Laser regulator based on laser training weapon
By installing a laser regulator and a solenoid valve device inside the built-in slot of the laser training weapon, the problems of easy wear of the laser regulator and unevenness of the gun body in the laser training weapon are solved, the weight coordination of the gun body is coordinated and the mechanical adjustment is convenient, and the training effect is enhanced.
Patent Information
- Application Number
- CN202422967697.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-03
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2034-12-03
AI Technical Summary
The laser adjuster of the existing laser training weapon's long rifle model is prone to impact and wear, has a short service life, and the built-in solenoid valve structure of the rifle body causes imbalance of the rifle body and inconvenient mechanical adjustment, making aiming and shooting difficult.
The device employs a built-in slot housing a laser adjuster and a solenoid valve, forming a fixed positional structure. The solenoid tube and electromagnet core are installed upside down, and the solenoid valve effect is achieved through wires and circuit boards, enabling coordinated counterweight of the gun body and convenient mechanical adjustment.
The lifespan of the laser adjuster has been improved, the gun body is balanced, the mechanical adjustment is convenient, the simulation training effect has been enhanced, and the training intensity of the users has been increased.
Smart Images

Figure CN223512609U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of laser training weapon technology, specifically a laser modulator based on a laser training weapon. Background Technology
[0002] Laser training weapons, also known as laser rifles, are commonly used to train military, police, and security personnel to improve their safety and protection skills. Combined with props and equipment, they provide realistic target practice, enhancing shooting accuracy and promoting the widespread adoption of electronic equipment combined with human training to increase intensity.
[0003] Existing laser training weapon models often feature an external laser adjuster on the gun head and an alignment sight, making the adjuster prone to wear and tear, reducing its lifespan. Furthermore, the internal solenoid valve structure consists of a right-side solenoid tube and a left-side electromagnet core, which makes the trigger area of the gun body bulky. This results in a severe imbalance in the weight distribution of the gun body and makes mechanical adjustments for aiming and firing inconvenient, thus limiting the laser beam to a certain area. Utility Model Content
[0004] To address the shortcomings of existing technologies, this utility model provides a laser adjuster based on a laser training weapon. This addresses the common problem that existing laser training weapon models often have an externally mounted laser adjuster with an external sight, making the adjuster susceptible to wear and tear and reducing its lifespan. Furthermore, the internal solenoid valve structure of the gun body, with a right-side solenoid tube and a left-side electromagnet core, makes the trigger area of the gun body bulky, resulting in a severe imbalance in the weight distribution of the gun body and inconvenient mechanical adjustments for aiming and firing, as well as the problem of confining the laser beam within a certain area.
[0005] To achieve the above objectives, this utility model is implemented through the following technical solution: a laser adjuster based on a laser training weapon, including a gun head, a sight, and a trigger handle, characterized in that: it also includes an internal slot, a laser adjuster, a solenoid valve device, and a gun body slot, wherein the gun body slot is fixedly provided on the right side of the internal slot and the two are integrally formed, the laser adjuster is installed inside the internal slot, and the solenoid valve device with a solenoid tube on the left and an electromagnet core on the right is installed inside the gun body slot.
[0006] The laser adjuster and solenoid valve are installed in the built-in slot to form a fixed positional structure. This is a new electromagnetic adjustment assembly design for laser training weapons. It makes it easier to reduce the tilting of the gun body due to its light head and heavy tail, and the overall weight distribution of the gun is more balanced, making it easier to hold and use.
[0007] Preferably, the laser modulator includes a wire, a modulator body, and a connector tube. The wire is installed on the right side of the modulator body and is electrically connected to the modulator body. The connector tube is inserted into the lower right corner of the modulator body.
[0008] By connecting the terminal tube, which is also another wire, the internal circuit of the regulator is connected, thereby achieving the operation of laser beam focusing, aiming, shooting, and target shooting by inputting and outputting the positive and negative ports of the regulator.
[0009] Preferably, the solenoid valve device includes a solenoid tube, a three-phase power cable, an electromagnet core, and an integrated circuit board. The left end of the three-phase power cable is installed at the upper right corner of the solenoid tube, and the right end of the three-phase power cable is inserted into the top surface of the integrated circuit board. The electromagnet core is embedded in the right side of the solenoid tube, and the solenoid tube is electrically connected to the integrated circuit board through the three-phase power cable.
[0010] By connecting the solenoid tube to the left and the electromagnet core to the right in series via a three-phase power cable to an integrated circuit board, a central control solenoid valve effect based on a laser training weapon is formed. The inverted solenoid valve weight ratio allows the user to lift the gun head to increase the weight and achieve the effect of simulated gun load-bearing training. It also independently forms a unique assembly structure for laser training weapons.
[0011] Preferably, the regulator body is bolted to the built-in groove, and the connecting pipe is installed on the left side of the solenoid valve device.
[0012] By connecting the connecting tube to the wires on the left side of the solenoid valve device, the positive and negative ports of the regulator body can be used to generate laser beams for focusing, aiming, shooting, and target shooting operations. The regulator body is also assembled and positioned in the built-in slot, forming a unique independent structure.
[0013] Preferably, the solenoid tube and the electromagnet core are respectively inserted into the left and right sides inside the gun body groove, and the integrated circuit board is horizontally inserted into the top surface of the trigger handle.
[0014] By placing the solenoid tube on the left side of the gun body slot and the electromagnet core on the right side of the gun body slot, a central control solenoid valve effect based on the laser training weapon is formed. The inverted solenoid valve weight ratio allows the user to lift the gun head to increase the weight and achieve the effect of simulated gun load-bearing strengthening training. It also independently forms a unique assembly structure for the laser training weapon.
[0015] Preferably, the gun head is close to the bottom of the sight, both the gun head and the sight are inserted into the left side of the internal slot, and the trigger handle is fixed to the bottom of the gun body slot.
[0016] The entire shell structure of the laser training weapon is formed by assembling the gun head, sight, internal slot, gun body slot, and trigger handle into a single unit, ensuring the proper placement of the internal proportional counterweight for the laser adjuster and solenoid valve device.
[0017] This invention provides a laser modulator based on a laser training weapon, which has the following beneficial effects:
[0018] This laser adjuster for a laser training weapon allows the installer to align the gun head with the sight on the left side of the internal slot, facilitating the connection between the internal slot and the gun body slot, and assembling the trigger handle to form the gun body structure. The core components, the laser adjuster and solenoid valve, are then placed in their respective internal and internal slots. Two wires connect the adjuster body and the connecting tube in series, forming the positive and negative circuits for laser adjustment, which are also connected to the integrated circuit board. The adjuster body provides protective enclosure within the internal slot. The solenoid tube, through the three-phase power cable of the integrated circuit board, conducts to the electromagnet core, creating the solenoid valve effect within the gun body. The solenoid tube is positioned on the left side of the gun body slot, and the electromagnet core on the right, forming a unique inverted structure, the opposite of conventional solenoid valve assembly. This ensures a balanced weight distribution between the gun body and the gun head, enhancing the training intensity for the user. Furthermore, the laser can be adjusted up, down, left, and right, allowing for flexibility in the assembly area and making mechanical adjustment of the laser adjuster more convenient. Attached Figure Description
[0019] Figure 1 This is a three-dimensional structural schematic diagram of a laser regulator based on a laser training weapon according to this utility model;
[0020] Figure 2 This is a three-dimensional structural diagram of the solenoid valve device of this utility model;
[0021] Figure 3 This is a three-dimensional detailed enlarged structural diagram of part A of a laser regulator based on a laser training weapon according to this utility model;
[0022] Figure 4 This is a three-dimensional enlarged structural diagram of part B of a laser regulator based on a laser training weapon according to this utility model.
[0023] In the diagram: 1. Gun head; 2. Sight; 3. Internal slot; 4. Laser adjuster; 5. Solenoid valve device; 6. Gun body slot; 7. Trigger handle; 41. Wire; 42. Adjuster body; 43. Terminal tube; 51. Solenoid tube; 52. Three-phase power cable; 53. Electromagnetic core; 54. Integrated circuit board. Detailed Implementation
[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0025] Please see Figures 1-4This utility model provides a laser adjuster based on a laser training weapon, including a gun head 1, a sight 2, and a trigger handle 7. The feature is that it also includes an internal slot 3, a laser adjuster 4, a solenoid valve device 5, and a gun body slot 6. The gun body slot 6 is fixedly provided on the right side of the internal slot 3 and the two are integrally formed. The laser adjuster 4 is installed inside the internal slot 3. The solenoid valve device 5 has a solenoid tube 51 on the left and an electromagnet core 53 on the right, both of which are installed inside the gun body slot 6.
[0026] Because existing laser training weapon rifle models often have an external laser adjuster with an external gun head and aiming sight, the adjuster is prone to wear and tear, reducing its service life. In addition, the internal solenoid valve structure has a right-side solenoid tube and a left-side solenoid core, which makes the trigger area of the gun body bulky, causing a serious imbalance in the weight distribution of the gun body and making mechanical adjustments for aiming and shooting inconvenient, thus limiting the laser beam line to a certain area.
[0027] It should be noted that the laser adjuster 4 and the solenoid valve device 5 are installed in the built-in slot 3 and then inserted into the gun body slot 6 to form a fixed position relationship structure. This is also a new electromagnetic adjustment assembly design structure for laser training weapons. It makes it easier to reduce the tilting of the gun body due to its light head and heavy tail, and the overall weight distribution of the gun is more balanced, making it easier to hold and use.
[0028] The gun head 1 is close to the bottom of the sight 2. Both the gun head 1 and the sight 2 are inserted into the left side of the built-in slot 3. The trigger handle 7 is fixed to the bottom of the gun body slot 6.
[0029] It should be noted that the entire shell structure of the laser training weapon is formed by assembling the gun head 1, sight 2, internal slot 3, gun body slot 6, and trigger handle 7 into a single unit, which ensures the effective placement of the internal proportional counterweight of the laser adjuster 4 and the solenoid valve device 5.
[0030] The installer aligns the gun head 1 with the sight 2 on the left side of the internal slot 3, facilitating the connection between the internal slot 3 and the gun body slot 6, and assembling the trigger handle 7 to form the gun body structure. Then, the core components, the laser adjuster 4 and the solenoid valve device 5, are placed in the internal slot 3 and gun body slot 6 respectively. Two series-connected adjuster bodies 42 and terminal tubes 43 are formed via wires 41, creating a positive and negative circuit for laser adjustment, which is also connected to the integrated circuit board 54. The adjuster body 42 provides protective enclosure within the internal slot 3. The solenoid tube 51, through the three-phase power cable 52 of the integrated circuit board 54, conducts to the electromagnet core 53, creating the solenoid valve effect within the gun body. The solenoid tube 51 is positioned on the left side of the gun body slot 6, and the electromagnet core 53 is on the right side, forming a unique inverted structure, the opposite of a conventional solenoid valve assembly. This ensures a balanced weight distribution between the gun body and the gun head 1, increasing the training intensity for the user. Furthermore, the laser can be adjusted up, down, left, and right, allowing for flexibility in the assembly area and making mechanical adjustment of the adjuster body 42 of the laser adjuster 4 more convenient.
[0031] Because existing laser training weapon long gun models often have an external laser adjuster with an external gun head and aiming sight, the adjuster is prone to wear and tear, reducing its service life.
[0032] Please see Figures 1-4 This utility model provides a laser regulator based on a laser training weapon. The laser regulator 4 is provided with a wire 41, a regulator body 42, and a connector tube 43. The wire 41 is installed on the right side of the regulator body 42 and is electrically connected to the regulator body 42. The connector tube 43 is inserted into the lower right corner of the regulator body 42.
[0033] It should be noted that the connection tube 43 also serves as another wire 41 to conduct the circuit inside the regulator body 42, thereby enabling the regulator body 42 to generate laser beams for focusing, aiming, shooting, and target practice through the input and output of the positive and negative ports.
[0034] The regulator body 42 is bolted to the built-in groove 3, and the connecting pipe 43 is installed on the left side of the solenoid valve device 5.
[0035] It should be noted that by connecting the connecting tube 43 to the connecting wire 41 on the left side of the solenoid valve device 5, the positive and negative ports of the regulator body 42 are input and output to generate a laser beam for focusing, aiming, shooting, and target shooting operations. The regulator body 42 is also assembled and positioned in the built-in slot 3, which also forms an independent and unique structure.
[0036] The installer connects the laser adjustment positive and negative circuits formed by the two-wire series adjustment body 42 and the terminal tube 43 of the wire 41 to the integrated circuit board 54. The adjustment body 42 is encased in the built-in slot 3 for protection. The laser can be adjusted up, down, left and right, with room for movement and changes in the assembly area, making the mechanical adjustment of the adjustment body 42 of the gun body laser adjuster 4 more convenient.
[0037] Because the solenoid valve structure inside the gun body has a solenoid tube on the right and an electromagnet core on the left, the trigger area of the gun body appears bulky, resulting in a serious imbalance in the weight distribution of the gun body and inconvenience in mechanical adjustment for aiming and shooting, as well as defects in framing the laser beam in a certain area.
[0038] Please see Figures 1-4 This utility model provides a laser regulator based on a laser training weapon. The electromagnetic valve device 5 is equipped with an electromagnetic tube 51, a three-phase power cable 52, an electromagnet core 53, and an integrated circuit board 54. The left end of the three-phase power cable 52 is installed at the upper right corner of the electromagnetic tube 51, and the right end of the three-phase power cable 52 is inserted into the top surface of the integrated circuit board 54. The electromagnet core 53 is embedded in the right side of the electromagnetic tube 51. The electromagnetic tube 51 is electrically connected to the integrated circuit board 54 through the three-phase power cable 52.
[0039] It should be noted that the series circuit, with the solenoid tube 51 to the left and the electromagnet core 53 to the right, is connected to the integrated circuit board 54 via the three-phase power cable 52, forming a central control solenoid valve effect based on the laser training weapon. The inverted solenoid valve weight ratio allows the user to lift the gun head to increase the weight and achieve the effect of simulated gun load-bearing strengthening training. It also independently forms a unique assembly structure for the laser training weapon.
[0040] The solenoid tube 51 and the electromagnet core 53 are respectively inserted into the left and right sides of the gun body groove 6, and the integrated circuit board 54 is horizontally inserted into the top surface of the trigger handle 7.
[0041] It should be noted that by using the solenoid tube 51 on the left side of the gun body slot 6 and the electromagnet core 53 on the right side of the gun body slot 6, a central control solenoid valve effect based on the laser training weapon is formed. The inverted solenoid valve counterweight ratio allows the user to lift the gun head to increase the weight and achieve the effect of simulated gun load-bearing strengthening training. It also independently forms a unique assembly structure for the laser training weapon.
[0042] The installer aligns the gun head 1 with the sight 2 on the left side of the internal slot 3, facilitating the connection between the internal slot 3 and the gun body slot 6 and trigger handle 7 to assemble the gun body structure. Then, the core components, the laser adjuster 4 and the solenoid valve device 5, are placed in the internal slot 3 and gun body slot 6 respectively. The solenoid valve operates within the gun body by connecting the solenoid tube 51 to the three-phase power cable 52 of the integrated circuit board 54 via the electromagnet core 53. The solenoid tube 51 is positioned on the left side of the gun body slot 6, and the electromagnet core 53 is on the right side, creating a unique inverted structure that contrasts with conventional solenoid valve assembly. This ensures a balanced weight distribution between the gun body and the gun head 1 and enhances the user's training intensity. Furthermore, the laser can be adjusted up, down, left, and right, allowing for flexibility in the assembly area and making mechanical adjustment of the laser adjuster 42 more convenient.
[0043] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any changes or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this application should be included within the scope of protection of this application.
Claims
1. A laser adjuster based on a laser training weapon, comprising a gun head (1), a sight (2), and a trigger handle (7), characterized in that: It also includes a built-in slot (3), a laser regulator (4), a solenoid valve device (5), and a gun body slot (6). The gun body slot (6) is fixed on the right side of the built-in slot (3) and the two are integrally formed. The laser regulator (4) is installed inside the built-in slot (3). The solenoid valve device (5) has a solenoid tube (51) on the left and an electromagnet core (53) on the right, both of which are installed inside the gun body slot (6).
2. The laser modulator based on a laser training weapon according to claim 1, characterized in that: The laser modulator (4) is provided with a wire (41), a modulator body (42), and a connector tube (43). The wire (41) is installed on the right side of the modulator body (42) and is electrically connected to the modulator body (42). The connector tube (43) is inserted into the lower right corner of the modulator body (42).
3. A laser modulator based on a laser training weapon according to claim 1, characterized in that: The solenoid valve device (5) is provided with a solenoid tube (51), a three-phase power cable (52), an electromagnet core (53), and an integrated circuit board (54). The left end of the three-phase power cable (52) is installed at the upper right corner of the solenoid tube (51), and the right end of the three-phase power cable (52) is inserted into the top surface of the integrated circuit board (54). The electromagnet core (53) is inserted into the right side of the solenoid tube (51). The solenoid tube (51) is electrically connected to the integrated circuit board (54) through the three-phase power cable (52).
4. A laser modulator based on a laser training weapon according to claim 2, characterized in that: The regulator body (42) is bolted to the built-in groove (3), and the connecting pipe (43) is installed on the left side of the solenoid valve device (5).
5. A laser modulator based on a laser training weapon according to claim 3, characterized in that: The solenoid tube (51) and the electromagnet core (53) are respectively inserted into the left and right sides of the gun body groove (6), and the integrated circuit board (54) is horizontally inserted into the top surface of the trigger handle (7).
6. A laser modulator based on a laser training weapon according to claim 1, characterized in that: The gun head (1) is close to the bottom of the sight (2), and both the gun head (1) and the sight (2) are inserted into the left side of the built-in slot (3). The trigger handle (7) is fixed to the bottom of the gun body slot (6).