Cyclic transmission type medical data carrier management system and device

Through the circular transmission medical data carrier management system, combined with the control module and the circular hard disk transmission device, the problem of low intelligence level of traditional data rooms is solved, and efficient and accurate management of data hard disks and privacy protection are achieved.

CN120723027APending Publication Date: 2025-09-30THE 900TH HOSPITAL OF THE CHINESE PEOPLES LIBERATION ARMY JOINT LOGISTICS SUPPORT FORCE
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Patent Information

Application Number
CN202510673970.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-23
Publication Date
2025-09-30

AI Technical Summary

Technical Problem

Traditional data rooms have a simple structure and low level of intelligence, resulting in low efficiency in searching and retrieving data from hard disks, and the risk of privacy data leakage.

Method used

A circular transmission medical data carrier management system is adopted, including a control module, a drive module, a signal transmission module, a leveling detection module and a leveling alignment module, combined with a circular hard disk transmission device to achieve intelligent management and precise positioning of data hard disks.

Benefits of technology

It improves the efficiency of searching and retrieving data hard drives, reduces the risk of privacy data leakage, and realizes efficient and accurate management of data hard drives.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of medical treatment, in particular to a circulating transmission type medical data carrier management system and device. The cabinet comprises a cabinet body, a partition plate transversely arranged at the bottom of the cabinet body, a circulating hard disk transmission device fixedly arranged on the cabinet body and a plurality of data boxes fixedly arranged on the circulating hard disk transmission device. And the partition plate divides the interior of the cabinet body into an upper storage cavity and a lower storage cavity up and down. The invention aims to provide the circulating transmission type medical data carrier management device so as to efficiently and accurately search or retrieve the data hard disk in the database.
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Description

Technical Field

[0001] The present invention relates to the field of medical technology, and in particular to a cyclic transmission type medical data carrier management system and device. Background Art

[0002] Generally speaking, according to the implementation rules for the management and adjustment of medical institutions, the receipts and case books marked with the medical institution's logo, as well as prescription rafts, application forms for various examinations, report forms, certification documents and other data materials, the retention period of outpatient cases of medical institutions shall not be less than fifteen years, and the retention period of inpatient cases shall not be less than thirty years.

[0003] These electronic data, such as receipts, medical records, prescriptions, various examination applications, reports, and certification documents, are considered important private data in hospitals and are usually copied and stored on dedicated hard drives within the data center. To facilitate storage, these databases are often large and tall, requiring administrators to use tools to retrieve or locate the corresponding data drives, a cumbersome and inefficient operation.

[0004] In addition, medical data, especially data containing personal information, has extremely high requirements for privacy data protection and security. Traditional data rooms are old, with simple structures and low intelligence levels. Users also use old storage methods when partitioning and storing data hard drives, which not only affects the efficiency of subsequent search and retrieval of data hard drives, but also may cause mistakes or mistakes when taking data hard drives, resulting in the leakage of patients' private data. It is often difficult to simultaneously take into account the convenience and privacy of patient data retrieval.

[0005] Therefore, how to set up a cyclic transmission type medical data carrier management system and device that can solve the above technical problems is a technical problem that needs to be solved. Summary of the Invention

[0006] In order to solve the above problems, the purpose of the present invention is to provide a circular transmission type medical data carrier management system and device to efficiently and accurately search or retrieve data hard disks in the database.

[0007] In a first aspect, the present invention provides a cyclic transmission type medical data carrier management system;

[0008] It includes a control module, a drive module connected to the control module, a signal transmission module, a leveling detection module and a leveling alignment module;

[0009] The control module is used to control the driving module to start the movement according to the user's instructions;

[0010] The leveling detection module is used to send the leveling signal to the control module;

[0011] The leveling module is used to detect whether it is accurately aligned and positioned;

[0012] The signal transmitting module is used for the control to send corresponding control signals according to the instructions.

[0013] Furthermore, the signal transmitting module includes a first photoelectric switch electrically connected to the output end of the control module for transmitting the corresponding signal.

[0014] Furthermore, the control module includes a PLC system and a mobile terminal APP; the PLC system receives data from the mobile terminal APP, and the PLC system controls the driving module to start.

[0015] Furthermore, the control module also includes an access time recording subunit for recording access to the data hard disk.

[0016] In a second aspect, the present invention employs a cyclic transmission type medical data carrier management device;

[0017] The cabinet comprises a cabinet body, a partition plate arranged horizontally at the bottom of the cabinet body, a circulating hard disk transmission device fixed on the cabinet body, and a plurality of data boxes fixed on the circulating hard disk transmission device; the partition plate divides the cabinet body into an upper storage cavity and a lower storage cavity;

[0018] The cam is secured to the side of the drive shaft and is adapted to engage the gears of the driver and the control wheel, and the cam is secured to the side of the drive shaft with respect to the first and second gears.

[0019] The bearing components include a group of triangular connecting plates fixedly connected to the double-row chains on both sides, a square frame top fixed between the triangular connecting plates on both sides, connecting rods fixed at the four corners of the bottom surface of the square frame top, a bottom plate fixed at the bottom end of the connecting rod, bearings fixed in the middle of the outer walls of the frame rods on the left and right sides of the square frame top, connecting rods fixed on the left and right sides of the outer walls of the guide rail side corresponding to the square frame top and bottom plate, and a guide pulley fixed at the end of the connecting rod; the guide pulley is slidably arranged in the guide rail, the triangular connecting plate and the square frame are fixedly connected by bearings, and the data box is slidably arranged on the upper end surface of the bottom plate.

[0020] Furthermore, an X-axis assembly is provided on the upper surface of the base plate along its length direction, and the data box is installed on the X-axis assembly.

[0021] Furthermore, the X-axis component is a linear module.

[0022] Furthermore, the number of the carrying components and the data boxes is the same, both being 12.

[0023] Furthermore, the guide rail is annular, and guide support rails are provided on the left and right sides of the guide platform and the double-row sprocket corresponding to the guide rail.

[0024] Furthermore, a cabinet door is hingedly provided at the bottom of the cabinet body.

[0025] The present invention has the following beneficial effects:

[0026] 1-The present invention provides a circulating hard disk transmission device. The driving motor works to make the first transmission wheel drive the second transmission wheel and the transmission shaft to rotate through the transmission chain. The transmission wheel rotates and drives the double-row sprockets and the double-row chains on both sides to rotate. When the double-row chains rotate, the bearing components fixed between the double-row chains on both sides rotate in a circular shape along the setting direction of the double-row chains; the intelligent management of hard disk data is realized, and the three-dimensional circular movement of the bearing components makes it convenient for users to take data hard disks. The control is simple and the practicality is strong.

[0027] 2- The present invention provides a partition plate, and the width of the partition plate is set to be smaller than the width of the cabinet body, and the width of the partition plate and the width of the bottom plates of the supporting components on both sides are slightly smaller than the width of the cabinet body. After the partition plate is flush with the bottom plates of the supporting components on both sides, the upper storage cavity in the cabinet body is relatively closed. Compared with the ordinary database that opens the cabinet door to allow air to enter and the cabinet body is humid, this embodiment can effectively reduce the air entering the upper storage cavity and preserve the data hard disk in the database; the height between the partition plate and the bottom of the cabinet body is greater than the height of the supporting components. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] Figure 1 This is a schematic diagram of Example 1;

[0029] Figure 2 This is a horizontal internal schematic diagram of Example 2;

[0030] Figure 3 This is a horizontal internal schematic diagram of Example 2 (without load-bearing components);

[0031] Figure 4 This is a longitudinal internal schematic diagram of Example 2 (without load-bearing components);

[0032] Figure 5 This is a schematic diagram of the bearing assembly of Example 2.

[0033] Description of reference numerals:

[0034] 100-control module, 200-drive module, 300-signal transmission module, 310-PLC system, 320-mobile terminal APP, 330-access time recording subunit, 400 leveling detection module, 500-leveling alignment module;

[0035] 1-cabinet body, 11-partition board, 12-upper storage cavity, 13-lower storage cavity, 14-cabinet door;

[0036] 2-circulating hard disk transmission device, 21-driving motor, 22-first transmission wheel, 23-transmission shaft, 24-second transmission wheel, 25-transmission chain, 26-double-row sprocket, 27-double-row chain, 28-bearing assembly, 281-triangular connecting plate, 282-square frame top, 283-support rod, 284-bottom plate, 2841-X-axis assembly, 285-bearing, 286-connecting rod, 287-guide pulley, 29-guide rail, 291-guide support rail, 20-guide platform;

[0037] 3- Data box. DETAILED DESCRIPTION

[0038] The present invention is further described in detail below with reference to the accompanying drawings and specific embodiments:

[0039] Example 1

[0040] See also Figure 1 As shown, the solution includes a control module 100, a driving module 200 connected to the control module 100, a signal transmission module 300, a leveling detection module 400 and a leveling alignment module 500;

[0041] The control module 100 is used to control the driving module 200 to start the movement according to the user's instructions;

[0042] The leveling detection module 400 is used to send the leveling signal to the control module 100;

[0043] The leveling module 500 is used to detect whether it is accurately aligned and positioned;

[0044] The signal transmitting module 300 is used for transmitting corresponding control signals according to the control instructions.

[0045] Furthermore, the signal transmitting module 300 includes a first photoelectric switch electrically connected to the output end of the control module 100 for transmitting the corresponding signal.

[0046] Furthermore, the control module 100 includes a PLC system 310 and a mobile terminal APP 320 ; the PLC system 310 receives data from the mobile terminal APP 320 , and the PLC system 310 controls the driving module 200 to start.

[0047] Furthermore, the control module 100 further includes an access time recording subunit 330 for recording access to the data hard disk.

[0048] Example 2

[0049] See also Figure 2-5 As shown, the solution includes a cabinet 1, a partition plate 11 horizontally arranged at the bottom of the cabinet 1, a circulating hard disk transmission device 2 fixed to the cabinet 1, and a plurality of data boxes 3 fixed to the circulating hard disk transmission device 2; the partition plate 11 divides the cabinet 1 into an upper storage chamber 12 and a lower storage chamber 13;

[0050] The circulating hard disk transmission device 2 includes a driving motor 21 fixedly mounted on the outside of the cabinet 1 and with its output end extending through the side wall of the cabinet 1 to the inside of the cabinet 1, a first transmission wheel 22 located on the inner wall of the cabinet 1 and connected to the output end of the driving motor 21, a transmission shaft 23 located directly below the first transmission wheel 22 and with both ends rotatably connected to the side wall of the cabinet 1, a second transmission wheel 24 fixedly sleeved on the outer peripheral wall of the transmission shaft 23, and a transmission chain 25 connected to the first transmission wheel 22 and the second transmission wheel 24. , a group of double-row sprockets 26 symmetrically fixedly sleeved on the outer peripheral walls of the left and right ends of the rotating shaft 23, a pair of semicircular guide platforms 20 respectively provided above the double-row sprockets 26 on both sides and fixedly connected to the side walls of the cabinet 1, a double-row chain 27 respectively connecting the double-row sprockets 26 on one side and the guide platform 20 on the same side, a plurality of bearing assemblies 28 fixedly provided between the double-row chains 27 on the left and right sides at equal intervals, and a guide rail 29 fixedly provided on the side wall of the cabinet 1 for guiding the moving direction of the bearing assembly 28;

[0051] The bearing components 28 include a group of triangular connecting plates 281 fixedly connected to the double-row chains 27 on both sides, a square frame top 282 fixed between the triangular connecting plates 281 on both sides, a support rod 283 fixed at the four corners of the bottom surface of the square frame top 282, a bottom plate 284 fixed at the bottom end of the support rod 283, a bearing 285 fixed at the middle of the outer side wall of the frame rod on the left and right sides of the square frame top 282, a connecting rod 286 fixed at the left and right sides of the outer side wall of the guide rail 29 on the side of the square frame top 282 and the bottom plate 284, and a guide pulley 287 fixed at the end of the connecting rod 286; the guide pulley 287 is slidably arranged in the guide rail 29, the triangular connecting plate 281 and the square frame are fixedly connected by bearings 285, and the data box 3 is slidably arranged on the upper end surface of the bottom plate 284. Furthermore, the two sides of the bottom end of the triangular base plate 284 are fixedly connected to the double-row chain 27, and the top end of the triangular base plate 284 is fixedly connected to the square frame through the bearing 285. When the bearing assembly 28 moves to the turning point of the lowest double-row sprocket 26 and the turning point of the top guide platform 20 through the bearing 285, the center of gravity of the bearing assembly 28 is downward to maintain balance.

[0052] Further, the width of the partition plate 11 is smaller than the width of the cabinet 1, and the width of the partition plate 11 and the width of the bottom plates 284 of the supporting components 28 on both sides are slightly smaller than the width of the cabinet 1. After the partition plate 11 is flush with the bottom plates 284 of the supporting components 28 on both sides, the upper storage cavity 12 in the cabinet 1 is relatively closed. Compared with the ordinary database, the cabinet door 14 is opened to allow air to enter, and the cabinet 1 is humid. This embodiment can effectively reduce the air entering the upper storage cavity 12, thereby preserving the data hard disk in the database; the height between the partition plate 11 and the bottom of the cabinet 1 is greater than the height of the supporting component 28.

[0053] A controller connected to the drive motor 21 is provided outside the cabinet 1 , and the controller controls the drive motor 21 to drive the bearing assembly 28 to move.

[0054] Furthermore, an X-axis assembly 2841 is provided along the length of the upper end surface of the base plate 284, and the data box 3 is mounted on the X-axis assembly 2841. Furthermore, the X-axis assembly 2841 is a linear module, facilitating forward or backward movement of the hole and the data box 3 along the X-axis assembly 2841, allowing the data box 3 to be removed from the base plate 284.

[0055] Furthermore, in this embodiment, the number of the carrying components 28 and the data boxes 3 is the same, both being 12, which are used to place the data hard disks corresponding to the months from January to December. The number of the carrying components 28 and the data boxes 3 in this embodiment is a preferred embodiment, but is not limited to this. Different numbers of carrying components 28 may also be used in other embodiments.

[0056] Furthermore, the guide rail 29 is annular, and guide support rails 291 are provided on the left and right sides of the guide platform 20 and the double-row sprocket 26 corresponding to the guide rail 29 to facilitate guiding the movement of the bearing assembly 28.

[0057] Furthermore, a cabinet door 14 is hingedly provided at the bottom of the cabinet body 1 .

[0058] The working principle is roughly as follows:

[0059] When in use, the drive motor 21 is in operation, so that the first transmission wheel 22 drives the second transmission wheel 24 and the transmission shaft 23 to rotate through the transmission chain 25. The transmission shaft 23 rotates and drives the double-row sprockets 26 and the double-row chains 27 on both sides to rotate. When the double-row chains 27 rotate, the bearing assembly 28 fixed between the double-row chains 27 on both sides rotates in a circular manner along the setting direction of the double-row chains 27.

[0060] The supporting assembly 28 is rotated in a circular manner, and the corresponding supporting assembly 28 is moved to the position of the cabinet door 14 at the lowest end of the cabinet 1 according to the user's needs, so that the user can access the data hard disk conveniently.

[0061] The above description is only a specific embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structural transformation made by using the contents of the present invention description and drawings, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.

Claims

1. A cyclic transmission type medical data carrier management system, characterized by: It comprises a control module (100), a driving module (200) connected to the control module (100), a signal transmitting module (300), a leveling detection module (400), and a leveling alignment module (500); The control module (100) is used to control the driving module (200) to start movement according to user instructions; The leveling detection module (400) is used to send the leveling signal to the control module (100); The leveling alignment module (500) is used to detect whether it is accurately aligned and positioned; The signal transmitting module (300) is used for the control to send corresponding control signals according to the instructions.

2. The cyclic transmission type medical data carrier management system according to claim 1, characterized in that: The signal transmitting module (300) comprises a first photoelectric switch which is electrically connected to the output end of the control module (100) and is used for transmitting the corresponding signal.

3. The cyclic transmission type medical data carrier management system according to claim 1, characterized in that: The control module (100) comprises a PLC system (310) and a mobile terminal APP (320); the PLC system (310) receives data from the mobile terminal APP (320), and the PLC system (310) controls the driving module (200) to start.

4. The cyclic transmission type medical data carrier management system according to claim 1, characterized in that: The control module (100) further comprises an access time recording subunit (330) for recording access to the data hard disk.

5. The cyclic transmission type medical data carrier management device according to claim 1, characterized in that: The invention comprises a cabinet (1), a partition plate (11) arranged horizontally at the bottom of the cabinet (1), a circulating hard disk transmission device (2) fixed on the cabinet (1), and a plurality of data boxes (3) fixed on the circulating hard disk transmission device (2); the partition plate (11) divides the cabinet (1) into an upper storage cavity (12) and a lower storage cavity (13); The circulating hard disk transmission device (2) comprises a driving motor (21) fixedly arranged on the outside of the cabinet (1) and having its output end extending through the side wall of the cabinet (1) to the inside of the cabinet (1), a first transmission wheel (22) arranged on the inner side wall of the cabinet (1) and connected to the output end of the driving motor (21), a transmission shaft (23) arranged directly below the first transmission wheel (22) and having its two ends rotatably connected to the side wall of the cabinet (1), a second transmission wheel (24) fixedly sleeved on the outer peripheral wall of the transmission shaft (23), and a transmission chain ( 25), a group of double-row sprockets (26) symmetrically fixedly sleeved on the outer peripheral walls of the left and right ends of the rotating shaft (23), a pair of semicircular guide platforms (20) respectively arranged above the double-row sprockets (26) on both sides and fixedly connected to the side walls of the cabinet (1), a double-row chain (27) respectively connecting the double-row sprockets (26) on one side and the guide platform (20) on the same side, a plurality of bearing components (28) fixedly arranged between the double-row chains (27) on the left and right sides at equal intervals, and a guide rail (29) fixedly arranged on the side wall of the cabinet (1) for guiding the moving direction of the bearing component (28); The bearing assembly (28) includes a set of triangular connecting plates (281) fixedly connected to the double-row chains (27) on both sides, a square frame top (282) fixed between the triangular connecting plates (281) on both sides, a support rod (283) fixed at the four corners of the bottom surface of the square frame top (282), a bottom plate (284) fixed at the bottom end of the connecting rod (286) (283), a bearing (286) fixed at the middle of the outer wall of the frame rod on the left and right sides of the square frame top (282), and a support rod (287) fixed at the bottom end of the connecting rod (287). 5) A connecting rod (286) fixedly mounted on the left and right sides of the outer wall of the guide rail (29) on the top (282) and bottom plate (284) of the square frame, and a guide pulley (287) fixedly mounted on the end of the connecting rod (286); the guide pulley (287) is slidably mounted in the guide rail (29), the triangular connecting plate (281) and the square frame are fixedly connected via a bearing (285), and the data box (3) is slidably mounted on the upper end surface of the bottom plate (284).

6. The cyclic transmission type medical data carrier management device according to claim 5, characterized in that: An X-axis assembly (2841) is provided on the upper end surface of the bottom plate (284) along its length direction, and the data box (3) is mounted on the X-axis assembly (2841).

7. The cyclic transmission type medical data carrier management device according to claim 6, characterized in that: The X-axis assembly (2841) is a linear module.

8. The cyclic transmission type medical data carrier management device according to claim 5, characterized in that: The number of the carrying components (28) is the same as that of the data boxes (3), both being 12.

9. The cyclic transmission type medical data carrier management device according to claim 5, characterized in that: The guide rail (29) is annular, and guide support rails (291) are provided on the left and right sides of the guide platform (20) and the double-row sprocket (26) corresponding to the guide rail (29).

10. The cyclic transmission type medical data carrier management device according to claim 5, characterized in that: The bottom of the cabinet body (1) is hingedly provided with a cabinet door (14).