Nonlinear editing video processing device

By designing closed components and heat dissipation components in the video processing device, and using thermally conductive materials and porous foam coating layers, the problems of poor sealing and poor heat dissipation effects are solved, good dust protection and heat dissipation effects are achieved, and the service life of the device is extended.

CN222839961UActive Publication Date: 2025-05-06冯国新
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Patent Information

Application Number
CN202421228229.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-05-31
Publication Date
2025-05-06
Estimated Expiration
2034-05-31

AI Technical Summary

Technical Problem

When used, the existing video processing device needs to dissipate heat from the processing device during operation, resulting in the device sealing cannot be guaranteed, and dust is easy to enter, which affects the service life of the internal structure of the video processing device.

Method used

A nonlinear editing video processing device is designed, using closed components and heat dissipation components, including thermal conductivity frames, graphite plates, heat dissipation plates and porous foam coating layers. It can achieve sealing and heat dissipation through structures such as driving motors, pulleys and linkage belts, and improve dust protection and heat dissipation effects.

Benefits of technology

The video processing device has achieved good dustproof effect, extended the service life of the device, and reminded the staff to take cooling measures under high temperature through the porous foam coating layer, which improved the overall performance of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of video editing in a convergence media center, in particular to a non-linear editing video processing device, which comprises a processor, supporting columns are fixedly arranged on two sides of the top end of the processor, a sun shield is fixedly arranged between the two supporting columns, and an air inlet groove is formed in the top of one side of the processor. A sealing assembly is arranged on one side of the top end of the processor, a heat dissipation assembly is arranged on the inner wall of the processor, an operation panel is hinged to the middle of the front face of the processor, and a handle is fixedly arranged on the surface of the operation panel. According to the video processing device, the driving motor, the connecting screw rod, the belt pulley, the linkage belt, the moving seat, the sliding rail, the sealing plate, the dustproof net and other structures are added and matched with one another, so that the dustproof effect of the video processing device is effectively improved, the processor can be in a completely closed state when not in use, and the service life of the video processor is further prolonged.
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Description

Technical Field

[0001] The utility model relates to the technical field of video editing in a converged media center, and in particular to a non-linear editing video processing device. Background Art

[0002] The integrated media center is a new type of media unit. Due to the rapid development of new media, video editing and processing has become increasingly important. In the process of editing the videos of the integrated media center, video editing and other operations need to be performed through processing devices.

[0003] Upon investigation, Publication (Announcement) No. CN202220009979.9 discloses a video processing device for film and television post-production non-linear editing. This technology discloses "including a heat sink base, the bottom of which is fixedly connected to the support legs, and the top of which is fixedly connected to the spring a. When protecting the processor, the processor is placed on the heat sink base, and then the U-shaped pressure plate is pulled to stretch the spring a to adjust the distance between the U-shaped clamping plate and the heat sink base. The U-shaped clamping plate is then slowly released, and the spring a drives the U-shaped clamping plate to fix the processor. When the U-shaped clamping plate contacts the processor, the processor compresses the springs b and c through the clamping plates a and b to adapt to the fixation of different models of processors. While the processor is processing the video, the heat sink will promptly dissipate heat from the processor. The motor drives the fan blades to rotate and blow air through the heat dissipation holes to the surrounding area of ​​the processor, dissipating the heat generated by the processor, dissipating the heat from the processor, and thus increasing the service life of the processor."

[0004] When using existing video processing devices, the sealing of the device cannot be guaranteed because the heat must be dissipated during operation. During operation, dust floating in the air often enters the device, thereby affecting the service life of the internal structure of the video processing device.

[0005] To solve the above problems, this application proposes a non-linear editing video processing device. Utility Model Content

[0006] In order to solve the problems raised in the above background technology, the utility model provides a non-linear editing video processing device, which can achieve good dustproof and can alert workers in high temperature state.

[0007] To achieve the above-mentioned object, the present invention provides the following technical solution: a non-linear editing video processing device, comprising a processor, support columns are fixedly provided on both sides of the top of the processor, a sun visor is fixedly provided between the two support columns, an air inlet slot is provided on the top of one side of the processor, an exhaust slot is provided on the top of the other side of the processor, vents are fixedly provided on the inner walls of the air inlet slot and the exhaust slot, a sealing component is provided on one side of the top of the processor, a heat dissipation component is provided on the inner wall of the processor, an operating panel is hingedly connected to the middle of the front of the processor, and a handle is fixedly provided on the surface of the operating panel;

[0008] The closing assembly includes two slide rails, two movable seats, two connecting screw rods, two screw nuts, two movable rods and two sealing plates. The two slide rails are respectively fixed on the inner walls on both sides of the top of the processor. The inner walls of the two slide rails are slidably connected to the movable seats. The two connecting screw rods are respectively rotatably connected to the two sides of the processor through bearings. The inner walls of the two movable seats are fixed with screw nuts that are respectively threadedly connected to the two connecting screw rods. A movable rod is fixed on one side of the two movable seats, and a sealing plate is fixed on one end of the two movable rods.

[0009] As a preferred non-linear editing video processing device of the utility model, pulleys are fixedly provided on the surfaces of the two connecting screw rods, and a linkage belt is connected for transmission between the two pulleys. A driving motor is fixedly provided on one side of the bottom end of the sun visor, and the transmission shaft of the driving motor is fixedly connected to the top end of one of the connecting screw rods. The two movable seats are slid by rotating the two connecting screw rods, and the processing device can be sealed by two sealing plates.

[0010] As a preferred non-linear editing video processing device of the utility model, the heat dissipation component includes a heat-conducting frame, a thermal grease layer, two graphite plates, a heat sink and a porous foaming paint layer. The heat-conducting frame is fixedly arranged on the inner wall of the bottom of the processor, and a thermal grease layer is provided inside the heat-conducting frame. The two graphite plates are respectively fixedly arranged at the top and bottom ends of the inside of the processor, the heat sink is fixedly arranged on the back of the operating panel, and the porous foaming paint layer is fixedly arranged on the surface of the processor. The heat dissipation effect of the device is effectively improved by the structures such as the heat-conducting frame, the thermal grease layer, the two graphite plates and the heat sink. At the same time, the porous foaming paint layer can alert the staff when the device is in a high temperature state.

[0011] As a preferred embodiment of the non-linear editing video processing device of the present invention, the heat dissipation plate is made of aluminum alloy.

[0012] As a preferred non-linear editing video processing device of the present invention, a temperature controller is fixedly provided on one side of the front of the processor, a detection probe of the temperature controller is fixedly arranged inside the processor, a plurality of semiconductor refrigeration tubes are fixedly provided on both sides of the inside of the heat-conducting frame, the plurality of semiconductor refrigeration tubes are electrically connected to the power supply through the temperature controller, and the temperature controller controls the plurality of semiconductor refrigeration tubes to cool the device, thereby further improving the heat dissipation effect of the processing device.

[0013] As a preferred embodiment of the non-linear editing video processing device of the present invention, dustproof nets are fixedly provided on the inner walls of the two ventilation openings.

[0014] As a preferred non-linear editing video processing device of the present invention, a switch panel is fixedly provided on one side of the front of the processor, a drive motor switch is provided on the surface of the switch panel, and the drive motor is electrically connected to the power supply through the drive motor switch.

[0015] Compared with the prior art, the beneficial effects of the present invention are:

[0016] 1. On this basis, a structure made of thermal grease, graphite and aluminum alloy is added, so that the heat-conducting frame, two graphite plates and heat sink can comprehensively improve the heat dissipation effect of the processor. At the same time, several semiconductor refrigeration tubes can cool the inside of the device. When the porous foaming coating layer is exposed to too much heat, the porous foaming coating layer will foam evenly, thereby reminding the staff to take cooling measures inside the processor;

[0017] 2. At the same time, on this basis, a drive motor, connecting screw, pulley, linkage belt, movable seat, slide rail, sealing plate and dustproof net are added to cooperate with each other, so that the dustproof effect of the video processing device is effectively improved, and the processor can be in a completely closed state when idle, thereby extending the service life of the video processor. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation of the present invention. In the accompanying drawings:

[0019] Figure 1 It is a structural diagram of the utility model;

[0020] Figure 2 This is one of the cross-sectional structural diagrams of the present utility model;

[0021] Figure 3 This is the second schematic diagram of the cross-sectional structure of the present utility model;

[0022] Figure 4For this utility model Figure 2 A schematic diagram of the enlarged structure.

[0023] In the picture:

[0024] 1. Processor; 2. Support column; 3. Sun visor; 4. Air inlet slot; 5. Exhaust slot; 6. Vent; 7. Closure assembly; 8. Heat dissipation assembly; 9. Operation panel; 10. Handle; 11. Dust screen; 12. Temperature controller; 13. Semiconductor refrigeration tube; 14. Switch panel; 71. Slide rail; 72. Moving seat; 73. Connecting screw; 74. Screw nut; 75. Movable rod; 76. Sealing plate; 731. Pulley; 732. Linkage belt; 733. Drive motor; 81. Thermal frame; 82. Thermal grease layer; 83. Graphite plate; 84. Heat dissipation plate; 85. Porous foam coating layer. DETAILED DESCRIPTION

[0025] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0026] Example

[0027] like Figures 1-4 As shown;

[0028] A nonlinear editing video processing device includes a processor 1. Support columns 2 are fixedly provided on both sides of the top of the processor 1. A sun visor 3 is fixedly provided between the two support columns 2. An air inlet slot 4 is provided on the top of one side of the processor 1. An exhaust slot 5 is provided on the top of the other side of the processor 1. Ventilation holes 6 are fixedly provided on the inner walls of the air inlet slot 4 and the exhaust slot 5. A sealing component 7 is provided on one side of the top of the processor 1. A heat dissipation component 8 is provided on the inner wall of the processor 1. An operation panel 9 is hingedly connected to the middle of the front of the processor 1. A handle 10 is fixedly provided on the surface of the operation panel 9.

[0029] Dust-proof nets 11 are fixedly provided on the inner walls of the two ventilation openings 6 .

[0030] In this embodiment: Publication (Announcement) No. CN202220009979.9 discloses a video processing device for film and television post-production non-linear editing. This technology discloses "including a heat sink base, the bottom of which is fixedly connected to the support legs, and the top of which is fixedly connected to the spring a. When protecting the processor, the processor is placed on the heat sink base, and then the U-shaped pressure plate is pulled to stretch the spring a to adjust the distance between the U-shaped clamping plate and the heat sink base. Then, the U-shaped clamping plate is slowly released, and the spring a drives the U-shaped clamping plate to fix the processor. When the U-shaped clamping plate contacts the processor, the processor compresses the spring b and spring c through the clamping plates a and b to adapt to the fixation of different models of processors. While the processor is processing the video, the heat sink promptly dissipates the heat of the processor. The motor drives the fan blades to rotate and blow air through the heat dissipation holes to the surrounding area of ​​the processor, dissipating the heat generated by the processor, dissipating the heat of the processor, and thus increasing the service life of the processor."

[0031] When the existing video processing device is in use, the heat dissipation of the processing device during operation makes it impossible to ensure the sealing of the device. During operation, dust floating in the air often enters the device, thereby affecting the service life of the internal structure of the video processing device. Combined with actual use, this problem is obviously a real problem that is difficult to solve. In view of this, in order to solve this technical problem, a sealing component 7 and a heat dissipation component 8 are added to this application document.

[0032] According to the above content, in order to improve the dust-proof effect of the device, a closing component 7 is also included, which includes two slide rails 71, two movable seats 72, two connecting screws 73, two screw nuts 74, two movable rods 75 and two sealing plates 76. The two slide rails 71 are respectively fixed to the inner walls on both sides of the top of the processor 1, and the inner walls of the two slide rails 71 are slidably connected to the movable seats 72. The two connecting screws 73 are respectively rotatably connected to the two sides of the inside of the processor 1 through bearings. The inner walls of the two movable seats 72 are fixed with screw nuts 74 respectively threadedly connected to the two connecting screws 73. One side of the two movable seats 72 is fixed with a movable rod 75, and one end of the two movable rods 75 is fixed with a sealing plate 76;

[0033] A pulley 731 is fixedly provided on the surface of the two connecting screw rods 73, and a linkage belt 732 is connected between the two pulleys 731. A driving motor 733 is fixedly provided on one side of the bottom end of the sun visor 3, and the transmission shaft of the driving motor 733 is fixedly connected to the top end of one of the connecting screw rods 73;

[0034] A switch panel 14 is fixedly provided on one side of the front face of the processor 1 . A drive motor switch is provided on the surface of the switch panel 14 . The drive motor 733 is electrically connected to the power supply via the drive motor switch.

[0035] In this embodiment: the driving motor 733 is started to drive one of the connecting screws 73 and one of the pulleys 731 to rotate. Since the linkage belt 732 is connected between the two pulleys 731, the two pulleys 731 and the two connecting screws 73 rotate at the same time. After the two connecting screws 73 rotate, the two movable seats 72 slide downward on the inner walls of the two slide rails 71 respectively, and the two sealing plates 76 move downward to seal the air inlet slot 4 and the exhaust slot 5, thereby improving the dustproof effect of the processor 1.

[0036] In an optional embodiment, the heat dissipation assembly 8 includes a heat-conducting frame 81, a thermal grease layer 82, two graphite plates 83, a heat sink 84, and a porous foam coating layer 85. The heat-conducting frame 81 is fixedly arranged on the inner wall of the bottom of the processor 1. The heat-conducting frame 81 is provided with a thermal grease layer 82. The two graphite plates 83 are respectively fixedly arranged at the top and bottom of the processor 1. The heat sink 84 is fixedly arranged on the back of the operation panel 9. The porous foam coating layer 85 is fixedly arranged on the surface of the processor 1.

[0037] The heat sink 84 is made of aluminum alloy;

[0038] A temperature controller 12 is fixedly provided on one side of the front of the processor 1, and the detection probe of the temperature controller 12 is fixedly arranged inside the processor 1. Several semiconductor refrigeration tubes 13 are fixedly provided on both sides of the inside of the heat conductive frame 81, and the several semiconductor refrigeration tubes 13 are electrically connected to the power supply through the temperature controller 12.

[0039] In this embodiment: since materials such as thermal grease, graphite and aluminum alloy all have good heat dissipation effects, the heat-conducting frame 81, the two graphite plates 83 and the heat dissipation plate 84 can comprehensively improve the heat dissipation effect of the processor 1, and when the porous foaming coating layer 85 is exposed to excessive heat, the porous foaming coating layer 85 will foam evenly, thereby reminding the staff to take cooling measures on the inside of the processor 1.

[0040] In an optional embodiment, a dustproof net 11 is fixedly provided on the inner walls of the two ventilation openings 6 .

[0041] In this embodiment, the two dust-proof nets 11 can further improve the dust-proof effect of the video processing device.

[0042] The working principle and use process of the present invention are as follows: first, the temperature detection range of the temperature controller 12 is set to the applicable temperature range of the video processing device. When the detected temperature of the temperature controller 12 is higher than the maximum value of its temperature detection range, the temperature controller 12 controls the operation of a plurality of semiconductor refrigeration tubes 13 to cool down the inside of the processor 1. When the detected temperature is higher than the maximum value of its temperature detection range, the heat inside the processor 1 is too high, so that the porous foaming coating layer 85 foams evenly, thereby facilitating the staff to take cooling measures for the inside of the processor 1. Then, the driving motor 73 is driven to cool down the inside of the processor 1. 3, the reverse rotation of the transmission shaft allows the air inlet slot 4 and the exhaust slot 5 to quickly discharge the heat inside the processor 1. When the processor 1 is idle, the driving motor 733 is started to drive one of the connecting screws 73 and one of the pulleys 731 to rotate. Since the linkage belt 732 is connected between the two pulleys 731, the two pulleys 731 and the two connecting screws 73 rotate at the same time. After the two connecting screws 73 rotate, the two movable seats 72 slide downward on the inner walls of the two slide rails 71 respectively, thereby causing the two sealing plates 76 to move downward to seal the air inlet slot 4 and the exhaust slot 5.

[0043] Finally, it should be noted that the above are merely preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art will be able to modify the technical solutions described in the aforementioned embodiments or replace some of the technical features therein with equivalents. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.

Claims

1. A non-linear editing video processing device, comprising a processor (1), characterized in that: Support columns (2) are fixedly provided on both sides of the top of the processor (1), a sunshade (3) is fixedly provided between the two support columns (2), an air inlet slot (4) is provided on the top of one side of the processor (1), an exhaust slot (5) is provided on the top of the other side of the processor (1), vents (6) are fixedly provided on the inner wall of the air inlet slot (4) and the inner wall of the exhaust slot (5), a sealing component (7) is provided on one side of the top of the processor (1), a heat dissipation component (8) is provided on the inner wall of the processor (1), an operation panel (9) is hingedly provided in the middle of the front of the processor (1), and a handle (10) is fixedly provided on the surface of the operation panel (9); The sealing assembly (7) comprises two slide rails (71), two movable seats (72), two connecting screw rods (73), two screw rod nuts (74), two movable rods (75) and two sealing plates (76). The two slide rails (71) are respectively fixedly arranged on the inner walls on both sides of the top of the processor (1). The inner walls of the two slide rails (71) are slidably connected with the movable seats (72). The two connecting screw rods (73) are respectively rotatably connected to the two sides of the processor (1) through bearings. The inner walls of the two movable seats (72) are fixedly provided with screw rod nuts (74) respectively threadedly connected to the two connecting screw rods (73). The movable rod (75) is fixedly arranged on one side of the two movable seats (72). The sealing plate (76) is fixedly arranged on one end of the two movable rods (75).

2. A non-linear editing video processing device according to claim 1, characterized in that: Pulleys (731) are fixedly provided on the surfaces of the two connecting screw rods (73), and a linkage belt (732) is transmission-connected between the two pulleys (731). A driving motor (733) is fixedly provided on one side of the bottom end of the sun visor (3), and a transmission shaft of the driving motor (733) is fixedly connected to the top end of one of the connecting screw rods (73).

3. A non-linear editing video processing device according to claim 1, characterized in that: The heat dissipation component (8) comprises a heat-conducting frame (81), a heat-conducting silicone grease layer (82), two graphite plates (83), a heat dissipation plate (84) and a porous foaming paint layer (85); the heat-conducting frame (81) is fixedly arranged on the inner wall at the bottom of the processor (1); a heat-conducting silicone grease layer (82) is provided inside the heat-conducting frame (81); the two graphite plates (83) are respectively fixedly arranged at the top and bottom of the processor (1); the heat dissipation plate (84) is fixedly arranged on the back of the operating panel (9); and the porous foaming paint layer (85) is fixedly arranged on the surface of the processor (1).

4. A non-linear editing video processing device according to claim 3, characterized in that: The heat dissipation plate (84) is made of aluminum alloy.

5. The non-linear editing video processing device according to claim 3, characterized in that: A temperature controller (12) is fixedly provided on one side of the front face of the processor (1), a detection probe of the temperature controller (12) is fixedly arranged inside the processor (1), and a plurality of semiconductor refrigeration tubes (13) are fixedly provided on both sides inside the heat conductive frame (81), and the plurality of semiconductor refrigeration tubes (13) are electrically connected to a power source via the temperature controller (12).

6. The non-linear editing video processing device according to claim 1, characterized in that: The inner walls of the two ventilation openings (6) are both fixedly provided with dustproof nets (11).

7. A non-linear editing video processing device according to claim 2, characterized in that: A switch panel (14) is fixedly provided on one side of the front face of the processor (1), a drive motor switch is provided on the surface of the switch panel (14), and the drive motor (733) is electrically connected to a power source via the drive motor switch.

Citation Information

Patent Citations

  • Video processing device for film and television post-period nonlinear editing

    CN216820334U