Network security event response device

By using a servo motor to drive the adjusting screw and adjusting sleeve, the side block and slide plate move. Combined with the meshing transmission of the drive gear and rotating plate, the height and angle limitations of the network security incident response device are solved, enabling flexible multi-angle adjustment and timely response, thus improving security performance.

CN121876286APending Publication Date: 2026-04-17SHANGHAI BOJUN ELECTRONIC TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SHANGHAI BOJUN ELECTRONIC TECHNOLOGY CO LTD
Filing Date
2023-08-28
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Existing cybersecurity incident response devices have limitations in height and angle, resulting in untimely responses and reduced security performance.

Method used

The servo motor drives the adjusting screw and adjusting sleeve to move the side block and slide plate, thereby moving the adjusting column and adjusting the position of the alarm. Combined with the meshing transmission of the drive gear and the rotating plate, multi-angle adjustment is achieved, enhancing the flexibility of the response device.

Benefits of technology

It enables timely response to cybersecurity incidents, improves the security performance of the device, and ensures continuous and reliable system operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of network security, and discloses a network security event response device, which comprises a response device body, the response device body comprises an adjusting seat, the bottom of the inner wall of the adjusting seat is fixedly connected with a servo motor, the output end of the servo motor is fixedly connected with an adjusting screw rod, and the adjusting screw rod is fixedly connected with the adjusting seat. And the bottom of the surface of the adjusting screw rod is in threaded connection with an adjusting screw sleeve. According to the network security event response device, an adjusting screw rod is driven to rotate through a servo motor, an adjusting screw sleeve is moved through rotation of the adjusting screw rod, a side block is driven to move through movement of the adjusting screw sleeve, a sliding plate is driven to move through movement of the side block, an adjusting column is moved through movement of the sliding plate, and an alarm can be moved through movement of the adjusting column; the adjusting effect can be achieved, and the problems that due to limitation of the height and angle of an existing response device, response is not timely enough, and the safety performance of the response device is greatly reduced are solved.
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Description

Technical Field

[0001] This invention relates to the field of network security technology, specifically a network security incident response device. Background Technology

[0002] Network security refers to the protection of the hardware, software, and data of a network system from damage, alteration, or disclosure due to accidental or malicious causes, ensuring the continuous, reliable, and normal operation of the system and uninterrupted network services.

[0003] Some cybersecurity incidents may involve unexpected situations, thus requiring the use of response devices to alert people of these incidents. However, the height and angle of these response devices are limited, which can easily lead to untimely responses and significantly reduce their security performance.

[0004] To address the aforementioned issues, we propose an improvement: a network security incident response device. Summary of the Invention

[0005] The purpose of this invention is to provide a network security incident response device to solve the problems mentioned in the background art.

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

[0007] A network security incident response device includes a response device body, the response device body includes an adjustment base, a servo motor is fixedly connected to the bottom of the inner wall of the adjustment base, an adjustment screw is fixedly connected to the output end of the servo motor, an adjustment sleeve is threadedly connected to the bottom of the surface of the adjustment screw, side blocks are fixedly connected to both sides of the adjustment sleeve, a sliding plate is fixedly connected to the outer side of the side blocks, an adjustment column is fixedly connected to the top of the sliding plate, and the top of the adjustment column extends through to the top of the adjustment base and is fixedly connected to a rotating mechanism.

[0008] The rotating mechanism includes a fixed frame, a drive motor is fixedly connected to the back side of the fixed frame, a rotating shaft is fixedly connected to the output end of the drive motor, a drive gear is fixedly connected to the surface of the rotating shaft, a rotating plate is meshed with the top of the drive gear, a light rod is movably connected to the inner cavity of the rotating plate, the front and back sides of the light rod are fixedly connected to the inner wall of the fixed frame, and an alarm is installed on the top of the rotating plate.

[0009] As a further embodiment of the present invention: a fixing plate is fixedly connected to the bottom of the adjusting seat, the cross-sectional area of ​​the top of the fixing plate is larger than the cross-sectional area of ​​the bottom of the adjusting seat, and fixing bolts are installed in the inner cavity of the fixing plate, and the number of fixing bolts is multiple.

[0010] As a further embodiment of the present invention: a first support bearing is embedded at the center of the top of the inner wall of the adjusting seat, and the top of the adjusting screw is movably connected to the interior of the adjusting seat through the first support bearing.

[0011] As a further embodiment of the present invention: the outer side of the sliding plate is movably connected to the interior of the adjusting seat, and through holes are provided on both sides of the top of the inner wall of the adjusting seat, and the interior of the through holes is movably connected to the surface of the adjusting column.

[0012] As a further embodiment of the present invention: a guide sleeve is fixedly connected to the inner cavity of the side block, a guide column is movably connected to the inner cavity of the guide sleeve, and the top of the guide column is fixedly connected to the inner wall of the adjusting seat.

[0013] As a further embodiment of the present invention: a support plate is fixedly connected to the bottom of the fixing frame, the bottom of the support plate is fixedly connected to the top of the adjusting column, and the support plate is arranged in a circular structure.

[0014] As a further embodiment of the present invention: a second support bearing is fixedly connected to the front side of the inner wall of the fixed frame, and the front side of the rotating shaft is movably connected to the interior of the fixed frame through the second support bearing.

[0015] As a further embodiment of the present invention: the surface of the drive gear is provided with tooth 1, and the bottom of the surface of the rotating plate is provided with tooth 2, and tooth 1 and tooth 2 are arranged with the same structure and are meshed together.

[0016] As a further embodiment of the present invention: sliding rods are fixedly connected to both sides of the front side and both sides of the back side of the rotating plate, and circular sliding grooves are provided on both the front and back sides of the inner wall of the fixing frame, with the interior of the circular sliding grooves being movably connected to the surface of the sliding rods.

[0017] As a further embodiment of the present invention: a connecting rod is fixedly connected to the top of the rotating plate, and the top of the connecting rod is fixedly connected to the bottom of the alarm, wherein the alarm is a three-color light.

[0018] Compared with the prior art, the beneficial effects of the present invention are:

[0019] 1. This invention uses a servo motor to drive the adjusting screw to rotate. The rotation of the adjusting screw causes the adjusting sleeve to move. The movement of the adjusting sleeve causes the side block to move. The movement of the side block causes the sliding plate to move. The movement of the sliding plate causes the adjusting column to move. The movement of the adjusting column causes the alarm to move, thus achieving the adjustment effect. This solves the problem that the existing response devices have limitations in height and angle, which can easily lead to untimely response and greatly reduce their safety performance.

[0020] 2. The present invention enables the drive gear and the rotating plate to mesh smoothly through the setting of tooth one and tooth two, thereby enabling stable transmission. Through the setting of the through hole, the diameter of the through hole is larger than the diameter of the adjusting column, so that the adjusting column can move smoothly inside the adjusting seat. Attached Figure Description

[0021] Figure 1 This is a schematic diagram of the structure of a network security incident response device;

[0022] Figure 2 A partial cross-sectional view of the adjustment seat structure in a network security incident response device;

[0023] Figure 3 In a network security incident response device Figure 2 A magnified view of part A;

[0024] Figure 4 In a network security incident response device Figure 2 A magnified view of part B;

[0025] Figure 5 This is a side view of a mounting structure in a network security incident response device;

[0026] Figure 6 In a network security incident response device Figure 5 A magnified view of part C.

[0027] In the diagram: 1. Response device body; 101. Adjustment seat; 102. Adjustment column; 103. Fixing plate; 104. Fixing bolt; 105. Servo motor; 106. Adjustment screw; 107. Guide slide column; 108. Slide plate; 109. Guide sleeve; 1010. Adjustment screw sleeve; 1011. Side block; 1012. Through hole; 1013. First support bearing; 2. Rotating mechanism; 201. Fixing frame; 202. Connecting rod; 203. Alarm; 204. Rotating plate; 205. Support plate; 206. Drive motor; 207. Rotating shaft; 208. Slide rod; 209. Circular slide groove; 2010. Second support bearing; 2011. Drive gear; 2012. Smooth rod. Detailed Implementation

[0028] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, 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 a part of the embodiments of the present invention, not all of them. 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.

[0029] Example 1

[0030] Please see Figure 1 , 2 3 and 4, a network security incident response device, includes a response device body 1, the response device body 1 includes an adjustment seat 101, a servo motor 105 is fixedly connected to the bottom of the inner wall of the adjustment seat 101, an adjustment screw 106 is fixedly connected to the output end of the servo motor 105, an adjustment sleeve 1010 is threadedly connected to the bottom of the surface of the adjustment screw 106, side blocks 1011 are fixedly connected to both sides of the adjustment sleeve 1010, a sliding plate 108 is fixedly connected to the outer side of the side blocks 1011, and an adjustment column 102 is fixedly connected to the top of the sliding plate 108.

[0031] Specifically, a fixing plate 103 is fixedly connected to the bottom of the adjusting seat 101. The cross-sectional area of ​​the top of the fixing plate 103 is larger than the cross-sectional area of ​​the bottom of the adjusting seat 101. Fixing bolts 104 are installed in the inner cavity of the fixing plate 103. There are multiple fixing bolts 104.

[0032] The above technical solution, through the setting of the fixing plate 103 and the fixing bolt 104, facilitates the installation of the adjusting seat 101 on the ground, further improving the stability of the adjusting seat 101 during operation.

[0033] Specifically, a first support bearing 1013 is embedded in the center of the top of the inner wall of the adjusting seat 101, and the top of the adjusting screw 106 is movably connected to the inside of the adjusting seat 101 through the first support bearing 1013.

[0034] Through the above technical solution, the position of the adjusting screw 106 is supported by the first support bearing 1013, thereby making the adjusting screw 106 rotate more smoothly and stably in the adjusting seat 101.

[0035] Specifically, the outer side of the slide plate 108 is movably connected to the interior of the adjusting seat 101. Both sides of the top of the inner wall of the adjusting seat 101 are provided with through holes 1012, and the interior of the through holes 1012 is movably connected to the surface of the adjusting column 102.

[0036] With the above technical solution, the diameter of the through hole 1012 is larger than the diameter of the adjusting column 102, so that the adjusting column 102 can move smoothly inside the adjusting seat 101.

[0037] Specifically, a guide sleeve 109 is fixedly connected to the inner cavity of the side block 1011, and a guide slide post 107 is movably connected to the inner cavity of the guide sleeve 109. The top of the guide slide post 107 is fixedly connected to the inner wall of the adjusting seat 101.

[0038] Through the above technical solution, the guide slide 107 guides the movement of the guide sleeve 109, making the adjusting screw sleeve 1010 more stable when moving.

[0039] The specific implementation of the present invention is as follows: First, the servo motor 105 drives the adjusting screw 106 to rotate, and the adjusting screw 106 rotates inside the adjusting seat 101 through the first support bearing 1013. Then, the rotation of the adjusting screw 106 causes the adjusting sleeve 1010 to move, and the movement of the adjusting sleeve 1010 causes the side block 1011 to move. The movement of the side block 1011 causes the guide sleeve 109 to slide on the surface of the guide column 107. The movement of the side block 1011 causes the slide plate 108 to move, and the slide plate 108 slides inside the adjusting seat 101. The movement of the slide plate 108 causes the adjusting column 102 to move, and the adjusting column 102 slides inside the through hole 1012. The movement of the adjusting column 102 enables the alarm 203 to move.

[0040] Example 2

[0041] Please see Figure 1 , 5 6. A network security incident response device, wherein the top of the adjusting column 102 extends through to the top of the adjusting seat 101 and is fixedly connected to a rotating mechanism 2, the rotating mechanism 2 includes a fixed frame 201, a drive motor 206 is fixedly connected to the back side of the fixed frame 201, a rotating shaft 207 is fixedly connected to the output end of the drive motor 206, a drive gear 2011 is fixedly connected to the surface of the rotating shaft 207, a rotating plate 204 is meshed with the top of the drive gear 2011, a light rod 2012 is movably connected to the inner cavity of the rotating plate 204, the front and back sides of the light rod 2012 are fixedly connected to the inner wall of the fixed frame 201, and an alarm 203 is installed on the top of the rotating plate 204.

[0042] Specifically, a support plate 205 is fixedly connected to the bottom of the fixing frame 201. The bottom of the support plate 205 is fixedly connected to the top of the adjusting column 102. The support plate 205 is arranged in a circular structure.

[0043] The above technical solution improves the stability of the connection between the fixed frame 201 and the adjusting column 102 by setting the support plate 205, and prevents the fixed frame 201 and the adjusting column 102 from breaking.

[0044] Specifically, a second support bearing 2010 is fixedly connected to the front side of the inner wall of the fixed frame 201, and the front side of the rotating shaft 207 is movably connected to the interior of the fixed frame 201 through the second support bearing 2010.

[0045] Through the above technical solution, the position of the rotating shaft 207 is supported by the setting of the second support bearing 2010, thereby enabling the rotating shaft 207 to rotate smoothly inside the fixed frame 201.

[0046] Specifically, the surface of the drive gear 2011 is provided with tooth 1, and the bottom of the surface of the rotating plate 204 is provided with tooth 2. Tooth 1 and tooth 2 have the same structure and are meshed together.

[0047] Through the above technical solution, by setting tooth one and tooth two, the driving gear 2011 and the rotating plate 204 can mesh smoothly, thereby enabling stable transmission.

[0048] Specifically, slide rods 208 are fixedly connected to both sides of the front and back sides of the rotating plate 204, and circular grooves 209 are provided on both the front and back sides of the inner wall of the fixing frame 201. The interior of the circular grooves 209 is movably connected to the surface of the slide rods 208.

[0049] By using the above technical solution, the circular groove 209 reduces the friction between the slide rod 208 and the fixed frame 201, thereby enabling the slide rod 208 to slide smoothly within the fixed frame 201.

[0050] Specifically, a connecting rod 202 is fixedly connected to the top of the rotating plate 204, and the top of the connecting rod 202 is fixedly connected to the bottom of the alarm 203, which is a three-color light.

[0051] The above technical solution, through the setting of the connecting rod 202, improves the stability of the connection between the rotating plate 204 and the alarm 203, and avoids the instability that may occur when the rotating plate 204 drives the alarm 203 to rotate.

[0052] The specific implementation of the present invention is as follows: the drive motor 206 drives the rotating shaft 207 to rotate, the rotation of the rotating shaft 207 drives the drive gear 2011 to rotate, the rotation of the drive gear 2011 drives the rotating plate 204 to rotate, and the rotating plate 204 rotates on the surface of the light rod 2012. The rotation of the rotating plate 204 drives the slide rod 208 to rotate, and the slide rod 208 rotates inside the circular slide groove 209. The rotation of the rotating plate 204 drives the connecting rod 202 to rotate, and the rotation of the connecting rod 202 drives the alarm 203 to rotate.

[0053] Example 3

[0054] Please see Figure 1-6 A network security incident response device:

[0055] The specific implementation of the present invention is as follows: First, the servo motor 105 drives the adjusting screw 106 to rotate, and the adjusting screw 106 rotates inside the adjusting seat 101 via the first support bearing 1013. Then, the rotation of the adjusting screw 106 causes the adjusting sleeve 1010 to move, and the movement of the adjusting sleeve 1010 causes the side block 1011 to move. The movement of the side block 1011 causes the guide sleeve 109 to slide on the surface of the guide slide post 107. The movement of the side block 1011 causes the slide plate 108 to move, and the slide plate 108 slides inside the adjusting seat 101. The movement of the slide plate 108 causes the adjusting post 102 to move, and the adjustment... The joint column 102 slides inside the through hole 1012. The movement of the adjusting column 102 can move the alarm 203. Then, the drive motor 206 drives the rotating shaft 207 to rotate. The rotation of the rotating shaft 207 drives the drive gear 2011 to rotate. The rotation of the drive gear 2011 drives the rotating plate 204 to rotate. The rotating plate 204 rotates on the surface of the smooth rod 2012. The rotation of the rotating plate 204 drives the slide rod 208 to rotate. The slide rod 208 rotates inside the circular slide groove 209. The rotation of the rotating plate 204 drives the connecting rod 202 to rotate. The rotation of the connecting rod 202 drives the alarm 203 to rotate.

[0056] The above are merely preferred embodiments of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.

Claims

1. A cyber-security incident response apparatus comprising a response apparatus body (1), characterised in that: The response device body (1) includes an adjustment seat (101), a servo motor (105) is fixedly connected to the bottom of the inner wall of the adjustment seat (101), an adjustment screw (106) is fixedly connected to the output end of the servo motor (105), an adjustment sleeve (1010) is threadedly connected to the bottom of the surface of the adjustment screw (106), a side block (1011) is fixedly connected to both sides of the adjustment sleeve (1010), a slide plate (108) is fixedly connected to the outer side of the side block (1011), an adjustment column (102) is fixedly connected to the top of the slide plate (108), and the top of the adjustment column (102) extends through to the top of the adjustment seat (101) and is fixedly connected to a rotating mechanism (2). The rotating mechanism (2) includes a fixed frame (201), a drive motor (206) is fixedly connected to the back side of the fixed frame (201), a rotating shaft (207) is fixedly connected to the output end of the drive motor (206), a drive gear (2011) is fixedly connected to the surface of the rotating shaft (207), a rotating plate (204) is meshed with the top of the drive gear (2011), a light rod (2012) is movably connected to the inner cavity of the rotating plate (204), the front and back sides of the light rod (2012) are fixedly connected to the inner wall of the fixed frame (201), and an alarm (203) is installed on the top of the rotating plate (204).

2. The network security incident response apparatus of claim 1, wherein: The bottom of the adjusting seat (101) is fixedly connected to a fixing plate (103). The cross-sectional area of ​​the top of the fixing plate (103) is larger than the cross-sectional area of ​​the bottom of the adjusting seat (101). The inner cavity of the fixing plate (103) is equipped with fixing bolts (104), and there are multiple fixing bolts (104).

3. The network security incident response apparatus of claim 1, wherein: A first support bearing (1013) is embedded at the center of the top of the inner wall of the adjusting seat (101), and the top of the adjusting screw (106) is movably connected to the interior of the adjusting seat (101) through the first support bearing (1013).

4. The network security incident response apparatus of claim 1, wherein: The outer side of the sliding plate (108) is movably connected to the interior of the adjusting seat (101). Both sides of the top of the inner wall of the adjusting seat (101) are provided with through holes (1012), and the interior of the through holes (1012) is movably connected to the surface of the adjusting column (102).

5. A network security incident response device according to claim 1, characterized in that: The inner cavity of the side block (1011) is fixedly connected to a guide sleeve (109), and the inner cavity of the guide sleeve (109) is movably connected to a guide column (107). The top of the guide column (107) is fixedly connected to the inner wall of the adjusting seat (101).

6. The network security incident response apparatus of claim 1, wherein: The bottom of the fixed frame (201) is fixedly connected to a support plate (205), the bottom of the support plate (205) is fixedly connected to the top of the adjusting column (102), and the support plate (205) is arranged in a circular structure.

7. The network security incident response apparatus of claim 1, wherein: A second support bearing (2010) is fixedly connected to the front side of the inner wall of the fixed frame (201), and the front side of the rotating shaft (207) is movably connected to the interior of the fixed frame (201) through the second support bearing (2010).

8. The network security incident response apparatus of claim 1, wherein: The surface of the drive gear (2011) is provided with tooth 1, and the bottom of the surface of the rotating plate (204) is provided with tooth 2. Tooth 1 and tooth 2 are arranged with the same structure and are meshed together.

9. The network security incident response apparatus of claim 1, wherein: The rotating plate (204) has slide rods (208) fixedly connected to both sides of the front and back sides. The inner wall of the fixed frame (201) has circular grooves (209) on both the front and back sides. The interior of the circular grooves (209) is movably connected to the surface of the slide rods (208).

10. The network security incident response apparatus of claim 1, wherein: A connecting rod (202) is fixedly connected to the top of the rotating plate (204), and the top of the connecting rod (202) is fixedly connected to the bottom of the alarm (203). The alarm (203) is a three-color light.