A1 discloses a sports simulation robot that is small and light enough to be easily stored and transported, although in order to do so it must be dismantled and folded. Obviously a previously stored and transported simulation robot according to US2016/0310817A1 would require assembly in order to use it.
It would be advantageous to have a light-weight sports training bag that contains a ready-to-use, small and light-weight automatic ball launching device. It is an object of the present invention to provide such a sports training bag.
It is another object of the present invention to provide a sports training bag with an embedded sports simulation robot.
Other objects and advantages of this invention will become apparent as the description proceeds.
The present invention relates to a carrying bag for sports equipment, comprising compartments suitable to accommodate sports equipment; and an automatic launching apparatus configured to launch sports balls to a distance from the bag.
According to an embodiment of the present invention, the carrying bag comprises:
wherein the automatic launching apparatus comprises a loading section and an ejection section; and wherein a tennis ball is automatically delivered by the ball sorting apparatus from the ball hopper compartment to the loading section of the automatic launching apparatus and is automatically launched therefrom through the ejection section to a distance.
According to another embodiment of the present invention, the automatic launching apparatus comprises an electrically rotatable fly wheel. According to still another embodiment of the invention, the carrying bag further comprises a launch angle mechanism configured to determine the direction at which balls are launched from the automatic launching apparatus. According to yet another embodiment of the present invention, the launch angle mechanism is a deflection member electronically controlled by the control panel.
According to another embodiment of the invention, the carrying bag further comprises one or more sensors configured to detect control commands given from afar. According to yet another embodiment of the present invention, the carrying bag further comprises a wireless communication module configured to wirelessly communicate with an electronic computing device.
According to another embodiment of the present invention, the carrying bag further comprises wheels on opposite sides of the bag and an extendable handle for carting the carrying bag. According to another embodiment of the present invention, the carrying bag further comprises a retractable “trolley” type handle, allowing the bag to be wheeled.
According to still another embodiment of the invention, the distance between the front ejecting section of the launching apparatus and the axle of the bag's wheels is selected so as to allow the bag to withstand launching forces, taking in account the horizontal component of said launching force and the weight of the bag.
According to an embodiment of the present invention, the carrying bag comprises an external hard shell chassis structure; an internal structure that is attached to the outer structure, and which holds the launching and ball sorting apparatuses in place, divides between the compartments and prevents the bag from collapsing; and an outer fabric that houses all of the compartments, protects the internals from ingressions, and provides ergonomic means for handling the bag. According to another embodiment of the invention, the carrying bag further comprises fabric straps for carrying and handling the bag.
According to yet another embodiment of the invention, the carrying bag further comprises a four contact point base with the ground.
In the drawings:
A sport carrying bag comprising a plurality of compartments to store in each of which equipment or products needed to undergo training with respect to a desired ball related sport activity, and automatic launching apparatus capable of delivering one or more balls at a desired speed and angle to a desired distance is surprisingly efficient, compact and convenient.
Although the following description relates to apparatus for the launching of tennis balls, the sport carrying bag is similarly applicable to the launching of other types of balls, such as pickleballs, paddle balls and soft tennis balls.
Reference will now be made to an embodiment of the present invention, examples of which are illustrated in the accompanying figures for purposes of illustration only. One skilled in the art will readily recognize from the following description that alternative embodiments of the structures and methods illustrated herein may be employed, mulatis mutandis, without departing from the principles of the claimed invention.
Handle 7 may be a “trolley” type handle which is connected to telescopic arms, allowing handle 107 to be shifted back and forth from its initial unextended position (as shown in the FIGS.) to an extended position in which the handle is positioned further away from wheels 106 than in the initial unextended position. Carrying bag 101 may be wheeled using handle 107 in a manner similar to suitcases and luggage, in addition to being able to be carried by shoulder straps 108 or any other handle that may be added, e.g., between covers 102 and 103.
An automatic launching apparatus 206 is shown inside launcher compartment 207.
According to an embodiment of the preset invention, in order to allow the above-detailed features of carrying bag 101, bag 101 comprises a hard outer plastic shell exoskeleton, made of fiber reinforced thermoplastic, capable of supporting bag 101's content as well as providing the bag's rigidness. Secondly the internal mechanisms are held in place by an internal structure that is fastened to bag 101's chassis (outer shell). The internal structure holds the internal elements in place (e.g., launching apparatus 206), and functions as a compartment divider, by segmenting bag 101's volume. According to an embodiment of the invention, since the overall mass needs to be manageable by the end user (i.e., low-weight), the structural materials will be reinforced polymers instead of metals.
According to an embodiment of the present invention, the direction at which balls are ejected from barrel 303 is determined by the horizontal orientation of carrying bag 101, and by a mechanical launch angle mechanism. According to another embodiment of the invention, an electronically controlled deflection member (numeral 210 in
According to another embodiment of the present invention, in order to prevent balls from being jammed while being fed to the launching apparatus, an electrically rotatable ball sorting apparatus is provided for controlled loading of balls, wherein a user may determine the rate or other condition (e.g., upon receipt of an explicit command) at which balls will be delivered by the ball sorting apparatus to the loading section of the launching apparatus.
As shown in
Disc 5 may be driven by the vertical shaft of a gearbox 24 connected to motor 26, which may be bi-directional. Gearbox 24 and motor 26 are shown in
Carrying bag 70 may be wheeled using an extendable handle 72 or may be carried by shoulder straps 74, as described with respect to carrying bag 101. Carrying bag 70 is configured with an outer shell 76, generally a water repellant plastic material, which is compartmentalized, and an inner shell 35 spaced from outer shell 76 and enclosing the ball sorting apparatus 10, launching apparatus 86 and control system 90. Inner shell 35 is generally made of a lightweight metal such as aluminum, but also may be made of a plastic material.
An integral and expandable hopper compartment 82 provided with carrying bag 70 is shown in
Hopper compartment cover 81 is located above launching compartment cover 84 which covers the opening through which balls are launched. In this closed condition, a first number of balls, e.g., 100 balls, is able to be stored in hopper compartment 82, while being supported by platform 79 extending between opposed sidewalls 77 of outer shell 76. The balls may fall from platform 79 onto rotating disc 5 of ball sorting apparatus 10, which facilitates individual feeding of balls to the launching apparatus. A sidewall 77 may be partially defined by inner shell 35.
When hopper compartment cover 81 is set to the opened condition shown in
A mobile device compartment 41 may be attached to a central portion of the top 78 of outer shell 76. A tennis racket compartment 73 may be provided in a side section of outer shell 76.
As shown in
With reference to
As shown in
It will be appreciated that fly wheel 42 may also be used in conjunction with barrel 303 of launching apparatus 206 illustrated in
In other embodiments of the invention, the automatic launching apparatus may comprise a different launching apparatus, such as one that initiates ball ejection by means of air pressure.
Power source 88 is required to supply power to the various electrically powered components for a sufficient amount of time. Accordingly, a 3 amp-hour (Ah) 12 volt (V) battery may be used to power the launching apparatus and any other electrically powered components provided in various embodiments of the invention (e.g., an electronically controlled deflection member, sensors, processing elements, and a wireless communication module). An exemplary housing location of power source 88 is shown in
Control system 90 advantageously provides an anti-jamming function. As shown in
According to an embodiment, control system 90 further comprises one or more sensors 97 in data communication with controller 95, which are attached for example to the inner shell or to the outer shell, and are configured to detect control commands given from afar. The sensors 97 may include sound sensors for detecting voice or sound commands (e.g., the sound of a racket hitting a tennis ball), visual sensors for visually detecting commands (e.g., a predefined hand gesture), and/or any other sensor suitable to detect a control command. Accordingly, controller 95 further comprises a processing element suitable to process data from the one or more sensors.
According to another embodiment, control system 90 further comprises a wireless communication module 93 configured to wirelessly communicate with an electronic computing device 99 (e.g., smartphone, PDA, tablet, etc.) and to receive commands therefrom, and to transmit training related data (e.g., a summary of a training session) that may be processed by a server 100. Electronic computing device 99 may be conveniently retained in mobile device compartment 41 (
Below is an exemplary embodiment of a tennis-equipment carrying bag, the constructive details and constraints of which arise from the need to launch balls from one side of a tennis court to the other, and the need to withstand forces of ball launches. Obviously the specific values provided below are exemplary in nature and are provided for sake of demonstration. Obviously the present invention is not limited to these values and may be implemented with other values, without exceeding the scope of the claims.
One of the main considerations in the construction of a carrying bag according to the present invention is the manner in which a bag is kept in an upright position while launching balls and is prevented from falling over as result of a launch. Assuming that a launching apparatus (e.g., 206) comprises a fly wheel that turns at the speed of approximately 2500 revolutions per minute (rpm), and is configured to launch a tennis ball weighing less than 60 grams to a distance of at least 20 meters with an incline of 15-25 degrees above ground, the force exerted on the tennis ball would be between 250 and 300 Newtons (N). The distance dx between the front ejecting side of barrel 303 and the axle of wheels 206 is chosen so as to allow the bag to withstand the launching force, taking in account the horizontal component of the launch force FLx and the weight of the bag that defines the amount of resistance force the wheels are able to withstand. For instance, the distanced dx may be 310 millimeters (mm) in a bag weighing 5 kilograms (kg) with a center of gravity located 351 mm above ground and 171 mm from the front side of the barrel.
Although embodiments of the invention have been described by way of illustration, it will be understood that the invention may be carried out with many variations, modifications, and adaptations, without exceeding the scope of the claims.
Number | Date | Country | Kind |
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255995 | Nov 2017 | IL | national |
This is a U.S. bypass continuation-in-part application of international application PCT/IL2018/050927, filed on Aug. 22, 2018 and entitled “TENNIS TRAINING BAG”, which claims priority from IL 255995, filed on Nov. 29, 2017 and entitled “TENNIS TRAINING BAG,” which are all incorporated herein by reference.
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Number | Date | Country | |
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Number | Date | Country | |
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Parent | PCT/IL2018/050927 | Aug 2018 | US |
Child | 16885017 | US |