Anti-scattering adapter for connecting camera lens and laser receiving end

By designing an anti-scattering adapter including a multi-diameter adapter plate and a main connection plate, the problem that the camera lens interface cannot be directly matched is solved, and efficient and stable connection between the camera lens and the cage coaxial optical device is achieved.

CN222896334UActive Publication Date: 2025-05-23NANJING COLLEGE OF INFORMATION TECH
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Patent Information

Application Number
CN202421242448.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-01
Publication Date
2025-05-23
Estimated Expiration
2034-06-01

AI Technical Summary

Technical Problem

In the prior art, the camera lens interface cannot be directly matched with the anti-scatter adapter, resulting in an inability to achieve efficient and stable connection, resulting in inconvenience in work.

Method used

An anti-scattering adapter is designed, including a camera forward connection port, a multi-diameter adapter plate, a main connection plate, a multi-diameter device adapter plate, a cage coaxial optical device and an installation structure. Through the connection of these components, efficient and stable connection between camera lenses of different diameters and cage coaxial optical devices is achieved.

Benefits of technology

It realizes efficient and stable connection between camera lenses of different diameters and cage coaxial optical devices, solving the problem of inconvenience caused by interface mismatch.

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Abstract

The utility model relates to the technical field of anti-scattering adapters, in particular to an anti-scattering adapter for connecting a camera lens and a laser receiving end. The problems that in the using process of a traditional anti-scattering adapter, a current camera lens interface cannot be directly matched with the traditional anti-scattering adapter, so that perfect adapter of the traditional anti-scattering adapter and the camera lens interface cannot be achieved, inconvenience is brought to work, and efficient and stable connection is inconvenient to achieve are solved. The utility model provides an anti-scattering adapter for connecting a camera lens and a laser receiving end. The anti-scattering adapter comprises a camera forward connecting port, a multi-aperture adapter plate, a main connecting plate, a multi-aperture device adapter plate, a cage type coaxial optical device, a first assembly, a second assembly and a connecting assembly, compared with a traditional anti-scattering adapter in the using process, the anti-scattering adapter is provided with the mounting structure and the connecting structure, brand new structural design is adopted, and convenient and stable butt joint can be achieved for a multi-aperture cage type structure optical device and a corresponding camera forward port.
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Description

Technical Field

[0001] The utility model relates to the technical field of anti-scatter adapters, and in particular to an anti-scatter adapter connecting a camera lens and a laser receiving end. Background Art

[0002] Compared with traditional optical receiving devices, cameras are much smaller in size and more portable. The cage coaxial systems launched by most optical machinery manufacturers have been widely used due to their modularity, miniaturization, and easy installation and adjustment, which also creates conditions for their adaptation with cameras. However, the current camera lens interfaces cannot directly match them, so the two cannot be perfectly transferred, which brings inconvenience to work. Utility Model Content

[0003] In order to overcome the problem that the current camera lens interfaces cannot be directly matched with the anti-scatter adapter during use, so that the two cannot be perfectly transferred, which brings inconvenience to the work and makes it difficult to achieve efficient and stable connection.

[0004] The technical solution of the utility model is: an anti-scatter adapter connecting a camera lens and a laser receiving end, comprising a camera forward connection port, a multi-aperture adapter plate, a main connection plate, a multi-aperture device adapter plate, a cage coaxial optical device, a first component, a second component and a connection component; a multi-aperture adapter plate is arranged on one side of the camera forward connection port, a main connection plate is arranged on one side of the multi-aperture adapter plate, a multi-aperture device adapter plate is arranged on one side of the main connection plate, a cage coaxial optical device is arranged on one side of the multi-aperture device adapter plate, a first component is arranged on the side wall of the camera forward connection port, a second component is arranged on the side wall of the main connection plate, and a connection component is arranged inside the multi-aperture adapter plate.

[0005] Preferably, the main connection plate, the multi-aperture adapter plate and the multi-aperture device adapter plate are designed based on the maximum aperture cage optical structure device and the corresponding common camera forward connection port. The cage coaxial optical device is connected to the corresponding multi-aperture device adapter plate by connecting the multi-aperture adapter plate adapted to the camera forward connection port, and then the main connection plate, the multi-aperture adapter plate and the multi-aperture device adapter plate are connected through the corresponding mounting holes, thereby realizing efficient and stable connection between camera lenses of different apertures and cage coaxial optical devices of different apertures.

[0006] Preferably, the first component includes a mounting column, a first clamp and a first light hole; a mounting column is arranged on the side wall of the camera forward connection port, and a plurality of mounting columns are arranged, a first clamp is arranged on the side wall of the camera forward connection port, and a first light hole is opened inside the camera forward connection port; the adapter can be installed and fixed by means of a plurality of mounting columns, thereby achieving a stable installation effect.

[0007] Preferably, the first component also includes a first card slot, a second card member and a first mounting hole; a first card slot is opened inside the multi-caliber adapter plate, the first card member is engaged and connected with the multi-caliber adapter plate through the first card slot, a second card member is arranged on the side wall of the multi-caliber adapter plate, a first mounting hole is opened on the side wall of the multi-caliber adapter plate, and a mounting column is arranged inside the first mounting hole; the mounting column is assembled with the first mounting hole, and the first card member is assembled with the first card slot, so that the camera forward connection port and the multi-caliber adapter plate can be firmly installed.

[0008] Preferably, the second component includes a second card slot, a third card member and a second mounting hole; a second card slot is provided on the side wall of the main connecting plate, the second card member is engaged and connected with the main connecting plate via the second card slot, a third card member is provided on the side wall of the main connecting plate, a second mounting hole is opened on the side wall of the main connecting plate, and a mounting column is provided inside the second mounting hole; the multi-caliber adapter plate and the main connecting plate can be firmly installed by assembling the mounting column with the second mounting hole and assembling the second card member with the second slot.

[0009] Preferably, the second component also includes a third card slot, a fourth card part and a third mounting hole; a third card slot is provided on the side wall of the multi-caliber device adapter plate, and the third card part is engaged and connected with the multi-caliber device adapter plate through the third card slot, a fourth card part is provided on the side wall of the multi-caliber device adapter plate, and a third mounting hole is provided on the side wall of the multi-caliber device adapter plate, and a mounting column is provided inside the third mounting hole; the main connecting plate and the multi-caliber device adapter plate can be firmly installed by assembling the mounting column with the third mounting hole and assembling with the third card part with the third slot.

[0010] Preferably, the connecting component includes a second light-through hole and a fourth mounting hole; a fourth mounting hole is provided on the side wall of the cage coaxial optical device, a mounting post is arranged inside the fourth mounting hole, and a second light-through hole is provided inside the cage coaxial optical device; the mounting post is assembled with the third mounting hole, so that the multi-aperture device adapter plate and the cage coaxial optical device can be firmly installed.

[0011] Preferably, the connecting assembly also includes connecting holes and connecting rods; connecting holes are opened on the side wall of the main connecting plate, and there are two groups of connecting holes, and connecting rods are arranged inside the connecting holes; by assembling multiple groups of connecting rods with connecting rods, the main connecting plate can be stably installed.

[0012] Beneficial effects of the utility model:

[0013] 1. Compared with the traditional anti-scatter adapter, the current camera lens interface cannot be directly matched with it during use, so that the two cannot be perfectly transferred, which brings inconvenience to the work, and it is inconvenient to achieve efficient and stable connection. The anti-scatter adapter sets the installation structure and the connection structure, and designs the main connection plate, the multi-aperture adapter plate and the multi-aperture device adapter plate based on the maximum aperture cage optical structure device and the corresponding common camera forward connection port. The multi-aperture adapter plate adapted to the camera forward connection port is connected, the cage coaxial optical device is connected to the adapted multi-aperture device adapter plate, and then the main connection plate, the multi-aperture adapter plate and the multi-aperture device adapter plate are connected through the corresponding mounting holes, so as to achieve efficient and stable connection between camera lenses of different apertures and cage coaxial optical devices of different apertures;

[0014] 2. Based on the maximum aperture cage optical structure device and the corresponding common camera forward connection port, design the main connection plate, multi-aperture adapter plate and multi-aperture device adapter plate. Connect the multi-aperture adapter plate adapted to the camera forward connection port, connect the cage coaxial optical device to the corresponding multi-aperture device adapter plate, and then connect the main connection plate, multi-aperture adapter plate and multi-aperture device adapter plate through the corresponding mounting holes to achieve efficient and stable connection between camera lenses of different apertures and cage coaxial optical devices of different apertures.

[0015] 3. By assembling the mounting column with the first mounting hole and the first clamping member with the first slot, the camera forward connection port and the multi-aperture adapter plate can be firmly mounted. By assembling the mounting column with the second mounting hole and the second clamping member with the second slot, the multi-aperture adapter plate and the main connecting plate can be firmly mounted. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 What is shown is a first three-dimensional structural schematic diagram of an anti-scattering adapter connecting a camera lens and a laser receiving end of the utility model;

[0017] Figure 2 What is shown is a schematic diagram of a first partial three-dimensional structure of an anti-scattering adapter connecting a camera lens and a laser receiving end of the utility model;

[0018] Figure 3 Shown is a schematic diagram of a second partial three-dimensional structure of an anti-scattering adapter connecting a camera lens and a laser receiving end of the utility model;

[0019] Figure 4 Shown is a schematic diagram of a third partial three-dimensional structure of an anti-scattering adapter connecting a camera lens and a laser receiving end of the utility model;

[0020] Explanation of the reference numerals: 1. first component; 2. second component; 3. connection component; 4. camera forward connection port; 5. multi-aperture adapter plate; 6. main connection plate; 7. multi-aperture device adapter plate; 8. cage coaxial optical device; 101. mounting column; 102. first clamp; 103. first light-through hole; 104. first slot; 105. second clamp; 106. first mounting hole; 201. second slot; 202. third clamp; 203. second mounting hole; 204. third slot; 205. fourth clamp; 206. third mounting hole; 301. fourth mounting hole; 302. second light-through hole; 303. connecting hole; 304. connecting rod. DETAILED DESCRIPTION

[0021] The utility model is further described below in conjunction with the accompanying drawings and embodiments.

[0022] See also Figure 1 The utility model provides an embodiment: an anti-scatter adapter connecting a camera lens and a laser receiving end, comprising a camera forward connection port 4, a multi-aperture adapter plate 5, a main connection plate 6, a multi-aperture device adapter plate 7, a cage coaxial optical device 8, a first component 1, a second component 2 and a connection component 3; a multi-aperture adapter plate 5 is arranged on one side of the camera forward connection port 4, a main connection plate 6 is arranged on one side of the multi-aperture adapter plate 5, a multi-aperture device adapter plate 7 is arranged on one side of the main connection plate 6, a cage coaxial optical device 8 is arranged on one side of the multi-aperture device adapter plate 7, a first component 1 is arranged on the side wall of the camera forward connection port 4, a second component 2 is arranged on the side wall of the main connection plate 6, and a connection component 3 is arranged inside the multi-aperture adapter plate 5.

[0023] See also Figure 2, the first component 1 includes a mounting column 101, a first clamping member 102 and a first light-through hole 103; a mounting column 101 is arranged on the side wall of the camera forward connection port 4, and multiple groups of mounting columns 101 are arranged, a first clamping member 102 is arranged on the side wall of the camera forward connection port 4, and a first light-through hole 103 is opened inside the camera forward connection port 4; the adapter can be installed and fixed by multiple groups of mounting columns 101, so as to achieve a stable installation effect; the first component 1 also includes a first card slot 104, a second clamping member 105 and a first mounting hole 106; a first card slot 104 is opened inside the multi-caliber adapter plate 5, the first clamping member 102 is connected to the multi-caliber adapter plate 5 through the first card slot 104, a second clamping member 105 is arranged on the side wall of the multi-caliber adapter plate 5, a first mounting hole 106 is opened on the side wall of the multi-caliber adapter plate 5, and the mounting column 101 is arranged on the first The inside of the mounting hole 106; the mounting column 101 is assembled with the first mounting hole 106, and the first clamp 102 is assembled with the first slot 104, so that the camera forward connection port 4 and the multi-aperture adapter plate 5 can be firmly installed; the second component 2 includes a second slot 201, a third clamp 202 and a second mounting hole 203; a second slot 201 is provided on the side wall of the main connecting plate 6, and the second clamp 105 is engaged with the main connecting plate 6 through the second slot 201, a third clamp 202 is provided on the side wall of the main connecting plate 6, a second mounting hole 203 is opened on the side wall of the main connecting plate 6, and the mounting column 101 is arranged inside the second mounting hole 203; the mounting column 101 is assembled with the second mounting hole 203, and the second clamp 105 is assembled with the second slot, so that the multi-aperture adapter plate 5 and the main connecting plate 6 can be firmly installed.

[0024] See also Figure 3-4In this embodiment, the second component 2 also includes a third card slot 204, a fourth card member 205 and a third mounting hole 206; a third card slot 204 is provided on the side wall of the multi-caliber device adapter plate 7, and the third card member 202 is engaged with the multi-caliber device adapter plate 7 through the third card slot 204. A fourth card member 205 is provided on the side wall of the multi-caliber device adapter plate 7, and a third mounting hole 206 is provided on the side wall of the multi-caliber device adapter plate 7. The mounting column 101 is arranged inside the third mounting hole 206; the mounting column 101 is assembled with the third mounting hole 206, and the third card member 202 is assembled with the third slot, so that the main connecting plate 6 and the multi-caliber device adapter plate 7 can be firmly installed; the connecting component 3 includes a second optically transparent Hole 302 and a fourth mounting hole 301; a fourth mounting hole 301 is opened on the side wall of the cage coaxial optical device 8, the mounting column 101 is arranged inside the fourth mounting hole 301, and a second light-transmitting hole 302 is opened inside the cage coaxial optical device 8; the mounting column 101 is assembled with the third mounting hole 206, so that the multi-aperture device adapter plate 7 and the cage coaxial optical device 8 can be firmly installed; the connecting component 3 also includes a connecting hole 303 and a connecting rod 304; a connecting hole 303 is opened on the side wall of the main connecting plate 6, and two groups of connecting holes 303 are opened, and a connecting rod 304 is arranged inside the connecting hole 303; a plurality of groups of connecting rods 304 are assembled with the connecting rods 304, so that the main connecting plate 6 can be firmly installed.

[0025] During operation, the camera forward connection port 4 and the multi-aperture adapter plate 5 can be stably mounted by assembling the mounting column 101 and the first mounting hole 106 and assembling the first clamping member 102 and the first clamping slot 104;

[0026] The multi-caliber adapter plate 5 and the main connecting plate 6 can be stably installed by assembling the mounting column 101 and the second mounting hole 203 and assembling the second clamp 105 and the second groove;

[0027] The main connecting plate 6 and the multi-caliber device adapter plate 7 can be stably mounted by assembling the mounting column 101 and the third mounting hole 206 and assembling the third clamp 202 and the third slot;

[0028] By assembling the mounting column 101 and the third mounting hole 206 , the multi-aperture device adapter plate 7 and the cage coaxial optical device 8 can be stably mounted.

[0029] Through the above steps, based on the maximum aperture cage optical structure device and the corresponding common camera forward connection port 4, the main connection plate 6, the multi-aperture adapter plate 5 and the multi-aperture device adapter plate 7 are designed, and the cage coaxial optical device 8 is connected to the corresponding multi-aperture device adapter plate 7 by connecting the multi-aperture adapter plate 5 adapted to the camera forward connection port 4, and then the main connection plate 6, the multi-aperture adapter plate 5 and the multi-aperture device adapter plate 7 are connected through the corresponding mounting holes, so as to realize efficient and stable connection between camera lenses of different apertures and cage coaxial optical devices 8 of different apertures.

[0030] The embodiments of the present invention are described in detail above in conjunction with the accompanying drawings, but the present invention is not limited to the above embodiments, and various changes can be made within the knowledge scope of those skilled in the art without departing from the purpose of the present invention.

Claims

1. An anti-scatter adapter for connecting a camera lens and a laser receiving end, comprising a camera forward connection port (4); characterized in that: The invention also comprises a multi-aperture adapter plate (5), a main connection plate (6), a multi-aperture device adapter plate (7), a cage coaxial optical device (8), a first component (1), a second component (2) and a connection component (3); the multi-aperture adapter plate (5) is arranged on one side of the camera forward connection port (4), the main connection plate (6) is arranged on one side of the multi-aperture adapter plate (5), the multi-aperture device adapter plate (7) is arranged on one side of the main connection plate (6), the cage coaxial optical device (8) is arranged on one side of the multi-aperture device adapter plate (7), the first component (1) is arranged on the side wall of the camera forward connection port (4), the second component (2) is arranged on the side wall of the main connection plate (6), and the connection component (3) is arranged inside the multi-aperture adapter plate (5).

2. The anti-scatter adapter for connecting a camera lens and a laser receiving end according to claim 1, characterized in that: The first component (1) comprises a mounting column (101), a first clamping member (102) and a first light-through hole (103); the mounting column (101) is arranged on the side wall of the camera forward connection port (4), a plurality of mounting columns (101) are arranged, the first clamping member (102) is arranged on the side wall of the camera forward connection port (4), and the first light-through hole (103) is opened inside the camera forward connection port (4).

3. The anti-scatter adapter for connecting a camera lens and a laser receiving end according to claim 1, characterized in that: The first component (1) also includes a first card slot (104), a second card member (105) and a first mounting hole (106); the first card slot (104) is provided inside the multi-caliber adapter plate (5); the first card member (102) is connected to the multi-caliber adapter plate (5) by means of the first card slot (104); the second card member (105) is provided on the side wall of the multi-caliber adapter plate (5); the first mounting hole (106) is provided on the side wall of the multi-caliber adapter plate (5); and the mounting column (101) is provided inside the first mounting hole (106).

4. The anti-scatter adapter for connecting a camera lens and a laser receiving end according to claim 1, characterized in that: The second component (2) comprises a second card slot (201), a third card member (202) and a second mounting hole (203); the second card slot (201) is arranged on the side wall of the main connecting plate (6); the second card member (105) is connected to the main connecting plate (6) by snapping together through the second card slot (201); the third card member (202) is arranged on the side wall of the main connecting plate (6); the second mounting hole (203) is opened on the side wall of the main connecting plate (6); and the mounting column (101) is arranged inside the second mounting hole (203).

5. The anti-scatter adapter for connecting a camera lens and a laser receiving end according to claim 1, characterized in that: The second component (2) further comprises a third card slot (204), a fourth card member (205) and a third mounting hole (206); a third card slot (204) is provided on the side wall of the multi-caliber device adapter plate (7); the third card member (202) is engaged and connected with the multi-caliber device adapter plate (7) via the third card slot (204); a fourth card member (205) is provided on the side wall of the multi-caliber device adapter plate (7); a third mounting hole (206) is provided on the side wall of the multi-caliber device adapter plate (7); and the mounting column (101) is arranged inside the third mounting hole (206).

6. The anti-scatter adapter for connecting a camera lens and a laser receiving end according to claim 1, characterized in that: The connection assembly (3) comprises a second light-through hole (302) and a fourth mounting hole (301); the fourth mounting hole (301) is provided on the side wall of the cage coaxial optical device (8); the mounting column (101) is arranged inside the fourth mounting hole (301); and the second light-through hole (302) is provided inside the cage coaxial optical device (8).

7. The anti-scatter adapter for connecting a camera lens and a laser receiving end according to claim 1, characterized in that: The connection assembly (3) also includes connection holes (303) and connection rods (304); the side wall of the main connection plate (6) is provided with connection holes (303), two groups of connection holes (303) are provided, and connection rods (304) are arranged inside the connection holes (303).