A high-resolution infrared wavelength projection lens set

Through the multiple card embedded installation and buffer protection system, the problem of inconvenient maintenance and easy damage of the lens group is solved, and a convenient maintenance and high-strength lens group design is achieved, which extends the service life.

CN119200306BActive Publication Date: 2025-09-23DONGGUAN JINGCAI OPTICS CO LTD
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Patent Information

Application Number
CN202411476834.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-10-22
Publication Date
2025-09-23
Estimated Expiration
2044-10-22

AI Technical Summary

Technical Problem

The existing high-resolution infrared wavelength projection lens assembly is fixedly installed during use, which makes maintenance and replacement inconvenient, and lacks sufficient protection, making it easy to be damaged and shortening its service life.

Method used

It adopts a multi-card embedded installation structure, combined with an outer shield and a buffer protection system, including an outer frame, an inner frame, a buffer spring, a protective airbag and an arc-shaped metal shrapnel, to enhance the convenience of lens disassembly and maintenance and the protective performance.

Benefits of technology

The lens can be easily disassembled and replaced, which improves work efficiency. The multi-layer protection enhances the lens's shock and drop resistance, extending its service life.

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Abstract

The present invention discloses a high-resolution infrared wavelength projection lens group, comprising a mounting shell, a combined lens seat mounted inside the mounting shell, an outer protective cover mounted outside the mounting shell, the combined lens seat comprising a positioning frame, a first projection lens arranged at the top of the inner side of the positioning frame, a second projection lens arranged at the top of the first projection lens, a third projection lens arranged at the bottom of the inner wall of the positioning frame, a fourth projection lens arranged at the bottom of the third projection lens, and a filter arranged at the bottom of the fourth projection lens, the outer protective cover comprising an outer protective frame, an inner protective frame arranged inside the outer protective frame, and a buffer spring connected between the outer protective frame and the inner protective frame. The present invention provides a high-resolution infrared wavelength projection lens group, wherein the entire lens adopts a multi-clip embedded installation, which facilitates the maintenance and replacement of the lens, is easy to use, improves work efficiency, is shock-resistant and drop-resistant, is not easily damaged by impact, has high use strength, and extends service life.
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Description

Technical Field

[0001] The present invention relates to the field of infrared wavelength projection lens groups, in particular to a high-resolution infrared wavelength projection lens group. Background Art

[0002] Infrared projection technology has a wide range of applications in military reconnaissance, night driving assistance, thermal imaging monitoring and other fields. An infrared wavelength projection lens group is a projection lens group specially designed for the infrared band. It is usually composed of multiple lenses and is designed to optimize the imaging quality and performance of the infrared band. This lens group is mainly used in infrared imaging systems, such as thermal imagers, night vision devices, etc., and can provide high resolution and good sensing functions within the infrared spectrum. The design of an infrared wavelength projection lens group usually includes multiple lenses, each lens has specific optical properties. For example, the surface curvature, material and coating of the lens will affect the performance of the lens group. Common lens combinations include three-piece and four-piece structures, in which each lens is responsible for correcting different aberrations, such as spherical aberration and chromatic aberration, to ensure the imaging quality of the entire system.

[0003] Existing Chinese patent application number CN201711119772.7 discloses a three-piece infrared single-wavelength projection lens assembly comprising, from the imaging side to the image source side, a first lens with positive refractive power; a second lens with refractive power; a third lens with positive refractive power; and an aperture positioned in front of the image source side surface of the first lens or between the image source side surface of the first lens and the image source side surface of the second lens. Either the first lens or the second lens is made of glass. This results in a three-piece infrared single-wavelength projection lens assembly with superior image sensing capabilities.

[0004] Existing Chinese patent application number CN201711119764.2 discloses a two-piece infrared single-wavelength projection lens assembly comprising, from the imaging side to the image source side, the following components: a first lens having positive refractive power, its imaging-side surface being convex near the optical axis, its image source-side surface being concave near the optical axis, and at least one of its imaging-side and image source-side surfaces being aspherical; a second lens having positive refractive power, its imaging-side surface being concave near the optical axis, its image source-side surface being convex near the optical axis, and at least one of its imaging-side and image source-side surfaces being aspherical; and an aperture disposed in front of the image source-side surface of the first lens or between the image source-side surface of the first lens and the imaging-side surface of the second lens. This achieves a two-piece infrared single-wavelength projection lens assembly with superior image sensing capabilities.

[0005] During use, the above-disclosed high-resolution infrared wavelength projection lens assembly is fixedly installed inside a lens housing. Subsequently, the lenses are fixed, making it inconvenient to disassemble, repair, and replace them, thereby reducing the work efficiency of relevant personnel. In addition, the lenses lack adequate protection during use, and the lens assembly is easily damaged when it encounters knocks and collisions, thereby rendering the entire high-resolution infrared wavelength projection lens assembly unusable. Its use intensity is far from meeting the requirements, shortening the service life of the equipment. Summary of the Invention

[0006] The object of the present invention is to provide a high-resolution infrared wavelength projection lens group to solve the problem that the high-resolution infrared wavelength projection lens group proposed in the above background technology is that during use, each lens is fixedly installed inside a lens shell. Subsequently, each lens is fixed, which is inconvenient to disassemble, repair and replace, thereby reducing the work efficiency of relevant personnel. In addition, during use, each lens lacks sufficient protection, and the lens group is easily damaged when it encounters bumps and collisions, thereby making the entire high-resolution infrared wavelength projection lens group unusable. Its usage strength is far from meeting the requirements, shortening the service life of the equipment.

[0007] To achieve the above-mentioned object, the present invention provides the following technical solution: a high-resolution infrared wavelength projection lens group, comprising a mounting shell, a combined lens seat is mounted inside the mounting shell, an outer shield is provided on the outside of the mounting shell, the combined lens seat comprises a positioning frame, a first projection lens arranged at the top of the inner side of the positioning frame, a second projection lens arranged at the top of the first projection lens, a third projection lens arranged at the bottom of the inner wall of the positioning frame, a fourth projection lens arranged at the bottom of the third projection lens, and a filter arranged at the bottom of the fourth projection lens, positioning slots are provided on both sides of the inner wall of the mounting shell, positioning blocks are fixedly connected to both sides of the positioning frame, the positioning blocks are engaged with the positioning slots, and the The corners of the top of the positioning frame are fixedly connected with a pull rod, and the top of the pull rod is fixedly connected with a lifting block. The outer protective cover includes an outer protective frame, an inner protective frame arranged inside the outer protective frame, and a buffer spring connected between the outer and inner protective frames. A clamping frame is connected between both sides of the inner wall of the outer protective frame and both sides of the outer wall of the inner protective frame. A protective airbag is installed in the middle of the clamping frame. Several reinforcement columns are connected to the middle of the front of the outer protective cover and the middle of the back of the outer protective cover. Several arc-shaped metal springs are connected to the middle of the reinforcement columns. Several side block mechanisms are connected to both sides of the outer protective cover. The side block mechanism includes a plastic plate, a rubber pad connected to one side of the plastic plate, and several buffer protrusions arranged on one side of the rubber pad.

[0008] Preferably, connecting pieces are connected between the first projection lens and the second projection lens, between the third projection lens and the fourth projection lens, and between the fourth projection lens and the filter; the surfaces of the first projection lens, the second projection lens, the third projection lens, and the fourth projection lens are connected with corrosion-resistant films; and the first projection lens, the second projection lens, the third projection lens, and the fourth projection lens are all snap-fitted to the inside of the positioning frame; the tops of both sides of the mounting shell are fixedly connected with fixing plates, and the middle of the fixing plates is provided with fixing holes.

[0009] Preferably, one side of the bottom of the combined lens seat is hinged with a bottom-sealed light-transmitting plate, and one side of the top of the combined lens seat is hinged with a top-sealed light-transmitting plate. One side of the bottom-sealed light-transmitting plate and one side of the top-sealed light-transmitting plate are both connected to a limiting plate, and the middle part of the limiting plate is threadedly connected to a limiting bolt, and the limiting bolt is threadedly connected to the surface of the positioning frame. When disassembling and replacing the first projection lens, the second projection lens, the third projection lens and the fourth projection lens inside are pulled out, and then the combined lens seat is lifted upward by the pull rod and the lifting block, and then the combined lens seat is moved as a whole to the outside of the mounting shell, and then the bottom-sealed light-transmitting plates and the top-sealed light-transmitting plates at the top and bottom of the combined lens seat are opened, and then the first projection lens, the second projection lens, the third projection lens, the fourth projection lens and the filter inside the positioning frame can be removed from the inside of the positioning frame.

[0010] Preferably, the top of the positioning slot is clamped with a limiting block, and the top of the limiting block is fixedly connected to the limiting plate. Several of the reinforcement columns are evenly distributed, and the outer side of the reinforcement column is connected to an outer cotton sleeve. The arc-shaped metal spring is arranged on the outer side of the reinforcement column, and the limiting plate is in contact with the top of the mounting shell, and the limiting plate is at the top of the positioning slot. The outer shield protects each lens through the outer protective frame, the inner protective frame and the buffer spring, and improves the buffer protection effect through the protective airbag. The front and back of the outer shield are provided with arc-shaped metal springs and side block mechanisms to improve the outer side drop resistance of the outer shield, and improve the anti-collision performance of the outer shield under the outer protection of the side block mechanism, thereby enhancing the protection effect of the outer shield.

[0011] Compared with the prior art, the present invention has the following beneficial effects:

[0012] When the first, second, third and fourth projection lenses need to be disassembled and replaced during use, the limiting block inside the positioning slot is pulled out, and the combined lens seat is pulled upward by the pull rod and the lifting block, and the combined lens seat is moved as a whole to the outside of the mounting shell, and the bottom sealing light-transmitting plate and the top sealing light-transmitting plate at the top and bottom of the combined lens seat are opened, and then the first, second, third and fourth projection lenses and the filter inside the positioning frame can be removed from the positioning frame, and then new lenses can be replaced. The entire lens adopts a multi-card embedded installation, which is convenient for lens maintenance and replacement, easy to use, and improves work efficiency.

[0013] The first projection lens, the second projection lens, the third projection lens, the fourth projection lens and the filter are installed on the inner side of the positioning frame, and the outer side of the positioning frame is connected to the outer side of the positioning frame. The outer shield protects each lens through the outer shield, the inner shield and the buffer spring, and improves the buffer protection effect through the protective airbag. Arc-shaped metal shrapnel and side block mechanism are set on the front and back of the outer shield to improve the outer side drop resistance of the outer shield, and improve the anti-collision performance of the outer shield under the outer protection of the side block mechanism, thereby enhancing the protection effect of the outer shield, the lens is not easily damaged, and the protective performance of the entire lens group is greatly improved. It is shock-resistant and drop-resistant, the lenses are not easily damaged by impact, the use intensity is high, and the service life is extended. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is a structural schematic diagram of the present invention;

[0015] Figure 2 A structural diagram of the combined lens holder of the present invention;

[0016] Figure 3 This is an enlarged structural diagram of the present invention A;

[0017] Figure 4 It is an enlarged view of B of the present invention;

[0018] Figure 5 A top view of the outer shield of the present invention;

[0019] Figure 6 This is a structural diagram of the side stop mechanism of the present invention;

[0020] Figure 7 This is a diagram of the outer connection structure of the reinforcement column of the present invention.

[0021] In the figure: 1. Mounting shell; 2. Outer protective cover; 3. Combined lens seat; 4. Fixing plate; 5. Fixing hole; 6. Positioning frame; 7. First projection lens; 8. Second projection lens; 9. Third projection lens; 10. Fourth projection lens; 11. Filter; 12. Connecting piece; 13. Pull rod; 14. Positioning slot; 15. Limit block; 16. Limit plate; 17. Pull block; 18. Positioning block; 19. Reinforcement column; 20. Arc-shaped metal spring; 21. Side block mechanism; 22. Outer protective frame; 23. Inner protective frame; 24. Buffer spring; 25. Clamp frame; 26. Protective airbag; 27. Plastic plate; 28. Rubber pad; 29. ​​Buffer bump; 30. Bottom seal light-transmitting plate; 31. Top seal light-transmitting plate; 32. Limiting piece; 33. Limiting bolt; 34. Corrosion-resistant film; 35. Outer cotton sleeve. DETAILED DESCRIPTION

[0022] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0023] See also Figure 1-7 The present invention provides a high-resolution infrared wavelength projection lens assembly, including a mounting shell 1, a combined lens seat 3 is mounted inside the mounting shell 1, an outer protective cover 2 is provided on the outside of the mounting shell 1, the combined lens seat 3 includes a positioning frame 6, a first projection lens 7 arranged at the top of the inner side of the positioning frame 6, a second projection lens 8 arranged on the top of the first projection lens 7, a third projection lens 9 arranged at the bottom of the inner wall of the positioning frame 6, a fourth projection lens 10 arranged at the bottom of the third projection lens 9, and a filter 11 arranged at the bottom of the fourth projection lens 10, positioning slots 14 are provided on both sides of the inner wall of the mounting shell 1, positioning blocks 18 are fixedly connected to both sides of the positioning frame 6, the positioning blocks 18 are engaged with the positioning slots 14, and the corners of the top of the positioning frame 6 are fixedly connected to pull rods 1 3. The top of the pull rod 13 is fixedly connected with a lifting block 17. The outer protective cover 2 includes an outer protective frame 22, an inner protective frame 23 arranged inside the outer protective frame 22, and a buffer spring 24 connected between the outer protective frame 22 and the inner protective frame 23. Clamping frames 25 are connected between the two sides of the inner wall of the outer protective frame 22 and the two sides of the outer wall of the inner protective frame 23. A protective airbag 26 is installed in the middle of the clamping frame 25. A plurality of reinforcing columns 19 are connected to the middle of the front of the outer protective cover 2 and the middle of the back of the outer protective cover 2. A plurality of arc-shaped metal springs 20 are connected to the middle of the reinforcing columns 19. A plurality of side blocking mechanisms 21 are connected to both sides of the outer protective cover 2. The side blocking mechanisms 21 include a plastic plate 27, a rubber pad 28 connected to one side of the plastic plate 27, and a plurality of buffering protrusions 29 provided on one side of the rubber pad 28.

[0024] In this embodiment, the first projection lens 7 is made of a high-transmittance infrared material, with a convex front surface and a concave rear surface, for initially focusing the infrared light and reducing chromatic aberration. The second projection lens 8 is made of a low-dispersion infrared material, with a concave front surface and a convex rear surface, for further focusing the infrared light and correcting chromatic aberration. The third projection lens 9 is made of a high-refractive-index infrared material, with a convex front surface and a flat or slightly concave rear surface, for enhancing the focusing effect of the infrared light and improving the resolution. The fourth projection lens 10 is made of an infrared material with a special coating process, with both its front and rear surfaces aspherical, for correcting distortion and improving image quality. The filter 11 is located at the rear end of the lens group and is used to filter out light of non-infrared wavelengths, thereby improving the purity and contrast of the infrared projection.

[0025] See Figure 1-7 Connecting pieces 12 are connected between the first projection lens 7 and the second projection lens 8, between the third projection lens 9 and the fourth projection lens 10, and between the fourth projection lens 10 and the filter 11. Anti-corrosion films 34 are connected to the surfaces of the first projection lens 7, the second projection lens 8, the third projection lens 9, and the fourth projection lens 10. The first projection lens 7, the second projection lens 8, the third projection lens 9, and the fourth projection lens 10 are all snap-fitted to the interior of the positioning frame 6. Fixing plates 4 are fixedly connected to the tops of both sides of the mounting housing 1, and fixing holes 5 are provided in the middle of the fixing plates 4.

[0026] In this embodiment, during use, the entire mounting shell 1 is installed to the position where the lens group needs to be installed. When the first projection lens 7, the second projection lens 8, the third projection lens 9 and the fourth projection lens 10 inside need to be disassembled and replaced during use, the limiting block 15 inside the positioning slot 14 is pulled out, and then the combined lens seat 3 is pulled upward by the pull rod 13 and the lifting block 17, and then the combined lens seat 3 is moved as a whole to the outside of the mounting shell 1, and then the bottom sealing light-transmitting plate 30 and the top sealing light-transmitting plate 31 at the top and bottom of the combined lens seat 3 are opened, and then the first projection lens 7, the second projection lens 8, the third projection lens 9, the fourth projection lens 10 and the filter 11 inside the positioning frame 6 can be removed from the inside of the positioning frame 6, and then new lenses can be replaced. The entire lens adopts a multi-card embedded installation, which facilitates the maintenance and replacement of the lenses.

[0027] See Figure 1-7, one side of the bottom of the combined lens seat 3 is hinged with a bottom sealing light-transmitting plate 30, and one side of the top of the combined lens seat 3 is hinged with a top sealing light-transmitting plate 31. One side of the bottom sealing light-transmitting plate 30 and one side of the top sealing light-transmitting plate 31 are both connected to a limiting piece 32, and the middle part of the limiting piece 32 is threadedly connected to a limiting bolt 33. The limiting bolt 33 is threadedly connected to the surface of the positioning frame 6. The top of the positioning slot 14 is clamped with a limiting block 15, and the top of the limiting block 15 is fixedly connected to the limiting plate 16. Several reinforcement columns 19 are evenly distributed, and the outer side of the reinforcement column 19 is connected to an outer cotton sleeve 35. The arc-shaped metal spring 20 is arranged on the outer side of the reinforcement column 19. The limiting plate 16 contacts the top of the mounting shell 1, and the limiting plate 16 is at the top of the positioning slot 14;

[0028] In this embodiment, the first projection lens 7, the second projection lens 8, the third projection lens 9, the fourth projection lens 10 and the filter 11 are installed on the inner side of the positioning frame 6. The outer side of the positioning frame 6 is connected to the outer side of the outer protective cover 2. The outer protective cover 2 protects each lens through the outer protective frame 22, the inner protective frame 23 and the buffer spring 24, and improves the buffer protection effect through the protective airbag 26. The front and back sides of the outer protective cover 2 are provided with arc-shaped metal springs 20 and side block mechanisms 21 to improve the outer side drop resistance of the outer protective cover 2, and improve the anti-collision performance of the outer protective cover 2 under the outer protection of the side block mechanism 21. The side block mechanism 21 buffers the impact of the outside on both sides of the outer protective cover 2 through the plastic plate 27, the rubber pad 28 and the buffer protrusion 29, thereby reducing the impact force on the outer protective cover 2 and thereby reducing the impact force on the mounting shell 1.

[0029] When in use, the high-resolution infrared wavelength projection lens group of the present invention can be installed in the entire mounting shell 1 to the position where the lens group needs to be installed during use. When the first projection lens 7, the second projection lens 8, the third projection lens 9 and the fourth projection lens 10 inside need to be disassembled and replaced during use, the limiting block 15 inside the positioning slot 14 is pulled out, and then the combined lens seat 3 is pulled upward by the pull rod 13 and the lifting block 17, and then the combined lens seat 3 is moved as a whole to the outside of the mounting shell 1, and then the bottom sealing light-transmitting plate 30 and the top sealing light-transmitting plate 31 at the top and bottom of the combined lens seat 3 are opened, and then the first projection lens 7, the second projection lens 8, the third projection lens 9, the fourth projection lens 10 and the filter 11 inside the positioning frame 6 can be removed from the positioning frame 6, and then new lenses can be replaced. The entire lens adopts a multi-card embedded installation, which is convenient for lens maintenance and replacement, easy to use, and improves work efficiency.

[0030] In addition, during use, the first projection lens 7, the second projection lens 8, the third projection lens 9, the fourth projection lens 10 and the filter 11 are installed on the inner side of the positioning frame 6, and the outer side of the positioning frame 6 is connected to the outer side of the positioning frame 6. The outer protective cover 2 protects each lens through the outer protective frame 22, the inner protective frame 23 and the buffer spring 24, and improves the buffer protection effect through the protective airbag 26. The front and back of the outer protective cover 2 are provided with arc-shaped metal springs 20 and side block mechanisms 21 to improve the outer side drop resistance of the outer protective cover 2, and improve the anti-collision performance of the outer protective cover 2 under the outer protection of the side block mechanism 21, thereby enhancing the protection effect of the outer protective cover 2, making the first projection lens 7, the second projection lens 8, the third projection lens 9 and the fourth projection lens 10 not easily damaged, and the protective performance of the entire lens group is greatly improved, which is shock-resistant and drop-resistant, and the lenses are not easily damaged by impact. The use strength is high and the service life is extended.

[0031] Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments, or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A high-resolution infrared wavelength projection lens assembly, comprising a mounting housing (1), characterized in that: A combined lens seat (3) is installed inside the mounting shell (1), an outer protective cover (2) is provided on the outside of the mounting shell (1), the combined lens seat (3) comprises a positioning frame (6), a first projection lens (7) arranged at the top of the inner side of the positioning frame (6), a second projection lens (8) arranged at the top of the first projection lens (7), a third projection lens (9) arranged at the bottom of the inner wall of the positioning frame (6), a fourth projection lens (10) arranged at the bottom of the third projection lens (9), and a filter (11) arranged at the bottom of the fourth projection lens (10), positioning slots (14) are provided on both sides of the inner wall of the mounting shell (1), positioning blocks (18) are fixedly connected to both sides of the positioning frame (6), the positioning blocks (18) are clamped with the positioning slots (14), the corners of the top of the positioning frame (6) are fixedly connected to pull rods (13), the top of the pull rods (13) are fixedly connected to The lifting block (17) is provided, and the outer protective cover (2) comprises an outer protective frame (22), an inner protective frame (23) arranged inside the outer protective frame (22), and a buffer spring (24) connected between the outer protective frame (22) and the inner protective frame (23). A clamping frame (25) is connected between the two sides of the inner wall of the outer protective frame (22) and the two sides of the outer wall of the inner protective frame (23). A protective airbag (26) is installed in the middle of the clamping frame (25). The outer protective cover (2) is The middle of the front and the middle of the back of the outer shield (2) are both connected with a plurality of reinforcing columns (19), the middle of the reinforcing columns (19) are connected with a plurality of arc-shaped metal springs (20), and both sides of the outer shield (2) are both connected with a plurality of side blocking mechanisms (21), and the side blocking mechanisms (21) include a plastic plate (27), a rubber pad (28) connected to one side of the plastic plate (27), and a plurality of buffer protrusions (29) provided on one side of the rubber pad (28).

2. The high-resolution infrared wavelength projection lens assembly according to claim 1, characterized in that: Connecting pieces (12) are connected between the first projection lens (7) and the second projection lens (8), between the third projection lens (9) and the fourth projection lens (10), and between the fourth projection lens (10) and the filter (11).

3. The high-resolution infrared wavelength projection lens assembly according to claim 1, characterized in that: The surfaces of the first projection lens (7), the second projection lens (8), the third projection lens (9) and the fourth projection lens (10) are all connected with a corrosion-resistant film (34), and the first projection lens (7), the second projection lens (8), the third projection lens (9) and the fourth projection lens (10) are all snap-fitted to the interior of the positioning frame (6).

4. The high-resolution infrared wavelength projection lens assembly according to claim 1, characterized in that: The tops of both sides of the installation shell (1) are fixedly connected with fixing plates (4), and a fixing hole (5) is provided in the middle of the fixing plate (4).

5. The high-resolution infrared wavelength projection lens assembly according to claim 1, characterized in that: A bottom sealing light-transmitting plate (30) is hingedly connected to one side of the bottom of the combined lens seat (3), and a top sealing light-transmitting plate (31) is hingedly connected to one side of the top of the combined lens seat (3). One side of the bottom sealing light-transmitting plate (30) and one side of the top sealing light-transmitting plate (31) are both connected to a limiting plate (32). The middle part of the limiting plate (32) is threadedly connected to a limiting bolt (33), and the limiting bolt (33) is threadedly connected to the surface of the positioning frame (6).

6. The high-resolution infrared wavelength projection lens assembly according to claim 1, characterized in that: The top of the positioning slot (14) is clamped with a limiting block (15), and the top of the limiting block (15) is fixedly connected to a limiting plate (16).

7. The high-resolution infrared wavelength projection lens assembly according to claim 1, characterized in that: The plurality of reinforcement columns (19) are evenly distributed, the outer sides of the reinforcement columns (19) are connected with outer cotton sleeves (35), and the arc-shaped metal springs (20) are arranged on the outer sides of the reinforcement columns (19).

8. The high-resolution infrared wavelength projection lens assembly according to claim 6, characterized in that: The limiting plate (16) contacts the top end of the mounting shell (1), and the limiting plate (16) is located at the top end of the positioning slot (14).

Citation Information

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