A high-efficiency monitoring platform

By combining high-efficiency monitoring components, reciprocating drive components, and limit components, the problems of small monitoring range and low efficiency are solved, enabling multi-directional rotation and reciprocating movement of the camera, expanding the monitoring range and improving monitoring efficiency.

CN117108863BActive Publication Date: 2026-02-06扬州智能科技有限公司
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Patent Information

Application Number
CN202310875735.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-07-17
Publication Date
2026-02-06
Estimated Expiration
2043-07-17

AI Technical Summary

Technical Problem

Existing high-efficiency monitoring platforms have a small monitoring range and low monitoring efficiency.

Method used

It adopts a combination design of high-efficiency monitoring components, reciprocating drive components and limit components. The camera's rotation and reciprocating movement are realized through the meshing of the drive motor and transmission gears. Combined with the sliding frame design of the limit components, the monitoring range is expanded and the monitoring efficiency is improved.

Benefits of technology

It enables multi-directional rotation and reciprocating movement of surveillance cameras, expanding the monitoring range and improving monitoring efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application belongs to the technical field of monitoring equipment, and particularly relates to an efficient monitoring platform to solve the technical problem of small monitoring range and low monitoring efficiency, which comprises an efficient monitoring assembly, a reciprocating driving assembly and a limiting assembly, the efficient monitoring assembly is connected with the driving assembly, the driving assembly is connected with the limiting assembly, the reset spring A drives the hinged push rod two to move in opposite directions, then the hinged push rod two drives the rotating support and the cooperating rotating wheel to move, so that the cooperating rotating wheel moves in the opposite direction, and the direction changing of the monitoring camera along the A-axis direction is realized; meanwhile, the rotating wheel is manually rotated, then the hinged connecting rod one is driven to move by the rotating wheel, then the limiting sliding frame is driven to move by the hinged connecting rod one, so that the distance between the two limiting sliding frames changes, and the monitoring range of the monitoring camera is further expanded, and the monitoring efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The present application belongs to the technical field of monitoring equipment, and particularly relates to a high-efficiency monitoring platform. BACKGROUND

[0002] The high-efficiency monitoring platform is a commonly used device in the technical field of monitoring equipment, but the monitoring range of the general high-efficiency monitoring platform is relatively small, and the monitoring efficiency is low. SUMMARY

[0003] The present application aims to provide a high-efficiency monitoring platform to solve the technical problem of small monitoring range and low monitoring efficiency.

[0004] To achieve the above-mentioned purpose, the specific technical scheme of the high-efficiency monitoring platform is as follows:

[0005] The high-efficiency monitoring platform comprises a high-efficiency monitoring assembly, a reciprocating driving assembly and a limiting assembly, wherein the high-efficiency monitoring assembly is connected with the driving assembly, and the driving assembly is connected with the limiting assembly.

[0006] Further, the high-efficiency monitoring assembly comprises a mounting outer frame, a driving motor one, a monitoring camera, a camera rotating column, a transmission bevel gear one, an inner end rotating frame, a transmission bevel gear two and a driving motor two, the driving motor one is mounted on the mounting outer frame, the output shaft of the driving motor one is fixedly connected with the inner end rotating frame, the inner end rotating frame is rotatably mounted on the mounting outer frame, the camera rotating column is rotatably mounted on the inner end rotating frame, the monitoring camera is fixedly mounted on one end of the camera rotating column, the transmission bevel gear two is engaged with the transmission bevel gear one for transmission, the transmission bevel gear two is fixedly mounted on the output shaft of the driving motor two, and the driving motor two is mounted on the mounting outer frame.

[0007] Further, the reciprocating drive assembly comprises a sliding support, a limiting push rod 1, a limiting slide column 1, a limiting push spring 1, a sliding limiting plate 1, a limiting push rod 2, a limiting slide column 2, a sliding limiting plate 2, a limiting push spring 2, a hinged push rod 1, a hinged push rod 2, a reset tension spring A, a limiting connecting block, a limiting block 1, a limiting block 2, a rotating support, a matched rotating wheel, a rotating shaft 1, a pulley 1, a connecting belt, a pulley 2, a bevel gear rotating shaft, a bevel gear A, a bevel gear B, a driving motor 3 and a rectangular sliding frame, the limiting slide column 1 is slidably installed on the sliding support, one end of the limiting slide column 1 is fixedly installed with the limiting push rod 1, the other end of the limiting slide column 1 is fixedly installed with the sliding limiting plate 1, the limiting push spring 1 is arranged between the limiting push rod 1 and the sliding support, the limiting push spring 1 is sleeved on the limiting push rod 1, the limiting slide column 2 is slidably installed on the sliding support, one end of the limiting slide column 2 is fixedly installed with the sliding limiting plate 2, the other end of the limiting slide column 2 is fixedly installed with the limiting push rod 2, the limiting push spring 2 is arranged between the limiting push rod 2 and the sliding support, and the limiting push spring 2 is sleeved on the limiting slide column 2, the hinged push rod 1 is hingedly installed on the hinged push rod 2, the reset tension spring A is connected between the hinged push rod 2 and the hinged push rod 1, the limiting connecting block is fixedly installed on the sliding support, the limiting block 1 and the limiting block 2 are simultaneously installed on the limiting connecting block, the hinged push rod 2 is attached to the limiting block 1 or the limiting block 2, the rotating support is fixedly installed on the hinged push rod 2, the rotating shaft 1 is rotatably installed on the rotating support, the matched rotating wheel is fixedly installed on the rotating shaft 1, the pulley 1 is fixedly installed on the rotating shaft 1, the bevel gear rotating shaft is rotatably installed on the rotating support, the pulley 2 is fixedly installed on one end of the bevel gear rotating shaft, the bevel gear A is fixedly installed on the other end of the bevel gear rotating shaft, the connecting belt is arranged between the pulley 1 and the pulley 2, the bevel gear A meshes with the bevel gear B in transmission, the bevel gear B is installed on the output shaft of the driving motor 3, the driving motor 3 is installed on the rotating support, the rectangular sliding frame is fixedly installed on the lower end of the rotating support, and the sliding support is fixedly connected with the installation frame.

[0008] Further, the limiting assembly comprises a limiting sliding frame, a limiting bearing plate, a base frame, a hinged connecting rod 1, a rotating wheel, a track plate, a middle end slide column, a middle end slide column push spring, an inner end slide rod and a rotating column, the limiting sliding frame is slidably installed on the inner end slide rod, the inner end slide rod is fixedly installed on the base frame, the rotating column is fixedly installed on the base frame, the rotating wheel is rotatably installed on the rotating column, one end of the hinged connecting rod 1 is hingedly installed on the rotating wheel, the other end of the hinged connecting rod 1 is hingedly installed on the limiting sliding frame, the limiting bearing plate is fixedly installed on the limiting sliding frame, a rectangular waist groove A is formed in the limiting bearing plate, the rectangular waist groove A and the rotating support are in sliding limiting cooperation, the matched rotating wheel meshes with the track plate in transmission, the track plate is fixedly connected with the middle end slide column, the middle end slide column is slidably installed on the limiting sliding frame, and the middle end slide column push spring is arranged between the track plate and the limiting sliding frame.

[0009] The present application has the advantages of:

[0010] 1. Start driving motor one, and then drive the camera rotating column through the inner end rotating frame, and then drive the monitoring camera through the camera rotating column, and then conveniently adjust the rotating position of the monitoring camera around the A axis; at the same time, start driving motor two, and then drive the camera rotating column to rotate around the C axis through the meshing transmission of transmission bevel gear two and transmission bevel gear one, and then conveniently change the rotating position of the monitoring camera around the C axis;

[0011] 2. Under the driving of the sliding limiting plate one or the sliding limiting plate two, the hinged push rod one is attached to the limiting push rod one or the limiting push rod two under the action of the reset tension spring A, and the hinged push rod two is attached to the limiting block one or the limiting block two, and then the rotating support is driven to rotate through the hinged push rod two, and then the rotating direction of the rotating wheel is adjusted through the rotating support, and then the sliding support is reciprocated along the A axis direction through the limiting assembly, and then the installation outer frame and the monitoring camera are reciprocated along the A axis direction, and then the monitoring range of the monitoring camera is increased, and efficient monitoring is realized; start driving motor three, and then drive the bevel gear B through the driving motor three, and then drive the bevel gear shaft to rotate through the meshing transmission between the bevel gear B and the bevel gear A, and then drive the belt pulley two to move through the connecting belt, and then drive the belt pulley one to move through the connecting belt, and then drive the rotating shaft one and the cooperating rotating wheel to rotate simultaneously through the belt pulley one, and then make the sliding support reciprocate along the A axis direction through the cooperation of the cooperating rotating wheel and the limiting assembly;

[0012] 3. When the sliding limiting plate one or the sliding limiting plate two is attached to the limiting sliding bracket, the force drives the hinged push rod one to move in the opposite direction, and then the hinged push rod two is driven to move in the opposite direction through the reset tension spring A, and then the rotating support and the cooperating rotating wheel are driven to move through the hinged push rod two, so that the cooperating rotating wheel moves in the opposite direction, and then the monitoring camera reciprocates along the A axis direction; at the same time, manually rotate the rotating wheel, and then drive the hinged connecting rod one to move through the rotating wheel, and then drive the limiting sliding bracket to move through the hinged connecting rod one, so that the distance between the two limiting sliding brackets changes, and then the monitoring range of the monitoring camera is further expanded, and the efficiency of monitoring is improved. BRIEF DESCRIPTION OF DRAWINGS

[0013] Figure 1 The overall structure of the present application is shown Figure 1 ;

[0014] Figure 2 The overall structure of the present application is shown Figure 2 ;

[0015] Figure 3 is a cross-sectional line position diagram Figure 1 ;

[0016] Figure 4 Figure 1 is a schematic diagram of the high-efficiency monitoring assembly structure of the present application; Figure 3 Figure 2 is a sectional view along the A-A section of Figure 1;

[0017] Figure 5 Figure 3 is a schematic diagram of the high-efficiency monitoring assembly structure of the present application; Figure 3 Figure 4 is a sectional view along the B-B section of Figure 3;

[0018] Figure 6 Figure 5 is a schematic diagram of the high-efficiency monitoring assembly structure of the present application;

[0019] Figure 7 Figure 6 is a schematic diagram of the high-efficiency monitoring assembly structure of the present application; Figure 6 Figure 7 is a schematic diagram of the sectional line position of Figure 6;

[0020] Figure 8 Figure 8 is a sectional view along the C-C section of Figure 7; Figure 7

[0021] Figure 9 is a schematic diagram of the high-efficiency monitoring assembly structure of the present application; Figure 9

[0022] Figure 10 is a schematic diagram of the high-efficiency monitoring assembly structure of the present application; Figure 10 Figure 11 is a schematic diagram of the sectional line position of Figure 10; Figure 9

[0023] Figure 12 is a sectional view along the D-D section of Figure 11; Figure 11 Figure 10 Figure 13 is a schematic diagram of the high-efficiency monitoring assembly structure of the present application;

[0024] Figure 12 Figure 14 is a schematic diagram of the high-efficiency monitoring assembly structure of the present application;

[0025] Figure 13 Figure 12 Figure 15 is a schematic diagram of the sectional line position of Figure 14;

[0026] Figure 14 Figure 16 is a sectional view along the E-E section of Figure 15; Figure 13

[0027] Figure 17 is a schematic diagram of the high-efficiency monitoring assembly structure of the present application; Figure 15

[0028] Figure 18 is a schematic diagram of the high-efficiency monitoring assembly structure of the present application; Figure 16 Figure 19 is a schematic diagram of the high-efficiency monitoring assembly structure of the present application;

[0029] Figure 20 is a schematic diagram of the high-efficiency monitoring assembly structure of the present application;

[0030] ​​High-efficiency monitoring component 1; mounting frame 1-1; drive motor 1-2; monitoring camera 1-3; camera rotating column 1-4; transmission bevel gear 1-5; inner end rotating frame 1-6; transmission bevel gear 2-7; drive motor 2-8; reciprocating drive component 2; sliding bracket 2-1; limit push rod 1-2-2; limit slide column 1-3; limit push spring 1-4; sliding limit plate 1-5; limit push rod 2-6; limit slide column 2-7; sliding limit plate 2-8; limit push spring 2-9; hinge push rod 1-10; hinge push rod 2-11; reset tension spring A2-12; limit connecting block 2-13; Limiting block one 2-14; Limiting block two 2-15; Rotating bracket 2-16; Matching rotating wheel 2-17; Rotating shaft one 2-18; Pulley one 2-19; ​​Connecting belt 2-20; Pulley two 2-21; Bevel gear rotating shaft 2-22; Bevel gear A 2-23; Bevel gear B 2-24; Drive motor three 2-25; Rectangular slide frame 2-26; Limiting assembly 3; Limiting sliding frame 3-1; Limiting bearing plate 3-2; Base frame 3-3; Hinge connecting rod one 3-4; Rotating wheel 3-5; Track plate 3-6; Middle sliding column 3-7; Middle sliding column push spring 3-8; Inner sliding rod 3-9; Rotating column 3-10. Detailed Implementation

[0031] The technical solution of the present invention will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0032] In the description of this invention, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing the invention and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0033] Example 1

[0034] like Figures 1-5 As shown, a high-efficiency monitoring platform includes a high-efficiency monitoring component 1, a reciprocating drive component 2, and a limit component 3. The high-efficiency monitoring component 1 is connected to the drive component 2, and the drive component 2 is connected to the limit component 3.

[0035] Example 2

[0036] likeFigures 6-8 As shown, the efficient monitoring assembly 1 comprises a mounting frame 1-1, a driving motor 1-2, a monitoring camera 1-3, a camera rotating column 1-4, a transmission bevel gear 1-5, an inner end rotating frame 1-6, a transmission bevel gear 2 1-7 and a driving motor 2 1-8, the driving motor 1-2 is mounted on the mounting frame 1-1, the output shaft of the driving motor 1-2 is fixedly connected with the inner end rotating frame 1-6, the inner end rotating frame 1-6 is rotatably mounted on the mounting frame 1-1, the camera rotating column 1-4 is rotatably mounted on the inner end rotating frame 1-6, one end of the camera rotating column 1-4 is fixedly mounted with the monitoring camera 1-3, the other end of the camera rotating column 1-4 is fixedly mounted with the transmission bevel gear 1-5, the transmission bevel gear 2 1-7 is in meshing transmission with the transmission bevel gear 1-5, the transmission bevel gear 2 1-7 is fixedly mounted on the output shaft of the driving motor 2 1-8, the driving motor 2 1-8 is mounted on the mounting frame 1-1, in this way, the driving motor 1-2 is started, then the camera rotating column 1-4 is driven to move by the inner end rotating frame 1-6, then the monitoring camera 1-3 is driven to move by the camera rotating column 1-4, then the rotating position of the monitoring camera 1-3 around the A axis is conveniently adjusted; at the same time, the driving motor 2 1-8 is started, then the camera rotating column 1-4 is driven to rotate around the C axis by the meshing transmission between the transmission bevel gear 2 1-7 and the transmission bevel gear 1-5, then the rotating position of the monitoring camera 1-3 around the C axis is conveniently changed.

[0037] Example 3

[0038] As Figures 9-11As shown, the reciprocating drive assembly 2 comprises a sliding bracket 2-1, a limiting push rod 2-2, a limiting slide column 2-3, a limiting push spring 2-4, a sliding limiting plate 2-5, a limiting push rod 2-6, a limiting slide column 2-7, a sliding limiting plate 2-8, a limiting push spring 2-9, a hinged push rod 2-10, a hinged push rod 2-11, a reset tension spring A 2-12, a limiting connecting block 2-13, a limiting block 2-14, a limiting block 2-15, a rotating bracket 2-16, a matching rotating wheel 2-17, a rotating shaft 2-18, a pulley 2-19, a connecting belt 2-20, a pulley 2-21, a bevel gear rotating shaft 2-22, a bevel gear A 2-23, a bevel gear B 2-24, a drive motor three 2-25, and a rectangular sliding frame 2-26. The sliding limiting plate 2-5 is fixedly installed on one end of the limiting slide column 2-3 which is slidably installed on the sliding bracket 2-1. The limiting push rod 2-2 is fixedly installed on the other end of the limiting slide column 2-3. The limiting push spring 2-4 is arranged between the limiting push rod 2-2 and the sliding bracket 2-1 and is sleeved on the limiting push rod 2-2. The sliding limiting plate 2-8 is fixedly installed on one end of the limiting slide column 2-7 which is slidably installed on the sliding bracket 2-1. The limiting push rod 2-6 is fixedly installed on the other end of the limiting slide column 2-7. The limiting push spring 2-9 is arranged between the limiting push rod 2-6 and the sliding bracket 2-1 and is sleeved on the limiting slide column 2-7. The hinged push rod 2-10 is hingedly installed on the hinged push rod 2-11. The reset tension spring A 2-12 is connected between the hinged push rod 2-11 and the hinged push rod 2-10. The limiting connecting block 2-13 is fixedly installed on the sliding bracket 2-1. The limiting block 2-14 and the limiting block 2-15 are simultaneously installed on the limiting connecting block 2-13. The hinged push rod 2-11 is attached to the limiting block 2-14 or the limiting block 2-15. The rotating bracket 2-16 is fixedly installed on the hinged push rod 2-11. The rotating shaft 2-18 is rotatably installed on the rotating bracket 2-16. The matching rotating wheel 2-17 is fixedly installed on the rotating shaft 2-18. The pulley 2-19 is fixedly installed on the rotating shaft 2-18. The bevel gear rotating shaft 2-22 is rotatably installed on the rotating bracket 2-16. The pulley 2-21 is fixedly installed on one end of the bevel gear rotating shaft 2-22. The bevel gear A 2-23 is fixedly installed on the other end of the bevel gear rotating shaft 2-22. The connecting belt 2-20 is arranged between the pulley 2-19 and the pulley 2-21. The bevel gear A 2-23 is in meshing transmission with the bevel gear B 2-24. The bevel gear B 2-24 is installed on the output shaft of the drive motor three 2-25. The drive motor three 2-25 is installed on the rotating bracket 2-16. The rectangular sliding frame 2-26 is fixedly installed on the lower end of the rotating bracket 2-16. The sliding bracket 2-1 is fixedly connected with the installation outer frame 1-1. In this way, under the drive of the sliding limiting plate 2-5 or the sliding limiting plate 2-8,The hinged push rod 2-10 is in contact with the limiting push rod 2-2 or the limiting push rod 2-6 under the action of the reset tension spring A2-12, the hinged push rod 2-11 is in contact with the limiting block 2-14 or the limiting block 2-15, the rotating support 2-16 is driven to rotate by the hinged push rod 2-11, the rotating wheel 2-17 is tilted by the rotating support 2-16, the sliding support 2-1 is reciprocated along the A-axis direction by the limiting assembly 3, the mounting outer frame 1-1 and the monitoring camera 1-3 are reciprocated along the A-axis direction, the monitoring range of the monitoring camera 1-3 is increased, efficient monitoring is realized, the driving motor three 2-25 is started, the bevel gear B2-24 is driven to move by the driving motor three 2-25, the bevel gear A2-23 is driven to rotate by the meshing transmission between the bevel gear B2-24 and the bevel gear A2-23, the bevel gear shaft 2-22 is driven to rotate, the connecting belt 2-20 is driven to move by the pulley two 2-21, the pulley one 2-19 is driven to move by the connecting belt 2-20, the rotating shaft one 2-18 and the rotating wheel 2-17 are driven to rotate simultaneously by the pulley one 2-19, the sliding support 2-1 is reciprocated along the A-axis direction by the cooperation of the rotating wheel 2-17 and the limiting assembly 3.

[0039] Example 4

[0040] As Figures 12-16As shown, the limiting assembly 3 comprises a limiting sliding frame 3-1, a limiting bearing plate 3-2, a chassis 3-3, a hinged connecting rod one 3-4, a rotating wheel 3-5, a track plate 3-6, a middle-end slide column 3-7, a middle-end slide column push spring 3-8, an inner-end slide rod 3-9 and a rotating column 3-10, the limiting sliding frame 3-1 is slidingly installed on the inner-end slide rod 3-9, the inner-end slide rod 3-9 is fixedly installed on the chassis 3-3, the rotating column 3-10 is fixedly installed on the chassis 3-3, the rotating wheel 3-5 is rotatably installed on the rotating column 3-10, the rotating wheel 3-5 is hingedly installed at one end of the hinged connecting rod one 3-4, the other end of the hinged connecting rod one 3-4 is hingedly installed on the limiting sliding frame 3-1, the limiting bearing plate 3-2 is fixedly installed on the limiting sliding frame 3-1, a rectangular waist groove A is formed in the limiting bearing plate 3-2, the rectangular waist groove A and the rotating support 2-16 are slidingly limited and matched, the matched rotating wheel 2-17 is engaged with the track plate 3-6 to transmit power, the track plate 3-6 is fixedly connected with the middle-end slide column 3-7, the middle-end slide column 3-7 is slidingly installed on the limiting sliding frame 3-1, the middle-end slide column push spring 3-8 is arranged between the track plate 3-6 and the limiting sliding frame 3-1, in this way, when the sliding limiting plate one 2-5 or the sliding limiting plate two 2-8 is attached to the limiting sliding frame 3-1, the force drives the hinged push rod one 2-10 to move in the opposite direction, then the hinged push rod two 2-11 is driven to move in the opposite direction through the reset tension spring A2-12, then the rotating support 2-16 and the matched rotating wheel 2-17 are driven to move through the hinged push rod two 2-11, so that the matched rotating wheel 2-17 moves in the opposite direction, thereby realizing the reversing of the reciprocating movement of the monitoring camera 1-3 along the A-axis direction; at the same time, the rotating wheel 3-5 is manually rotated, then the hinged connecting rod one 3-4 is driven to move through the rotating wheel 3-5, then the limiting sliding frame 3-1 is driven to move through the hinged connecting rod one 3-4, so that the distance between the two limiting sliding frames 3-1 changes, thereby further expanding the monitoring range of the monitoring camera 1-3, facilitating the improvement of the monitoring efficiency.

[0041] It can be understood that the present application is described by some embodiments, and those skilled in the art know that various changes or equivalent replacements can be made to these features and embodiments without departing from the spirit and scope of the present application. In addition, these features and embodiments can be modified to adapt to specific conditions and materials under the guidance of the present application without departing from the spirit and scope of the present application. Therefore, the present application is not limited by the specific embodiments disclosed herein, and all embodiments falling within the scope of the claims of the present application are within the scope of the present application.

Claims

1. An efficient monitoring platform comprising an efficient monitoring component (1), characterized in that, Also include reciprocating drive assembly (2) and limit component (3), the high efficiency monitoring assembly (1) is connected with drive assembly (2), drive assembly (2) is connected with limit component (3); The high efficiency monitoring assembly (1) includes installation outer frame (1-1), drive motor one (1-2), monitoring camera (1-3), camera rotating column (1-4), transmission bevel gear one (1-5), inner end rotating frame (1-6), transmission bevel gear two (1-7) and drive motor two (1-8), the drive motor one (1-2) is installed on the installation outer frame (1-1), the output shaft of drive motor one (1-2) is fixedly connected with inner end rotating frame (1-6), inner end rotating frame (1-6) is rotatably installed on installation outer frame (1-1), inner end rotating frame (1-6) is rotatably installed with camera rotating column (1-4), one end of camera rotating column (1-4) is fixedly installed with monitoring camera (1-3), the other end of camera rotating column (1-4) is fixedly installed with transmission bevel gear one (1-5), transmission bevel gear two (1-7) and transmission bevel gear one (1-5) are engaged transmission, transmission bevel gear two (1-7) is fixedly installed on the output shaft of drive motor two (1-8), drive motor two (1-8) is installed on installation outer frame (1-1); The reciprocating drive assembly (2) comprises a sliding support (2-1), a limiting push rod one (2-2), a limiting slide column one (2-3), a limiting push spring one (2-4), a sliding limiting plate one (2-5), a limiting push rod two (2-6), a limiting slide column two (2-7), a sliding limiting plate two (2-8), a limiting push spring two (2-9), a hinged push rod one (2-10), a hinged push rod two (2-11), a reset tension spring A (2-12), a limiting connecting block (2-13), a limiting block one (2-14), a limiting block two (2-15), a rotating support (2-16), a matching rotating wheel (2-17), a rotating shaft one (2-18), a pulley one (2-19), a connecting belt (2-20), a pulley two (2-21), a bevel gear rotating shaft (2-22), a bevel gear A (2-23), a bevel gear B (2-24), a drive motor three (2-25), and a rectangular sliding frame (2-26), the limiting slide column one (2-3) is slidably installed on the sliding support (2-1), one end of the limiting slide column one (2-3) is fixedly installed with the limiting push rod one (2-2), the other end of the limiting slide column one (2-3) is fixedly installed with the sliding limiting plate one (2-5), the limiting push spring one (2-4) is arranged between the limiting push rod one (2-2) and the sliding support (2-1), the limiting push spring one (2-4) is sleeved on the limiting push rod one (2-2), the limiting slide column two (2-7) is slidably installed on the sliding support (2-1), one end of the limiting slide column two (2-7) is fixedly installed with the sliding limiting plate two (2-8), the other end of the limiting slide column two (2-7) is fixedly installed with the limiting push rod two (2-6), the limiting push spring two (2-9) is arranged between the limiting push rod two (2-6) and the sliding support (2-1), and the limiting push spring two (2-9) is sleeved on the limiting slide column two (2-7), the hinged push rod one (2-10) is hingedly installed on the hinged push rod two (2-11), the reset tension spring A (2-12) is connected between the hinged push rod two (2-11) and the hinged push rod one (2-10), the limiting connecting block (2-13) is fixedly installed on the sliding support (2-1), and the limiting block one (2-14) and the limiting block two (2-15) are installed on the limiting connecting block (2-13) at the same time.

2. The high efficiency monitoring platform of claim 1, wherein, The articulated push rod two (2-11) is attached to the limiting block one (2-14) or the limiting block two (2-15), the articulated push rod two (2-11) is fixedly installed with a rotating support (2-16), the rotating support (2-16) is rotatably installed with a rotating shaft one (2-18), the rotating shaft one (2-18) is fixedly installed with a matching rotating wheel (2-17), the rotating shaft one (2-18) is fixedly installed with a pulley one (2-19), the rotating support (2-16) is rotatably installed with a bevel gear shaft (2-22), one end of the bevel gear shaft (2-22) is fixedly installed with a pulley two (2-21), the other end of the bevel gear shaft (2-22) is fixedly installed with a bevel gear A (2-23), the pulley one (2-19) and the pulley two (2-21) are provided with a connecting belt (2-20), the bevel gear A (2-23) is meshed with a bevel gear B (2-24), the bevel gear B (2-24) is installed on the output shaft of a driving motor three (2-25), the driving motor three (2-25) is installed on the rotating support (2-16), a rectangular sliding frame (2-26) is fixedly installed at the lower end of the rotating support (2-16), and the sliding support (2-1) is fixedly connected with the installation outer frame (1-1).

Citation Information

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