Device for analyzing intelligent video

By combining the design of the anti-damage cover and spring positioning plate with the deceleration step pad, the problems of easy damage to the interface module and loose pressing parts in the intelligent video analysis device are solved. This achieves dust and impact protection for the equipment, improves the user experience, extends the service life, and reduces production costs.

CN223681106UActive Publication Date: 2025-12-16SHANXI AIMU BIAI TECH CO LTD
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Patent Information

Application Number
CN202423071020.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-12
Publication Date
2025-12-16
Estimated Expiration
2034-12-12

AI Technical Summary

Technical Problem

The interface modules of existing intelligent video analysis devices accumulate dust due to long-term disuse and are susceptible to physical impact damage, resulting in decreased device performance and shortened lifespan. Furthermore, the reduced friction of the pressing parts leads to loosening and a poor user experience.

Method used

The design incorporates a damage-resistant cover and a spring-positioning plate combined with a deceleration pad. The movement of the pressing component drives the gear to rotate and the cover to shield against dust. The spring-positioning plate and deceleration pad also improve the stability of the pressing component and enhance user feedback.

Benefits of technology

It effectively prevents damage to interface modules, extends equipment lifespan, improves user experience and equipment stability, and reduces production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a device for analyzing an intelligent video, which relates to the technical field of video analysis equipment and comprises an analysis main body, a plurality of interface modules are arranged on the front side of the analysis main body, and a cover storage transverse groove is arranged on the front side of the analysis main body. The problems that a device for analyzing an intelligent video usually needs to be optimized and designed according to a specific video format, some modules which are not commonly used are idle for a long time, dust is accumulated on interfaces due to the long-term unused state, the performance of the interfaces is influenced, and the use cost is reduced are solved by adopting a mode of installing a damage prevention cover. In the case of poor contact or incapability of normal work when emergency use is needed, in the transportation process, the externally exposed interfaces are easily influenced by physical collision to cause damage or even complete failure, and once key interface parts are damaged, the function exertion of the whole equipment is directly influenced. And the maintenance cost is high, the consumed time is long, and finally the overall service life of the equipment is obviously shortened.
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Description

TECHNICAL FIELD

[0001] The utility model relates to video analysis equipment technical field especially relates to a device for analyzing intelligent video. BACKGROUND

[0002] The intelligent video analysis device is a device integrated with advanced video processing technology, which is used to extract useful information from video data. The device analyzes the video content through image recognition, pattern recognition and artificial intelligence algorithms and other technical means to realize various application functions. The intelligent video analysis device uses computer vision technology to recognize and classify images in video frames. This includes but is not limited to face recognition, license plate recognition, object detection, etc. By analyzing the motion trajectory and behavior pattern in the video stream, the intelligent video analysis device can identify abnormal behavior or specific events.

[0003] In the prior art, the device for analyzing intelligent video usually needs to be optimized and designed for specific video formats, which means that not all built-in interface modules will be frequently used. In actual application scenarios, only a part of the interface modules will be regularly accessed, while some other modules that are not frequently used will be idle for a long time. This long-term non-use state not only causes dust accumulation in these interfaces, affecting their performance, but also causes poor contact or failure to work normally when emergency use is required. During transportation, these externally exposed interfaces are also easily affected by physical impact, which may cause damage or even complete failure. Once the key interface components are damaged, it will directly affect the function of the entire device. Repairing is costly and time-consuming, which ultimately leads to a significant reduction in the overall service life of the device. UTILITY MODEL CONTENT

[0004] The utility model aims at solving the shortcomings in the prior art and provides a device for analyzing intelligent video.

[0005] In order to achieve the above object, the utility model discloses the following technical scheme: a device for analyzing intelligent video, including analysis main part, a plurality of interface modules are equipped on the analysis main part front, the analysis main part front is equipped with the storage cover horizontal groove, the analysis main part front is equipped with the press side groove, the press side groove inner wall is slidably connected with the pressing piece, the pressing piece peripheral surface is fixed with the interface module side, the pressing piece one end is fixed with the reset spring, the reset spring one end is fixed with the analysis main part inner wall, the analysis main part inner wall is fixed with the foundation stub, the interface module back is fixed with the block rear rack, the block rear rack tooth slot is engaged with the driven gear, the driven gear one side is fixed with the link column, the link column one end is fixed with the base rotary piece, the base rotary piece one side is rotatably connected with the mounting plate, the mounting plate one side is fixed with the analysis main part inner wall, the base rotary piece one end is fixed with the transmission telescopic link, the transmission telescopic link peripheral surface is equipped with the auxiliary telescopic spring, the transmission telescopic link one end is fixed with the card rotary piece, the card rotary piece inner wall is rotatably connected with the different diameter rotary piece, the different diameter rotary piece big diameter one end is rotatably connected with the mounting plate one side, the different diameter rotary piece peripheral surface is fixed with the bend connecting rod, the bend connecting rod one end is rotatably connected with the L type fixed plate, the L type fixed plate one side is fixed with the anti-damage cover.

[0006] Preferably, the peripheral surface of the pressing piece is provided with an arc-shaped groove, and the inner wall of the analysis main body is fixed with a spring positioning piece. In the prior art, after the pressing piece is pressed down, if only the friction between components is relied on to prevent further movement and maintain position, such design is often not stable enough. As the use time increases, the friction surface will become smooth due to wear, resulting in reduced friction. This makes the originally unstable pressing piece more prone to looseness. In addition, when considering the effect of the reset spring, the problem becomes more apparent. The reset spring is usually used to provide a rebound force to enable the pressing piece to automatically return to the original position after release. However, during long-term use, especially after the pressing piece has undergone repeated pressing operations, the contact points between it and the surrounding structure will gradually wear, thereby reducing the effective friction therebetween. As a result, the force exerted by the reset spring exceeds the already weakened friction, causing the pressing piece to pop out or shift on its own even without external force. This not only affects the user experience, making the user feel that the device is not running smoothly or is sluggish, but also improves the service life of the device.

[0007] Preferably, the inner wall of the analysis main body is fixed with a deceleration ladder pad, in the prior art, the physical properties of the spring positioning sheet, including its thickness, depth and the selected material, need to be carefully studied and considered during the design and manufacturing process of the product, because these parameters of the spring positioning sheet directly affect its positioning effect, and then affect the performance and user experience of the entire product, if the spring positioning sheet is designed to be thicker, although it can provide better positioning effect, making the damage prevention cover more stable when closed, but at the same time it will also bring some problems, when the user needs to open the damage prevention cover, due to the positioning effect of the spring positioning sheet being too strong, the pressing piece is difficult to rebound smoothly, causing the user to operate difficultly, and even damaging the pressing piece or related components, on the other hand, if the spring positioning sheet is designed to be thinner in order to improve the above problems, although it can reduce the difficulty of the pressing piece rebound, but when pressing the pressing piece, the positioning effect will become unstable, this instability will cause the damage prevention cover to loosen or shake, affecting the sealing and overall performance of the equipment, in addition, the unstable positioning effect also causes the user to feel unsatisfied during use, because they need to adjust or press repeatedly to achieve the expected effect, therefore, the manufacturer needs to find a balance point in the design of the spring positioning sheet, both to ensure sufficient positioning effect to maintain the stability and sealing of the damage prevention cover, and to consider the user's convenience and product durability, in order to achieve this goal, the manufacturer needs to invest more research and development resources to study and test different design schemes and material selection, which not only increases the production cost, but also requires a lot of time and effort to experiment and verify, in view of such problems, the utility model adopts the installation of the deceleration ladder pad to solve it, which realizes that the staff can appropriately reduce the strength of the fixing effect by reducing the thickness or length of the spring positioning sheet and other key size parameters, the purpose of this is that, during the process of the user pressing the pressing piece, when the pressing piece approaches the deceleration ladder pad, because the speed has been greatly reduced, it will give the spring positioning sheet more reaction time to adapt to the motion state of the pressing piece, at the same time, the design of the deceleration ladder pad also plays a key role, it not only can provide part of the additional fixing force to help stabilize the position of the pressing piece, but also can play an important role when the user needs to make the pressing piece rebound, by pressing the pressing piece again, the user can make the pressing piece temporarily leave the constraint range of the spring positioning sheet, and then release the hand, at this time, the return spring will quickly push the pressing piece to rebound to the original position, so that the spring positioning sheet cannot stop the pressing piece, achieving the effect of reducing production cost.

[0008] Preferably, the interface module is provided with a trapezoidal groove on both sides, and a limiting ladder piece is slidably connected in the inner wall of the trapezoidal groove, and the limiting ladder piece is fixed on one side of the analysis main body inner wall, which realizes the limitation of the movement track of the interface module, and achieves the effect of improving the service life of the equipment.

[0009] Preferably, the block rear rack top is fixed with a stable triangle, one side of the stable triangle is fixed with the interface module back, which improves the fixing effect between components and prolongs the service life of the equipment.

[0010] Preferably, the arc-shaped groove is provided with an upper shallow rectangular groove in the inner wall of one end, which reduces the friction between components and prolongs the service life of the equipment.

[0011] Preferably, the pressing member is provided with a ball pressing groove at the other end, which improves the user experience.

[0012] Beneficial effects:

[0013] 1. In the prior art, the device for analyzing intelligent video usually needs to be optimized and designed for specific video formats, which means that not all built-in interface modules will be frequently used. In actual application scenarios, only a part of the interface modules will be regularly accessed, while some other less frequently used modules will be idle for a long time. This long-term non-use state not only causes these interfaces to accumulate dust, affecting their performance, but also causes poor contact or failure to work normally when emergency use is required. In the transportation process, these externally exposed interfaces are also easily affected by physical collisions, which may cause damage or even complete failure. Once the key interface components are damaged, it will directly affect the function of the entire device. Repairing is costly and time-consuming, which ultimately shortens the overall service life of the device. To solve this problem, the utility model adopts the installation of a damage prevention cover, which realizes that when there are infrequently used interface modules in the analysis main body, the worker presses the pressing member to make the interface module move inward. The block rear rack engages the driven gear to rotate counterclockwise. The base rotating member and the transmission telescopic rod rotate counterclockwise. The transmission telescopic rod is stretched and telescoped according to the movement track of the different diameter rotating member, and is reset by the auxiliary telescopic spring. The different diameter rotating member rotates clockwise. The bent connecting rod pulls the damage prevention cover out of the storage cover transverse groove and shields the interface module, thereby achieving the effects of dust prevention and collision prevention and prolonging the service life of the equipment.

[0014] 2、In the prior art, if only rely on the friction between the components to prevent the continued movement and keep the position after the pressing piece is pressed, such design is often not stable enough, as the friction surface will become smooth due to wear over time, resulting in reduced friction, which makes the originally less stable pressing piece more prone to looseness, in addition, when considering the role of the reset spring, the problem is more obvious, the reset spring is usually used to provide a resilient force to enable the pressing piece to automatically return to the original position after release, however, during long-term use, especially after the pressing piece has experienced repeated pressing operations, the contact points between it and the surrounding structure will gradually wear, thereby reducing the effective friction therebetween, as a result, the force exerted by the reset spring exceeds the already weakened friction, so that the pressing piece pops out or shifts by itself even without external force, which not only affects the user experience, making the user feel that the device does not run smoothly or is sluggish, for such problems, the utility model solves the problem by installing a spring positioning sheet, realizing that when the user presses the pressing piece, the arc-shaped groove of the pressing piece reaches the spring positioning sheet, the spring positioning sheet releases the elastic potential energy and pops out, embeds into the arc-shaped groove to fix the pressing piece, and gives feedback to the staff, achieving the effects of improving user experience and improving the service life of the device.

[0015] 3、In the prior art, in the design and manufacturing process of a product, the physical characteristics of a spring positioning sheet, including its thickness, depth, and the material selected, need to be carefully researched and considered, because these parameters of the spring positioning sheet directly affect its positioning effect, and in turn affect the performance of the entire product and the user experience. If the spring positioning sheet is designed to be thicker, although it can provide better positioning effect, making the tamper-evident cover more stable when closed, it will also cause some problems. When the user needs to open the tamper-evident cover, due to the too strong positioning effect of the spring positioning sheet, the pressing piece is difficult to rebound smoothly, causing the user to have difficulty in operation, and even damaging the pressing piece or related components. On the other hand, if the spring positioning sheet is designed to be thinner in order to improve the above-mentioned problems, although it can reduce the difficulty of the pressing piece to rebound, when the pressing piece is pressed, the positioning effect will become unstable, which will cause the tamper-evident cover to loosen or shake, affecting the sealing performance and overall performance of the equipment. In addition, the unstable positioning effect also causes the user to feel unsatisfied during use, because they need to adjust or press repeatedly to achieve the desired effect. Therefore, manufacturers need to find a balance point in the design of the spring positioning sheet, which not only ensures sufficient positioning effect to maintain the stability and sealing performance of the tamper-evident cover, but also considers the user's convenience and the durability of the product. In order to achieve this goal, manufacturers need to invest more research and development resources to research and test different design schemes and material selection, which not only increases production costs, but also requires a lot of time and effort to conduct experiments and verification. In view of such problems, the utility model adopts the method of installing a deceleration ladder pad to solve the problem, which realizes that the staff can appropriately reduce the strength of the fixing effect of the spring positioning sheet by reducing the thickness or length of the key size parameters of the spring positioning sheet. The purpose of this is that, during the process of the user pressing the pressing piece, when the pressing piece approaches the deceleration ladder pad, the speed has been greatly reduced, which will give the spring positioning sheet more reaction time to adapt to the motion state of the pressing piece. At the same time, the design of the deceleration ladder pad also plays a key role. It not only provides part of the additional fixing force to help stabilize the position of the pressing piece, but also plays an important role when the user needs to make the pressing piece rebound. By pressing the pressing piece again, the user can make the pressing piece temporarily leave the constraint range of the spring positioning sheet, and then release the hand. At this time, the return spring will quickly push the pressing piece to rebound to the original position, so that the spring positioning sheet cannot stop the pressing piece, achieving the effect of reducing production costs. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 is a schematic view of the utility model's three-dimensional structure;

[0017] Figure 2 is a schematic view of the utility model's three-dimensional structure of the pressing side groove;

[0018] Figure 3 is a sectional view of the utility model's pressing piece;

[0019] Figure 4 It is the three-dimensional structure schematic view of the limit ladder piece of the utility model;

[0020] Figure 5 It is the three-dimensional structure schematic view of the L-shaped fixed plate of the utility model;

[0021] Figure 6 It is the sectional view of the spring positioning piece of the utility model.

[0022] Legend:

[0023] 1, analysis main body;101, interface module;2, cover horizontal groove;201, press side groove;202, pressing piece;203, reset spring;204, foundation short column;205, block rear rack;206, driven gear;207, connecting column;208, base rotating piece;209, mounting plate;2010, transmission telescopic rod;2011, auxiliary telescopic spring;2012, clamping rotating piece;2013, different diameter rotating piece;2014, bent connecting rod;2015, L-shaped fixed plate;2016, anti-damage cover;3, spring positioning piece;301, speed reducer ladder pad;4, limit ladder piece;5, stable triangle;6, upper shallow rectangular groove;7, press ball groove. DETAILED DESCRIPTION

[0024] In order to make the technical means, creation characteristics, purposes and effects realized by the utility model easy to understand, the utility model is further described below in combination with specific embodiments and drawings, but the following embodiments are only preferred embodiments of the utility model, not all. Based on the embodiments in the embodiments, other embodiments obtained by those skilled in the art without creative labor belong to the protection scope of the utility model.

[0025] The specific embodiments of the utility model are described below in combination with the drawings. Specific embodiments:

[0027] Reference Figures 1-6The utility model provides an analysis device for intelligent video, including analysis main part 1, a plurality of interface module 101 are equipped on analysis main part 1 front, the analysis main part 1 front is equipped with the storage cover horizontal groove 2, the analysis main part 1 front is equipped with press side groove 201, press side groove 201 inner wall slidingly connected with press piece 202, and press piece 202 peripheral surface is fixed with interface module 101 side, and press piece 202 one end is fixed with reset spring 203, and reset spring 203 one end is fixed with analysis main part 1 inner wall, and analysis main part 1 inner wall is fixed with base stub 204, and interface module 101 back is fixed with block rear rack 205, and block rear rack 205 tooth slot is engaged with driven gear 206, and driven gear 206 one side is fixed with link column 207, and link column 207 one end is fixed with base rotary piece 208, and base rotary piece 208 one side rotationally connected with mounting plate 209, and mounting plate 209 one side is fixed with analysis main part 1 inner wall, and base rotary piece 208 one end is fixed with transmission telescopic link 2010, and transmission telescopic link 2010 peripheral surface is equipped with auxiliary telescopic spring 2011, and transmission telescopic link 2010 one end is fixed with card rotary piece 2012, and card rotary piece 2012 inner wall rotationally connected with different diameter rotary piece 2013, and different diameter rotary piece 2013 large diameter one end is rotationally connected with mounting plate 209 one side, and different diameter rotary piece 2013 peripheral surface is fixed with bend connecting rod 2014, and bend connecting rod 2014 one end rotationally connected with L type fixed plate 2015, and L type fixed plate 2015 one side is fixed with anti-damage cover 2016. The peripheral surface of the press piece 202 is provided with an arc-shaped groove, and the inner wall of the analysis main part 1 is fixed with a spring positioning piece 3. After the press piece 202 is pressed down, if only relying on the friction force between the components to prevent it from continuing to move and maintain the position, such design is often not stable enough. As the use time increases, the friction surface will become smooth due to wear, resulting in a decrease in friction force, which makes the originally unstable press piece 202 more prone to looseness. In addition, when considering the role of the reset spring 203, the problem will be more obvious. The reset spring 203 is usually used to provide a rebound force to enable the press piece 202 to automatically return to the original position after release. However, during long-term use, especially after the press piece 202 has undergone repeated pressing operations, the contact points between it and the surrounding structure will gradually wear, thereby reducing the effective friction force between them. As a result, the force exerted by the reset spring 203 exceeds the already weakened friction force, causing the press piece 202 to automatically pop out or shift even without external force. This situation not only affects the user experience, making the user feel that the device is not running smoothly or is sluggish, but also solves the problem by installing the spring positioning piece 3. When the user presses the press piece 202, the arc-shaped groove of the press piece 202 reaches the spring positioning piece 3, the spring positioning piece 3 releases the elastic potential energy and pops out, the spring positioning piece 3 is embedded in the arc-shaped groove to fix the press piece 202, and feedback is given to the staff, thereby improving the user experience and the service life of the device.

[0028] The inner wall of the analysis main body 1 is fixed with a deceleration ladder pad 301. In the design and manufacturing process of the product, the physical properties of the spring positioning sheet 3, including its thickness, depth, and the selected material, need to be carefully researched and considered, because these parameters of the spring positioning sheet 3 directly affect its positioning effect, and then affect the performance and user experience of the entire product. If the spring positioning sheet 3 is designed to be thicker, although it can provide better positioning effect, making the damage-proof cover 2016 more stable when closed, it will also cause some problems. When the user needs to open the damage-proof cover 2016, due to the too strong positioning effect of the spring positioning sheet 3, the pressing piece 202 is difficult to rebound smoothly, causing the user to operate difficultly, and even damaging the pressing piece 202 or related components. On the other hand, if the spring positioning sheet 3 is designed to be thinner in order to improve the above problems, although it can reduce the difficulty of the pressing piece 202 to rebound, when pressing the pressing piece 202, the positioning effect becomes unstable, which causes the damage-proof cover 2016 to loosen or shake, affecting the sealing and overall performance of the equipment. In addition, the unstable positioning effect also causes the user to feel unsatisfied during use, because they need to adjust or press repeatedly to achieve the expected effect. Therefore, the manufacturer needs to find a balance point in the design of the spring positioning sheet 3, which not only ensures sufficient positioning effect to maintain the stability and sealing of the damage-proof cover 2016, but also considers the user's convenience and the durability of the product. In order to achieve this goal, the manufacturer needs to invest more research and development resources to research and test different design schemes and material selection, which not only increases the production cost, but also requires a lot of time and effort to conduct experiments and verification. The installation of the deceleration ladder pad 301 solves the problem, which allows the staff to appropriately reduce the strength of the fixing effect by reducing the thickness or length of the spring positioning sheet 3. The purpose of this is to give the spring positioning sheet 3 more reaction time to adapt to the motion state of the pressing piece 202 when the pressing piece 202 approaches the deceleration ladder pad 301 during the user's pressing process. At the same time, the design of the deceleration ladder pad 301 also plays a key role. It not only provides some additional fixing force to help stabilize the position of the pressing piece 202, but also plays an important role when the user needs to make the pressing piece 202 rebound. By pressing the pressing piece 202 again, the user can temporarily remove the pressing piece 202 from the constraint range of the spring positioning sheet 3, and then release the hand. At this time, the return spring 203 will quickly push the pressing piece 202 to rebound to the original position, so that the spring positioning sheet 3 cannot stop the pressing piece 202, achieving the effect of reducing production cost.The top of the block rear rack 205 is fixed with a stable triangle 5, one side of the stable triangle 5 is fixed with the back of the interface module 101, so that the fixing effect between components is improved, and the service life of the equipment is improved. The inner wall of one end of the arc-shaped groove is provided with an upper shallow rectangular groove 6, so that the friction between components is reduced, and the service life of the equipment is improved. The other end of the pressing piece 202 is provided with a ball pressing groove 7, so that the user experience is improved.

[0029] The working principle of the utility model is: when the interface module 101 of the analysis main body 1 is not frequently used, the staff presses the pressing piece 202 to make the interface module 101 move inwards, the block rear rack 205 meshes with the driven gear 206 to rotate counterclockwise, the base rotating piece 208 and the transmission telescopic rod 2010 rotate counterclockwise, the transmission telescopic rod 2010 is telescopic under the movement track of the different-diameter rotating piece 2013, and is reset by relying on the auxiliary telescopic spring 2011, so that the different-diameter rotating piece 2013 rotates clockwise, the bent connecting rod 2014 pulls the anti-damage cover 2016 out of the cover transverse groove 2 and shields the interface module 101, so that the dustproof and anti-collision effects are achieved, when the user presses the pressing piece 202, the arc-shaped groove of the pressing piece 202 reaches the spring positioning sheet 3, the spring positioning sheet 3 releases the elastic potential energy and pops out, the pressing piece 202 is fixed by embedding the arc-shaped groove, and feedback is given to the staff, the staff can appropriately reduce the fixing effect intensity by reducing the thickness or length of the spring positioning sheet 3 and other key dimension parameters, and the purpose of this is that, in the process that the user presses the pressing piece 202, when the pressing piece 202 approaches the deceleration ladder pad 301, the speed has been greatly reduced, so that more reaction time is given to the spring positioning sheet 3 to adapt to the movement state of the pressing piece 202, and meanwhile, the design of the deceleration ladder pad 301 also plays a key role, which not only can provide a part of additional fixing force and help to stabilize the position of the pressing piece 202, but also can play an important role when the user needs to make the pressing piece 202 rebound, the user can make the pressing piece 202 temporarily leave the constraint range of the spring positioning sheet 3 by pressing the pressing piece 202 again, and then releases the hand, at this time, the reset spring 203 quickly pushes the pressing piece 202 to rebound to the original position, so that the spring positioning sheet 3 cannot stop the pressing piece 202.

[0030] In the utility model, unless another definite stipulation and limitation, first feature is in second feature "on" or "under", can include that first and second features are direct contact, also can include that first and second features are not direct contact but contact through other features between them. Moreover, first feature is on, above and on of second feature includes that first feature is directly above and obliquely above of second feature, or only indicates that first feature is higher than second feature in horizontal height. First feature is below, under and under of second feature includes that first feature is directly below and obliquely below of second feature, or only indicates that first feature is lower than second feature in horizontal height.

[0031] The basic principle, main features and advantages of the present application are shown and described above. It should be understood by those skilled in the art that the present application is not limited by the above embodiments, and the above embodiments and descriptions in the specification are only preferred examples of the present application and are not intended to limit the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application. The scope of protection of the present application is defined by the appended claims and their equivalents.

Claims

1. A device for analyzing intelligent video, comprising an analysis main body (1), the analysis main body (1) is provided with a plurality of interface modules (101) on the front side, characterized in that: The analysis body (1) is provided with a storage cover transverse groove (2) on the front surface, a pressing side groove (201) is formed on the front surface of the analysis body (1), a pressing piece (202) is slidably connected to the inner wall of the pressing side groove (201), the peripheral surface of the pressing piece (202) is fixed with the side surface of the interface module (101), one end of the pressing piece (202) is fixed with a return spring (203), one end of the return spring (203) is fixed with the inner wall of the analysis body (1), a base stub (204) is fixed to the inner wall of the analysis body (1), a block rear rack (205) is fixed to the back surface of the interface module (101), a driven gear (206) is engaged with the tooth groove of the block rear rack (205), a connecting column (207) is fixed to one side of the driven gear (206), a base rotating piece (208) is fixed to one end of the connecting column (207), an installation plate (209) is rotatably connected to one side of the base rotating piece (208), one side of the installation plate (209) is fixed with the inner wall of the analysis body (1), a transmission telescopic rod (2010) is fixed to one end of the base rotating piece (208), an auxiliary telescopic spring (2011) is arranged on the peripheral surface of the transmission telescopic rod (2010), a clamping rotating piece (2012) is fixed to one end of the transmission telescopic rod (2010), a different-diameter rotating piece (2013) is rotatably connected to the inner wall of the clamping rotating piece (2012), one end of the large-diameter of the different-diameter rotating piece (2013) is rotatably connected to one side of the installation plate (209), a bent connecting rod (2014) is fixed to the peripheral surface of the different-diameter rotating piece (2013), an L-shaped fixed plate (2015) is rotatably connected to one end of the bent connecting rod (2014), a damage-preventing cover (2016) is fixed to one side of the L-shaped fixed plate (2015).

2. The apparatus for analyzing intelligent video of claim 1, wherein: An arc-shaped groove is formed on the peripheral surface of the pressing piece (202), and a spring positioning piece (3) is fixed to the inner wall of the analysis body (1).

3. The apparatus for analyzing intelligent video of claim 1, wherein: A deceleration ladder pad (301) is fixed to the inner wall of the analysis body (1).

4. The apparatus for analyzing intelligent video of claim 1, wherein: Trapezoidal grooves are formed on both sides of the interface module (101), and a limiting ladder piece (4) is slidably connected to the inner wall of the trapezoidal groove, and one side of the limiting ladder piece (4) is fixed with the inner wall of the analysis body (1).

5. The apparatus for analyzing intelligent video of claim 1, wherein: A stable triangle (5) is fixed to the top of the block rear rack (205), and one side of the stable triangle (5) is fixed with the back surface of the interface module (101).

6. The apparatus for analyzing intelligent video of claim 2, wherein: An upper shallow rectangular groove (6) is formed on one end of the inner wall of the arc-shaped groove.

7. The apparatus for analyzing intelligent video of claim 1, wherein: A pressing ball groove (7) is formed on the other end of the pressing piece (202).