Data backup system
By designing a data backup system, which utilizes identification and drive units to achieve automatic classification, storage, and backup of data information, the problem of data loss caused by damage to server storage facilities is solved, and the efficiency and security of data backup are improved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-09-28
- Publication Date
- 2026-04-07
AI Technical Summary
When existing server storage facilities fail, data becomes unusable, leading to data loss. Existing backup solutions are unable to effectively protect data security.
A data backup system is designed, including an input terminal, an identification unit, an allocation unit, a storage unit, and a backup unit. The identification unit classifies the data information, the allocation unit stores the data information in different types of storage spaces of multiple computer data storage devices, and the backup unit is automatically connected to the drive unit to perform data backup.
It enables automatic classification, storage, and backup of data information, improving the efficiency and security of data backup and ensuring that data can still be recovered when storage facilities are damaged.
Smart Images

Figure CN121807613A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of data backup, and more particularly to a data backup system. BACKGROUND
[0002] Data is a form of expression of facts, concepts or instructions, which can be processed by artificial or automatic devices. After data is interpreted and given certain meaning, it becomes information. Data processing is the collection, storage, retrieval, processing, transformation and transmission of data. Data backup is to store data information in another place for backup. However, the storage facilities in the existing server are single, and no matter how the data is backed up, the data is still stored in the storage facilities. When the storage facilities are damaged, the data cannot be used. Therefore, in order to solve the above problems, the present application provides a data backup system which can automatically store data information in independent storage facilities for backup. SUMMARY
[0003] In order to overcome the shortcomings of the prior art, the present application provides a data backup system which can automatically store data information in independent storage facilities for backup.
[0004] The technical scheme adopted by the present application to solve its technical problems is:
[0005] A data backup system comprises an input terminal, an identification unit, an allocation unit, a storage unit and a backup unit. Data information is input through the input terminal. The identification unit identifies and classifies the data information and transmits the data information to the storage unit through the allocation unit. The allocation unit sends an instruction to automatically connect the backup unit to the storage unit for data backup.
[0006] The storage unit is composed of a plurality of computer data storage devices and is divided into a plurality of storage spaces for storing different types of data information. The allocation unit is connected with a driving unit to drive the backup unit to be connected to different types of storage spaces according to the classification.
[0007] The identification unit automatically identifies and classifies the data information and sends the classification information to the allocation unit. The allocation unit stores different types of data information in different types of data information storage spaces in the allocation unit. The classification information is sent to the driving unit, and the driving unit drives the backup unit to move to the position of the stored information data for backup.
[0008] The driving unit can be installed on a plurality of computer data storage devices, and the driving unit can drive the backup unit to be connected to any one of the computer data storage devices.
[0009] The driving unit comprises a clamping groove with a clamping plate slidably connected to the inner side of the lower end, a spring fixedly connected between the clamping plate and the clamping groove, and a sliding box slidably connected to the left and right sides of the clamping groove. BRIEF DESCRIPTION OF DRAWINGS
[0010] The application will be further described in detail below with reference to the drawings and specific implementation methods.
[0011] Figure 1 The flow chart of the data backup system in the application;
[0012] Figure 2 The flow chart of the backup unit in the application;
[0013] Figure 3 The flow chart of the distribution unit in the application;
[0014] Figure 4 The structural schematic diagram of the driving unit in the application;
[0015] Figure 5 The structural schematic diagram of the clamping groove in the application;
[0016] Figure 6 The structural schematic diagram of the rubber capsule in the application;
[0017] Figure 7 The structural schematic diagram of the clamping plate in the application;
[0018] Figure 8 The structural schematic diagram of the rotating plate in the application;
[0019] Figure 9 The structural schematic diagram of the hard disk in the application;
[0020] Figure 10 The structural schematic diagram of the truss in the application;
[0021] In the figure: clamping groove 01; clamping plate 02; sliding box 03; one-way valve 04; rubber capsule 05; baffle 06; screw rod A 07; rotating plate 08; sliding block 09; screw rod B 10; truss 11; support frame 12; clamping plate 14; screw rod C 15; hard disk 16. DETAILED DESCRIPTION
[0022] By observation Figures 1 to 3 The process of automatically backing up data information can be obtained according to the figure,
[0023] A data backup system, comprising an input terminal, an identification unit, an allocation unit, a storage unit and a backup unit, data information is input through the input terminal, the identification unit identifies and classifies the data information and transmits the data information to the storage unit through the allocation unit, the allocation unit sends instructions to make the backup unit automatically connect the storage unit for data backup. The storage unit is composed of multiple computer data storage devices and is divided into multiple storage spaces for storing different types of data information, and the allocation unit is connected with a driving unit to drive the backup unit to connect to different types of storage spaces according to the classification. The identification unit automatically identifies the data information, classifies it and sends the classification information to the allocation unit, which stores different types of data information in different types of data information storage spaces in the allocation unit, and the classification information is sent to the driving unit, which drives the backup unit to move to the position of the storage information data for backup. The driving unit can be installed on multiple computer data storage devices, and the driving unit can drive the backup unit to connect to any one of the computer data storage devices; different types of data information can be stored in different computer data storage devices by identifying the type of input data information, and the backup unit can be moved to the corresponding computer data storage device for connection to backup data after storing the data information, thereby realizing automatic backup effect.
[0024] By observing Figures 4 to 10 , an embodiment of clamping the backup unit can be obtained according to the figure,
[0025] The driving unit comprises a clamping groove 01 with a clamping plate 02 slidably connected on the inner side of the lower end, a spring fixedly connected between the clamping plate 02 and the clamping groove 01, and a sliding box 03 slidably connected on the left and right sides of the clamping groove 01; the backup unit is placed in the clamping groove 01 and slides downward, so that the backup unit extrudes the clamping plate 02, the spring between the clamping plate 02 and the clamping groove 01 is compressed, and the clamping plate 02 tightly contacts the backup unit to clamp the backup unit in the clamping groove 01, and the sliding box 03 is pushed to slide, so that the two sliding boxes 03 clamp the backup unit from the left and right sides of the clamping groove 01; thereby realizing quick clamping of the backup unit, facilitating timely replacement of different backup units, facilitating use of multiple backup units to backup data information in batches, and simultaneously using different backup units to backup different types of data information in different backup units.
[0026] By observing Figures 4 to 10 , an embodiment of efficient cooling can be obtained according to the figure,
[0027] The rubber capsule 05 is provided inside the sliding box 03, the one-way valve 04 is connected on the rubber capsule 05, the one-way valve 04 penetrates the clamping groove 01; after clamping the backup unit between the clamping plate 02 and the clamping groove 01, the pipeline of the cooling liquid can be connected on the two one-way valves 04, the cooling liquid can be passed into the rubber capsule 05, so that the volume of the rubber capsule 05 is expanded, the rubber capsule 05 is expanded to push the sliding box 03, the sliding box 03 is automatically clamped from two sides of the backup unit, so that the sliding box 03 is in contact with the side of the backup unit, the high temperature generated when the backup data is connected can be transmitted to the sliding box 03, and then the cooling liquid is used for absorbing and cooling, so that the heat dissipation effect of the backup unit during data backup is accelerated, and the backup unit is protected.
[0028] By observation Figures 4 to 10 An embodiment of automatic connection can be obtained according to the figure,
[0029] The clamping groove 01 is connected on the lead screw A 07 through the threaded hole, the lead screw A 07 is rotationally connected on the rotating plate 08, and the upper end of the rotating plate 08 is rotationally connected on the sliding block 09; in the use process, the clamping groove 01 is driven to slide on the rotating plate 08 through the rotation of the lead screw A 07, so that the clamping groove 01 is moved to drive the backup unit to move, and the backup unit can be moved to be automatically connected on the computer data storage.
[0030] By observation Figures 4 to 10 An embodiment of moving the backup unit can be obtained according to the figure,
[0031] The sliding block 09 is connected on the lead screw B 10 through the threaded hole, the lead screw B 10 is rotationally connected on the truss 11, and the support frame 12 capable of being in contact with the rear side of the clamping groove 01 is fixedly connected on the front side of the lower end of the middle part of the truss 11; in the use, the truss 11 is first attached to the front side of the plurality of computer data storages, then the lead screw B 10 is driven to slide the sliding block 09 on the truss 11, so that the clamping groove 01 is moved by the sliding block 09, so that the backup unit can be moved to the front side of any computer data storage for connection, after reaching the position, the rotating plate 08 is driven to rotate to the horizontal state on the sliding block 09 by using the power source, the backup unit is aligned with the connection position of the front side of the computer data storage, and after the backup is completed, the rotating plate 08 is rotated to the vertical state and attached to the support frame 12 to keep stable, so that the space volume occupied by the backup unit is reduced, and the temporary storage of the backup unit is facilitated.
[0032] Further, the rear ends of the trusses 11 are connected with lead screws C15, the inner ends of the lead screws C15 are rotatably connected with clamping plates 14; the lead screws C15 can be rotated to drive the clamping plates 14 to approach the computer data storages from both sides and finally clamp the sides of the outermost two computer data storages, so as to install the drive unit on the computer data storages for use.
[0033] The backup unit comprises a hard disk 16, and the input end interface of the hard disk 16 can be connected with the output end interface of any computer data storage.
Claims
1. A data backup system, characterized in that, It includes an input terminal, an identification unit, an allocation unit, a storage unit, and a backup unit. Data information is input through the input terminal, the identification unit identifies and classifies the data information, and the allocation unit transmits the data information to the storage unit. The allocation unit sends instructions to cause the backup unit to automatically connect to the storage unit to perform data backup.
2. The data backup system according to claim 1, characterized in that: The storage unit consists of multiple computer data storage devices and is divided into multiple storage spaces for storing different types of data information. The allocation unit is connected to a drive unit that drives the backup unit to connect to different types of storage spaces according to the classification.
3. The data backup system according to claim 2, characterized in that: The identification unit automatically identifies and classifies the data information and sends the classification information to the allocation unit. The allocation unit stores different types of data information in the storage space of different types of data information in the allocation unit. The classification information is sent to the driving unit, and the driving unit drives the backup unit to move to the location of the stored information data for backup.
4. The data backup system according to claim 3, characterized in that: The drive unit can be installed on multiple computer data storage devices, and the drive unit can drive the backup unit to be connected to any one of the computer data storage devices.
5. The data backup system according to claim 4, characterized in that: The drive unit includes a slot (01) with a clamping plate (02) slidably connected to the inner side of the lower end. A spring is fixedly connected between the clamping plate (02) and the slot (01). Sliding boxes (03) are slidably connected to both the left and right sides of the slot (01).
6. The data backup system according to claim 5, characterized in that: The inner side of the slide box (03) is provided with a rubber bladder (05), and a one-way valve (04) is connected to the rubber bladder (05). The one-way valve (04) passes through the slot (01).
7. The data backup system according to claim 6, characterized in that: The slot (01) is connected to the lead screw A (07) through a threaded hole. The lead screw A (07) is rotatably connected to the rotating plate (08). The upper end of the rotating plate (08) is rotatably connected to the slider (09).
8. The data backup system according to claim 7, characterized in that: The slider (09) is connected to the lead screw B (10) through a threaded hole. The lead screw B (10) is rotatably connected to the truss (11). A support frame (12) that can contact the back side of the slot (01) is fixedly connected to the lower front side of the middle part of the truss (11).
9. The data backup system according to claim 8, characterized in that: Both ends of the truss (11) are connected to lead screws C (15), and the inner ends of the two lead screws C (15) are rotatably connected to clamps (14).
10. The data backup system according to claim 9, characterized in that: The backup unit includes a hard disk (16), and the input interface on the hard disk (16) can be connected to the output interface of any computer data storage device.