The present invention relates generally to archery and more specifically to a method of micro adjusting cam timing and cam orientation on an archery bow, which utilizes separating filaments of a cable or a bowstring to insert of an adjustment spacer into the split area.
It appears that the prior art does not teach or suggest a method of micro adjusting cam timing and cam orientation on an archery bow by separating filaments of a cable or bowstring and inserting an adjusting spacer into a split area in the cable or the bowstring. Accurate arrow shots require that both cams in a two cam system hit a rotation stop at precisely the same time. Otherwise, release force in each cam will not be equal. However, increasing accuracy of arrow shots is not limited to archery bows with a two cam system, but should include any type of cam setup, such as twin cams, single cams, solo cams, hybrid cams, and binary cams. The cable lengths of other cam setups also need to have the length of the cable and/or bowstring adjusted precisely, so that the cam will be orientated in a manner in which it's draw stop properly and precisely stops the cam in an orientated location that the cam was intended to stop at by the manufacture.
Accordingly, there is a clearly felt need in the art for a method of micro adjusting cam timing and cam orientation on an archery bow, which utilizes separating filaments of a cable or a bowstring to insert an adjustment spacer into a split area, or providing a cable or bowstring with a split holder pre-inserted into a split area for facilitating the later insertion of the adjustment spacer.
The present invention provides a method of micro adjusting cam timing and cam orientation on an archery bow, which provides a cable or bowstring with a split holder inserted into a split area for facilitating the later insertion of an adjustment spacer. The method of micro adjusting cam timing and cam orientation on an archery bow (micro adjusting method) preferably includes separating filaments of a cable or bowstring to form a split area and inserting an adjustment spacer into the split area. Insertion of the adjustment spacer into the bowstring or cable causes a length of the bowstring or cable to be shortened. When the adjustment spacer is retained in a cable it enables the bowstring to have an increased draw length.
The split area in the cable or bowstring requires compressing the limbs with any suitable method, such as a bow press to release tension of the filaments of the cable or bowstring to be separated to allow insertion of the adjustment spacer. However, the cable or bowstring may be sold with a pre-inserted split holder to allow the adjustment spacer to be inserted into the bow string without the need for a bow press. The split holder is capable of being moved up or down the cable or bowstring to create a split area in any part of a length of the cable or bowstring. The adjustment spacer preferably includes a middle perimeter, which tapers outward in opposing directions to a larger retention perimeter. The adjustable spacer may be fabricated from any suitable material, such as a plastic, a metal, rope, wood or any combination of materials. The split holder preferably includes a middle perimeter, which tapers outward in opposing directions to a larger retention perimeter, but is larger than the adjustment spacer. The split holder may be fabricated from any suitable material, such as a plastic, rope, a metal, wood or any combination of materials.
These and additional objects, advantages, features and benefits of the present invention will become apparent from the following specification.
With reference now to the drawings, and particularly to
The cable 102 or bowstring 104 may be sold with a split holder 12 to allow the adjustment spacer 10 to be inserted into the split area 106 of the cable 102 or bowstring 104 without the need for compressing the limbs 108. However, the split holder 12 could be inserted between filaments of the cable 102 or bowstring 104 while the cable 102 or bowstring 104 is being constructed. The split holder 12 is moved up or down the cable 102 or bowstring 104 to create the split area 106 in any part of a length of the cable 102 or bowstring 104. The adjustment spacer 10 and the split holder 12 preferably include a middle perimeter 14, which tapers outward in opposing directions to a larger retention perimeter 16. A shortened length of the cable 102 or bowstring 104 is proportional to a length of the middle perimeter 14. However, other designs of the adjustment spacer 10 and split holder 12 may also be used. Alternatively, the adjustment spacer 10 and the split holder 12 could be the shape of a rod fabricated from material, which is soft enough to compress when pressure is applied by the plurality of filaments of the cable 102 or bowstring 104, such as rubber or wood.
The following dimensions are given by way of example and not by way of limitation. It is preferable that dimension A have a range of between 0.005-0.5 inches. It is preferable that dimension B have a range of between 0.25-1.0 inches. However, other dimensions may also be used. The adjustable spacer 10 and the split holder 12 may be fabricated from any suitable material, such as a plastic, a metal, a rope, wood or any combination of materials. The adjustable spacer 10 and the split holder 12 are retained in the cable 102 or bowstring 104 by axial tension of the cable 102 or bowstring 104.
With reference to
While particular embodiments of the invention have been shown and described, it will be obvious to those skilled in the art that changes and modifications may be made without departing from the invention in its broader aspects, and therefore, the aim in the appended claims is to cover all such changes and modifications as fall within the true spirit and scope of the invention.
This is a nonprovisional patent application, which claims the benefit of provisional patent application No. 62/855,015 filed on May 31, 2019.
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Number | Date | Country | |
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62855015 | May 2019 | US |