An adjustable infrared identification device

By designing the docking and adjustment structures, the problems of unstable and laborious connection of infrared recognition sensor wires were solved, enabling rapid docking and height adjustment, thus improving efficiency.

CN223611709UActive Publication Date: 2025-11-28XIAN YONGXUAN ELECTRONIC TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520227085.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-13
Publication Date
2025-11-28
Estimated Expiration
2035-02-13

AI Technical Summary

Technical Problem

Existing infrared recognition sensors often have wire connections that are prone to detachment or are time-consuming and laborious, affecting their efficiency.

Method used

It adopts a docking structure and an adjustment structure, including components such as docking pipe, docking column, movable spring, shaft seat and movable tube, to realize convenient docking of the transmission line and height adjustment of the infrared recognition sensor.

Benefits of technology

It enables rapid and stable connection of the transmission line and convenient height adjustment of the infrared recognition sensor, improving efficiency and ease of operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an adjustable infrared identification device, including infrared identification sensor, conduction structure, conduction structure includes the axle seat no.
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Description

TECHNICAL FIELD

[0001] The utility model relates to infrared identification sensor technical field, concretely is a kind of adjustable infrared identification device. BACKGROUND

[0002] Infrared identification sensor is a kind of sensor using infrared to measure and identify, generally by infrared emission tube and infrared receiving tube composition. Emission tube emits specific frequency infrared signal, when meeting object in detection direction, infrared signal is reflected back, and receiving tube receives the infrared signal reflected back.

[0003] The existing infrared identification sensor is powered and data is transmitted through wires, and the connection mode of the wires is either directly inserted and docked, which is easy to fall off under stress, or threaded and docked, which is time-consuming and laborious to repeatedly screw the bolts, and affects actual use, so an infrared identification sensor that can solve the above problems is needed to improve the effect. UTILITY MODEL CONTENT

[0004] The utility model aims at providing a kind of adjustable infrared identification device to solve the problem that the existing infrared identification sensor is powered and data is transmitted through wires in the above background technology, and the connection mode of the wires is either directly inserted and docked, which is easy to fall off under stress, or threaded and docked, which is time-consuming and laborious to repeatedly screw the bolts, and affects actual use.

[0005] To solve the above technical problems, the utility model is realized by the following technical solutions:

[0006] The utility model is a kind of adjustable infrared identification device, comprising:

[0007] Infrared identification sensor;

[0008] Conduction structure, the conduction structure includes the shaft seat one through in the middle part of infrared identification sensor side, the middle part of shaft seat one is equipped with the electric connection pipe, and the middle part of electric connection pipe is equipped with the conduction wire extending into infrared identification sensor;

[0009] Docking structure, the docking structure includes the docking pipe through on the upper surface of electric connection pipe, the outer edge of docking pipe is equipped with ring groove, the middle part of docking pipe is movably equipped with docking column, and the outer surface of docking column is equipped with the fixed sleeve ring of upper part, the lower end of sleeve ring is equidistantly fixed with movable spring, and the lower end of movable spring is fixed with the bottom end of ring groove inner wall.

[0010] Further, the docking structure further includes control column, the control column is equidistantly equipped with the middle part of the outer surface of sleeve ring, and the outer surface of control column is equidistantly equipped with anti-skid line.

[0011] Further, the adjusting structure further comprises a fixed ring, the fixed ring is sleeved on the outer surface of the infrared identification sensor, and the lower end middle part of the fixed ring is sleeved with the top end of the movable column.

[0012] Further, the outer surface of the movable pipe is provided with a movable port at the middle part of one side, and the movable port extends to the inner side of the outer surface of the movable column, and the inner side of the inner wall of the movable port is fixedly provided with a ring pipe.

[0013] Further, the adjusting structure further comprises a fixed ring, the fixed ring is sleeved on the outer surface of the infrared identification sensor, and the lower end middle part of the fixed ring is sleeved with the top end of the movable column.

[0014] Further, the bottom end of the shaft seat two is fixedly provided with a positioning ring, and the outer edge of the positioning ring is provided with a positioning hole.

[0015] The utility model has the following beneficial effects:

[0016] The utility model discloses a butt joint pipe, a butt joint column and a movable spring, after the conducting wire is extended to the inside of the electricity connection pipe, by directly exerting the upward force to the butt joint column, the butt joint column can be moved up, and then the conducting wire is continuously extended to the inside of the electricity connection pipe, and after the force is released, the butt joint column restores the original state under the action of the deformation recovery of the movable spring, and acts on the conducting wire, relying on the generated extrusion force, the conducting wire and the electricity connection pipe are butted, the butt joint can be conveniently and quickly completed, and the utility model discloses convenient disassembly and assembly, saves time and labor, and meets the demand.

[0017] Based on the above beneficial effects, the shaft seat two, the movable pipe and the movable column are arranged, after the pressing force is exerted to the button and the upward pulling force is exerted to the movable column, the height of the infrared identification sensor can be adjusted by the upward movement of the movable column, so that different use requirements can be met, and the position of the upward button can be adjusted by the rotation of the shaft seat two, so that the button in the upward movement can be prevented from repeatedly entering different movable ports, and the adjustment efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS

[0018] In order to more clearly illustrate the technical scheme of the embodiments of the utility model, the following will briefly introduce the drawings needed to be used in the embodiment description, and obviously, the drawings in the following description are only some embodiments of the utility model, and for those skilled in the art, other drawings can also be obtained according to these drawings without paying creative labor.

[0019] Figure 1 It is the appearance drawing of the utility model;

[0020] Figure 2 It is the butt joint column structure drawing of the utility model;

[0021] Figure 3 The butt joint pipe layout position diagram of the utility model;

[0022] Figure 4 The utility model Figure 3 The enlarged schematic view of A in the middle;

[0023] Figure 5 The button structure diagram of the utility model.

[0024] In the drawings, the component list represented by each sign is as follows:

[0025] 11, infrared identification sensor, 21, shaft seat one, 22, electricity connection pipe, 23, conducting wire, 31, butt joint pipe, 32, ring groove, 33, butt joint column, 34, sleeve ring, 35, movable spring, 36, control column, 41, positioning ring, 42, shaft seat two, 43, movable pipe, 44, movable column, 45, movable port, 46, ring pipe, 47, telescopic spring, 48, button, 49, fixed ring. DETAILED DESCRIPTION

[0026] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0027] In order to make the purpose, technical scheme and advantages of the utility model more clear, the embodiments of the utility model will be described in further detail below in conjunction with the drawings.

[0028] Please refer to Figures 1-5 The utility model discloses an adjustable infrared identification device, which comprises:

[0029] Infrared identification sensor 11;

[0030] The infrared identification sensor 11 utilizes infrared rays to measure and identify the required RE200B.

[0031] Conducting structure, the conducting structure includes the shaft seat one 21 through in the middle part of one side of infrared identification sensor 11, the middle part of shaft seat one 21 is equipped with electricity connection pipe 22, and the middle part of electricity connection pipe 22 is equipped with the conducting wire 23 extending to the inside of infrared identification sensor 11;

[0032] The bearing seat 21 allows the conductor 23 to rotate, preventing it from being damaged by twisting. The power connector 22 connects the conductor 23 to the infrared recognition sensor 11 for power supply and data transmission.

[0033] The docking structure includes a connecting pipe 31 that passes through the outer surface of the connecting pipe 22. An annular groove 32 is provided on the outer edge of the connecting pipe 31. A docking post 33 is movably provided in the middle of the connecting pipe 31. A collar 34 is fixedly fitted on the upper part of the outer surface of the docking post 33. Movable springs 35 are fixed at equal intervals at the lower end of the collar 34. The lower end of the movable springs 35 is fixed to the bottom end of the inner wall of the annular groove 32.

[0034] The connecting pipe 31 guides the docking post 33 up and down. The lower end of the movable spring 35 is supported by the annular groove 32. With the help of the extension and retraction characteristics of the movable spring 35, the docking post 33 can move up and down. The docking post 33 can also apply pressure to the conductor 23 to ensure the stability of the docking with the connecting pipe 31. The collar 34 is used to install the structure of the multiple control posts 36.

[0035] The docking structure also includes a control post 36, which is equidistantly sleeved on the middle of the outer surface of the collar 34, and the outer surface of the control post 36 is provided with anti-slip textures at equal intervals.

[0036] The force required to move the docking post 33 upward can be easily applied using the control post 36, and the anti-slip texture increases contact friction, which is beneficial for control.

[0037] Working principle: When connecting the conductive wire 23 to the infrared recognition sensor 11, one end of the conductive wire 23 is extended into the inside of the power connector 22 beforehand. In the above operation, the connecting post 33 needs to be moved upward using the control post 36 in advance, so that the extended conductive wire 23 can be smoothly extended to the bottom of the connecting post 33. After the force is released, the movable spring 35 returns to its original deformation, so that the connecting post 33 returns to its original state and acts on the conductive wire 23. The pressure makes it stable between the conductive wire 23 and the power connector 22. When disassembling, the reverse operation can be applied.

[0038] This solution allows for quick and easy assembly and disassembly of the conductive wire 23, saving time and effort while meeting the requirements.

[0039] Please see Figures 1-5 As shown, this embodiment, based on the above embodiment, further includes:

[0040] The adjustment structure includes a bearing seat 42, a movable tube 43 is fixed at the middle of the upper end of the bearing seat 42, and a movable column 44 is movably provided in the middle of the movable tube 43.

[0041] The shaft seat two 42 meets the installation of the positioning ring 41 and the movable pipe 43, and meets the rotation of the movable pipe 43 required to adjust the direction of the button 48, and the movable column 44 is moved up and down inside the movable pipe 43, which meets the height adjustment of the infrared identification sensor 11.

[0042] The middle part of the outer surface of the movable pipe 43 is equidistantly provided with a movable opening 45, which extends to one side of the outer surface of the movable column 44, and the inner side of the inner wall of the movable opening 45 is fixedly provided with a ring pipe 46, the inner wall of the ring pipe 46 is fixedly provided with a telescopic spring 47, one end of the telescopic spring 47 is fixedly provided with a button 48, one end of the button 48 extends into the ring pipe 46, and the other end extends out of the movable opening 45.

[0043] The docking between different movable openings 45 and buttons 48 can meet the positioning of the structure of the movable column 44 after adjusting the height, and the ring pipe 46 provides the installation of the telescopic spring 47 and the telescopic environment of the button 48.

[0044] The adjusting structure further comprises a fixed ring 49, which is sleeved on the outer surface of the infrared identification sensor 11, and the lower end of the fixed ring 49 is sleeved with the top end of the movable column 44.

[0045] The docking between the fixed ring 49 and the movable column 44 docks the infrared identification sensor 11 and the movable column 44.

[0046] The bottom end of the shaft seat two 42 is fixedly provided with a positioning ring 41, and the outer edge of the positioning ring 41 is equidistantly provided with a positioning hole.

[0047] The positioning ring 41 can be fixed by putting a bolt into the positioning hole and tightening it, thereby meeting the fixation of the structure of the infrared identification sensor 11.

[0048] Working principle: after the bolt is put into the positioning hole and tightened, the structure of the entire infrared identification sensor 11 can be fixed, if the height of the infrared identification sensor 11 is adjusted, the button 48 can be pressed to extend the button 48 into the interior of the movable opening 45, and at the same time, the movable pipe 43 is rotated to rotate the button 48 to a position away from the movable opening 45, under the application of upward force, the movable column 44 is continuously moved upward to link the upward movement of the infrared identification sensor 11, and after the infrared identification sensor 11 is moved to the appropriate position, the movable pipe 43 is rotated again to make the button 48 extend into the corresponding movable opening 45, and the telescopic spring 47 pushes the button 48 to extend out of the movable opening 45 after the release of the force, ensuring the stability of the structure of the movable column 44 at this time.

[0049] This scheme meets the height adjustment of the infrared identification sensor 11 to meet the needs of different uses, and can conveniently and quickly and efficiently adjust the height, saving time and effort, and helping to improve the efficiency of work.

[0050] The preferred embodiments disclosed above are only used to help explain the utility model. The preferred embodiments do not describe all the details and do not limit the utility model to the specific embodiments described. Obviously, according to the content of the description, many modifications and changes can be made. The description selects and specifically describes these embodiments in order to better explain the principles and practical applications of the utility model, so that the skilled in the art can well understand and utilize the utility model. The utility model is limited by the claims and the entire scope and equivalents thereof.

Claims

1. An adjustable infrared identification device, characterized by, Include: Infrared identification sensor (11); Conducting structure, the shaft seat one (21) is passed through in the middle part of infrared identification sensor (11) one side, the middle part of shaft seat one (21) is equipped with the electric connection pipe (22) in the sleeve, and the middle part of electric connection pipe (22) is equipped with the conducting wire (23) extending into infrared identification sensor (11) in; The docking structure includes a docking pipe (31) passing through above the outer surface of the electric connection pipe (22), the outer edge of the docking pipe (31) is provided with a ring groove (32), the docking column (33) is movably arranged in the middle part of the docking pipe (31), and the outer surface of the docking column (33) is movably arranged with a sleeve ring (34), the lower end of the sleeve ring (34) is equidistantly fixed with a movable spring (35), and the lower end of the movable spring (35) is fixed with the bottom end of the inner wall of the ring groove (32).

2. An adjustable infrared recognition device according to claim 1, characterized in that: The docking structure further includes a control column (36), which is movably arranged in the middle part of the outer surface of the sleeve ring (34), and the outer surface of the control column (36) is equidistantly provided with anti-skid lines.

3. An adjustable infrared identification device according to claim 1, wherein: Further including adjusting structure, the shaft seat two (42) is fixed with the movable pipe (43) in the middle part of the upper end, and the movable pipe (43) is movably arranged with the movable column (44) in the middle part.

4. An adjustable infrared recognition device according to claim 3, wherein: The middle part of one side of the outer surface of the movable pipe (43) is equidistantly provided with a movable port (45), which extends to one side of the outer surface of the movable column (44), and the inner side of the inner wall of the movable port (45) is fixed with a ring pipe (46), the inner wall of the ring pipe (46) is fixed with a telescopic spring (47), one end of the telescopic spring (47) is fixed with a button (48), one end of the button (48) extends into the ring pipe (46), and the other end extends out of the movable port (45).

5. An adjustable infrared identification device according to claim 3, wherein: The adjusting structure further includes a fixed ring (49), which is arranged on the outer surface of the infrared identification sensor (11), and the lower end of the fixed ring (49) is movably arranged with the top end of the movable column (44).

6. An adjustable infrared identification device according to claim 3, wherein: The bottom end of the shaft seat two (42) is fixed with a positioning ring (41), and the outer edge of the positioning ring (41) is equidistantly provided with a positioning hole.