Secure encryption data storage device
By introducing a protective frame, a wind-driven mechanism, and a heat-conducting plate structure into the data storage device, the problem of low heat dissipation efficiency is solved, rapid heat dissipation is achieved, service life is extended, and data security is improved.
Patent Information
- Application Number
- CN202520035608.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-08
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2035-01-08
AI Technical Summary
Existing data storage devices have low heat dissipation efficiency during external impacts and large-scale data exchange, leading to heat accumulation, shortening their lifespan, and threatening data security and integrity.
It adopts a protective frame, wind-driven mechanism and heat-conducting plate structure. The wind-driven mechanism accelerates airflow, and the combination of arc and cube heat-conducting plates forms a ventilation chamber to quickly dissipate heat.
It improves the heat dissipation efficiency of data storage devices, extends their service life, ensures data integrity and security, and reduces the risk of data loss.
Smart Images

Figure CN223679820U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to electronic equipment technical field especially, relates to a safe encrypted data storage device. BACKGROUND
[0002] With the development of computer technology, various kinds of traffic tools, monitoring equipment, household appliances etc. begin to develop towards intelligence, built-in processor and memory etc. electronic devices, thereby have data processing and storage capacity, the internal storage needs to set up password lock to protect, in order to provide intelligent service and protect user privacy to user.
[0003] In the use of storage, its external environment may encounter collision, and when carrying out large-scale data exchange, the internal storage will rapidly produce a large amount of heat, although the design of external structure is to protect the storage from damage, but these structures often fail to effectively promote the internal heat dissipation of storage, therefore, while the storage is protected, its internal heat dissipation efficiency is slow, leading to heat accumulation in the internal storage, this heat accumulation phenomenon not only shortens the service life of storage, but also may threaten the integrity and security of stored data, in extreme cases, it may even cause serious consequences of data loss. SUMMARY
[0004] The utility model provides technical scheme as follows in view of the deficiency of prior art: a safe encrypted data storage device, including protection frame, the inside middle fixed mounting of protection frame is square frame rubber pad, the square frame rubber pad swing joint has storage, the right side surface of storage is equipped with the connecting port, the top inner wall of protection frame is fixedly installed with arc heat conduction plate, the bottom of arc heat conduction plate is fixedly installed with square heat conduction plate, the bottom of square heat conduction plate and the top of storage are mutually pasted, the left side surface of protection frame is provided with wind power drive mechanism of accelerating wind force flow, when the internal storage rapidly produces a large amount of heat, through the mutual cooperation of wind power drive mechanism and arc heat conduction plate etc. structure accelerates the rapid export of internal heat of storage when the square frame rubber pad and protection frame mutually cooperate and protect the storage.
[0005] As improvement of the above technical scheme, the wind power drive mechanism includes fixed ring, the fixed ring is fixedly installed in the left side surface of protection frame, the inner ring surface of fixed ring is fixedly installed with cross fixed frame, the right side center of cross fixed frame is provided with electric rod, the outside of electric rod is fixedly installed with rotating fan blade, through the mutual cooperation between wind power drive mechanism, air is driven and accelerated to flow to the inside of protection frame.
[0006] As the improvement of the above technical scheme, the diameter of the fixed ring is smaller than the height of the protection frame, the fixed ring is protected, and the upper and lower collision forces are prevented when the fixed ring is subjected to external collision.
[0007] As the improvement of the above technical scheme, the top of the protection frame is provided with a heat dissipation square port, and the heat dissipation square port and the circular arc heat conduction plate are staggered with each other, so that part of the heat of the circular arc heat conduction plate can be discharged through the heat dissipation square port.
[0008] As the improvement of the above technical scheme, the circular arc heat conduction plate and the square heat conduction plate are provided with a plurality of circular arc heat conduction plates and square heat conduction plates, and the plurality of circular arc heat conduction plates and square heat conduction plates are uniformly arranged on the upper and lower sides of the storage device, and the circular arc heat conduction plates adjacent in the horizontal direction form a ventilation bin, and the plurality of circular arc heat conduction plates and square heat conduction plates are matched to reinforce the storage device, and the external accelerated air is taken out through the ventilation bin.
[0009] The beneficial effects of the utility model are as follows: when a large amount of heat is rapidly generated in the storage device, the heat in the storage device is rapidly discharged through the cooperation of the wind power driving mechanism and the circular arc heat conduction plate and other structures, so that the storage device is protected and the heat dissipation efficiency in the storage device is accelerated, the service life of the storage device is prolonged, the integrity and safety of the stored data are ensured, and the risk of data loss is greatly reduced. BRIEF DESCRIPTION OF DRAWINGS
[0010] Figure 1 It is a front view of the data storage device of the utility model;
[0011] Figure 2 It is a sectional view of the internal structure of the utility model;
[0012] Figure 3 It is the utility model Figure 2 It is an enlarged view of the structure at A;
[0013] Figure 4 It is the utility model Figure 2 It is an enlarged view of the structure at B.
[0014] Reference signs: 1, protection frame; 2, square rubber pad; 21, storage device; 22, connecting port; 23, circular arc heat conduction plate; 24, square heat conduction plate; 3, fixed ring; 31, cross fixed frame; 32, electric rod; 33, rotating fan blade. DETAILED DESCRIPTION
[0015] In order to make the purpose, technical scheme and advantages of the utility model more clear and obvious, the utility model is further described in detail below. It should be understood that the specific embodiments described herein are only used to explain the utility model, and are not used to limit the utility model.
[0016] Reference is made to the accompanying drawings Figure 1 In Figure 1 In the figures, a refers to a front view, b refers to a right side view, and the above-mentioned views are only used for understanding the scheme.
[0017] Reference is made to Figures 1-4 The utility model provides a technical scheme:
[0018] Specifically, a safe encrypted data storage device comprises a protection frame 1, a square rubber pad 2 is fixedly installed in the middle of the inside of the protection frame 1, the square rubber pad 2 movably clamps a storage 21, a connecting port 22 is formed in the right side surface of the storage 21, an arc heat conduction plate 23 is fixedly installed on the top inner wall of the protection frame 1, a square heat conduction plate 24 is fixedly installed at the bottom end of the arc heat conduction plate 23, the bottom of the square heat conduction plate 24 and the top of the storage 21 are mutually pasted, and a wind power driving mechanism for accelerating wind power flow is arranged on the left side surface of the protection frame 1.
[0019] In the embodiment, when a large amount of heat is rapidly generated in the storage 21, the wind power driving mechanism and the arc heat conduction plate 23 are mutually matched to accelerate the rapid export of the heat in the storage 21.
[0020] Specifically, the wind power driving mechanism comprises a fixed ring 3, the fixed ring 3 is fixedly installed on the left side surface of the protection frame 1, a cross fixed frame 31 is fixedly installed on the inner ring surface of the fixed ring 3, an electric rod 32 is arranged on the right side center of the cross fixed frame 31, and a rotating fan blade 33 is fixedly installed on the outside of the electric rod 32.
[0021] In the embodiment, the wind power driving mechanism is mutually matched to drive and accelerate the flow of air to the inside of the protection frame 1.
[0022] Specifically, the diameter of the fixed ring 3 is less than the height of the protection frame 1.
[0023] In the embodiment, the fixed ring 3 is protected to prevent the fixed ring 3 from being subjected to the impact force from the upper side and the lower side when being subjected to external impact.
[0024] Specifically, a heat dissipation square port is formed in the top of the protection frame 1, and the heat dissipation square port and the arc heat conduction plate 23 are mutually staggered.
[0025] In the embodiment, a part of the heat of the arc heat conduction plate 23 can be discharged through the heat dissipation square port.
[0026] Specifically, the plurality of arc-shaped heat-conducting plates 23 and the plurality of cuboid heat-conducting plates 24 are evenly arranged on the upper and lower sides of the storage device 21, and the arc-shaped heat-conducting plates 23 adjacent in the horizontal direction form the ventilation chamber.
[0027] In the embodiment, the plurality of arc-shaped heat-conducting plates 23 and the plurality of cuboid heat-conducting plates 24 cooperate to reinforce the storage device 21, and facilitate the external accelerated air to take out heat through the ventilation chamber.
[0028] In use, the protection frame 1 is placed at a designated position, and data exchange is performed through the connection port 22. When the storage device 21 is subjected to external impact, the protection frame 1 and the cuboid rubber pad 2 cooperate to protect the storage device 21, preventing damage to the storage device 21. Meanwhile, when the storage device 21 performs large-scale data exchange, a large amount of heat is rapidly generated inside the storage device 21. The cuboid heat-conducting plate 24 transfers the heat inside the storage device 21, so that the heat is transferred to the arc-shaped heat-conducting plate 23 and dissipated through the arc-shaped heat-conducting plate 23. The heat dissipated by the arc-shaped heat-conducting plate 23 is dissipated through the heat-dissipating cuboid port or stays in the ventilation chamber. At this time, the electric rod 32 is started, and the electric rod 32 drives the rotating fan blade 33 to rotate. The rotating fan blade 33 rotates to accelerate the wind force flowing into the interior of the protection frame 1. The wind force flowing into the interior of the protection frame 1 enters the ventilation chamber and mixes with the heat in the ventilation chamber, and then drives the heat to flow out from the right side of the protection frame 1, so as to accelerate the heat in the ventilation chamber to flow out. The cuboid heat-conducting plate 24 and the arc-shaped heat-conducting plate 23 quickly conduct more heat, accelerate the rapid conduction of the heat inside the storage device 21, so that the storage device 21 is protected while the heat dissipation efficiency inside the storage device 21 is accelerated, prolonging the service life of the storage device 21 and ensuring the integrity and security of the stored data, thereby greatly reducing the risk of data loss.
[0029] The above embodiments are only used to illustrate the technical solutions of the present application, and not to limit them.
Claims
1. A secure encrypted data storage device comprising a protection frame (1), characterized in that: The inside of the protection frame (1) is fixedly installed with a square rubber pad (2), the square rubber pad (2) is movably clamped with a storage (21), the right side of the storage (21) is provided with a connecting port (22), the top inner wall of the protection frame (1) is fixedly installed with a circular arc heat conduction plate (23), the bottom end of the circular arc heat conduction plate (23) is fixedly installed with a square heat conduction plate (24), the bottom of the square heat conduction plate (24) is matched with the top of the storage (21), and the left side of the protection frame (1) is provided with a wind driven mechanism for accelerating the wind flow.
2. A secure encrypted data storage device as claimed in claim 1, wherein: The wind driven mechanism comprises a fixed circular ring (3), the fixed circular ring (3) is fixedly installed on the left side of the protection frame (1), the inner ring surface of the fixed circular ring (3) is fixedly installed with a cross fixed frame (31), the right side center of the cross fixed frame (31) is provided with an electric rod (32), and the outer side of the electric rod (32) is fixedly installed with a rotating fan blade (33).
3. A securely encrypted data storage device as claimed in claim 2, wherein: The diameter of the fixed circular ring (3) is smaller than the height of the protection frame (1).
4. The secure encrypted data storage device of claim 1, wherein: The top of the protection frame (1) is provided with a square heat dissipation port, and the square heat dissipation port is staggered with the circular arc heat conduction plate (23).
5. The secure encrypted data storage device of claim 1, wherein: The circular arc heat conduction plate (23) and the square heat conduction plate (24) are provided on the upper and lower sides of the storage (21) in multiple, and the circular arc heat conduction plates (23) and the square heat conduction plates (24) are evenly arranged. The circular arc heat conduction plates (23) and the square heat conduction plates (24) are evenly arranged on the upper and lower sides of the storage (21), and the circular arc heat conduction plates (23) and the square heat conduction plates (24) are evenly arranged on the upper and lower sides of the storage (21).