Visual laser targeting module

By combining a multi-layered shell structure with biological composite fluorescent reagents, the performance limitations of the visualization laser targeting module in high-power requirements and complex environments were solved, achieving high-precision positioning and non-destructive visualization, and improving the environmental adaptability of laser equipment and the accuracy of sample extraction.

CN223966456UActive Publication Date: 2026-03-03SHENZHEN JIUTIANXING TECH DEV CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-04
Publication Date
2026-03-03

AI Technical Summary

Technical Problem

Existing visual laser targeting modules have limited performance under high power requirements and special environments, and have poor environmental adaptability, failing to meet all application needs.

Method used

A visualization laser targeting module with a multi-layer shell structure was designed, integrating components such as a laser targeting E-shell, heat sink, cooling fan, laser, display panel, keypad, and sensor panel. Combined with biological composite fluorescent reagents, it achieves efficient concentration of laser energy and fluorescence display, enhancing environmental adaptability and positioning accuracy.

Benefits of technology

It achieves high-precision positioning and non-destructive visualization of laser energy, improves penetration ability in high-reflectivity materials and deep tissues, enhances the effect of use in complex environments, and improves the accuracy and clarity of sample extraction.

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Abstract

The utility model relates to the technical field of laser equipment, in particular to a visual laser targeting module which comprises a laser targeting E shell, and a display screen plate and a laser targeting lampshade are sequentially installed on the laser targeting E shell. The laser targeting E shell is provided with a laser targeting radiator, and the laser targeting radiator is provided with a cooling fan and a laser; a key board and keys are further sequentially mounted on the laser targeting E shell, a laser targeting screen lens is mounted on the key board, and a sensor board and a laser targeting kit connector cover are further mounted on the laser targeting E shell; the laser targeting E shell is further provided with a laser targeting D shell, and the laser targeting D shell is provided with a positioning bead. According to the visual laser targeting module provided by the utility model, the laser light source is pure and is matched with a special reagent to carry out fluorescence reaction with a detected material, and other irrelevant light sources are filtered out through a specific color filter, so that the accuracy and definition of extracting the detected material are greatly improved.
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Description

Technical Field

[0001] This utility model relates to the field of laser equipment technology, and in particular to a visual laser targeting module. Background Technology

[0002] Visual laser targeting technology combines the high precision of lasers with the advantages of fluorescence visualization, and is widely used in fields such as physical evidence collection and biomedicine.

[0003] Existing visual laser targeting modules still have some problems. First, technical limitations: under certain high-power requirements or special application scenarios, the power and energy density of the laser are still limited and cannot meet all needs. Second, environmental adaptability: laser equipment may be interfered with in specific environments, such as the penetration ability in highly reflective materials or deep tissues, which affects the use effect. Therefore, a visual laser targeting module is needed to solve the above problems. Utility Model Content

[0004] The purpose of this utility model embodiment is to provide a visual laser targeting module, which aims to solve the problems mentioned in the background art.

[0005] This utility model embodiment is implemented as follows: a visual laser targeting module includes: a laser targeting E-shell, on which a display panel and a laser targeting lamp cover are sequentially mounted; a laser targeting heat sink is mounted on the laser targeting E-shell, on which a cooling fan and a laser are mounted; a keypad and buttons are also sequentially mounted on the laser targeting E-shell, on which a laser targeting screen lens is mounted; a sensor board and a laser targeting reagent kit connector cover are also mounted on the laser targeting E-shell; and a laser targeting D-shell is also mounted on the laser targeting E-shell, on which a positioning bead is mounted.

[0006] Preferably, a laser targeting rotating disk is mounted on the laser targeting D shell, and an ultra-wide bearing and a laser targeting sticker A are sequentially mounted on the laser targeting rotating disk; a laser targeting B shell is also mounted on the laser targeting D shell, and a drive board is mounted on the laser targeting B shell; a laser targeting A shell is also mounted on the laser targeting B shell, and a first contact plate is mounted on the laser targeting A shell; a laser targeting C shell is also mounted on the laser targeting A shell, and a laser targeting sticker B is mounted on the laser targeting C shell.

[0007] Preferably, a targeting reagent kit A is installed on the laser targeting shell D, an atomizing plate and a second contact plate are installed on the targeting reagent kit A, and a laser targeting reagent kit B is also installed on the laser targeting reagent kit A; a targeting reagent metal head is also installed on the laser targeting reagent metal head, a laser targeting reagent sticker B is installed on the targeting reagent metal head, and a laser targeting reagent sticker A is also installed on the laser targeting reagent kit A; a side light plate is installed on the laser targeting shell E.

[0008] Beneficial effects:

[0009] Laser targeting: Utilizing the high brightness, linearity, and coherence of laser beams, laser energy is concentrated on a tiny target to achieve high-precision measurement and positioning. Laser targets are typically made of highly reflective materials, and the position, shape, or motion of the target is calculated by measuring the absorbed, reflected, or scattered laser energy.

[0010] Fluorescent development: A biological composite fluorescent reagent is atomized into ultrafine particles and uniformly adhered to the biological traces on the evidence. After irradiation with a laser excitation source, focused induced luminescence occurs, thereby revealing and locating difficult-to-identify biological traces. This method allows for non-destructive development, meaning it does not damage the DNA sample or affect DNA extraction.

[0011] The laser light source is pure and is not easily interfered with by other light sources during actual use. When used with special reagents, it reacts with the sample to produce fluorescence. After filtering out other irrelevant light sources through a specific color filter, it greatly improves the accuracy and clarity of sample extraction. The overall structure is very compact and small, making it easy to carry and use. Attached Figure Description

[0012] Figure 1 A schematic diagram of the overall laser targeting module for visualization.

[0013] Figure 2 This is an exploded view of the laser targeting module for visualization.

[0014] In the attached diagram: 1-Laser Targeting Reagent Kit B box, 2-Laser Targeting Reagent Kit sticker A, 3-Laser Targeting Reagent Kit A box, 4-Targeting Reagent Kit metal head, 5-Laser Targeting sticker B, 6-Laser Targeting C shell, 7-First contact plate, 8-Laser Targeting A shell, 9-Laser Targeting B shell, 10-Laser Targeting rotating disk, 11-Laser Targeting sticker A, 12-Laser Targeting D shell, 13-Cooling fan, 14-Laser, 15-Laser Targeting heat sink, 16-Button board, 17-Display panel, 18-Laser Targeting lamp cover, 19-Laser Targeting E shell, 20-Side light panel, 21-Atomizing sheet, 22-Second contact plate, 23-Laser Targeting Reagent Kit sticker B, 24-Drive board, 25-Ultra-wide bearing, 26-Positioning bead, 27-Laser Targeting Reagent Kit connector cover, 28-Sensor board, 29-Button, 30-Laser Targeting screen lens. Detailed Implementation

[0015] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and do not limit the present utility model.

[0016] The specific implementation of this utility model will be described in detail below with reference to specific embodiments.

[0017] Please see Figure 1 and Figure 2 This utility model provides a visual laser targeting module, which includes:

[0018] The laser targeting E-shell 19 is equipped with a display panel 17 and a laser targeting lamp cover 18, which are sequentially mounted on the laser targeting E-shell 19. A laser targeting heat sink 15 is also mounted on the laser targeting heat sink 15, which is equipped with a cooling fan 13 and a laser 14. A keypad 16 and a key 29 are also sequentially mounted on the laser targeting E-shell 19. A laser targeting screen lens 30 is mounted on the keypad 16. A sensor board 28 and a laser targeting reagent kit connector cover 27 are also mounted on the laser targeting E-shell 19. A laser targeting D-shell 12 is also mounted on the laser targeting E-shell 19, and a positioning bead 26 is mounted on the laser targeting D-shell 12.

[0019] In this embodiment, the display panel 17 and the laser targeting lamp cover 18 are sequentially mounted on the laser targeting E-shell 19; the cooling fan 13 and the laser 14 are mounted on the laser targeting heat sink 15, and the laser targeting heat sink 15 is mounted on the laser targeting E-shell 19; the button panel 16 and the button 29 are sequentially mounted on the laser targeting E-shell 19; the laser targeting screen lens 30 is mounted on the button panel 16; the sensor panel 28 and the laser targeting reagent kit connector cover 27 are mounted on the laser targeting E-shell 19; the laser targeting D-shell 12 is mounted on the laser targeting E-shell 19; and the positioning bead 26 is mounted on the laser targeting D-shell 12.

[0020] like Figure 1 and Figure 2 As shown, in a preferred embodiment of this utility model, a laser targeting rotating disk 10 is installed on the laser targeting D-shell 12, and an ultra-wide bearing 25 and a laser targeting sticker A11 are sequentially installed on the laser targeting rotating disk 10; a laser targeting B-shell 9 is also installed on the laser targeting D-shell 12, and a drive plate 24 is installed on the laser targeting B-shell 9; a laser targeting A-shell 8 is also installed on the laser targeting B-shell 9, and a first contact plate 7 is installed on the laser targeting A-shell 8; a laser targeting C-shell 6 is also installed on the laser targeting A-shell 8, and a laser targeting sticker B5 is installed on the laser targeting C-shell 6.

[0021] The ultra-wide bearing 25 and the laser targeting sticker A11 are sequentially mounted on the laser targeting rotating disk 10. The laser targeting rotating disk 10 is then mounted on the laser targeting D shell 12. The laser targeting B shell 9 is mounted on the laser targeting D shell 12, and the drive board 24 is mounted on the laser targeting B shell 9. The laser targeting A shell 8 is mounted on the laser targeting B shell 9, and the first contact plate 7 is mounted on the laser targeting A shell 8. The laser targeting C shell 6 is mounted on the laser targeting A shell 8, and the laser targeting sticker B5 is mounted on the laser targeting C shell 6.

[0022] like Figure 1 and Figure 2 As shown, in a preferred embodiment of this utility model, a laser targeting reagent kit A box 3 is installed on the laser targeting D shell 12, an atomizing plate 21 and a second contact plate 22 are installed on the laser targeting reagent kit A box 3, and a laser targeting reagent kit B box 1 is also installed on the laser targeting reagent kit A box 3; a targeting reagent kit metal head 4 is also installed on the laser targeting reagent kit metal head 4, a laser targeting reagent kit sticker B23 is installed on the targeting reagent kit metal head 4, a laser targeting reagent kit sticker A2 is also installed on the laser targeting reagent kit A box 3, and a side light plate 20 is installed on the laser targeting E shell 19.

[0023] Install the atomizing plate 21 and the second contact plate 22 onto the laser targeting reagent kit A box 3, install the laser targeting reagent kit B box 1 onto the laser targeting reagent kit A box 3; install the targeting reagent kit metal head 4 onto the laser targeting reagent kit A box 3, install the laser targeting reagent kit sticker B23 onto the targeting reagent kit metal head 4, install the laser targeting reagent kit sticker A2 onto the laser targeting reagent kit A box 3, and install the side light plate 20 onto the laser targeting E shell 19.

[0024] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A visual laser targeting module comprising a laser targeting E-housing, characterized in that, The laser targeting E shell is sequentially provided with a display screen plate and a laser targeting lampshade. The laser targeting E shell is provided with a laser targeting heat sink, and the laser targeting heat sink is provided with a heat dissipation fan and a laser. The laser targeting E shell is further sequentially provided with a key plate and a key, and the key plate is provided with a laser targeting screen lens. The laser targeting E shell is further provided with a laser targeting D shell, and the laser targeting D shell is provided with a positioning bead.

2. The visual laser targeting module of claim 1, wherein, The laser targeting D shell is provided with a laser targeting rotating disc, and the laser targeting rotating disc is sequentially provided with an ultra-wide bearing and a laser targeting sticker A. The laser targeting D shell is further provided with a laser targeting B shell, and the laser targeting B shell is provided with a driving plate. The laser targeting B shell is further provided with a laser targeting A shell, and the laser targeting A shell is provided with a first contact plate. The laser targeting A shell is further provided with a laser targeting C shell, and the laser targeting C shell is provided with a laser targeting sticker B.

3. The visual laser targeting module of claim 2, wherein, The laser targeting D shell is provided with a targeting reagent box A, and the targeting reagent box A is provided with an atomization piece and a second contact plate. The laser targeting reagent box A is further provided with a targeting reagent box metal head, and the targeting reagent box metal head is provided with a laser targeting reagent box sticker B. The laser targeting reagent box A is further provided with a laser targeting reagent box sticker A, and the laser targeting E shell is provided with a side light plate.