This invention relates to training devices for improved golf putting. More particularly it relates to practice putting training devices that employ optical beams, particularly laser beams.
The game of golf is very challenging but enjoyable by all, if the various skills required for the game can be mastered. One of the most difficult skills to master is that of putting the golf ball. It appears deceptively simple to the casual observer, but in learning the skills needed, more practice, and even more practice often fail to teach most how to come anywhere close to mastering the putting of a golf ball into the golf cup. The speed and the direction that the ball must possess when making a particular putt are each influenced by a variety of conditions of the green. Especially, the degree of slope or curve of the green's surface toward/away from the hole and elevation relative to the juxtaposition of the golf cup or hole effects the adjusted speed and direction to aim the putt, which in turn affects the shape or curve of the ball's route to the golf cup. All too often putts are not alignable by a straight line into the hole. Professional golfers can rely on caddies who nave read and recorded a particular green's slope from practically every direction and distance of approach. But for amateurs who often play without the assistance of a caddie, self training techniques and devices for learning how to read the putting surface of a green can be invaluable. An efficient and simple training device that would enable an average amateur golfer to more readily learn and practice subtle breaks, curves, slopes, and speeds from various distances on a golf green (using little more than visual observation) would represent a significant advancement in the art of golf training and would be well received by all those who endeavor to learn, to teach, and to manage putting in the game of golf on or off golf courses.
Using optical beams, especially lasers, as guiding systems for putting practice are well known in the art. Typically, laser guided golf putting systems use lasers to trace substantially horizontal, straight line paths for the golfer to aim along. They may use external lasers or in some instances lasers embedded within the shaft or head of the putter. Such systems are disclosed in, for example, U.S. Pat. Nos. 6,213,887B1; 5,818,036; 6,579,191; 6,213,887; 6,450,893; 6,695,709; 5,527,041; 6,036,608, and many more. However, as they use substantially horizontal directional beams, they all fail to effectively train putting skills for most putts which are neither flat nor straight line putts. Learning speed control for these curvy breaks is practically impossible. Training to adjust the rolling speeds of putted golf balls to accommodate elevational breaks and slopes or curves of golf greens, without the aid of a caddie, have therefore led to extremely complex methods and devices, as for example those disclosed in U.S. Pat. No. 7,028,032 which uses platforms, reference numerals, aim points, etc. A means for employing laser technology to replace and/or negate the need for such complex platforms, etc. in prior art devices would constitute a welcomed advancement in the art of golf putting training.
The invention is a training device and method for practicing the subtleties of putting on golf greens where there exist elevational breaks, curves, and/or slopes that influence the speed and directional route of the putted ball to successfully drop into the golf cup.
The invention comprises at least two, and preferably three principal components. First, there is a source for directing an optical beam, particularly a laser onto the surface of a practice green, said source being engageable to a practice putting flagstick and said source, upon engagement with said flagstick, being vertically disposed to in turn deliver the beam in a vertical direction. The source can also be a source for other optical beams, including but not limited to L.E.D., incandescent light, and infrared. The optical beam may be white light, diffracted light, filtered into a single color. For example, most commonly colored lasers are suitable in either red or green. It is preferred to use colored optical beams because subtle changes in the intensity of the beam, a valuable attribute of the invention, are more readily detected by the naked eye, during the day, in the evening, or when there is less tan an ideal amount of daylight.
Secondly, the optical beam source is employed in combination with a component for generating a pattern similar to a target or even a bullseye. That is, a pattern of concentric circles of light surrounding a central point, said central point being the perimeter of a golf cup. The golf cup is disposed in the surface of a golf green, particularly a practice putting green. The green can be either a real ground or fabricated to simulate a real golf green. Such fabrications may be found indoors or out doors, and can be constituted from mats, rugs, tarps, etc. The pattern of the invention has a plurality of at least 2 concentric illuminated circles of light.
Thirdly, the invention preferably employs a micro controller for communicating digitized electronic signals between the light source and each point along the circumferential perimeter of each concentric circle of light along the surface of the practice green, and serves to translate subtle elevational, directional curves and slopes at the greens surface by varying the intensity of the light beam at each point along the circumference of each concentric circle of the optical beam imaged at the surface of the green.
Preferably, the device 10 of the invention is laser generated, and the method of this invention preferably employs laser generated light. Referring now to
An alternative preferred embodiment of the present invention is to provide a portable handheld version of the device 10 of the present invention which, as depicted in
Another preferred embodiment for certain customers comprises device 10 being provided in unitary integral construction with flagstick 15, as particularly noted in
It should be understood that the beams 13 and circles of the present invention may vary in color, and that the devices are preferably battery operated but may be powered by other sources. Also as previously stated other forms of light energy other than lasers may be adaptable for employment in the method and device of the present invention. Another alternative embodiment of this invention is to dispose the device 10 of the invention within a golf cup 18 so as to vertically direct the beams 13 upward onto a mirror (not shown) which can reflect the concentric circular light pattern 14 back downward onto green 60. It is to be understood that optical lens and cameras may be employed in the method and device of this invention.
In the method and operation of the present invention, preferably a laser generator configured to combine with or to be attachable to surround a flagstick, indisposed to vertically direct a laser pattern of concentric and illuminated circles onto the surface of a golf putting green. The concentric illuminated circles have at their center a golf cup disposed in said green. The illumination of the circles can preferably vary in intensity of light or shade of color in correlation to the contour of the green, i.e. elevation, curve, and/or slope, near the golf hole. In this method the laser generator may be integral to the flagstick or may be portable, i.e. easily attachable to or removable from the flagstick. Also this method may be employed to have the laser generator within a golf cup and engaging the flagstick at the end inside a golf cup so as to vertically generate the concentric illuminated circles upwardly onto for example a mirror which reflects the illuminated concentric circles of light back downward onto the green.
| Number | Name | Date | Kind |
|---|---|---|---|
| 2263727 | Gensburg | Nov 1941 | A |
| 4560167 | Perreau et al. | Dec 1985 | A |
| 4906006 | Sigunick | Mar 1990 | A |
| 4936583 | Peabody et al. | Jun 1990 | A |
| 5181721 | Halliburton | Jan 1993 | A |
| 5265875 | Fitzgerald | Nov 1993 | A |
| 5421578 | Ames | Jun 1995 | A |
| 5445373 | Franks | Aug 1995 | A |
| 5452897 | Mick | Sep 1995 | A |
| 5527041 | Terry et al. | Jun 1996 | A |
| 6004220 | Razzano | Dec 1999 | A |
| 6036608 | Morris | Mar 2000 | A |
| 6099139 | Lapensee | Aug 2000 | A |
| 6129641 | Burch | Oct 2000 | A |
| 6146283 | Ferguson, III | Nov 2000 | A |
| 6165083 | Stenger et al. | Dec 2000 | A |
| 6213887 | Carney | Apr 2001 | B1 |
| 6241621 | Maher | Jun 2001 | B1 |
| D448059 | Battaglia | Sep 2001 | S |
| 6419590 | Criger | Jul 2002 | B1 |
| 6503152 | Pelz | Jan 2003 | B1 |
| 6569028 | Nichols et al. | May 2003 | B1 |
| 6579191 | Hambly | Jun 2003 | B1 |
| 6695709 | Ottensmeyer | Feb 2004 | B1 |
| 6767291 | McCarthy | Jul 2004 | B1 |
| 6796910 | Foster | Sep 2004 | B1 |
| 6871414 | Burney et al. | Mar 2005 | B2 |
| 7134966 | Tice | Nov 2006 | B1 |
| 7297069 | Donovan et al. | Nov 2007 | B2 |
| 7306525 | Sawada | Dec 2007 | B2 |
| 8109837 | Khananayev et al. | Feb 2012 | B1 |
| 8142301 | Haag et al. | Mar 2012 | B2 |
| 8376871 | Cloud | Feb 2013 | B1 |
| 8398500 | Bouvier | Mar 2013 | B1 |
| 8439767 | Feiner | May 2013 | B2 |
| 8499465 | Kuta | Aug 2013 | B2 |
| 8753218 | Suchanek | Jun 2014 | B2 |
| 8864333 | Burkart et al. | Oct 2014 | B2 |
| 20090203457 | Gibbons | Aug 2009 | A1 |
| 20100004068 | Adame | Jan 2010 | A1 |
| 20100197420 | Lim | Aug 2010 | A1 |
| 20140342842 | Allen et al. | Nov 2014 | A1 |
| Entry |
|---|
| page 44 Schafter Kirchhoff Laser Pattern Generators on company website(copy enclosed). |
| p. 44 Schatter Kirchhoff Laser Pattern Generators on company website(copy enclosed) Jan. 2014. |