Light induction sensor compatible with far and near field light induction

By designing a rotating and disassembling assembly compatible with near-field and far-field optical sensors, the problems of insufficient sensor monitoring range and difficult lens replacement were solved, enabling comprehensive monitoring and low-cost maintenance, and improving data integrity and sensor performance.

CN223727163UActive Publication Date: 2025-12-26GUANGZHOU HECHUN AUTOMATION TECH CO LTD
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Patent Information

Application Number
CN202520089401.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-14
Publication Date
2025-12-26
Estimated Expiration
2035-01-14

AI Technical Summary

Technical Problem

Existing sensors have limited monitoring range and cannot cover all areas that need to be monitored, resulting in incomplete data, affecting the accuracy of analysis. Furthermore, when the lens is damaged, the entire sensor needs to be replaced, increasing maintenance costs and time.

Method used

The design is compatible with near and far field light sensors and includes a rotating component, a capturing component, a sensing component, and a disassembly component. It enables omnidirectional monitoring and individual lens replacement. The rotating component acquires 360-degree field of view data, and the disassembly component facilitates cleaning and maintenance.

Benefits of technology

It achieves comprehensive monitoring, enhances data richness and user engagement, while reducing maintenance costs and time, and maintaining the high accuracy and sensitivity of the sensors.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of sensors, and discloses a photoinduction sensor compatible with far and near field photoinduction, which comprises a fixing assembly, a rotating assembly, a capturing assembly, a sensing assembly and a dismounting assembly, and is characterized in that the rotating assembly is arranged in the fixing assembly, and the capturing assembly is arranged at the top of the rotating assembly; the sensing assembly is installed on one side of the capturing assembly, and the dismounting assembly is arranged in the sensing assembly. The sensor can monitor the surrounding environment in all directions, light sensing data in a 360-degree visual angle can be obtained without moving the device, richer and interactive experience is provided, and the sense of participation of a user is enhanced; the sensor is simple in structure and convenient to use, facilitates cleaning, dust and dirt removal and ensures the light transmission and reflection performance of the optical element, so that the high precision and sensitivity of the sensor are kept, the damaged optical element can be independently replaced, the whole sensor does not need to be replaced, and the maintenance cost is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to sensor technical field more particularly to a kind of light response sensor compatible far and near field light response. BACKGROUND

[0002] Light response sensor compatible far and near field light response is a kind of equipment using photoelectric conversion principle, converts optical signal into electrical signal, it can carry out near field and far field detection simultaneously, therefore widely used in the scene needing to accurately control illumination condition and object approach state.

[0003] The monitoring range of existing sensor is limited, cannot cover all areas needing monitoring, may lead to important information omission, the limitation of monitoring visual angle, the data collected by sensor can be incomplete, affect the accuracy and reliability of data analysis, and it cannot replace lens alone, once lens has problem, entire sensor needs to be replaced, greatly increase maintenance cost and time. UTILITY MODEL CONTENT

[0004] In order to overcome the above-mentioned defects of prior art, the utility model provides a kind of light response sensor compatible far and near field light response to solve the problems existing in the above background art.

[0005] The utility model provides the following technical scheme: a kind of light response sensor compatible far and near field light response, including fixed subassembly, rotating component, capture component, sensing component and dismounting assembly, the rotating component is set in the inside of fixed subassembly, the capture component is installed at the top of rotating component, the sensing component is installed at one side of capture component, the dismounting assembly is set in the inside of sensing component, the capture component includes fixed cylinder, capture motor, capture gear, roll, half gear and connecting rod, the fixed cylinder is fixedly installed at the top of shaft, the capture motor is nested in the inside of fixed cylinder, and the output shaft of capture motor is fixedly sleeved with capture gear by coupling, the roll is fixedly sleeved in the inside of fixed cylinder, and the outside of roll is movably sleeved with half gear, one side of the half gear is fixedly connected with connecting rod, and capture gear is engaged with half gear;

[0006] Preferably, the fixed subassembly includes base and fixed block, the fixed block is symmetrically installed at the two sides of base.

[0007] Preferably, the rotating component includes rotating motor, rotating gear, shaft and transmission gear, the rotating motor is nested in the inside of base, and the output shaft of rotating motor is fixedly sleeved with rotating gear by coupling, the shaft is movably sleeved in the inside of base, and the outside of shaft is provided with transmission gear, and the rotating gear is engaged with transmission gear.

[0008] Preferably, the sensing assembly comprises a fixed plate, a light source, a lens, a clamping device and a controller, the fixed plate is fixedly connected to one side of the connecting rod, the light source is symmetrically installed on one side of the fixed plate, the lens is movably clamped on one side of the fixed plate, the lens is symmetrically provided with the clamping device on one side, and the controller is nested in the interior of the base.

[0009] Preferably, the dismounting assembly comprises a limiting shaft, a spring, a fixed shaft and a button, the limiting shaft is symmetrically installed in the interior of the fixed plate, the spring is movably sleeved on the exterior of the limiting shaft, the fixed shaft is arranged on one side of the limiting shaft and the spring and is movably clamped in the interior of the clamping device, the fixed shaft is provided with a hole on one side, and the fixed shaft is provided with the button on one side.

[0010] The technical effects and advantages of the present application are as follows:

[0011] 1. The rotating assembly and the capturing assembly are provided, so that the sensor can monitor the surrounding environment in all directions, the light sensing data in the 360-degree visual angle can be obtained without moving the device itself, a more rich and interactive experience is provided, and the participation of the user is enhanced.

[0012] 2. The sensing assembly and the dismounting assembly are provided, so that the cleaning is facilitated, the dust and dirt are removed, the light transmission and reflection performance of the optical element are ensured, the high precision and sensitivity of the sensor are maintained, the damaged optical element can be replaced individually without replacing the entire sensor, and the maintenance cost is reduced. BRIEF DESCRIPTION OF DRAWINGS

[0013] Figure 1 It is a schematic diagram of the overall structure of the present application.

[0014] Figure 2 It is a schematic diagram of the overall structure and part of the present application.

[0015] Figure 3 It is a schematic diagram of part of the present application.

[0016] Figure 4 It is a schematic diagram of part of the present application. Figure 2 It is a schematic diagram of part A of the present application.

[0017] The reference signs are: 1, a fixing assembly; 101, a base; 102, a fixing block; 2, a rotating assembly; 201, a rotating motor; 202, a rotating gear; 203, a rotating shaft; 204, a transmission gear; 3, a capturing assembly; 301, a fixed column body; 302, a capturing motor; 303, a capturing gear; 304, a roller shaft; 305, a half gear; 306, a connecting rod; 4, a sensing assembly; 401, a fixed plate; 402, a light source; 403, a lens; 404, a clamping device; 405, a controller; 5, a dismounting assembly; 501, a limiting shaft; 502, a spring; 503, a fixed shaft; 504, a button. DETAILED DESCRIPTION

[0018] The technical scheme in the utility model will be described clearly and completely below with reference to the drawings in the utility model, and the forms of the structures described in the following embodiments are only examples. The light sensing sensor compatible with far and near field light sensing disclosed in the utility model is not limited to the structures described in the following embodiments, and all other embodiments obtained by those skilled in the art without creative labor belong to the scope of protection of the utility model.

[0019] REFERENCE Figures 1-4 The utility model provides a kind of light sensing sensor compatible with far and near field light sensing, including fixed assembly 1, rotating assembly 2, capturing assembly 3, sensing assembly 4 and dismounting assembly 5, rotating assembly 2 is arranged in the inside of fixed assembly 1, capturing assembly 3 is installed at the top of rotating assembly 2, sensing assembly 4 is installed in one side of capturing assembly 3, dismounting assembly 5 is arranged in the inside of sensing assembly 4;

[0020] Fixed assembly 1 includes base 101 and fixed block 102, fixed block 102 is symmetrically installed at the two sides of base 101, it is favorable to fix the whole sensor.

[0021] Rotating assembly 2 includes rotating motor 201, rotating gear 202, rotating shaft 203 and transmission gear 204, rotating motor 201 is nested in the inside of base 101, and the output shaft of rotating motor 201 is fixedly sleeved rotating gear 202 by coupling, rotating shaft 203 is movably sleeved in the inside of base 101, and transmission gear 204 is arranged on the outside of rotating shaft 203, rotating gear 202 is engaged with transmission gear 204, it is favorable to start rotating motor 201, the output shaft of rotating motor 201 drives transmission shaft to rotate, transmission shaft drives rotating gear 202 to rotate, rotating gear 202 drives transmission gear 204 engaged with it to rotate, so that rotating shaft 203 rotates, and the rotation of capturing assembly 3 is controlled.

[0022] The capturing assembly 3 comprises a fixed column body 301, a capturing motor 302, a capturing gear 303, a roller shaft 304, a half gear 305 and a connecting rod 306, the fixed column body 301 is fixedly installed at the top of the rotating shaft 203, the capturing motor 302 is nested in the inside of the fixed column body 301, the output shaft of the capturing motor 302 is fixedly sleeved with the capturing gear 303 through a shaft coupling, the roller shaft 304 is fixedly sleeved in the inside of the fixed column body 301, the outside of the roller shaft 304 is movably sleeved with the half gear 305, one side of the half gear 305 is fixedly connected with the connecting rod 306, and the capturing gear 303 is engaged with the half gear 305, so as to facilitate starting the capturing motor 302, the output shaft of the capturing motor 302 drives the transmission shaft to rotate, the transmission shaft drives the capturing gear 303 to rotate, the capturing gear 303 drives the half gear 305 engaged with the capturing gear 303 to rotate, so that the connecting rod 306 can control the sensing assembly 4 to rotate around the roller shaft 304 and capture reflected light.

[0023] The sensing assembly 4 comprises a fixed plate 401, a light source 402, a lens 403, a clamping device 404 and a controller 405, the fixed plate 401 is fixedly connected to one side of the connecting rod 306, the light source 402 is symmetrically installed on one side of the fixed plate 401, the lens 403 is movably clamped on one side of the fixed plate 401, one side of the lens 403 is symmetrically provided with the clamping device 404, and the controller 405 is nested in the inside of the base 101, so that, after the light source 402 emits light signals and meets the reflection of a rear object on the lens 403, the lens 403 sends the received information to the controller 405, and the controller 405 calculates detailed data.

[0024] The dismounting assembly 5 comprises a limiting shaft 501, a spring 502, a fixed shaft 503 and a button 504, the limiting shaft 501 is symmetrically installed in the inside of the fixed plate 401, the spring 502 is movably sleeved on the outside of the limiting shaft 501, the fixed shaft 503 is arranged on one side of the limiting shaft 501 and the spring 502 and is movably clamped in the inside of the clamping device 404, a hole is formed in one side of the fixed shaft 503, and the button 504 is arranged on one side of the fixed shaft 503, so that, by pulling the button 504 to the two sides, the limiting shaft 501 can be inserted into the hole in the fixed shaft 503, one side of the fixed shaft 503 can slide out of the clamping device 404, and the lens 403 can be taken out for cleaning and maintenance.

[0025] The working principle of the utility model:

[0026] The inductor is installed at the designated position through the fixing block 102, the rotary motor 201 is started, the output shaft of the rotary motor 201 drives the transmission shaft to rotate, the transmission shaft drives the rotary gear 202 to rotate, the rotary gear 202 drives the transmission gear 204 engaged with the rotary gear 202 to rotate, so that the rotating shaft 203 rotates, the rotation of the capture assembly 3 is controlled, the capture motor 302 is started, the output shaft of the capture motor 302 drives the transmission shaft to rotate, the transmission shaft drives the capture gear 303 to rotate, the capture gear 303 drives the half gear 305 engaged with the capture gear 303 to rotate, so that the connecting rod 306 can control the sensing assembly 4 to rotate around the shaft 304 as the axis, the reflected light is captured, after the light signal is emitted through the light source 402, the reflected light meets the rear object and is reflected to the lens 403, the lens 403 sends the received information to the controller 405, detailed data is calculated through the controller 405, the distance of the object is analyzed, the button 504 is pulled to the two sides, the limiting shaft 501 is inserted into the hole inside the fixed shaft 503, the side of the fixed shaft 503 slides out from the clamping device 404, and the lens 403 can be taken out for cleaning and maintenance.

[0027] Finally, it should be pointed out that: first, in the description of the present application, it should be pointed out that, unless otherwise specified and limited, the terms "installation", "connection", "connection" should be understood broadly, which can be mechanical connection or electrical connection, or the communication between two elements, or direct connection, "up", "down", "left", "right" and the like are only used to indicate the relative positional relationship, when the absolute position of the described object changes, the relative positional relationship may change;

[0028] Secondly: the utility model discloses the embodiment of the drawings, only relate to the structure involved in the embodiment of the present disclosure, other structures can refer to the usual design, under the condition of no conflict, the same embodiment and different embodiments of the utility model can be combined with each other;

[0029] Finally: the above only for the preferred embodiment of the utility model has, and does not limit the utility model, any modification, equivalent replacement, improvement etc. that is made within the spirit and principle of the utility model, should be included in the protection scope of the utility model.

Claims

1. A light sensing sensor compatible with far and near field light induction, comprising a fixing assembly (1), a rotating assembly (2), a capturing assembly (3), a sensing assembly (4) and a disassembling assembly (5), characterized in that: The rotating assembly (2) is arranged inside the fixed assembly (1), the capturing assembly (3) is installed on the top of the rotating assembly (2), the sensing assembly (4) is installed on one side of the capturing assembly (3), the dismounting assembly (5) is arranged inside the sensing assembly (4), the capturing assembly (3) comprises a fixed column body (301), a capturing motor (302), a capturing gear (303), a roller shaft (304), a half gear (305) and a connecting rod (306), the fixed column body (301) is fixedly installed on the top of the rotating shaft (203), the capturing motor (302) is nested inside the fixed column body (301), and the output shaft of the capturing motor (302) is fixedly sleeved with the capturing gear (303) through the shaft coupling, the roller shaft (304) is fixedly sleeved inside the fixed column body (301), and the outer part of the roller shaft (304) is movably sleeved with the half gear (305), one side of the half gear (305) is fixedly connected with the connecting rod (306), and the capturing gear (303) is engaged with the half gear (305).

2. The optical sensor compatible with both far field and near field optical induction according to claim 1, wherein: The fixed assembly (1) comprises a base (101) and a fixed block (102), and the fixed block (102) is symmetrically installed on both sides of the base (101).

3. The optical sensor compatible with both far field and near field optical induction according to claim 1, wherein: The rotating assembly (2) comprises a rotating motor (201), a rotating gear (202), a rotating shaft (203) and a transmission gear (204), the rotating motor (201) is nested inside the base (101), and the output shaft of the rotating motor (201) is fixedly sleeved with the rotating gear (202) through the shaft coupling, the rotating shaft (203) is movably sleeved inside the base (101), and the outer part of the rotating shaft (203) is provided with the transmission gear (204), and the rotating gear (202) is engaged with the transmission gear (204).

4. The optical sensor compatible with both far field and near field optical induction according to claim 1, wherein: The sensing assembly (4) comprises a fixed plate (401), a light source (402), a lens (403), a clamping device (404) and a controller (405), the fixed plate (401) is fixedly connected on one side of the connecting rod (306), the light source (402) is symmetrically installed on one side of the fixed plate (401), the lens (403) is movably clamped on one side of the fixed plate (401), one side of the lens (403) is symmetrically provided with the clamping device (404), and the controller (405) is nested inside the base (101).

5. The optical sensor compatible with both far field and near field optical induction according to claim 1, wherein: The dismounting assembly (5) comprises a limiting shaft (501), a spring (502), a fixed shaft (503) and a button (504), the limiting shaft (501) is symmetrically installed inside the fixed plate (401), and the outer part of the limiting shaft (501) is movably sleeved with the spring (502), the fixed shaft (503) is arranged on one side of the limiting shaft (501) and the spring (502) and is movably clamped inside the clamping device (404), one side of the fixed shaft (503) is provided with a hole, and one side of the fixed shaft (503) is provided with the button (504).