A network integrated work device for information encryption and loss prevention

By designing fan noise warning and support devices, the heat dissipation and secure connection issues of the network integration device were solved, thus achieving stability and security of the network integration work equipment with information encryption and anti-loss features.

CN120145462BActive Publication Date: 2025-12-02SHANGRAO MAO TENG INFORMATION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510289615.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-12
Publication Date
2025-12-02
Estimated Expiration
2045-03-12

AI Technical Summary

Technical Problem

The network integration device causes heat dissipation problems after being connected, and it is impossible to know the connection status in time after being unplugged, which affects safe use.

Method used

A network-integrated work device for information encryption and loss prevention was designed, including a protective device and a support device. Utilizing components such as a fan, spring, and rotating wheel, the fan noise indicates that the plug is about to detach, preventing theft. The support device prevents the device body from falling directly. Non-Newtonian fluid deceleration is used to detour the plug, and the device spacing is adjusted to prevent damage.

Benefits of technology

It effectively prevents information loss, avoids heat dissipation problems between the device body and other equipment, ensures stable plug connection, prevents plug damage, and provides a safe and reliable user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a network integration device for information encryption and loss prevention, relating to the field of network integration technology. It includes a device body, a protective device, and a supporting device. The device body is electrically connected to a plug via wires. A connecting rod is fixedly mounted on the top of the plug, and the connecting rod is slidably mounted on the top of the device body. A fan is installed inside the device body. The protective device includes a contact rod, a moving plate, a locking block, a horizontal plate, a telescopic plate, a plug plate, a concave block, a bending rod, a filter plate, and an impact rod. When the horizontal plate moves downward, it drives the bending rod downward. When the bending rod moves downward, its inclined surface pushes the impact rod towards the fan. The contact rod is slidably mounted on the top of the plug, and the moving plate is slidably mounted on the surface of the connecting rod. When the fan rotates, the impact rod generates noise, thus indicating that the plug is about to detach from the socket.
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Description

Technical Field

[0001] This invention relates to the field of network integration technology, specifically to a network integration work device that encrypts information and prevents loss. Background Technology

[0002] Network integration work equipment refers to various devices or tools related to network integration and communication.

[0003] Patent publication number CN215910897U relates to a network integrated working device for information encryption and loss prevention, belonging to the field of communication technology. It includes a hard drive body, a central control device, and an information receiving end. An early warning cavity is located on one side of the hard drive body, and a balancing gyroscope is installed inside the cavity. The central control device is located inside the hard drive body. A fingerprint panel is located on the top surface of the hard drive body near the early warning cavity. A speaker is located at the center of the top surface of the hard drive body away from the fingerprint panel. Early warning lights are symmetrically arranged on both sides of the speaker and are fixed to the top surface of the hard drive body. The balancing gyroscope inside the hard drive body is used to determine the stability of the hard drive body's movement. Successful fingerprint recognition via the fingerprint panel allows for the insertion / removal of the information receiving end. If recognition fails or if fingerprint recognition is used for insertion / removal, the speaker and indicator lights issue an early warning, effectively preventing theft and loss of the hard drive body and increasing its security.

[0004] In the aforementioned patent, the information receiver can be plugged in or unplugged after successful fingerprint recognition via the fingerprint panel. If recognition fails or the fingerprint is used for plugging or unplugging, the speaker and indicator light will issue a warning, effectively preventing the theft of the hard drive and increasing its security. However, after the network integration device is connected, it will stick to other electronic devices, causing heat dissipation problems for both the network integration device and the electronic devices. At the same time, after the network integration device is unplugged, it is impossible to know the connection status of the network integration device in a timely manner, making it impossible to know the safe use of the network integration device. Summary of the Invention

[0005] To address the shortcomings of existing technologies, this invention provides a network integrated working device for information encryption and loss prevention, thus solving the problems mentioned in the background section.

[0006] To achieve the above objectives, the present invention provides the following technical solution: a network integrated working device for information encryption and loss prevention, comprising a device body, a protective device, and a supporting device. The device body is electrically connected to a plug via a wire. A connecting rod is fixedly installed on the top of the plug. The connecting rod is slidably installed on the top of the device body. A fan is installed inside the device body. The protective device includes a contact rod, a moving plate, a locking block, a horizontal plate, a telescopic plate, a plug plate, a concave block, a bending rod, a filter plate, and an impact rod. When the horizontal plate moves downward, it drives the bending rod downward. When the bending rod moves downward, its inclined surface pushes the impact rod towards the fan. The contact rod is slidably installed on the top of the plug. The moving plate... The device is mounted on the surface of the connecting rod, the locking block is slidably mounted on the surface of the moving plate, the horizontal plate is slidably mounted on the surface of the device body, the telescopic plate is fixedly mounted on the surface of the horizontal plate, the free end of the telescopic plate is slidably connected to the connecting rod, the insert plate is fixedly mounted at the bottom of the free end of the telescopic plate, the concave block is fixedly mounted on the top of the moving plate, the surface of the concave block has a groove, the bending rod slides through the horizontal plate, the filter plate is fixedly mounted on the surface of the device body, the impact rod slides through the filter plate, the top of the contact rod has a notch, the bending rod will push the impact rod to move towards the fan, when the fan rotates the impact rod generates noise, thereby indicating that the plug is about to be detached from the socket, preventing theft and loss of information inside the device body.

[0007] According to the above technical solution, a first spring is provided between the contact rod and the plug, which will drive the contact rod to reset. A second spring is provided between the moving plate and the connecting rod, which will drive the moving plate to reset. A third spring is provided between the locking block and the moving plate, which will drive the locking block to reset. A fourth spring is provided between the horizontal plate and the device body. A fifth spring is provided between the bending rod and the horizontal plate. A sixth spring is provided between the impact rod and the filter plate.

[0008] According to the above technical solution, the support device includes a movable rod, a support rod, a concave frame, a rotating wheel, an arc-shaped block, a push rod, a hollow frame, a pressing plate, a limiting block, an inclined plate, and a pressing plate. The movable rod is slidably installed at the bottom of the device body. The support rod is hinged to the bottom of the movable rod. The concave frame is hinged to the bottom of the support rod. The rotating wheel is rotatably installed inside the concave frame. The arc-shaped block is fixedly installed on the surface of the rotating wheel. The push rod is slidably installed on the surface of the concave frame. The hollow frame is fixedly installed on the surface of the plug. The pressing plate is slidably installed inside the hollow frame. The pressing plate and the hollow frame are... A return spring is provided. When the pressing plate moves, it contacts the triangular groove, causing the pressing plate to push the limiting block downward. The surface of the extrusion plate has a limiting groove. When the limiting block moves downward, it disengages from the limiting groove of the extrusion plate. Under the action of the return spring, the extrusion plate is pushed towards the socket. The limiting block slides through the bottom of the hollow frame. The inclined plate is fixedly installed on the top of the push rod. The pressing plate is slidably installed on the bottom of the plug. The surface of the limiting block has a triangular groove. The extrusion plate pushes the plug away from the socket, preventing the plug from being crushed on the socket when the device body is squeezed.

[0009] According to the above technical solution, a No. 7 spring is provided between the movable rod and the device body, a No. 1 torsion spring is provided between the support rod and the movable rod, a No. 2 torsion spring is provided between the concave frame and the support rod, a spiral spring is provided between the rotating wheel and the concave frame, a No. 8 spring is provided between the pushing rod and the concave frame, a No. 9 spring is provided between the limiting block and the hollow frame, and a telescopic rod is fixedly installed between the plug and the concave frame, which can improve the stability of the concave frame and the plug.

[0010] According to the above technical solution, it also includes a deceleration device and a protective device. The deceleration device is provided inside the hollow frame. The deceleration device includes a sealing frame and a convex rod. When the extrusion plate moves, it will contact the convex rod, so that the extrusion plate will push the convex rod to move. The sealing frame is fixedly installed inside the hollow frame. The convex rod slides through the sealing frame. The sealing frame is provided with a non-Newtonian fluid. When the non-Newtonian fluid is impacted, it will solidify instantly. At the same time, the slow flow of the non-Newtonian fluid will restrict the convex rod to move slowly, thereby reducing the speed at which the plug is detached from the socket and preventing damage to the plug from excessively fast detachment.

[0011] According to the above technical solution, a support frame is rotatably installed at the bottom of the movable rod, and a No. 3 torsion spring is provided between the support frame and the movable rod. An L-shaped rod slides through the surface of the support rod, and a triangular block is fixedly installed at the top of the L-shaped rod. A transmission rod is fixedly installed on the surface of the convex rod. When the transmission rod moves, it will push the triangular block and the L-shaped rod to move. When the L-shaped rod moves, it will release the limit on the support frame. The support frame can play a buffering support role for the device body, preventing the device body from falling directly and causing damage.

[0012] According to the above technical solution, the protective device includes a mounting plate and a T-shaped plate. The mounting plate is slidably mounted on the top of the device body. A spring is provided between the mounting plate and the device body. The T-shaped plate slides through the top of the mounting plate. A slot is provided on the top of the connecting rod. Pulling the T-shaped plate upward will disengage the T-shaped plate from the slot on the connecting rod, thereby releasing the restriction on the device body. The distance between the device body and the plug can be adjusted to facilitate the use of the device body.

[0013] According to the above technical solution, a Z-shaped rod is fixedly installed on the surface of the mounting plate, and an inclined rod is fixedly installed on the surface of the Z-shaped rod. When the bent rod moves, it will contact the inclined surface of the inclined rod, causing the inclined surface of the inclined rod to push the bent rod downward. The impact rod will collide with the fan to generate noise and prevent further pulling of the device body.

[0014] This invention provides a network integrated working device for information encryption and loss prevention. It has the following beneficial effects:

[0015] (1) This network integrated working device with information encryption to prevent loss, after the plug is connected, can support the device body through the connecting rod, so as to avoid the device body sticking to other devices and affecting the heat dissipation of the device body and other devices. At the same time, after the plug is disconnected from the socket, the socket will not be able to push the contact rod. The contact rod will move away from the plug, so that the contact rod will push the locking block and the moving plate to move. When the moving plate moves, it will drive the concave block to move, so that the plug plate will insert into the groove and drive the telescopic plate to move downward. When the telescopic plate moves downward, it will drive the horizontal plate and the bending rod to move downward. The bending rod will push the impact rod to move towards the fan. When the fan rotates, the impact rod will generate noise, which can indicate that the plug is about to be disconnected from the socket.

[0016] (2) This network integration work device with information encryption and anti-loss features a movable rod, a support rod, and a concave frame that can support the device body, preventing the weight of the device body from being entirely applied to the connection position between the plug and the socket. When the device body is pressed, it will push the rotating wheel to rotate on the device. The rotating wheel will push the arc block to move the push rod upward. When the push rod moves upward, the inclined plate will push the pressing plate to move into the triangular groove of the limiting rod and push the limiting rod downward. The downward movement of the limiting rod will release the limiting of the pressing plate. Under the action of the return spring, the pressing plate moves towards the device, causing the pressing plate to push the plug to detach from the socket, preventing the plug from being crushed on the socket when the device body is pressed.

[0017] (3) The network integrated working device for information encryption and anti-loss, when the extrusion plate moves, it will move into the interior of the sealing frame with the convex rod. The convex rod will squeeze the non-Newtonian fluid inside the sealing frame, so that the convex rod will reduce the moving speed of the extrusion plate, thereby reducing the speed at which the plug is detached from the socket, preventing damage to the plug due to excessive detachment speed. At the same time, the L-shaped rod will release the limit on the support frame, so that the support frame can play a buffer support effect on the device body, preventing the device body from falling directly and causing damage.

[0018] (4) This network integrated working device with information encryption and anti-loss features a T-shaped plate that can be connected to a rod for limiting, thereby adjusting the distance between the plug and the device body. At the same time, when the device body is directly pulled, the mounting plate and spring can buffer the device body, causing the tilting rod to push the bending rod downward and push the impact rod to move. The impact rod will collide with the fan to generate noise and prevent further pulling of the device body. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0020] Figure 2 For the present invention Figure 1 Enlarged schematic diagram of section A in the middle;

[0021] Figure 3 This is a schematic diagram of the cross-sectional structure of the device body of the present invention;

[0022] Figure 4 This is a schematic diagram of the internal structure of the hollow frame of the present invention;

[0023] Figure 5 This is a schematic diagram showing the position and structure of the device body and the movable rod of the present invention;

[0024] Figure 6 For the present invention Figure 4 Enlarged schematic diagram of section B;

[0025] Figure 7 This is a schematic diagram showing the position and structure of the hollow frame and extrusion plate of the present invention;

[0026] Figure 8 For the present invention Figure 4 Enlarged schematic diagram of section C in the middle;

[0027] Figure 9 This is a schematic diagram showing the position and structure of the mounting plate and T-shaped plate of the present invention.

[0028] In the diagram: 1. Device body; 2. Connecting rod; 3. Plug; 4. Fan; 51. Contact rod; 52. Moving plate; 53. Locking block; 54. Horizontal plate; 55. Telescopic plate; 56. Insert plate; 57. Concave block; 58. Bending rod; 59. Filter plate; 510. Impact rod; 61. Movable rod; 62. Support rod; 63. Concave frame; 64. Rotating wheel; 65. Arc block; 66. Push rod; 67. Hollow frame; 68. Extrusion plate; 69. Limiting block; 610. Inclined plate; 611. Pressing plate; 71. Sealing frame; 72. Convex rod; 73. Transmission rod; 74. Support frame; 75. L-shaped rod; 76. Triangular block; 81. Mounting plate; 82. T-shaped plate; 83. Z-shaped rod; 84. Inclined rod. Detailed Implementation

[0029] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0030] Please see Figure 1-7One embodiment of the present invention is: a network integrated working device for information encryption and loss prevention, including a device body 1, a protective device, and a supporting device. The device body 1 is electrically connected to a plug 3 via a wire. A connecting rod 2 is fixedly installed on the top of the plug 3 and slidably installed on the top of the device body 1. A fan 4 is installed inside the device body 1. The protective device includes a contact rod 51, a moving plate 52, a locking block 53, a horizontal plate 54, a telescopic plate 55, an insert plate 56, a concave block 57, a bending rod 58, a filter plate 59, and an impact rod 510. When the moving plate 52 moves, it drives the concave block 57 to move. The horizontal plate 54, the telescopic plate 55, and the insert plate 56 move downwards, and the insert plate 56 inserts into the recess. When the horizontal plate 54 moves downwards, it drives the bending rod 58 downwards. When the bending rod 58 moves downwards, its inclined surface pushes the impact rod 510 towards the fan 4. The contact rod 51 is slidably mounted on the top of the plug 3, the moving plate 52 is slidably mounted on the surface of the connecting rod 2, the locking block 53 is slidably mounted on the surface of the moving plate 52, the horizontal plate 54 is slidably mounted on the surface of the device body 1, the telescopic plate 55 is fixedly mounted on the surface of the horizontal plate 54, the free end of the telescopic plate 55 is slidably connected to the connecting rod 2, the insert plate 56 is fixedly mounted on the bottom of the free end of the telescopic plate 55, the concave block 57 is fixedly mounted on the top of the moving plate 52, the surface of the concave block 57 has a groove, the bending rod 58 slides through the horizontal plate 54, the filter plate 59 is fixedly mounted on the surface of the device body 1, the impact rod 510 slides through the filter plate 59, the top of the contact rod 51 has a notch, the bending rod 58 will push the impact rod 510 to move towards the fan 4, when the fan 4 rotates the impact rod 510 generates noise, which can indicate that the plug 3 is about to be detached from the socket, preventing theft and loss of information inside the device body 1.

[0031] A first spring is installed between the contact rod 51 and the plug 3, which will drive the contact rod 51 to reset. A second spring is installed between the moving plate 52 and the connecting rod 2, which will drive the moving plate 52 to reset. A third spring is installed between the locking block 53 and the moving plate 52, which will drive the locking block 53 to reset. A fourth spring is installed between the horizontal plate 54 and the device body 1. A fifth spring is installed between the bending rod 58 and the horizontal plate 54. A sixth spring is installed between the impact rod 510 and the filter plate 59.

[0032] The support device includes a movable rod 61, a support rod 62, a concave frame 63, a rotating wheel 64, an arc-shaped block 65, a push rod 66, a hollow frame 67, a pressing plate 68, a limiting block 69, an inclined plate 610, and a pressing plate 611. The movable rod 61 is slidably mounted on the bottom of the device body 1. The support rod 62 is hinged to the bottom of the movable rod 61. The concave frame 63 is hinged to the bottom of the support rod 62. The rotating wheel 64 is rotatably mounted inside the concave frame 63. The arc-shaped block 65 is fixedly mounted on the surface of the rotating wheel 64. The push rod 66 is slidably mounted on the surface of the concave frame 63. The hollow frame 67 is fixedly mounted on the surface of the plug 3. The pressing plate 68 is slidably mounted inside the hollow frame 67. A return spring is provided between the pressing plate 68 and the hollow frame 67. The inclined plate 610... When the inclined plate 610 moves upward, the inclined surface of the inclined plate 610 will push the pressing plate 611 to move. When the pressing plate 611 moves, it will contact the triangular groove, which will push the limiting block 69 to move downward. The surface of the pressing plate 68 has a limiting groove. When the limiting block 69 moves downward, it will disengage from the limiting groove of the pressing plate 68. Under the action of the return spring, the pressing plate 68 will be pushed to move towards the socket. The limiting block 69 slides through the bottom of the hollow frame 67. The inclined plate 610 is fixedly installed on the top of the push rod 66. The pressing plate 611 is slidably installed on the bottom of the plug 3. The surface of the limiting block 69 has a triangular groove. The pressing plate 68 will push the plug 3 to disengage from the socket, so as to prevent the plug 3 from being crushed on the socket when the device body 1 is squeezed.

[0033] A No. 7 spring is installed between the movable rod 61 and the device body 1; a No. 1 torsion spring is installed between the support rod 62 and the movable rod 61; a No. 2 torsion spring is installed between the concave frame 63 and the support rod 62; a spiral spring is installed between the rotating wheel 64 and the concave frame 63; a No. 8 spring is installed between the push rod 66 and the concave frame 63; a No. 9 spring is installed between the limit block 69 and the hollow frame 67; and a telescopic rod is fixedly installed between the plug 3 and the concave frame 63 to improve the stability of the concave frame 63 and the plug 3.

[0034] In this embodiment, when the plug 3 is inserted into the socket of the device, the movement of the plug 3 towards the socket will cause the contact rod 51 to move towards the socket. When the contact rod 51 contacts the socket, under the action of the opposite force, it will push the contact rod 51 towards the locking block 53. When the contact rod 51 contacts the inclined surface of the locking block 53, it will push the locking block 53 upward. As the contact rod 51 continues to move, under the action of the No. 3 spring, it will push the locking block 53 into the notch, thereby connecting the contact rod 51 and the locking block 53 together. If the plug 3 is pulled off the socket without disengaging the contact rod 51 and the locking block 53, the socket will not be able to hold the plug. When the contact rod 51 moves, it will be driven to move away from the locking block 53 under the action of the first spring. When the contact rod 51 moves, it will drive the locking block 53 and the moving plate 52 to move. When the moving plate 52 moves, it will drive the concave block 57 to move. When the concave block 57 moves, it will drive the horizontal plate 54, the telescopic plate 55 and the insert plate 56 to move downward under the action of the fifth spring. The insert plate 56 will be inserted into the groove. When the horizontal plate 54 moves downward, it will drive the bending rod 58 to move downward. When the bending rod 58 moves downward, the inclined surface of the bending rod 58 will push the impact rod 510 to move towards the fan 4. When the fan 4 is working, it will hit the impact rod 510 and generate noise.

[0035] The concave frame 63, when attached to the equipment, supports the device body 1 via the movable rod 61 and the support rod 62. When the device body 1 is compressed, it causes the movable rod 61, the support rod 62, and the concave frame 63 to move downwards. The downward movement of the concave frame 63 causes the rotating wheel 64 to rotate on the equipment. The rotation of the rotating wheel 64 causes the arc-shaped block 65 to rotate. As the arc-shaped block 65 rotates, its curved surface pushes the push rod 66 upwards. The upward movement of the push rod 66... When the inclined plate 610 moves upward, the inclined surface of the inclined plate 610 will push the pressing plate 611 to move. When the pressing plate 611 moves, it will contact the triangular groove, which will push the limiting block 69 to move downward. When the limiting block 69 moves downward, it will disengage from the limiting groove of the pressing plate 68. Under the action of the return spring, it will push the pressing plate 68 to move towards the socket. When the pressing plate 68 contacts the socket, it will push the plug 3 to disengage from the socket through the reverse force.

[0036] Please see Figure 1-9Based on the above embodiments, another embodiment of the present invention further includes a deceleration device and a protective device. The deceleration device is provided inside the hollow frame 67. The deceleration device includes a sealing frame 71 and a convex rod 72. When the extrusion plate 68 moves, it will contact the convex rod 72, so that the extrusion plate 68 will push the convex rod 72 to move. The sealing frame 71 is fixedly installed inside the hollow frame 67. The convex rod 72 slides through the sealing frame 71. The sealing frame 71 is provided with a non-Newtonian fluid. When the non-Newtonian fluid is impacted, it will solidify instantly. At the same time, the slow flow of the non-Newtonian fluid will restrict the convex rod 72 to move slowly, thereby reducing the speed at which the plug 3 is detached from the socket and preventing damage to the plug 3 due to excessively fast detachment.

[0037] A support frame 74 is rotatably mounted at the bottom of the movable rod 61. A torsion spring No. 3 is provided between the support frame 74 and the movable rod 61. An L-shaped rod 75 slides through the surface of the support rod 62. A triangular block 76 is fixedly mounted on the top of the L-shaped rod 75. A transmission rod 73 is fixedly mounted on the surface of the convex rod 72. When the transmission rod 73 moves, it will push the triangular block 76 and the L-shaped rod 75 to move. When the L-shaped rod 75 moves, it will release the limit on the support frame 74. The support frame 74 can provide a buffer support for the device body 1, preventing the device body 1 from falling directly and causing damage.

[0038] The protective device includes a mounting plate 81 and a T-shaped plate 82. The mounting plate 81 is slidably mounted on the top of the device body 1. A spring is provided between the mounting plate 81 and the device body 1. The T-shaped plate 82 slides through the top of the mounting plate 81. A slot is provided on the top of the connecting rod 2. Pulling the T-shaped plate 82 upward will disengage the T-shaped plate 82 from the slot on the connecting rod 2, thereby releasing the restriction on the device body 1. The distance between the device body 1 and the plug 3 can be adjusted to facilitate the use of the device body 1.

[0039] A Z-shaped rod 83 is fixedly installed on the surface of the mounting plate 81, and an inclined rod 84 is fixedly installed on the surface of the Z-shaped rod 83. When the device body 1 moves, it will drive the horizontal plate 54 and the curved rod 58 to move. When the curved rod 58 moves, it will contact the inclined surface of the inclined rod 84, causing the inclined surface of the inclined rod 84 to push the curved rod 58 downward. The impact rod 510 will collide with the fan 4 to generate noise to prevent further pulling of the device body 1.

[0040] In this embodiment, when the extrusion plate 68 moves, it will contact the convex rod 72, causing the extrusion plate 68 to push the convex rod 72 to move. When the convex rod 72 moves, it will extrude non-Newtonian fluid inside the sealing frame 71. The non-Newtonian fluid inside the sealing frame 71 will restrict the rapid movement of the extrusion plate 68 and the convex rod 72, causing the extrusion plate 68 to move slowly after contacting the socket. When the convex rod 72 moves, it will drive the transmission rod 73 to move. When the transmission rod 73 moves, it will push the triangular block 76 and the L-shaped rod 75 to move. When the L-shaped rod 75 moves, it will release the limit on the support frame 74. Under the action of the third torsion spring, the support frame 74 will rotate to the left, so that the support frame 74 can support the fallen device body 1.

[0041] When plug 3 is inserted into the socket, pulling T-shaped plate 82 upward will disengage it from the slot on connecting rod 2, thereby releasing the restriction on device body 1 and allowing adjustment of the distance between device body 1 and plug 3. Pushing T-shaped plate 82 downward will insert it into the slot and restrict device body 1. When device body 1 is forcibly pulled, the spring sheet will cushion the movement. Simultaneously, the movement of device body 1 will move horizontal plate 54 and bending rod 58. When bending rod 58 moves, it will contact the inclined surface of tilting rod 84, causing the inclined surface of tilting rod 84 to push bending rod 58 downward. When bending rod 58 moves downward, the inclined surface of bending rod 58 will push impact rod 510 towards fan 4. When fan 4 is working, it will impact impact rod 510, generating noise.

[0042] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A network integrated working device for information encryption and loss prevention, comprising a device body (1), characterized in that: It also includes protective devices, support devices, and guard devices; The device body (1) is electrically connected to a plug (3) via a wire. A connecting rod (2) is fixedly installed on the top of the plug (3). The connecting rod (2) is slidably installed on the top of the device body (1). A fan (4) is installed inside the device body (1). The protective device includes a contact rod (51), a movable plate (52), a locking block (53), a horizontal plate (54), a telescopic plate (55), a plug plate (56), a concave block (57), a bending rod (58), a filter plate (59), and an impact rod (510). The contact rod (51) is slidably mounted on the top of the plug (3), the movable plate (52) is slidably mounted on the surface of the connecting rod (2), the locking block (53) is slidably mounted on the surface of the movable plate (52), the horizontal plate (54) is slidably mounted on the surface of the device body (1), and the telescopic plate (55) is... The telescopic plate (55) is fixedly installed on the surface of the horizontal plate (54). The free end of the telescopic plate (55) is slidably connected to the connecting rod (2). The insert plate (56) is fixedly installed at the bottom of the free end of the telescopic plate (55). The concave block (57) is fixedly installed on the top of the moving plate (52). The surface of the concave block (57) is provided with a groove. The bending rod (58) slides through the horizontal plate (54). The filter plate (59) is fixedly installed on the surface of the device body (1). The impact rod (510) slides through the filter plate (59). The top of the contact rod (51) is provided with a notch.

2. The network integration working device for information encryption and loss prevention according to claim 1, characterized in that: A first spring is provided between the contact rod (51) and the plug (3), a second spring is provided between the moving plate (52) and the connecting rod (2), a third spring is provided between the locking block (53) and the moving plate (52), a fourth spring is provided between the horizontal plate (54) and the device body (1), a fifth spring is provided between the bending rod (58) and the horizontal plate (54), and a sixth spring is provided between the impact rod (510) and the filter plate (59).

3. The network integrated working device for information encryption and loss prevention according to claim 2, characterized in that: The support device includes a movable rod (61), a support rod (62), a concave frame (63), a rotating wheel (64), an arc-shaped block (65), a push rod (66), a hollow frame (67), a pressing plate (68), a limiting block (69), an inclined plate (610), and a pressing plate (611). The movable rod (61) is slidably mounted on the bottom of the device body (1). The support rod (62) is hinged to the bottom of the movable rod (61). The concave frame (63) is hinged to the bottom of the support rod (62). The rotating wheel (64) is rotatably mounted inside the concave frame (63). The arc-shaped block (65) is fixedly mounted on the rotating wheel (64). On the surface, the push rod (66) is slidably mounted on the surface of the concave frame (63), the hollow frame (67) is fixedly mounted on the surface of the plug (3), the extrusion plate (68) is slidably mounted inside the hollow frame (67), a return spring is provided between the extrusion plate (68) and the hollow frame (67), a limit groove is opened on the surface of the extrusion plate (68), the limit block (69) slides through the bottom of the hollow frame (67), the tilt plate (610) is fixedly mounted on the top of the push rod (66), the pressing plate (611) is slidably mounted on the bottom of the plug (3), and a triangular groove is opened on the surface of the limit block (69).

4. The network integrated working device for information encryption and loss prevention according to claim 3, characterized in that: A No. 7 spring is provided between the movable rod (61) and the device body (1), a No. 1 torsion spring is provided between the support rod (62) and the movable rod (61), a No. 2 torsion spring is provided between the concave frame (63) and the support rod (62), a spiral spring is provided between the rotating wheel (64) and the concave frame (63), a No. 8 spring is provided between the push rod (66) and the concave frame (63), a No. 9 spring is provided between the limiting block (69) and the hollow frame (67), and a telescopic rod is fixedly installed between the plug (3) and the concave frame (63).

5. The network integrated working device for information encryption and loss prevention according to claim 4, characterized in that: The hollow frame (67) is provided with a deceleration device, which includes a sealing frame (71) and a convex rod (72). The sealing frame (71) is fixedly installed inside the hollow frame (67), and the convex rod (72) slides through the sealing frame (71). The sealing frame (71) is provided with a non-Newtonian fluid.

6. The network integration working device for information encryption and loss prevention according to claim 5, characterized in that: A support frame (74) is rotatably mounted at the bottom of the movable rod (61). A No. 3 torsion spring is provided between the support frame (74) and the movable rod (61). An L-shaped rod (75) slides through the surface of the support rod (62). A triangular block (76) is fixedly mounted on the top of the L-shaped rod (75). A transmission rod (73) is fixedly mounted on the surface of the convex rod (72).

7. The network integrated working device for information encryption and loss prevention according to claim 6, characterized in that: The protective device includes a mounting plate (81) and a T-shaped plate (82). The mounting plate (81) is slidably mounted on the top of the device body (1). A spring is provided between the mounting plate (81) and the device body (1). The T-shaped plate (82) slides through the top of the mounting plate (81). A slot is provided on the top of the connecting rod (2).

8. The network integrated working device for information encryption and loss prevention according to claim 7, characterized in that: A Z-shaped rod (83) is fixedly installed on the surface of the mounting plate (81), and an inclined rod (84) is fixedly installed on the surface of the Z-shaped rod (83).

Citation Information

Patent Citations

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    CN215910897U