Computer power-off protection device based on artificial intelligence information security
By introducing installation mechanism and heat dissipation mechanism into the computer power-off protection device, the power reduction problem caused by the backup battery bulge is solved, and the battery is automatically replaced and heat dissipated, ensuring the stable operation of the computer.
Patent Information
- Application Number
- CN202510587673.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-08
- Publication Date
- 2025-08-08
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In existing computer power-off protection devices, backup batteries may become bulging after a long time of use, resulting in a decrease in power, unable to maintain the normal operation of the computer or cannot be used for a long time.
A computer power outage protection device based on artificial intelligence is designed to automatically replace and dissipate spare batteries through the installation mechanism and the heat dissipation mechanism to ensure power supply and equipment safety.
In the event of power outage, the backup battery can be continuously powered and automatically replaced and dissipated when bulging to prevent damage to the equipment and ensure the normal operation of the computer.
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Figure CN120447719A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of power-off protection devices, and in particular to a computer power-off protection device based on artificial intelligence information security. Background Art
[0002] A computer is a modern electronic computing machine used for high-speed calculations. It can perform numerical and logical calculations and has storage and memory functions. It is a modern intelligent electronic device that can run according to programs and automatically and quickly process massive amounts of data. In the field of artificial intelligence, computers are indispensable devices that store large amounts of data. In order to prevent accidental power outages from causing computer data information to be unable to be stored in time, an external UPS power supply is usually installed outside the computer for protection.
[0003] For example, the Chinese patent with announcement number CN116166110B discloses a computer power-off protection device based on artificial intelligence information security, including a chassis, the outer wall of the chassis is provided with multiple heat dissipation holes, and multiple electronic accessories are arranged inside the chassis, a power port is provided on the lower outer wall of one side of the chassis, and a computer power supply and a backup power supply are respectively provided on the inner wall of the bottom side of the chassis, a plug-in board is fixedly connected to the inner wall of one side of the bottom of the chassis, and the plug-in board and the computer power supply are both connected to the power port through wires.
[0004] However, the above solution has the following shortcomings: in the above patent, when an external power outage occurs, the backup power supply can power the computer, and the heat generated on the surface of the backup power supply will be transferred to the sliding groove 2 of the connecting plate by multiple heat pipes, thereby pushing the plug between the two connecting plates to move, so that the plug is inserted into the plug board on one side, so that when the power is restored, the backup power supply can be automatically charged. However, when the backup battery is placed or charged and discharged for a long time, the backup battery may swell, and the amount of electricity stored in the backup battery will be greatly reduced. When a sudden power outage causes the backup battery to start, the amount of electricity in the swollen backup battery may not be able to maintain the normal operation of the computer, or it may not be able to be used for a long time. For this reason, we have introduced a computer power-off protection device based on artificial intelligence information security. Summary of the Invention
[0005] In view of the deficiencies in the prior art, the present invention provides a computer power-off protection device based on artificial intelligence information security to solve the problems raised in the above background technology.
[0006] The object of the present invention is achieved as follows: A computer power-off protection device based on artificial intelligence information security includes a computer case, a processing host and a plurality of electronic accessories are arranged in the computer case, a first connecting cavity is opened in the lower end of the computer case, a mounting mechanism is arranged in the first connecting cavity, one end of the mounting mechanism is fixedly connected to the output end of the electric push rod, the electric push rod is fixedly installed in the computer case, one end of the first connecting cavity is fixedly connected to a charging plug, a power detector is provided on one side of the mounting mechanism, the mounting mechanism is connected to a heat dissipation mechanism, the heat dissipation mechanism is arranged in the computer case, a plurality of backup battery mounting mechanisms are arranged in the mounting mechanism, a backup battery is installed in the backup battery mounting mechanism, and when a power outage occurs, the backup battery continues to supply power; The lower end of the first connecting cavity is communicated with the storage cavity, and the storage cavity is opened in the computer case. Two movable plates are provided on the lower side of the mounting mechanism, and the movable plates are movably connected to the first connecting cavity. Both ends of the movable plates are sleeved with torsion springs, and both ends of the torsion springs are fixedly connected to the computer case. Several heat dissipation nets are fixedly connected to the outside of the computer case. Two second connecting cavities are opened in the computer case, and one side of the second connecting cavity and the storage cavity extends to the external environment. A movable door is provided on one side of the storage cavity and the two second connecting cavities, and the movable door is movably connected to the outside of the computer case.
[0007] Preferably, the mounting mechanism includes a connecting plate, two mounting cavities are provided in the upper end of the connecting plate, two sliding grooves are provided in both ends of the mounting cavity, and a number of U-shaped heat conducting plates are fixedly connected to both ends of the mounting cavity, and a number of the U-shaped heat conducting plates are fixedly connected to the U-shaped connecting plate at one end away from the mounting cavity, the upper and lower ends of the U-shaped connecting plate are fixedly connected to sliding plates, and the upper end of the connecting plate is fixedly connected to two telescopic wires.
[0008] Preferably, a special-shaped plate is provided in the sliding groove, the special-shaped plate is slidably connected to the guide cavity, the guide cavity is opened in the connecting plate, a plurality of support springs are fixedly connected in the guide cavity, the other end of the support spring is fixedly connected to the special-shaped plate, and the special-shaped plate extends into the installation cavity away from one end of the sliding groove.
[0009] Preferably, a plug-in slot is provided in one side of the installation cavity, conductive springs are fixedly connected to both sides of the plug-in slot, the power detector is fixedly connected to one side of the connecting plate, and a socket is fixedly connected to one end of the connecting plate.
[0010] Preferably, the heat dissipation mechanism includes two heat conducting plates, which are fixedly connected in the first connecting cavity. Several heat dissipation plates are fixedly connected to one side of the heat conducting plate. The heat dissipation plate passes through the ventilation cavity and the computer case in sequence at one end away from the heat conducting plate and extends into the external environment. The ventilation cavity is opened in the computer case, and a fan is fixedly connected in the ventilation cavity.
[0011] Preferably, the U-shaped connecting plate is slidably connected to the outer side of the heat conducting plate, one side of the sliding plate is slidably connected to a sliding groove, and the sliding groove is provided in the first connecting cavity.
[0012] Preferably, the backup battery installation mechanism includes an installation box, both ends of the installation box are fixedly connected with connecting blocks, the connecting block is provided with a plurality of connecting grooves on the side away from the installation box, both ends of the installation box are fixedly connected with two sliding rods, the sliding rods are slid into the sliding grooves, a clamping plate is provided on the inside of the installation box, both ends of the clamping plate are fixedly connected with two cross-shaped sliding rods, the cross-shaped sliding rods are slid into the cross-shaped slide groove, the cross-shaped slide groove is opened in the installation box, a first connecting spring is fixedly connected in the cross-shaped slide groove, the upper end of the first connecting spring is fixedly connected to the cross-shaped sliding rod, a press switch is fixedly connected in the cross-shaped slide groove, and a plug is fixedly connected to one side of the installation box.
[0013] Preferably, a limiting rod is provided on the upper side of the clamping plate, and the limiting rod is slidably connected to the limiting groove. The limiting groove is opened on the inner side of the installation box, and several second connecting springs are fixedly connected in the limiting groove. The other end of the second connecting spring is fixedly connected to the limiting rod.
[0014] Preferably, the U-shaped heat conducting sheet is slidably connected to the connecting groove, and the plug is inserted into the plug-in through groove, with both sides of the plug in contact with the conductive spring sheet respectively.
[0015] Compared with the prior art, the beneficial effect of the present invention is that: several backup battery mounting mechanisms can be installed through the mounting mechanism, and each backup battery mounting mechanism is installed with a backup battery. When a power outage occurs, several backup batteries can simultaneously supply power to the computer. At the same time, when the battery becomes swollen, the backup battery mounting mechanism installed with the swollen battery will detach from the mounting mechanism and fall into the storage cavity for storage. At the same time, a signal will be sent to the mobile terminal, and the operator can install a new backup battery after receiving the information. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are merely embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on the provided drawings without paying any creative work.
[0017] Figure 1 It is a schematic diagram of the cross-sectional structure of the present invention.
[0018] Figure 2 It is a schematic diagram of the top-sectional structure of the present invention.
[0019] Figure 3 This is a schematic cross-sectional structural diagram of the connection relationship between the connecting plate and the installation box of the present invention.
[0020] Figure 4 This is a schematic cross-sectional structural diagram of the connection relationship between the cross-shaped sliding rod and the cross-shaped sliding groove of the present invention.
[0021] Figure 5 This is a schematic diagram of the three-dimensional structure of the installation box of the present invention in the installed state.
[0022] Figure 6 It is a schematic diagram of the three-dimensional structure of the connecting plate of the present invention.
[0023] Figure 7 It is a schematic diagram of the three-dimensional structure of the installation box of the present invention.
[0024] Figure 8 It is a three-dimensional structural diagram of the position relationship between the limit rod and the clamping plate of the present invention.
[0025] Figure 9 It is a schematic diagram of the three-dimensional structure of the special-shaped rod and the guide cavity in the separated state of the present invention.
[0026] Figure 10 This is a schematic diagram of the three-dimensional structure of the special-shaped rod in the installation state of the present invention.
[0027] Figure 11 This is a schematic diagram of the three-dimensional structure of the backup battery of the present invention in the installed state.
[0028] Figure 12 It is a schematic diagram of the main structure of the present invention.
[0029] Figure: 1. Computer case; 2. First connecting cavity; 3. Torsion spring; 4. Movable plate; 5. Cross-shaped slide bar; 6. Storage cavity; 7. Electric push rod; 8. Second connecting cavity; 9. Electronic accessories; 10. Heat dissipation net; 11. Telescopic wire; 12. Movable door; 13. Fan; 14. Charging plug; 15. Connecting plate; 16. Ventilation cavity; 17. Electricity detector; 18. Mounting cavity; 19. Clamping plate; 20. Heat dissipation plate; 21. Heat conducting plate; 22. Socket; 23. Plug; 24. , limit groove; 25, limit rod; 26, second connecting spring; 27, installation box; 28, connecting block; 29, connecting groove; 30, slide rod; 31, sliding groove; 32, special-shaped plate; 33, cross-shaped slide groove; 34, press switch; 35, first connecting spring; 36, sliding plate; 37, U-shaped connecting plate; 38, plug-in slot; 39, U-shaped heat conductive plate; 40, spare battery; 41, conductive spring; 42, guide cavity; 43, support spring; 44, slide groove; 45, processing host. DETAILED DESCRIPTION
[0030] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0031] like Figures 1 to 12 As shown, the present invention provides a technical solution: Example 1: A computer power-off protection device based on artificial intelligence information security includes a computer case 1, wherein a processing host 45 and several electronic accessories 9 are provided in the computer case 1, the processing host 45 includes a control module and a communication module, when the battery falls into the storage chamber 6 due to swelling, the press switch 34 will be unpressed, and at the same time, after receiving the signal, the control module will send a signal to the mobile terminal through the communication module. After the operator sees the signal, the new backup battery can be replaced, a first connecting cavity 2 is opened in the lower end of the computer case 1, a mounting mechanism is provided in the first connecting cavity 2, one end of the mounting mechanism is fixedly connected to the output end of the electric push rod 7, the electric push rod 7 is fixedly installed in the computer case 1, and the mounting mechanism is moved by starting the electric push rod 7. When in use, the electric push rod 7 can be selected with a suitable size and model according to the specific situation, a charging plug 14 is fixedly connected to one end of the first connecting cavity 2, and a power detector 17 is provided on one side of the mounting mechanism, and the power detector 17 is used to monitor the power in the backup battery 40 in real time; The charging plug 14 is connected to an external cable. When the power is off, the backup battery is charged through the charging plug 14. The mounting mechanism is connected to the heat dissipation mechanism. The heat dissipation mechanism is arranged in the computer case 1. The mounting mechanism is provided with a plurality of backup battery mounting mechanisms. The backup battery 40 is installed in the backup battery mounting mechanism. When a power outage occurs, the backup battery 40 continues to supply power. At the same time, the heat dissipation mechanism can dissipate heat from the backup battery 40 in the backup battery mounting mechanism to prevent the backup battery 40 from being damaged due to the internal heat of the backup battery 40 not being dissipated after startup. The lower end of the first connecting chamber 2 is communicated with the storage chamber 6, which is opened in the computer case 1. The storage chamber 6 is used to store the dropped backup battery 40. Two movable plates 4 are provided on the lower side of the mounting mechanism. The movable plates 4 are movably connected to the first connecting chamber 2. Both ends of the movable plates 4 are sleeved with torsion springs 3. Both ends of the torsion springs 3 are fixedly connected to the computer case 1. When the backup battery 40 falls, the two movable plates 4 will be squeezed open. At this time, the torsion springs 3 are compressed. When the backup battery 40 falls into the storage chamber 6, the two movable plates 4 are closed again under the elastic force of the torsion springs 3, preventing the backup battery 40 from catching fire due to bulging and causing damage to the normal backup battery 40 in the first connecting chamber 2. Several heat dissipation nets 10 are fixedly connected to the outside of the computer case 1. The heat dissipation nets 10 are used to dissipate heat for the processing host 45 and several electronic accessories 9 in the computer case 1. Two second connecting cavities 8 are provided in the computer case 1. The second connecting cavity 8 and one side of the storage cavity 6 extend to the external environment. A movable door 12 is provided on one side of the storage cavity 6 and the two second connecting cavities 8. The movable door 12 is movably connected to the outside of the computer case 1. By opening the movable door 12 on the upper side, the backup battery installation mechanism with the backup battery 40 installed can be placed into the second connecting cavity 8. At this time, the backup battery installation mechanism with the backup battery 40 installed falls into the installation mechanism for installation.
[0032] Example 2: On the basis of Example 1, in order to dissipate the heat generated by the backup battery 40 when in use, the mounting mechanism includes a connecting plate 15, two mounting cavities 18 are defined in the upper end of the connecting plate 15, two sliding grooves 31 are defined in both ends of the mounting cavity 18, and a plurality of U-shaped heat conducting sheets 39 are fixedly connected to both ends of the mounting cavity 18. The ends of the plurality of U-shaped heat conducting sheets 39 away from the mounting cavity 18 are fixedly connected to the U-shaped connecting plate 37. The U-shaped heat conducting sheets 39 are made of copper. After entering the connecting groove 29, the U-shaped heat conducting sheets 39 can always be in contact with the connecting groove 29. When the cam 32 is in the state of being moved, the cam 32 is in the state of being moved, and the cam 32 is in the state of being moved. A plug-in slot 38 is provided on one side of the installation cavity 18, and conductive springs 41 are fixedly connected on both sides of the plug-in slot 38. The power detector 17 is fixedly connected to one side of the connecting plate 15, and one end of the connecting plate 15 is fixedly connected to the socket 22. When the installation box 27 enters the installation cavity 18 along the second connecting cavity 8, the plug 23 will enter the plug-in slot 38 and be clamped by the two conductive springs 41. At the same time, several U-shaped heat conducting sheets 39 will enter the connecting groove 29, and the sliding rod 30 will move along the sliding groove 31 and will eventually be limited by the special-shaped plate 32. By limiting the special-shaped plate 32, the plug 23 can Located between the two conductive springs 41, the heat dissipation mechanism includes two heat conducting plates 21, which are fixedly connected to the first connecting cavity 2. A plurality of heat sinks 20 are fixedly connected to one side of the heat conducting plates 21. The ends of the heat sinks 20 away from the heat conducting plates 21 sequentially pass through the ventilation cavity 16 and the computer case 1 and extend into the external environment. The ventilation cavity 16 is opened in the computer case 1. A fan 13 is fixedly connected to the ventilation cavity 16. When the fan 13 is started, air flows through the ventilation cavity 16. After passing through the ventilation cavity 16, the airflow quickly removes the heat from the surface of the heat sink 20, thereby achieving rapid heat dissipation of the swollen backup battery 40. The U-shaped connecting plate 37 is slidably connected to the outer side of the heat conducting plate 21, and one side of the sliding plate 36 is slidably connected to the slide groove 44. The slide groove 44 is opened in the first connecting cavity 2. The spare battery installation mechanism includes an installation box 27, and connecting blocks 28 are fixedly connected to both ends of the installation box 27. The connecting blocks 28 are made of copper. A plurality of connecting grooves 29 are opened on the side of the connecting block 28 away from the installation box 27. Two sliding rods 30 are fixedly connected to the two ends of the installation box 27. The sliding rod 30 slides in the sliding groove 31. A clamping plate 19 is provided on the inside of the installation box 27. Two cross-shaped sliding rods 5 are fixedly connected to the two ends of the clamping plate 19. The cross-shaped sliding rod 5 slides in the cross-shaped slide groove 33. The cross-shaped slide groove 33 is opened in the installation box 27. A first connecting spring 35 is fixedly connected in the cross-shaped slide groove 33. The upper end of the first connecting spring 35 is fixedly connected to the cross-shaped slide rod 5. A press switch 34 is fixedly connected in the cross-shaped slide groove 33. A plug 23 is fixedly connected to one side of the installation box 27. A limiting rod 25 is provided on the upper side of the clamping plate 19, and the limiting rod 25 is slidably connected to the limiting groove 24. The limiting groove 24 is opened on the inner side of the installation box 27. A plurality of second connecting springs 26 are fixedly connected to the limiting groove 24. The other end of the second connecting spring 26 is fixedly connected to the limiting rod 25. The limiting rod 25 is pushed upward to enter the limiting groove 24. At this time, the second connecting spring 26 is compressed, and the spare battery 40 is pushed into the installation box 27. During the pushing process, ensure that the spare battery 40 has a connecting plug. The end of the head faces inward. When the insertion is completed, the connecting plug at one end of the backup battery 40 is inserted into the plug 23. At this time, the push on the limit rod 25 is released. Under the elastic force of the second connection spring 26, the limit rod 25 moves downward to limit the backup battery 40. The U-shaped heat conducting plate 39 is slidably connected to the connecting groove 29. The plug 23 is inserted into the plug-in groove 38, and its two sides are respectively in contact with the conductive spring 41. The U-shaped connecting plate 37, the heat conducting plate 21 and the heat dissipation plate 20 are all made of copper; The connecting plug at one end of the backup battery 40 transmits electricity to the plug 23, and the electricity is uniformly transmitted to the telescopic wire 11 through the conductive spring 41. During charging, the external current enters the socket 22 through the charging plug 14, and then enters the plug 23 through the conductive spring 41, completing the charging and discharging of the backup battery 40.
[0033] When the battery is in the state of being charged, the battery 40 is first installed in the battery installation mechanism, specifically, the limiting rod 25 is pushed upward to make it enter the limiting groove 24, at this time the second connecting spring 26 is compressed, and the battery 40 is pushed into the installation box 27. During the pushing process, ensure that the end of the battery 40 with the connecting plug is facing inward. When the pushing is completed, the connecting plug at one end of the battery 40 is inserted into the plug 23. At this time, the push on the limiting rod 25 is released. Under the elastic action of the second connecting spring 26, the limiting rod 25 moves downward to limit the battery 40. After opening the upper movable door 12, the installation box 27 with the battery 40 installed is placed into the second connecting cavity 8. During the placement process, ensure that the plug 23 is on the right side. At this time, when the installation box 27 enters the installation cavity 18 along the second connecting cavity 8, the plug 23 will enter the plug slot 38 and be clamped by the two conductive spring pieces 41. At the same time, several U-shaped heat conducting sheets 39 will enter the connecting grooves 29, the sliding rods 30 will move along the sliding grooves 31, and will eventually be limited by the special-shaped plates 32. After the two installation boxes 27 with the backup batteries 40 are installed are completed, the backup batteries 40 are installed. When a power outage occurs, the electricity stored in the backup batteries 40 can be used to power the electronic accessories 9 and the processing host 45 in the computer case 1 through the retractable wires 11. The power detector 17 can monitor the power of the backup batteries 40 in real time. When it is detected that the power of the backup batteries 40 is low, the power detector 17 will send a signal to the processing host 45. The processing host 45 controls the electric push rod 7 to drive the connecting plate 15 to move to the right, and finally the socket 22 is connected to the charging plug 14. When the power outage is over, the backup batteries 40 can be charged. When the power detector 17 detects that the charging is completed, the electric push rod 7 will drive the connecting plate 15 to the left to the initial position, so that the socket 22 is separated from the charging plug 14. At the same time, when the backup battery 40 is working, the heat generated by the backup battery 40 will be absorbed by the connecting block 28, and the heat will then enter the U-shaped connecting plate 37 through the plurality of U-shaped heat conducting sheets 39. Since the U-shaped connecting plate 37 is slidably connected to the outer side of the heat conducting plate 21, the heat will eventually be discharged into the external environment through the plurality of heat dissipation plates 20, completing the heat dissipation of the backup battery 40. When the electric push rod 7 drives the connecting plate 15 to move, the U-shaped connecting plate 37 will slide along the surface of the heat conducting plate 21, ensuring that the heat generated by the backup battery 40 can be dissipated; When the backup battery 40 is bulging, as the bulge continues to grow, the clamping plate 19 will be pushed downward, and the clamping plate 19 will drive the cross-shaped slide bar 5 to move downward along the cross-shaped slide groove 33 when moving. When the cross-shaped slide bar 5 moves to the position of the press switch 34, the press switch 34 will be squeezed, and the fan 13 will start to make the air flow through the ventilation cavity 16. After passing through the ventilation cavity 16, the air flow quickly takes away the heat from the surface of the heat sink 20, thereby achieving rapid heat dissipation of the bulging backup battery 40. When the degree of bulging is large, the cross-shaped slide bar 5 moves to the cross-shaped slide groove 33 When it is at the lowest end, the special-shaped plate 32 will be pushed to one side and the supporting spring 43 will be compressed. After the special-shaped plate 32 moves, the obstruction to the slide bar 30 is cancelled. At this time, under the gravity of the spare battery 40, the installation box 27 storing the bulging spare battery 40 will fall downward, and the fallen installation box 27 passes through the two movable doors 12 and falls into the storage chamber 6. After the falling is completed, under the elastic force of the torsion spring 3, the two movable doors 12 are closed again to prevent the continued use of the spare battery 40 from causing fire, or the spare battery 40 cannot be used for a long time when the power is off.
[0034] The above embodiments are only intended to help understand the method and core concept of the present invention. It should be noted that, without departing from the principles of the present invention, a number of improvements and modifications may be made to the present invention by those skilled in the art, and such improvements and modifications also fall within the scope of protection of the claims of the present invention.
Claims
1. A computer power-off protection device based on artificial intelligence information security, comprising a computer case, characterized in that: The computer case is provided with a processing host and several electronic accessories, a first connecting cavity is opened in the lower end of the computer case, a mounting mechanism is provided in the first connecting cavity, one end of the mounting mechanism is fixedly connected to the output end of the electric linear actuator, the electric linear actuator is fixedly installed in the computer case, one end of the first connecting cavity is fixedly connected to a charging plug, a power detector is provided on one side of the mounting mechanism, the mounting mechanism is connected to a heat dissipation mechanism, the heat dissipation mechanism is provided in the computer case, a plurality of backup battery mounting mechanisms are provided in the backup battery mounting mechanisms, backup batteries are installed in the backup battery mounting mechanisms, and when a power outage occurs, the backup batteries continue to supply power; The lower end of the first connecting cavity is communicated with the storage cavity, and the storage cavity is opened in the computer case. Two movable plates are provided on the lower side of the mounting mechanism, and the movable plates are movably connected to the first connecting cavity. Both ends of the movable plates are sleeved with torsion springs, and both ends of the torsion springs are fixedly connected to the computer case. Several heat dissipation nets are fixedly connected to the outside of the computer case. Two second connecting cavities are opened in the computer case, and one side of the second connecting cavity and the storage cavity extends to the external environment. A movable door is provided on one side of the storage cavity and the two second connecting cavities, and the movable door is movably connected to the outside of the computer case.
2. The computer power-off protection device based on artificial intelligence information security according to claim 1, characterized in that: The mounting mechanism includes a connecting plate, two mounting cavities are provided in the upper end of the connecting plate, two sliding grooves are provided in both ends of the mounting cavity, and a number of U-shaped heat conducting plates are fixedly connected to both ends of the mounting cavity. The ends of the U-shaped heat conducting plates away from the mounting cavity are fixedly connected to the U-shaped connecting plate, the upper and lower ends of the U-shaped connecting plate are fixedly connected to sliding plates, and the upper end of the connecting plate is fixedly connected to two telescopic wires.
3. The computer power-off protection device based on artificial intelligence information security according to claim 2, characterized in that: A special-shaped plate is provided in the sliding groove, and the special-shaped plate is slidably connected to the guide cavity. The guide cavity is opened in the connecting plate. Several support springs are fixedly connected in the guide cavity. The other end of the support spring is fixedly connected to the special-shaped plate. The special-shaped plate extends into the installation cavity away from one end of the sliding groove.
4. The computer power-off protection device based on artificial intelligence information security according to claim 2, characterized in that: A plug-in slot is provided in one side of the installation cavity, and conductive springs are fixedly connected to both sides of the plug-in slot. The power detector is fixedly connected to one side of the connecting plate, and a socket is fixedly connected to one end of the connecting plate.
5. The computer power-off protection device based on artificial intelligence information security according to claim 1, characterized in that: The heat dissipation mechanism includes two heat conducting plates, which are fixedly connected to the first connecting cavity. Several heat dissipation plates are fixedly connected to one side of the heat conducting plate. The heat dissipation plate passes through the ventilation cavity and the computer case in sequence at one end away from the heat conducting plate and extends into the external environment. The ventilation cavity is opened in the computer case, and a fan is fixedly connected to the ventilation cavity.
6. A computer power-off protection device based on artificial intelligence information security according to claim 2 or 5, characterized in that: The U-shaped connecting plate is slidably connected to the outer side of the heat conducting plate, one side of the sliding plate is slidably connected to the sliding groove, and the sliding groove is opened in the first connecting cavity.
7. The computer power-off protection device based on artificial intelligence information security according to claim 2, characterized in that: The backup battery installation mechanism includes an installation box, both ends of the installation box are fixedly connected with connecting blocks, and the connecting block is provided with a plurality of connecting grooves on the side away from the installation box, and both ends of the installation box are fixedly connected with two sliding rods, and the sliding rods are slid into the sliding grooves. A clamping plate is provided on the inside of the installation box, and both ends of the clamping plate are fixedly connected with two cross-shaped sliding rods, and the cross-shaped sliding rod is slid into the cross-shaped sliding groove. The cross-shaped sliding groove is opened in the installation box, and a first connecting spring is fixedly connected in the cross-shaped sliding groove, and the upper end of the first connecting spring is fixedly connected to the cross-shaped sliding rod, and a press switch is fixedly connected in the cross-shaped sliding groove. A plug is fixedly connected to one side of the installation box.
8. The computer power-off protection device based on artificial intelligence information security according to claim 7, characterized in that: A limiting rod is provided on the upper side of the clamping plate, and the limiting rod is slidably connected to the limiting groove. The limiting groove is opened on the inner side of the installation box. Several second connecting springs are fixedly connected in the limiting groove, and the other end of the second connecting spring is fixedly connected to the limiting rod.
9. A computer power-off protection device based on artificial intelligence information security according to claim 4 or 7, characterized in that: The U-shaped heat conducting sheet is slidably connected in the connecting groove, and the plug is plugged into the plug-in through groove, with both sides of the plug in contact with the conductive elastic sheets respectively.
Citation Information
Patent Citations
A computer power failure protection device based on artificial intelligence information security
CN116166110B