Portable data storage device for big data management

By designing a portable data storage device for big data management, combining a large-capacity storage unit, a shock-absorbing sleeve, and an outer casing, the problems of insufficient portability, sealing and waterproofing, and protection of existing devices are solved. This achieves multiple functions of portability, sealing, and protection, meeting the usage needs in mobile and distributed environments.

CN223784890UActive Publication Date: 2026-01-09李星熠
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Patent Information

Application Number
CN202423104233.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-16
Publication Date
2026-01-09
Estimated Expiration
2034-12-16

AI Technical Summary

Technical Problem

Existing data storage devices for big data management are inadequate in terms of portability, waterproofing, and protection, and cannot meet the needs of mobile and distributed environments.

Method used

A portable data storage device for big data management has been designed, including a large-capacity memory body, a shock-absorbing sleeve, an outer shell, a card slot, a shell plate, a limit bolt slot, an anti-slip push plate, a cable slot, a data cable, a support shaft, a lock head cover, a card limit slide, a connecting shell block, and a top block spring. Through the combined use of these components, the device achieves portability, sealing, and protection functions.

Benefits of technology

The device's portability, water resistance, and protective properties have been improved, ensuring the security and reliability of data storage during mobile operations.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a portable data storage device for big data management, which relates to the technical field of big data storage devices and comprises a large-capacity memory main body, a damping sheath is mounted at the outer end of the large-capacity memory main body, and an outer sealing shell is mounted at the outer end of the damping sheath. Through the arrangement of the large-capacity memory main body, the outer sealing shell, the wire clamping groove, the lock head cover, the shell connecting clamping block, the ejection block spring and the data line, the data line used by the large-capacity memory main body is folded, and the bent part is clamped in the wire clamping groove in the right side of the outer sealing shell from two sides; then one side of the data line connector is clamped in a line clamping groove in the left side of the outer sealing shell, at the moment, the lock head cover rotates on a cover bearing shaft, a shell connecting clamping block moves in a clamping limiting sliding groove formed in the lock head cover to be clamped with the outer sealing shell through the acting force of a top block spring, and the whole device is directly lifted and transferred through the folded data line; and the portable effect of the device in use is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to big data storage device technical field, concretely is a data storage device for portable big data management. BACKGROUND

[0002] In today's digital age, data is generated at an extremely fast speed, in order to meet the needs of data storage and management under the big data environment, a storage device with a large memory is usually used to store and transfer data, which has a large storage capacity, and generally uses high-performance storage media, such as a large-capacity solid state disk or a high-capacity mechanical hard disk, to store data centrally for unified management and maintenance, and with the diversification of work methods, more and more work is done in mobile or distributed environment, the existing data storage device for big data management has the problems of inconvenient carrying, poor sealing and waterproof effect, and poor anti-collision performance, therefore, a portable data storage device for big data management is needed.

[0003] The existing data storage device for big data management cannot effectively improve the portability of the device during operation, cannot effectively improve the sealing and waterproof effect of the device, and cannot improve the protection effect of the device, therefore, a portable data storage device for big data management is needed. UTILITY MODEL CONTENT

[0004] Therefore, the utility model aims to provide a portable data storage device for big data management to solve the problem that the existing data storage device for big data management cannot effectively improve the portability of the device during use, cannot effectively improve the sealing and waterproof effect of the device, and cannot improve the protection effect of the device.

[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a portable data storage device for big data management, comprising a large-capacity memory main body, a shock-absorbing sheath is installed at the outer end of the large-capacity memory main body, and an outer shell is installed at the outer end of the shock-absorbing sheath.

[0006] A clamping plate groove is formed in the inner end of the outer shell, a shell plate is installed in the inner end of the clamping plate groove, a limiting bolt groove is installed at the outer end of the large-capacity memory main body, and an anti-skid push plate is installed at the middle end of the limiting bolt groove.

[0007] A wire clamping groove is formed in the outer end of the large-capacity memory main body, a data line is installed at the middle end of the wire clamping groove, a bearing cover shaft is installed at one end of the large-capacity memory main body, a lock head cover is installed at the outer end of the bearing cover shaft, a limiting clamping sliding groove is formed in the lower end of the lock head cover, a connecting shell clamping block is installed in the inner end of the limiting clamping sliding groove, and a top block spring is installed at the front end of the connecting shell clamping block.

[0008] Preferably, the outer end surface of the shock-absorbing sheath is adhered to the inner end surface of the outer shell, and the large-capacity memory body is connected to the outer shell in an extension structure through the shock-absorbing sheath.

[0009] Preferably, the shell plate is connected to the outer shell in a sliding structure through the clamping plate slot, and the anti-skid push plate is connected to the outer shell in a sliding structure through the limiting bolt slot.

[0010] Preferably, the shell plate is connected to the outer shell in a clamping connection through the anti-skid push plate, and the inner end surface of the shell plate is tightly attached to the front end surface of the large-capacity memory body.

[0011] Preferably, the data line is connected to the outer shell in a clamping connection through the clamping line slot, and the lock head cover is connected to the outer shell in a rotating structure through the bearing cover shaft.

[0012] Preferably, the connecting shell clamping block is connected to the outer shell in an extension structure through the top block spring, and the lock head cover is connected to the outer shell in a clamping connection through the connecting shell clamping block.

[0013] Compared with the prior art, the utility model has the advantages that:

[0014] 1. The utility model discloses a large-capacity memory body, an outer shell, a clamping line slot, a lock head cover, a connecting shell clamping block, a top block spring and a data line are arranged, the data line used by the large-capacity memory body is folded, the folded part is clamped on the clamping line slot on the right side of the outer shell from both sides, then the data line connector is clamped on the clamping line slot on the left side of the outer shell, at this time, the lock head cover is rotated on the bearing cover shaft, and the connecting shell clamping block is moved in the limiting clamping sliding slot on the lock head cover through the action force of the top block spring to be clamped with the outer shell, at this time, the data line connector is placed in the lock head cover, the entire device can be directly lifted and transferred through the folded data line, and the portable effect of the device is improved.

[0015] 2. The utility model discloses a large-capacity memory body, an outer shell, a clamping plate slot, a shell plate, a limiting bolt slot and an anti-skid push plate are arranged, the large-capacity memory body is inserted into the outer shell, then the shell plate is moved in the clamping plate slot to close the opening of the outer shell, then the anti-skid push plate is pushed forward in the limiting bolt slot to contact the rear end of the shell plate, so that the position of the shell plate is limited, and the sealing and waterproof effect of the device is improved.

[0016] 3. The utility model discloses a large-capacity memory body, a shock-absorbing sheath and an outer shell are arranged, the shock-absorbing sheath is arranged on the outer end of the large-capacity memory body, when the entire device is collided, the shock-absorbing sheath reduces the impact force of the outer shell on the large-capacity memory body, and the protection effect of the device is improved. ACCURACY

[0017] Figure 1 It is a front view of the utility model;

[0018] Figure 2 It is the structure schematic view of the utility model from side;

[0019] Figure 3 It is the structure schematic view of the utility model from split;

[0020] Figure 4 It is the structure schematic view of the utility model Figure 3 A structure schematic view of the utility model from A place.

[0021] In the figure: 1, large capacity memory body; 2, shock-absorbing sheath; 3, outer envelope; 4, card board slot; 5, envelope plate; 6, limit bolt slot; 7, anti-skid push plate; 8, card line slot; 9, bearing cover shaft; 10, lock head cover; 11, limit card sliding slot; 12, connecting shell clamping block; 13, top block spring; 14, data line. Specific implementation

[0022] The technical solutions in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model. The embodiments described below with reference to the drawings are exemplary and are used only for explaining the utility model, and cannot be understood as limiting the utility model.

[0023] The embodiments will be described below according to the overall structure of the utility model.

[0024] Please refer to Figures 1-4 A kind of data storage device for portable big data management, including large capacity memory body 1, shock-absorbing sheath 2 is installed at the outer end of large capacity memory body 1, outer envelope 3 is installed at the outer end of shock-absorbing sheath 2, the outer end surface of shock-absorbing sheath 2 and the inner end surface of outer envelope 3 are mutually adhered, and large capacity memory body 1 is formed into telescopic structure by shock-absorbing sheath 2 and outer envelope 3, protect in the outer end of large capacity memory body 1 by shock-absorbing sheath 2, when the whole device is collided, shock-absorbing sheath 2 slows down the impact force of outer envelope 3 to large capacity memory body 1, improves the protection effect of device use.

[0025] Please refer to Figures 1-4The utility model provides a portable big data management data storage device, and the outer shell 3 is provided with a clamping plate groove 4 at the inner end, a shell plate 5 is installed at the inner end of the clamping plate groove 4, a limiting bolt groove 6 is installed at the outer end of the large-capacity memory main body 1, and an anti-skid push plate 7 is installed at the middle end of the limiting bolt groove 6; the shell plate 5 and the outer shell 3 form a sliding structure through the clamping plate groove 4, and the anti-skid push plate 7 and the outer shell 3 form a sliding structure through the limiting bolt groove 6; the shell plate 5 is connected with the outer shell 3 through the anti-skid push plate 7, and the inner end surface of the shell plate 5 is tightly attached to the front end surface of the large-capacity memory main body 1; the large-capacity memory main body 1 is inserted into the outer shell 3, then the shell plate 5 is moved in the clamping plate groove 4 to close the opening of the outer shell 3, and then the anti-skid push plate 7 is pushed forward in the limiting bolt groove 6 to contact the rear end of the shell plate 5, so as to limit the position of the shell plate 5 and improve the sealing and waterproof effect of the device.

[0026] Please refer to Figures 1-4 The utility model provides a portable big data management data storage device, and the outer end of the large-capacity memory main body 1 is provided with a wire clamping groove 8, a data line 14 is installed at the middle end of the wire clamping groove 8, a bearing cover shaft 9 is installed at one end of the large-capacity memory main body 1, a lock head cover 10 is installed at the outer end of the bearing cover shaft 9, a limiting clamping sliding groove 11 is formed at the lower end of the lock head cover 10, a shell connecting clamping block 12 is installed at the inner end of the limiting clamping sliding groove 11, a top block spring 13 is installed at the front end of the shell connecting clamping block 12, the data line 14 is connected with the outer shell 3 through the wire clamping groove 8, the lock head cover 10 and the outer shell 3 form a rotating structure through the bearing cover shaft 9, the shell connecting clamping block 12 and the outer shell 3 form an extension structure through the top block spring 13, and the lock head cover 10 is connected with the outer shell 3 through the shell connecting clamping block 12; the data line 14 used by the large-capacity memory main body 1 is folded in half, and the folded part is clamped on the wire clamping groove 8 on the right side of the outer shell 3 from both sides, then the data line 14 connection head is clamped in the wire clamping groove 8 on the left side of the outer shell 3, at this time, the lock head cover 10 is rotated on the bearing cover shaft 9, and the shell connecting clamping block 12 is moved in the limiting clamping sliding groove 11 formed in the lock head cover 10 to be clamped with the outer shell 3 through the action force of the top block spring 13; at this time, the data line 14 connection head is placed in the lock head cover 10, the entire device can be directly lifted and moved through the folded data line 14, and the portable effect of the device is improved.

[0027] Working principle: when using, the large-capacity memory body 1 is inserted into the outer shell 3 first, then the shell plate 5 is moved in the card plate slot 4 to close the opening of the outer shell 3, then the anti-skid push plate 7 is pushed forward in the limit bolt slot 6 to contact the rear end of the shell plate 5, thereby limiting the position of the shell plate 5, improving the sealing and waterproof effect of the device, then the data line 14 used by the large-capacity memory body 1 is folded, and the folded part is clamped in the card line slot 8 on the right side of the outer shell 3, then the data line 14 connector is clamped in the card line slot 8 on the left side of the outer shell 3, at this time the lock head cover 10 is rotated on the bearing cover shaft 9, and the continuous shell clamping block 12 is moved in the limit clamping sliding groove 11 on the lock head cover 10 by the action force of the top block spring 13 to be clamped with the outer shell 3, at this time the data line 14 connector is placed in the lock head cover 10, the entire device can be directly lifted and moved through the folded data line 14, the portable effect of the device is improved, and the shock absorbing sheath 2 protects the outer end of the large-capacity memory body 1, when the entire device is collided, the shock absorbing sheath 2 reduces the impact force of the outer shell 3 on the large-capacity memory body 1, so that the use process of the device is completed, and the contents not described in detail in the specification belong to the existing technology known to those skilled in the art.

[0028] Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments or make equivalent replacement to part of the technical features, and any modification, equivalent replacement, improvement, etc. within the spirit and principles of the utility model should be included in the protection scope of the utility model.

Claims

1. A data storage device for portable big data management comprising a mass storage memory body (1), characterized in that: The outer end of the mass storage body (1) is provided with a shock-absorbing sheath (2), and the outer end of the shock-absorbing sheath (2) is provided with an outer shell (3). The inner end of the outer shell (3) is provided with a clamping plate slot (4), and the inner end of the clamping plate slot (4) is provided with a shell plate (5). The outer end of the mass storage body (1) is provided with a limiting bolt slot (6), and the middle end of the limiting bolt slot (6) is provided with an anti-skid push plate (7). The outer end of the mass storage body (1) is provided with a clamping wire slot (8), and the middle end of the clamping wire slot (8) is provided with a data line (14). One end of the mass storage body (1) is provided with a bearing cover shaft (9), and the outer end of the bearing cover shaft (9) is provided with a lock head cover (10). The lower end of the lock head cover (10) is provided with a limiting clamping sliding slot (11), and the inner end of the limiting clamping sliding slot (11) is provided with a connecting shell clamping block (12). The front end of the connecting shell clamping block (12) is provided with a top block spring (13).

2. The portable big data management data storage device of claim 1, wherein: The outer end surface of the shock-absorbing sheath (2) and the inner end surface of the outer shell (3) are mutually adhered, and the mass storage body (1) forms an extension structure with the shock-absorbing sheath (2) and the outer shell (3).

3. The portable big data management data storage device of claim 1, wherein: The shell plate (5) forms a sliding structure with the outer shell (3) through the clamping plate slot (4), and the anti-skid push plate (7) forms a sliding structure with the outer shell (3) through the limiting bolt slot (6).

4. The portable big data management data storage device of claim 1, wherein: The shell plate (5) is connected with the outer shell (3) through the anti-skid push plate (7), and the inner end surface of the shell plate (5) is tightly attached to the front end surface of the mass storage body (1).

5. The portable big data management data storage device of claim 1, wherein: The data line (14) is connected with the outer shell (3) through the clamping wire slot (8), and the lock head cover (10) forms a rotating structure with the outer shell (3) through the bearing cover shaft (9).

6. The portable big data management data storage device of claim 1, wherein: The connecting shell clamping block (12) forms an extension structure with the outer shell (3) through the top block spring (13), and the lock head cover (10) is connected with the outer shell (3) through the connecting shell clamping block (12).