MULTI-COLORED LENS CONFIGURED AS A GOLF AID
20200033639 ยท 2020-01-30
Inventors
Cpc classification
G02C7/104
PHYSICS
A63B71/0622
HUMAN NECESSITIES
International classification
Abstract
A lens for eyewear is shown. The lens includes a lower segment having a first coating applied thereon having a first color, an upper segment having a second coating applied thereon having a second color, and a middle segment being a transition period between the lower segment and the upper segment wherein the first coating and the second coating blend together to produce a range within a color spectrum. The lens of claim 1, wherein the lens is configured to enable a wearer, after hitting a golf ball, to view a flight of the golf ball through the upper segment. The first color includes a portion of the color spectrum having a wavelength range of 450-495 nm or a frequency range of 670-610 THz and the second color includes a portion of the color spectrum having a wavelength range of 590-750 nm or a frequency range of 505-400 THz.
Claims
1. A lens for eyewear comprising: a lower segment having a first coating applied thereon having a first color; an upper segment having a second coating applied thereon having a second color; and a middle segment being a transition period between the lower segment and the upper segment wherein the first coating and the second coating blend together to produce a range within a color spectrum.
2. The lens of claim 1, wherein the lens is configured to enable a wearer, after hitting a golf ball, to view a flight of the golf ball through the upper segment.
3. The lens of claim 1, wherein the first color includes a portion of the color spectrum having a wavelength range of 450-495 nm or a frequency range of 670-610 THz.
4. The lens of claim 1, wherein the coating applied to the lower segment is a first water-soluble dye includes C250-50 Opti-Safe Lens Dye.
5. The lens of claim 1, wherein the lower segment covers 20-35% of the lens.
6. The lens of claim 1, wherein the second color includes a portion of the color spectrum having a wavelength range of 590-750 nm or a frequency range of 505-400 THz.
7. The lens of claim 1, wherein the coating applied to the lower segment is a second water-soluble dye including (i) BPI molecular catalytic tint #31900, and (ii) BPI molecular catalytic tint #31700.
8. The lens of claim 1, wherein the upper segment covers 55-80% of the lens.
9. The lens of claim 1, wherein the middle segment covers 2-8% of the lens.
10. The lens of claim 1, wherein the lens is configured for viewing an object at a ground level through the first color.
11. The lens of claim 1, wherein the lens is configured to enable a wearer to view a golf ball, during address of the golf ball and prior to hitting the golf ball, through the first color.
12. The lens of claim 1, wherein the lens is formed of one of polycarbonate, Trivex, high-index plastic or glass.
13. The lens of claim 1, wherein the first coating and the second coating are water-soluble dyes of differing colors.
14. A multi-colored lens comprising: a lens component configured for placement in an eyewear frame; and a plurality of coatings applied to the lens component, wherein the plurality of coatings includes (i) a first coating having a first color applied to a lower segment of the lens component relative to a bottom of the eyewear frame, and (ii) a second coating having a second color applied to an upper segment of the lens component, and wherein a transition area is formed between the lower segment and the upper segment and being a transition from the first color to the second color.
15. The multi-colored lens of claim 14, wherein the multi-colored lens is configured to enable a wearer, after hitting a golf ball, to view a flight of the golf ball through the upper segment.
16. The multi-colored lens of claim 14, wherein the first color includes a portion of a color spectrum having a wavelength range of 450-495 nm or a frequency range of 670-610 THz.
17. The multi-colored lens of claim 14, wherein the first coating applied to the lower segment is a first water-soluble dye includes C250-50 Opti-Safe Lens Dye.
18. The multi-colored lens of claim 14, wherein the second color includes a portion of a color spectrum having a wavelength range of 590-750 nm or a frequency range of 505-400 THz.
19. The multi-colored lens of claim 14, wherein the second coating applied to the upper segment is a second water-soluble dye including (i) BPI molecular catalytic tint #31900, and (ii) BPI molecular catalytic tint #31700.
20. The multi-colored lens of claim 14, wherein the lower segment covers 20-35% of the lens, the upper segment covers 55-80% of the lens and the middle segment covers 2-8% of the lens.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0008] The patent or application file contains at least one drawing executed in color. Copies of this patent application publication with color drawing(s) will be provided by the Office upon request and payment of the necessary fee.
[0009] Embodiments of the disclosure are illustrated by way of example and not by way of limitation in the figures of the accompanying drawings, in which like references indicate similar elements and in which:
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DETAILED DESCRIPTION
[0025] Certain embodiments and examples are disclosed herein; however, the disclosure is not intended to be so limited and the inventive concept naturally extends beyond the specific recited embodiments. As a result, the scope of the claims should not be limited by any particular embodiment described herein. For instance, with respect to any method or process discussed below, the operations of the method or process can be performed in any suitable order and/or may be optional.
I. Overview Summary
[0026] Embodiments of eyewear including one or more multi-colored lenses are described. In addition, methods of application of one or more coatings to the lenses of eyewear are described. Specifically, the eyewear described may be configured to aid in a wearer's ability to maintain eye contact with a ball or other object utilized in a sporting activity.
[0027] The term eyewear may generally refer to a frame that holds one or more lenses through which a wearer looks. Examples of eyewear include but are not limited to eyeglasses (glasses), corrective glasses, reading glasses, sunglasses,
[0028] In one embodiment, an eye glass apparatus includes a pair of lenses that are multi-colored. In one embodiment, the lenses are created by using the entire color spectrum vertically and horizontally to create a distinct targeting pattern on the lenses. In some embodiments, the multi-colored pattern on the lenses ranges across the color spectrum from the colors blue to red, including the colors there between. In some embodiments, a bottom portion of a lens is blue and an upper portion of the lens is red with the lens transitioning from blue to red utilizing additional colors there between.
[0029] The distinct multi-color pattern provides several advantages as will be discussed herein and illustrated in the accompanying figures. In one embodiment, the lenses are configured to be utilized in eyewear worn while playing golf. The distinct multi-color pattern is configured to encourage the golfer wearing the eyewear to maintain a particular positioning of his head while addressing a golf ball and during his swing. While encouraging the golfer to maintain a particular head positioning, the distinct pattern encourages the golfer to maintain eye contact with the golf ball.
[0030] As will be discussed below, by viewing the golf ball through the blue portion of the lenses while addressing a golf ball and during one's swing, the distinct multi-color pattern forces the golfer to maintain the correct head positioning, e.g., one's chin separated from the neck/chest. Specifically, the distinct multi-color pattern is configured so that when the golfer moves his head while addressing the golf ball or during his swing, the golfer will then view the golf ball through a non-blue portion of the lenses. The golfer is then aware that he has moved his head and should stop swinging.
[0031] As all golfers know, maintaining one's head positioning while addressing a golf ball and during one's swing is integral in maintaining eye contact as well as proper form. Thus, the distinct multi-color pattern of the lenses disclosed herein significantly aids a golfer in maintaining proper positioning of his head, which in turn aids the golfer in maintaining eye contact as well as proper form while swinging the golf club.
[0032] A second advantage provided by the lenses having disposed thereon the distinct multi-color pattern is the ability of the golfer to more clearly see the golf ball after hitting the ball. Upon hitting the golf ball, it is often difficult to follow the ball as it travels due to the lack of contrast between a white golf ball and the light blue or white sky. Therefore, it is common for golfers to lose sight of their ball and/or be forced to rely on others to follow their ball. However, such practices are not ideal, and often result in lost golf balls, especially when playing alone. Further, upon losing a golf ball, a golfer is forced to take a drop, which negatively impacts the golfer's score. However, in the embodiment in which the upper portion of the lenses are red, a golfer views the flight of the golf ball through the red coloring, which creates a color contrast between the golf ball (which now appears as a dark color, e.g., black) and the sky (which now appears red).
[0033] In some embodiments, the distinct multi-color pattern of the lenses may be configured for alternative activities including baseball, hockey, croquet, racquetball or any sporting activity that requires a player to strike or hit a ball with an object, such as a club, stick or bat.
[0034] In some embodiments, the distinct multi-color pattern may be disposed on prescription lenses. However, in other embodiments, the distinct multi-color pattern may be disposed on non-prescription lenses.
II. Terminology
[0035] In the following description, certain terminology is used to describe various features of the invention. For example, the term characteristic refers to a feature or quality of an object that may be observable by means of sight, smell, hearing, taste and/or touch. Characteristics may include attributes, qualities, properties, traits, aspects or elements of object that, when taken collectively, may identify an object. The terms or and and/or as used herein are to be interpreted as inclusive or meaning any one or any combination. Therefore, A, B or C or A, B and/or C mean any of the following: A; B; C; A and B; A and C; B and C; A, B and C. An exception to this definition will occur only when a combination of elements, functions, steps or acts are in some way inherently mutually exclusive.
[0036] As this invention is susceptible to embodiments of many different forms, it is intended that the present disclosure is to be considered as an example of the principles of the invention and not intended to limit the invention to the specific embodiments shown and described.
III. Illustrative Embodiments
[0037] Referring to
[0038] As is apparent from the illustration of
[0039] In addition, after hitting the ball and turning one's head to track the trajectory of the ball, the glasses 100 provide a visual aid in maintaining sight of the ball. Specifically, the segment 126 is configured and shaped such that upon raising one's head after striking the ball, the golfer will view the sky, and hence the trajectory of the ball, through the segment 128. The coloring of the segment 128 has the functionality of creating a contrast between the light colored sky and the golf ball. For example, in the embodiment in which the segment 128 has a red-orange color, the sky is seen by the golfer as having a red-orange color and the golf ball is viewed as a dark color (e.g., black); thus, the golfer can easily maintain sight of the trajectory of the golf ball.
[0040] Still referring to
[0041] Referring back to
[0042] The bridge 110 includes a component that also extends from the rim portion 106A to the rim portion 106B to provide stability and support. In addition, an underside of the bridge 110 may rest on the wearer's nose thereby supporting at least a portion of the weight of the glasses 100. In addition, the nose pieces 110A-110B may be coupled to the rim portions 106A-106B. With respect to the nose pieces 110A-110B, each may include a pad arm 114A-114B and a nose pad 116A-116B. The pad arms 114A-114B are configured as attachments that hold the nose pads 116A-116B in a predetermined position. However, in some embodiments, the pad arms 114A-114B may be adjustable so that the glasses 100 may conform to the wearer's nose. In addition, the nose pads 116A-116B may include components configured to assist in maintaining the glasses 100 in a desired position on the wearer's face. Further, the nose pads 116A-116B may be configured to provide comfort for the wearer. In some embodiments, the nose pads 116A-116B may be comprised of various materials, for example, plastic or rubber. In other embodiments, alternative forms of nose pieces may be included and may be integrally formed with the frame 102, as illustrated in
[0043] Additionally, the frame 102 includes arms 112A-112B (or temples) that couple to the rim portions 104A-104B via end pieces 120A-120B and extend over the ears of the wearer to help hold the glasses 100 in place. The end pieces 120A-120B may include, or alternatively, couple to a set of hinges that enable the arms 118A-118B to fold inward when not being worn by the wearer. In some embodiments, the hinges may be spring hinges, which provide for hyperextension of the arms 118A-118B. Finally, the frame 102 may include a set of earpieces 116A-116B (or temple tips). In one embodiment, each earpiece 116A-116B may include a plastic coating that covers the portion of the arm 118A-118B that rests on top of the ears of the wearer. In some embodiments, each lens 118A-118B may be comprised of a plastic or polycarbonate material. Referring to
[0044] Referring now to
[0045] Referring now to
[0046] The lens 104A is partitioned into a plurality of color segments with each segment serving a specific purpose in aiding a golfer wearing the glasses 100 to maintain a proper head position. In one embodiment, as illustrated, the lens 104A is partitioned into three color segments 124, 126 and 128, with the segment 126 including a plurality of sub-segments 130, 132 and 134. The segment 126 may be referred to as a transition segment representing a portion of the lens 104A that includes a plurality of colors that transition from the color of the bottom segment 124 to the color of the top segment 128. The segment 126 may be divided into more or fewer sub-segments.
[0047] The segment 124 aids in a golfer maintaining a proper head position while addressing a golf ball, as seen in
[0048] The segment 128 aids a golfer in at least two facets. First, as described above, when a golfer is addressing a golf ball or swinging a golf club, viewing the ball through the segment 128 acts as an indication to the golfer than he has moved his head from the proper position and should stop swinging and/or readdress the ball. Second, after hitting the ball, the golfer's head naturally moves toward the flight of the ball; however, the ball is often difficult to track. Specifically, the lack of contrast between a white golf ball and a light blue or white sky routinely causes golfers to lose sight of their ball. When wearing eyewear including the lenses 104A-104B, such as the glasses 100, the lack of contrast between the sky and ball is non-existent. When the golfer looks toward the sky to track the flight of the ball, the golfer naturally views the sky through segment 128 due to its configuration. In one embodiment, the segment 128 may be colored red causing the sky to appear red and the golf ball to appear dark (e.g., black). Therefore, while wearing the glasses 100, the golfer is able to track the flight of a golf ball against the sky.
[0049] As discussed above, the segment 126 is configured and shaped to provide a transition area between the segment 124 and the segment 128. The transition from the color of the segment 124 to the color of the segment 128, as opposed to a hard contrast, is configured to prevent the formation of headaches or visualization trouble for the wearer, which otherwise may occur if the lenses 104A-104B were to have a hard contrast between the colors.
[0050] It should be noted that the lenses 104A-104B may vary in thickness. For example, in one embodiment, the thickness of each of the lenses 104A-104B may be approximately 1.0-1.1 mm. In other embodiments, the thickness of each of the lenses 104A-104B may be approximately 1.7 mm. However, the disclosure is not intended to be so limiting and the thickness of the lenses 104A-104B may be dependent on a prescription of the lenses 104A-104B.
[0051] Referring to
[0052] The segment 206 covering an upper portion of the lens 200 may be coated to be tinted or dyed a second color. In some embodiments, the second color may be a red-orange (e.g., as is known in the color spectrum as having a wavelength range of approximately 590-750 nm and/or a frequency ranging from approximately 505-400 THz).
[0053] Furthermore, the segment 204 may be coating to be tinted or dyed a plurality of colors. For example, the segment 204 may be created by the blending of the first color and the second color. As is discussed below, the lens 200 may be dipped in a plurality of liquids to apply the coating. During the coating process, the first color may blend with the second color, thereby creating the coloring of the segment 204. As is illustrated in
[0054] Referring to
[0055] The lenses 304A-304B may be formed of one of a plurality of materials, as discussed above with respect to lenses 104A-104B. Similarly, in some embodiments, the lenses 304A-304B may be tinted, photochromic and/or aspheric. Similarly to the embodiment illustrated in
[0056] It should be noted that the embodiment of
[0057] Referring now to
[0058] The lenses 404A-404B may be formed of one of a plurality of materials, as discussed above with respect to lenses 104A-104B and 304A-304B. Similarly, in some embodiments, the lenses 404A-404B may be tinted, photochromic and/or aspheric. As is also seen in the embodiments illustrated in
[0059] Based at least on the shapes and forms illustrated in the embodiments of
[0060] Referring to
[0061] Referring to
[0062] Referring to
[0063] Referring now to
[0064] Referring to
[0065] A second operation performed in the method 600 includes inserting a second predetermined portion of the first lens of the eyewear apparatus into a second liquid for a second predefined amount of time (block 604). In one embodiment, the second liquid may be comprised of a second water-soluble dye or tint dissolved in water. Specifically, the first water-soluble dye or tint may be dissolved in 1 quart of water heated to a temperature range of 200210 F. (93.3-98.8 C.), wherein in one embodiment, the temperature is 205 F. In one embodiment, the second water-soluble dye or tint may be a blue dye, and may be an amount within the range of 1/16 ounce to ounce of C250-50 Opti-Safe Lens Dye (Blue). In one embodiment, the amount may specifically be of an ounce. In one embodiment, a predetermined percentage of a lower portion of the lens is dipped into the second liquid for a period of time ranging from 10-30 minutes. In one embodiment, the lower portion of the lens may be dipped in the second liquid for a period of 20 minutes. In some embodiments, the percentage of the lower portion of the lens that is dipped into the second liquid may range from 20-35% of the lens. In some embodiments, the range is from 25-31% and in one embodiment, 29% of the lower portion of the lens is dipped into the second liquid.
[0066] It should be noted that a transition segment is formed between the first segment (i.e., upper portion) and the second segment (i.e., lower portion). The coloring of the coating of the transition segment is formed by the blending of the coloring of the first segment and the second segment. Specifically, as the second segment is dipped into the second liquid and pulled out of the second liquid, the colors of the first segment and second segment blend together. In some embodiments, the transition segment may range from 2-8% of a middle portion of the lens formed between. In yet some embodiments, the range of transition segment may be 4-6% and in one embodiment, the transition segment may cover 4% of the lens between the first segment and the second segment.
[0067] Furthermore, a third operation performed in the method 600 includes inserting the first lens of the eyewear apparatus into a third liquid for a third predefined amount of time (block 606). In some embodiments, the third liquid is cool water, which may be, for example, ranging in temperature from 35-50 F. The lens may be dipped in the third liquid for a time period ranging from, in some embodiments, 2-10 minutes. In some embodiments, the time period may be 5 minutes.
[0068] Referring now to