This invention relates to an improvement in a bow sighting device. Depending on the weight and aerondynamic characteristics of the arrow, a bow sight allows the archer to increase the probability of accurately striking the desired target. Of course, the weight of the arrow requires that the archer aim higher vertically as the distance to the target increases.
Known sighting techniques involve a trial and error system whereby the archer shoots several arrows in order to determine the proper setting for the bow sight and then makes an appropriate mark on a piece of tape adhered to the sight. Additional markings are made on the tape to accommodate different distances to the target. This known bow sight technique is obviously cumbersome and time consuming.
According to this invention, a bow sight is provided and comprises a support member having front and rear ends, a sight unit secured to the front end and a pointer extending from the rear end, a connecting bar for simultaneously adjusting the sight unit and the pointer, and a sight marker adjustably mounted at the rear end for the purpose of alignment with the pointer to accurately calibrate the sight unit.
In the drawings:
With attention to the drawings and with particular reference to
Connecting bar 10 includes nut and bolt assembly 11 which cooperates with a ledge (not shown) disposed in slot 12 in order to adjustably fix the end of connecting bar 10 relative to rear end 4 of support 2. In addition, pointer 13 extends from the rear end of connecting bar 10. Also, connecting bar 10 is pivoted at pivot point 14 with the end thereof opposite nut and bolt assembly 11 being pivotally attached to mounting member 6. By loosening nut and bolt assembly 11, connecting bar 10 is allowed to rotate about pivot point 14 and mounting member 6 and associated sight unit 8 are caused to slide with respect to front end 3 and pointer 13 is concurrently caused to slide along arcuate member 5.
According to this invention, a sight marker, generally identified by the numeral 15 in
A modification of the bow sight is depicted in
Also, screw 30 is slidable within slot 31 and is screwed into sight unit 32. Finally, sight markers 33 are slidable within slot 34, as discussed above in connection with the version of the invention shown in
In operation, the archer takes a few practice shots utilizing sight unit 8 in order to determine a baseline for the sight. Then nut and bolt assembly 11 is loosened which causes sight unit 8 to move to a more desired elevation point.
As sight unit 8 is moved, pointer 13 is simultaneously moved along arcuate member 5. When the desired calibration point is reached, screw 19 of one of the sight indicators 15 is loosened and maneuvered within slot 22 to cause pointed end 21 to line up with pointer 13. Then screw 19 is tightened to lock the associated sight marker 15 in place. Depending on the calibration point for an arrow of different speed or flight characteristics and/or a target located at a different distance, this procedure is repeated with different sight settings locked in by means of the remaining sight markers 15. The operation of the bow sight shown in
Therefore, by this invention, a bow sight is provided which is easy to use and extremely accurate without the inaccuracies of known manual marking sights. In addition, the sight is easily adjustable and accommodates a wide range of calibration settings.