Enterprise network intelligent monitoring device
By introducing a network cable clamping and positioning mechanism and a temperature monitoring and heat dissipation structure into the enterprise network monitoring device, the problems of unstable network cable connections and messy wiring are solved, and stable network signal transmission and efficient device management are achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-26
- Publication Date
- 2026-04-10
AI Technical Summary
The existing network monitoring devices for enterprises have unstable network cable connections that are prone to loosening, affecting network signal transmission. Furthermore, the lack of effective positioning and fixing structures results in messy and easily damaged cabling.
An intelligent monitoring device for enterprise networks was designed, which adopts a network cable binding and positioning mechanism, including a converter cable, a network data adapter and a network cable binding and positioning mechanism. The device achieves precise positioning and initial fixation of the plug through positioning posts, limiting grooves and locking structures, and combines temperature sensors and micro fans for real-time temperature monitoring and heat dissipation.
It improves the stability of network cable connections and the reliability of network signal transmission, reduces the risk of equipment damage, ensures continuous and stable network connections, simplifies operation procedures, and improves the convenience and efficiency of network management.
Smart Images

Figure CN121840281A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of network monitoring technology, specifically to an intelligent monitoring device for enterprise networks. Background Technology
[0002] A network consists of several nodes and links connecting these nodes, representing numerous objects and their interrelationships. With the advancement of technology, the Internet of Things is realized, and networks are used in various aspects of life and work, making people's lives and work more convenient. During the deployment of enterprise networks, in order to protect the network security of the enterprise, it is necessary to install network security protection devices. Through this device system, network problems can be detected and feedback can be provided, ensuring network security.
[0003] A search revealed a Chinese patent with authorization announcement number CN220874557U, which discloses an enterprise network monitoring device, including a monitoring unit. The monitoring unit is equipped with a cabling mechanism, which includes a connector. Multiple connectors are detachably connected to one side of the monitoring unit. A retainer is provided on one side of the monitoring unit, and one side of the retainer is fixedly connected to the multiple connectors. The retainer has a "C"-shaped structure and multiple sets of equally spaced slots. Symmetrical protrusions are provided inside the slots, and the protrusions are fixedly connected to the retainer.
[0004] The enterprise network monitoring device in the above patent has the following shortcomings: the network monitoring equipment has a simple structure and lacks good cabling components. A large number of network cables are connected by bundling with cable ties, resulting in poor connection stability, messiness, and unsightly appearance. Maintenance is also very inconvenient. In addition, uneven arrangement of network cables can easily cause bending and wear, affecting network signal transmission.
[0005] Existing network cable connectors lack effective positioning and fixing structures, leading to unstable connections that are prone to loosening and affecting the stability of network signal transmission. In actual enterprise environments, network cables are susceptible to damage from personnel movement and equipment vibration, which can easily cause connectors to loosen and fall off. When equipment operates for extended periods or in high-temperature environments, existing network cable connections often rely on natural heat dissipation, which can easily lead to performance degradation, malfunctions, or even damage to the equipment. Therefore, corresponding technical solutions need to be designed to address these issues. Summary of the Invention
[0006] To address the shortcomings of existing technologies, this invention provides an intelligent monitoring device for enterprise networks, solving its technical problems.
[0007] To achieve the above objectives, the present invention provides the following technical solution: an enterprise network intelligent monitoring device, comprising a network intelligent monitoring device body, an adapter cable, a network data adapter, a network cable, and a network cable clamping and positioning mechanism. Mounting angle plates are installed at both ends of the front of the network intelligent monitoring device body, which are used to install the network intelligent monitoring device body into the network monitoring box. A power port is provided at the rear end of the network intelligent monitoring device body, which is used to connect a power cable harness for power supply. Network ports are distributed at the front end of the network intelligent monitoring device body. The adapter cable is connected to the inner end of the network data adapter, and the end of the adapter cable is connected to a network cable plug. The network cable plug is plugged into a network port, and the rear end of the network data adapter is provided with an adapter network port for transmitting network data. The network cable restraint and positioning mechanism is installed at the top and bottom of the network intelligent monitoring device body, and the network cable restraint and positioning mechanism corresponds to the network port and network data adapter. The network cable passes through the network cable restraint and positioning mechanism and is connected to the network cable plug for restraining and positioning the network cable. The network cable plug is inserted into the adapter port.
[0008] Preferably, the network data adapter has L-shaped support rods fixed at both ends of its rear portion. The support rods are fixed to the outer end of the network cable binding and positioning mechanism, and the inner end of the network data adapter is electrically connected to a monitoring device. The L-shaped support rod is used to fix the network data adapter to the outer end of the mounting plate, and the monitoring device is used to directly monitor and observe from the front, avoiding network failure caused by human touch or removal.
[0009] Preferably, the network cable plug has hand-held plates fixed at both ends, and a connecting plate is fixed between the hand-held plates; An extension plate is fixedly provided on the side of the handheld plate, a positioning post is fixedly provided at the rear end of the extension plate, and a limiting plate is fixedly provided at the upper and lower ends of the positioning post. The network port has a socket on its side, and a limiting groove is provided above and below the socket. The connecting plate is used to horizontally fix the handheld plate, which is used for hand-held insertion and removal of network cable plugs. The socket and limiting groove are used to precisely align the positioning post and the limiting plate, forming an adapter cable plug-in structure. This makes it convenient for operators to hold the network cable plug for insertion and removal, improving the ease of operation. During insertion, the positioning post is inserted into the socket, and the limiting plate is engaged in the limiting groove, achieving precise positioning and initial fixation of the plug and port. This effectively prevents the plug from shaking and shifting during insertion, greatly improving the accuracy and stability of the insertion.
[0010] Preferably, a movable groove is provided above the limiting groove, a movable hole is provided at the lower rear of the movable groove, and a locking groove is provided near the rear of the upper end of the limiting plate, the locking groove corresponding to the movable hole; A limiting ring is fixedly provided in the middle of the movable hole, a spring frame is fixedly provided at the upper end of the limiting ring, an end plate is fixedly provided at the upper end of the spring frame, a locking pin is fixedly provided at the bottom of the end plate, and the lower end of the locking pin is inserted into the locking groove. The movable groove is used to adjust the push rod to move back and forth, the movable hole is used to adjust the end plate and locking pin to move up and down, the end plate is used to fix the spring frame upward, the spring frame is used to elastically fix the end plate upward, and the locking pin is used to fix and extend into the locking groove at the lower end of the end plate to form a plug anti-disengagement locking function, thereby locking the limit plate and positioning pin.
[0011] Preferably, a spring rod is fixedly provided at the front end of the movable groove, a pressing head is fixedly provided at the front end of the spring rod, a push rod is fixedly provided at the rear end of the pressing head, the push rod passes through the interior of the spring rod and extends into the movable groove, and a magnetic suction plate is fixedly provided at the rear end of the push rod; The pressing head is fixed to the front of the push rod, the spring rod provides elastic support for the pressing head, and the magnetic plate is fixed to the rear of the push rod and uses magnetism to attract the end plate, causing the end plate and locking pin to move upward elastically and leave the locking slot to unlock. This makes the unlocking operation of the plug very simple and convenient. The operator only needs to press the pressing head lightly to complete the unlocking, without the need for tools or complicated operations, reducing operation time and labor intensity. It also prevents easy unlocking due to misoperation, improving the safety and stability of network cable installation.
[0012] Preferably, the network cable binding and positioning mechanism includes a mounting plate and a temperature sensor. The mounting plate is bolted to the upper and lower ends of the network intelligent monitoring device body, and heat dissipation fins are fixedly distributed on both sides of the mounting plate. The temperature sensors are fixedly distributed on the outer end of the mounting plate. The side end of the temperature sensor is connected to a power supply port. The outer end of the power supply port is connected to a connecting wire. The outer end of the connecting wire is connected to an inductive power plug. The inductive power plug is electrically connected to the main body of the network intelligent monitoring device. Multiple temperature sensors can monitor the temperature of the network cable uniformly over a large area, and the power supply port, connecting wires, and inductive power plug are used for joint power supply.
[0013] Preferably, the network cable binding and positioning mechanism further includes a network cable binding support structure. The network cable binding support structure includes a support plate, a support ring, a telescopic structure one, a telescopic structure two, and a telescopic structure three. The support plate is in several sets and has an arc-shaped notch at the top. The support ring is located above the support plate. The telescopic structure one is connected between the bottom middle of the support ring and the support plate. The telescopic structure two and the telescopic structure three are respectively connected to the upper ends of both sides of the support ring. The bottom of the telescopic structure two and the telescopic structure three are respectively fixed with pad one and pad two. The pad one and pad two are fixed at the top ends of the support plate. The arc-shaped notch support plate is used to stably place the network cable through the top of the support ring. Telescopic structure one, telescopic structure two, and telescopic structure three are used to adjust the diameter of the support ring, which is suitable for various specifications of network cables. Pad one and pad two are used to fix and support telescopic structure two and telescopic structure three upwards, respectively.
[0014] Preferably, a support cylinder is fixedly distributed at one top end of the support plate, a column is connected to the upper end of the support cylinder, an adjusting bolt is threaded through the outer end of the support cylinder, a baffle is fixedly provided at the upper end of the column, a movable shaft is fixedly provided between the baffles, a shaft cylinder is rotatably connected to the outside of the movable shaft, a positioning plate is fixedly provided on the outside of the shaft cylinder, and the positioning plate is fixedly provided at the bottom of the mounting pad. A retaining plate is fixedly provided at the other end of the top of the support plate. A retaining groove is provided at the outer end of the retaining plate. A positioning rod is connected through the inside of the retaining groove. A locking nut and a locking structure are connected to the upper end of the outer side of the positioning rod by a thread. The locking nut and the locking structure are located at the upper and lower ends of the retaining groove. A protruding plate is fixedly distributed on the outer side wall of the locking structure. An extension rod is fixedly connected to the upper end of the positioning rod. A movable sleeve is fixedly provided at the upper end of the extension rod. A positioning frame is rotatably connected to both ends of the movable sleeve. The positioning frame is fixedly located at the bottom of the mounting pad. The adjusting bolts are used for manual telescopic adjustment of the column and support cylinder, facilitating the adjustment of the support plate height. The positioning plate is fixed to the bottom of the mounting pad and is used to movably connect to the middle of the movable shaft via the shaft cylinder. The clamping plate is used to open a slot at the outward end, which is used to pass through the positioning rod and rotate and lock the locking nut and locking structure. The protruding plate is used for hand-held rotation operation of the locking structure. The positioning rod and extension rod are located between the positioning frame and can be movably flipped for adjustment. The positioning frame is used to fix to the bottom of the mounting pad.
[0015] Preferably, the support plate is fixedly provided with a fixing plate at the front and rear ends, the fixing plate is fixedly provided with a connecting rod at both ends, the outer end of the connecting rod is rotatably connected to a shaft plate, and a positioning roller is rotatably connected between the shaft plates near the upper end; A hydraulic rod is fixedly provided on the outer side near the lower end of the shaft plate. The outer end of the hydraulic rod is connected to an arc-shaped tubular support ring frame. A support plate is fixedly distributed on the inner side of the support ring frame. The support plate is fixedly provided at the lower end of the support plate. A connecting spring is fixedly distributed on the inner end of the shaft plate. The fixing plate is used to fix the connecting rods at both ends. The connecting rods are used to rotate the support shaft plate. The shaft plate is used to rotate the support positioning roller at the upper end. The positioning roller is used to directly contact the network cable for elastic pressing and roller support. The connecting spring is used to elastically connect the shaft plate. The support plate is used to fix the support ring frame to the lower end of the support plate with high strength and stability. The hydraulic rod is hydraulically connected to both ends of the support ring frame and hydraulically supports the shaft plate, forming an elastic support function. At the same time, the hydraulic rod and the connecting spring can provide elastic buffering, reduce the impact of external forces on the network cable, protect the network cable from damage, effectively protect the network cable, reduce the damage caused by external forces, and improve the stability of network signal transmission.
[0016] Preferably, the network cable binding and positioning mechanism further includes an extension mounting plate and a miniature fan. The extension mounting plate is fixedly connected to the middle of the side of the mounting pad, the miniature fan is fixedly disposed at the outer end of the extension mounting plate, the output end of the miniature fan is electrically connected to a fan power plug, the side end of the miniature fan is connected to a suction hose, and the outer end of the suction hose is connected to an adapter hose. The upper end of the support plate has air inlets, and the lower part of the air inlets is connected to an air guide pipe. The air guide pipe is distributed at the bottom and sides of the support plate and its outer end is connected to a U-shaped pipe frame structure. The adapter hose is connected to the side end of the air frame. The inner ends of the ring are provided with slots. The extension mounting plate is fixed to the middle of the side of the mounting pad to install the miniature fan. The miniature fan is used to power the network intelligent monitoring device through the fan power plug. The suction hose and the adapter hose are used to draw air into the connecting duct frame. The U-shaped duct frame is used to connect multiple air guide pipes. The air guide pipes are used to connect to the air inlet at the inner end. The air inlet is used for large-area, multi-position air intake and heat dissipation. The slot is used for effective ventilation when in contact with the network cable, forming a highly efficient ventilation and heat dissipation function.
[0017] Compared with the prior art, the beneficial effects of the present invention are as follows: (1) By plugging and installing network cable plugs and network data adapters at the external end of the network port, as well as plugging and installing network cable plugs and network cables at the external end of the adapter network port, it is convenient to install and connect network cables, directly detect network connection data and signals, quickly identify network cables, and facilitate direct observation by staff. (2) By using the adapter cable plug-in structure connected to the side of the network cable plug, the plug and port are accurately positioned and initially fixed, which effectively prevents the plug from shaking and shifting during the plug-in process, greatly improving the accuracy and stability of the plug-in, making the connection between the adapter cable and the network port more secure and reliable, reducing network signal interruption or data transmission errors caused by loose plug-in, and improving the stability and reliability of enterprise network monitoring; at the same time, operators can perform plug-in operations more easily and accurately, saving operation time, improving work efficiency, and reducing the risk of equipment damage caused by improper operation; and the plug anti-detachment locking structure set on the side of the network cable plug is simple, reliable, and easy to operate, which can effectively prevent the network cable from being affected by factors such as personnel walking and equipment vibration, which may cause the plug to become loose and fall off, ensuring the continuous stability of the network connection, ensuring the normal operation of the enterprise network monitoring system, and reducing the losses and risks caused by network interruption; (3) Through the set temperature monitoring structure, the temperature change of the network cable can be monitored in real time and the temperature information can be fed back to the monitoring system. When the temperature is too high, the ventilation and heat dissipation structure will be linked in time to dissipate heat, so as to avoid the equipment being damaged due to overheating. The heat of the network cable can be dissipated in time, significantly improving the heat dissipation efficiency of the network cable, extending the service life of the network cable, and ensuring the stable performance of the network cable during long-term operation. (4) By setting up a network cable binding and positioning mechanism, the network cable can be flexibly adjusted according to its thickness to achieve effective support and positioning of the network cable, effectively manage the network cable to avoid tangling and mess, make the enterprise's network cabling neater and more orderly, reduce the damage caused by the network cable to external force, improve the stability of network signal transmission, facilitate the maintenance and replacement of network cables, and improve the efficiency and convenience of network management. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the overall front upper right view structure of the present invention; Figure 2 This is a schematic diagram of the overall front lower left view structure of the present invention; Figure 3 This is a schematic diagram of the overall rear-top view structure of the present invention; Figure 4 This is a schematic diagram of the network data adapter structure of the present invention; Figure 5 For the present invention Figure 3 Enlarged structural diagram at point A in the middle; Figure 6 This is a schematic diagram of the adapter cable plug-in structure of the present invention; Figure 7 For the present invention Figure 6 Enlarged structural diagram at point B; Figure 8 This is a schematic diagram of the plug anti-dislodgement locking structure of the present invention; Figure 9 For the present invention Figure 8 Enlarged structural diagram at point C; Figure 10 This is a schematic cross-sectional view of the positioning and locking structure of the present invention; Figure 11 This is a schematic diagram of the network data transfer structure and the network cable binding and positioning mechanism of the present invention; Figure 12 This is a schematic diagram of the cable binding and positioning mechanism of the present invention; Figure 13 This is a schematic diagram of the mounting plate and temperature monitoring structure of the present invention; Figure 14 This is a schematic diagram of the cable binding support structure and heat dissipation structure of the present invention; Figure 15 For the present invention Figure 14 Enlarged structural diagram at point D; Figure 16 This is a schematic diagram of the cable binding and support mechanism of the present invention from the front upper view. Figure 17 This is a schematic diagram of the cable binding and support mechanism of the present invention from a side-top view. Figure 18 This is a schematic diagram of the cable binding and support mechanism of the present invention from the lower front view. Figure 19 For the present invention Figure 16 Enlarged structural diagram at point E; Figure 20 For the present invention Figure 17 Enlarged structural diagram at point F.
[0019] In the diagram: 1. Network intelligent monitoring device body; 10. Socket; 101. Limiting groove; 102. Movable groove; 103. Movable hole; 11. Network port; 12. Power port; 13. Mounting corner plate; 2. Adapter cable; 21. Network cable plug; 22. Handheld plate; 221. Connecting plate; 23. Extension plate; 231. Positioning post; 232. Limiting plate; 2321. Locking slot; 241. Spring rod; 242. Push rod; 243. Press head; 244. Magnetic plate; 25. End plate; 251. Locking post; 252. Spring frame; 253. Limiting ring; 3. Network data adapter; 31. Support pole; 32. Monitoring device; 33. Adapter network port; 4. Network cable; 41. Network cable plug; 5. Cable binding and positioning mechanism; 51. Mounting pad; 511. Heat dissipation fins; 52. Extension mounting plate; 53. Miniature fan; 531. Fan power plug; 532. Suction hose; 533. Adapter hose; 534. Duct support; 535. Air duct; 54. Temperature sensor; 541. Power supply port; 542. Connecting cable; 543. Inductive power plug; 55. Cable binding support structure; 550. Air inlet; 551. Support plate; 5511. Card plate; 55111. Card slot; 552. Support ring; 5521. Empty slot; 5522. Telescopic structure one; 5523. Telescopic joint Structure 2; 55231, Pad 1; 5524, Telescopic Structure 3; 55241, Pad 2; 56, Positioning Roller; 561, Shaft Plate; 562, Connecting Rod; 563, Fixing Plate; 564, Support Ring Frame; 565, Hydraulic Rod; 566, Support Plate; 567, Connecting Spring; 57, Positioning Frame; 571, Movable Sleeve; 572, Extension Rod; 573, Locking Nut; 574, Locking Structure; 5741, Protruding Plate; 575, Positioning Rod; 58, Positioning Plate; 581, Shaft Cylinder; 582, Movable Shaft; 583, Baffle; 584, Column; 585, Support Cylinder; 5851, Adjusting Bolt. Detailed Implementation
[0020] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0021] Please see Figures 1-20 This invention provides a technical solution: an enterprise network intelligent monitoring device, including a network intelligent monitoring device body 1, a converter cable 2, a network data adapter 3, a network cable 4, and a network cable binding and positioning mechanism 5. The front two ends of the network intelligent monitoring device body 1 are equipped with mounting angle plates 13, which are used to install the network intelligent monitoring device body 1 into the network monitoring box. The rear end of the network intelligent monitoring device body 1 is provided with a power port 12, which is used to plug in a power cable harness for power supply. The front end of the network intelligent monitoring device body 1 is provided with network ports 11. The adapter cable 2 is connected to the inner end of the network data adapter 3, and the end of the adapter cable 2 is connected to the network cable plug 21. The network cable plug 21 is plugged into the network port 11. The rear end of the network data adapter 3 is provided with an adapter network port 33 for transferring network data. The network cable binding and positioning mechanism 5 is installed at the upper and lower ends of the network intelligent monitoring device body 1. The network cable binding and positioning mechanism 5 corresponds to the network port 11 and the network data adapter 3. The network cable 4 passes through the network cable binding and positioning mechanism 5 and is connected to the network cable plug 41, which is used to bind and position the network cable 4. The network cable plug 41 is plugged into the adapter port 33.
[0022] In a further improvement, L-shaped support rods 31 are fixedly provided at both ends of the rear part of the network data adapter 3. The support rods 31 are fixedly provided at the outer end of the network cable binding and positioning mechanism 5. The inner end of the network data adapter 3 is electrically connected to a monitoring device 32. The L-shaped support rod 31 is used to fix the network data adapter 3 to the outer end of the mounting plate 51, and the monitoring device 32 is used to directly monitor and observe from the front to avoid network failure caused by human touch or removal.
[0023] For further improvements, see [link / reference] Figure 6-10 Handheld plates 22 are fixedly provided at both ends of the network cable plug 21, and a connecting plate 221 is fixedly provided between the handheld plates 22; An extension plate 23 is fixedly provided on the side of the handheld plate 22, a positioning post 231 is fixedly provided at the rear end of the extension plate 23, and a limiting plate 232 is fixedly provided at the upper and lower ends of the positioning post 231. A socket 10 is provided on the side of the network port 11, and a limiting groove 101 is provided above and below the socket 10; The connecting plate 221 is used to fix the handheld plate 22 laterally. The handheld plate 22 is used for hand-held insertion and removal of the network cable plug 21. The socket 10 and the limiting groove 101 are used to precisely align the positioning post 231 and the limiting plate 232 to form a cable adapter insertion structure. This makes it convenient for operators to hold the network cable plug 21 for insertion and removal, improving the ease of operation. During insertion, the positioning post 231 is inserted into the socket 10, and the limiting plate 232 is engaged in the limiting groove 101, achieving precise positioning and initial fixation of the plug and port. This effectively prevents the plug from shaking and shifting during insertion, greatly improving the accuracy and stability of insertion.
[0024] Further improvements include a movable groove 102 above the limiting groove 101, a movable hole 103 below the rear of the movable groove 102, and a locking groove 2321 near the rear of the upper end of the limiting plate 232, with the locking groove 2321 corresponding to the movable hole 103. A limiting ring 253 is fixedly provided in the middle of the movable hole 103. A spring frame 252 is fixedly provided at the upper end of the limiting ring 253. An end plate 25 is fixedly provided at the upper end of the spring frame 252. A locking pin 251 is fixedly provided at the bottom of the end plate 25. The lower end of the locking pin 251 is inserted into the locking groove 2321. The movable groove 102 is used to adjust the push rod 242 back and forth, and the movable hole 103 is used to adjust the end plate 25 and the locking pin 251 up and down. The end plate 25 is used to fix the spring frame 252 upward, and the spring frame 252 is used to elastically fix the end plate 25 upward. The locking pin 251 is used to fix and extend into the locking groove 2321 at the lower end of the end plate 25 to form a plug anti-disengagement locking function, thereby locking the limit plate 232 and the positioning pin 231.
[0025] In a further improvement, a spring rod 241 is fixedly provided at the front end of the movable groove 102, a pressing head 243 is fixedly provided at the front end of the spring rod 241, a push rod 242 is fixedly provided at the rear end of the pressing head 243, the push rod 242 passes through the interior of the spring rod 241 and extends into the movable groove 102, and a magnetic suction plate 244 is fixedly provided at the rear end of the push rod 242. The pressing head 243 is fixed to the front of the push rod 242, the spring rod 241 is used to elastically support the pressing head 243, and the magnetic plate 244 is fixed to the rear end of the push rod 242 and uses magnetic function to attract the end plate 25, so that the end plate 25 and the locking pin 251 elastically move upward and leave the locking groove 2321 to unlock. This makes the unlocking operation of the plug very simple and convenient. The operator only needs to press the pressing head 243 to complete the unlocking without the need for tools or complicated operations, reducing operation time and labor intensity, and preventing easy unlocking due to misoperation, thus improving the safety and stability of network cable installation.
[0026] Further improvements include a network cable binding and positioning mechanism 5 comprising a mounting plate 51 and a temperature sensor 54. The mounting plate 51 is bolted to the upper and lower ends of the network intelligent monitoring device body 1, and heat dissipation fins 511 are fixedly distributed on both sides of the mounting plate 51. Temperature sensors 54 are fixedly distributed on the outer end of mounting plate 51. A power supply port 541 is connected to the side end of temperature sensors 54. A connecting wire 542 is connected to the outer end of power supply port 541. An inductive power plug 543 is connected to the outer end of connecting wire 542. The inductive power plug 543 is electrically connected to the main body 1 of network intelligent monitoring device. The temperature sensor 54 is model FRT06. Multiple temperature sensors 54 can monitor the temperature of the network cable uniformly over a large area. The power supply port 541, the connecting cable 542 and the induction power plug 543 are used for joint power supply. The heat dissipation fins 511 are used to directly dissipate the heat of the mounting plate 51.
[0027] Further improvements include a network cable binding and positioning mechanism 5, which also includes a network cable binding support structure 55. The network cable binding support structure 55 includes a support plate 551, a support ring 552, a telescopic structure one 5522, a telescopic structure two 5523, and a telescopic structure three 5524. The support plate 551 is in several sets and has an arc-shaped notch on the top. The support ring 552 is located above the support plate 551. The telescopic structure one 5522 is connected between the bottom middle of the support ring 552 and the support plate 551. The telescopic structure two 5523 and the telescopic structure three 5524 are respectively connected to the upper ends of both sides of the support ring 552. The bottom of the telescopic structure two 5523 and the telescopic structure three 5524 are respectively fixed with pad one 55231 and pad two 55241. The pad one 55231 and the pad two 55241 are fixed at the top two ends of the support plate 551. The arc-shaped notch support plate 551 is used to stably place the network cable above the support ring 552. Telescopic structure one 5522, telescopic structure two 5523 and telescopic structure three 5524 are used to adjust the diameter of the support ring 552, which is suitable for various specifications of network cables. The pad one 55231 and the pad two 55241 are used to fix and support the telescopic structure two 5523 and the telescopic structure three 5524 upwards, respectively.
[0028] Further improvements include a support cylinder 585 fixedly distributed at one top end of the support plate 551, a column 584 connected to the upper end of the support cylinder 585, an adjusting bolt 5851 threadedly connected to the outer end of the support cylinder 585, a baffle 583 fixedly provided at the upper end of the column 584, a movable shaft 582 fixedly provided between the baffles 583, a shaft cylinder 581 rotatably connected to the outside of the movable shaft 582, a positioning plate 58 fixedly provided on the outside of the shaft cylinder 581, and the positioning plate 58 fixedly provided at the bottom of the mounting pad 51. A retaining plate 5511 is fixedly provided at the other end of the top of the support plate 551. A retaining groove 55111 is provided at the outer end of the retaining plate 55111. A positioning rod 575 is connected through the groove 55111. A locking nut 573 and a locking structure 574 are threadedly connected to the upper end of the outer side of the positioning rod 575. The locking nut 573 and the locking structure 574 are located at the upper and lower ends of the groove 55111. A protruding plate 5741 is fixedly distributed on the outer side wall of the locking structure 574. An extension rod 572 is fixedly connected to the upper end of the positioning rod 575. A movable sleeve 571 is fixedly provided at the upper end of the extension rod 572. A positioning frame 57 is rotatably connected to both ends of the movable sleeve 571. The positioning frame 57 is fixedly located at the bottom of the mounting pad 51. Adjusting bolt 5851 is used for manual telescopic adjustment of column 584 and support cylinder 585 to facilitate adjustment of the height of support plate 551. Positioning plate 58 is fixed to the bottom of mounting pad 51 and is used to movably connect to the middle of movable shaft 582 via shaft cylinder 581. Clamping plate 5511 is used to open a groove 55111 at the outward end. The groove 55111 is used to pass through positioning rod 575 and rotate and lock locking nut 573 and locking structure 574. Protruding plate 5741 is used for hand-held rotation operation of locking structure 574. Positioning rod 575 and extension rod 572 are located between positioning frame 57 for movable flip adjustment. Positioning frame 57 is used to fix to the bottom of mounting pad 51.
[0029] Further improvements include fixing plates 563 fixedly provided at the front and rear ends of the support plate 551, connecting rods 562 fixedly provided at both ends of the fixing plate 563, shaft plates 561 rotatably connected to the outer ends of the connecting rods 562, and positioning rollers 56 rotatably connected between the shaft plates 561 near the upper end. A hydraulic rod 565 is fixedly provided on the lower outer side of the shaft plate 561. An arc-shaped tubular support ring frame 564 is connected to the outer end of the hydraulic rod 565. A support plate 566 is fixedly distributed on the inner side of the support ring frame 564. The support plate 566 is fixedly provided on the lower end of the support plate 551. A connecting spring 567 is fixedly distributed on the inner end of the shaft plate 561. The fixing plate 563 is used to fix the connecting rods 562 at both ends. The connecting rods 562 are used to rotate the support shaft plate 561. The shaft plate 561 is used to rotate the positioning roller 56 at the upper end. The positioning roller 56 is used to directly contact the network cable for elastic pressing and roller support. The connecting spring 567 is used to elastically connect the shaft plate 561. The support plate 566 is used to fix the support ring frame 564 to the lower end of the support plate 551 with high strength and stability. The hydraulic rod 565 is hydraulically connected to both ends of the support ring frame 564 and hydraulically supports the shaft plate 561, forming an elastic support function. At the same time, the hydraulic rod 565 and the connecting spring 567 can provide elastic buffering, reduce the impact of external forces on the network cable, protect the network cable from damage, effectively protect the network cable, reduce the damage caused by external forces, and improve the stability of network signal transmission.
[0030] Specifically, the network cable binding and positioning mechanism 5 also includes an extension mounting plate 52 and a miniature fan 53. The extension mounting plate 52 is fixedly connected to the middle of the side of the mounting pad 51. The miniature fan 53 is fixedly installed at the outer end of the extension mounting plate 52. The output end of the miniature fan 53 is electrically connected to a fan power plug 531. The side end of the miniature fan 53 is connected to a suction hose 532. The outer end of the suction hose 532 is connected to an adapter hose 533. The upper end of the support plate 551 has air inlet holes 550, and the lower part of the air inlet holes 550 is connected to the air guide pipe 535. The air guide pipe 535 is distributed at the bottom and both sides of the support plate 551 and the outer end is connected to the air duct frame 534 with a U-shaped pipe frame structure. The adapter hose 533 is connected to the side end of the air duct frame 534. The inner ends of the ring 552 are provided with slots 5521; The extension mounting plate 52 is fixed to the middle of the side of the mounting pad 51 to install the miniature fan 53. The miniature fan 53 is used to connect to the network intelligent monitoring device body 1 for power supply through the fan power plug 531. The suction hose 532 and the adapter hose 533 are used to draw air into the connecting duct frame 534. The U-shaped duct frame 534 is used to connect multiple air guide pipes 535. The air guide pipes 535 are used to connect to the air inlet 550 at the inner end. The air inlet 550 is used for large-area, multi-position air intake and heat dissipation. The slot 5521 is used for effective ventilation when in contact with the network cable, forming a high-efficiency ventilation and heat dissipation function.
[0031] Working principle: The network intelligent monitoring device body 1 is installed inside the network monitoring box using the mounting bracket 13, and the power cable is plugged into the power port 12 at the rear of the network intelligent monitoring device body 1 for power supply. The handheld plates 22 at both ends of the handheld network cable plug 21 are used to insert the network cable plug 21 into the network port 11. The positioning pin 231 and the limiting plate 232 are aligned with the plug hole 10 and the limiting groove 101 and inserted to achieve initial positioning and fixation. Under the elastic action of the spring frame 252, the lower end of the locking pin 251 at the bottom of the end plate 25 is inserted into the locking groove 2321 to lock the limiting plate 232 and the positioning pin 231, thus completing the plug anti-dislodgement locking. The network cable 4 is passed through the support plate 551 of the network cable binding and positioning mechanism 5. According to the specifications of the network cable, the diameter of the support ring 552 is adjusted by telescopic structure one 5522, telescopic structure two 5523 and telescopic structure three 5524 so that the network cable is stably placed above the support ring 552. By rotating the adjusting bolt 5851 at the outer end of the support cylinder 585, the height of the support plate 551 can be changed by manually extending and retracting the column 584. At the same time, the positioning rod 575 and the extension rod 572 can be moved and rotated between the positioning frame 57 for adjustment. The positioning rod 575 is passed through the slot 55111 at the outer end of the card plate 5511. The locking nut 573 and the locking structure 574 are rotated to further stabilize and fix the support plate 551. The hydraulic rod 565 hydraulically supports the shaft plate 561 from the outer end, and the connecting spring 567 elastically supports the shaft plate 561 from the inner end, so that the positioning roller 56 directly contacts the network cable, elastically presses and rolls to support the network cable. This achieves effective support and positioning of the network cable 4, avoids its tangling and mess, makes the enterprise's network cabling neater and more orderly, reduces damage caused by external pulling force, and improves the stability of network signal transmission. Connect the network cable plug 41 at the end of the network cable 4 to the adapter port 33 at the rear of the network data adapter 3. Monitor the data and signals through the network data adapter 3, and then transmit them to the network intelligent monitoring device body 1 through the adapter cable 2 to monitor the network in real time. Multiple temperature sensors 54 monitor the temperature changes of the network cable 4 in real time and feed the temperature information back to the network intelligent monitoring device 1. When the temperature is too high, the ventilation and heat dissipation structure is activated in time to dissipate heat and the micro fan 53 is automatically started. The heat of the network cable 4 is dissipated at the slot 5521 and is guided downward through multiple air inlets 550 to the air duct 535 and the air duct frame 534. Finally, the air is exhausted through the suction hose 532 and the adapter hose 533 to prevent the equipment from being damaged due to overheating. The heat of the network cable 4 is dissipated in time, which significantly improves the heat dissipation efficiency of the network cable 4. To unplug the network cable plug 21, press the press head 243. The push rod 242 moves backward under the action of the spring rod 241. The magnetic plate 244 at the rear end uses magnetic attraction to the end plate 25, causing the end plate 25 and the locking pin 251 to move upward elastically. The locking pin 251 leaves the locking groove 2321, thus unlocking. After unlocking, you can hold the hand plate 22 to unplug the network cable plug 21.
[0032] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. It will be apparent to those skilled in the art that the invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the scope of the invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
[0033] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. An enterprise network intelligent monitoring device, comprising a network intelligent monitoring device body (1), a converter cable (2), a network data adapter (3), a network cable (4), and a network cable binding and positioning mechanism (5), characterized in that: The front two ends of the network intelligent monitoring device body (1) are equipped with mounting corner plates (13), the rear end of the network intelligent monitoring device body (1) is provided with a power port (12), and the front end of the network intelligent monitoring device body (1) is provided with network ports (11). The adapter cable (2) is connected to the inner end of the network data adapter (3), and the end of the adapter cable (2) is connected to a network cable plug (21). The network cable plug (21) is plugged into the network port (11). The rear end of the network data adapter (3) is provided with an adapter network port (33) for transferring network data. The network cable binding and positioning mechanism (5) is installed at the upper and lower ends of the network intelligent monitoring device body (1), and the network cable binding and positioning mechanism (5) is a corresponding structure with the network port (11) and the network data adapter (3). The network cable (4) passes through the network cable binding and positioning mechanism (5) and is connected to the network cable plug (41) and is used to bind and position the network cable (4). The network cable plug (41) is plugged into the adapter port (33).
2. The enterprise network intelligent monitoring device according to claim 1, characterized in that: The network data adapter (3) has L-shaped support rods (31) fixed at both ends of its rear. The support rods (31) are fixed at the outer end of the network cable binding and positioning mechanism (5). The inner end of the network data adapter (3) is electrically connected to a monitoring device (32).
3. The enterprise network intelligent monitoring device according to claim 1, characterized in that: Handheld plates (22) are fixedly provided at both ends of the network cable plug (21), and a connecting plate (221) is fixedly provided between the handheld plates (22). An extension plate (23) is fixedly provided on the side of the handheld plate (22), a positioning post (231) is fixedly provided at the rear end of the extension plate (23), and a limiting plate (232) is fixedly provided at the upper and lower ends of the positioning post (231). The network port (11) has a socket (10) on its side, and a limiting groove (101) is provided above and below the socket (10).
4. The enterprise network intelligent monitoring device according to claim 3, characterized in that: The upper part of the limiting groove (101) is provided with a movable groove (102), the lower part of the rear of the movable groove (102) is provided with a movable hole (103), and the upper end of the limiting plate (232) is provided with a locking groove (2321) near the rear, the locking groove (2321) corresponds to the movable hole (103); A limiting ring (253) is fixedly provided at the middle of the movable hole (103). A spring frame (252) is fixedly provided at the upper end of the limiting ring (253). An end plate (25) is fixedly provided at the upper end of the spring frame (252). A locking pin (251) is fixedly provided at the bottom of the end plate (25). The lower end of the locking pin (251) is inserted into the locking groove (2321).
5. The enterprise network intelligent monitoring device according to claim 4, characterized in that: A spring rod (241) is fixedly provided at the front end of the movable groove (102), a pressing head (243) is fixedly provided at the front end of the spring rod (241), a push rod (242) is fixedly provided at the rear end of the pressing head (243), the push rod (242) passes through the interior of the spring rod (241) and extends into the movable groove (102), and a magnetic suction plate (244) is fixedly provided at the rear end of the push rod (242).
6. The enterprise network intelligent monitoring device according to claim 1, characterized in that: The network cable binding and positioning mechanism (5) includes a mounting plate (51) and a temperature sensor (54). The mounting plate (51) is installed on the upper and lower ends of the network intelligent monitoring device body (1) by bolts, and the temperature sensor (54) is fixedly distributed on the outer end of the mounting plate (51).
7. The enterprise network intelligent monitoring device according to claim 1, characterized in that: The network cable binding and positioning mechanism (5) further includes a network cable binding support structure (55), which includes a support plate (551), a support ring (552), a telescopic structure one (5522), a telescopic structure two (5523), and a telescopic structure three (5524). The support plate (551) consists of several sets and has an arc-shaped notch on the top. The support ring (552) is located above the support plate (551). The telescopic structure one (5522) is connected between the bottom middle of the support ring (552) and the support plate (551). The telescopic structure two (5523) and the telescopic structure three (5524) are respectively connected to the upper ends of the two sides of the support ring (552).
8. The enterprise network intelligent monitoring device according to claim 7, characterized in that: A support cylinder (585) is fixedly distributed at one end of the top of the support plate (551). A column (584) is connected to the upper end of the support cylinder (585). An adjusting bolt (5851) is threaded through the outer end of the support cylinder (585). A baffle (583) is fixedly provided at the upper end of the column (584). A movable shaft (582) is fixedly provided between the baffles (583). A shaft cylinder (581) is rotatably connected to the outside of the movable shaft (582). A positioning plate (58) is fixedly provided on the outside of the shaft cylinder (581). A card plate (5511) is fixedly provided at the other end of the top of the support plate (551). A slot (55111) is provided at the outer end of the card plate (55111). A positioning rod (575) is connected through the slot (55111). A locking nut (573) and a locking structure (574) are threadedly connected to the upper end of the positioning rod (575). An extension rod (572) is fixedly connected to the upper end of the positioning rod (575). A movable sleeve (571) is fixedly provided at the upper end of the extension rod (572). A positioning frame (57) is rotatably connected to both ends of the movable sleeve (571). The positioning plate (58) and the positioning frame (57) are fixedly provided at the bottom ends of the mounting pad (51).
9. The enterprise network intelligent monitoring device according to claim 8, characterized in that: The support plate (551) is fixed with a fixing plate (563) at its front and rear ends. The fixing plate (563) is fixed with a connecting rod (562) at both ends. The outer end of the connecting rod (562) is rotatably connected with a shaft plate (561). The upper end of the shaft plates (561) is rotatably connected with a positioning roller (56). A hydraulic rod (565) is fixedly provided on the lower outer side of the shaft plate (561). An arc-shaped tubular support ring frame (564) is connected to the outer end of the hydraulic rod (565). A support plate (566) is fixedly distributed on the inner side of the support ring frame (564). A connecting spring (567) is fixedly distributed on the inner end of the shaft plate (561).
10. The enterprise network intelligent monitoring device according to claim 9, characterized in that: The network cable binding and positioning mechanism (5) also includes an extension mounting plate (52) and a miniature fan (53). The extension mounting plate (52) is fixedly connected to the middle of the side of the mounting pad (51). The miniature fan (53) is fixedly installed at the outer end of the extension mounting plate (52). The side end of the miniature fan (53) is connected to a suction hose (532), and the outer end of the suction hose (532) is connected to an adapter hose (533). The upper end of the support plate (551) is provided with air inlets (550), and the air inlets (550) are connected to the lower part of the air duct (535). The air duct (535) is distributed at the bottom and sides of the support plate (551) and the outer end is connected to the air duct frame (534) with a U-shaped pipe frame structure. The adapter hose (533) is connected to the side end of the air duct frame (534). The inner ends of the ring (552) are provided with slots (5521).
Citation Information
Patent Citations
Enterprise network monitoring device
CN220874557U