Probe-type unified operation and maintenance monitoring device

By designing heat dissipation components for the monitoring host and processing host in the operation and maintenance monitoring device and using fans to blow air from top to bottom, the problem of poor heat dissipation in traditional devices is solved, efficient heat dissipation and dust prevention effects are achieved, and the stability and operation and maintenance efficiency of the equipment are improved.

CN223488266UActive Publication Date: 2025-10-28CHINA NAT BUILDING MATERIALS TECH CO LTD +2
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Patent Information

Application Number
CN202422287336.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-19
Publication Date
2025-10-28
Estimated Expiration
2034-09-19

AI Technical Summary

Technical Problem

Traditional operation and maintenance monitoring devices have poor heat dissipation effects, which affects the stable operation of internal electronic components and causes equipment to run unsmoothly.

Method used

A probe-type unified operation and maintenance monitoring device has been designed, including a monitoring host and a processing host. A heat dissipation component is installed in the monitoring host. Air is blown from top to bottom by a fan, and heat dissipation holes and air inlet covers are used for efficient heat dissipation. Heat dissipation holes are also set in the processing host to prevent dust from entering.

Benefits of technology

It achieves efficient heat dissipation, prevents dust from entering, ensures stable operation of the equipment, and improves operation and maintenance efficiency and service quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of network monitoring devices, in particular to a probe type unified operation and maintenance monitoring device, which comprises a monitoring host, a support cover fixedly mounted at the bottom of the monitoring host, a support cylinder fixedly mounted at the bottom of the support cover, a through hole arranged in the support cylinder, a top cover fixedly mounted at the bottom end of the support cylinder, and a probe mounted on the top cover. A processing host is fixedly installed on the bottom face of the top cover, a plurality of heat dissipation holes are formed in left and right side plate bodies of the processing host, a heat dissipation assembly is arranged on a top shell of the monitoring host and comprises an air inlet cover, an air inlet pipe is fixedly installed at the tail end of the air inlet cover, and a fan is fixedly installed on the pipe wall of the air inlet pipe. A uniform distribution pipe is fixedly installed at the tail end of the air inlet pipe, a ventilation cavity is formed in the uniform distribution pipe, and a plurality of air outlet holes are formed in the bottom wall of the ventilation cavity. According to the utility model, heat dissipation operation is facilitated, a good heat dissipation effect is achieved, and meanwhile, a certain effect of preventing dust from entering can be achieved.
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Description

Technical Field

[0001] This utility model relates to the field of network monitoring device technology, specifically to a probe-type unified operation and maintenance monitoring device. Background Technology

[0002] Network probes are network traffic processing tools capable of collecting, analyzing, and extracting information from network traffic. They are widely used in network security, network monitoring, and management. Network probes capture network data packets flowing through network interfaces and perform in-depth analysis on these packets to achieve network traffic monitoring, analysis, and management. Their main functions include: traffic collection, protocol identification, log recording, attack detection, rule matching, and situational awareness display.

[0003] As enterprises become increasingly information-driven, the number of network devices, servers, and application systems is growing rapidly, leading to increased complexity and difficulty in operation and maintenance management. Traditional operation and maintenance methods suffer from incomplete monitoring, untimely response, and difficulty in fault location, making it difficult to meet the high demands of modern enterprises for operational efficiency and service quality. Currently, to achieve efficient and comprehensive operation and maintenance, probes are deployed at key network nodes. These probes enable comprehensive monitoring of network devices, servers, and application systems, and data analysis and processing are performed through a unified monitoring platform to improve operational efficiency and service quality, achieving comprehensive monitoring and timely response.

[0004] However, when using network probes for operation and maintenance, a corresponding operation and maintenance monitoring device is required. Commercially available such devices typically consist of two main units, one above the other, each containing electronic components. During heat dissipation, they rely solely on ventilation holes on their side panels. However, relying on these holes results in poor airflow, hindering heat dissipation and impacting the stable operation of internal electronic components. This leads to sluggish device operation and inconvenience for users. Therefore, we propose a probe-based unified operation and maintenance monitoring device. Utility Model Content

[0005] The purpose of this invention is to provide a probe-type unified operation and maintenance monitoring device to address the deficiencies mentioned in the background art.

[0006] To achieve the above objectives, the present invention provides the following technical solutions:

[0007] A probe-type unified operation and maintenance monitoring device includes a monitoring host. A support cover connected to the interior of the monitoring host is fixedly installed at the bottom of the monitoring host. A support cylinder is fixedly installed at the bottom of the support cover. A through hole is provided inside the support cylinder. A top cover is fixedly installed at the bottom end of the support cylinder. A processing host is fixedly installed on the bottom surface of the top cover. Multiple heat dissipation holes connected to the outside are provided on the left and right side plates of the processing host. A heat dissipation assembly is provided on the top shell of the monitoring host. The heat dissipation assembly includes an air inlet shroud fixedly installed on the top shell of the monitoring host. An air inlet pipe is fixedly installed at the end of the air inlet shroud. A fan is fixedly installed on the wall of the air inlet pipe. A distribution pipe is fixedly installed at the end of the air inlet pipe. The distribution pipe is fixedly installed on the top wall of the monitoring host. A ventilation chamber is provided inside the distribution pipe. Multiple air outlet holes are provided on the bottom wall of the ventilation chamber.

[0008] Preferably, the plane containing the bottom wall of the heat dissipation hole is inclined downward at 30° to 60°, and the air inlet shroud is horizontal.

[0009] Preferably, the air outlet is arranged vertically downwards, and the distance between two adjacent air outlets is 2cm to 3.5cm.

[0010] Preferably, the plane of the inner wall of the support cover is inclined downward at 15° to 45°, and the inner diameter of the through hole is 5cm to 9cm.

[0011] Preferably, the monitoring host is equipped with a unified monitoring platform, and the unified monitoring platform is equipped with an analysis and alarm module.

[0012] Preferably, the processing host is internally equipped with a data transmission and encryption module and a probe module, and multiple connectors are provided on the side plate of the processing host.

[0013] Preferably, the top cover is fixedly connected to the processing host by a plurality of fastening screws, the length of the processing host is 10cm to 18cm, and the width of the processing host is 8cm to 12cm.

[0014] Compared with the prior art, the beneficial effects of the present invention are:

[0015] 1. This utility model features a monitoring host and a processing host. The monitoring host contains a heat dissipation component, and the processing host contains heat dissipation holes. Since the monitoring host generates relatively little heat, a fan is used to blow air from top to bottom to dissipate heat, thus achieving efficient heat dissipation by expelling heat through the heat dissipation holes.

[0016] 2. By placing the heat dissipation component at the top and setting the air inlet shroud horizontally, this utility model can prevent dust from the ground or desktop from being sucked into the processing host, thus achieving a certain degree of dust protection. Attached Figure Description

[0017] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0018] Figure 2 This is a schematic diagram of the exploded structure of this utility model;

[0019] Figure 3 This is a partial structural schematic diagram of the present invention;

[0020] Figure 4 This is a cross-sectional view of the uniformly distributed pipe of this utility model;

[0021] Figure 5 This is a system module block diagram of the present invention;

[0022] The meanings of the labels in the diagram are as follows:

[0023] 1. Monitoring host; 10. Unified monitoring platform; 101. Analysis and alarm module; 11. Support cover;

[0024] 2. Processing host; 20. Data transmission and encryption module; 21. Probe module; 22. Connector; 23. Heat dissipation hole; 24. Top cover; 25. Support cylinder; 251. Through hole;

[0025] 3. Heat dissipation components; 30. Air inlet shroud; 31. Air inlet duct; 311. Fan; 32. Distributed pipe; 33. Ventilation chamber; 331. Air outlet. Detailed Implementation

[0026] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0027] Please see Figure 1-Figure 5This utility model provides a technical solution: a probe-type unified operation and maintenance monitoring device, including a monitoring host 1. A support cover 11, which is connected to the interior of the monitoring host 1, is fixedly installed at the bottom of the monitoring host 1. A support cylinder 25 is fixedly installed at the bottom of the support cover 11. A through hole 251 is provided inside the support cylinder 25. A top cover 24 is fixedly installed at the bottom end of the support cylinder 25. A processing host 2 is fixedly installed on the bottom surface of the top cover 24. The top cover 24 and the processing host 2 are fixedly connected by multiple fastening screws, which facilitates installation, disassembly and maintenance operations. The length of the processing host 2 is 10cm to 18cm and the width of the processing host 2 is 8cm to 12cm, so that the processing host 2 can be stably supported on the desktop for use.

[0028] Specifically, the left and right side panels of the processing host 2 are provided with multiple heat dissipation holes 23 that communicate with the outside. The top shell of the monitoring host 1 is provided with a heat dissipation component 3. The heat dissipation component 3 includes an air inlet shroud 30 fixedly installed on the top shell of the monitoring host 1. An air inlet pipe 31 is fixedly installed at the end of the air inlet shroud 30. A fan 311 is fixedly installed on the wall of the air inlet pipe 31. A distribution pipe 32 is fixedly installed at the end of the air inlet pipe 31. The distribution pipe 32 is fixedly installed on the top wall of the monitoring host 1. A ventilation chamber 33 is provided inside the distribution pipe 32. Multiple air outlet holes 331 are provided on the bottom wall of the ventilation chamber 33 to realize ventilation and heat dissipation from the monitoring host 1 to the processing host 2, thereby improving the heat dissipation effect.

[0029] In this embodiment, the plane of the bottom wall of the heat dissipation hole 23 is inclined downward at 30° to 60°, and the air inlet cover 30 is horizontally arranged, so that dust is not easy to enter the heat dissipation hole 23 and the air inlet cover 30.

[0030] Specifically, the air outlet 331 is arranged vertically downwards, and the distance between two adjacent air outlets 331 is 2cm to 3.5cm, so as to realize the air blowing and heat dissipation operation from top to bottom.

[0031] Furthermore, the plane of the inner wall of the support cover 11 is inclined downward at 15° to 45°, and the inner diameter of the through hole 251 is 5cm to 9cm, so that air flows more smoothly along the support cover 11 and the through hole 251.

[0032] In addition, the monitoring host 1 is equipped with a unified monitoring platform 10, and the unified monitoring platform 10 is equipped with an analysis and alarm module 101; the processing host 2 is equipped with a data transmission and encryption module 20 and a probe module 21. Multiple connectors 22 are located on the side panel of the processing host 2. The probe module 21 is a high-efficiency monitoring tool installed on key nodes such as network devices and servers to collect real-time data such as device performance indicators, system logs, and network traffic. The probe module 21 has functions such as real-time data acquisition, alarm triggering, and data storage, and can actively collect and monitor the operating status of devices according to different device protocols. The probe module 21 also features low resource consumption and minimal impact on server performance, ensuring monitoring without affecting business operations. The unified monitoring platform 10 is used to receive... The unified monitoring platform 10 processes data from the probe module 21; it has functions such as data analysis, fault location, and alarm notification, and can display the operating status of network devices, servers, and application systems in real time, helping maintenance personnel to quickly discover and solve problems; the unified monitoring platform 10 supports various data visualization methods, such as dashboards and reports, making it convenient for maintenance personnel to intuitively understand the system status; the data transmission and encryption module 20 transmits data to the unified monitoring platform 10 in an encrypted manner to ensure the security and reliability of data transmission; the analysis and alarm module 101 can perform in-depth analysis of the collected data, identify potential security threats and performance bottlenecks, and when an anomaly or fault is detected, the platform can automatically trigger an alarm mechanism to notify maintenance personnel via email, SMS, etc., to ensure that problems are handled in a timely manner.

[0033] It is worth noting that when using the unified monitoring platform 10, analysis and alarm module 101, data transmission and encryption module 20, and probe module 21, the probe module 21 should first be deployed on key nodes such as network devices and servers. Select the appropriate probe model and configuration according to actual needs, install and configure the probe module 21 to ensure it can collect data and transmit it to the unified monitoring platform 10 normally. Then, build the unified monitoring platform 10 on the corresponding computer equipment, configure the corresponding server and database resources, connect the probe module 21 to the unified monitoring platform 10, and ensure that the data can be transmitted and processed normally. Set monitoring indicators and alarm thresholds, and set the performance indicators and alarm thresholds to be monitored according to business needs, such as CPU utilization, memory usage, and network traffic. Configure alarm notification methods to ensure that maintenance personnel can be notified promptly when anomalies or faults are detected.

[0034] Finally, it should be noted that the unified monitoring platform 10, analysis and alarm module 101, data transmission and encryption module 20, and probe module 21 involved in this utility model are all general standard parts or parts known to those skilled in the art. Their structures and principles can be learned by those skilled in the art through technical manuals or conventional experimental methods. In the idle space of this device, all the above-mentioned electrical components, which refer to power elements, electrical components, and adapted controllers and power supplies, are connected by wires. The specific connection methods should refer to the working principle of this utility model. The electrical connections between each electrical component are completed in the order of operation. The detailed connection methods are all technologies known in the art.

[0035] When using the probe-type unified operation and maintenance monitoring device of this utility model, the processing host 2 is placed on the corresponding desktop as a support, and the fan 311 is connected to an external power source and made to work. When the fan 311 works, it draws in outside air and blows air from top to bottom into the monitoring host 1 and the processing host 2. Since the heat dissipation of the monitoring host 1 is relatively small, the air blown down enters the processing host 2 and is blown out from the heat dissipation hole 23, thereby blowing the internal heat outward and completing the heat dissipation operation.

[0036] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely preferred examples and are not intended to limit the utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. A probe-type unified operation and maintenance monitoring device, comprising a monitoring host (1), characterized in that: The bottom of the monitoring host (1) is fixedly equipped with a support cover (11) that communicates with the interior of the monitoring host (1). A support cylinder (25) is fixedly installed at the bottom of the support cover (11). A through hole (251) is provided inside the support cylinder (25). A top cover (24) is fixedly installed at the bottom end of the support cylinder (25). A processing host (2) is fixedly installed on the bottom surface of the top cover (24). Multiple heat dissipation holes (23) communicating with the outside are provided on the left and right side plates of the processing host (2). A heat dissipation assembly is provided on the top shell of the monitoring host (1). (3) The heat dissipation component (3) includes an air intake shroud (30) fixedly installed on the top shell of the monitoring host (1). An air intake pipe (31) is fixedly installed at the end of the air intake shroud (30). A fan (311) is fixedly installed on the pipe wall of the air intake pipe (31). A distribution pipe (32) is fixedly installed at the end of the air intake pipe (31). The distribution pipe (32) is fixedly installed on the top wall of the monitoring host (1). A ventilation chamber (33) is provided inside the distribution pipe (32). A plurality of air outlet holes (331) are provided on the bottom wall of the ventilation chamber (33).

2. The probe-type unified operation and maintenance monitoring device according to claim 1, characterized in that: The bottom wall of the heat dissipation hole (23) is inclined downward at 30° to 60°, and the air inlet cover (30) is horizontal.

3. The probe-type unified operation and maintenance monitoring device according to claim 1, characterized in that: The air outlet (331) is arranged vertically downwards, and the distance between two adjacent air outlets (331) is 2cm to 3.5cm.

4. The probe-type unified operation and maintenance monitoring device according to claim 1, characterized in that: The plane of the inner wall of the support cover (11) is inclined downward at 15° to 45°, and the inner diameter of the through hole (251) is 5cm to 9cm.

5. The probe-type unified operation and maintenance monitoring device according to claim 1, characterized in that: The monitoring host (1) is equipped with a unified monitoring platform (10), and the unified monitoring platform (10) is equipped with an analysis and alarm module (101).

6. The probe-type unified operation and maintenance monitoring device according to claim 1, characterized in that: The processing host (2) is equipped with a data transmission and encryption module (20) and a probe module (21) inside, and multiple connectors (22) are provided on the side plate of the processing host (2).

7. The probe-type unified operation and maintenance monitoring device according to claim 1, characterized in that: The top cover (24) is fixedly connected to the processing host (2) by a number of fastening screws. The length of the processing host (2) is 10cm to 18cm and the width of the processing host (2) is 8cm to 12cm.