Big data memory

By introducing protective slots and limiting mechanisms into the big data storage, the problems of easy damage and contamination of the transmission interface are solved, and the protection of the interface and the stability and security of data transmission are achieved.

CN223927075UActive Publication Date: 2026-02-17SHENZHEN ZHIYANG XINDA INFORMATION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520418291.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-11
Publication Date
2026-02-17
Estimated Expiration
2035-03-11

AI Technical Summary

Technical Problem

Traditional big data storage devices have their transmission interfaces directly exposed on the outer casing, making them susceptible to physical damage and scratches that can deform the interface or damage the pins. They are also prone to dust and liquid contaminants, which can affect the stability and security of data transmission.

Method used

A memory device including a protective groove and a limiting mechanism is designed. The transmission interface can slide into the protective groove and be fixed by the limiting mechanism. It can be unlocked and slid out when in use. At the same time, the protective mechanism seals the protective groove with a sealing cover to prevent dust and liquid from entering.

Benefits of technology

It effectively protects the transmission interface from physical damage, ensures stable data transmission, prevents dust and liquid contamination, extends service life, and guarantees the reliability and security of data transmission.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a big data memory, which belongs to the field of memories and comprises an outer shell, a mounting groove is arranged in the outer shell, a memory unit is mounted in the mounting groove, a protective groove is further arranged in the outer shell, a slidable transmission interface is arranged in the protective groove, the transmission interface is electrically connected with the memory unit, and the memory unit is electrically connected with the protective groove. The outer shell is provided with a limiting mechanism used for fixing the transmission interface after the transmission interface slides. According to the utility model, through the arrangement of the protection groove, when the transmission interface is not used, the transmission interface can be moved into the protection groove for protection, so that the transmission interface is prevented from being exposed outside all the time and subjected to physical damage, or the situation that the stability of data transmission is influenced due to interface deformation and pin damage possibly caused by collision and scraping is avoided; when the transmission interface is used or moved into the protection groove, the transmission interface can be locked.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a memory technical field especially relates to a big data memory. BACKGROUND

[0002] In today's digital era, the scale of big data is increasing day by day, from the massive user data of Internet companies, to the complex transaction records of financial institutions, to the huge experimental data in the field of scientific research, the dependence of various industries on big data storage is becoming increasingly deep, and the performance and design of big data storage as the core equipment carrying these key data directly affect the safety and efficiency of data.

[0003] Traditional big data storage has many defects when dealing with modern complex use scenarios. In terms of connecting components, commonly used transmission interfaces such as USB, Type-C, etc. are mostly directly exposed on the surface of the memory shell in daily use. This design makes the transmission interface extremely vulnerable to physical damage. Daily collisions and scratches can cause the interface to deform and the pins to be damaged, thereby affecting the stability of data transmission. At the same time, the exposed interface is also prone to contamination by dust, liquid and other pollutants. Dust accumulation can hinder signal transmission, while liquid intrusion can cause short circuits, resulting in data loss or even equipment damage. SUMMARY

[0004] The utility model aims at solving the problem in the prior art that the transmission interface is mostly directly exposed on the surface of the memory shell in daily use. This design makes the transmission interface extremely vulnerable to physical damage. Daily collisions and scratches can cause the interface to deform and the pins to be damaged, thereby affecting the stability of data transmission. At the same time, the exposed interface is also prone to contamination by dust, liquid and other pollutants. Dust accumulation can hinder signal transmission, while liquid intrusion can cause short circuits, resulting in data loss or even equipment damage. The utility model provides a big data memory.

[0005] To achieve the above purpose, the utility model adopts the following technical scheme:

[0006] A big data memory, comprising a shell body, an installation slot is formed in the shell body, a storage unit is installed in the installation slot, a protection slot is also formed in the shell body, a slidable transmission interface is arranged in the protection slot, the transmission interface is electrically connected with the storage unit, a limiting mechanism for fixing the transmission interface after sliding is installed on the shell body, the limiting mechanism comprises a connecting block fixed on the side surface of the transmission interface close to the storage unit, a locking hole is formed in the connecting block, a locking rod slides on the inner wall of the shell body, and the locking rod slides in the locking hole.

[0007] Preferably, the limiting mechanism further comprises a rectangular block fixed to the inner wall of the protection groove, and a crossbar is fixed between the rectangular block and the outer shell body, and the connecting block slides on the outer surface of the crossbar.

[0008] Preferably, the limiting mechanism further comprises a rectangular shell fixed to the outer surface of the outer shell body, a telescopic rod is fixed to the inner wall of the rectangular shell, a moving block is fixed to the end of the telescopic rod away from the rectangular shell, the locking rod is fixed to the moving block, a spring is sleeved on the outer surface of the telescopic rod, and the two ends of the spring are fixedly connected with the telescopic rod and the moving block respectively.

[0009] Preferably, the limiting mechanism further comprises a limiting groove opened in the top wall of the rectangular shell, and a pull block is fixed to the top of the moving block and slides in the limiting groove.

[0010] Preferably, the outer shell body is provided with a protection mechanism for sealing the protection groove, the protection mechanism comprises a stand column fixed to the outer shell body, a connecting rope is connected to the outer surface of the stand column, and a cover plate is fixed to the end of the connecting rope away from the stand column.

[0011] Preferably, the protection mechanism further comprises a sealing block fixed to the cover plate, and a sealing ring is fixed to the outer surface of the sealing block.

[0012] Compared with the prior art, the utility model has the beneficial effects that:

[0013] 1. By arranging the protection groove, when the transmission interface is not used, the transmission interface can be moved into the protection groove for protection, so that the transmission interface is not exposed to the outside and is not subjected to physical damage or deformation and pin damage due to collision or scratching, thereby affecting the stability of data transmission.

[0014] 2. By arranging the protection mechanism, the transmission interface is comprehensively protected, when the transmission interface is not used, the cover plate can be pulled to the protection groove through the connecting rope, the sealing ring on the sealing block is tightly attached to the edge of the protection groove, dust, liquid and other pollutants are effectively prevented from entering the protection groove, the performance of the transmission interface is not affected by the contamination, meanwhile, the cover plate can resist slight collision from the outside to some extent, the transmission interface is prevented from being subjected to physical damage, the service life of the transmission interface is prolonged, the big data storage device can still stably operate in a complex environment, and the reliability of data transmission is ensured. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 A three-dimensional structure schematic diagram of the big data storage device is provided.

[0016] Figure 2 A large data storage shell internal structure schematic view is provided for the utility model;

[0017] Figure 3 A large data storage shell internal structure schematic view is provided for the utility model Figure 2 An enlarged schematic view of structure A is provided for the utility model;

[0018] Figure 4 A large data storage shell internal structure schematic view is provided for the utility model;

[0019] Figure 5 An enlarged schematic view of structure B is provided for the utility model Figure 4

[0020] In the figure: 1, the shell body; 11, the installation groove; 12, the storage unit; 13, the protection groove; 14, the transmission interface; 21, the connecting block; 22, the locking hole; 23, the locking rod; 24, the rectangular block; 25, the crossbar; 26, the rectangular shell; 27, the telescopic rod; 28, the moving block; 29, the spring; 210, the limiting groove; 211, the pull block; 31, the stand; 32, the connecting rope; 33, the cover plate; 34, the sealing block; 35, the sealing ring. DETAILED DESCRIPTION

[0021] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0022] Embodiment one

[0023] With reference to Figures 1-5 A large data storage, including shell body 1, shell body 1 is set up in the installation groove 11, the installation groove 11 is installed with storage unit 12, shell body 1 is also set up in the protection groove 13, the protection groove 13 is provided with the slidable transmission interface 14, transmission interface 14 is electrically connected with storage unit 12, shell body 1 is installed with the limiting mechanism for fixing transmission interface 14 after the sliding of transmission interface 14, the limiting mechanism includes the connecting block 21 fixed in the side surface of transmission interface 14 close to storage unit 12, the locking hole 22 is set up in the connecting block 21, the inner wall of shell body 1 is slid with locking rod 23, locking rod 23 is slid in locking hole 22.

[0024] ​Further, the limiting mechanism further comprises a rectangular block 24 fixed to the inner wall of the protection groove 13, and a horizontal rod 25 is fixed between the rectangular block 24 and the outer shell 1, and the connecting block 21 slides on the outer surface of the horizontal rod 25.

[0025] Further, the limiting mechanism further comprises a rectangular shell 26 fixed to the outer surface of the outer shell 1, an extension rod 27 is fixed to the inner wall of the rectangular shell 26, a moving block 28 is fixed to the end of the extension rod 27 away from the rectangular shell 26, the locking rod 23 is fixed to the moving block 28, a spring 29 is sleeved on the outer surface of the extension rod 27, and the two ends of the spring 29 are fixedly connected with the extension rod 27 and the moving block 28 respectively.

[0026] Further, the limiting mechanism further comprises a limiting groove 210 opened in the top wall of the rectangular shell 26, and a pull block 211 is fixed to the top of the moving block 28 and slides in the limiting groove 210.

[0027] When the transmission interface 14 is not used, the user can slide it along the protection groove 13 so that it is completely in the protection groove 13, and the protection groove 13 provides a physical protection space for the transmission interface 14 to avoid being exposed to the outside and suffering physical damage such as collision and scratching, and when the transmission interface 14 needs to be used for data transmission, the user first pulls the pull block 211 in the limiting groove 210 on the top wall of the rectangular shell 26, when the pull block 211 is pulled, the moving block 28 drives the locking rod 23 to slide out of the locking hole 22 in the connecting block 21 against the elastic force of the spring 29, at this time the transmission interface 14 is unlocked, the user can slide the transmission interface 14 from the protection groove 13 along the horizontal rod 25 to the appropriate position, the horizontal rod 25 is fixed between the rectangular block 24 fixed to the inner wall of the protection groove 13 and the outer shell 1, and the connecting block 21 slides on the outer surface of the horizontal rod 25 to provide guidance for the sliding of the transmission interface 14, after adjusting the position, the pull block 211 is released, the elastic force of the spring 29 makes the moving block 28 drive the locking rod 23 to reset, and the locking rod 23 slides into the locking hole 22 to fix the transmission interface 14 at this position, so that the transmission interface 14 will not loosen due to external shaking during data transmission, ensuring the stability of data transmission and avoiding interruption of transmission.

[0028] The transmission interface 14 is electrically connected with the storage unit 12, when the transmission interface 14 is connected with the external device and fixed in position, the data of the external device is transmitted to the storage unit 12 in the form of electrical signal through the transmission interface 14 for storage, and vice versa, the data in the storage unit 12 can also be transmitted to the external device in the form of electrical signal through the transmission interface 14, realizing the storage and reading operation of big data.

[0029] It should be noted that the storage unit 12 is composed of multiple groups of high-performance solid state disk arrays, and these solid state disks adopt 3D advanced NAND flash memory technology, having the characteristics of large capacity, high read-write speed and low power consumption.

[0030] Based on the embodiment one, the embodiment two is provided:

[0031] Referring to Figures 1-5 ,

[0032] Further, the outer shell 1 is provided with a protection mechanism for sealing the protection groove 13, the protection mechanism comprising a stand 31 fixed on the outer shell 1, the outer surface of the stand 31 being connected with a connecting rope 32, the end of the connecting rope 32 away from the stand 31 being fixed with a cover plate 33.

[0033] Further, the protection mechanism further comprises a sealing block 34 fixed on the cover plate 33, the outer surface of the sealing block 34 being fixed with a sealing ring 35.

[0034] When the transmission interface 14 moves into the protection groove 13, the protection mechanism starts to work, the stand 31 fixed on the outer shell 1 is connected with the cover plate 33 through the connecting rope 32, and can be pulled to the protection groove 13, the sealing block 34 fixed on the cover plate 33 tightly abuts against the sealing ring 35 on the outer surface of the sealing block 34 to the edge of the protection groove 13, so that a sealed environment is formed, dust, liquid and other pollutants are effectively prevented from entering the protection groove 13, the transmission interface 14 is protected from impurities, and the stability of the performance of the transmission interface 14 is ensured.

[0035] The above is only the preferred specific implementation of the present application, but the protection scope of the present application is not limited to this, any skilled person in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.

Claims

1. A big data storage comprising an outer housing (1), characterized in that, The outer shell (1) is provided with an installation groove (11), and the installation groove (11) is provided with a storage unit (12).

2. The big data storage of claim 1, wherein, The limiting mechanism further comprises a rectangular block (24) fixed to the inner wall of the protection groove (13), and a cross rod (25) is fixed between the rectangular block (24) and the outer shell (1).

3. The big data storage of claim 1, wherein, The limiting mechanism further comprises a rectangular shell (26) fixed to the outer surface of the outer shell (1), and an extension rod (27) is fixed to the inner wall of the rectangular shell (26).

4. The big data memory of claim 3, wherein, The extension rod (27) is provided with a spring (29) on the outer surface.

5. The big data storage of claim 1, wherein, The outer shell (1) is provided with a protection mechanism for sealing the protection groove (13), and the protection mechanism comprises a stand (31) fixed to the outer shell (1).

6. The big data memory of claim 5, wherein, The stand (31) is provided with a connecting rope (32), and the connecting rope (32) is provided with a cover plate (33) at one end. The protection mechanism further comprises a sealing block (34) fixed to the cover plate (33), and the sealing block (34) is provided with a sealing ring (35) on the outer surface.