Sighting device of archery equipment
By combining the aiming ring, indicator light, and conductive ball, the problem of insufficient accuracy of traditional archery aiming devices in poor lighting or complex environments is solved, enabling rapid and accurate aiming adjustments and improving shooting accuracy and hit rate.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-29
- Publication Date
- 2026-03-31
AI Technical Summary
Existing archery equipment aiming devices are difficult to see small bubbles in poor lighting or complex environments, affecting aiming accuracy. Furthermore, manual adjustments are cumbersome and time-consuming, leading to a decrease in shooting accuracy.
It adopts a combination design of aiming ring, indicator light, circuit components and conductive ball. The conductive ball slides under the action of gravity to form a closed circuit, and the indicator light illuminates to provide a clear aiming position indication and reduce human error.
Improve aiming accuracy, reduce errors, and increase shooting hit rate, especially providing stable aiming performance in competitions or training.
Smart Images

Figure CN224066013U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of sports equipment technology, specifically an aiming device for archery equipment. Background Technology
[0002] Archery, as a delicate sport, relies heavily on the precise adjustment of archery equipment and the effective use of aiming aids to achieve accurate aiming and stable shooting performance.
[0003] Currently, most archery aiming devices on the market use traditional physical aiming aids, such as levels. These traditional aiming aids use changes in liquid bubbles to help archers judge the vertical position when shooting, thus achieving accurate aiming. However, in poor lighting or complex environmental conditions, the small bubbles in the level are difficult to see clearly, which can easily affect aiming accuracy. Secondly, manually adjusting and observing the level is cumbersome and time-consuming, especially in archery competitions or training, where this method can easily lead to decreased accuracy and increased errors.
[0004] Therefore, this application provides an aiming device for archery equipment to solve the above-mentioned problems. Utility Model Content
[0005] This application provides an aiming device for archery equipment, which aims to solve the problems mentioned in the background art of existing archery equipment aiming devices that use traditional physical auxiliary aiming methods such as levels, where small bubbles are difficult to see in poor light or complex environments, affecting aiming accuracy, and where manual adjustment and observation are cumbersome and time-consuming.
[0006] To achieve the above objectives, this application provides the following technical solution: an aiming device for archery equipment, comprising an aiming ring, an indicator light fixedly disposed on one side of the aiming ring for indicating the aiming position, a circuit assembly disposed inside the aiming ring, and a conductive ball movably disposed on the circuit assembly for sliding on the circuit assembly as the arrow deflects, thereby forming a closed circuit between the circuit assembly and the indicator light; the combined design of the conductive ball, circuit assembly, and indicator light allows the conductive ball to slide on the circuit assembly under gravity when the arrow deflects slightly. Once it slides to a specific position and closes the circuit, the corresponding indicator light illuminates, providing the archer with a clear indication of the aiming position. This allows the archer to quickly and accurately determine whether the arrow's aiming position is correct by observing the status of the indicator light and make timely adjustments, greatly improving aiming accuracy, compensating for the shortcomings of traditional physical aiming in special environments, and reducing errors from manual judgment. Especially in competitions or training, this helps archers perform more consistently and improve their accuracy.
[0007] Preferably, to facilitate the installation and use of the aiming device, the aiming device further includes a connecting seat fixedly installed on one side of the aiming circle, an aiming pin fixedly disposed on the connecting seat and located within the aiming circle, and a mounting mechanism disposed on one side of the connecting seat for connection with a bow and arrow. The connecting seat fixedly installed on one side of the aiming circle provides a solid and reliable support base for the entire device, while the aiming pin fixedly disposed on the connecting seat and located within the aiming circle. The two work together to provide the archer with a clear and definite aiming reference, while the mounting mechanism disposed on one side of the connecting seat is specifically used for connection with a bow and arrow. This design greatly enhances the versatility and adaptability of the aiming device.
[0008] Preferably, to facilitate the provision of aiming position information, the circuit assembly includes a first track symmetrically fixedly installed within the aiming circle on the side corresponding to the lower side of the aiming pin; a second track symmetrically fixedly installed within the aiming circle on the side away from the two first tracks; five anode positions fixedly disposed on one of the second tracks; a cathode wire fixedly disposed within the aiming circle and electrically connected to one of the first tracks; and anode wires fixedly disposed within the aiming circle on the side away from the cathode wire and electrically connected to each of the five anode positions. The conductive ball is slidably connected between the two first tracks and the cathode wire. The number of indicator lights is consistent with the number of anode positions, and each indicator light is electrically connected to the corresponding anode wire. The combined design of the first track, second track, anode positions, cathode wire, and anode wire closely links the sliding of the conductive ball with the circuit's on / off state. Simultaneously, multiple anode positions and their corresponding anode wires, in conjunction with the cathode wire, can achieve circuit closure at different positions, thereby illuminating different indicator lights and providing the shooter with more precise aiming position information, greatly improving aiming accuracy.
[0009] Preferably, to ensure accurate contact between the conductive ball and the corresponding anode position, a disconnect position is provided between each pair of adjacent anode positions. This disconnect position effectively prevents erroneous connections between adjacent anode positions. This design ensures that the conductive ball, during its sliding process, only contacts the target anode position and forms a correct closed loop, allowing the indicator light to accurately reflect the current attitude of the sight. Without a disconnect position, accidental continuity between anode positions would cause an incorrect indicator light to illuminate, resulting in the shooter receiving incorrect aiming information and inevitably affecting aiming accuracy. The presence of the disconnect position eliminates this potential hazard, ensuring the reliability of the aiming system.
[0010] Preferably, in order to prevent the conductive ball from detaching from the first and second tracks, limiting rings for limiting the position of the conductive ball are fixedly installed at both ends of the two first tracks and the two second tracks. The design of the limiting rings not only ensures that the conductive ball always slides between the two first tracks and the two second tracks, maintaining the normal operation of the circuit components, but also effectively prevents the conductive ball from detaching from the two first tracks and the two second tracks, ensuring that the shooter will not be affected by the accidental detachment of the conductive ball during use.
[0011] Preferably, to facilitate the use of the circuit components, an inspection port is provided on the side of the aiming ring near the first and second tracks, and a housing is fastened to the inspection port. The provision of an inspection port on the side of the aiming ring near the tracks, along with the fastened housing, greatly facilitates the maintenance and repair of the circuit components. When the circuit components malfunction or require inspection, the shooter or maintenance personnel can directly open the housing and quickly inspect, repair, or replace the internal components through the inspection port, saving a significant amount of time and effort. This design improves the maintainability of the device and extends the service life of the aiming device.
[0012] Preferably, to provide power, a rotary battery for supplying power to the cathode wire and the five anode wires is rotatably connected to the side of the aiming ring away from the access port. This convenient power supply allows the shooter to easily control the power supply by rotating the rotary battery, ensuring timely power supply when the aiming device is needed and turning it off when not in use, thus avoiding power waste and ensuring the aiming device always has sufficient power for normal operation.
[0013] Preferably, to facilitate the installation and use of the aiming device with the bow and arrow, the installation mechanism includes a fixed frame fixedly mounted on the connecting seat and located on one side of the indicator light, a sliding frame slidably connected to the fixed frame for engaging with the edge of the bow and arrow, and a fastening post screwed to the side of the sliding frame away from the indicator light for pressing the sliding frame against the fixed frame. The combined design of the fixed frame, the sliding frame, and the fastening post allows the archer to achieve a tight connection between the aiming device and the bow and arrow without shaking simply by adjusting the position of the sliding frame to engage with the bow and arrow, and then using the fastening post to press the sliding frame against the fixed frame. This makes the aiming device convenient to use.
[0014] The aiming device of this archery equipment uses a combination design of conductive ball, circuit components and indicator lights. When the arrow deflects slightly, the conductive ball will slide on the circuit components under the action of gravity. Once it slides to a specific position and closes the circuit, the corresponding indicator light will light up, providing the archer with a clear indication of the aiming position. By observing the status of the indicator light, the archer can quickly and accurately judge whether the aiming position of the arrow is correct, which greatly improves the aiming accuracy.
[0015] The aiming device of this archery equipment uses multiple anode positions and corresponding anode wires, along with cathode wires, to achieve circuit closure at different positions, thereby illuminating different indicator lights and providing the archer with more accurate aiming position information, greatly improving aiming accuracy.
[0016] The aiming device of this archery equipment effectively avoids erroneous connection between adjacent anode positions by setting a disconnect position. This design ensures that the conductive ball only contacts the target anode position and forms a correct closed circuit during the sliding process, so that the indicator light can accurately reflect the current attitude of the aiming device.
[0017] The aiming device of this archery equipment, through the design of the limiting ring, not only ensures that the conductive ball always slides between the two designated first tracks and two second tracks, maintaining the normal operation of the circuit components, but also effectively prevents the conductive ball from detaching from the two first tracks and two second tracks, ensuring that the archer's shooting rhythm and accuracy will not be affected by the accidental detachment of the conductive ball during use. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the aiming device of an archery instrument.
[0019] Figure 2 This is a schematic diagram of the mounting mechanism in the aiming device of an archery instrument.
[0020] Figure 3 This is a schematic diagram of the circuit components in the aiming device of an archery instrument.
[0021] Figure 4 A schematic diagram of the layout of cathode and anode wires in the aiming device of an archery instrument;
[0022] In the picture:
[0023] 1. Connector;
[0024] 2. Sight ring; 21. Inspection port; 22. Housing; 23. Knob battery;
[0025] 3. Sight pin;
[0026] 4. Installation mechanism; 41. Fixing frame; 42. Sliding frame; 43. Fastening column;
[0027] 5. Indicator lights;
[0028] 6. Circuit assembly; 61. First track; 62. Second track; 63. Anode position; 631. Disconnect position; 64. Cathode wire; 65. Anode wire; 66. Limiting ring;
[0029] 7. Conductive sphere. Detailed Implementation
[0030] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0031] This embodiment provides an aiming device for archery equipment, such as... Figures 1-4 As shown, the aiming device includes an aiming ring 2, an indicator light 5 fixedly mounted on one side of the aiming ring 2 for indicating the aiming position, a circuit assembly 6 disposed inside the aiming ring 2, and a conductive ball 7 movably mounted on the circuit assembly 6 for sliding on the circuit assembly 6 to form a closed circuit between the circuit assembly 6 and the indicator light 5 as the arrow deflects.
[0032] To facilitate the installation and use of the aiming device, it also includes a connecting seat 1 fixedly installed on one side of the aiming ring 2, an aiming needle 3 fixedly installed on the connecting seat 1 and located inside the aiming ring 2, and a mounting mechanism 4 located on one side of the connecting seat 1 for connecting with the bow and arrow. The connecting seat 1 is fixedly installed on one side of the aiming ring 2, providing a solid and reliable support base for the entire device. At the same time, the aiming needle 3 is fixedly installed on the connecting seat 1 and located inside the aiming ring 2. The two work together to provide the archer with a clear and definite aiming reference. The mounting mechanism 4 is located on one side of the connecting seat 1 and is specifically used for connecting with the bow and arrow. This design greatly enhances the versatility and adaptability of the aiming device.
[0033] In use, the entire aiming device is first mounted on the bow and arrow via the mounting mechanism 4. When preparing to shoot, the archer first uses the aiming circle 2 and aiming pin 3 for initial aiming. The aiming circle 2 provides a large field of view to help the archer roughly align with the target, while the aiming pin 3 serves as a more precise aiming marker, allowing the archer to further determine the aiming point within the aiming circle 2. This traditional aiming method provides the archer with an intuitive visual reference, facilitating quick target positioning. When the bow and arrow deflect, the conductive ball 7 slides on the circuit assembly 6 under the influence of gravity. The circuit assembly 6 provides a specific track and circuit connection for the sliding of the conductive ball 7. As the conductive ball 7 slides, when it contacts the specific positioning point on the circuit assembly 6... When the ball is in position, a closed loop is formed between the circuit component 6 and the indicator light 5. Since different positions correspond to different deflection angles of the arrow, the different sliding positions of the conductive ball 7 determine which part of the circuit will be connected. When the conductive ball 7 slides to a specific position and closes the corresponding circuit, the corresponding indicator light 5 will light up. By observing the lit indicator light 5, the archer can intuitively understand the deviation between the current aiming position of the arrow and the ideal aiming position. If the indicator light 5 representing correct vertical aiming lights up, it means that the arrow has been adjusted in the vertical direction. If other indicator lights 5 light up, the archer can adjust the attitude of the arrow according to the direction and position indicated by them until the ideal aiming state is achieved, thereby achieving accurate aiming.
[0034] Specifically, the circuit assembly 6 includes a first track 61 symmetrically fixedly installed inside the aiming ring 2 on one side below the aiming needle 3, a second track 62 symmetrically fixedly installed inside the aiming ring 2 on one side away from the two first tracks 61, five anode positions 63 fixedly installed on one of the second tracks 62, a cathode wire 64 fixedly installed inside the aiming ring 2 and electrically connected to one of the first tracks 61, and anode wires 65 fixedly installed inside the aiming ring 2 on one side away from the cathode wire 64 and electrically connected to the five anode positions 63 respectively. The conductive ball 7 is slidably connected between the two first tracks 61 and the cathode wire 64. The number of indicator lights 5 is the same as the number of anode positions 63, and each indicator light 5 is electrically connected to the corresponding anode wire 65.
[0035] When the bow and arrow held by the archer deflects, the conductive ball 7 slides on the first track 61 due to gravity. Because of the positional arrangement of the first track 61 and the second track 62, the sliding of the conductive ball 7 will cause it to approach or contact different anode positions 63. When the conductive ball 7 slides to contact a certain anode position 63, the circuit is connected. The current starts from the cathode wire 64, is conducted through the first track 61 which is electrically connected to it, to the conductive ball 7, and then through the conductive ball 7 to the contacting anode position 63. Finally, it reaches the connected indicator light 5 through the corresponding anode wire 65. The corresponding indicator light 5 is lit when the current passes through it. Since the number of indicator lights 5 is the same as the number of anode positions 63 and they correspond one-to-one, the lighting of each indicator light 5 represents that the conductive ball 7 is in a specific position, and this position corresponds to a specific deflection posture of the bow and arrow. The archer can observe the lit indicator lights 5 to know the deviation between the current aiming position of the bow and arrow and the ideal vertical aiming position. If the indicator light 5 in the middle position is lit, and the indicator light 5 on the side is lit, it means that the bow and arrow has deviated in a certain direction.
[0036] In addition, to ensure accurate contact between the conductive ball 7 and the corresponding anode position 63, a disconnect position 631 is provided between each pair of adjacent anode positions 63. The disconnect position 631 between adjacent anode positions 63 effectively avoids misconnection between adjacent anode positions 63. This design ensures that the conductive ball 7 only contacts the target anode position 63 and forms a correct closed circuit during the sliding process, so that the illumination of the indicator light 5 can accurately reflect the current attitude of the sight. If there is no disconnect position 631, accidental conduction between anode positions 63 will cause the wrong indicator light 5 to illuminate, and the shooter will receive incorrect aiming information, which will inevitably affect the aiming accuracy. The existence of the disconnect position 631 eliminates this hidden danger and ensures the reliability of the aiming system.
[0037] Understandably, in order to prevent the conductive ball 7 from detaching from the first track 61 and the second track 62, limiting rings 66 are fixedly installed at both ends of the two first tracks 61 and the two second tracks 62 to limit the position of the conductive ball 7. The design of the limiting rings 66 not only ensures that the conductive ball 7 always slides between the two first tracks 61 and the two second tracks 62, maintaining the normal operation of the circuit component 6, but also effectively prevents the conductive ball 7 from detaching from the two first tracks 61 and the two second tracks 62, ensuring that the shooter will not be affected by the accidental detachment of the conductive ball 7 during use.
[0038] Furthermore, an inspection port 21 is provided on the side of the aiming ring 2 near the first track 61 and the second track 62, and a housing 22 is fastened to the inspection port 21.
[0039] When the circuit assembly 6 malfunctions or needs to be inspected, the shooter or maintenance personnel can directly open the outer casing 22 and quickly inspect, repair or replace the internal components through the inspection port 21, saving a lot of time and effort. This design improves the maintainability of the device and extends the service life of the aiming device.
[0040] Furthermore, to enable power supply, a rotary battery 23 for supplying power to the cathode wire 64 and the five anode wires 65 is rotatably connected to the side of the aiming ring 2 away from the access port 21. This convenient power supply allows the shooter to easily control the power supply by rotating the rotary battery 23, ensuring timely power supply when the aiming device is needed and turning it off when not in use, thus avoiding power waste and ensuring the aiming device always has sufficient power for normal operation.
[0041] Furthermore, the installation mechanism 4 includes a fixed bracket 41 fixedly mounted on the connecting seat 1 and located on one side of the indicator light 5, a sliding bracket 42 slidably connected to the fixed bracket 41 for clamping with the edge of the bow and arrow, and a fastening post 43 screwed to the side of the sliding bracket 42 away from the indicator light 5 for pressing the sliding bracket 42 against the fixed bracket 41.
[0042] Because different types of bows and arrows differ in size and shape, the position of the sliding frame 42 needs to be adjusted to fit the specific bow and arrow. Since the sliding frame 42 and the fixed frame 41 are connected by a sliding mechanism, the sliding frame 42 can move flexibly on the fixed frame 41. The archer can move the sliding frame 42 along the track of the fixed frame 41 according to the actual specifications of the bow and arrow, so that the edge of the bow and arrow is between the aiming circle 2 and the sliding frame 42. Then, the fastening post 43 is rotated, gradually moving it towards the fixed frame 41. As the fastening post 43 rotates continuously, it exerts a gradually increasing pressure on the sliding frame 42. When the fastening post 43 firmly presses against the fixed frame 41... When the arrow is on the fixed frame 41, the pressure will firmly fix the sliding frame 42 to the fixed frame 41, eliminating gaps and potential wobbling between the sliding frame 42 and the fixed frame 41, as well as between the sliding frame 42 and the arrow. This will cause the arrow to be locked between the aiming ring 2 and the sliding frame 42, ensuring that the aiming device will not shift or loosen during use, providing a stable foundation for accurate aiming. After use or when the arrow needs to be replaced, rotate the fastening post 43 in the opposite direction to separate it from the fixed frame 41, release the fastening pressure on the sliding frame 42, and then move the sliding frame 42 and remove it from the arrow to complete the disassembly of the aiming device.
[0043] The above description is merely a preferred embodiment of this application, but the scope of protection of this application is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in this application, based on the technical solution and concept of this application, should be included within the scope of protection of this application.
Claims
1. An aiming device for archery equipment, characterized in that: The aiming device comprises a sighting ring (2), an indicating lamp (5) fixedly arranged on one side of the sighting ring (2) for indicating the aiming position, a circuit assembly (6) arranged inside the sighting ring (2), and a conductive ball (7) movably arranged on the circuit assembly (6) for deflecting with the bow and arrow and sliding on the circuit assembly (6) to form a closed loop circuit between the circuit assembly (6) and the indicating lamp (5).
2. An arrow aiming device according to claim 1, wherein: The aiming device further comprises a connecting seat (1) fixedly arranged on one side of the sighting ring (2), an aiming needle (3) fixedly arranged on the connecting seat (1) and located inside the sighting ring (2), and a mounting mechanism (4) arranged on one side of the connecting seat (1) for connecting with the bow and arrow.
3. An arrow aiming device for archery equipment according to claim 2, characterised in that: The circuit assembly (6) comprises first tracks (61) symmetrically fixedly arranged inside the sighting ring (2) on the side corresponding to the lower side of the aiming needle (3), second tracks (62) symmetrically fixedly arranged inside the sighting ring (2) on the side away from the two first tracks (61), five anode positions (63) fixedly arranged on one of the second tracks (62), a cathode wire (64) fixedly arranged inside the sighting ring (2) and electrically connected with one of the first tracks (61), anode wires (65) fixedly arranged inside the sighting ring (2) on the side away from the cathode wire (64) and electrically connected with the five anode positions (63) respectively, the conductive ball (7) is slidingly connected between the two first tracks (61) and the cathode wire (64), the number of the indicating lamps (5) is consistent with the number of the anode positions (63), and each indicating lamp (5) is electrically connected with the corresponding anode wire (65).
4. An arrow aiming device according to claim 3, wherein: A disconnection position (631) is arranged between each two adjacent anode positions (63).
5. The arrow aiming device of claim 3, wherein: Limiting rings (66) for limiting the position of the conductive ball (7) are fixedly arranged at the two ends of the two first tracks (61) and the two second tracks (62).
6. The arrow aiming device of claim 3, wherein: A maintenance opening (21) is arranged on the side of the sighting ring (2) close to the first tracks (61) and the second tracks (62), and an outer shell (22) is buckled at the maintenance opening (21).
7. An arrow aiming device according to claim 6, wherein: A knob battery (23) for supplying power to the cathode wire (64) and the five anode wires (65) is rotationally connected to the side of the sighting ring (2) away from the maintenance opening (21).
8. The arrow aiming device of claim 2, wherein: The mounting mechanism (4) comprises a fixed frame (41) fixedly arranged on the connecting seat (1) and located on the side of the indicating lamp (5), a sliding frame (42) slidingly connected on the fixed frame (41) for clamping the edge of the bow and arrow, and a fastening column (43) screwed on the side of the sliding frame (42) away from the indicating lamp (5) and used for abutting the sliding frame (42) against the fixed frame (41).