Video stream processing equipment

By introducing a protective shell and rotating clip structure into the video streaming device, the problem of tangled plugs and data cables is solved, resulting in a clean and convenient device that also provides good heat dissipation.

CN224265234UActive Publication Date: 2026-05-19浙江蓝宸数联科技有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
浙江蓝宸数联科技有限公司
Filing Date
2025-05-12
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

The plugs and data cables of existing video streaming equipment are easily tangled and messy, making connection and disconnection inconvenient.

Method used

A video stream processing device was designed, which adopts a protective shell and a rotating clamp structure. Through the cooperation of the slider and the slide bar, the data cable is clamped uniformly to avoid tangling, and the protective shell provides space for heat dissipation of the device.

Benefits of technology

It effectively avoids tangling of data cables and plugs, simplifies the connection and disconnection process, improves the cleanliness and ease of operation of the device, and provides good heat dissipation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of video processing, and discloses video stream processing equipment. A video stream processor; protective shells fixedly connected with the video stream processor are arranged at the top and the bottom of the video stream processor; a plurality of shallow grooves are formed in the side, away from the video stream processor, of the protection shell, a through groove penetrating through the protection shell is formed in the bottom of each shallow groove, and the shallow grooves and the through grooves are located in the same vertical plane; two fixing plates are arranged between the video stream processor and the protective shell, are fixed at the top and the bottom of the video stream processor and are close to the back side of the video stream processor; multiple groups of sliding blocks are arranged on the side, away from the video stream processor, of the fixing plate. According to the utility model, different data lines are uniformly clamped through the plurality of rotating clamps, so that the problem that after different plugs are repeatedly connected and disconnected, the different data lines are wound together, the data lines and the corresponding plugs are not easy to identify, and the equipment and the video stream processor cannot be quickly connected or disconnected is solved.
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Description

Technical Field

[0001] This utility model relates to the field of video processing technology, and in particular to a video stream processing device. Background Technology

[0002] A video stream processing device is a hardware device specifically designed for processing video stream data. It can perform a series of processes on video signals, including acquisition, encoding, decoding, analysis, transmission, and storage, to meet the needs of various application scenarios. It typically includes functions such as video acquisition, video encoding, video decoding, video analysis, video transmission, video storage, video format conversion, and video enhancement.

[0003] Because video stream processing equipment has the function of processing video streams, it needs to connect to a variety of devices for processing, such as video input devices, video output devices, network devices, and some other devices. These devices need to be replaced from time to time. When these devices are connected to the video stream processor, the various plugs and data cables on the interface are easily mixed up and tangled together, making it inconvenient to connect and disconnect other devices.

[0004] Therefore, this application provides a video stream processing device to meet the requirements. Utility Model Content

[0005] The technical problem to be solved by this utility model is to provide a video stream processing device to solve the problem of messy data cables caused by numerous plugs and the need to connect and disconnect different devices.

[0006] To solve the problems mentioned above, this utility model is implemented through the following technical solution.

[0007] A video stream processing device, comprising:

[0008] Video stream processor;

[0009] The video stream processor has protective shells fixedly connected to its top and bottom.

[0010] The protective shell has several shallow grooves on the side away from the video stream processor. Each shallow groove has a through groove at the bottom that penetrates the protective shell. The shallow grooves and the through grooves are in the same vertical plane.

[0011] Two fixing plates are provided between the video stream processor and the protective shell. The two fixing plates are fixed to the top and bottom of the video stream processor and close to the back of the video stream processor.

[0012] The side of the fixed plate away from the video stream processor is equipped with multiple sets of sliders, and each set of sliders is equipped with a rotating clamp.

[0013] A sliding rod is fixedly connected to the side of the slider near the protective shell. The sliding rod extends upward into the through groove and shallow groove, which are in the same vertical plane as itself.

[0014] Preferably, the video stream processor has several interfaces on its back side, arranged in two rows, with plugs inside each interface, and a data cable connected to the end of the plug furthest from the video stream processor.

[0015] Preferably, the top of the end of the slide bar near the shallow groove is in the same horizontal plane as the side of the protective shell away from the video stream processor.

[0016] Preferably, the opening width of the shallow groove on the side closer to the video stream processor is smaller than the opening width away from the video stream processor.

[0017] Preferably, the fixed plate has multiple sets of sliding grooves on the side away from the video stream processor, and the slider extends towards the fixed plate into the sliding grooves that are on the same horizontal plane as itself, and the fixed plate and the slider are slidably connected.

[0018] Preferably, a return spring is provided in the slide groove, with one end of the return spring connected to the fixed plate and the other end connected to the side wall of the slider that is in the same slide groove as itself.

[0019] Preferably, each of the rotating clamps includes two clamping pieces, both of which are rotatably connected inside the slider, and both clamping pieces have a notch on the side away from the slider.

[0020] Preferably, a bending spring is provided in the middle of the rotating clamp, and the two ends of the bending spring are respectively connected to the two clamping plates of the rotating clamp.

[0021] Preferably, the rotating clamp is provided with limit protrusions on opposite sides, and the fixing plate is provided with several fixing buckles on the side near the plug.

[0022] Preferably, the number of plugs, shallow grooves, sliding grooves and fixing buckles are equal, and each notch is provided with a data line at the top or bottom that is in the same vertical plane as itself.

[0023] This invention provides a video stream processing device. Compared with the prior art, it has the following advantages:

[0024] 1. Multiple rotating clamps are used to uniformly hold different data cables, avoiding the situation where different data cables get tangled together after repeated connection and disconnection of different plugs, making it difficult to identify the data cable and the corresponding plug, thus making it impossible to quickly connect or disconnect the device from the video stream processor.

[0025] 2. By placing the protective shell on the top and bottom sides of the video stream processor, the video stream processor is protected. At the same time, personnel can use the slider connected to the protective shell to determine which interfaces of the video stream processor are connected and which interfaces are not connected to other devices. In large monitoring centers where multiple video stream processors are usually stacked together, the space between the protective shell and the video stream processor is conducive to heat dissipation of the video stream processor. Attached Figure Description

[0026] Figure 1 This is a schematic diagram of the overall structure of the back of this utility model.

[0027] Figure 2 This utility model Figure 1 Enlarged structural diagram at point A in the middle.

[0028] Figure 3 This is a schematic diagram of the cross-sectional structure of the protective shell and shallow groove of this utility model.

[0029] Figure 4 This is a partial cross-sectional structural diagram of the present invention.

[0030] Figure 5 This is a schematic diagram of the connection structure of the fixing plate, the slide groove and the return spring of this utility model.

[0031] Figure 6 This utility model Figure 5 Enlarged structural diagram at point B.

[0032] Figure 7 This is a schematic diagram of the initial state structure of the fixing plate of this utility model.

[0033] The attached figures are labeled as follows:

[0034] 10. Video stream processor; 11. Protective shell; 111. Shallow groove; 112. Through groove; 12. Plug; 121. Data cable; 13. Fixing plate; 131. Slide groove; 132. Return spring; 133. Fixing buckle; 14. Slider; 141. Slide rod; 15. Rotating clamp; 151. Limiting protrusion; 152. Notch; 16. Bending spring. Detailed Implementation

[0035] The present invention will be further described below with reference to specific embodiments. It should be understood that these embodiments are only used to illustrate the present invention and are not intended to limit the scope of protection of the present invention.

[0036] The following specific examples illustrate the implementation of this utility model. Those skilled in the art can easily understand other advantages and effects of this utility model from the content disclosed in this specification. This utility model can also be implemented or applied through other different specific embodiments, and various details in this specification can also be modified or changed based on different viewpoints and applications without departing from the spirit of this utility model.

[0037] Reference Figure 1 - Figure 7 A video stream processing device, comprising:

[0038] Video stream processor 10;

[0039] The video stream processor 10 is equipped with protective shells 11 at both the top and bottom, which are fixedly connected to itself.

[0040] Furthermore, such as Figure 1 As shown, the top and bottom of the protective shell 11 are protected. When the video stream processor 10 is in a large monitoring center, multiple video stream processors 10 are usually stacked together. At this time, the space between the protective shell 11 and the video stream processor 10 is conducive to the heat dissipation of the video stream processor 10.

[0041] The protective shell 11 has several shallow grooves 111 on the side away from the video stream processor 10. Each shallow groove 111 has a through groove 112 at the bottom that penetrates the protective shell 11. The shallow grooves 111 and the through grooves 112 are in the same vertical plane.

[0042] Two fixing plates 13 are provided between the video stream processor 10 and the protective shell 11. The two fixing plates 13 are fixed to the top and bottom of the video stream processor 10 and are close to the back of the video stream processor 10.

[0043] Multiple sets of sliders 14 are provided on the side of the fixed plate 13 away from the video stream processor 10, and each set of sliders 14 has a rotating clamp 15 inside.

[0044] A slider 14 is fixedly connected to a slide rod 141 on the side of the slider 14 near the protective shell 11. The slide rod 141 extends upward into the through groove 112 and the shallow groove 111, which are in the same vertical plane as itself.

[0045] Furthermore, such as Figure 2 and Figure 4 As shown, this allows personnel to reach into the shallow groove 111 to move the slide bar 141, thereby indirectly controlling the movement of the slider 14 and the clamping of the data cable 121 by the rotating clamp 15, eliminating the need for personnel to operate the rotating clamp 15 in a confined space.

[0046] The video stream processor 10 has several interfaces on one side, arranged in two rows, and each interface has a plug 12. The end of the plug 12 away from the video stream processor 10 is connected to a data cable 121.

[0047] Furthermore, such as Figure 1 and Figure 2 As shown, the rotating clamps 15 on the upper and lower sides of the video stream processor 10 are used to clamp the data cable 121.

[0048] The top of the end of the slide bar 141 near the shallow groove 111 is in the same horizontal plane as the side of the protective shell 11 away from the video stream processor 10.

[0049] Furthermore, such as Figure 3 As shown, this makes the top and bottom of the video stream processor 10 flat, which facilitates the placement of the video stream processor 10.

[0050] The opening width of the shallow groove 111 on the side closer to the video stream processor 10 is smaller than the opening width away from the video stream processor 10.

[0051] Furthermore, such as Figure 3 As shown, this allows personnel to easily insert their fingers into the shallow groove 111 and slide the slide bar 141.

[0052] The fixed plate 13 has multiple sets of sliding grooves 131 on the side away from the video stream processor 10. The slider 14 extends towards the fixed plate 13 into the sliding groove 131 that is on the same horizontal plane as itself, and the fixed plate 13 and the slider 14 are slidably connected.

[0053] Furthermore, such as Figure 5 and Figure 6 As shown, the sliding trajectory of slider 14 on fixed plate 13 is limited to prevent slider 14 from sliding off the preset trajectory.

[0054] A return spring 132 is provided in the slide groove 131. One end of the return spring 132 is connected to the fixed plate 13, and the other end is connected to the side wall of the slider 14, which is in the same slide groove 131 as itself.

[0055] Furthermore, such as Figure 5 and Figure 6 As shown, when the rotating clamp 15 is not holding the data cable 121, the reset spring 132 drives the slider 14 to slide to the side of the fixing plate 13 away from the plug 12, so as to prevent the rotating clamp 15 from protruding and affecting other plugs 12 and data cables 121.

[0056] Each rotating clamp 15 includes two clamping pieces, both of which are rotatably connected inside the slider 14. Each of the two clamping pieces has a notch 152 on the side away from the slider 14.

[0057] Furthermore, such as Figure 6As shown, the rotating clamp 15 clamps the data cable 121 into the notch 152 to perform the clamping function, so as to avoid damage to the data cable 121 during clamping.

[0058] A bending spring 16 is provided in the middle of the rotating clamp 15, and the two ends of the bending spring 16 are respectively connected to the two clamping pieces of the rotating clamp 15.

[0059] Furthermore, such as Figure 6 As shown, the rotating clamp 15 is provided with elastic restoring force and clamping force.

[0060] Limiting protrusions 151 are provided on the opposite side of the rotating clamp 15, and several fixing buckles 133 are provided on the side of the fixing plate 13 near the plug 12.

[0061] Furthermore, such as Figure 6 As shown, when the rotating clamp 15 clamps the data cable 121, the limiting protrusion 151 contacts the inner fixing buckle 133, preventing the slider 14 from resetting under the elastic force of the reset spring 132, thus failing to perform the clamping function.

[0062] The number of plugs 12, shallow grooves 111, sliding grooves 131 and fixing buckles 133 are equal, and each notch 152 has a data line 121 at the top or bottom that is in the same vertical plane as itself.

[0063] Furthermore, such as Figure 1 and Figure 2 As shown, each data line 121 on each plug 12 connected to the interface has a corresponding rotating clip 15.

[0064] Initial position: such as Figure 7 As shown, the reset spring 132 drives the slider 14 away from the plug 12 and the data cable 121, and it is completely located between the video stream processor 10 and the protective shell 11. At the same time, the slider 141 is located on the side of the shallow groove 111 and the through groove 112 away from the interface.

[0065] When plug 12 is inserted into the corresponding interface and data cable 121 needs to be clamped: the operator inserts their finger into the clamp. Figure 3 The slide bar 141 is in contact with the shallow groove 111 shown, and then moves the slide bar 141 towards the plug 12 within the shallow groove 111 and the through groove 112. Figure 6As shown, the slider 14, which is fixedly connected to the slide rod 141, and the rotating clamp 15, which is rotatably connected within the slider 14, move synchronously with the slide rod 141. After moving a certain distance, the fixing buckle 133 enters between the two rotating clamps 15 and contacts the limiting protrusion 151. During the contact between the fixing buckle 133 and the limiting protrusion 151, the distance between the rotating clamps 15 increases, causing the rotating clamps 15 to open to both sides. The bending spring 16 bends and generates elastic force, and moves forward during this process, causing the notch 152 to move to both sides of the data cable 121 to be clamped. When the slider 14 moves to its limit towards the plug 12, that is... Figure 6 As shown, the two rotating clamps 15 rotate in the direction of the data cable 121 to be clamped under the elastic force of the bending spring 16, thus clamping the data cable 121 as shown. Figure 4 The clamping method shown completes the clamping of data cable 121. The clamping of data cables 121 in other positions is similar (when clamping data cables 121 located in the lower row, the video stream processor 10 needs to be lifted upwards a certain distance), which will not be described in detail here.

[0066] Therefore, although the present invention has been described herein with reference to specific embodiments thereof, freedom of modification, various changes and substitutions are also within the scope of the above disclosure, and it should be understood that in some cases, certain features of the present invention may be adopted without departing from the scope and spirit of the invention and without corresponding use of other features. Thus, many modifications can be made to adapt a particular environment or material to the essential scope and spirit of the present invention. The present invention is not intended to be limited to the specific terms used in the following claims and / or the specific embodiments disclosed as the best mode of carrying out the present invention, but the present invention will include any and all embodiments and equivalents falling within the scope of the appended claims. Therefore, the scope of the present invention will be determined only by the appended claims.

Claims

1. A video stream processing device, characterized in that, include: Video stream processor (10); The video stream processor (10) is provided with protective shells (11) that are fixedly connected to itself at both the top and bottom; The protective shell (11) has several shallow grooves (111) on the side away from the video stream processor (10). Each of the shallow grooves (111) has a through groove (112) at the bottom that penetrates the protective shell (11). The shallow grooves (111) and the through grooves (112) are in the same vertical plane. Two fixing plates (13) are provided between the video stream processor (10) and the protective shell (11). The two fixing plates (13) are fixed to the top and bottom of the video stream processor (10) and close to the back of the video stream processor (10). The fixed plate (13) is provided with multiple sets of sliders (14) on the side away from the video stream processor (10), and each set of sliders (14) is provided with a rotating clamp (15). A slider (14) is fixedly connected to a slide rod (141) on the side of the slider (14) near the protective shell (11). The slide rod (141) extends upward into the through groove (112) and shallow groove (111) which are in the same vertical plane as itself.

2. The video stream processing device according to claim 1, characterized in that, The video stream processor (10) has several interfaces on its back side, arranged in two rows, with a plug (12) inside each interface. The end of the plug (12) away from the video stream processor (10) is connected to a data cable (121).

3. The video stream processing device according to claim 1, characterized in that, The top of the end of the slide bar (141) near the shallow groove (111) is on the same horizontal plane as the side of the protective shell (11) away from the video stream processor (10).

4. The video stream processing device according to claim 1, characterized in that, The opening width of the shallow groove (111) on the side closer to the video stream processor (10) is smaller than the opening width away from the video stream processor (10).

5. A video stream processing device according to claim 1, characterized in that, The fixed plate (13) has multiple sets of sliding grooves (131) on the side away from the video stream processor (10). The slider (14) extends towards the fixed plate (13) into the sliding groove (131) on the same horizontal plane as itself. The fixed plate (13) and the slider (14) are slidably connected.

6. A video stream processing device according to claim 5, characterized in that, A reset spring (132) is provided in the slide groove (131). One end of the reset spring (132) is connected to the fixed plate (13), and the other end is connected to the side wall of the slider (14) which is in the same slide groove (131).

7. A video stream processing device according to claim 2, characterized in that, Each of the rotating clamps (15) includes two clamping pieces, both of which are rotatably connected inside the slider (14), and both clamping pieces have a notch (152) on the side away from the slider (14).

8. A video stream processing device according to claim 7, characterized in that, A bending spring (16) is provided in the middle of the rotating clamp (15), and the two ends of the bending spring (16) are respectively connected to the two clamping pieces of the rotating clamp (15).

9. A video stream processing device according to claim 7, characterized in that, The rotating clamp (15) is provided with limit protrusions (151) on the opposite side, and the fixing plate (13) is provided with several fixing buckles (133) on the side near the plug (12).

10. A video stream processing device according to claim 9, characterized in that, The number of shallow grooves (111), sliding grooves (131) and fixing buckles (133) of the plug (12) are equal, and each notch (152) is provided with a data line (121) at the top or bottom of the notch (152) in the same vertical plane as itself.