Sensor mounting and adjusting base

By designing the sensor installation adjustment base and using the motor drive adjustment mechanism and fixing mechanism, the problems of inconvenient installation and cumbersome disassembly of sensors are solved, rapid installation and disassembly are achieved, and the scope of application and practicality are improved.

CN222865958UActive Publication Date: 2025-05-13HEFEI HENGXINJI ELECTRONICS CO LTD
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Patent Information

Application Number
CN202421784917.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-26
Publication Date
2025-05-13
Estimated Expiration
2034-07-26

AI Technical Summary

Technical Problem

The existing sensor installation method is inconvenient to adjust the installation position, has poor usage effect, and the disassembly and installation process is cumbersome and time-consuming.

Method used

A sensor installation and adjustment base is designed, including a mounting plate, a fixing plate, a fixing shell, a motor and an adjustment mechanism. By driving the adjustment mechanism and a fixing mechanism, the sensor can be quickly installed and removed and adapted to sensors of different sizes.

Benefits of technology

It realizes rapid installation and disassembly of sensors, improves flexibility and scope of installation and adjustment, simplifies the installation and disassembly process, and improves practicality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of sensors, in particular to a sensor installation adjusting base which comprises an installation plate, threaded holes are formed in the four corners of the installation plate, a fixing plate is fixedly connected to the top of the installation plate, and a fixing shell is fixedly connected to the top of one side of the fixing plate. According to the device, the fixing mechanism is arranged on the adjusting mechanism in a matched mode, the squeezing plate and the rubber pad are made to move by starting the fourth motor, and the connecting shell, the squeezing plate and the rubber pad are made to move to proper positions by starting the third motor; the sensor can be conveniently extruded and fixed by utilizing a plurality of extrusion plates and rubber pads which are moved to proper positions, so that the sensor can be quickly mounted and fixed, the sensor can be quickly dismounted, and the sensor can be quickly mounted and dismounted by adjusting the positions of the plurality of extrusion plates and the rubber pads. Therefore, the fixing mechanism can mount and fix sensors of different sizes, and the application range of the sensor mounting and adjusting base is widened.
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Description

Technical Field

[0001] The utility model relates to the technical field of sensors, in particular to a sensor installation and adjustment base. Background Art

[0002] A sensor is a detection device that senses the information being measured and, according to certain rules, converts this information into an electrical signal or other desired form of information output to meet requirements for information transmission, processing, storage, display, recording, and control. Sensors are characterized by miniaturization, digitization, intelligence, multifunctionality, systematization, and networking. They are the primary link in achieving automatic detection and control. Existing sensors are generally fixed directly with fasteners, making it difficult to readjust the installation position after fixation, resulting in poor performance. Disassembly and installation require a large number of tools, and the disassembly and installation process is cumbersome, time-consuming, and labor-intensive. Utility Model Content

[0003] The purpose of the present utility model is to provide a sensor installation and adjustment base to solve the problems raised in the above background technology.

[0004] To achieve the above objectives, the present invention provides the following technical solutions:

[0005] A sensor mounting and adjustment base includes a mounting plate, wherein threaded holes are provided at the four corners of the mounting plate, the top of the mounting plate is fixedly connected to a fixing plate, the top of one side of the fixing plate is fixedly connected to a fixing shell, and an inner side wall of the fixing shell is fixedly connected to motor 1, the output end of motor 1 passes through the side wall of the fixing plate and extends to the other side of the fixing plate, the output end of motor 1 is fixedly connected to an adjustment mechanism, and the adjustment mechanism is matched with a fixing mechanism.

[0006] Furthermore, the adjustment mechanism includes a circular shell, one side of the circular shell is fixedly connected to the output end of motor 1, and a rectangular hole is opened in the middle position of the other side of the circular shell, a screw rod 1 is provided inside the circular shell, one end of the screw rod 1 is fixedly connected to a connecting block, and one end of the connecting block is rotatably connected to the inner side wall of the circular shell, the outer side of the screw rod 1 is screwed and connected to a moving block, and one end of the moving block is slidably connected to the rectangular hole, a connecting plate is fixedly connected to the inside of the circular shell, one side of the connecting plate is fixedly connected to motor 2, and the output end of motor 2 is fixedly connected to a rotating rod, the outer side walls of the rotating rod and the connecting block are both sleeved and fixed with pulleys, and a belt is connected for transmission between the two pulleys.

[0007] Preferably, the outer diameter of the connecting block is larger than the outer diameter of the screw rod, and the outer diameter of the connecting block is the same as the outer diameter of the rotating rod.

[0008] Furthermore, the fixing mechanism includes a rectangular shell, one side of the rectangular shell is fixedly connected to one end of the moving block, a connecting hole is opened at the middle position of the other side of the rectangular shell, an inner side wall of the rectangular shell is fixedly connected to motor three, the output end of motor three is fixedly connected to a bidirectional screw rod, and both ends of the bidirectional screw rod are screwed together with an L-shaped plate, the L-shaped plate is slidably connected to the connecting hole, and a limiting unit is provided on one side of the L-shaped plate.

[0009] Preferably, a support block is fixed by a knot at the middle position of the bidirectional screw rod, and one end of the support block is fixedly connected to the inner wall of the rectangular shell.

[0010] Preferably, the limiting unit includes a connecting shell, an arc-shaped notch is integrally formed at the middle position of one side of the connecting shell, and the other side of the connecting shell is fixedly connected to the L-shaped plate.

[0011] Preferably, the inner wall of the arc-shaped notch is evenly provided with a plurality of sliding through holes, and the interior of the sliding through holes is slidingly connected to an extrusion plate, one side of the extrusion plate is fixedly connected to a rubber pad, the top of the other side of the extrusion plate is provided with a wedge-shaped notch, and the bottom of the other side of the extrusion plate is provided with a placement groove, an inner side wall of the connecting shell is fixedly connected to the arc plate, an inner side wall of the placement groove is evenly provided with a plurality of compression springs, and one end of the compression spring is fixedly connected to one side of the arc plate, an inner side wall of the connecting shell is fixedly connected to motor four, and the output end of motor four is fixedly connected to screw two, the outer side of screw two is screwed and connected to a push plate, and the push plate is slidably connected to the interior of the connecting shell, and the push plate is in extrusion contact with the wedge-shaped notch.

[0012] Compared with the prior art, the beneficial effects of the present invention are:

[0013] 1. A fixing mechanism is provided on the adjustment mechanism, and by starting motor four, the extrusion plate and the rubber pad are moved, and by starting motor three, the connecting shell, the extrusion plate and the rubber pad are moved to appropriate positions. The multiple extrusion plates and rubber pads moved to appropriate positions are used to squeeze and fix the sensor, thereby quickly installing and fixing the sensor, and the sensor can be quickly disassembled. By adjusting the positions of the multiple extrusion plates and rubber pads, the fixing mechanism can install and fix sensors of different sizes, thereby improving the applicability of the sensor installation and adjustment base. Then, by starting motor two, the moving block is moved, thereby moving the fixing mechanism and the sensor. By starting motor one, the motor one is used to drive the adjustment mechanism to rotate, thereby facilitating the adjustment of the position of the fixing mechanism and the sensor, thereby enabling the sensor to move to an appropriate position, thereby improving the practicality of the sensor installation and adjustment base. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1It is a schematic diagram of the overall structure of the utility model;

[0015] Figure 2 This is a schematic diagram of the adjustment mechanism structure in the utility model;

[0016] Figure 3 This is a schematic diagram of the fixing mechanism structure in the utility model;

[0017] Figure 4 This is a schematic diagram of the structure of the limiting unit in the utility model;

[0018] Figure 5 This is a schematic diagram of the positional relationship between the extrusion plate and the compression spring in the present utility model;

[0019] Figure 6 It is a schematic diagram of the connecting shell structure in the utility model.

[0020] In the figure: 100, mounting plate; 101, threaded hole; 110, fixing plate; 120, fixing shell; 130, motor 1; 200, adjustment mechanism; 210, round shell; 211, rectangular hole; 220, connecting plate; 230, motor 2; 231, rotating rod; 240, screw 1; 250, connecting block; 260, pulley; 270, belt; 280, moving block; 300, fixing mechanism; 310, rectangular shell; 311, Connecting hole; 320, motor three; 330, support block; 340, bidirectional screw; 350, L-shaped plate; 360, limit unit; 361, connecting shell; 3611, arc-shaped notch; 3612, sliding hole; 362, motor four; 363, screw two; 364, push plate; 365, arc-shaped plate; 366, extrusion plate; 3661, wedge-shaped notch; 3662, placement slot; 367, compression spring; 368, rubber pad. DETAILED DESCRIPTION

[0021] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described 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.

[0022] See also Figure 1-6In an embodiment of the present invention, a sensor mounting and adjustment base includes a mounting plate 100, and threaded holes 101 are opened at the four corners of the mounting plate 100. The top of the mounting plate 100 is fixedly connected to a fixing plate 110, and the top of one side of the fixing plate 110 is fixedly connected to a fixing shell 120, and an inner side wall of the fixing shell 120 is fixedly connected to a motor 130. The output end of the motor 130 passes through the side wall of the fixing plate 110 and extends to the other side of the fixing plate 110. The output end of the motor 130 is fixedly connected to an adjustment mechanism 200, and the adjustment mechanism 200 is equipped with a fixing mechanism 300.

[0023] Specifically, by placing the sensor mounting and adjusting base at an appropriate position and using the fixing bolts and threaded holes 101 together, the sensor mounting and adjusting base can be quickly installed, and the fixing mechanism 300 can be used to fix the sensor, and sensors of different sizes can be installed and fixed. The adjustment mechanism 200 can be used to adjust the position of the fixing mechanism 300 and the sensor, and by starting the motor 130, the motor 130 can be used to drive the adjustment mechanism 200 to rotate, thereby facilitating the adjustment of the position of the fixing mechanism 300 and the sensor, and thus enabling the sensor to be moved to an appropriate position, thereby improving the practicality of the sensor mounting and adjusting base.

[0024] Example 1

[0025] like Figure 1-2 As shown, in this embodiment, the adjustment mechanism 200 includes a circular shell 210, one side of the circular shell 210 is fixedly connected to the output end of the motor 130, and a rectangular hole 211 is opened in the middle position of the other side of the circular shell 210. A screw 240 is provided inside the circular shell 210, and one end of the screw 240 is fixedly connected to a connecting block 250, and one end of the connecting block 250 is rotatably connected to the inner side wall of the circular shell 210, and the outer side of the screw 240 is screwed and connected to a moving block 280, and one end of the moving block 280 is screwed to the inner side wall of the circular shell 210. The rectangular hole 211 is slidably connected, and a connecting plate 220 is fixedly connected to the inside of the circular shell 210. Motor 2 230 is fixedly connected to one side of the connecting plate 220, and the output end of motor 230 is fixedly connected to a rotating rod 231. The outer walls of the rotating rod 231 and the connecting block 250 are both sleeved and fixed with pulleys 260, and a belt 270 is connected for transmission between the two pulleys 260. The outer diameter of the connecting block 250 is larger than the outer diameter of the screw 1 240, and the outer diameter of the connecting block 250 is the same as the outer diameter of the rotating rod 231.

[0026] In this embodiment, by starting motor 230, motor 230 is used to drive the rotating rod 231 to rotate, and the two pulleys 260 and belt 270 are used in conjunction to rotate the connecting block 250, thereby rotating the screw 1 240, and one end of the moving block 280 is slidably connected to the rectangular hole 211, thereby moving the moving block 280, and then the fixing mechanism 300 and the sensor are moved to the appropriate position.

[0027] Example 2

[0028] On the basis of the first embodiment, in order to achieve the effect of rapid installation and removal of the sensor.

[0029] like Figure 1-6 As shown, in this embodiment, the fixing mechanism 300 includes a rectangular shell 310, one side of the rectangular shell 310 is fixedly connected to one end of the moving block 280, and a connecting hole 311 is opened in the middle position of the other side of the rectangular shell 310, an inner side wall of the rectangular shell 310 is fixedly connected to the motor three 320, the output end of the motor three 320 is fixedly connected to the bidirectional screw rod 340, and both ends of the bidirectional screw rod 340 are screwed and connected to the L-shaped plate 350, the L-shaped plate 350 is slidably connected to the connecting hole 311, and a limiting unit 360 is provided on one side of the L-shaped plate 350, a supporting block 330 is fixed at the middle position of the bidirectional screw rod 340, and one end of the supporting block 330 is fixed to the inner side wall of the rectangular shell 310, the limiting unit 360 includes a connecting shell 361, an arc-shaped notch 3611 is integrally formed at the middle position of one side of the connecting shell 361, the other side of the connecting shell 361 is fixedly connected to the L-shaped plate 350, and the arc-shaped notch The inner wall of the opening 3611 is evenly provided with a plurality of sliding through holes 3612, and the interior of the sliding through hole 3612 is slidably connected to an extrusion plate 366, one side of the extrusion plate 366 is fixedly connected to a rubber pad 368, the top of the other side of the extrusion plate 366 is provided with a wedge-shaped notch 3661, and the bottom of the other side of the extrusion plate 366 is provided with a placement groove 3662, an inner wall of the connecting shell 361 is fixedly connected to an arc plate 365, an inner wall of the placement groove 3662 is evenly provided with a plurality of compression springs 367, and one end of the compression spring 367 is fixedly connected to one side of the arc plate 365, an inner wall of the connecting shell 361 is fixedly connected to motor four 362, and the output end of motor four 362 is fixedly connected to screw two 363, the outer side of screw two 363 is screwed and connected to the push plate 364, and the push plate 364 is slidably connected to the interior of the connecting shell 361, and the push plate 364 is in extrusion contact with the wedge-shaped notch 3661.

[0030] In a specific implementation, the sensor is placed between the two limit units 360, and by starting the fourth motor 362, the fourth motor 362 is used to drive the second screw 363 to rotate, so that the push plate 364 is moved, and the moving push plate 364 will squeeze and contact the multiple wedge-shaped notches 3661, and then the moved push plate 364 is used to push the extrusion plate 366 and the rubber pad 368 to move, and by starting the third motor 320, the third motor 320 is used to drive the bidirectional screw 340 to rotate, so that the two L-shaped plates 350 are moved, so that the connecting shell 361, the extrusion plate 366 and the rubber pad 368 are moved to the appropriate position, and the multiple extrusion plates 366 and rubber pads 368 moved to the appropriate position are used to squeeze and fix the sensor, and then the sensor is quickly installed and fixed, and the sensor can be quickly disassembled, and by adjusting the positions of the multiple extrusion plates 366 and rubber pads 368, the fixing mechanism 300 can install and fix sensors of different sizes, thereby improving the applicability of the sensor installation and adjustment base.

[0031] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the present invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the present invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be encompassed within the present invention. Any reference sign in a claim should not be construed as limiting the claim to which it relates.

[0032] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.

Claims

1. A sensor mounting and adjusting base, comprising a mounting plate (100), characterized in that: Threaded holes (101) are provided at four corners of the mounting plate (100); a fixing plate (110) is fixedly connected to the top of the mounting plate (100); a fixing shell (120) is fixedly connected to the top of one side of the fixing plate (110); a motor 1 (130) is fixedly connected to an inner side wall of the fixing shell (120); an output end of the motor 1 (130) passes through the side wall of the fixing plate (110) and extends to the other side of the fixing plate (110); an adjustment mechanism (200) is fixedly connected to the output end of the motor 1 (130); and a fixing mechanism (300) is matched with the adjustment mechanism (200).

2. A sensor mounting and adjusting base according to claim 1, characterized in that: The adjustment mechanism (200) comprises a round shell (210), one side of the round shell (210) is fixedly connected to the output end of the motor (130), a rectangular hole (211) is provided at the middle position of the other side of the round shell (210), a screw (240) is arranged inside the round shell (210), one end of the screw (240) is fixedly connected to a connecting block (250), and one end of the connecting block (250) is rotatably connected to the inner side wall of the round shell (210), and the outer side of the screw (240) is screwed to the outer side wall of the round shell (210). A moving block (280) is connected, and one end of the moving block (280) is slidably connected to the rectangular hole (211); a connecting plate (220) is fixedly connected to the inside of the circular shell (210); a second motor (230) is fixedly connected to one side of the connecting plate (220); and a rotating rod (231) is fixedly connected to the output end of the second motor (230); a pulley (260) is sleeved and fixedly connected to the outer side wall of the rotating rod (231) and the connecting block (250); and a belt (270) is connected between the two pulleys (260) for transmission.

3. A sensor installation and adjustment base according to claim 2, characterized in that: The outer diameter of the connecting block (250) is greater than the outer diameter of the screw rod (240), and the outer diameter of the connecting block (250) is the same as the outer diameter of the rotating rod (231).

4. A sensor installation and adjustment base according to claim 1, characterized in that: The fixing mechanism (300) comprises a rectangular shell (310), one side of the rectangular shell (310) is fixedly connected to one end of the moving block (280), a connecting hole (311) is provided at the middle position of the other side of the rectangular shell (310), an inner side wall of the rectangular shell (310) is fixedly connected to a motor three (320), an output end of the motor three (320) is fixedly connected to a bidirectional screw rod (340), and both ends of the bidirectional screw rod (340) are screwedly connected to an L-shaped plate (350), the L-shaped plate (350) is slidably connected to the connecting hole (311), and a limiting unit (360) is provided on one side of the L-shaped plate (350).

5. A sensor installation and adjustment base according to claim 4, characterized in that: A support block (330) is fixedly fastened to the middle position of the bidirectional screw rod (340), and one end of the support block (330) is fixedly connected to the inner wall of the rectangular shell (310).

6. A sensor installation and adjustment base according to claim 4, characterized in that: The limiting unit (360) comprises a connecting shell (361), an arc-shaped notch (3611) is integrally formed at the middle position of one side of the connecting shell (361), and the other side of the connecting shell (361) is fixedly connected to the L-shaped plate (350).

7. A sensor installation and adjustment base according to claim 6, characterized in that: The inner side wall of the arc-shaped notch (3611) is evenly provided with a plurality of sliding through holes (3612), and the interior of the sliding through hole (3612) is slidably connected with an extrusion plate (366), one side of the extrusion plate (366) is fixedly connected with a rubber pad (368), the top of the other side of the extrusion plate (366) is provided with a wedge-shaped notch (3661), and the bottom of the other side of the extrusion plate (366) is provided with a placement groove (3662), an inner side wall of the connecting shell (361) is fixedly connected with an arc-shaped plate (365), and the placement groove (366 2) is evenly provided with a plurality of compression springs (367), and one end of the compression spring (367) is fixedly connected to one side of the arc plate (365), an inner side wall of the connecting shell (361) is fixedly connected to a motor four (362), and the output end of the motor four (362) is fixedly connected to a screw rod two (363), the outer side of the screw rod two (363) is screwed and connected to a push plate (364), and the push plate (364) is slidably connected to the inside of the connecting shell (361), and the push plate (364) is in extrusion contact with the wedge-shaped notch (3661).