Intelligent spore capture monitor for spore tray
By pre-installing the spore plate in the intelligent spore trapping monitor and packaging it with a coating, combined with the cooperation of the drive motor and limit detection mechanism, the accurate collection and analysis of spore bacteria is achieved, and the problem of poor analysis accuracy of spore bacteria in the existing technology is solved, and the detection accuracy is improved.
Patent Information
- Application Number
- CN202422042586.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-22
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-08-22
AI Technical Summary
The existing spore capture monitors have poor accuracy in spore pathogen analysis when used, resulting in the impact of food production security.
A smart spore capture monitor was designed. By pre-installing spore plates and packaging them with coatings, combined with the cooperation of the drive motor and limit detection mechanism, the transport of spore plates and spore collection is realized to ensure clear images of the shot and the accurate determination of the location of spore bacteria.
The detection accuracy of the smart spore trap spore capture monitor is improved, ensuring clear photography and accurate positioning, and solving the problem of inaccurate analysis of spore pathogens.
Smart Images

Figure CN223016837U_ABST
Abstract
Description
Technical Field
[0001] This utility model application relates to the technical field of spore capture monitors, specifically an intelligent spore-label plate spore capture monitor. Background Art
[0002] Spores are reproductive cells that can directly or indirectly develop into new individuals after separating from the parent. Existing spore capture monitors all analyze by means of spore collection and microscopic imaging. The analysis results will directly affect the next stage of agricultural disease prevention and control work. The accuracy of the analysis by the spore capture monitor has a great impact on food production safety.
[0003] Currently, the spore capture monitors on the market can be divided into two categories: intelligent slide spore capture monitors and intelligent slide-tape spore capture monitors. In the intelligent slide spore capture monitor, due to the limitation of the liquid dropping structure, the culture solution dropped on the slide may flow out to the slide pushing structure, resulting in sticking to the slide and causing the "card" phenomenon, which hinders the progress of the subsequent process and requires staff to go to the site for maintenance and arrangement. In the intelligent slide-tape spore capture monitor, since the culture solution cannot remain on the slide tape, the liquid dropping structure cannot be added, resulting in unclear subsequent photos and difficulty in identifying the types of spore pathogens. Moreover, the spore pathogen positions cannot be accurately determined at the collection position and the detection position, and the situation of collecting spore pathogens but not detecting them occurs from time to time. Therefore, the existing two types of spore capture monitors may both cause inaccurate analysis of spore pathogens. Content of the Utility Model
[0004] In order to solve the problem of poor accuracy in analyzing spore pathogens when the existing spore capture monitors are in use, the present utility model provides an intelligent spore-label plate spore capture monitor to solve the above problems.
[0005] To achieve the above object, the present utility model provides the following technical solutions:
[0006] An intelligent spore-label plate spore capture monitor, including a communication antenna, a housing top cover and a housing main body. The housing top cover is fixed on the top of the housing main body. One side of the top of the housing top cover is provided with a communication antenna, and a positioning antenna is arranged on the side of the communication antenna. A password lock is arranged on the upper part of the front side of the housing main body;
[0007] A display screen is arranged on the front side inside the housing main body, and a module whole machine is arranged inside the housing behind the display screen. A module overall fixing seat is arranged at the bottom of the module whole machine, and a control unit is arranged on the top of the module overall fixing seat. A variable-diameter channel is arranged inside the housing main body under the housing top cover;
[0008] A module shell is arranged inside the module whole machine, and a module side door is arranged on the side of the module shell, a line switching unit is arranged on the top surface of the module shell, and a protective coil is arranged on the top surface of the module shell in front of the line switching unit, a module inner core is arranged inside the module shell, an inner core skeleton is arranged at the lower part of the rear side of the module inner core, a loading device and a unloading device are symmetrically arranged on the front side of the module inner core, a collecting device is arranged on the module inner core between the loading device and the unloading device, a guide idler is arranged on the lower side of the loading device and the unloading device, a film peeling idler is arranged on the module inner core on the side of the guide idler on the loading device side, a film peeling device is arranged on the module inner core between the film peeling idler and the guide idler, a camera device is arranged on the module inner core on the rear side of the collecting device, a driver is arranged on the module inner core above the inner core skeleton, a circuit board is arranged on the module inner core on the side of the driver, and a carrier guide groove is arranged between the two guide idlers.
[0009] Furthermore, the outer surface of the shell body on four sides of the variable diameter channel is evenly spaced with a plurality of ventilation holes for spores to enter, and the variable diameter channel and the inner core of the module are connected by a steel wire hose to form a spore collection closed loop.
[0010] Furthermore, the line switching unit has built-in USB female socket, DB female socket, P terminal and P terminal, wherein one end of the USB female socket is connected to the camera in the camera device and the other end is connected to the display screen, one end of the DB female socket is connected to the circuit board and the other end is connected to the display screen, the P terminal is the power supply end of the module, and P is connected to the display screen and the password lock to form a closed circuit loop.
[0011] Furthermore, the feeding device is a spore mark plate initial installation position mechanism, the film peeling device is a spore mark belt roll driving mechanism in the spore mark plate, the collecting device is a spore collecting mechanism near the equipment, and the camera device is a spore photo analysis mechanism.
[0012] Furthermore, the feeding device is fixedly sleeved on the damping shaft, and the damping shaft is rotatably connected to the inner core of the module through a bearing fixing seat, so as to prevent the feeding device from rotating without driving.
[0013] Furthermore, the rear sides of the film peeling device and the material unloading device are fixedly connected to the output end of the motor, and the motor is installed on the rear side of the inner core of the module.
[0014] Furthermore, a fill light is arranged at the camera lens of the camera device, and a 10x objective lens is arranged at the bottom of the camera lens of the camera device for magnifying the collected spores.
[0015] Compared with the prior art, the beneficial effects of the utility model are:
[0016] In the present utility model, by pre-installing a spore label plate smeared with a culture solution in a spore label tray and then encapsulating it with a film to form a spore label tray similar to a glass slide, under the coordinated drive of a driving motor and a limit detection mechanism, the spore label plate in the spore label tray is transported to a collection location to collect spores and a detection position to capture images, solving the problem of poor accuracy in spore pathogen analysis when using existing intelligent spore label tray spore capture monitors, greatly improving the accuracy during the detection of the intelligent spore label tray spore capture monitor, and the device also has advantages such as clear photographing, accurate positioning, and smooth operation of the whole machine. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0018] Figure 1 is a front view schematic diagram of the structure of a spore capture monitor according to an embodiment of the present application;
[0019] Figure 2 is Figure 1 a front view schematic diagram of the internal structure of the spore capture monitor in the shown embodiment;
[0020] Figure 3 is Figure 1 a front view schematic diagram of the structure of the module housing in the shown embodiment;
[0021] Figure 4 is Figure 1 a front view schematic diagram of the internal structure of the module housing in the shown embodiment;
[0022] Figure 5 is Figure 1 a front view schematic diagram of the drive connection structure in the shown embodiment;
[0023] Figure 6 is Figure 1 a front view schematic diagram of the damping rotating shaft connection structure in the shown embodiment.
[0024] The meanings of the reference numerals in the figure are as follows: 1. Communication antenna; 2. Positioning antenna; 3. Shell top cover; 4. Shell body; 5. Password lock; 6. Variable diameter channel; 7. Display screen; 8. Module overall fixing seat; 9. Control unit; 10. Module; 11. Module shell; 12. Module side door; 13. Line switching unit; 14. Guard wire; 15. Module inner core; 16. Inner core skeleton; 17. Loading device; 18. Guide idler wheel; 19. Film peeling idler wheel; 20. Film peeling device; 21. Carrier guide groove; 22. Unloading device; 23. Camera device; 24. Collection device; 25. Driver; 26. Circuit board; 27. Damping shaft; 28. Bearing fixing seat. DETAILED DESCRIPTION
[0025] In order to make the purpose, features, and advantages of the present application more obvious and easy to understand, the technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the drawings in the embodiments of the present application. Obviously, the embodiments described below are only part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of this application.
[0026] Reference Figures 1-6 , an intelligent spore marker disc spore capture monitoring instrument, comprising a communication antenna 1, a shell top cover 3 and a shell body 4, the shell top cover 3 is fixed on the top of the shell body 4, a communication antenna 1 is arranged on one side of the top of the shell top cover 3, and a positioning antenna 2 is arranged on the side of the communication antenna 1, and a password lock 5 is arranged on the upper front side of the shell body 4;
[0027] A display screen 7 is provided at the front side of the housing body 4, and a module assembly 10 is provided inside the rear side of the display screen 7, a module assembly fixing seat 8 is provided at the bottom of the module assembly 10, and a control unit 9 is provided at the top of the module assembly fixing seat 8, and a variable diameter channel 6 is provided inside the housing body 4 below the housing top cover 3;
[0028] The module housing 11 is provided inside the module whole machine 10, and a module side door 12 is provided on the side of the module housing 11, a line switching unit 13 is provided on the top surface of the module housing 11, and a protective coil 14 is provided on the top surface of the module housing 11 in front of the line switching unit 13, a module inner core 15 is provided inside the module housing 11, an inner core skeleton 16 is provided at the lower rear part of the module inner core 15, a feeding device 17 and a feeding device 22 are symmetrically provided on the front side of the module inner core 15, the storage of the spore label tape coating and the storage of the spore label tape do not affect each other, and a feeding device 17 and a feeding device 22 are provided on the module inner core 15 between the feeding device 17 and the feeding device 22. There is a collecting device 24, a guide idler wheel 18 is arranged on the lower side of the feeding device 17 and the unloading device 22, a film peeling idler wheel 19 is arranged on the module core 15 on the side of the guide idler wheel 18 on the feeding device 17 side, a film peeling device 20 is arranged on the module core 15 between the film peeling idler wheel 19 and the guide idler wheel 18, a camera device 23 is arranged on the module core 15 on the rear side of the collecting device 24, a driver 25 is arranged on the module core 15 above the core skeleton 16, and a circuit board 26 is arranged on the module core 15 on the side of the driver 25, and a carrier guide groove 21 is arranged between the two guide idlers 18.
[0029] Specifically, the outer surface of the shell body 4 on the four sides of the variable diameter channel 6 is evenly spaced with a number of ventilation holes for the spores to enter. The variable diameter channel 6 and the module inner core 15 are connected by a steel wire hose to form a spore collection closed loop. The line switching unit 13 has built-in USB female socket, DB9 female socket, 4P terminal and 3P terminal, wherein one end of the USB female socket is connected to the camera in the camera device 23 and the other end is connected to the display screen 7, one end of the DB9 female socket is connected to the circuit board 26 and the other end is connected to the display screen 7, the 3P terminal is the power supply end of the module, and the 4P is connected to the display screen 7 and the password. Lock 5, forming a closed circuit loop, the feeding device 17 is the initial installation position mechanism of the spore mark plate, the film peeling device 20 is the spore mark belt roll driving mechanism in the spore mark plate, the collecting device 24 is the spore collecting mechanism near the equipment, the camera device 23 is the spore photography and analysis mechanism, the feeding device 17 is fixedly sleeved on the damping shaft 27, and the damping shaft 27 is rotatably connected to the module inner core 15 through the bearing fixing seat 28, which is used to prevent the feeding device 17 from rotating without driving. The rear sides of the film peeling device 20 and the unloading device 22 are fixedly connected to the motor output end, and the motor is installed at the lower rear side of the module inner core 15. Each motor accurately controls the corresponding displacement distance, and the movement of the motor will not cause the displacement of the spore mark plate in the shooting area. A fill light is provided at the camera lens of the camera device 23, and a 10-fold objective lens is provided at the bottom of the camera lens of the camera device 23 to magnify the collected spores.
[0030] Working principle: First, pre-install the spore label disc on the feeding device 17. Stretch the spore label tape in the spore label disc in sequence and finally fix it on the spore label disc chuck of the discharging device 22. At the same time, fix the film covering in the spore label disc on the rotating shaft of the film uncovering device 20 in sequence. The feeding device 17 is equipped with a damping rotating shaft 27 inside to avoid affecting positioning. After the equipment is powered on, the motor at the rear of the film uncovering device 20 runs, the film covering moves, and the spore label tape and the spore label board inside it move to the collection position accordingly. At this time, the imaging device 23 is at the initial position. The spore collection fan of the collection device 24 starts to collect the spore pathogens in the nearby air onto the spore label board. After collecting for a fixed time, the fan is turned off and the next process is entered. The fill light is turned on, and the imaging device 23 starts to work. The module slide table works to drive the microscope to find the best imaging and photographing position for taking pictures. After taking pictures, the imaging device 23 returns to its original position, and the fill light is turned off. The motor of the discharging device 22 runs to recycle the spore label tape and make it in a taut state. Thus, all processes of this work station are completed.
[0031] For those skilled in the art, it is obvious that this application is not limited to the details of the above exemplary embodiments, and without departing from the spirit or basic characteristics of this application, this application can be implemented in other specific forms. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-restrictive. The scope of this application is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the same elements of the claims are intended to be included in this application. Any reference signs in the claims should not be regarded as limiting the claimed rights.
[0032] As mentioned above, the above embodiments are only used to illustrate the technical solutions of this application, rather than to limit it; although this application has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements for some of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of this application.
Claims
1. An intelligent spore marker spore capture monitoring instrument, characterized in that: It comprises a communication antenna (1), a housing top cover (3) and a housing body (4), wherein the housing top cover (3) is fixed to the top of the housing body (4), a communication antenna (1) is arranged on one side of the top of the housing top cover (3), and a positioning antenna (2) is arranged on the side of the communication antenna (1), and a password lock (5) is arranged on the upper front side of the housing body (4); A display screen (7) is arranged on the front side of the housing body (4), and a module unit (10) is arranged on the rear side of the display screen (7); a module unit fixing seat (8) is arranged on the bottom of the module unit (10), and a control unit (9) is arranged on the top of the module unit fixing seat (8); and a variable diameter channel (6) is arranged on the inside of the housing body (4) below the housing top cover (3); The module complete machine (10) is provided with a module housing (11) inside, and a module side door (12) is provided on the side of the module housing (11); a line switching unit (13) is provided on the top surface of the module housing (11), and a protective coil (14) is provided on the top surface of the module housing (11) in front of the line switching unit (13); a module inner core (15) is provided inside the module housing (11); an inner core frame (16) is provided at the lower rear side of the module inner core (15); a loading device (17) and a unloading device (22) are symmetrically provided on the front side of the module inner core (15); a collecting device (24) is provided on the module inner core (15) between the loading device (17) and the unloading device (22); A guide idler wheel (18) is arranged at the lower side of the feeding device (17) and the unloading device (22); a film peeling idler wheel (19) is arranged on the module inner core (15) on the side of the guide idler wheel (18) on the feeding device (17); a film peeling device (20) is arranged on the module inner core (15) between the film peeling idler wheel (19) and the guide idler wheel (18); a camera device (23) is arranged on the module inner core (15) on the rear side of the collecting device (24); a driver (25) is arranged on the module inner core (15) above the inner core skeleton (16); and a circuit board (26) is arranged on the module inner core (15) on the side of the driver (25); and a carrier guide groove (21) is arranged between the two guide idler wheels (18).
2. The intelligent spore marker spore capture monitoring instrument according to claim 1, characterized in that: The outer surface of the shell body (4) on the four sides of the variable diameter channel (6) is provided with a plurality of vents at equal intervals for spores to enter. The variable diameter channel (6) and the module inner core (15) are connected by a steel hose to form a spore collection closed loop.
3. The intelligent spore marker spore capture monitoring instrument according to claim 1, characterized in that: The line switching unit (13) has a built-in USB female socket, a DB9 female socket, a 4P terminal block and a 3P terminal block, wherein one end of the USB female socket is connected to a camera in the camera device (23) and the other end is connected to the display screen (7), one end of the DB9 female socket is connected to a circuit board (26) and the other end is connected to the display screen (7), the 3P terminal block is a module power supply end, and the 4P terminal block is connected to the display screen (7) and the password lock (5), forming a closed circuit loop.
4. The intelligent spore marker spore capture monitoring instrument according to claim 1, characterized in that: The feeding device (17) is a mechanism for initially installing the spore marker plate, the film peeling device (20) is a mechanism for driving the spore marker belt roll in the spore marker plate, the collecting device (24) is a mechanism for collecting spores near the device, and the camera device (23) is a mechanism for photographing and analyzing spores.
5. The intelligent spore marker spore capture monitoring instrument according to claim 1, characterized in that: The feeding device (17) is fixedly sleeved on the damping shaft (27), and the damping shaft (27) is rotatably connected to the module inner core (15) via a bearing fixing seat (28) to prevent the feeding device (17) from rotating when not driven.
6. The intelligent spore marker spore capture monitoring instrument according to claim 1, characterized in that: The rear sides of the film peeling device (20) and the material unloading device (22) are fixedly connected to the output end of the motor, and the motor is installed on the rear side of the module inner core (15).
7. The intelligent spore marker spore capture monitoring instrument according to claim 1, characterized in that: A fill light is arranged at the camera lens of the camera device (23), and a 10x objective lens is arranged at the bottom of the camera lens of the camera device (23) for magnifying the collected spores.