Multifunctional aiming device
By setting up two control methods on the sight—a gear selector knob and an external mouse tail—the problem of cumbersome operation of existing sights has been solved, improving both convenience and stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-25
- Publication Date
- 2026-03-31
AI Technical Summary
Existing aiming devices are cumbersome to operate and have a single control method, which cannot meet users' needs for different control methods.
It offers two control methods: a gear selector knob and an external mouse tail. The gear selector knob allows you to select the light level, while the external mouse tail controls the light via buttons. The two are electrically connected to achieve flexible control.
It improves user convenience and flexibility, ensuring that basic functions can be maintained through another method even if one control method fails, thus improving the stability of the equipment.
Smart Images

Figure CN224066016U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of aiming technology, and specifically to a multi-functional aiming device. Background Technology
[0002] Sights are generally used on firearms and shooting sports equipment. They use lasers emitted by the sight to aim at the target, thereby helping the user to achieve accurate shooting and greatly improving the hit rate.
[0003] To meet the diverse needs of users and to suit different application environments, existing sights can emit light with different functions, such as laser, white light, infrared light, and night vision light. Furthermore, they can adjust the brightness of the light and control its flashing.
[0004] Existing sights typically control different beams by setting buttons with different functions on the sight itself, and pressing different buttons to fire different beams; or by setting a knob and a switch button on the sight itself. The knob has multiple different settings. By first rotating the knob to select the appropriate setting, and then pressing the switch button, different beams can be fired from the sight.
[0005] However, existing aiming devices are cumbersome to operate and have a single control method, which cannot meet users' needs for different control methods. Utility Model Content
[0006] To overcome the shortcomings of the existing technology, this utility model provides a multi-functional aiming device. By providing two different control methods to control the aiming device, it improves the convenience and flexibility of the user. Moreover, when one control method fails, the other control method can still maintain the basic control function, thereby improving the stability of the device.
[0007] The technical solution adopted by this utility model to solve its technical problem is:
[0008] A multi-functional aiming device includes: an aiming body for emitting light; and a control mechanism for controlling the aiming body to emit visible and / or invisible light, comprising a PCB main board, a gear knob, a tail switch assembly, and an external mouse tail. The PCB main board is disposed inside the aiming body, the gear knob is disposed outside the aiming body, and the tail switch assembly is disposed at the tail of the aiming body. The gear knob is electrically connected to the PCB main board, and the tail switch assembly is electrically connected to the PCB main board. The external mouse tail is plugged into and plugged into the tail switch assembly. The external mouse tail connects or disconnects the circuit by inserting into or removing from the tail switch assembly. The tail switch assembly is used to press to control or connect the external mouse tail to control the aiming body to emit visible and / or invisible light.
[0009] As a further improvement to the above technical solution, the tail switch assembly includes a PCB switch board, a barrel tail, and a push-button socket. The tail of the sight body is provided with a mounting groove for mounting the PCB switch board. The barrel tail is connected to the tail of the sight body. The push-button socket is elastically connected to the barrel tail. The external rat tail is plugged into the push-button socket. The PCB switch board is electrically connected to the PCB main board, and the push-button socket is electrically connected to the PCB switch board.
[0010] As a further improvement to the above technical solution, the external mouse tail includes a mouse tail body, a first control button and a second control button disposed on the mouse tail body, a cable connected to the mouse tail body, and a plug connected to one end of the cable. The plug is inserted and cooperates with the press socket. The first control button is used to control a preset light source, and the second control button is used to control the light source mode pointed to by the gear knob.
[0011] As a further improvement to the above technical solution, the push-button socket includes an insulating base, an elastic element, a first contact element, and a second contact element. The elastic element is disposed between the insulating base and the cylindrical tail. The insulating base has an inner cavity for accommodating the insertion of the plug. The first contact element and the second contact element are respectively disposed sequentially in the inner cavity of the insulating base along the insertion direction of the plug. The PCB switch board is provided with a first signal switch solder joint, a second signal switch solder joint, and a dome switch. The first contact element and the second contact element are respectively connected to the first signal switch solder joint and the second signal switch solder joint via guide wires. When pressure is applied to the insulating base, the insulating base moves closer to the PCB switch board, and the first contact element contacts the dome switch to conduct the circuit. When the pressure applied to the insulating base is removed, the elastic element moves the insulating base away from the PCB switch board, and the first contact element separates from the dome switch to disconnect the circuit.
[0012] As a further improvement to the above technical solution, an insulating ring is provided between the first contact and the second contact.
[0013] As a further improvement to the above technical solution, the plug is provided with a first signal spring and a second signal spring; when the plug is inserted into the inner cavity of the insulating base, the first signal spring contacts the first contact and the second signal spring contacts the second contact.
[0014] As a further improvement to the above technical solution, the elastic element is a bowl-shaped silicone cap with a through hole in the center. The through hole accommodates a portion of the insulating seat. The outer edge of the bowl-shaped silicone cap is sealed to the tail of the cylinder, and the inner edge of the bowl-shaped silicone cap is sealed to the insulating seat.
[0015] As a further improvement to the above technical solution, the tail of the cylinder is provided with an inner step, and the inner side of the tail of the cylinder is threaded with a first pressure ring. The first pressure ring is used to press the outer edge of the cup-shaped silicone cap onto the inner step. The insulating seat is provided with an outer step, and the outer side of the insulating seat is threaded with a second pressure ring. The second pressure ring is used to press the inner edge of the cup-shaped silicone cap onto the outer step.
[0016] As a further improvement to the above technical solution, the tail switch assembly also includes a silicone cover, which is detachably connected to the end of the cylinder tail. A sealing post is connected to the middle of the silicone cover, and the sealing post is used to insert into the push-button socket to achieve sealing.
[0017] The beneficial effects of this utility model are:
[0018] This utility model provides a multi-functional aiming device that offers two different control methods for the aiming device. Users can control the aiming device's output by operating the buttons on the aiming device itself or the buttons on the external mouse tail, thereby improving the user's convenience and flexibility. Moreover, if one control method fails, the other control method can still maintain basic control functions, improving the stability of the device. Attached Figure Description
[0019] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0020] Figure 1 This is a structural schematic diagram provided by an example of this utility model;
[0021] Figure 2 This is a partial sectional view of the present invention;
[0022] Figure 3This is a partial exploded view of this utility model.
[0023] Reference numerals: 1-Sighting device body, 2-PCB main board, 3-Gear knob, 4-Tail switch assembly, 41-PCB switch board, 42-Tail end, 43-Push-button socket, 44-Silicone cover, 45-Sealing gasket, 411-First signal switch solder joint, 412-Second signal switch solder joint, 413-Dowel switch, 431-Insulating base, 432-Elastic element, 433-First contact element, 434-Second contact element, 435-Guide wire, 436-Insulating ring, 437-First pressure ring, 438-Second pressure ring, 441-Sealing post, 5-External rat tail, 51-Rat tail body, 52A-First control button, 52B-Second control button, 53-Cable, 54-Plug, 541-First signal spring, 542-Second signal spring. Detailed Implementation
[0024] The following will clearly and completely describe the concept, specific structure, and technical effects of this utility model in conjunction with embodiments and accompanying drawings, so as to fully understand the purpose, features, and effects of this utility model. Obviously, the described embodiments are only a part of the embodiments of this utility model, not all of them. Other embodiments obtained by those skilled in the art based on the embodiments of this utility model without creative effort are all within the scope of protection of this utility model. Furthermore, all connections / linkages involved in the patent do not simply refer to direct contact between components, but rather to the ability to form a better connection structure by adding or reducing connecting accessories according to specific implementation conditions. The various technical features in this utility model can be combined interactively without contradicting each other.
[0025] Reference Figures 1 to 3 An example of this utility model provides a multi-functional aiming device, including an aiming body 1 and a control mechanism, wherein the aiming body 1 is used to emit light, and the control mechanism is used to control the aiming body 1 to emit visible light and / or invisible light.
[0026] Structurally, the control mechanism includes a PCB main board 2, a gear knob 3, a tail switch assembly 4, and an external rat tail 5. The PCB main board 2 is located inside the sight body 1, the gear knob 3 is located on the outside of the sight body 1, and the tail switch assembly 4 is located at the tail of the sight body 1. The gear knob 3 is electrically connected to the PCB main board 2, the tail switch assembly 4 is electrically connected to the PCB main board 2, and the external rat tail 5 is plugged into and plugged into the tail switch assembly 4. The external rat tail 5 can connect or disconnect the circuit by inserting or removing the tail switch assembly 4. The tail switch assembly 4 is used to press to control or connect the external rat tail 5 to control the sight body 1 to emit visible light and / or invisible light.
[0027] It should be noted that the gear selector knob 3 supports multiple adjustment modes, including visible light such as white light, red laser, and green laser (light perceptible to the human eye) and invisible light such as infrared light (electromagnetic waves beyond the range of human vision). The white light mode can include low, medium, and high intensity brightness or a flicker mode. Invisible light is generally used covertly with night vision equipment, thus enabling its application in military scenarios to avoid revealing one's position. Rotating the gear selector knob 3 transmits different signals to the PCB motherboard 2. The programming logic of the PCB motherboard 2 dynamically switches the light parameters to meet the needs of different scenarios.
[0028] When the tail switch assembly 4 is pressed, the sight body 1 can be controlled to emit light at the corresponding level. When the external tail 5 is connected, the sight body 1 can be remotely controlled to emit a preset light or light at the corresponding level through the external tail 5. By providing two different control methods to control the sight, the convenience and flexibility of the user are improved. Moreover, when one control method fails, the basic control function can still be maintained through the other control method, thus improving the stability of the equipment.
[0029] In some preferred embodiments, the tail switch assembly 4 includes a PCB switch board 41, a barrel tail 42, and a push-button socket 43. The tail of the sight body 1 is provided with a mounting groove for mounting the PCB switch board 41. The barrel tail 42 is connected to the tail of the sight body 1. The push-button socket 43 is elastically connected to the barrel tail 42. The external rat tail 5 is plugged into and plugged into the push-button socket 43. The PCB switch board 41 is electrically connected to the PCB main board 2, and the push-button socket 43 is electrically connected to the PCB switch board 41.
[0030] Understandably, when the press socket 43 is pressed, the press socket 43 activates the circuit of the PCB switch board 41, and the PCB switch board 41 transmits an electrical signal to the PCB main board 2. The PCB main board 2 controls the aiming body 1 to emit light at the corresponding level. When the press socket 43 is released, the press socket 43 pops up, and the press socket 43 disconnects the circuit of the PCB switch board 41. The PCB main board 2 does not receive an electrical signal from the PCB switch board 41, and at this time the aiming body 1 does not emit light, thus enabling rapid control.
[0031] Furthermore, the tail 42 is sealed to the sight body 1 by a sealing gasket 45.
[0032] Furthermore, the external mouse tail 5 includes a mouse tail body 51, a first control button 52A and a second control button 52B disposed on the mouse tail body 51, a cable 53 connected to the mouse tail body 51, and a plug 54 connected to one end of the cable 53. The plug 54 is plugged into the push-button socket 43. The first control button 52A is used to control the preset light source signal, and the second control button 52B is used to control the light source mode pointed to by the gear knob 3.
[0033] Understandably, the plug 54 and the push-button socket 43 can be plugged in and out to quickly turn the circuit on or off. The length of the cable 53 can be preset according to the user's needs, enabling remote control, avoiding exposure of location, and improving stealth during special operations.
[0034] It should be noted that, when the device is powered on, regardless of whether the gear knob 3 is switched to either visible light or invisible light, pressing the first control button 52A allows for one-button direct control of the preset light source signal. Specifically, the preset light source can be a combination of white light and laser, a strobe light, or other fixed light; no specific limitations are made in this embodiment. For example, when the preset light source is a combination of white light and green laser in the visible light spectrum, pressing the first control button 52A will simultaneously illuminate both the white light and the green laser, thereby enabling rapid control of the sight body 1 to emit the preset visible light, improving tactical response speed.
[0035] To make it easier for users to distinguish between the first control button 52A and the second control button 52B, the first control button 52A can be set as a circular button and the second control button 52B can be set as a rectangular button.
[0036] In other embodiments, multiple control buttons can be provided on the main body 51 of the mouse tail. Each control button has a different function, and the specific settings can be made according to the user's needs.
[0037] In some preferred embodiments, the push-button socket 43 includes an insulating base 431, an elastic element 432, a first contact 433, and a second contact 434. The elastic element 432 is disposed between the insulating base 431 and the cylindrical tail 42. The insulating base 431 is provided with an inner cavity for accommodating the insertion of the plug 54. The first contact 433 and the second contact 434 are respectively disposed in the inner cavity of the insulating base 431 along the insertion direction of the plug 54. The PCB switch board 41 is provided with a first signal switch solder joint 411, a second signal switch solder joint 412, and a dome switch 413. The first contact 433 and the second contact 434 are respectively connected to the first signal switch solder joint 411 and the second signal switch solder joint 412 through guide wires 435.
[0038] When pressure is applied to the insulating base 431, the insulating base 431 approaches the PCB switch board 41, and the first contact 433 contacts the dome switch 413 to conduct the circuit. When the pressure applied to the insulating base 431 is removed, the elastic element 432 moves the insulating base 431 away from the PCB switch board 41, and the first contact 433 separates from the dome switch 413 to disconnect the circuit. Thus, the circuit is turned on when pressed and turned off when released, avoiding continuous illumination that could reveal the location.
[0039] Furthermore, an insulating ring 436 is provided between the first contact 433 and the second contact 434. The insulating ring 436 can isolate the first contact 433 and the second contact 434, preventing the first contact 433 and the second contact 434 from accidentally touching each other and causing a short circuit.
[0040] Furthermore, the plug 54 is provided with a first signal spring 541 and a second signal spring 542. When the plug 54 is inserted into the inner cavity of the insulating base 431, the first signal spring 541 contacts the first contact 433, and the second signal spring 542 contacts the second contact 434. Under the action of their own elasticity, the first signal spring 541 and the second signal spring 542 always abut against the first contact 433 and the second contact 434, thereby maintaining a stable contact pressure.
[0041] In some preferred embodiments, the elastic element 432 is a bowl-shaped silicone cap with a through hole in the center. The through hole accommodates a portion of the insulating seat 431. The outer edge of the bowl-shaped silicone cap is sealed to the tail of the cylinder 42, and the inner edge of the bowl-shaped silicone cap is sealed to the insulating seat 431.
[0042] Understandably, on the one hand, the cup-shaped silicone cap generates a rebound force when pressed. When the pressure applied to the insulating base 431 is removed, the rebound force of the cup-shaped silicone cap can move the insulating base 431 away from the PCB switch board 41. On the other hand, the cup-shaped silicone cap, the cylindrical tail 42, and the insulating base 431 form a closed cavity, which isolates external dust and moisture from entering the cavity, ensuring the normal operation of the internal components. Moreover, the silicone material of the cup-shaped silicone cap has the characteristics of high temperature resistance and aging resistance, making it suitable for use in harsh environments and improving service life.
[0043] Furthermore, the tail 42 is provided with an inner step, and the inner side of the tail 42 is threaded with a first pressure ring 437. The first pressure ring 437 is used to press the outer edge of the cup-shaped silicone cap onto the inner step. The insulating seat 431 is provided with an outer step, and the outer side of the insulating seat 431 is threaded with a second pressure ring 438. The second pressure ring 438 is used to press the inner edge of the cup-shaped silicone cap onto the outer step.
[0044] Understandably, on the one hand, by rotating the first pressure ring 437 and the second pressure ring 438, the cup-shaped silicone cap can be quickly installed or removed without easily loosening, improving the convenience and firmness of assembly. On the other hand, when the first pressure ring 437 and the second pressure ring 438 press the outer and inner edges of the cup-shaped silicone cap, they can ensure that the outer and inner edges of the cup-shaped silicone cap are subjected to uniform pressing force, avoiding sealing failure caused by local stress concentration. Furthermore, by utilizing the elastic characteristics of the cup-shaped silicone cap, the gap between the inner or outer steps can be filled by the elastic deformation of the cup-shaped silicone cap itself, further improving the sealing performance.
[0045] In some preferred embodiments, the tail switch assembly 4 further includes a silicone cover 44, which is detachably connected to the end of the tail 42. A sealing post 441 is connected to the middle of the silicone cover 44, and the sealing post 441 is used to insert into the press socket 43 to achieve sealing.
[0046] Understandably, on the one hand, after the sealing post 441 is inserted into the inner cavity of the push-button socket 43, the elastic deformation of the sealing post 441 forms an interference fit, which improves the sealing performance and prevents foreign objects such as moisture, sand, and mud from entering the tail switch assembly 4. On the other hand, the silicone cover 44 can provide a pressing support. The user can move the push-button socket 43 by pressing the silicone cover 44. The elasticity of the silicone can improve the pressing feel.
[0047] The above is a detailed description of the preferred embodiments of the present utility model. However, the present utility model is not limited to the described embodiments. Those skilled in the art can make various equivalent modifications or substitutions without departing from the spirit of the present utility model. All such equivalent modifications or substitutions are included within the scope defined by the claims of this application.
Claims
1. A multi-function sighting device characterized by, The application relates to a sighting device, which comprises the following parts: a sighting device body for emitting light; a control mechanism for controlling the sighting device body to emit visible light and / or invisible light, which comprises a PCB main plate, a gear knob, a tail switch assembly and an external tail, the PCB main plate is arranged in the inside of the sighting device body, the gear knob is arranged on the outside of the sighting device body, the tail switch assembly is arranged on the tail of the sighting device body, the gear knob is electrically connected with the PCB main plate, the tail switch assembly is electrically connected with the PCB main plate, the external tail is plug-in connected with the tail switch assembly, the external tail is connected or disconnected with the tail switch assembly by being inserted or pulled out, the tail switch assembly is used for pressing control or connecting the external tail to control the sighting device body to emit visible light and / or invisible light.
2. A multi-functional sighting device according to claim 1, characterized in that The tail switch assembly comprises a PCB switch plate, a cylinder tail and a pressing socket, the tail of the sighting device body is provided with a mounting groove, the mounting groove is used for mounting the PCB switch plate, the cylinder tail is connected with the tail of the sighting device body, the pressing socket is elastically connected with the cylinder tail, the external tail is plug-in connected with the pressing socket, the PCB switch plate is electrically connected with the PCB main plate, and the pressing socket is electrically connected with the PCB switch plate.
3. A multi-function sighting device according to claim 2, wherein The external tail comprises a tail main body, first and second control buttons arranged on the tail main body, a cable connected with the tail main body and a plug connected with one end of the cable, the plug is plug-in matched with the pressing socket, the first control button is used for controlling a preset light source, and the second control button is used for controlling a light source mode pointed by the gear knob.
4. A multi-function sighting device according to claim 3, wherein The pressing socket comprises an insulating seat, an elastic piece, first and second contact pieces, the elastic piece is arranged between the insulating seat and the cylinder tail, the insulating seat is provided with an inner cavity for accommodating the plug, the first and second contact pieces are sequentially arranged in the inner cavity of the insulating seat along the insertion direction of the plug, the PCB switch plate is provided with first and second signal switch welding points and a potzai switch, the first and second contact pieces are connected with the first and second signal switch welding points through lead wires respectively; when pressure is applied to the insulating seat, the insulating seat is close to the PCB switch plate, the first contact piece is in contact with the potzai switch to conduct the circuit; when the pressure applied to the insulating seat is removed, the elastic piece drives the insulating seat to be far away from the PCB switch plate, and the first contact piece is separated from the potzai switch to disconnect the circuit.
5. A multi-function sighting device according to claim 4, wherein An insulating ring is arranged between the first and second contact pieces.
6. A multi-functional sighting device according to claim 4, wherein The plug is provided with first and second signal spring sheets; when the plug is inserted into the inner cavity of the insulating seat, the first signal spring sheet is in contact with the first contact piece, and the second signal spring sheet is in contact with the second contact piece.
7. A multi-functional sighting device according to claim 4, wherein The elastic member is a bowl-shaped silica gel cap, a through hole is arranged at the center of the bowl-shaped silica gel cap, the through hole is used for containing part of the insulating seat, the outer edge of the bowl-shaped silica gel cap is sealingly connected with the barrel tail, and the inner edge of the bowl-shaped silica gel cap is sealingly connected with the insulating seat.
8. A multi-function sighting device according to claim 7, wherein The barrel tail is provided with an inner step, a first compression ring is threadedly connected to the inner side of the barrel tail, the first compression ring is used for compressing the outer edge of the bowl-shaped silica gel cap on the inner step, the insulating seat is provided with an outer step, a second compression ring is threadedly connected to the outer side of the insulating seat, and the second compression ring is used for compressing the inner edge of the bowl-shaped silica gel cap on the outer step.
9. The multi-functional sighting device of claim 2 wherein, The tail switch assembly further comprises a silica gel cover which is detachably connected to the end of the barrel tail, a blocking column is connected to the middle of the silica gel cover, and the blocking column is used for being inserted into the pressing socket to achieve blocking.