Laser conditioning gun

By designing adjustment and extension components for the laser conditioning gun, the flexibility issue of the laser conditioning gun under different simulation equipment layouts was solved, achieving efficient simulation equipment control and interpretation.

CN223636724UActive Publication Date: 2025-12-05SHANDONG GILI INTELLIGENT EQUIP CO LTD
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Patent Information

Application Number
CN202520105362.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-16
Publication Date
2025-12-05
Estimated Expiration
2035-01-16

AI Technical Summary

Technical Problem

When controlling different military simulation equipment, the laser conditioning gun has difficulty in flexibly adjusting laser focusing and beam shaping according to the actual layout of the equipment, resulting in reduced flexibility of use.

Method used

A laser conditioning gun was designed, comprising an adjustment component and a telescopic component. By replacing the components and cooperating with the telescopic component, the laser beam can be flexibly adjusted to adapt to the layout of different simulation equipment.

Benefits of technology

It improves the convenience and intelligence of analog equipment control, enhances the flexibility of laser conditioning gun use, and can adapt to the control needs of analog equipment in different environments and at different distances.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a laser conditioning gun which comprises a shell and a handle arranged on one side of the shell, and further comprises a laser emitter arranged in the shell, one end of the shell is provided with a laser emitting port, and the laser emitting port is provided with an adjusting assembly used for adjusting laser beams. A display screen and a plurality of operation buttons are arranged at the end, away from the laser emission port, of the shell, a main battery bin and a standby battery bin are arranged on the side, away from the shell, of the handle, and an emission button is arranged on the side, close to the shell, of the handle. According to the laser conditioning gun, the laser transmitter is used for transmitting laser signals with specific codes to the simulation equipment in the system, dead judgment and activity judgment control over the simulation equipment in the system is achieved, and meanwhile, due to the arrangement of the adjusting assembly, the simulation equipment controlled according to actual needs can conveniently adjust laser beams.
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Description

TECHNICAL FIELD

[0001] The utility model relates to analog equipment control device technical field, concretely is a laser conditioning gun. BACKGROUND

[0002] When controlling military analog equipment (anti-infantry mine, helicopter target or anti-tank mine), the laser conditioning gun is mainly used to emit specific coded laser signals to the analog equipment in the system, the analog equipment returns corresponding feedback information after receiving the signals, the laser conditioning gun judges the state (alive or dead) of the analog equipment according to the feedback information, and displays the judgment result on the display screen.

[0003] Different military analog equipment has great differences in the environment and the distance between each other during training use, for example, the anti-infantry mine and the anti-tank mine are large in quantity and dense when being arranged, while the helicopter target is arranged with a large arrangement distance between each other, and the arranged site is steep, so it is difficult for personnel to go to, when the conditioning operator uses the laser conditioning gun to control different analog equipment, it is inconvenient to focus the laser and adjust the beam shaping according to the actual arrangement of different analog equipment, thereby reducing the use flexibility of the laser conditioning gun.

[0004] Therefore, a laser conditioning gun is needed to solve the above problems. UTILITY MODEL CONTENTS

[0005] To achieve the above object, the utility model provides the following technical scheme: a laser conditioning gun, including the shell and the handle arranged at one side of the shell, still including the laser emitter arranged in the shell, one end of the shell is equipped with the laser emission port, the laser emission port is equipped with the adjustment assembly for adjusting the beam of laser, the one end of the shell away from the laser emission port is equipped with the display screen and a plurality of operation buttons, the inside circuit and the mainboard for controlling the laser emission, receiving external signals, processing data, driving the display screen and the operation button are equipped in the shell, the one side of the handle away from the shell is equipped with the main battery compartment and the spare battery compartment, the one side of the handle close to the shell is equipped with the emission button.

[0006] The adjustment assembly includes two adjustment plates arranged at the laser emission port, two adjustment plates are respectively equipped with adjustment lenses, two adjustment lenses are long focal length convex lenses and concave lenses respectively, the shell is equipped with the replacement assembly for replacing the position of two adjustment plates.

[0007] Two adjustment plates are fixedly connected with the limiting cover on the side close to the laser emission end, two limiting covers are matched with the cross section of the shell.

[0008] The replacement assembly comprises rotating shafts fixedly connected to opposite two side walls of the shell, two rotating plates rotatably connected to the rotating shafts respectively, four rotating plates connected with the replacement plates through telescopic assemblies, and adjacent two replacement plates and two replacement plates away from each other connected with the side walls of two limiting covers through replacement rods respectively.

[0009] The telescopic assembly comprises a telescopic cavity opened in the rotating plate, a telescopic plate slidably connected to the telescopic cavity, one end of the replacement plate away from the replacement rod connected with the telescopic plate, and two springs connected to one side of the telescopic plate away from the replacement plate, and the other ends of the two springs connected with the bottom wall of the telescopic cavity.

[0010] The telescopic cavity is filled with damping liquid, and a plurality of damping holes are opened in the side wall of the telescopic plate.

[0011] Compared with the prior art, the laser conditioning gun has the advantages that:

[0012] The laser conditioning gun utilizes the laser emitter to emit a laser signal with a specific code to the simulation equipment in the system, realizes the live-or-death control of the simulation equipment of the system, thereby improving the convenience and intelligence of the simulation equipment control, and meanwhile, through the setting of the adjusting assembly, the simulation equipment controlled according to actual needs is adjusted to the laser beam under the cooperation of the replacement assembly and the telescopic assembly, thereby realizing the live-or-death control of the simulation equipment and improving the flexibility of the laser conditioning gun. BRIEF DESCRIPTION OF DRAWINGS

[0013] Figure 1 It is a whole structure schematic view of the utility model;

[0014] Figure 2 It is a display screen and operation button structure schematic view of the utility model;

[0015] Figure 3 It is a main battery compartment and spare battery compartment structure schematic view of the utility model;

[0016] Figure 4 It is an adjusting assembly and replacement assembly structure schematic view of the utility model;

[0017] Figure 5 It is a telescopic assembly internal structure schematic view of the utility model.

[0018] In the figure: 101, the shell; 102, the handle; 2, the display screen; 3, the operation button; 4, the main battery compartment; 5, the spare battery compartment; 6, the emission button; 701, the adjusting plate; 702, the adjusting lens; 703, the limiting cover; 801, the rotating shaft; 802, the rotating plate; 803, the replacement plate; 804, the replacement rod; 901, the telescopic cavity; 902, the telescopic plate; 903, the spring; 11, the damping hole. DETAILED DESCRIPTION

[0019] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0020] Embodiment 1

[0021] Please refer to Figures 1-5 , a kind of laser conditioning gun in the figure, including shell 101 and the handle 102 of setting in shell 101 side, still including the laser emitter of setting in shell 101, the laser emission port of one end of shell 101 is equipped with adjusting assembly for adjusting the light beam of laser, the end of shell 101 away from laser emission port is equipped with display screen 2 and multiple operation buttons 3, the internal circuit and mainboard for controlling laser emission, receiving external signal, processing data, driving display screen 2 and operation button 3 are equipped in shell 101, the side of handle 102 away from shell 101 is equipped with main battery compartment 4 and spare battery compartment 5, the side of handle 102 close to shell 101 is equipped with emission button 6;

[0022] It needs to be explained here that: the specific coded laser signal is emitted to the analog device in the system by using the laser emitter, the dead or alive control to the system analog device is realized, so as to improve the convenience and intelligence of analog device control.

[0023] It is worth noting that: the high-performance circuit mainboard is integrated in the gun body, is responsible for controlling laser emission, receiving external signal, processing data, driving display screen 2 and operation button, etc., the mainboard adopts multilayer circuit board design, layout is reasonable, reduces electromagnetic interference, improves the stability and reliability of system. Circuit part adopts low-power electronic components and chips, to prolong the battery endurance time.

[0024] It needs to be emphasized that: the laser conditioning gun is carried by a special carrying bag, so as to facilitate the conditioning personnel to carry the laser conditioning gun in the field. The carrying bag is made of waterproof and wear-resistant material, and has a special partition and fixing device inside, which can properly place and fix the laser conditioning gun, charger, spare battery and other accessories, prevent mutual collision and damage during carrying, and the outside of the carrying bag has multiple pockets and hooks, which can facilitate the conditioning personnel to carry other necessary items such as personal items and training materials. The design of the carrying bag also considers comfort, and is equipped with adjustable shoulder straps and waist belts to reduce the pressure on the conditioning personnel when carrying;

[0025] More optimized is that: the main battery adopts high-capacity lithium-ion battery, and the optimized circuit system can realize the requirement of ≥12 hours of endurance, meet the needs of conditioning personnel in the field for a long time, when the battery power is insufficient, the matched charger can be used for rapid charging, the charging time is ≤3 hours, and the existence of the spare battery further improves the reliability of the laser conditioning gun. When the main battery is out of power or fails, the conditioning personnel can quickly switch to the spare battery to ensure the continuity of work.

[0026] Please refer to Figures 1-5 , the adjustment assembly in the figure includes two adjustment plates 701 arranged at the laser emitting port, and the two adjustment plates 701 are respectively provided with adjustment lenses 702, and the two adjustment lenses 702 are respectively long-focus convex lenses and concave lenses. The shell 101 is provided with a replacement assembly for replacing the positions of the two adjustment plates 701;

[0027] It should be noted here that: through the cooperation of the replacement assembly and the telescopic assembly, the adjustment assembly is convenient for adjusting the light beam of the simulation device according to the actual needs, so as to realize the control of the simulation device to determine life and death while improving the flexibility of the laser conditioning gun.

[0028] Please refer to Figure 4 , the two adjustment plates 701 in the figure are fixedly connected with limit covers 703 near the side of the laser emitting end, and the two limit covers 703 are matched with the cross section of the shell 101;

[0029] It should be noted here that: through the cooperation of the replacement assembly and the telescopic assembly, the adjustment assembly is convenient for adjusting the light beam of the simulation device according to the actual needs, so as to realize the control of the simulation device to determine life and death while improving the flexibility of the laser conditioning gun.

[0030] Please refer to Figure 4 and Figure 5The replacement assembly in the drawing comprises rotating shafts 801 fixedly connected to opposite two side walls of the shell 101, two rotating plates 802 rotatably connected to the two rotating shafts 801 respectively, four rotating plates 802 connected with a replacement plate 803 through telescopic assemblies, and two limiting covers 703 connected with the side walls through replacement rods 804 respectively between adjacent two replacement plates 803 and mutually distant two replacement plates 803.

[0031] It should be noted that: through the setting of the replacement assembly, different adjustment lenses 702 can be conveniently replaced according to actual needs, for example, when long-distance and high-precision control is required, a lens with a longer focal length can be replaced to make the laser beam focus more accurately at a long distance, and when a larger range needs to be covered, a lens capable of generating a diverging light beam can be replaced.

[0032] Please refer to Figure 5 The telescopic assembly in the drawing comprises a telescopic cavity 901 opened in the rotating plate 802, a telescopic plate 902 slidably connected to the telescopic cavity 901, the end of the replacement plate 803 away from the replacement rod 804 connected with the telescopic plate 902, and two springs 903 connected to one side of the telescopic plate 902 away from the replacement plate 803, and the other ends of the two springs 903 connected with the bottom wall of the telescopic cavity 901.

[0033] It should be noted that: through the setting of the telescopic assembly, the telescopic space for the movement of the adjustment plate 701 and the resetting function after movement are provided.

[0034] Working principle: when the laser conditioning gun is used, first, the laser conditioning gun is taken out from the matching carrying bag, then the handle 102 is held, the power of the laser conditioning gun is turned on, the laser emitting end is aimed at the simulation device to be controlled, the transmission of the electric signal to the circuit and the mainboard inside the shell 101 is realized through the pressing of the emission button 6, after the circuit and the mainboard receive the emission signal, the laser emitter will emit a specific coded laser signal to the simulation device in the system, after the simulation device receives the signal, the corresponding feedback information will be returned, the laser conditioning gun judges the state (alive or dead) of the simulation device according to the feedback information, and displays the judgment result on the display screen 2, for example, when the laser signal normally reaches the simulation device and receives its normal response, it is judged as alive, and the display is "device alive", when the laser signal cannot reach the simulation device or receives an abnormal response, it is judged as dead, and the display is "device dead", at the same time, the effective control distance of the laser conditioning gun is greater than or equal to 200m, which ensures that the simulation device can be accurately judged and operated in a larger range.

[0035] And in the process of control, the operator can enter the parameter setting interface by operating the button 3, set the current decision, key and other parameters, when setting the decision parameters, according to different training scenarios or task requirements, the corresponding decision rules can be selected, such as setting the conditions for judging the death of the simulation device (such as laser hitting a specific part, receiving a laser signal intensity lower than a certain threshold, etc.), the key setting is used to protect the security of the system, only by inputting the correct key, some key operations such as modifying important parameters or starting special functions can be performed, and the set parameters are displayed on the display screen 2 in real time, which is convenient for the operator to confirm;

[0036] At the same time, the liquid crystal display screen 2 can display the decision results, the currently set key, the battery capacity, the device number and other important information in real time, the battery capacity display adopts an intuitive icon or digital form, so that the operator can know the remaining battery capacity at any time, so as to replace the battery or charge in time, and the device number display is helpful to distinguish and manage each gun in the case of using multiple laser conditioning guns at the same time, which is convenient for system recording and statistical data;

[0037] When the operator controls the death or life of different simulation devices, due to the great difference in the environment and the distance between them during the training use of different simulation devices, when controlling the anti-infantry mine or anti-tank mine and other simulation devices which are arranged in large quantities and are relatively dense, the rotating plate 802 can be rotated to drive the limiting cover 703 on one side of the replacement plate 803 to rotate, and then the concave lens type adjusting lens 702 in the limiting cover 703 is rotated to the laser emitting end, so as to utilize the diverging effect of the concave lens on light, so that the parallel laser beam diverges outward, and after the laser beam diverges, it can cover a larger area at a certain distance, so as to control a larger range of simulation devices, when it is necessary to control the simulation devices such as helicopter targets which are arranged in small quantities and are relatively dispersed, the long focal length convex lens type adjusting lens 702 can be rotated to the laser emitting end, and the converging effect of the convex lens on light can make the laser beam focus at a farther place, and this long-distance focusing characteristic is helpful to control the target simulation device at a long distance, so that the laser signal can act on the target more concentratedly, thereby realizing high-precision control, therefore, by adjusting the setting of the adjusting assembly and the cooperation of the replacement assembly and the telescopic assembly, the light beam of the laser can be adjusted according to the actual need to control the simulation device, so as to realize the control of the death or life of the simulation device, and improve the flexibility of the use of the laser conditioning gun.

[0038] Embodiment 2

[0039] Please refer to Figure 5 The embodiment further illustrates embodiment 1, and the telescopic cavity 901 in the figure is filled with damping liquid, and a plurality of damping holes 11 are arranged on the side wall of the telescopic plate 902;

[0040] It should be noted that: through the filling of damping liquid, when the position of the adjusting plate 701 is changed, the replacement plate 803 will be extended and retracted in the telescopic cavity 901 due to the rotation angle, and then drive the telescopic plate 902 to slide in the telescopic cavity 901, and the damping liquid will be extruded in the process of the telescopic plate 902 sliding, so that the damping liquid passes through the damping hole 11, and then a damping buffer mechanism is formed, so that after the position of the adjusting plate 701 is changed and the pulling of the adjusting plate 701 is released, the damping buffer mechanism is used to buffer the moving speed of the adjusting plate 701 close to the shell 101, so as to avoid that the adjusting plate 701 causes a large impact force to the shell 101 due to the excessive elastic force of the spring 903, and then a protective effect is achieved on the adjusting lens 702.

[0041] It is apparent for those skilled in the art that the present application is not limited to the details of the above exemplary embodiments, but can be implemented in other concrete forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be considered in all aspects as illustrative and not restrictive, and the scope of the present application is defined by the appended claims rather than the above description, and all changes falling within the meaning and range of equivalent elements of the claims are intended to be embraced therein. Any reference signs in the claims should not be considered as limiting the claims involved.

Claims

1. A laser conditioning gun, comprising: a shell (101) and a handle (102) arranged on one side of the shell (101); characterized in that it further comprises: a laser emitter arranged in the shell (101), one end of the shell (101) is provided with a laser emission port, the laser emission port is provided with an adjusting assembly for adjusting the beam of laser, the end of the shell (101) away from the laser emission port is provided with a display screen (2) and a plurality of operation buttons (3), the shell (101) is provided with an internal circuit and a mainboard for controlling laser emission, receiving external signals, processing data, driving the display screen (2) and the operation buttons (3), one side of the handle (102) away from the shell (101) is provided with a main battery compartment (4) and a backup battery compartment (5), one side of the handle (102) close to the shell (101) is provided with an emission button (6).

2. The laser conditioning gun of claim 1, wherein: The adjusting assembly comprises two adjusting plates (701) arranged in the laser emission port, the two adjusting plates (701) are respectively provided with adjusting lenses (702), the two adjusting lenses (702) are respectively long-focus convex lenses and concave lenses, the shell (101) is provided with a replacement assembly for replacing the positions of the two adjusting plates (701).

3. A laser conditioning gun according to claim 2, characterized in that: Two adjusting plates (701) are fixedly connected with a limiting cover (703) on the side close to the laser emission end, the two limiting covers (703) are arranged in cross section matching with the shell (101).

4. The laser conditioning gun of claim 3, wherein: The replacement assembly comprises rotating shafts (801) fixedly connected to the opposite two side walls of the shell (101), two rotating plates (802) are respectively rotationally connected to the two rotating shafts (801), four rotating plates (802) are connected with replacement plates (803) through telescopic assemblies, adjacent two replacement plates (803) and two replacement plates (803) away from each other are respectively connected with the side walls of the two limiting covers (703) through replacement rods (804).

5. A laser conditioning gun according to claim 4, characterized in that: The telescopic assembly comprises a telescopic cavity (901) opened in the rotating plate (802), the telescopic cavity (901) is slidably connected with a telescopic plate (902), one end of the replacement plate (803) away from the replacement rod (804) is connected with the telescopic plate (902), the side of the telescopic plate (902) away from the replacement plate (803) is connected with two springs (903), the other ends of the two springs (903) are connected with the bottom wall of the telescopic cavity (901).

6. A laser conditioning gun according to claim 5, characterized in that: The telescopic cavity (901) is filled with damping liquid, a plurality of damping holes (11) are opened in the side wall of the telescopic plate (902).