A data security one-way ferry system and method
Through the data security one-way ferry system, one-way physically isolated data transmission from low-density network to high-density network is achieved, which solves the manual operation errors and security issues in data transmission and ensures the security and efficiency of data transmission.
Patent Information
- Application Number
- CN202310268304.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Priority Date
- 2022-11-29
- Filing Date
- 2023-03-20
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2043-03-20
AI Technical Summary
In the existing technology, data transmission between high-density networks and low-density networks has problems such as irregular data analysis, high risk of manual copying, heavy workload, low efficiency and insufficient data security.
A data security one-way ferry system is adopted, including a burning lifting component, a reading lifting component, an in-and-out bin component and a CD box component. Precise burning is performed by the burning lifting component, precise reading is performed by the reading lifting component, the CD box component rotates, and the main carrier board carries each component, thereby realizing one-way physically isolated data transmission.
Under network security conditions, reduce manual operation errors, realize data transmission from low-density network to high-density network, ensure data security, and avoid waste of physical strength and energy.
Smart Images

Figure CN116312653B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of data transmission, and in particular to a data security one-way ferry system and method. Background Art
[0002] A high-security network is a network with a higher confidentiality level, while a low-security network is a network with a lower confidentiality level and greater openness. The current working mode of data transmission between high-security and low-security networks usually has the following process: 1) A person checks that the machine data has been output; 2) Insert the disc for burning; 3) Remove the disc after burning is completed; 4) Read the data on the intranet computer; 5) Manually operate the data to be analyzed on the system for analysis;
[0003] However, the existing technology has the following technical problems: 1) During data analysis, people need to check whether the data is completed from time to time; 2) Data needs to be copied manually; 3) Manual data copying carries the risk of data loss; 4) Data analysis requires data transfer and re-entry, resulting in heavy workload and low efficiency for experimenters; 5) The original data still exists during the second burning, and there is a risk of data loss or tampering through the network; 6) Excessive intervention makes it difficult for operators to focus on the study of work methods and analysis of business, thus affecting the quality of data detection. Summary of the Invention
[0004] In response to the above technical problems, the purpose of the present invention is to propose a data security one-way ferry system and method, which can enable staff to conveniently transmit data from a low-density network to a high-density network under the condition of network security, and at the same time perform one-way physically isolated data transmission in a dual-network environment without wasting physical strength and energy, thereby reducing errors caused by manual operations and ensuring data security.
[0005] To achieve the above objectives, the present invention is implemented through the following technical solutions:
[0006] A data security one-way ferry system, comprising: a recording and lifting assembly, a reading and lifting assembly, an inlet and outlet assembly, an optical disc box assembly and a main bearing plate;
[0007] The in-and-out bin assembly is used to store the optical disc and drive the optical disc to move;
[0008] The burning lifting assembly is used to accurately burn the optical disc;
[0009] The reading lifting assembly is used to accurately read the optical disc;
[0010] The optical disc box assembly is used to rotate the optical disc;
[0011] The main carrying plate is used for carrying the burning lifting group, the reading lifting assembly, the in-and-out bin assembly and the optical disc box assembly.
[0012] Preferably, the in-and-out warehouse assembly includes: a first protective plate, a second protective plate, a slider guide rail, a first baffle, a second baffle, a tray, a hatch baffle, a tray in-and-out warehouse motor, a tray in-and-out warehouse control panel, a third photoelectric switch, and a fourth photoelectric switch;
[0013] The first baffle and the second baffle are respectively provided on both sides of the main bearing plate, the first baffle is provided on the first baffle, the second protective plate is provided on the second baffle, the slider guide rails are respectively provided on the first baffle and the second baffle, the tray is provided on the two slider guide rails, the door baffle is provided on the tray, the tray in and out control panel is used to send a control instruction of the tray in or out to the tray in and out motor, the third photoelectric switch is used to limit the position of the tray in, and the fourth photoelectric switch is used to limit the position of the tray out.
[0014] Preferably, the optical disc box assembly comprises: an optical disc box, an optical disc box rotating seat, and an optical disc box rotating motor;
[0015] The optical disc box is arranged on the tray, and the optical disc box is used to store the optical disc. The optical disc box rotating seat is arranged below the disc box, and the optical disc box rotating motor is used to drive the optical disc box to rotate.
[0016] Preferably, the burning lifting assembly includes: a burning power supply module, a burning power supply board, a first shock-absorbing pad, a burning module, a burning control board, a first support rod, a first bearing holder, a first photoelectric baffle, a first linear bearing, a burning lifting photoelectric switch, a first support rod, a first hexagonal copper column, a burning lifting motor, a burning lifting motor control board, a first fixing plate, a first bearing plate, and a first toggle switch;
[0017] The main carrier is provided with the first carrier plate and the burning lifting motor, the main carrier plate and the first carrier plate are detachably connected, the first carrier plate is provided with the first hexagonal copper column, the first support rod is provided on the first hexagonal copper column, the first support rod is connected to the first bearing seat through the first linear bearing, the first bearing seat is provided with the first fixing plate, the first support rod and the burning control board are provided on the first fixing plate, the burning module is provided on the first support rod, the burning module is provided with the first shock-absorbing pad, the burning power supply board and the burning lifting motor are respectively connected to the burning The burning power supply module is electrically connected, and the burning power supply module provides power for the burning power supply board and the burning lifting motor. The burning power supply board provides power for the burning control board. The burning lifting motor is used to drive the first fixed plate to rise or fall. The burning control board is used to send control instructions to the burning lifting motor and control the burning module to burn the optical disc. The burning control board is electrically connected to the first toggle switch, and the burning lifting photoelectric switch is electrically connected to the burning control board and the burning lifting motor respectively. The burning lifting photoelectric switch limits the rising or falling position of the burning module through the first photoelectric baffle.
[0018] Preferably, the reading and lifting assembly includes: a reading power supply module, a reading power supply board, a second shock-absorbing pad, a reading module, a reading control board, a second support rod, a second bearing holder, a second photoelectric baffle, a second linear bearing, a reading and lifting photoelectric switch, a second support rod, a second hexagonal copper column, a reading and lifting motor, a reading and lifting motor control board, a second fixing plate, a second bearing plate, and a second toggle switch;
[0019] The main carrier is provided with a second carrier plate and the reading and lifting motor. The main carrier plate and the second carrier plate are detachably connected. The second carrier plate is provided with a second hexagonal copper column. The second hexagonal copper column is provided with a second support rod. The second support rod is connected to the second bearing holder via a second linear bearing. The second bearing holder is provided with a second fixed plate. The second support rod and the reading control board are provided on the second fixed plate. The reading module is provided on the second support rod. The reading module is provided with a second shock-absorbing pad. The reading power supply board and the reading and lifting motor are respectively electrically connected to the reading power supply module. The reading power supply module provides power to the reading power supply board and the reading and lifting motor. The reading power supply board provides power to the reading control board. The reading and lifting motor is used to drive the second fixed plate to rise or fall. The reading control board is used to send control instructions to the reading and lifting motor and control the reading module to read the optical disc. The reading control board is electrically connected to the second toggle switch. The reading and lifting photoelectric switch is respectively electrically connected to the reading control board and the reading and lifting motor. The reading and lifting photoelectric switch limits the rising or falling position of the reading module through the second photoelectric barrier.
[0020] Preferably, baffles are provided on both sides of the optical disc box.
[0021] Preferably, a magnet is provided below the optical disc case.
[0022] Preferably, the optical disc box rotating seat adopts a transmission mode of a synchronous pulley combined with a bearing.
[0023] A data security one-way ferry method, applied to the data security one-way ferry system, comprises the following steps:
[0024] When the burning control board collects data from the low-density network computer and needs to burn it, the burning control board sends a command to the burning lifting motor to raise the burning module. At this time, the first linear bearing drives the first fixed plate and the burning module to rise. When the burning lifting photoelectric switch reaches the first photoelectric baffle position, the burning control board sends a command to the burning lifting motor to stop the burning module from rising. The first linear bearing drives the first fixed plate and the burning module to stop rising. The first toggle switch is turned on, and the burning module starts burning on the optical disc.
[0025] When the burning module finishes burning, the first toggle switch is turned off, and the burning control board sends a command to the burning lifting motor to reset the burning module. At this time, the first linear bearing drives the first fixed plate and the burning module to descend to the initial position;
[0026] When it is detected that the burning module has been reset, the optical disc box carrying the optical disc rotates 180 degrees clockwise through the optical disc box rotating seat, and the reading control board sends a command to the burning lifting motor to raise the reading module. At this time, the second linear bearing drives the second fixed plate and the reading module to rise. When the reading lifting photoelectric switch reaches the second photoelectric block position, the reading control board sends a command to the reading lifting motor to stop the reading module from rising. At this time, the second linear bearing drives the second fixed plate and the reading module to stop rising. The second toggle switch is turned on, and the reading module starts to read the data information burned on the optical disc and transmits the data information read by the reading module on the optical disc to the high-density network computer.
[0027] When the reading module finishes reading, the second toggle switch is turned off, and the reading control board sends a command to the reading lifting motor to reset the reading module. At this time, the second linear bearing drives the second fixed plate and the reading module to descend to the initial position;
[0028] When it is detected that the reading module has been reset, the CD box carrying the CD rotates 180 degrees counterclockwise through the CD box rotating seat. At the same time, the low-density network computer issues a CD scrubbing instruction. When it is detected that the scrubbing is completed, a new recording begins.
[0029] Compared with the prior art, the beneficial effects of the present invention are: the present invention provides a data security one-way ferry system and method, including: a burning lifting assembly, a reading lifting assembly, an in-and-out bin assembly, an optical disc box assembly and a main carrying plate; the in-and-out bin assembly is used to store the optical disc and drive the optical disc to move; the burning lifting assembly is used to accurately burn the optical disc; the reading lifting assembly is used to accurately read the optical disc; the optical disc box assembly is used to rotate the optical disc; the main carrying plate is used to carry the burning lifting group, the reading lifting assembly, the in-and-out bin assembly and the optical disc box assembly. The present invention can, under the condition of meeting network security, enable staff to conveniently transmit data from a low-density network to a high-density network, and at the same time, perform one-way physically isolated data transmission in a dual-network environment without wasting physical strength and energy, thereby reducing errors caused by manual operation and ensuring data security. BRIEF DESCRIPTION OF THE DRAWINGS
[0030] Various other advantages and benefits will become apparent to those skilled in the art upon reading the detailed description of the preferred embodiment below. The accompanying drawings are for illustration purposes only and are not to be considered as limiting the present invention. The same reference symbols are used throughout the drawings to represent the same components. In the drawings:
[0031] Figure 1 A schematic diagram of the structure of the main carrier board and components on the main carrier board of the data security one-way ferry system;
[0032] Figure 2 This is a schematic diagram of the structure of the burning and lifting components of the data security one-way ferry system;
[0033] Figure 3 An exploded diagram of the burning and lifting components of the data security one-way ferry system;
[0034] Figure 4 This is a structural diagram of the reading and lifting components of the data security one-way ferry system;
[0035] Figure 5 An exploded diagram of the reading and lifting components of the data security one-way ferry system;
[0036] Figure 6 This is a schematic diagram of the structure of the in-and-out warehouse components of the data security one-way ferry system;
[0037] Figure 7 It is a structural diagram of the rotating base of the optical disc box;
[0038] Figure 8 An oblique view of the control console for the data security one-way ferry system.
[0039] In the figure, 1. the first toggle switch, 2. the control board of the burning lifting motor, 3. the motor for loading and unloading the tray, 4. the control board of the tray loading and unloading the tray, 5. the control board of the reading lifting motor, 6. the second toggle switch, 7. the reading power supply board, 8. the opening of the reading lifting component, 9. the reading power supply module, 10. the third photoelectric switch, 11. the burning power supply module, 12. the optical disc box rotating motor, 13. the opening of the burning lifting component, 14. the driving wheel, 15. the burning power supply board, 16. the first shock-absorbing pad, 17. the burning module, 18. the burning control board, 19. the first support rod, 20. the first flange, 21. the first bearing seat, 22. the first photoelectric baffle, 23. the first linear bearing, 24. the burning lifting photoelectric switch, 25. the first support rod, 26. the first hexagonal copper column, 27. the burning lifting motor, 28. the second shock-absorbing pad, 29. the reading module, 30. the reading control board, 31. the second Support rod, 32, second flange, 33, second bearing holder, 34, second photoelectric baffle, 35, second linear bearing, 36, read lift photoelectric switch, 37, second support rod, 38, second hexagonal copper column, 39, read lift motor, 40, first fixed plate, 41, first bearing plate, 42, second fixed plate, 43, second bearing plate, 44, first baffle, 45, second baffle, 46, first protective plate, 47, second protective plate, 48, tray, 49, first baffle, 50, second baffle, 51, fixing part, 52, CD box, 53, hatch baffle, 54, CD A, 55, CD B, 56, slider guide, 57, burning touch screen, 58, reading touch screen, 59, CD box rotating seat, 60, third bearing pressure block, 61, synchronous pulley, 62, third bearing, 63, main bearing plate, 64, burning bolt hole, 65, reading bolt hole. DETAILED DESCRIPTION
[0040] The exemplary embodiments of the present disclosure will be described in more detail below with reference to the accompanying drawings. Although exemplary embodiments of the present disclosure are shown in the accompanying drawings, it should be understood that the present disclosure can be implemented in various forms and should not be limited by the embodiments set forth herein. On the contrary, these embodiments are provided to enable a more thorough understanding of the present disclosure and to fully convey the scope of the present disclosure to those skilled in the art. It should be noted that, unless there is a conflict, the embodiments of the present disclosure and the features described in the embodiments can be combined with each other. The present invention will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.
[0041] like Figure 1 As shown, a data security one-way ferry system includes: a burning lifting assembly, a reading lifting assembly, an in-and-out bin assembly, an optical disc box assembly and a main carrier plate 63;
[0042] The in-and-out bin assembly is used to store the optical disc and drive the optical disc to move;
[0043] The burning lifting assembly is used to accurately burn the optical disc;
[0044] The reading lifting assembly is used to accurately read the optical disc;
[0045] The optical disc box assembly is used to rotate the optical disc;
[0046] The main supporting plate 63 is used to support the recording and lifting assembly, the reading and lifting assembly, the loading and unloading compartment assembly, and the optical disc box assembly.
[0047] like Figure 1 As shown, the main bearing plate 63 is provided with a burning bolt hole 64 and a reading bolt hole 65, and the burning bolt holes 64 are set to four. The burning lifting assembly is fixed to the main bearing plate 63 through bolts and the burning bolt holes 64, and the reading lifting assembly is fixed to the main bearing plate 63 through bolts and the reading bolt holes 65.
[0048] Further, if Figure 6 As shown, the in-and-out bin assembly includes: a first protective plate 46, a second protective plate 47, a slider guide rail 56, a first baffle 44, a second baffle 45, a tray 48, a hatch baffle 53, a tray in-and-out bin motor 3, a tray in-and-out bin control panel 4, a third photoelectric switch 10, and a fourth photoelectric switch;
[0049] The first baffle 44 and the second baffle 45 are respectively provided on both sides of the main bearing plate 63, the first baffle 44 is provided with the first protective plate 46, the second baffle 45 is provided with the second protective plate 47, the first baffle 44 and the second baffle 45 are respectively provided with the slider guide rail 56, the two slider guide rails 56 are provided with the tray 48, the tray 48 is provided with the hatch baffle 53, the tray in and out control board 4 is used to send a control instruction for the tray 48 to enter the warehouse or the tray 48 to exit the warehouse to the tray in and out motor 3, the third photoelectric switch 10 is used to limit the position of the tray 48 entering the warehouse, and the fourth photoelectric switch is used to limit the position of the tray 48 exiting the warehouse. This component adopts the operation mode of the slider guide to realize the tray in and out position limit, so that the tray enters and exits the warehouse more stably and smoothly;
[0050] Furthermore, the optical disc box 52 assembly includes: an optical disc box 52, an optical disc box rotating seat 59, and an optical disc box rotating motor 12;
[0051] The optical disc box 52 is provided on the tray 48 , and the optical disc box 52 is used to store the optical disc. The optical disc box rotating seat 59 is provided below the optical disc box 52 , and the optical disc box rotating motor 12 is used to drive the optical disc box 52 to rotate.
[0052] Further, if Figure 2 、 Figure 3 As shown, the burning lifting assembly includes: a burning power supply module 11, a burning power supply board 15, a first shock-absorbing pad 16, a burning module 17, a burning control board 18, a first support rod 19, a first bearing holder 21, a first photoelectric baffle 22, a first linear bearing 23, a burning lifting photoelectric switch 24, a first support rod 25, a first hexagonal copper column 26, a burning lifting motor 27, a burning lifting motor control board 2, a first fixing plate 40, a first bearing plate 41, and a first toggle switch 1;
[0053] The main bearing plate 63 is provided with the first bearing plate 41 and the burning lifting motor 27, the main bearing plate 63 and the first bearing plate 41 are detachably connected, the first bearing plate 41 is provided with the first hexagonal copper column 26, the first hexagonal copper column 26 is provided with the first support rod 25, the first support rod 25 is connected to the first bearing holder 21 through the first linear bearing 23, the first bearing holder 21 is provided with the first fixing plate 40, the first fixing plate 40 is provided with the first support rod 25 and the burning control board 18, the first support rod 25 is provided with the burning module 17, the burning module 17 is provided with the first shock-absorbing pad 16, the burning power supply board 15 and the burning lifting motor 27 are separately provided. It is electrically connected to the burning power supply module 11, and the burning power supply module 11 provides power for the burning power supply board 15 and the burning lifting motor 27. The burning power supply board 15 provides power for the burning control board 18. The burning lifting motor 27 is used to drive the first fixed plate 40 to rise or fall. The burning control board 18 is used to send control instructions to the burning lifting motor 27 and control the burning module 17 to burn the optical disc. The burning control board 18 is electrically connected to the first toggle switch 1, and the burning lifting photoelectric switch 24 is electrically connected to the burning control board 18 and the burning lifting motor 27 respectively. The burning lifting photoelectric switch 24 limits the rising or falling position of the burning module 17 through the first photoelectric baffle 22.
[0054] Further, if Figure 4 、 Figure 5 As shown, the reading and lifting assembly includes: a reading power supply module 9, a reading power supply board 7, a second shock-absorbing pad 28, a reading module 29, a reading control board 30, a second support rod 31, a second bearing holder 33, a second photoelectric baffle 34, a second linear bearing 35, a reading and lifting photoelectric switch 36, a second support rod 37, a second hexagonal copper column 38, a reading and lifting motor 39, a reading and lifting motor 39 control board 5, a second fixing plate 42, a second bearing plate 43, and a second toggle switch 6;
[0055] The main carrier is provided with the second carrier plate 43 and the reading lifting motor 39, the main carrier plate 63 and the second carrier plate 43 are detachably connected, the second carrier plate 43 is provided with the second hexagonal copper column 38, the second hexagonal copper column 38 is provided with the second support rod 37, the second support rod 37 is connected to the second bearing holder 33 through the second linear bearing 35, the second bearing holder 33 is provided with the second fixing plate 42, the second fixing plate 42 is provided with the second support rod 37 and the reading control board 30, the second support rod 37 is provided with the reading module 29, the reading module 29 is provided with the second shock-absorbing pad 28, the reading power supply board 7 and the reading lifting motor 39 are divided into two parts. It is electrically connected to the reading power supply module 9, and the reading power supply module 9 provides power for the reading power supply board 7 and the reading lifting motor 39. The reading power supply board 7 provides power for the reading control board 30. The reading lifting motor 39 is used to drive the second fixed plate 42 to rise or fall. The reading control board 30 is used to send control instructions to the reading lifting motor 39 and control the reading module 29 to read the optical disc. The reading control board 30 is electrically connected to the second toggle switch 6. The reading lifting photoelectric switch 36 is electrically connected to the reading control board 30 and the reading lifting motor 39 respectively. The reading lifting photoelectric switch 36 limits the rising or falling position of the reading module 29 through the second photoelectric baffle 34.
[0056] In this embodiment, both the writing lifting motor and the reading lifting motor adopt screw motors, and the lifting function is achieved by combining the screw motor with a linear bearing, and the structure is stable and precise.
[0057] Furthermore, baffles are provided on both sides of the optical disc box 52. A first baffle 49 and a second baffle 50 are provided on both sides of the optical disc box 52, which can make the optical disc more stable. The optical disc box 52 is provided with a hatch baffle 53 to prevent dust from entering the tray 48 and prevent the optical disc box 52 from flying out to protect the safety of personnel.
[0058] Furthermore, a magnet is provided under the optical disc box 52 to make the optical disc box 52 more stable. The optical disc box 52 is provided with a optical disc A station and an optical disc B station. The optical disc A station is used to store optical disc A, and the optical disc B station is used to store optical disc B. The optical disc box 52 is fixed to the tray 48 by a fixing part.
[0059] Furthermore, the optical disc box rotating base adopts a transmission method of a synchronous pulley combined with a bearing, such as Figure 7 As shown, the optical disc box rotating base includes an optical disc box rotating seat 59, a third bearing pressing block 60, a synchronous pulley 61, and a third bearing 62, so that the data security one-way ferry system can operate more stably and accurately.
[0060] like Figure 8 As shown, the data security one-way ferry system further includes: a burning touch screen 57 and a reading touch screen 58. The burning touch screen 57 is used to display the burning information, and the reading touch screen 58 is used to display the reading information.
[0061] A data security one-way ferry method, applied to the data security one-way ferry system, comprises the following steps:
[0062] When the burning control board 18 collects data from the low-density network computer and needs to burn, the burning control board 18 sends a command to the burning lifting motor 27 to raise the burning module 17. At this time, the first linear bearing 23 drives the first fixed plate 40 and the burning module 17 to rise. When the burning lifting photoelectric switch 24 reaches the position of the first photoelectric baffle 22, the burning control board 18 sends a command to the burning lifting motor 27 to stop the burning module 17 from rising. The first linear bearing 23 drives the first fixed plate 40 and the burning module 17 to stop rising. The first toggle switch 1 is turned on, and the burning module 17 starts burning on the optical disc.
[0063] When the burning module 17 finishes burning, the first toggle switch 1 is turned off, and the burning control board 18 sends a command to the burning lifting motor 27 to reset the burning module 17. At this time, the first linear bearing 23 drives the first fixed plate 40 and the burning module 17 to descend to the initial position;
[0064] When it is detected that the burning module 17 has been reset, the optical disc box 52 carrying the optical disc rotates 180 degrees clockwise through the optical disc box rotating seat 59, and the reading control board 30 sends a command to the burning lifting motor 27 to raise the reading module 29. At this time, the second linear bearing 35 drives the second fixed plate 42 and the reading module 29 to rise. When the reading lifting photoelectric switch 36 reaches the position of the second photoelectric baffle 34, the reading control board 30 sends a command to the reading lifting motor 39 to stop the reading module 29 from rising. At this time, the second linear bearing 35 drives the second fixed plate 42 and the reading module 29 to stop rising. The second toggle switch 6 is turned on, and the reading module 29 starts to read the data information burned on the optical disc and transmits the data information read by the reading module 29 on the optical disc to the high-density network computer.
[0065] When the reading module 29 finishes reading, the second toggle switch 6 is turned off, and the reading control board 30 sends a command to the reading lifting motor 39 to reset the reading module 29. At this time, the second linear bearing 35 drives the second fixed plate 42 and the reading module 29 to descend to the initial position.
[0066] When it is detected that the reading module 29 has been reset, the optical disc box 52 carrying the optical disc rotates 180 degrees counterclockwise through the optical disc box rotating seat 59, and at the same time the low-level network computer issues an optical disc scrubbing instruction. When it is detected that the scrubbing is completed, a new recording is started.
[0067] The present invention provides a data security one-way ferry system and method, including: a burning lifting component, a reading lifting component, an in-and-out warehouse component, an optical disc box component and a main carrying plate; the in-and-out warehouse component is used to store optical discs and drive the optical discs to move; the burning lifting component is used to accurately burn the optical discs; the reading lifting component is used to accurately read the optical discs; the optical disc box component is used to rotate the optical discs; the main carrying plate is used to carry the burning lifting group, the reading lifting component, the in-and-out warehouse component and the optical disc box component. The present invention can, under the condition of meeting network security, enable staff to conveniently transmit data from a low-density network to a high-density network, and at the same time, perform one-way physically isolated data transmission in a dual-network environment without wasting physical strength and energy, thereby reducing errors caused by manual operation and ensuring data security.
[0068] Obviously, those skilled in the art can make various changes and modifications to the present invention without departing from the spirit and scope of the present invention. Thus, if these modifications and variations of the present invention fall within the scope of the claims of the present invention and their equivalents, the present invention is also intended to include these changes and variations.
Claims
1. A data security one-way ferry system, characterized in that: It includes: a recording lifting assembly, a reading lifting assembly, an in-and-out bin assembly, an optical disc box assembly and a main bearing plate; The in-and-out bin assembly is used to store the optical disc and drive the optical disc to move; The burning lifting assembly is used to accurately burn the optical disc; The reading lifting assembly is used to accurately read the optical disc; The optical disc box assembly is used to rotate the optical disc; The main carrying plate is used to carry the burning lifting assembly, the reading lifting assembly, the in-and-out bin assembly, and the optical disc box assembly; The in-and-out warehouse assembly includes: a first protective plate, a second protective plate, a slider guide rail, a first baffle, a second baffle, a tray, a hatch baffle, a tray in-and-out warehouse motor, a tray in-and-out warehouse control panel, a third photoelectric switch, and a fourth photoelectric switch; The first baffle and the second baffle are respectively provided on both sides of the main carrying plate, the first baffle is provided on the first baffle, the second baffle is provided on the second baffle, the slider guide rails are respectively provided on the first baffle and the second baffle, the tray is provided on the two slider guide rails, the hatch baffle is provided on the tray, the tray in and out control board is used to send a tray in or out control instruction to the tray in and out motor, the third photoelectric switch is used to limit the position of the tray in, and the fourth photoelectric switch is used to limit the position of the tray out; The optical disc box assembly comprises: an optical disc box, an optical disc box rotating seat, and an optical disc box rotating motor; The optical disc box is arranged on the tray, and the optical disc box is used to store the optical disc. The optical disc box rotating seat is arranged below the optical disc box, and the optical disc box rotating motor is used to drive the optical disc box to rotate. The burning lifting assembly includes: a burning power supply module, a burning power supply board, a first shock-absorbing pad, a burning module, a burning control board, a first support rod, a first bearing holder, a first photoelectric baffle, a first linear bearing, a burning lifting photoelectric switch, a first support rod, a first hexagonal copper column, a burning lifting motor, a burning lifting motor control board, a first fixing plate, a first bearing plate, and a first toggle switch; The main carrier is provided with the first carrier plate and the burning lifting motor, the main carrier plate and the first carrier plate are detachably connected, the first carrier plate is provided with the first hexagonal copper column, the first support rod is provided on the first hexagonal copper column, the first support rod is connected to the first bearing seat through the first linear bearing, the first bearing seat is provided with the first fixing plate, the first support rod and the burning control board are provided on the first fixing plate, the burning module is provided on the first support rod, the burning module is provided with the first shock-absorbing pad, the burning power supply board and the burning lifting motor are respectively connected to the burning The burning power supply module is electrically connected, the burning power supply module provides power to the burning power supply board and the burning lifting motor, the burning power supply board provides power to the burning control board, the burning lifting motor is used to drive the first fixed plate to rise or fall, the burning control board is used to send control instructions to the burning lifting motor and control the burning module to burn the optical disc, the burning control board is electrically connected to the first toggle switch, the burning lifting photoelectric switch is electrically connected to the burning control board and the burning lifting motor respectively, and the burning lifting photoelectric switch limits the rising or falling position of the burning module through the first photoelectric baffle; The reading and lifting assembly includes: a reading power supply module, a reading power supply board, a second shock-absorbing pad, a reading module, a reading control board, a second support rod, a second bearing holder, a second photoelectric baffle, a second linear bearing, a reading and lifting photoelectric switch, a second support rod, a second hexagonal copper column, a reading and lifting motor, a reading and lifting motor control board, a second fixing plate, a second bearing plate, and a second toggle switch; The main carrier is provided with a second carrier plate and the reading and lifting motor. The main carrier plate and the second carrier plate are detachably connected. The second carrier plate is provided with a second hexagonal copper column. The second hexagonal copper column is provided with a second support rod. The second support rod is connected to the second bearing holder via a second linear bearing. The second bearing holder is provided with a second fixed plate. The second support rod and the reading control board are provided on the second fixed plate. The reading module is provided on the second support rod. The reading module is provided with a second shock-absorbing pad. The reading power supply board and the reading and lifting motor are respectively electrically connected to the reading power supply module. The reading power supply module provides power to the reading power supply board and the reading and lifting motor. The reading power supply board provides power to the reading control board. The reading and lifting motor is used to drive the second fixed plate to rise or fall. The reading control board is used to send control instructions to the reading and lifting motor and control the reading module to read the optical disc. The reading control board is electrically connected to the second toggle switch. The reading and lifting photoelectric switch is respectively electrically connected to the reading control board and the reading and lifting motor. The reading and lifting photoelectric switch limits the rising or falling position of the reading module through the second photoelectric barrier.
2. A data security one-way ferry system according to claim 1, characterized in that: Blocking pieces are arranged on both sides of the optical disc box.
3. A data security one-way ferry system according to claim 2, characterized in that: A magnet is arranged below the optical disc box.
4. A data security one-way ferry system according to claim 1, characterized in that: The optical disc box rotating seat adopts a transmission mode of synchronous pulley combined with bearings.
5. A data security one-way ferry method, applied to the data security one-way ferry system according to any one of claims 1 to 4, characterized in that: The following steps are involved: When the burning control board collects data from the low-density network computer and needs to burn, the burning control board sends a command to the burning lifting motor to raise the burning module. At this time, the first linear bearing drives the first fixed plate and the burning module to rise. When the burning lifting photoelectric switch reaches the first photoelectric baffle position, the burning control board sends a command to the burning lifting motor to stop the burning module from rising. The first linear bearing drives the first fixed plate and the burning module to stop rising. The first toggle switch is turned on, and the burning module starts burning on the optical disc. When the burning module finishes burning, the first toggle switch is turned off, and the burning control board sends a command to the burning lifting motor to reset the burning module. At this time, the first linear bearing drives the first fixed plate and the burning module to descend to the initial position; When it is detected that the burning module has been reset, the optical disc box carrying the optical disc rotates 180 degrees clockwise through the optical disc box rotating seat, and the reading control board sends a command to the burning lifting motor to raise the reading module. At this time, the second linear bearing drives the second fixed plate and the reading module to rise. When the reading lifting photoelectric switch reaches the second photoelectric block position, the reading control board sends a command to the reading lifting motor to stop the reading module from rising. At this time, the second linear bearing drives the second fixed plate and the reading module to stop rising. The second toggle switch is turned on, and the reading module starts to read the data information burned on the optical disc and transmits the data information read by the reading module on the optical disc to the high-density network computer. When the reading module finishes reading, the second toggle switch is closed, and the reading control board sends a command to reset the reading module to the reading lifting motor. At this time, the second linear bearing drives the second fixed plate and the reading module to descend to the initial position; when it is detected that the reading module has been reset, the optical disc box carrying the optical disc rotates 180 degrees counterclockwise through the optical disc box rotating seat, and at the same time the low-density network computer issues an optical disc scrubbing instruction. When it is detected that the scrubbing is completed, a new burning process begins.
Citation Information
Patent Citations
One -way disc -carving ferry -boat system
CN207529659U