Bow and arrow electronic sighting telescope support capable of being adjusted at multiple angles
By designing a multi-angle adjustment of the bow and arrow electronic sight bracket, the multi-angle adjustment of the electronic sight is achieved using the chute guide rail structure and gear system, which solves the complex operation of the traditional stand and improves the accuracy of archery.
Patent Information
- Application Number
- CN202422388820.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-29
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2034-09-29
AI Technical Summary
The traditional bow and arrow electronic sight holder is complex and difficult to adjust the position of the electronic sight, and cannot achieve accurate adjustments from multiple angles, which affects the accuracy of archery.
A multi-angle adjustment bow and arrow electronic sight bracket is designed, and the longitudinal adjustment seat is connected to the sliding guide rail structure of the gear box. It combines the gear and knob to achieve up and down adjustment. A translatable and rotatable horizontal adjustment rod is installed in the snap. It is fixed by locking bolts to achieve multi-angle adjustment of the electronic sight.
It reduces the difficulty of adjustment, realizes accurate adjustment of multi-angle electronic sights, and improves the accuracy of archery.
Smart Images

Figure CN223005430U_ABST
Abstract
Description
Technical Field:
[0001] The utility model relates to the technical field of bows and arrows, in particular to an electronic sight bracket for bows and arrows with multi-angle adjustment. Background Art:
[0002] At present, sights are often used for aiming in archery sports. Commonly used sights include mechanical sights and electronic sights. Among them, when using an electronic sight, it needs to be installed through a sight bracket. In addition to the installation and fixing function, the sight bracket also needs to adjust the front, back, left, right, up, and down positions of the electronic sight. For traditional sight brackets, when adjusting the position of the electronic sight, the operation is complex and difficult, and multi-angle universal adjustment cannot be achieved. The position and angle of the electronic sight cannot be accurately positioned, thus affecting the precise adjustment and use of the electronic sight and ultimately affecting the accuracy of archery.
[0003] In summary, how to achieve multi-angle precise adjustment of the electronic sight has become an urgent technical problem in the industry. Content of the Utility Model:
[0004] The utility model provides an electronic sight bracket for bows and arrows with multi-angle adjustment to make up for the deficiencies of the prior art, and solves the problems of complex operation, high difficulty, and inability to achieve multi-angle precise adjustment when adjusting the electronic sight in the past.
[0005] The technical solution adopted by the utility model to solve the above technical problems is:
[0006] An electronic sight bracket for bows and arrows with multi-angle adjustment includes a longitudinal adjustment seat. The longitudinal adjustment seat is slidably connected to one side of a gear box through a chute guide rail structure. A tooth rail is provided on the side of the longitudinal adjustment seat close to the gear box. A gear meshing with the tooth rail is provided in the gear box. The gear is connected to a knob outside the gear box. A buckle is provided on the other side of the gear box. A horizontally adjustable rod that can be translated and rotated is installed in the buckle. The buckle and the horizontally adjustable rod are fixed through a locking bolt. The end of the horizontally adjustable rod is connected to the electronic sight.
[0007] Limit bolts are respectively provided at the upper and lower ends of the tooth rail.
[0008] Longitudinal scales are provided on the front side of the longitudinal adjustment seat, and pointers cooperating with the longitudinal scales are provided on the gear box.
[0009] A plurality of adjustment holes are provided on the side of the longitudinal adjustment seat away from the gear box. The adjustment holes are connected to the anchor guide rail through bolts.
[0010] The anchor guide rail is slidably installed in the chute of the sight fixing seat, and the sight fixing seat and the anchor guide rail are locked and fixed through fastening screws.
[0011] The sight fixing base is installed on the bow window through several screws.
[0012] The transverse adjusting rod is provided with transverse scales.
[0013] The end of the transverse adjusting rod is installed with a front-back adjusting seat. The bottom of the front-back adjusting seat is provided with a dovetail groove, and the top of the electronic sight is movably inserted into the dovetail groove through a dovetail block.
[0014] The present utility model adopts the above scheme and has the following advantages:
[0015] The longitudinal adjusting seat and one side of the gear box are slidably connected through a chute guide rail structure. A tooth rail is provided on the longitudinal adjusting seat, and a gear meshing with the tooth rail is provided in the gear box. By rotating the knob, the knob drives the gear to rotate, and the gear can move up and down along the tooth rail to realize the up and down position adjustment of the gear box. A buckle is provided on the other side of the gear box, and a transverse adjusting rod that can be translated and rotated is installed in the buckle. The end of the transverse adjusting rod is installed with an electronic sight. By translating and rotating the transverse adjusting rod, the left and right positions and the angle of the electronic sight can be adjusted, reducing the adjustment difficulty, realizing the multi-angle adjustment of the electronic sight, ensuring the precise adjustment and use of the electronic sight, and improving the archery accuracy. Description of the drawings:
[0016] Figure 1 It is a front view three-dimensional structure schematic diagram of the present utility model.
[0017] Figure 2 It is a rear view three-dimensional structure schematic diagram of the present utility model.
[0018] Figure 3 It is a cross-sectional structure schematic diagram of the gear box part of the present utility model.
[0019] In the figure, 1. longitudinal adjusting seat, 2. gear box, 3. tooth rail, 4. gear, 5. knob, 6. buckle, 7. transverse adjusting rod, 8. locking bolt, 9. electronic sight, 10. limit bolt, 11. pointer, 12. adjusting hole, 13. anchor guide rail, 14. sight fixing base, 15. fastening screw, 16. front-back adjusting seat, 17. dovetail block. Specific implementation manners:
[0020] To clearly illustrate the technical features of this scheme, the present utility model will be elaborated in detail below through specific implementation manners and in combination with its drawings.
[0021] Such as Figures 1-3As shown in the figure, an electronic sight bracket for a bow with multi-angle adjustment includes a longitudinal adjustment seat 1. The longitudinal adjustment seat 1 is slidably connected to one side of a gear box 2 through a chute guide rail structure. A tooth rail 3 is provided on the side of the longitudinal adjustment seat 1 close to the gear box 2. A gear 4 meshing with the tooth rail 3 is provided in the gear box 2. The gear 4 is connected to a knob 5 outside the gear box 2. A buckle 6 is provided on the other side of the gear box 2. A horizontally adjustable rod 7 that can be translated and rotated is installed in the buckle 6. The buckle 6 and the horizontally adjustable rod 7 are fixed by a locking bolt 8. The end of the horizontally adjustable rod 7 is connected to an electronic sight 9.
[0022] Limit bolts 10 are respectively provided at the upper and lower ends of the tooth rail 3 to limit the up and down movement of the gear 4.
[0023] A longitudinal scale is provided on the front side of the longitudinal adjustment seat 1, and a pointer 11 cooperating with the longitudinal scale is provided on the gear box 2, which can be used to observe the up and down movement distance of the gear box 2.
[0024] A number of adjustment holes 12 are provided on the side of the longitudinal adjustment seat 1 away from the gear box 2. The adjustment holes 12 are connected to an anchor rail 13 through bolts. By selecting different adjustment holes to install with the sight rail 13, the installation position of the longitudinal adjustment seat 1 can be adjusted up and down.
[0025] The anchor rail 13 is slidably installed in a chute of a sight fixing seat 14. The sight fixing seat 14 and the anchor rail 13 are locked and fixed by a fastening screw 15. By adjusting the position of the anchor rail 13 in the sight fixing seat 14, the front and back position of the electronic sight 9 can be roughly adjusted.
[0026] The sight fixing seat 14 is installed on the bow window through a number of screws.
[0027] A horizontal scale is provided on the horizontally adjustable rod 7, which can be used to observe the horizontal movement distance of the electronic sight 9.
[0028] A front and back adjustment seat 16 is installed at the end of the horizontally adjustable rod 7. A dovetail groove is provided at the bottom of the front and back adjustment seat 16. The top of the electronic sight 9 is movably inserted into the dovetail groove through a dovetail block 17. By adjusting the position of the dovetail block 17 in the dovetail groove, the front and back position of the electronic sight 9 can be finely adjusted.
[0029] Working principle:
[0030] During adjustment, in the front-back direction, the front-back position of the electronic sight 9 can be roughly adjusted by adjusting the position of the anchor rail 13 in the sight fixing seat 14, and the front-back position of the electronic sight 9 can be finely adjusted by adjusting the position of the dovetail block 17 in the dovetail groove; in the up-down direction, the installation position of the longitudinal adjustment seat 1 can be adjusted up and down by selecting different adjustment holes 12 for installation with the sight rail 13, so as to roughly adjust the up-down position of the electronic sight 9. By rotating the knob 5, the knob 5 drives the gear 4 to rotate, and the gear 4 can move up and down along the tooth rail 3 to realize the up-down position adjustment of the gear box 2, so as to finely adjust the up-down position of the electronic sight 9; in the left-right direction, the left-right position of the electronic sight 9 can be finely adjusted by translating the position of the transverse adjustment rod 7 in the buckle 6, and the tilt angle of the electronic sight 9 can be adjusted by rotating the transverse adjustment rod 7. After the above means are combined, multi-angle adjustment of the front, back, left, right, up and down directions of the electronic sight 9 is realized, ensuring the precise adjustment and use of the electronic sight 9 and improving the archery accuracy.
[0031] The above specific implementation manners shall not be used as a limitation to the protection scope of the present invention. For those skilled in the art of this technology, any alternative improvement or transformation made to the implementation manners of the present invention shall fall within the protection scope of the present invention.
[0032] Those not detailed in the present invention are all well-known technologies to those skilled in the art of this technology.
Claims
1. A multi-angle adjustable bow and arrow electronic sight bracket, characterized in that: It includes a longitudinal adjustment seat, which is slidably connected to one side of the gear box through a slide groove guide structure, a rack is provided on the side of the longitudinal adjustment seat close to the gear box, a gear meshing with the rack is provided in the gear box, the gear is connected to a knob on the outside of the gear box, a buckle is provided on the other side of the gear box, a lateral adjustment rod that can be translated and rotated is installed in the buckle, the buckle and the lateral adjustment rod are fixed by a locking bolt, and the end of the lateral adjustment rod is connected to the electronic sight.
2. The multi-angle adjustable bow and arrow electronic sight bracket according to claim 1, characterized in that: Limit bolts are respectively arranged at the upper and lower ends of the rack rail.
3. The multi-angle adjustable bow and arrow electronic sight bracket according to claim 1, characterized in that: A longitudinal scale is arranged on the front side of the longitudinal adjustment seat, and a pointer matching the longitudinal scale is arranged on the gear box.
4. The multi-angle adjustable bow and arrow electronic sight bracket according to claim 1, characterized in that: A side of the longitudinal adjustment seat away from the gear box is provided with a plurality of adjustment holes, and the adjustment holes are connected to the anchor guide rails through bolts.
5. The multi-angle adjustable bow and arrow electronic sight bracket according to claim 4, characterized in that: The anchor guide rail is slidably installed in the slide groove of the sight fixing seat, and the sight fixing seat and the anchor guide rail are locked and fixed by fastening screws.
6. The multi-angle adjustable bow and arrow electronic sight bracket according to claim 5, characterized in that: The sight fixing seat is installed on the bow window through a plurality of screws.
7. The multi-angle adjustable bow and arrow electronic sight bracket according to claim 1, characterized in that: The lateral adjustment rod is provided with a lateral scale.
8. The multi-angle adjustable bow and arrow electronic sight bracket according to claim 1, characterized in that: A front and rear adjustment seat is installed at the end of the lateral adjustment rod, a dovetail groove is arranged at the bottom of the front and rear adjustment seat, and the top of the electronic sight is movably inserted into the dovetail groove through a dovetail block.