Miniature sighting telescope with laser sighting and red dot sighting functions

By setting up installation slots on the upper side of the mirror seat and fitting the laser aiming assembly, combining the circuit connection between the side cover and the red dot aiming assembly, the existing combined sight structure is bloated and weight-increased, and the micro sight is realized, and the multi-installation and shared battery power is realized, adapting to multi-range aiming and easy for shooters to use.

CN120101581APending Publication Date: 2025-06-06SYSWIT OPTOELECTRONICS TECH CO LTD
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Patent Information

Application Number
CN202510291106.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-12
Publication Date
2025-06-06

AI Technical Summary

Technical Problem

The existing combined sights lead to the bloated firearm structure and increased weight through direct stacking structure, and different from the single sighting method, the shooter cannot adapt quickly.

Method used

A miniature sight with laser aiming and red dot aiming is designed. By setting up a mounting slot on the upper side of the mirror seat, the laser aiming assembly is fitted into the groove, and connected to the red dot aiming assembly circuit in the mirror seat through the connecting side cover, achieving multiple installation functions, while sharing battery power.

Benefits of technology

The multiple installation functions of the mirror holder are realized, avoiding the structural bloat caused by independent batteries of different sights, minimizing weight increase, and retaining the traditional aiming method, taking into account multi-range aiming, making it easier for shooters to use.

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Abstract

The invention discloses a miniature sighting telescope with laser aiming and red dot aiming, which is characterized in that a red dot aiming component is arranged in a cavity of a telescope seat, and a mounting groove is formed in the upper side of the telescope seat in an inward concave manner; the laser base cover is buckled on the upper side of the mirror base, and a laser aiming assembly embedded in the mounting groove is arranged in the cavity of the base cover; the connecting side cover is arranged on one side of the lens base, and one end penetrates into the mounting groove to be coupled with the laser aiming assembly circuit; and the other end penetrates into the telescope base and is coupled with the red dot aiming component through a circuit. The mounting groove is formed in the upper side of the telescope base and used for mounting the laser aiming assembly, and the connecting side cover is in circuit connection with the red dot aiming assembly, so that multiple mounting effects are achieved in the structural layout of the telescope base, meanwhile, structural bloating caused by different sighting telescope independent batteries is avoided, the weight increment is reduced to the maximum extent, and the service life of the telescope base is prolonged. And meanwhile, a traditional aiming mode of the sighting telescope is reserved, multi-range aiming is considered, and a shooter can use the sighting telescope conveniently.
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Description

Technical Field

[0001] The invention relates to the technical field of combined sights, and in particular to a miniature sight with laser aiming and red dot aiming. Background Art

[0002] Among the accessories of military firearms, laser sights and red dot sights are commonly used aiming structures. When using laser sights, the shooter needs to aim the laser dot at the target. The visibility of the laser dot depends on the wavelength of the laser and the ambient light conditions. Therefore, laser sights are suitable for close combat and rapid shooting, especially at night or in low-light environments, where the visibility of the laser dot is higher. When using red dot sights, the shooter aims by overlapping the red dot inside the sight with the target. The red dot can only be seen inside the sight. Therefore, red dot sights are suitable for precise shooting at medium and long distances, especially in situations that require rapid aiming and moving shooting.

[0003] When performing a mission, shooters usually select appropriate sights based on the mission environment and combat requirements. However, since military activities usually involve extremely high uncertainty, the configuration of a single sight can easily limit the shooter's operation in terms of shooting range and shooting accuracy.

[0004] In the prior art, although there are combined sights, such as the multifunctional sight disclosed in CN208443260U, they are mainly achieved by directly stacking and combining multiple sight structures, which results in a bloated structure and increased weight of the firearm after using such sights. In addition, there is a difference in aiming method from a single-sight firearm, and shooters cannot adapt quickly.

[0005] Therefore, the prior art still needs to be improved and developed. Summary of the invention

[0006] In order to solve the problem that the combined sights in the prior art adopt a directly stacked structure, which leads to a bloated structure and increased weight of the firearm after using such sights, and there is a difference in the aiming method of the firearm compared to the single-sight firearm, and the shooter cannot quickly adapt to it when using it, the present invention provides a miniature sight with laser aiming and red dot aiming.

[0007] The present invention is achieved through the following technical solutions:

[0008] A miniature sight with laser aiming and red dot aiming, wherein the miniature sight with laser aiming and red dot aiming comprises:

[0009] A mirror base, wherein a red dot aiming assembly is arranged inside the cavity of the mirror base, and a mounting groove is arranged in the concave portion of the upper side of the mirror base;

[0010] A laser seat cover, the laser seat cover is buckled on the upper side of the mirror seat, a laser aiming assembly is arranged inside the cavity of the seat cover, and the laser aiming assembly is embedded in the mounting groove;

[0011] A connecting side cover is embedded on one side of the mirror base, one end of the connecting side cover penetrates into the mounting groove and is coupled with the laser aiming component circuit; the other end of the connecting side cover penetrates into the mirror base and is coupled with the red dot aiming component circuit.

[0012] The miniature sight with laser aiming and red dot aiming, wherein a power supply compartment is provided at the bottom of the mirror base, the power supply compartment is located in the bottom plate of the mirror base, a battery panel is detachably installed in the power supply compartment, and the battery panel is coupled with the red dot aiming assembly and the connecting side cover circuit;

[0013] A power supply cover is buckled on the outer side of the power supply compartment, and the power supply cover is detachably connected to the power supply compartment via screws.

[0014] The miniature sight with laser aiming and red dot aiming, wherein a control panel is provided on one side of the mirror mount, the control panel includes a plurality of control buttons, and the control panel is coupled with the red dot aiming component, the laser aiming component and the battery panel circuit.

[0015] The miniature sight with laser aiming and red dot aiming, wherein a mounting groove is provided on a side of the bottom plate of the sight base away from the cavity of the sight base, and the red dot aiming component is embedded in the mounting groove;

[0016] A clearance groove is arranged on one side of the bottom plate of the mirror base corresponding to the cavity of the mirror base, and the clearance groove is arranged to intersect with the assembly groove along a predetermined inclination angle, and the clearance groove is used to avoid the rays of the red dot aiming assembly.

[0017] The miniature sight with laser aiming and red dot aiming, wherein the red dot aiming component comprises:

[0018] A red dot transmitter, wherein a red dot adjustment component connected to the lens holder is disposed on the periphery of the red dot transmitter;

[0019] A reverse perspective mirror, wherein the reverse perspective mirror is fixedly arranged on one end of the mirror seat along a predetermined arc, and the emission end of the red dot emitter passes through the clearance groove and corresponds to the center of the reverse perspective mirror;

[0020] An eyepiece, wherein the sighting mirror is fixedly arranged on the other end of the mirror base in a vertical direction, and the position of the sighting mirror corresponds to that of the anti-perspective mirror;

[0021] A base plate is buckled on the bottom plate of the mirror holder at a position corresponding to the assembly groove.

[0022] The miniature sight with laser aiming and red dot aiming, wherein the red dot adjustment component comprises:

[0023] A red dot up and down adjustment pin, the red dot up and down adjustment pin passes through the lens base in a vertical direction and is rotatably connected with the lens base thread, and the end of the red dot up and down adjustment pin is positioned and rotatably connected with the upper end of the red dot transmitter;

[0024] A red dot left-right adjustment pin passes through one side of the lens holder in a horizontal direction and is rotatably connected to a screw rod provided on a corresponding side of the red dot transmitter, and a compression spring is provided on the other side of the red dot transmitter.

[0025] The miniature sight with laser aiming and red dot aiming, wherein the laser aiming component comprises:

[0026] A laser transmitter, wherein a laser adjustment component connected to the laser seat cover is disposed on the periphery of the laser transmitter;

[0027] A laser protection mirror, wherein the laser protection mirror is fixedly arranged on one end of the laser base cover along a predetermined angle, and the emission end of the laser emitter corresponds to the center position of the laser protection mirror;

[0028] A circuit board, the laser emitter is connected to the circuit board circuit, the contour shape of the circuit board is adapted to the shape of the mounting slot, and a circuit socket adapted to the connecting side cover is provided on the circuit board.

[0029] The miniature sight with laser aiming and red dot aiming, wherein the other end of the laser emitter is an adjustment end;

[0030] The laser adjustment assembly comprises:

[0031] A laser up and down adjustment nail, the laser up and down adjustment nail passes through the upper side of the laser seat cover in the vertical direction and is threadedly connected to the laser seat cover, the end of the laser up and down adjustment nail is slidably abutted against the upper side of the adjustment end, and the lower side of the adjustment end is provided with a compression spring fixedly connected to the mounting groove and passing through the circuit board;

[0032] The laser left-right adjustment nail passes through a side wall of the laser seat cover in the horizontal direction and is threadedly connected to the laser seat cover. The end of the laser left-right adjustment nail slides and abuts against the corresponding side of the adjustment end, and the other side of the adjustment end is provided with a compression spring fixedly connected to the laser seat cover.

[0033] The miniature sight with laser aiming and red dot aiming, wherein the shape of the emission end of the laser emitter is a spherical crown;

[0034] The laser adjustment assembly also includes:

[0035] A laser positioning inner sleeve is fixedly mounted in the laser seat cover, the shape of the cavity of the laser positioning inner sleeve is adapted to the shape of the emitting end, and the emitting end is rotatably connected to the cavity of the positioning inner sleeve.

[0036] The miniature sight with laser aiming and red dot aiming, wherein a card slot is integrally provided on the lower side of the mirror mount, the card slot is used to connect with an adapter plate, and the positioning hole on the adapter plate is connected with a firearm;

[0037] The card slot comprises two card-engaging cavities separated by a spacer tenon, one side wall of the two card-engaging cavities is inclined at a first angle, and the other side wall is arranged in a vertical direction;

[0038] A locking groove is provided on the mirror base at a position corresponding to the partition tenon, and the locking groove is connected with the two engaging cavities;

[0039] A locking block is detachably embedded in the locking groove, and the locking block includes two tenons arranged at two ends along a second angle, the second angle is complementary to the first angle, and the two tenons can be adjusted and inserted into the two engaging cavities.

[0040] The beneficial effects of the present invention are as follows: the present invention arranges a mounting groove on the upper side of the mirror base, arranges the laser aiming assembly in the mounting groove, and connects the side cover to the red dot aiming assembly circuit in the mirror base, so that the mirror base can achieve multiple installation functions in the structural layout, while avoiding the bloated structure caused by independent batteries of different sights, minimizing the weight increase, and retaining the traditional aiming method of the sight, taking into account multi-range aiming while being convenient for the shooter to use. BRIEF DESCRIPTION OF THE DRAWINGS

[0041] Figure 1 It is a structural exploded diagram of the miniature sight with laser aiming and red dot aiming of the present invention;

[0042] Figure 2 It is a structural exploded view of a laser base cover and a laser aiming assembly in a miniature aiming device with laser aiming and red dot aiming of the present invention;

[0043] Figure 3 It is a top-down three-dimensional structural schematic diagram of a mirror base in a miniature sight with laser aiming and red dot aiming of the present invention;

[0044] Figure 4 The present invention is a schematic diagram of a three-dimensional structure of a mirror base in a miniature sight with laser aiming and red dot aiming, when viewed from above.

[0045] Figure 5It is a top-view stereoscopic structural schematic diagram of the combined state of the miniature sight with laser aiming and red dot aiming of the present invention;

[0046] Figure 6 It is a schematic diagram of a three-dimensional structure of the present invention in a combined state of a miniature sight with laser aiming and red dot aiming, viewed from above;

[0047] Figure 7 The present invention is a schematic diagram of the use state of the miniature sight with laser aiming and red dot aiming.

[0048] exist Figures 1 to 7 Middle: 100, mirror base; 110, mounting slot; 120, power compartment; 130, control panel; 140, assembly slot; 141, clearance slot; 150, card slot; 151, card cavity; 152, partition tenon; 160, locking slot; 170, locking block; 200, red dot aiming assembly; 210, red dot transmitter; 220, retro-perspective mirror; 230, eyepiece; 240, base plate; 250, red dot adjustment assembly; 251, red dot up and down adjustment Section nail; 252, red dot left and right adjustment nail; 300, laser base cover; 400, laser aiming assembly; 410, laser transmitter; 411, transmitting end; 412, adjustment end; 420, laser protection mirror; 430, circuit board; 440, laser adjustment assembly; 441, laser up and down adjustment nail; 442, laser left and right adjustment nail; 450, laser positioning inner sleeve; 500, connecting side cover; 600, battery panel; 610, power supply cover. DETAILED DESCRIPTION

[0049] In order to make the purpose, technical solution and effect of the present invention clearer and more specific, the present invention is further described in detail with reference to the accompanying drawings and examples. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.

[0050] It should be noted that if the embodiments of the present invention involve directional indications (such as up, down, left, right, front, back, etc.), the directional indications are only used to explain the relative position relationship, movement status, etc. between the components under a certain specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indications will also change accordingly.

[0051] In addition, if there are descriptions involving "first", "second", etc. in the embodiments of the present invention, the descriptions of "first", "second", etc. are only used for descriptive purposes and cannot be understood as indicating or suggesting their relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include at least one of the features. In addition, the technical solutions between the various embodiments can be combined with each other, but they must be based on the ability of ordinary technicians in the field to implement them. When the combination of technical solutions is contradictory or cannot be implemented, it should be deemed that such a combination of technical solutions does not exist and is not within the scope of protection required by the present invention.

[0052] In the prior art, although there are combined sights, such as the multifunctional sight disclosed in CN208443260U, they are mainly achieved by directly stacking and combining multiple sight structures, which results in a bloated structure and increased weight of the firearm after using such sights. In addition, there is a difference in aiming method from a single-sight firearm, and shooters cannot adapt quickly.

[0053] Based on the above problems in the prior art, the present invention provides a miniature sight with laser aiming and red dot aiming, such as Figure 1 As shown, the miniature sight with laser aiming and red dot aiming includes: a mirror base 100, a red dot aiming assembly 200 is arranged inside the cavity of the mirror base 100, and a mounting groove 110 is arranged in the upper side of the mirror base 100; a laser base cover 300, the laser base cover 300 is buckled on the upper side of the mirror base 100, a laser aiming assembly 400 is arranged inside the cavity of the base cover, and the laser aiming assembly 400 is embedded in the mounting groove 110; a connecting side cover 500, the connecting side cover 500 is embedded in one side of the mirror base 100, one end of the connecting side cover 500 penetrates into the mounting groove 110, and is coupled with the laser aiming assembly 400 circuit; the other end of the connecting side cover 500 penetrates into the mirror base 100, and is coupled with the red dot aiming assembly 200 circuit.

[0054] The present invention sets a mounting groove 110 on the upper side of the scope base 100, sets the laser aiming assembly 400 in the mounting groove 110, and connects the side cover 500 to the red dot aiming assembly 200 in the scope base 100, so that the scope base 100 can achieve multiple installation functions in the structural layout, avoids the bloated structure caused by independent batteries of different sights, minimizes the weight increase, and retains the traditional aiming method of the sight, taking into account multi-range aiming while being convenient for the shooter to use.

[0055] In the above embodiment, if Figure 1As shown in the figure, the main body of the miniature sight with laser aiming and red dot aiming of the present invention is composed of a mirror base 100, a red dot aiming assembly 200, a laser base cover 300, a laser aiming assembly 400 and a connecting side cover 500, wherein the appearance of the mirror base 100 is similar to that of the red dot aiming in the prior art, and the red dot aiming assembly 200 is arranged inside the mirror base 100 so as to achieve the effect of red dot aiming. The difference from the prior art is that a mounting groove 110 is concavely arranged on the upper side of the mirror base 100, and the mounting groove 110 is adapted to the laser aiming assembly 400. During actual assembly, the laser aiming assembly 400 is installed in the mounting groove 110, and then the laser base cover 300 is buckled on the laser aiming assembly 400, thereby reducing the space required for the combination of the laser aiming and the infrared aiming, and at the same time, the upper side of the mirror base 100 is made The side not only realizes the sealing of the inner cavity of the mirror base 100, but also realizes the effect of providing an installation basis for the laser aiming assembly 400. In addition, since both the laser sight and the infrared sight require power supply, in order to further reduce the volume of the laser sight, the present embodiment also includes a connecting side cover 500. The connecting side cover 500 is provided with a connecting circuit structure inside. During actual installation, it is installed in the form of being embedded in one side of the mirror base 100. One end of the connecting side cover 500 penetrates into the installation groove 110 to form a circuit coupling with the laser aiming assembly 400, and the other end of the connecting side cover penetrates into the mirror base 100 to form a circuit coupling with the red dot aiming assembly 200, so that the laser aiming assembly 400 and the red dot aiming assembly 200 can share the power supply system originally belonging to the red dot aiming assembly 200, thereby greatly reducing the structural weight and combined volume of the laser sight and the red dot aiming assembly after combination.

[0056] In the present embodiment, since the connecting side cover 500 is installed by being embedded in one side of the mirror base 100, the connecting circuit is equivalent to being buried in the inner wall of the mirror base 100. In actual use, the connecting side cover 500 embedded in the mirror base 100 also has the effect of preventing water and impurities from intruding, thereby ensuring that the structure of the mirror base 100 is beautiful and simple while being adaptable to use in a variety of task environments.

[0057] In the present embodiment, through the above-mentioned structural arrangement, the laser base cover 300 and the laser aiming assembly 400 in the miniature sight with laser aiming and red dot aiming of the present invention can be installed and combined in a minimum installation space. At the same time, since the laser aiming assembly 400 is superimposed on the mirror base 100, the aiming position of the red dot aiming assembly 200 is not changed. Therefore, in actual application, the shooter does not need to change the training habits, which can avoid the problem that the shooter cannot quickly adapt due to the change in the aiming method.

[0058] Further, in one embodiment of the invention, Figure 1As shown, in order to realize the power support for the above-mentioned red dot aiming assembly 200 and laser aiming assembly 400, by avoiding the power supply structure from affecting the volume of the miniature sights of laser aiming and red dot aiming, in the present embodiment, a power supply compartment 120 is provided at the bottom of the mirror base 100. The power supply compartment 120 is specifically provided in the bottom plate of the mirror base 100, and the power supply compartment 120 is provided with an open side corresponding to the bottom of the mirror base 100. A battery panel 600 is provided in the power supply compartment 120, and the battery panel 600 is detachably installed in the power supply compartment 120 in an interlocking manner. When the battery panel 600 is inserted into a predetermined position in the power supply compartment 120, the battery panel 600 is coupled with the red dot aiming assembly 200 and the connecting side cover 500 circuit, so that the battery panel 600 can supply power to the red dot aiming assembly 200 and the laser aiming assembly 400 respectively.

[0059] Furthermore, if Figure 1 As shown, in order to limit the installation position of the battery panel 600 and prevent the battery panel 600 from falling off, in the present embodiment, a power cover 610 is also embedded on the outer side of the power compartment 120. When the power cover 610 is snap-fitted and installed at a predetermined position outside the power compartment 120, it can push and position the battery panel 600 to avoid the circuit being disconnected due to improper installation of the battery panel 600. In addition, the power cover 610 is detachably connected to the power compartment 120 by screws to further lock the power cover 610 to prevent the power cover 610 from falling off and the battery panel 600 from falling out due to bumps or collisions on the firearm.

[0060] Furthermore, the battery panel 600 is actually configured as a polymer battery, which is a lithium-ion battery using a solid or gel electrolyte, also known as a lithium polymer battery or a polymer lithium battery. Compared with traditional liquid electrolyte batteries, polymer batteries have high safety in structure and performance, avoiding safety hazards such as liquid electrolyte leakage and fire; high energy density, can provide a large energy output in a small volume, meet the needs of high efficiency; long cycle life, slow capacity decay rate, can maintain stable performance for a long time, meet the requirements of supporting shooters to attend tasks for a long time.

[0061] In another embodiment of the present invention, Figure 1 and Figure 5As shown, a control panel 130 is further provided on one side of the above-mentioned mirror base 100. The control panel 130 is installed on the outside of the mirror base 100 in an interlocking manner. The control panel 130 is circuit-coupled with the above-mentioned red dot aiming component 200 and laser aiming component 400, and a number of control buttons are provided on the control panel 130 for controlling the red dot aiming component 200 and the laser aiming component 400 respectively. In specific settings, the control buttons on the control panel 130 can be set in the form of conductive rubber buttons, micro switches, etc., to meet the requirements of rapid and effective control feedback. At the same time, in specific settings, the outer side of the control panel 130 can be covered with rubber material, so as to achieve the effect of preventing rain and snow and preventing the invasion of debris without affecting the control.

[0062] In another embodiment of the present invention, Figure 4 As shown, in order to prevent the installation of the red dot sighting assembly 200 in the scope base 100 from affecting the sighting field of view, in this embodiment, an assembly groove 140 is further provided on the bottom plate of the scope base 100 away from the cavity of the scope base 100. During actual installation, the red dot sighting assembly 200 is embedded in the assembly groove 140. Figure 3 As shown, a clearance groove 141 is provided on the bottom plate of the lens holder 100 corresponding to one side of the cavity of the lens holder 100. The clearance groove 141 intersects with the assembly groove 140 along a predetermined inclination angle. Even when the red dot aiming assembly 200 generates a red dot beam, it can accurately irradiate the designed part along the avoidance space formed by the clearance groove 141.

[0063] Specifically, Figure 1 As shown, the red dot aiming assembly 200 is specifically composed of a red dot emitter 210, a retro-perspective mirror 220, an eyepiece 230 and a base plate 240, wherein the red dot emitter 210 is the same as the red dot emitter 210 commonly used in red dot sights in the prior art, and is used to generate a red beam of light for aiming. In this embodiment, a red dot adjustment assembly 250 connected to the lens holder 100 is also provided on the periphery of the red dot emitter 210, and the red dot adjustment assembly 250 is used to fine-tune the installation position of the red dot emitter 210 to achieve the effect of calibrating the red dot aiming. The retro-perspective mirror 220 is fixedly arranged on one end of the lens holder 100 along a predetermined arc, and one end of the retro-perspective mirror 220 is an end corresponding to the shooting target, and the emission end 411 of the red dot emitter 210 passes through the clearance slot 141 and corresponds to the center position of the retro-perspective mirror 220, as shown in FIG. Figure 7 As shown, the concave surface of the retro-perspective mirror 220 is coated with a semi-transparent film, which can transmit light and reflect light of a specific wavelength at the same time. When the power is turned on, the light emitted by the red dot emitter 210 is reflected on the mirror surface to form a red or green virtual image point, i.e., a "red dot", through which the shooter aims.

[0064] The eyepiece 230 is fixedly arranged on the other end of the mirror holder 100 along the vertical direction, and the position of the eyepiece 230 corresponds to the position of the anti-perspective mirror 220. In actual use, the eyepiece 230 has the effect of transmitting the light reflected by the anti-perspective mirror 220. Figure 7 As shown, the aiming line of the red dot eyepiece 230 is the result of extending the reflected light in the opposite direction, and this series of aiming lines are parallel to each other. Therefore, even if the shooter's eyes have a slight deviation, the sight line along the red dot direction is still consistent with the direction of the barrel.

[0065] like Figure 1 and Figure 6 As shown, the substrate 240 is used to support other functional components in the above-mentioned red dot aiming assembly 200, and to seal the above-mentioned assembly groove 140. During actual installation, the substrate 240 is buckled on the bottom plate of the lens holder 100 at a position corresponding to the assembly groove 140, and is locked by a fixing structure such as screws, thereby constraining the installation position of the above-mentioned other red dot aiming assembly 200.

[0066] Furthermore, if Figure 1 As shown, the red dot adjustment component 250 specifically includes a red dot up-down adjustment nail 251 for adjusting the vertical direction of the red dot transmitter 210, and a red dot left-right adjustment nail 252 for adjusting the horizontal direction of the red dot transmitter 210, wherein the red dot up-down adjustment nail 251 penetrates the lens holder 100 to the assembly groove 140 along the vertical direction, and the red dot up-down adjustment nail 251 is threadedly rotatably connected with the lens holder 100 to change the vertical position of the red dot up-down adjustment nail 251, and the end of the red dot up-down adjustment nail 251 is positioned and rotatably connected with the upper end of the red dot transmitter 210, so that when the height of the red dot up-down adjustment nail 251 changes, the red dot transmitter 210 can synchronously realize height adjustment without changing the direction of the ray; correspondingly, the red dot up-down adjustment nail 251 is threadedly rotatably connected with the lens holder 100 to change the vertical position of the red dot up-down adjustment nail 251. The left-right adjustment pin 252 passes through one side of the lens holder 100 in the horizontal direction to the above-mentioned assembly groove 140, corresponding to one side of the red dot transmitter 210. A screw is provided on the side of the red dot transmitter 210. The red dot left-right adjustment pin 252 is connected to the lens holder 100 for positioning and rotation. When the red dot left-right adjustment pin 252 rotates, it forms a relative rotation with the screw on the red dot transmitter 210, thereby converting the radial rotational force into a pulling force or a thrust force, thereby achieving the effect of changing the left-right position of the red dot transmitter 210. In order to make the adjustment process more accurate, a compression spring is further provided at the other end of the red dot transmitter 210. The compression spring is used to provide a restoring force during the adjustment process to ensure that the displacement feedback of the red dot transmitter 210 during the adjustment process is rapid and accurate.

[0067] In another embodiment of the present invention, Figure 1 and Figure 2As shown, the laser aiming assembly 400 is specifically composed of a laser emitter 410, a laser protection mirror 420 and a circuit board 430, wherein a laser adjustment assembly 440 connected to the laser seat cover 300 is arranged on the periphery of the laser emitter 410, and the laser adjustment assembly 440 is used to fine-tune the position of the laser emitter 410 to achieve the effect of calibrating the laser sight. The laser protection mirror 420 is fixedly arranged at one end of the laser seat cover 300 along a predetermined angle. In actual use, the laser protection mirror 420 is used to seal the inner cavity of the laser seat cover 300 while transmitting the laser path, so as to avoid the rain and snow weather from affecting the normal use of the laser emitter 410; the circuit board 430 is connected to the laser emitter 410 circuit. In actual use, the circuit board 430 not only plays the role of restricting the installation position of the laser emitter 410, but also plays the role of connecting with the above-mentioned connecting side cover 500. In specific settings, a circuit socket can be arranged on the circuit board 430 at the position corresponding to the connecting side cover 500 to achieve the effect of stable connection and easy assembly.

[0068] Further, for the convenience of understanding by those skilled in the art, Figure 2 As shown, in the present embodiment, the two ends of the laser emitter 410 are named, wherein the end of the laser emitter 410 corresponding to the center position of the laser protection mirror 420 is named the emission end 411, and the other end of the laser emitter 410 is named the adjustment end 412. When calibrating the position of the laser emitter 410, since the emission end 411 corresponds to the position of the laser protection mirror 420, it is actually only necessary to adjust the adjustment end 412 of the laser emitter 410 to achieve the calibration effect. Therefore, in this embodiment, the laser adjustment assembly 440 specifically includes a laser up-down adjustment pin 441 and a laser left-right adjustment pin 442, wherein the laser up-down adjustment pin 441 passes through the upper side of the laser seat cover 300 in the vertical direction and enters the inner cavity of the laser seat cover 300, the laser up-down adjustment pin 441 is threadedly connected to the laser seat cover 300, the end of the laser up-down adjustment pin 441 is slidably abutted against the upper side of the adjustment end 412, and a compression spring fixedly connected to the above-mentioned mounting groove 110 is provided on the lower side of the adjustment end 412, so that the effect of adjusting the position of the adjustment end 412 in the vertical direction can be achieved through the elastic potential energy of the compression spring and the height adjustment of the laser up-down adjustment pin 441. In this embodiment, since the circuit board 430 is arranged in the mounting groove 110 and is located on the side corresponding to the laser emitter 410, in order to realize the fixed connection between the compression spring and the mounting groove 110, a clearance hole structure should be preset on the circuit board 430.

[0069] Correspondingly, if Figure 1 and Figure 2As shown, the laser left-right adjustment pin 442 passes through a side wall of the laser base cover 300 in the horizontal direction and is threadedly connected to the laser base cover 300. The end of the laser left-right adjustment pin 442 slides and abuts against the corresponding side of the adjustment end 412. The other side of the adjustment end 412 is provided with a compression spring fixedly connected to the laser base cover 300, thereby achieving the effect of adjusting the horizontal position of the adjustment end 412 through the elastic potential energy of the compression spring and the position adjustment of the laser left-right adjustment pin 442.

[0070] Based on the above embodiment, in order to prevent the transmitting end 411 of the laser transmitter 410 from moving during the calibration process of the adjusting end 412, as shown in FIG. Figure 2 As shown, in the present embodiment, the laser adjustment component 440 further includes a laser positioning inner sleeve 450. The function of the laser positioning inner sleeve 450 is to limit the transmitting end 411. In the specific setting, after the position of the adjustment end 412 of the laser emitter 410 changes, the angle of the transmitting end 411 of the laser emitter 410 will inevitably change. Therefore, in order to make the angle change of the transmitting end 411 smoother, in the present embodiment, the shape of the transmitting end 411 of the laser emitter 410 is set to a spherical crown shape, and the laser positioning sleeve is fixedly sleeved in the laser base cover 300. Correspondingly, the shape of the cavity of the laser positioning inner sleeve 450 is set to match the shape of the transmitting end 411, that is, to form a universal shaft style, so that the transmitting end 411 can rotate freely without changing the setting position of the transmitting end 411.

[0071] In another embodiment of the present invention, Figure 4 and Figure 6As shown, in the present embodiment, in order to enable the above-mentioned miniature sight with laser aiming and red dot aiming to be compatible and installed with the firearms in the prior art, an integrally formed card slot 150 structure is further provided at the lower end of the scope base 100 in the present embodiment, and the card slot 150 is used to connect with the leather rail of the firearm in the prior art; specifically, the card slot 150 includes two engaging cavities 151, and the two engaging cavities 151 are separated by a partition tenon 152, so as to match with the spacer keel structure of the firearm leather rail, and at the same time, of the two side walls in the engaging cavity 151, one side wall is inclined along a first angle, and the other side wall is arranged in a vertical direction. The purpose of such an arrangement is that during installation, the inclined side wall can be first engaged with one side of the leather rail, so that the vertical The straight side can form an engagement with the other side of the leather rail; in order to lock the engaging portion, a locking groove 160 is further provided at a position corresponding to the partition tenon 152 on the above-mentioned mirror holder 100, and the locking groove 160 is respectively connected with the two engaging cavities 151. On the other hand, a locking block 170 is detachably engaged in the above-mentioned locking groove 160, and the locking block 170 includes two end tenons arranged along a second angle. When the locking block 170 is installed, the tenon extends into the two engaging cavities 151 to form an engagement with the other side of the leather rail, and then the locking block 170 is fixed to the locking groove 160 by tools such as screws, thereby forming an effect of fixing the miniature sight with laser aiming and red dot aiming on the firearm.

[0072] It should be noted that the setting of the above-mentioned second angle should be complementary to the first angle, and the inclined surface of the tenon is actually mirror-symmetrical with the inclined side wall of the locking groove to adapt to the locking structure on both sides of the leather rail.

[0073] Based on the above embodiments, the miniature sight with laser aiming and red dot aiming of the present invention makes full use of the outer wall structure of the scope base 100, so that the red dot aiming assembly 200 and the laser aiming assembly 400 can be installed in a smaller installation space. Compared with the separate red dot sight in the prior art, only the volume of the laser base cover 300, an additional structure, is added to the upper side of the scope base 100. The overall weight increase is small, and the traditional aiming method is not changed. In actual application, the shooter does not need to change the training habits, which can avoid the problem that the shooter cannot quickly adapt to the change in the aiming method.

[0074] In summary, the present invention provides a miniature sight with laser aiming and red dot aiming, and the miniature sight with laser aiming and red dot aiming comprises: a mirror base, a red dot aiming assembly is arranged inside the cavity of the mirror base, and a mounting groove is arranged in the concave of the upper side of the mirror base; a laser base cover, the laser base cover is buckled on the upper side of the mirror base, a laser aiming assembly is arranged inside the cavity of the base cover, and the laser aiming assembly is embedded in the mounting groove; a connecting side cover, the connecting side cover is embedded in one side of the mirror base, one end of the connecting side cover penetrates into the mounting groove and is coupled with the laser aiming assembly circuit; the other end of the connecting side cover penetrates into the mirror base and is coupled with the red dot aiming assembly circuit. The present invention sets a mounting groove on the upper side of the mirror base, sets the laser aiming assembly in the mounting groove, and connects the red dot aiming assembly circuit in the mirror base through the connecting side cover, so that the mirror base can realize multiple installation functions in the structural layout, and avoids the bloated structure caused by independent batteries of different sights, and minimizes the weight increase. At the same time, it also retains the traditional aiming method of the sight, taking into account multi-range aiming while being convenient for shooters to use.

[0075] It should be understood that the application of the present invention is not limited to the above examples. For ordinary technicians in this field, improvements or changes can be made based on the above description. All these improvements and changes should fall within the scope of protection of the claims attached to the present invention.

Claims

1. A miniature sight with laser aiming and red dot aiming, characterized in that: The miniature sight with laser aiming and red dot aiming comprises: A mirror base, wherein a red dot aiming assembly is arranged inside the cavity of the mirror base, and a mounting groove is arranged in the concave portion of the upper side of the mirror base; A laser seat cover, the laser seat cover is buckled on the upper side of the mirror seat, a laser aiming assembly is arranged inside the cavity of the seat cover, and the laser aiming assembly is embedded in the mounting groove; A connecting side cover is embedded on one side of the mirror base, one end of the connecting side cover penetrates into the mounting groove and is coupled with the laser aiming component circuit; the other end of the connecting side cover penetrates into the mirror base and is coupled with the red dot aiming component circuit.

2. The miniature sight with laser aiming and red dot aiming according to claim 1, characterized in that: A power supply compartment is provided at the bottom of the mirror base, and the power supply compartment is located in the bottom plate of the mirror base. A battery panel is detachably installed in the power supply compartment, and the battery panel is coupled with the red dot aiming assembly and the connection side cover circuit; A power supply cover is buckled on the outer side of the power supply compartment, and the power supply cover is detachably connected to the power supply compartment via screws.

3. The miniature sight with laser aiming and red dot aiming according to claim 2, characterized in that: A control panel is provided on one side of the mirror mount, and the control panel includes a plurality of control buttons. The control panel is coupled with the red dot aiming assembly, the laser aiming assembly and the battery panel circuit.

4. The miniature sight with laser aiming and red dot aiming according to claim 1, characterized in that: A mounting groove is provided on a side of the bottom plate of the mirror base away from the cavity of the mirror base, and the red dot aiming assembly is embedded in the mounting groove; A clearance groove is arranged on one side of the bottom plate of the mirror base corresponding to the cavity of the mirror base, and the clearance groove is arranged to intersect with the assembly groove along a predetermined inclination angle, and the clearance groove is used to avoid the rays of the red dot aiming assembly.

5. The miniature sight with laser aiming and red dot aiming according to claim 4, characterized in that: The red dot aiming assembly comprises: A red dot transmitter, wherein a red dot adjustment component connected to the lens holder is disposed on the periphery of the red dot transmitter; A reverse perspective mirror, wherein the reverse perspective mirror is fixedly arranged on one end of the mirror seat along a predetermined arc, and the emission end of the red dot emitter passes through the clearance groove and corresponds to the center of the reverse perspective mirror; A sight, the sight is fixedly arranged on the other end of the mirror base along the vertical direction, and the position of the sight corresponds to that of the retro-perspective mirror; A base plate is buckled on the bottom plate of the mirror holder at a position corresponding to the assembly groove.

6. The miniature sight with laser aiming and red dot aiming according to claim 5, characterized in that: The red dot adjustment component comprises: A red dot up and down adjustment pin, the red dot up and down adjustment pin passes through the lens base in a vertical direction and is rotatably connected with the lens base thread, and the end of the red dot up and down adjustment pin is positioned and rotatably connected with the upper end of the red dot transmitter; A red dot left-right adjustment pin passes through one side of the lens holder in a horizontal direction and is rotatably connected to a screw rod provided on a corresponding side of the red dot transmitter, and a compression spring is provided on the other side of the red dot transmitter.

7. The miniature sight with laser aiming and red dot aiming according to claim 1, characterized in that: The laser aiming assembly comprises: A laser transmitter, wherein a laser adjustment component connected to the laser seat cover is disposed on the periphery of the laser transmitter; A laser protection mirror, wherein the laser protection mirror is fixedly arranged on one end of the laser base cover along a predetermined angle, and the emission end of the laser emitter corresponds to the center position of the laser protection mirror; A circuit board, the laser emitter is connected to the circuit board circuit, the contour shape of the circuit board is adapted to the shape of the mounting slot, and a circuit socket adapted to the connecting side cover is provided on the circuit board.

8. The miniature sight with laser aiming and red dot aiming according to claim 7, characterized in that: The other end of the laser transmitter is an adjustment end; The laser adjustment assembly comprises: A laser up and down adjustment nail, the laser up and down adjustment nail passes through the upper side of the laser seat cover in the vertical direction and is threadedly connected to the laser seat cover, the end of the laser up and down adjustment nail is slidably abutted against the upper side of the adjustment end, and the lower side of the adjustment end is provided with a compression spring fixedly connected to the mounting groove and passing through the circuit board; The laser left-right adjustment nail passes through a side wall of the laser seat cover in the horizontal direction and is threadedly connected to the laser seat cover. The end of the laser left-right adjustment nail slides and abuts against the corresponding side of the adjustment end, and the other side of the adjustment end is provided with a compression spring fixedly connected to the laser seat cover.

9. The miniature sight with laser aiming and red dot aiming according to claim 8, characterized in that: The shape of the emitting end of the laser emitter is a spherical crown; The laser adjustment assembly also includes: A laser positioning inner sleeve is fixedly mounted in the laser seat cover, the shape of the cavity of the laser positioning inner sleeve is adapted to the shape of the emitting end, and the emitting end is rotatably connected to the cavity of the positioning inner sleeve.

10. The miniature sight with laser aiming and red dot aiming according to claim 1, characterized in that: A card slot is integrally provided on the lower side of the mirror mount, and the card slot is used to connect with the adapter plate, and the positioning hole on the adapter plate is connected with the firearm; The card slot comprises two card-engaging cavities separated by a spacer tenon, one side wall of the two card-engaging cavities is inclined at a first angle, and the other side wall is arranged in a vertical direction; A locking groove is provided on the mirror base at a position corresponding to the partition tenon, and the locking groove is connected with the two engaging cavities; A locking block is detachably embedded in the locking groove, and the locking block includes two tenons arranged at two ends along a second angle, the second angle is complementary to the first angle, and the two tenons can be adjusted and inserted into the two engaging cavities.

Citation Information

Patent Citations

  • Multi -functional utensil of taking aim at

    CN208443260U