Everything and intelligence combined communication switch
By introducing protective panels, limit frames and quick disassembly mechanisms into the communication switch, the problem of difficult disassembly and replacement of cables and optical fibers caused by compact internal space of the equipment box is solved, and the effect of rapid repair and reduction of maintenance costs is achieved.
Patent Information
- Application Number
- CN202510742807.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-05
- Publication Date
- 2025-07-25
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The internal space of the existing communication switch equipment box is compact, and cables and optical fibers are connected through the side through holes on the box. After long-term use, it is prone to hardening and cracking, making it difficult to disassemble and replace, resulting in increased maintenance costs and downtime.
A communication switch for intelligent communications of all things is designed, using protective plates, limit frames, quick disassembly mechanisms and sliding grooves. The sliding column is driven to slide by rotating balls and V-shaped rotating rods, which realizes rapid disassembly and installation of the switch body. Combined with the buffer design of the compressed spring and C-shaped rods, it ensures smooth operation and protection.
It realizes rapid disassembly and installation of the switch body, reduces maintenance time, reduces the risk of mechanical wear and fiber optic connections, and improves equipment maintenance efficiency and reliability.
Smart Images

Figure CN120378387A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of switches, and specifically to a communication switch for all - things intelligent connection. Background Art
[0002] All - things intelligent connection and the Internet of Things refer to the use of various information sensors, radio frequency identification technologies, global positioning systems, infrared sensors, laser scanners and other devices and technologies to collect any objects or processes that need to be monitored, connected and interacted in real - time, collect various required information such as their sound, light, heat, electricity, mechanics, chemistry, biology, location, etc., and through various possible network accesses, achieve the ubiquitous connection of things - to - things and things - to - people, realize the intelligent perception, identification and management of items and processes. A communication switch is the core device of network communication, which accurately forwards data through MAC / IP addresses, significantly improving the transmission efficiency and security. It supports functions such as VLAN division, QoS priority scheduling, and PoE power supply, and is widely used in enterprise networks, data centers and industrial scenarios. With the development of technology, modern switches are evolving towards SDN (Software - Defined Network), AI intelligent operation and maintenance, and high - density ports (such as 400G), providing a more intelligent and efficient network infrastructure support for digital construction.
[0003] In the construction of network infrastructure, existing communication switches are usually installed in dedicated metal or plastic equipment boxes and fixed by bolts through the preset installation holes in the box body. Although this installation method ensures the stability of the equipment, the internal space of the equipment box is usually relatively compact. The power cords, optical fibers and network cables of the switch are connected through the through - holes on the side of the box body. After the equipment has been running for a long time, the outer skins of the cables and optical fibers will harden and crack due to long - term bending and changes in temperature and humidity. In particular, the wires near the interfaces are prone to breakage, and it is difficult to disassemble and replace them, thus greatly increasing the maintenance cost and downtime of the communication switch. Summary of the Invention
[0004] The purpose of the present invention is to provide a communication switch for all - things intelligent connection to solve the problems raised in the above background art, that is, the internal space of the equipment box is usually relatively compact, the power cords, optical fibers and network cables of the switch are connected through the through - holes on the side of the box body. After the equipment has been running for a long time, the outer skins of the cables and optical fibers will harden and crack due to long - term bending and changes in temperature and humidity. In particular, the wires near the interfaces are prone to breakage, and it is difficult to disassemble and replace them, thus greatly increasing the maintenance cost and downtime of the communication switch. To achieve the above purpose, the present invention provides the following technical solution: A communication switch for all - things intelligent connection, including a switch protection box, and a protection plate is rotatably arranged on the front side of the switch protection box; It also includes two limit frames, which are respectively fixedly arranged on the upper and lower sides of the middle part of the switch protection box, and the switch body is arranged on the side of the inner wall of the limit frame, and the bottom of the inner wall of the limit frame is slidably provided with a resistance mechanism for moving the switch body; Two movable grooves are provided on the top of the switch body, and quick-release mechanisms for quickly repairing the switch body are slidably arranged inside the two movable grooves. Two connecting rods are rotatably arranged on the rear side of the protective plate.
[0005] Preferably, the connecting rod includes two rotating balls, and the two rotating balls are rotatably arranged on the rear side of the protective plate respectively, and a V-shaped rotating rod is fixedly arranged on the rear side of the two rotating balls, and a connecting frame is fixedly arranged on the side of the rear oblique rod of the V-shaped rotating rod, and a sliding column is movably sleeved inside the connecting frame, and a bearing is fixedly sleeved on the outer side of the sliding column. The double rotating ball design enables the protective plate to achieve multi-angle free rotation, and the unique structure of the V-shaped rotating rod not only ensures the structural strength but also provides sufficient space for movement. The sleeve connection method of the connecting frame and the sliding column is used in conjunction with the bearing, which greatly reduces mechanical wear and ensures smooth rotation performance after long-term use.
[0006] Preferably, the interference mechanism comprises a sliding groove, the sliding groove is provided at the bottom of the limit frame, the sliding groove is inclined at 45°, the shape of the interior of the sliding groove is a Chinese character "中", the interior of the sliding groove is respectively slidably matched with the side of the bearing and the sliding column, and the top of the sliding column is rounded; Long grooves are provided on the left and right sides of the bottom of the inner wall of the limit frame, and support plates are slidably arranged inside the two long grooves. Four first compression springs are fixedly arranged on the top of the support plate, and the top of the first compression spring is fixedly matched with the top of the inner wall of the long groove. The top of the support plate contacts the top of the switch body, and a resistance plate is fixedly arranged on the bottom of the support plate. The bottom of the resistance plate is beveled, and the length of the resistance plate is equal to the length of the inner wall of the long groove. The bottom of the resistance plate is slidably matched with the top of the sliding column. The special structural design of the Chinese-shaped sliding groove can accurately guide the motion trajectory, and the 45° inclination angle can effectively decompose the impact force after mechanical optimization. The combination of the first compression spring and the support plate forms an intelligent buffer system, which can automatically adjust the support strength according to the weight of the switch, and the resistance plate with the beveled angle significantly reduces the friction noise with the sliding column.
[0007] Preferably, five placement slots are provided at the rear side inside the limit frame. A clamping block is slidably arranged inside each of the five placement slots. The front side of the clamping block is fixedly connected to the rear side of the switch body. The clamping blocks correspond to the network cable sockets on the rear side of the switch body one by one. The design of the five independent placement slots corresponding to the network cable sockets realizes the modular positioning function. The slidable arrangement of the clamping blocks not only ensures the stable installation of the switch but also facilitates later maintenance. This split structure is particularly suitable for the compatibility requirements of different models of switches.
[0008] Preferably, the quick-release mechanism includes two moving blocks. The two moving blocks are respectively slidably arranged inside two moving slots. The shapes of the two moving blocks and the inside of the two moving slots are both T-shaped. Fixing slots are provided on the front and rear sides of the bottom of the inner wall of the moving slot. A protective cover is fixedly arranged on the top of the two moving blocks. C-shaped rods are movably inserted into the left and right sides of the protective cover. The vertical rod of the C-shaped rod extends into the inside of the moving block. The top of the moving block is movably inserted with a C-shaped rod and is slidably matched with the inside of the fixing slot; A rectangular slot is provided inside the moving block. A rectangular block is slidably arranged at the bottom of the inner wall of the rectangular slot. The side surface of the rectangular block is fixedly fitted with the side surface of the front vertical rod of the C-shaped rod. A second compression spring is fixedly arranged on the top of the rectangular block. The top end of the second compression spring is fixedly fitted with the top of the inner wall of the rectangular slot. The cooperation between the T-shaped moving block and the moving slot realizes the three-dimensional limiting function. The two-way locking mechanism of the protective cover, through the coordinated action of the C-shaped rod and the second compression spring, not only ensures the protection strength but also realizes one-handed quick disassembly.
[0009] Preferably, two connecting sleeves are fixedly arranged on the left side of the front side of the switch protection box. A round rod is rotatably arranged inside each of the two connecting sleeves. One end of the round rod is fixedly fitted with the side surface of the protection plate. The double-round rod rotating system provides a stable rotation axis for the protection plate. The inner lining of the connecting sleeve made of special material effectively prevents metal fatigue. This rotation mechanism with a symmetrical layout can evenly share the force and avoid the problem of unilateral wear.
[0010] Preferably, an arc-shaped groove is provided on the front side of the protection plate. A pull plate is fixedly arranged on the front side of the inner wall of the arc-shaped groove. Two magnetic attraction stones are fixedly arranged on the rear side of the protection plate. The arc-shaped groove conforms to the ergonomic principle. The anti-slip texture design of the pull plate enhances the operation feel. The overall structure takes into account the quick repair requirements while ensuring the protection performance.
[0011] Preferably, two through slots are provided on the rear side of the switch protection box. Two protection blocks are fixedly arranged inside the through slots. Heat dissipation openings are provided on the left and right sides of the switch protection box. A filter screen frame is fixedly arranged inside the heat dissipation openings. The heat dissipation openings cooperate with the filter screen to form a directional air flow. The symmetrical heat dissipation system on both sides of the box body can form air convection, achieving a perfect balance between dust prevention and heat dissipation.
[0012] Compared with the prior art, the present invention has the following beneficial effects: In the present invention, the protective plate is deflected forward and the V-shaped rotating rod and the sliding column are driven to slide forward by the rotating ball. When the sliding column moves to the front side of the inner wall of the sliding groove, it contacts the bottom of the contact plate, and the support plate is driven to move up by the contact plate, thereby driving the switch body to move up, and the card block is moved up from the placement groove, so that the switch body can be quickly taken out of the switch protection box, and the optical fiber and cable on the side of the switch body can be quickly disassembled and replaced, thereby reducing the time required for maintenance and downtime of the switch body.
[0013] In the present invention, after the switch body is repaired, the protective plate is in the open state of the switch protection box, so that the support plate can be located on the upper side of the inner wall of the long groove. When the switch body moves to the top of the support plate, the protective plate is rotated, and the sliding column is driven to move toward the rear side of the inner wall of the sliding groove through the connecting rod, so that the sliding column is released from the resistance plate, and then the resistance plate and the support plate drive the switch body to move downward through the first compression spring, and the card block moves downward toward the inner wall of the placement groove, thereby reducing the possibility of the optical fiber on the side of the switch body being squeezed when the switch body is installed.
[0014] In the present invention, the two C-shaped rods are moved upward to drive the two rectangular blocks upward, and the second compression spring is compressed to move the vertical rod of the C-shaped rod out of the fixed groove, thereby releasing the fixation of the two moving blocks. Secondly, the two moving blocks are driven to move toward the rear side of the inner wall of the moving groove through the protective cover, so that the switch protection box can be quickly opened to repair and replace the circuit board inside it. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention; Figure 2 This is an open diagram of the three-dimensional structure of the switch protection box of the present invention; Figure 3 It is a partial three-dimensional structural schematic diagram of the switch protection box of the present invention; Figure 4 It is a partial three-dimensional structure expansion diagram of the switch protection box of the present invention; Figure 5 It is a schematic diagram of the three-dimensional structure of the limiting frame of the present invention; Figure 6 It is a partial three-dimensional structural schematic diagram of the switch body of the present invention; Figure 7 It is a partial three-dimensional structure development diagram of the interference mechanism of the present invention; Figure 8 For the present invention Figure 7 A magnified view of the structure at center; Figure 9It is a three-dimensional structural expansion diagram of the connecting rod of the present invention; Figure 10 It is a partial three-dimensional structure expansion diagram of the switch body of the present invention; Figure 11 It is a partial three-dimensional structural schematic diagram of the quick release mechanism of the present invention; Figure 12 It is a partial three-dimensional structural cross-sectional view of the moving block of the present invention.
[0016] In the figure: 1. switch protection box; 101. connecting sleeve; 102. round rod; 103. through groove; 104. protective block; 105. heat dissipation port; 106. filter frame; 2. protective plate; 201. arc groove; 202. pull plate; 3. limit frame; 4. switch body; 5. resistance mechanism; 501. sliding groove; 502. clamping block; 503. long groove; 504. support plate; 505. first compression spring; 506. placement groove; 507. resistance plate; 6. moving groove; 7. quick release mechanism; 701. moving block; 702. C-shaped rod; 703. rectangular groove; 704. rectangular block; 705. second compression spring; 706. fixed groove; 707. protective cover; 8. connecting rod; 801. rotating ball; 802. V-shaped rotating rod; 803. connecting frame; 804. sliding column; 805. bearing. DETAILED DESCRIPTION
[0017] 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 described embodiments 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 technical personnel in this field without creative work are within the scope of protection of the present invention.
[0018] See also Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 , Figure 9 , Figure 10 , Figure 11 , Figure 12 , the present invention provides a technical solution: a communication switch for connecting all things intelligently, comprising a switch protection box 1, a protection plate 2 is rotatably provided on the front side of the switch protection box 1; It also includes two limit frames 3, which are fixedly arranged on the upper and lower sides of the middle part of the switch protection box 1, respectively. The side of the inner wall of the limit frame 3 is provided with a switch body 4, and the bottom of the inner wall of the limit frame 3 is slidably provided with a resistance mechanism 5 for moving the switch body 4; Two movable grooves 6 are provided on the top of the switch body 4 , and quick-release mechanisms 7 for quickly inspecting the switch body 4 are slidably arranged inside the two movable grooves 6 . Two connecting rods 8 are rotatably arranged on the rear side of the protective plate 2 . Example
[0019] See also Figure 1 , Figure 2 , Figure 7 , Figure 8 , Figure 9 , this embodiment provides a technical solution: The connecting rod 8 includes two rotating balls 801, which are rotatably arranged on the rear side of the protective plate 2, and a V-shaped rotating rod 802 is fixedly arranged on the rear side of the two rotating balls 801. A connecting frame 803 is fixedly arranged on the side of the rear oblique rod of the V-shaped rotating rod 802. A sliding column 804 is movably sleeved inside the connecting frame 803, and a bearing 805 is fixedly sleeved on the outer side of the sliding column 804. The abutment mechanism 5 includes a sliding groove 501, which is provided at the bottom of the limit frame 3, and is inclined at 45 degrees. The interior of the sliding groove 501 is in the shape of a Chinese character "中". The interior of the sliding groove 501 is respectively slidably matched with the side of the bearing 805 and the sliding column 804, and the top of the sliding column 804 is rounded. An arc-shaped groove 201 is provided on the front side of the protective plate 2, a pull plate 202 is fixedly provided on the front side of the inner wall of the arc-shaped groove 201, and two magnetic stones are fixedly provided on the rear side of the protective plate 2; In this embodiment, when the operator pulls the pull plate 202, the protective plate 2 will deflect forward steadily, and this action is transmitted to the V-shaped rotating rod 802 through the mechanical linkage mechanism, so that it produces a precise stretching movement. During the movement, the unique geometric structure of the V-shaped rotating rod 802 effectively converts the linear tension into the directional displacement of the sliding column 804, pushing the sliding column 804 to move stably toward the front side along the inner wall of the sliding groove 501. It is particularly worth noting that the bearing 805 plays a key role in this process: on the one hand, it significantly reduces the rotational friction generated by the sliding column 804 when sliding in the sliding groove 501, and on the other hand, it ensures that the sliding column 804 can maintain an ideal horizontal motion trajectory, so that the opening and closing action of the protective plate is both light and precise, and the mechanical wear between the components is controlled to a minimum range; Example
[0020] See also Figure 1 , Figure 2 , Figure 3 , Figure 7 , Figure 8 , this embodiment provides a technical solution: On both the left and right sides of the bottom inside the limit frame 3, long grooves 503 are provided. Inside the two long grooves 503, a support plate 504 is slidably arranged. On the top of the support plate 504, four first compression springs 505 are fixedly arranged. The top ends of the first compression springs 505 are fixedly fitted with the top of the inner wall of the long groove 503. The top of the support plate 504 is in contact with the top of the switch body 4. At the bottom of the support plate 504, a contact plate 507 is fixedly arranged. The bottom of the contact plate 507 is chamfered, and the length of the contact plate 507 is equal to the length of the inner wall of the long groove 503. The bottom of the contact plate 507 is slidably fitted with the top of the sliding column 804; On the rear side inside the limit frame 3, five placement grooves 506 are provided. Inside the five placement grooves 506, blocks 502 are slidably arranged. The front sides of the blocks 502 are fixedly connected to the rear side of the switch body 4. The blocks 502 correspond one by one to the network cable sockets on the rear side of the switch body 4; On the rear side of the switch protection box 1, two through grooves 103 are provided. Inside the through grooves 103, two protection blocks 104 are fixedly arranged. On both the left and right sides of the switch protection box 1, heat dissipation openings 105 are provided. Inside the heat dissipation openings 105, filter frames 106 are fixedly arranged; In this embodiment, the support plate 504 serves as the core load-bearing component of the switch body 4 and can provide stable and reliable bottom support for the switch body 4. When the installer pushes the switch body 4 into the limit frame 3, the blocks 502 on the rear side of the switch body 4 will move synchronously, and be precisely positioned inside the limit frame 3, so that the blocks 502 can perfectly align with the internal space of the placement grooves 506, forming a precise positioning effect. This precise cooperation relationship ensures that the fiber optic plug can be accurately inserted into the corresponding interface at the best angle, avoiding connection problems caused by position deviation. More importantly, this structural design effectively eliminates the extrusion stress that may occur between the switch body 4 and the limit frame 3, provides sufficient protection space for the fragile fiber optic connection, and greatly reduces the risk of damage to the fiber optic due to mechanical extrusion during installation and use. The coordinated operation of the entire system not only ensures the convenience of equipment installation, but also ensures the reliability and safety of fiber optic connection; Embodiment
[0021] Please refer to Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 、 Figure 6 、 Figure 10 、 Figure 11 、 Figure 12 , this embodiment provides a technical solution: The quick release mechanism 7 includes two moving blocks 701, which are respectively slidably arranged inside the two moving grooves 6. The two moving blocks 701 and the inside of the two moving grooves 6 are both T-shaped. The front and rear sides of the bottom of the inner wall of the moving groove 6 are provided with fixed grooves 706. The tops of the two moving blocks 701 are fixedly provided with protective covers 707. The left and right sides of the protective covers 707 are movably plugged with C-shaped rods 702. The vertical rods of the C-shaped rods 702 extend to the inside of the moving blocks 701. The tops of the moving blocks 701 are movably plugged with the C-shaped rods 702 and slideably cooperate with the inside of the fixed grooves 706. A rectangular groove 703 is provided inside the moving block 701, a rectangular block 704 is slidably provided at the bottom of the inner wall of the rectangular groove 703, the side of the rectangular block 704 is fixedly matched with the side of the front vertical rod of the C-shaped rod 702, a second compression spring 705 is fixedly provided at the top of the rectangular block 704, and the top end of the second compression spring 705 is fixedly matched with the top of the inner wall of the rectangular groove 703; Two connection sleeves 101 are fixedly provided on the left side of the front side of the switch protection box 1. Round rods 102 are rotatably provided inside the two connection sleeves 101. One end of the round rod 102 is fixedly matched with the side surface of the protection plate 2. In this embodiment, when the operator needs to release the protective state of the protective cover 707, the two C-shaped rods 702 need to be pulled up at the same time. First, the vertical movement of the C-shaped rod 702 will exert upward pressure on the second compression spring 705, causing it to produce elastic compression deformation. As the compression spring continues to be compressed, the vertical rod part of the C-shaped rod 702 will gradually disengage from the locking position of the fixed groove 706. When the vertical rod is completely out of the fixed groove 706, the mechanical locking state between the protective cover 707 and the moving block 701 is released. At this time, the protective cover 707 can be freely moved so that it no longer covers the switch body 4, thereby completely releasing the protective state. The entire unlocking process is smooth and stable. The buffering effect of the compression spring ensures a comfortable operating feel. At the same time, the precise mechanical coordination ensures that the reliable locking performance can be maintained after long-term use. The use method and advantages of the present invention: The use method of the communication switch for connecting all things intelligently, the working process is as follows: like Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 , Figure 9 , Figure 10 , Figure 11 , Figure 12As shown: when the switch body 4 needs to be disassembled, first, the operator should use both hands to firmly hold the non-slip grip of the pull plate 202, apply force evenly to the front, and drive the protective plate 2 to deflect forward smoothly. During this process, the rotating ball 801 inside the protective plate 2 will synchronously generate a rotational motion. The ball hinge mechanism can efficiently transmit the rotational torque to the V-shaped rotating rod 802. The special geometric structure of the V-shaped rotating rod 802 converts the rotational motion into linear displacement, driving the sliding column 804 to slide forward along the inner wall of the sliding groove 501. During the entire sliding process, the precision bearing 805 plays a key guiding and friction-reducing role to ensure that the sliding column 804 always maintains a horizontal motion trajectory. The sliding column 804 moves to the sliding groove 5 01, when the front end of the inner wall is at the limit position, the top thereof will form a surface contact with the bottom of the resistance plate 507, so that the resistance plate 507 will begin to bear a vertical upward thrust, and this force is directly transmitted to the bearing surface of the support plate 504 through a rigid connection. The support plate 504 will produce a progressive compression on the first compression spring 505 during the rising process. As the support plate 504 continues to rise, the switch body 4 is vertically displaced. When the card block 502 is moved out of the placement slot 506, the switch body 4 is in a completely unlocked state. At this time, it can be easily taken out from the inside of the switch protection box 1, and then the optical fiber and cable on the side of the switch body 4 can be quickly disassembled and replaced, reducing the time required for repair and downtime of the switch body 4. After completing the maintenance work of the switch body 4, the protective plate 2 is in the open state, so that the installation space of the switch protection box 1 is completely exposed. At this time, the support plate 504 is kept in the upper position in the long groove 503, and the switch body 4 is smoothly moved to the top platform of the support plate 504, and the position is carefully adjusted to ensure that the block 502 is accurately aligned with the upper opening of the inner wall of the placement groove 506. This alignment process requires special attention to the angle and position to ensure the smooth progress of the subsequent installation. After completing the initial positioning, the operator rotates the protective plate 2. This action will drive the sliding column 804 to move smoothly toward the rear side along the inner wall of the sliding groove 501 through the linkage mechanism of the connecting rod 8. As the sliding column 804 moves backward, its front end gradually separates from the contact surface with the contact plate 507, releasing the upward pressure on the contact plate 507. At this time, the elastic potential energy stored in the first compression spring 505 begins to be released, and the support plate 504 and the contact plate 507 are pushed downward as a whole through their rebound force. This downward movement drives the switch body 4 to move downward synchronously, so that the card block 502 slides smoothly along the guide groove of the inner wall of the placement groove 506 and finally reaches the locking position on the lower side. This precise installation mechanism design has multiple advantages: first, automatic alignment and locking during the installation process are achieved through mechanical linkage, reducing the difficulty of manual adjustment; second, the buffering effect of the first compression spring 505 ensures the stability of the installation process and avoids sudden impact. At the same time, the progressive downward pressure installation method effectively protects the optical fiber interface on the side of the switch body 4. By controlling the downward movement speed and force, the risk of the optical fiber cable being squeezed and damaged during the installation process is significantly reduced; After the switch body 4 is successfully taken out from the switch protection box 1, the internal circuit board inspection work can be started. First, the locking mechanism of the protection box needs to be released. The operator needs to hold the handles of the two C-shaped rods 702 at the same time and apply force evenly in the vertical direction. This lifting action will drive the two rectangular blocks 704 to move upward synchronously through the linkage mechanism. During this process, the second compression spring 705 is compressed and stores elastic potential energy. As the C-shaped rod 702 continues to move upward, its vertical rod part gradually disengages from the engaging position of the fixing groove 706, thereby completely releasing the mechanical locking state of the two moving blocks 701. After unlocking, the operator can hold the handle of the protective cover 707 and apply force to the rear side steadily in the horizontal direction. This action will drive the two moving blocks 701 to slide to the rear side along the inner wall of the moving groove 6 through the connecting mechanism. The sliding process of the moving block 701 is smooth and its special wear-resistant coating effectively reduces the friction resistance. When the moving block 701 moves to the rear end limit position of the moving groove 6, the upper cover of the entire switch protection box 1 is completely opened, revealing the internal circuit board installation area. At this time, the maintenance personnel can easily detect, repair or replace the circuit board, thereby quickly improving the efficiency of equipment maintenance. The foregoing has shown and described the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments, and the above embodiments and the descriptions in the specification are only preferred examples of the present invention and are not used to limit the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and all these changes and improvements fall within the scope of the present invention claimed. The scope of the present invention claimed is defined by the appended claims and their equivalents.
Claims
1. A communication switch for intelligent interconnection of all things, comprising a switch protection box (1), wherein a protection plate (2) is rotatably provided on the front side of the switch protection box (1); It is characterized in that It also comprises two limit frames (3), the two limit frames (3) being fixedly arranged at the upper and lower sides of the middle part of the switch protection box (1), respectively; the side surfaces of the inner walls of the limit frames (3) are provided with a switch body (4); and the bottom of the inner wall of the limit frames (3) is slidably provided with a resistance mechanism (5) for moving the switch body (4); The top of the switch body (4) is provided with two movable grooves (6), and quick-release mechanisms (7) for quickly inspecting the switch body (4) are slidably disposed inside the two movable grooves (6), and two connecting rods (8) are rotatably disposed on the rear side of the protective plate (2).
2. The communication switch for all-things intelligent connection according to claim 1, characterized in that: The connecting rod (8) comprises two rotating balls (801), the two rotating balls (801) are rotatably arranged on the rear side of the protective plate (2), and a V-shaped rotating rod (802) is fixedly arranged on the rear side of the two rotating balls (801). The V-shaped rotating rod (802) is fixedly arranged with a connecting frame (803), the interior of the connecting frame (803) is movably sleeved with a sliding column (804), and the outer side of the sliding column (804) is fixedly sleeved with a bearing (805).
3. The communication switch for all-things intelligent connection according to claim 2, wherein: The interference mechanism (5) comprises a sliding groove (501), the sliding groove (501) is provided at the bottom of the limiting frame (3) and is arranged to be inclined at 45°, and the interior of the sliding groove (501) is respectively slidably matched with the side surfaces of the bearing (805) and the sliding column (804); Long grooves (503) are provided on both left and right sides of the bottom of the inner wall of the limit frame (3); support plates (504) are slidably arranged inside the two long grooves (503); a first compression spring (505) is arranged at the top of the support plate (504) and the top of the inner wall of the long groove (503); the top of the support plate (504) contacts the top of the switch body (4); a resistance plate (507) is fixedly arranged at the bottom of the support plate (504); the bottom of the resistance plate (507) is beveled, and the length of the resistance plate (507) is equal to the length of the inner wall of the long groove (503); the bottom of the resistance plate (507) is slidably matched with the top of the sliding column (804).
4. A communication switch for all-things intelligent connection according to claim 1, characterized in that: Five placement slots (506) are provided on the rear side of the interior of the limit frame (3), and a card block (502) is slidably arranged inside each of the five placement slots (506). The front side of the card block (502) is fixedly connected to the rear side of the switch body (4), and the card block (502) corresponds one-to-one to the network cable socket on the rear side of the switch body (4).
5. The communication switch for all-things intelligent connection according to claim 1, characterized in that: The quick-release mechanism (7) includes two moving blocks (701), the two moving blocks (701) are respectively slidably arranged inside two moving grooves (6), fixed grooves (706) are formed on the front and rear sides of the bottom of the inner wall of the moving groove (6), a protective cover (707) is fixedly arranged on the top of the two moving blocks (702), C-shaped rods (702) are movably inserted into the left and right sides of the protective cover (707), the vertical rods of the C-shaped rods (702) extend into the inside of the moving blocks (701), and the C-shaped rods (702) are movably inserted into the tops of the moving blocks (701) and are slidably matched with the inside of the fixed grooves (706); A rectangular groove (703) is formed inside the moving block (701), a rectangular block (704) is slidably arranged at the bottom of the inner wall of the rectangular groove (703), the side surface of the rectangular block (704) is fixedly matched with the side surface of the front vertical rod of the C-shaped rod (702), and a second compression spring (705) is fixedly arranged between the top of the rectangular block (704) and the top of the inner wall of the rectangular groove (703).
6. The communication switch for all-things intelligent connection according to claim 1, characterized in that: Two connecting sleeves (101) are fixedly arranged on the left side of the front side of the switch protection box (1), round rods (102) are rotatably arranged inside the two connecting sleeves (101), and one end of each round rod (102) is fixedly matched with the side surface of the protection plate (2).
7. The communication switch for all-things intelligent connection according to claim 1, characterized in that: An arc-shaped groove (201) is formed on the front side of the protection plate (2), a pull plate (202) is fixedly arranged on the front side of the inner wall of the arc-shaped groove (201), and two magnetic attraction stones are fixedly arranged on the rear side of the protection plate (2).
8. A communication switch for all-things intelligent connection according to claim 1, characterized in that: Two through grooves (103) are formed on the rear side of the switch protection box (1), two protection blocks (104) are fixedly arranged inside the through grooves (103), heat dissipation openings (105) are formed on the left and right sides of the switch protection box (1), and filter frames (106) are fixedly arranged inside the heat dissipation openings (105).