Data information security processing system

By designing a modular combination of data information security processing systems, the problem of the inability of existing technologies to provide targeted protection for information has been solved, thus achieving effective protection of information.

CN121884875APending Publication Date: 2026-04-17赵成红
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
赵成红
Filing Date
2023-07-15
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Existing data security processing systems are unable to provide targeted protection for the information that needs to be protected at the software level.

Method used

A data information security processing system was designed, which includes a mobile module, a switching module, a setup module, a storage module, and a security module. The information is protected by using these modules in combination.

Benefits of technology

It enables targeted protection of information that needs protection, preventing unauthorized access and reading.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the field of data information security, in particular to a data information security processing system. Comprising a moving module, a switching module, erecting modules, a storage module, a safety module and a connecting module, the switching module is arranged on the switching module, the erecting modules are arranged on the two sides of the moving module, the storage module is placed on the erecting modules, the safety module is arranged on one erecting module, and the connecting module is arranged on the other erecting module. Comprising a translation seat, a fixed shaft is fixed on the upper side of the translation seat, a sleeve is rotatably connected to the fixed shaft, a rotating arm is fixed on the upper portion of the sleeve, and a plug is fixed at the end of the rotating arm. A gear ring is fixed on the sleeve, a second motor is fixed on the translation seat, a second gear is fixed on an output shaft of the second motor, and the second gear is meshed with the gear ring. The information needing to be protected can be picked out, and the information needing to be protected is protected through the security module.
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Description

Technical Field

[0001] This invention relates to the field of data information security, and more specifically to a data information security processing system. Background Technology

[0002] A data security processing system is a software system used to protect data security on computers and networks. It includes authentication technology: verifying user identity and restricting unauthorized access through user authentication technology; firewall technology: detecting and filtering external intrusions to protect network system security by setting up firewalls; and virus scanning technology: scanning and removing viruses from the system using virus scanning software. These technologies are all important components of a data security processing system, effectively protecting data security on computers and networks. However, existing data security processing systems can only protect data security at the software level and cannot identify and target the information requiring protection through security modules. Summary of the Invention

[0003] To overcome the shortcomings of existing technologies, this invention provides a data information security processing system, which has the advantage of being able to identify information that needs to be protected and protect it through a security module.

[0004] A data information security processing system includes a mobile module, a switching module, a mounting module, a storage module, a security module, and a connection module. The switching module is mounted on the switching module. Mounting modules are mounted on both sides of the mobile module. The storage module is placed on the mounting modules. A security module is mounted on one mounting module, and a connection module is mounted on the other mounting module.

[0005] It includes a translation seat, a fixed shaft is fixed on the upper side of the translation seat, a sleeve is rotatably connected to the fixed shaft, a rotating arm is fixed on the upper part of the sleeve, and a plug is fixed to the end of the rotating arm.

[0006] A gear ring is fixed on the sleeve, a second motor is fixed on the translation seat, and a second gear is fixed on the output shaft of the second motor, which meshes with the gear ring.

[0007] Limiting posts are fixed on both the front and rear sides of the upper side of the translation seat, and the limiting posts can block one side of the rotating arm. Attached Figure Description

[0008] The present invention will now be described in further detail with reference to the accompanying drawings and specific implementation methods.

[0009] Figure 1 This is a schematic diagram of a data information security processing system;

[0010] Figure 2A schematic diagram of the structure of a data information security processing system Figure 1 ;

[0011] Figure 3 A schematic diagram of the structure of a data information security processing system Figure 2 ;

[0012] Figure 4 A schematic diagram of the structure of a data information security processing system Figure 3 ;

[0013] Figure 5 Schematic diagram of the structure of the horizontal rail and the translation seat Figure 1 ;

[0014] Figure 6 Schematic diagram of the structure of the horizontal rail and the translation seat Figure 2 ;

[0015] Figure 7 Schematic diagram of the base structure Figure 1 ;

[0016] Figure 8 Schematic diagram of the base structure Figure 2 ;

[0017] Figure 9 Schematic diagram of memory structure Figure 1 ;

[0018] Figure 10 Schematic diagram of memory structure Figure 2 ;

[0019] Figure 11 This is a schematic diagram of the baffle structure;

[0020] Figure 12 This is a schematic diagram of the L-shaped frame.

[0021] In the diagram: Horizontal rail 101; Lifting bar 102; Hollow seat 103; Bottom bar 104;

[0022] Translation seat 201; Motor 1 202; Motor 2 203; Sleeve 204; Limiting post 205; Plug 206; Rotating arm 207; Fixed shaft 208; Gear 2 209; Gear 1 210;

[0023] Base 301; Support column 302; Connecting plate 303; Triangular section rod 304; Angle iron 305; Spacer column 306;

[0024] Memory 401; Sleeve 402; Triangular cross-section groove 403; Data port 404;

[0025] Baffle 501; Pressure plate 502; Slide bar 503;

[0026] L-shaped bracket 601; crossbar 602; plug 603. Detailed Implementation

[0027] The moving module consists of a horizontal rail 101, a lifting bar 102, a hollow seat 103, and a bottom bar 104; the switching module consists of a translation seat 201, a first motor 202, a second motor 203, a sleeve 204, a limiting post 205, a plug 206, a rotating arm 207, a fixed shaft 208, a second gear 209, and a first gear 210; the erection module consists of a base 301, a support column 302, a connecting plate 303, a triangular section rod 304, an angle iron 305, and a spacer column 306; the storage module consists of a memory 401, a socket 402, a triangular section groove 403, and a data port 404; the safety module consists of a baffle 501, a pressure plate 502, and a sliding rod 503; and the connection module consists of an L-shaped frame 601, a horizontal column 602, and a plug 603. The switching module is mounted on the switching module. Mounting modules are mounted on both sides of the moving module. The storage module is placed on the mounting modules. One mounting module has a security module, and the other mounting module has a connection module.

[0028] like Figure 5-6 As shown, this example demonstrates how to move plug 206 to the desired position.

[0029] The data information security processing system includes a translation base 201, a fixed shaft 208 welded to the upper side of the translation base 201, a sleeve 204 rotatably connected to the fixed shaft 208, a rotating arm 207 welded to the upper part of the sleeve 204, and a plug 206 welded to the end of the rotating arm 207. The rotating arm 207 can rotate on the fixed shaft 208 through the sleeve 204, thereby changing the direction of the rotating arm 207 and the plug 206, and moving the plug 206 to the required position.

[0030] like Figure 5-6 As shown, this example can achieve the effect of driving the plug 206 and the rotating arm 207 to rotate around the fixed axis 208.

[0031] Since a gear ring is connected to the sleeve 204 by screws, and a motor 203 is connected to the translation seat 201 by screws, a gear 209 is fixed on the output shaft of the motor 203. The gear 209 meshes with the gear ring, and the motor 203 drives the gear 209 to rotate. The rotation of the gear 209 drives the gear ring and the sleeve 204 to rotate on the fixed shaft 208, which in turn drives the plug 206 and the rotating arm 207 to rotate around the fixed shaft 208.

[0032] like Figure 5-6 As shown, this example can achieve the effect of stopping the rotating arm 207 when it points forward and backward.

[0033] Since limit posts 205 are welded on both the front and rear sides of the upper side of the translation seat 201, the limit posts 205 can block one side of the rotating arm 207. The rotation position of the rotating arm 207 can be limited by the two limit posts 205, so that the rotating arm 207 will stop when it points forward and backward.

[0034] like Figure 5-6 As shown, this example can achieve the effect of changing the left and right positions of plug 206 and rotating arm 207.

[0035] Since the translation seat 201 is slidably connected to the horizontal rail 101, and a rack is connected to the lower side of the horizontal rail 101 by screws, and a motor 202 is connected to the translation seat 201 by screws, and a gear 210 is connected to the output shaft of the motor 202. The gear 210 meshes with the rack for transmission. When the motor 202 drives the gear 210 to rotate, the gear 210 rolls on the rack, thereby driving the translation seat 201 to move left and right on the horizontal rail 101, thereby changing the left and right positions of the plug 206 and the rotating arm 207.

[0036] like Figure 5-6 As shown, this example allows for the adjustment of the height and front-to-back position of the translation seat 201, the rotating arm 207, and the plug 206.

[0037] Since both ends of the horizontal rail 101 are connected to lifting bars 102 by screws, the two lifting bars 102 are vertically slidably connected to the two hollow seats 103 respectively. The lifting bars 102 are driven to slide by hydraulic cylinders. The two hollow seats 103 are slidably connected to the two bottom bars 104 in the front-back direction respectively. The hollow seats 103 are driven to slide by hydraulic cylinders. The two lifting bars 102 can slide vertically on the two hollow seats 103 respectively, and the two hollow seats 103 can slide back and forth on the two bottom bars 104 respectively. Thus, the height and front-back position of the horizontal rail 101 can be adjusted, and thus the height and front-back position of the translation seat 201, the rotating arm 207 and the plug 206 can be adjusted.

[0038] like Figure 5-8 As shown, this example can achieve the effect of erecting the triangular section bar 304 and the angle iron 305 that are set opposite to each other.

[0039] Since bases 301 are welded between the front ends and the rear ends of the two base strips 104, and support columns 302 are connected to the left and right ends of each base 301 by screws, the triangular section rods 304 and angle irons 305 are arranged parallel to each other, and the left and right ends of the triangular section rods 304 and angle irons 305 are connected by connecting plates 303. Each connecting plate 303 is connected to the corresponding support column 302 by screws. The triangular section rods 304 and angle irons 305 arranged opposite each other can be erected by the two support columns 302. Multiple sets of triangular section rods 304 and angle irons 305 arranged opposite each other can be set at different heights between the two support columns 302.

[0040] like Figure 7-10 As shown, this example can achieve the effect of moving the memory 401 onto the desired triangular section bar 304 and angle iron 305 by moving the rotating arm 207.

[0041] Since the data information security processing system also includes a memory 401, the front of the memory 401 is provided with a socket 402, into which a plug 206 can be inserted. The lower side of the memory 401 is provided with a triangular cross-section groove 403, through which the memory 401 is inserted into a triangular cross-section rod 304. The rear of the memory 401 rests on an angle iron 305. A data port 404 is provided on the rear side of the memory 401. The memory 401 is a hard disk for storing data information in the prior art. Multiple memories 401 are normally placed on the triangular cross-section rod 304 and the angle iron 305. The triangular cross-section rod 304 is inserted into the triangular cross-section rod 305. The angled groove 403 prevents the memory 401 from falling off the triangular section bar 304. The angle iron 305 supports the rear of the memory 401, making the rear of the memory 401 more stable. Since multiple sets of triangular section bars 304 and angle irons 305 are provided on the front and rear sides of the translation seat 201, it can be moved to the corresponding memory 401 by rotating the arm 207. Then, the plug 206 on the rotating arm 207 is inserted into the socket 402 on the memory 401. At this time, the memory 401 can be moved to the required triangular section bar 304 and angle iron 305 by moving the rotating arm 207.

[0042] like Figure 7 As shown, this example can prevent the memory 401 from moving arbitrarily left or right relative to the angle iron 305.

[0043] Since multiple spacer posts 306 are welded on the angle iron 305 from left to right, the memory 401 is located between two of the spacer posts 306. The spacer posts 306 can limit the memory 401 on the angle iron 305 to prevent the memory 401 from moving freely left or right relative to the angle iron 305.

[0044] like Figure 2-12As shown, this example demonstrates how data can be protected.

[0045] A slide rod 503 is slidably connected to the base 301 located on the rear side. The slide rod 503 is driven to slide by a hydraulic cylinder. A baffle 501 is welded to the end of the slide rod 503, and a pressure plate 502 is welded to the baffle 501. The baffle 501 blocks the data interface 404 of the memory 401, and the pressure plate 502 blocks the upper side of the memory 401. An L-shaped frame 601 is slidably connected to the base 301 located on the front side. Multiple horizontal columns 602 are fixed on the L-shaped frame 601, and multiple plugs 603 are fixed on each horizontal column 602. The plugs 603 can be inserted into the corresponding data interface 404. Multiple memory 401s on multiple sets of triangular cross-section rods 304 and angle irons 305 located on the rear side serve as data protection and safety measures. The drive baffle 501 moves to... The data port 404 of the memory 401 is blocked, preventing unauthorized access to the data in the memory 401. A pressure plate 502 blocks the top of the memory 401, preventing it from being removed. When data needs to be read, the memory 401 is moved to the front of multiple sets of triangular cross-section rods 304 and angle irons 305. Then, the L-shaped frame 601 is driven to slide, moving multiple horizontal columns 602 and multiple plugs 603, allowing the plugs 603 to be inserted into the data ports 404 on the memory 401 for reading. After reading, the memory 401 is moved back to the rear for protection.

Claims

1. A data information security processing system, comprising a mobile module, a switching module, a setup module, a storage module, a security module, and a connection module, characterized in that: The switching module is mounted on the switching module. Mounting modules are mounted on both sides of the moving module. The storage module is placed on the mounting modules. A security module is mounted on one mounting module, and a connection module is mounted on the other mounting module.

2. The data information security processing system according to claim 1, characterized in that: It includes a translation seat (201), a fixed shaft (208) is fixed on the upper side of the translation seat (201), a sleeve (204) is rotatably connected to the fixed shaft (208), a rotating arm (207) is fixed on the upper part of the sleeve (204), and a plug (206) is fixed on the end of the rotating arm (207).

3. The data information security processing system according to claim 2, characterized in that: A gear ring is fixed on the sleeve (204), and a second motor (203) is fixed on the translation seat (201). A second gear (209) is fixed on the output shaft of the second motor (203), and the second gear (209) meshes with the gear ring.

4. The data information security processing system according to claim 3, characterized in that: Limiting posts (205) are fixed on both the front and rear sides of the upper side of the translation seat (201), and the limiting posts (205) can block one side of the rotating arm (207).

5. A data information security processing system according to claim 3, characterized in that: The translation seat (201) is slidably connected to the horizontal rail (101). A rack is fixed on the lower side of the horizontal rail (101). A motor (202) is fixed on the translation seat (201). A gear (210) is fixed on the output shaft of the motor (202). The gear (210) meshes with the rack for transmission.

6. A data information security processing system according to claim 5, characterized in that: Lifting bars (102) are fixed at both ends of the horizontal rail (101). The two lifting bars (102) are vertically slidably connected to the two hollow seats (103). The lifting bars (102) are driven to slide by a hydraulic cylinder. The two hollow seats (103) are slidably connected to the two bottom bars (104) in the front-back direction. The hollow seats (103) are driven to slide by a hydraulic cylinder.

7. A data information security processing system according to claim 6, characterized in that: A base (301) is fixed between the front ends of the two base strips (104) and between the rear ends of the two base strips (104). A support column (302) is fixed at both the left and right ends of each base (301). The triangular section rod (304) and the angle iron (305) are arranged parallel to each other. The left and right ends of the triangular section rod (304) and the angle iron (305) are connected by a connecting plate (303). Each connecting plate (303) is fixed on the corresponding support column (302).

8. A data information security processing system according to claim 7, characterized in that: It also includes a memory (401), a socket (402) is provided on the front side of the memory (401), a plug (206) can be inserted into the socket (402), a triangular section groove (403) is provided on the lower side of the memory (401), the memory (401) is inserted into the triangular section rod (304) through the triangular section groove (403), the rear of the memory (401) rests on the angle iron (305), and a data port (404) is provided on the rear side of the memory (401).

9. A data information security processing system according to claim 8, characterized in that: The angle iron (305) has multiple spacer posts (306) fixed from left to right, and the memory (401) is located between two of the spacer posts (306).

10. A data information security processing system according to claim 8, characterized in that: A slide rod (503) is slidably connected to the base (301) located on the rear side. The slide rod (503) is driven to slide by a hydraulic cylinder. A baffle (501) is fixed to the end of the slide rod (503). A pressure plate (502) is fixed on the baffle (501). The baffle (501) blocks the data interface (404) of the memory (401), and the pressure plate (502) blocks the upper side of the memory (401). An L-shaped frame (601) is slidably connected to the base (301) located on the front side. Multiple horizontal columns (602) are fixed on the L-shaped frame (601). Multiple plugs (603) are fixed on each horizontal column (602). The plugs (603) can be inserted into the corresponding data interface (404).