Sighting telescope

By combining positioning and adjustment holes, along with the hollow shell structure and waterproof lens, the compatibility and stability issues of the scope have been resolved, improving its accuracy and endurance on various firearms.

CN224262359UActive Publication Date: 2026-05-19ZHONGSHAN QINGYUN OPTICAL INSTRUMENT CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHONGSHAN QINGYUN OPTICAL INSTRUMENT CO LTD
Filing Date
2025-06-09
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

Existing scopes are difficult to adapt to various firearms, have limited functionality, and lack stability and accuracy when used in complex environments.

Method used

A scope was designed that can be adapted to a variety of firearms through the combination of positioning holes and adjustment holes. The hollow shell structure and waterproof lens design improve stability and accuracy, while the use of solar panels for power supply enhances battery life.

Benefits of technology

It achieves stable compatibility of the scope with various firearms, improves the accuracy and stability of use in complex environments, and extends the standby time of the device through solar panels.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model particularly relates to a sighting telescope. The sighting telescope comprises a telescope body, a first mounting plate and a second mounting plate, the utility model particularly relates to a mounting mode of a first mounting plate and a second mounting plate, wherein the first mounting plate comprises a positioning hole; the second mounting plate comprises a first adjusting hole extending in the length direction of the second mounting plate. The positioning hole is used for allowing the first positioning piece to penetrate through, the first adjusting hole is used for allowing the second positioning piece to penetrate through, and the mounting position of the second positioning piece in the first adjusting hole can be adjusted. According to the sighting telescope, the positioning mode that the positioning hole is matched with the first adjusting hole is utilized, the positioning strength of the sighting telescope is considered, meanwhile, the sighting telescope can be matched through the first adjusting hole on the basis of installation hole positions of different external objects, and therefore the sighting telescope can be suitable for the external objects of various models, and the sighting telescope is convenient to use. The purpose of adapting to various application scenes is achieved.
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Description

Technical Field

[0001] This utility model relates to the field of laser aiming technology, specifically to an aiming scope. Background Technology

[0002] A scope, commonly known as an optical aiming device, primarily functions by using optical lenses to image the target and the aiming line onto the same focal plane. Even slight eye deviation will not affect the aiming point. Currently, scopes are often mounted on firearms for aiming during firing. However, firearms come in a wide variety of types, making it difficult to adapt scopes to each one. Furthermore, firearms are used in complex environments with high environmental tolerance. Most existing firearms have simple structures or limited functionality, making it difficult for scopes to be adapted to various firearms, or their functionality is too weak to withstand complex working environments. Utility Model Content

[0003] This invention addresses the technical problems of existing aiming scopes, such as poor compatibility, limited functionality, and weak environmental adaptability, by providing an aiming scope that possesses advantages such as strong compatibility, rich functionality, and strong environmental adaptability.

[0004] This utility model provides a sight, comprising: a sight body, a first mounting plate and a second mounting plate extending from the bottom of the sight body to both sides respectively; the first mounting plate includes a positioning hole; the second mounting plate includes a first adjustment hole extending along its length; the positioning hole is for a first positioning member to pass through such that the head of the first positioning member abuts against the first mounting plate, and the first positioning member is fixed to an external object after passing through the positioning hole; the first adjustment hole is for a second positioning member to pass through such that the head of the second positioning member abuts against the second mounting plate, and the second positioning member is fixed to the external object after passing through the first adjustment hole, and the second positioning member can be adjusted in the mounting position of the first adjustment hole.

[0005] Furthermore, the length of the first mounting plate is less than the length of the second mounting plate.

[0006] Furthermore, the first mounting plate also includes a second adjustment hole, which is disposed between the mirror body and the positioning hole; the second adjustment hole is used for the third positioning member to pass through, so that the head of the third positioning member abuts against the first mounting plate, and the third positioning member is fixed on the external object after passing through the second adjustment hole, and the third positioning member can be adjusted in the second adjustment hole.

[0007] Furthermore, the second adjustment is closer to the user's eye than the first adjustment, and the length of the second adjustment hole is less than the length of the first adjustment hole.

[0008] Furthermore, the mirror body includes a hollow shell, waterproof mirrors (and objective lenses) disposed on both hollow sides of the shell; the waterproof mirrors are close to the first mounting plate.

[0009] Furthermore, the hollow sides of the housing are provided with sealing mounting grooves, which are used to accommodate the waterproof lens and the objective lens, respectively.

[0010] Furthermore, a battery compartment and a control board are provided at the bottom of the housing; the control board includes a light-emitting element for generating laser light that passes through the objective lens; and a battery electrically connected to the control board is disposed in the battery compartment.

[0011] Furthermore, the sight also includes a vertical adjustment member and a horizontal adjustment member for adjusting the axis of the sight; the vertical adjustment member is close to the first mounting plate, and the horizontal adjustment member is located on one side of the housing.

[0012] Furthermore, a solar panel is provided on the top of the housing; the solar panel is connected to the control panel and / or the battery in the battery compartment.

[0013] Furthermore, the battery compartment includes a compartment and a door for opening the compartment; the door is located on one side of the housing; the battery is a button battery.

[0014] Furthermore, a laser adjustment component is provided on the other side of the housing away from the compartment. The laser adjustment component is electrically connected to the control board and is used to adjust the light emission of the light-emitting element.

[0015] In summary, this utility model provides a sight that has at least the following advantages:

[0016] 1. This utility model utilizes a positioning method that combines a positioning hole with a first adjustment hole. While ensuring the positioning strength of the scope, it also allows the scope to be adapted to different external objects by using the first adjustment hole. This makes the scope provided by this utility model suitable for various types of external objects, thus achieving the purpose of adapting to multiple application scenarios.

[0017] 2. By introducing a second adjustment hole, this utility model improves the anti-vibration performance of the scope by using three-hole positioning while ensuring applicability;

[0018] 3. This utility model, through its hollow semi-enclosed structure design, combined with the waterproof lens and objective lens on both sides of the hollow structure, enables the hollow part of the shell to have waterproof performance, thereby avoiding water vapor penetration and water vapor interference, and ensuring the accuracy of the aiming scope.

[0019] 4. Through the design of the up-down and left-right adjustment parts, the light spot generated by the control board of this utility model can be adjusted up-down and left-right, thereby allowing the light spot to be adjusted during use to ensure the accuracy of the scope.

[0020] 5. This utility model uses solar energy to power the control board of the sight, thereby improving its continuous standby capability. Attached Figure Description

[0021] The present invention will be further described in detail below with reference to the accompanying drawings and preferred embodiments. However, those skilled in the art will understand that these drawings are drawn only for the purpose of explaining the preferred embodiments and therefore should not be construed as limiting the scope of the present invention. Furthermore, unless specifically indicated, the drawings are only schematic representations of the composition or structure of the described objects and may contain exaggerated depictions, and the drawings are not necessarily drawn to scale.

[0022] Figure 1 A schematic diagram of the structure of a sight provided in one embodiment of this utility model;

[0023] Figure 2 An embodiment of this utility model provides Figure 1 A disassembly diagram of a type of sight;

[0024] Figure 3 An embodiment of this utility model provides Figure 1 A schematic diagram of the structure of a type of sight from another perspective;

[0025] Figure 4 An embodiment of this utility model provides Figure 3 A disassembly diagram of the Zhongyi sight;

[0026] Figure 5 A front sectional view of a sight provided in one embodiment of this utility model;

[0027] Figure 6 This utility model provides a schematic diagram of the mounting of a sight. Figure 1 ;

[0028] Figure 7 This utility model provides a schematic diagram of the mounting of a sight. Figure 2 .

[0029] 100. Sight; 200. External object; 1. Scope body; 2. First mounting plate; 3. Second mounting plate; 11. Housing; 12. Waterproof lens; 13. Objective lens; 21. Positioning hole; 22. Second adjustment hole; 23. Anti-slip texture; 31. First adjustment hole; 32. Anti-slip texture; 41. First positioning component; 42. Second positioning component; 43. Third positioning component; 111. Waterproof sealing mounting groove; 112. Lens sealing mounting groove; 113. Battery compartment; 114. Up and down adjustment component; 115. Left and right adjustment component; 116. Solar panel; 117. Laser adjustment component; 118. Base plate; 113a. Compartment; 113b. Compartment door; 113c. Fixing bolt; 114a. Up and down mounting groove; 115a. Left and right mounting groove; 116a. Plate groove; 116b. Wiring hole; 117a. Adjustment mounting groove; 118a. Plate bolt. Detailed Implementation

[0030] The following is in conjunction with the appendix Figures 1 to 7 The present invention will be described in detail below.

[0031] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this utility model and are not intended to limit this utility model.

[0032] Please see Figure 1 , Figure 1 This is a schematic diagram of the structure of a sight 100 provided in one embodiment of the present invention. The sight 100 provided by the present invention includes a scope body 1, a first mounting plate 2 and a second mounting plate 3 extending from the bottom of the scope body 1 to both sides, and a plurality of positioning components. This embodiment specifically relates to the mounting method of the first mounting plate 2 and the second mounting plate 3, wherein the first mounting plate 2 is provided with a positioning hole 21, and the second mounting plate 3 is provided with a first adjustment hole 31, the first adjustment hole 31 being located in the middle of the second mounting plate 3 and extending along the length direction of the second mounting plate 3. The plurality of positioning components can be screws, respectively installed in the positioning hole 21 and the first adjustment hole 31, and the mounting position of the positioning components in the first adjustment hole 31 is adjusted according to the installation scenario of the scope body 1.

[0033] Please see Figure 2 , Figure 2 Provided for an embodiment of this utility model Figure 1 A schematic diagram of the disassembly structure of a Chinese-made aiming scope 100.

[0034] Optionally, the length of the first mounting plate 2 is less than the length of the second mounting plate 3. This design allows the first positioning member 41 to be positioned first, avoiding a decrease in installation stability due to an excessively large assembly gap between the first positioning member 41 and the second positioning member 42.

[0035] Optionally, the scope body 1 includes a hollow shell 11, and a waterproof lens 12 and an objective lens 13 are respectively installed on both sides of the hollow shell 11. The waterproof lens 12 is close to the first mounting plate 2 to prevent water vapor, debris, etc. from entering the shell 11 and affecting the performance of the objective lens 13. The objective lens 13 is close to the second mounting plate 3 to realize the aiming function of the scope 100.

[0036] Furthermore, through the hollow semi-enclosed structural design, combined with the structure of the waterproof lens 12 and objective lens 13 on both sides of the hollow, the hollow part of the housing 11 has waterproof performance, thereby avoiding water vapor penetration and water vapor interference problems, and ensuring the accuracy of the scope.

[0037] Furthermore, the housing 11 includes a waterproof sealing mounting groove 111 and a lens sealing mounting groove 112, for mounting, fixing and sealing the waterproof lens 12 and the objective lens 13, respectively.

[0038] Furthermore, the bottom of the housing 11 is provided with a battery compartment 113 and a control board. Figure 2 (Not shown in the image), the control board generates a laser, which passes through the objective lens 13 to enable the aiming function of the sight 100. The battery compartment 113 is connected to the control board to supply power to the control board.

[0039] Furthermore, the battery compartment 113 includes: a chamber 113a, and a button battery housed in the chamber 113a. Figure 2 (Not shown), and a door 113b for opening the compartment 113a; the door 113b is located on one side of the housing 11. The door 113b is installed on one side of the battery compartment 113 by fixing bolts 113c, which facilitates the replacement of button batteries.

[0040] Optionally, a base plate 118 is provided at the bottom of the housing 11, and the base plate is fixed by plate bolts 118a. It is worth explaining that the base plate 118 is used to provide structural support for the control plate.

[0041] Optionally, the sight may further include a vertical adjustment component 114 and a horizontal adjustment component 115; the vertical adjustment component 114 is located near the first mounting plate 2, and the horizontal adjustment component 115 is located on one side of the housing 11. The vertical adjustment component 114 and the horizontal adjustment component 115 are mounted through the vertical mounting groove 114a and the horizontal mounting groove 115a respectively provided in the housing 11. The vertical adjustment component 114 and the horizontal adjustment component 115 adjust the laser beam spot by rotation. Through the design of the vertical adjustment component 114 and the horizontal adjustment component 115, the beam spot generated by the control board of this invention can be adjusted vertically and horizontally, thereby allowing adjustment of the beam spot during use and ensuring the accuracy of the sight.

[0042] Optionally, a solar panel 116 is provided on the top of the housing 11; the solar panel 116 is connected to the control board, or the battery compartment 113, to provide power to the control board of the sight 100 via solar energy, thereby improving the continuous standby capability of this invention. Correspondingly, the top of the housing 11 is provided with a plate groove 116a and a wiring hole 116b. The plate groove 116a is used to accommodate the solar panel 116, and the wiring hole 116b is used for the connection wires of the solar panel 116. Figure 2 (Not shown) The installation.

[0043] Optionally, a laser adjustment component 117 is provided on the other side of the housing 11, and the laser adjustment component 117 is connected to the control board.

[0044] For further details, please see Figure 3 , Figure 3 Provided for one embodiment of this utility model Figure 1 A schematic diagram of the structure of a sight 100 from another perspective. The bottom surfaces of the first mounting plate 2 and the second mounting plate 3 (that is, the surfaces used to fit against the external object 200) are curved surfaces to adapt to the curved mounting surfaces of external objects 200 such as firearms.

[0045] For further details, please see Figure 4 , Figure 4 Provided for an embodiment of this utility model Figure 3 A disassembly diagram of the Zhongyi sight 100. The laser adjustment component 117 is installed in the adjustment mounting slot 117a provided in the housing 11 for the installation and positioning of the laser adjuster, so as to facilitate the adjustment of the laser generated by the control board. At the same time, the bottom of the housing 11 is provided with mounting holes for the control board, for encapsulating the control board and the battery compartment 113.

[0046] For further details, please see Figure 5 , Figure 5 This is a front sectional view of a sight 100 according to an embodiment of the present invention. The sight 100 provided by the present invention includes a scope body 1, a first mounting plate 2 and a second mounting plate 3 extending from the bottom of the scope body 1 to both sides. The scope body includes a hollow housing 11, which is used to allow the optical path to pass through and to mount a control board to generate a laser dot for aiming. In addition, a vertical mounting groove 114a and a horizontal mounting groove 115a are provided on one side of the bottom of the housing 11 for mounting vertical adjustment members 114 and horizontal adjustment members 115 to adjust the control board inside the housing 11.

[0047] Optionally, the scope 100 is mounted on an external object 200, wherein the external object 200 may include, but is not limited to, a shotgun, rifle, sniper rifle or other component on which the scope 100 can be mounted. Understandably, if the area of ​​the external object 200 near the scope body 1 is obstructed by other structural components, the positioning component passing through the first adjustment hole 31 should be moved as far away as possible from the positioning component passing through the positioning hole 21. This ensures that the positioning component passing through the first adjustment hole 31 can effectively avoid obstruction by other structural components and form an effective connection with the external object 200, thereby positioning the scope 100 on the external object 200. Conversely, if the area of ​​the external object 200 away from the scope body 1 is obstructed by other structural components, the positioning component passing through the first adjustment hole 31 should be moved as close as possible to the positioning component passing through the positioning hole 21. This ensures that the positioning component passing through the first adjustment hole 31 can effectively avoid obstruction by other structural components and form an effective connection with the external object 200, thereby positioning the scope 100 on the external object 200.

[0048] For example, see Figure 6 , Figure 6 This is a schematic diagram of the mounting of a sight 100 according to an embodiment of the present invention. Figure 6 In the middle, multiple positioning components include a first positioning component 41, a second positioning component 42, and a third positioning component 43.

[0049] Specifically, the positioning hole 21 allows the first positioning member 41 to pass through, causing its head to abut against the first mounting plate 2. After passing through the positioning hole 21, the first positioning member 41 is fixed to the external object. The first adjustment hole 31 allows the second positioning member 42 to pass through, causing its head to abut against the second mounting plate 3. After passing through the first adjustment hole 31, the second positioning member 42 is fixed to the external object. The installation position of the second positioning member 42 in the first adjustment hole 31 is adjustable to adapt to different external objects and different installation scenarios. The second adjustment hole 22 allows the third positioning member 43 to pass through, causing its head to abut against the first mounting plate 2. After passing through the second adjustment hole 22, the third positioning member 43 is fixed to the external object. The installation position of the third positioning member 43 in the second adjustment hole 22 is adjustable to adapt to more external objects and more installation scenarios.

[0050] In this embodiment, the length of the second adjustment hole 22 may be different from the length of the first adjustment hole 31. The second adjustment hole 22 is closer to the user's eye than the first adjustment hole 31, and its length may be shorter than the length of the first adjustment hole 31. This design can improve the stability during user operation.

[0051] The first positioning element 41 passes through the positioning hole 21, and the second positioning element 42 passes through the first adjustment hole 31. The user can adjust the position of the second positioning element 42 in the first adjustment hole 31 according to actual needs (see the dotted line diagram) so that the first positioning element 41 and the second positioning element 42 cooperate to position the scope 100 on the external object 200. It should be noted that by designing the positioning hole 21 and the first adjustment hole 31, the user can first use the positioning element (specifically, the first positioning element 41 described above) passing through the positioning hole 21 to pre-install and position the scope 100. Then, by adjusting the installation position of the positioning element (specifically, the second positioning element 42 described above) passing through the first adjustment hole 31, the scope 100 can be positioned on external objects 200 of different specifications and models. Simultaneously, Figure 7 The diagram illustrates the joint positioning of the scope 100 by the first positioning element 41, the second positioning element 42, and the third positioning element 43. The first mounting plate 2 also includes a second adjustment hole 22, located between the scope body 1 and the positioning hole 21. The installation position of the positioning element in the second adjustment hole 22 is adjusted according to the installation scenario of the scope body 1. The adjusting bolt may also include a third positioning element 43, which passes through the second adjustment hole 22. The user can adjust the position of the third positioning element 43 in the second adjustment hole 22 according to actual needs. By designing the second adjustment hole 22, the positioning element, in conjunction with the positioning hole 21, the first adjustment hole 31, and the second adjustment hole 22, achieves triple positioning between the scope 100 and the external object 200. This further enhances the connection stability between the scope 100 and the external object 200, improving the reliability of the scope 100 installation and enhancing its shock resistance.

[0052] Users can adjust the positions of the second positioning member 42 and the third positioning member 43 in the first adjustment hole 31 and the second adjustment hole 22 according to actual needs. The adjustment method can be understood by referring to the above.

[0053] Optionally, the top surfaces of the first mounting plate 2 and the second mounting plate 3 (i.e., the surfaces opposite to the external object 200) are provided with anti-slip textures (23, 32) to prevent slippage after the positioning components are tightened, thereby enhancing the connection stability between the scope 100 and the external object 200. The anti-slip textures (23, 32) may include, but are not limited to, multiple elongated protrusions or multiple circular protrusions on the top surfaces of the first mounting plate 2 and the second mounting plate 3. Furthermore, by designing the anti-slip textures (23, 32), the friction between the first mounting plate 2 and the user's hand, and the friction between the second mounting plate 3 and the user's hand, can be increased, thus facilitating the user in mounting the scope 100 onto the external object 200.

[0054] The present invention has been described in detail above. Specific examples have been used to illustrate the principles and implementation methods of the present invention. The description of the above embodiments is only for the purpose of helping to understand the present invention and its core ideas. It should be noted that for those skilled in the art, several improvements and modifications can be made to the present invention without departing from the principles of the present invention, and these improvements and modifications also fall within the protection scope of the claims of the present invention.

Claims

1. A sight, characterized in that, The aiming scope includes: a scope body (1), a first mounting plate (2) and a second mounting plate (3) extending from the bottom of the scope body (1) to both sides respectively; The first mounting plate (2) includes positioning holes (21); The second mounting plate (3) includes a first adjustment hole (31) extending along its length; The positioning hole (21) is used for the first positioning member to pass through so that the head of the first positioning member abuts against the first mounting plate (2), and the first positioning member is fixed on the external object after passing through the positioning hole (21). The first adjustment hole (31) is used for the second positioning member to pass through so that the head of the second positioning member abuts against the second mounting plate (3), and the second positioning member is fixed on the external object after passing through the first adjustment hole (31), and the second positioning member can be adjusted in the installation position of the first adjustment hole (31).

2. The aiming scope as described in claim 1, characterized in that, The length of the first mounting plate (2) is less than the length of the second mounting plate (3).

3. A sight as described in claim 1 or 2, characterized in that, The first mounting plate (2) further includes a second adjustment hole (22), which is disposed between the mirror body (1) and the positioning hole (21); The second adjustment hole (22) is used for the third positioning member to pass through, so that the head of the third positioning member abuts against the first mounting plate (2), and the third positioning member is fixed on the external object after passing through the second adjustment hole (22), and the third positioning member can be adjusted in the second adjustment hole (22).

4. A sight as described in claim 3, characterized in that, The second adjustment hole (22) is closer to the user's eye than the first adjustment hole (31), and the length of the second adjustment hole (22) is less than the length of the first adjustment hole (31).

5. A sight as described in claim 1, characterized in that, The mirror body (1) includes a hollow shell (11), a waterproof mirror (12) disposed on both hollow sides of the shell (11), and an objective lens (13); The waterproof mirror (12) is close to the first mounting plate (2).

6. A sight as described in claim 5, characterized in that, The hollow sides of the housing (11) are provided with sealing mounting grooves, which are used to accommodate the waterproof lens (12) and the objective lens (13), respectively.

7. A sight as described in claim 5, characterized in that, The bottom of the housing (11) is provided with a battery compartment (113) and a control board; The control board includes a light-emitting element for generating laser light that passes through the objective lens (13); The battery compartment (113) is used to house a battery that is electrically connected to the control board.

8. A sight as described in claim 7, characterized in that, The sight also includes a vertical adjustment component (114) and a horizontal adjustment component (115) for adjusting the axis of the sight; The up-down adjustment member (114) is close to the first mounting plate (2), and the left-right adjustment member (115) is located on one side of the housing (11).

9. A sight as described in claim 7, characterized in that, A solar panel (116) is provided on the top of the housing (11); the solar panel (116) is connected to the control panel, and / or to the battery in the battery compartment (113). The battery compartment (113) includes: a compartment (113a) and a door (113b) for opening the compartment (113a); The compartment door (113b) is located on one side of the housing (11); the battery is a button battery.

10. A sight as described in claim 9, characterized in that, A laser adjustment component (117) is provided on the other side of the housing (11) away from the compartment (113a). The laser adjustment component (117) is electrically connected to the control board and is used to adjust the light emission of the light-emitting element.