Detection equipment for photoelectric sensor production

By designing a photoelectric sensor detection device that includes components such as a main body, casters, control panel, and motor, the problem of clamping offset during sensor detection is solved, achieving stable clamping and protection of the sensor, and it is suitable for sensors of different diameters.

CN223966098UActive Publication Date: 2026-03-03HEBEI RANPENG OPTOELECTRONICS TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520613092.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-02
Publication Date
2026-03-03
Estimated Expiration
2035-04-02

AI Technical Summary

Technical Problem

Existing photoelectric sensor detection devices have inadequate clamping mechanisms when detecting sensors, which causes the sensors to shift during the detection process.

Method used

A testing device for the production of photoelectric sensors is adopted, including components such as a main body, casters, control panel, motor, slide, screw, slider, connecting plate, clamping base, electric telescopic rod, clamping plate, and clamping plate. The sensor is stably clamped and protected by the cooperation of these components.

Benefits of technology

It effectively prevents the sensor from shifting during the detection process, achieves sensor fixation and positioning, protects the sensor from damage, and is suitable for sensors of different diameters.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses detection equipment for photoelectric sensor production, relates to the technical field of press machines, and aims to solve the problem that a sensor deviates during detection due to the fact that a clamping mechanism of the existing photoelectric sensor detection device for the sensor is not perfect when the sensor is detected. Through the first sliding groove, the first screw rod, the second sliding groove and the second screw rod, a sensor is placed on the surface of the clamping base, the sliding block is controlled to drive the clamping base to ascend, the sensor is detected through the detection head, meanwhile, the motor is controlled to drive the detection head to move on the surface of the second screw rod, and the detection head is driven to move on the surface of the second screw rod. Therefore, different positions of the sensor can be detected.
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Description

Technical Field

[0001] This utility model relates to the field of photoelectric sensor detection technology, and in particular to a detection device for the production of photoelectric sensors. Background Technology

[0002] A photoelectric sensor generally consists of two parts: a processing path and a processing element. Its basic principle is based on the photoelectric effect, which converts changes in the measured quantity into changes in the light signal. The photoelectric sensor controls the emitted light to be emitted onto the surface of the object being detected, and a receiver collects the reflected light. The detection result is obtained by analyzing the reflected light. After the photoelectric sensor is manufactured, it is usually necessary to use photoelectric sensor testing equipment to perform functional testing.

[0003] Existing photoelectric sensor detection devices have inadequate clamping mechanisms for the sensors during detection, which leads to sensor misalignment.

[0004] Therefore, a testing device for the production of photoelectric sensors is proposed. Utility Model Content

[0005] In order to improve the problem that the existing photoelectric sensor detection device has an imperfect clamping mechanism for the sensor when detecting the sensor, which causes the sensor to shift during detection, this utility model provides a detection device for the production of photoelectric sensors.

[0006] This utility model provides a testing device for the production of photoelectric sensors, which adopts the following technical solution:

[0007] A testing device for the production of photoelectric sensors includes a main body with four casters at the bottom corners, a control panel on the front, a motor on the top, and two sliding grooves on the left and right sides inside the main body. Each of the two sliding grooves contains a screw, and a slider is threaded through the surface of the screw. A connecting plate is located between the two sliders, and a clamping seat is located on the upper surface of the connecting plate. A second sliding groove is located at the top inside the main body, containing a second screw. A connecting shaft is threaded through the surface of the second screw, and a universal ball is located at the bottom of the connecting shaft. A detection head is located at the bottom of the universal ball.

[0008] By adopting the above technical solution, the sensor can be effectively fixed.

[0009] Optionally, the clamping seat is U-shaped in general, and electric telescopic rods are provided on the inner sides of the left and right sides of the clamping seat. Clamping plates are provided on the inner sides of the two electric telescopic rods, and the two clamping plates are arranged symmetrically.

[0010] By adopting the above technical solution, the positioning effect of the sensor can be further improved.

[0011] Optionally, an embedding groove is provided in the middle of the inner side of the clamping plate, and springs are provided at the top and bottom of the embedding groove. A protective plate is provided at the other end of each spring, and the protective plate can be made of a soft material.

[0012] By adopting the above technical solutions, the protection of the sensor can be effectively achieved.

[0013] Optionally, the upper surface of the clamping seat is provided with a clamping disc located between the two electric telescopic rods.

[0014] By adopting the above technical solution, sensors of different diameters can be effectively fixed.

[0015] Optionally, the upper surface of the clamping plate is provided with fixed seats at equal intervals, the inner end of the fixed seat is provided with a connecting block, the inner end of the connecting block is provided with a connecting rod, the connecting block is a hollow structure, and the connecting rod is embedded in the hollow structure inside the connecting block.

[0016] By adopting the above technical solution, it is possible to fix sensors of different diameters.

[0017] Optionally, the inner end of the connecting rod is provided with a clamping block, and the inner end face of the clamping block may be provided with a rubber pad or a sponge pad.

[0018] By adopting the above technical solution, direct contact between the sensor and the clamping block can be avoided.

[0019] Optionally, the four clamps are arranged in a square configuration.

[0020] By adopting the above technical solution, the sensor can be clamped on all four sides.

[0021] In summary, this utility model has the following beneficial effects:

[0022] 1. This utility model uses a sliding groove, a screw, a sliding groove, and a screw to place the sensor on the surface of the clamping seat. The slider is controlled to drive the clamping seat to rise, and the sensor is detected by the detection head. At the same time, the motor is controlled to drive the detection head to move on the surface of the screw, thereby achieving detection at different positions of the sensor.

[0023] 2. This utility model uses a clamping base and a clamping plate. When the sensor is placed on the surface of the clamping base, two electric telescopic rods are controlled to work, driving the clamping plates to work. The two clamping plates clamp the surface of the sensor, so that the sensor surface is embedded in the embedded groove. The soft protective plate can effectively protect the sensor. The bottom of the sensor is placed on the surface of the clamping plate. By controlling the connecting rod to slide inside the connecting block, the clamping block is driven to work. The clamping block clamps the bottom of the sensor, preventing the sensor from shifting. Attached Figure Description

[0024] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0025] Figure 2 This is a schematic diagram of the internal structure of the main body of this utility model;

[0026] Figure 3 This is a schematic diagram of the clamping base of this utility model;

[0027] Figure 4 This is a schematic diagram of the clamping disc structure of this utility model;

[0028] Figure 5 This is a schematic diagram of the clamping plate structure of this utility model.

[0029] Explanation of reference numerals in the attached figures:

[0030] 1. Main body; 101. Casters; 102. Control panel; 103. Motor; 104. Slide 1; 105. Screw 1; 106. Slider; 107. Connecting plate; 108. Slide 2; 109. Screw 2; 110. Connecting shaft; 111. Ball joint; 112. Detection head; 2. Clamping seat; 201. Electric telescopic rod; 202. Clamping plate; 203. Embedded groove; 204. Spring; 205. Protective plate; 3. Clamping disc; 301. Fixed seat; 302. Connecting block; 303. Connecting rod; 304. Clamping block. Detailed Implementation

[0031] The following description, in conjunction with the embodiments of this utility model, includes appendices. Figure 1-5 The technical solutions in the embodiments of this utility model are clearly and completely described herein. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.

[0032] Please refer to Figure 1-5A testing device for the production of photoelectric sensors includes a main body 1. Universal wheels 101 are located at the four corners of the bottom of the main body 1. A control panel 102 is located on the front of the main body 1. A motor 103 is located on the top of the main body 1. Slide grooves 104 are opened on the left and right sides inside the main body 1. Screws 105 are installed inside each slide groove 104. A slider 106 is passed through the surface of the screws 105. A connecting plate 107 is located between the two sliders 106. A clamping seat 2 is located on the upper surface of the connecting plate 107. A second slide groove 108 is opened at the top inside the main body 1. A screw 109 is installed inside the second slide groove 108. A connecting shaft 110 is passed through the surface of the screw 109. A universal ball 111 is located at the bottom of the connecting shaft 110. A detection head 112 is located at the bottom of the universal ball 111.

[0033] The sensor is placed on the surface of the clamping seat 2, and the slider 106 is controlled to drive the clamping seat 2 to rise. The sensor is detected by the detection head 112. At the same time, the motor 103 is controlled to drive the detection head 112 to move on the surface of the screw 109, thereby achieving detection at different positions of the sensor.

[0034] Reference Figure 3 The clamping seat 2 is U-shaped in general. Electric telescopic rods 201 are provided on the inner sides of the left and right sides of the clamping seat 2. Clamping plates 202 are provided on the inner sides of the two electric telescopic rods 201. The two clamping plates 202 are arranged symmetrically on the axis.

[0035] An embedding groove 203 is provided in the middle of the inner side of the clamping plate 202. Springs 204 are provided at the top and bottom of the embedding groove 203. A protective plate 205 is provided at the other end of each spring 204. The protective plate 205 can be made of soft material.

[0036] When the sensor is placed on the surface of the clamping base 2, the two electric telescopic rods 201 are controlled to work, which drives the clamping plate 202 to work. The sensor surface is clamped by the two clamping plates 202. At this time, the sensor surface is embedded in the interior of the embedding groove 203, and the soft material protective plate 205 can effectively protect the sensor and prevent the sensor from being damaged by direct contact with the clamping plate 202.

[0037] Reference Figure 4 The upper surface of the clamping seat 2 is provided with a clamping plate 3 located between the two electric telescopic rods 201;

[0038] The upper surface of the clamping plate 3 is provided with fixed seats 301 at equal intervals. The inner end of the fixed seat 301 is provided with a connecting block 302. The inner end of the connecting block 302 is provided with a connecting rod 303. The connecting block 302 is a hollow structure. The connecting rod 303 is embedded in the hollow structure inside the connecting block 302.

[0039] The inner end of the connecting rod 303 is provided with a clamping block 304, and the inner end face of the clamping block 304 may be provided with a rubber pad or a sponge pad.

[0040] Four clamping blocks made of 304 stainless steel are arranged in a square shape.

[0041] The bottom of the sensor is placed on the surface of the clamping plate 3. The control link 303 slides inside the connecting block 302, thereby driving the clamping block 304 to work. The clamping block 304 clamps the bottom of the sensor to prevent the sensor from shifting.

[0042] The implementation principle of this utility model is as follows: First, the sensor is placed on the surface of the clamping seat 2, and the slider 106 is controlled to drive the clamping seat 2 to rise. The sensor is detected by the detection head 112. At the same time, the motor 103 is controlled to drive the detection head 112 to move on the surface of the screw 109, thereby achieving the detection of different positions of the sensor.

[0043] The above are merely preferred embodiments of the present utility model and are not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. An inspection apparatus for the production of photoelectric sensors, comprising a main body (1), characterized in that: The bottom four corners of the main body (1) are provided with universal wheels (101), the front of the main body (1) is provided with a control panel (102), the top of the main body (1) is provided with a motor (103), the inside of the main body (1) is provided with a sliding groove one (104) on the left and right sides, the inside of the two sliding grooves (104) is provided with a screw one (105), the surface of the screw one (105) is provided with a sliding block (106), the two sliding blocks (106) are provided with a connecting plate (107) between them, the upper surface of the connecting plate (107) is provided with a clamping seat (2), the inside of the main body (1) is provided with a sliding groove two (108) on the top, the inside of the sliding groove two (108) is provided with a screw two (109), the surface of the screw two (109) is provided with a connecting shaft (110), the bottom of the connecting shaft (110) is provided with a universal ball (111), and the bottom of the universal ball (111) is provided with a detection head (112).

2. The detection apparatus for the production of photoelectric sensors according to claim 1, characterized in that: The clamping seat (2) is arranged in a whole U shape, the left and right sides of the clamping seat (2) are provided with an electric telescopic rod (201), the inside of the two electric telescopic rods (201) is provided with a clamping plate (202), and the two clamping plates (202) are arranged in an axisymmetric manner.

3. The detection apparatus for the production of photoelectric sensors according to claim 2, characterized in that: The inside of the clamping plate (202) is provided with an embedded groove (203) in the middle, the inside of the embedded groove (203) is provided with a spring (204) on the top and the bottom, the other end of the spring (204) is provided with a protective plate (205), and the protective plate (205) can be made of soft material.

4. The detection apparatus for photoelectric sensor production according to claim 2, wherein: The upper surface of the clamping seat (2) is provided with a clamping disc (3) between the two electric telescopic rods (201).

5. The detection apparatus for the production of photoelectric sensors according to claim 4, characterized in that: The upper surface of the clamping disc (3) is provided with a fixed seat (301) at equal distances, the inner end of the fixed seat (301) is provided with a connecting block (302), the inner end of the connecting block (302) is provided with a connecting rod (303), the connecting block (302) is a hollow structure, and the connecting rod (303) is embedded in the hollow structure inside the connecting block (302).

6. The detection apparatus for the production of photoelectric sensors according to claim 5, characterized in that: The inner end of the connecting rod (303) is provided with a clamping block (304), and the inner end face of the clamping block (304) can be provided with a rubber pad or a sponge pad.

7. The detection apparatus for the production of photoelectric sensors according to claim 6, characterized in that: The four clamping blocks (304) are arranged in a square shape.