Improved video server
By designing protective and heat-conducting structures on the video server, the problems of dust and static electricity accumulation at the interface are solved, ensuring normal use and extended lifespan of the equipment.
Patent Information
- Application Number
- CN202520696908.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-14
- Publication Date
- 2026-03-17
- Estimated Expiration
- 2035-04-14
AI Technical Summary
When existing video servers are in use, their interfaces lack protection when idle, leading to dust accumulation and static electricity buildup, which affects normal equipment use and shortens their lifespan.
The protective structure is designed to include vertical plates, straight plates, round rods, and a protective cover. By pulling the bent plates, the protective cover can be detached from the interface, and the round rods can be rotated to insert wires. Combined with a heat-conducting structure, it can prevent dust and dissipate heat to ensure the normal operation of the equipment.
This achieves dustproof protection for the interface, extends the lifespan of the video server, and ensures the normal operation of the equipment.
Smart Images

Figure CN224005460U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of improved video server technology, specifically an improved video server. Background Technology
[0002] Video servers can efficiently receive video streams from devices such as cameras and computers, and encode, transcode, and compress them to ensure the stability and compatibility of video data during transmission and storage.
[0003] For example, an improved network video server with application publication number "CN108235039A" has a power supply base with a right-facing, symmetrically arranged power supply slots. Between the two power supply slots, a sliding cavity extending laterally is provided. A left and right sliding block, capable of sliding left and right, is installed in the sliding cavity. A power supply terminal for connecting to the power grid is symmetrically arranged on the right end face of the left sliding block, and a power receiving terminal that mates with the power supply terminal is symmetrically arranged on the left end face of the right sliding block. However, in the use of the video server, multiple front-end structures need to be connected to wires from multiple devices, and some interfaces may be idle. These idle interfaces lack protection. Combined with the video server's need for power supply and heat dissipation, static electricity and increased ambient temperature attract dust. This dust enters the unconnected interfaces, and the dust, along with moisture, can oxidize the metal contact pads over time, causing interface malfunctions, affecting the normal operation of the video server, and shortening its lifespan. Utility Model Content
[0004] The purpose of this invention is to solve the problem of video server being affected in its normal use and its lifespan being shortened, and to propose an improved video server.
[0005] To achieve the above objectives, this utility model provides the following technical solution:
[0006] An improved video server is designed, including vertical panels and handles. The front sides of the two vertical panels are respectively fixed to the rear ends of the two handles, and the inner sides of the two vertical panels are respectively fixed to the front ends of the left and right sides of the video server. The front of the video server is connected to multiple protective structures, and the top of the video server is connected to a heat-conducting structure.
[0007] Preferably, the protective structure includes a straight plate and a round rod. The rear end face of the straight plate is fixedly connected to the front face of the video server. The inner wall of the straight plate is slidably connected to the outer wall of the round rod. A curved plate is fixedly connected to the top of the round rod, and a protective cover is fixedly connected to the rear end face of the curved plate.
[0008] Preferably, the rear of the outer wall of the protective cover is plugged into the front interface of the video server.
[0009] Preferably, the two vertical plates have threaded openings machined on their upper and lower sides respectively.
[0010] Preferably, the heat-conducting structure includes a top plate and a bracket. The outer wall of the top plate is fixedly connected to the top opening of the video server, the top of the top plate is fixedly connected to the bottom of a plurality of brackets, and the inner wall of the brackets is slidably connected with a vertical plate.
[0011] Preferably, the bottom of the upright plate is attached to the inner wall components of the video server.
[0012] The improved video server proposed in this utility model has the following advantages: by pulling the bent plate forward in the protective structure, the bent plate moves forward with the protective cover, causing it to detach from the interface on the front of the video server. Then, the round rod rotates downward on the inner wall of the straight plate, causing the bent plate and the protective cover to detach from the front of the interface. Next, the wires of the camera and computer equipment are plugged into the interface on the front of the video server, completing the installation of the video server. This achieves interface protection to prevent dust from entering, ensuring the normal use of the video server and guaranteeing its service life. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the structure of this utility model;
[0014] Figure 2 for Figure 1 Schematic diagram of the connection relationship between the central rod, the bent plate, and the protective cover
[0015] picture; Figure 3 for Figure 1 A schematic diagram showing the connection structure between the center vertical plate and the handle;
[0016] Figure 4 for Figure 1 Schematic diagram of the connection relationship between the top plate, support frame and vertical plate
[0017] picture; Figure 5 for Figure 1 A schematic diagram of the structure of A in the middle.
[0018] In the diagram: 1. Vertical plate, 2. Protective structure, 201. Straight plate, 202. Round rod, 203. Bent plate, 204. Protective cover, 3. Heat-conducting structure, 301. Top plate, 302. Bracket, 303. Vertical plate, 4. Handle, 5. Video server, 6. Threaded port. Detailed Implementation
[0019] The present invention will be further described below with reference to the accompanying drawings:
[0020] Please see Figure 1-5In this embodiment, an improved video server includes vertical plates 1 and handles 4. The front sides of the two vertical plates 1 are fixedly connected to the rear ends of the two handles 4 respectively. The inner sides of the two vertical plates 1 are fixedly connected to the front ends of the left and right sides of the video server 5 respectively. The front of the video server 5 is connected to multiple protective structures 2, and the top of the video server 5 is connected to a heat-conducting structure 3.
[0021] The protective structure 2 includes a straight plate 201 and a round rod 202. The rear end face of the straight plate 201 is fixedly connected to the front face of the video server 5. The inner wall of the straight plate 201 is slidably connected to the outer wall of the round rod 202. The round rod 202 can slide and rotate back and forth on the inner wall of the straight plate 201 when subjected to force. A curved plate 203 is fixedly connected to the top of the round rod 202. A protective cover 204 is fixedly connected to the rear end face of the curved plate 203. The protective cover 204 is made of rubber. The rear of the outer wall of the protective cover 204 is inserted into the front interface of the video server 5.
[0022] By pulling the bent plate 203 forward in the protective structure 2, the bent plate 203, under force, moves the protective cover 204 forward, causing it to detach from the interface on the front of the video server 5. Then, the round rod 202 rotates downward on the inner wall of the straight plate 201, causing the bent plate 203 and the protective cover 204 to detach from the front of the interface. Next, the wires of the camera and computer equipment are plugged into the interface on the front of the video server 5 to complete the installation of the video server 5. This achieves interface protection to prevent dust from entering, ensures the normal use of the video server, and guarantees the service life of the video server.
[0023] The two vertical plates 1 have threaded openings 6 on their upper and lower sides. The heat-conducting structure 3 includes a top plate 301 and a bracket 302. The outer wall of the top plate 301 is fixedly connected to the top opening of the video server 5. The top of the top plate 301 is fixedly connected to the bottom of multiple brackets 302. The inner wall of the bracket 302 is slidably connected to a vertical plate 303. The vertical plate 303 slides up and down through the inner wall of the bracket 302 under force. The vertical plate 303 is made of copper and has good thermal conductivity. The bottom of the vertical plate 303 is in contact with the inner wall components of the video server 5.
[0024] Working principle:
[0025] Video server installation:
[0026] Make the rear of the vertical plate 1 fit against the mounting bracket. Then, screw the bolts from front to back through the threaded opening 6 and fix them to the mounting bracket, thus fixing the vertical plate 1 and the video server 5. Next, pull the bent plate 203 forward. The bent plate 203, under force, moves the protective cover 204 forward, causing it to detach from the interface on the front of the video server 5. Then, the round rod 202 rotates downward on the inner wall of the straight plate 201, causing the bent plate 203 and the protective cover 204 to detach from the front of the interface. Finally, connect the wires of the camera and computer equipment to the interface on the front of the video server 5 to complete the installation of the video server 5.
[0027] Video server usage:
[0028] The camera transmits video signals to the video server 5 via wires. The internal audio and video compression codecs compress these signals, typically using efficient encoding formats such as MPEG-4 or H.264 to reduce data volume and improve transmission efficiency. The compressed video data is then conveyed to the computer via a wire connected to the network interface and displayed on the computer screen. During use, the video server 5 generates heat, which is dissipated through the heat dissipation vents on the outer wall of the video server 5. At the same time, the upright plate 303 on the inner wall of the bracket 302 conducts heat from the inside of the video server 5 through its own copper material. The upright plate 303 is slidably connected to the inner wall of the bracket 302 and its position can be adjusted so that the bottom of the upright plate 303 fits in close contact with the inner wall components of the video server 5.
[0029] The four corners of the front of the video server 5 are connected by bolts. Tightening the bolts forward will open the front panel, making it easy to maintain the internal components of the video server 5.
[0030] Although the present invention has been illustrated and described with reference to preferred embodiments, those skilled in the art should understand that various changes in form and detail are possible within the scope of the claims.
Claims
1. An improved video server comprising uprights (1) and handles (4), the front faces of two uprights (1) being respectively fixed to the rear end faces of two handles (4), characterized in that: The inner sides of the two vertical plates (1) are respectively fixed with the left and right front ends of the video server (5), the front surface of the video server (5) is connected with a plurality of protection structures (2), and the top of the video server (5) is connected with a heat conduction structure (3).
2. The improved video server of claim 1, wherein: The protection structure (2) comprises a straight plate (201) and a round rod (202), the rear end surface of the straight plate (201) is fixed with the front surface of the video server (5), the inner wall of the straight plate (201) is slidably connected with the outer wall of the round rod (202), the top of the round rod (202) is fixedly connected with a bent plate (203), and the rear end surface of the bent plate (203) is fixedly connected with a protective cover (204).
3. The improved video server of claim 2, wherein: The outer wall of the protective cover (204) is inserted into the front surface interface of the video server (5).
4. The improved video server of claim 1, wherein: The front surface of the two vertical plates (1) is respectively machined with a threaded opening (6) on the upper and lower sides.
5. The improved video server of claim 1, wherein: The heat conduction structure (3) comprises a top plate (301) and a support (302), the outer wall of the top plate (301) is fixed with the top opening of the video server (5), the top of the top plate (301) is fixed with the bottom of a plurality of supports (302), and the inner wall of the support (302) is slidably connected with a vertical plate (303).
6. The improved video server of claim 5, wherein: The bottom of the vertical plate (303) is attached to the inner wall element of the video server (5).
Citation Information
Patent Citations
Improved digital video server
CN108235039A