Intelligent storage and warehousing system for photomasks
By introducing intelligent control of sensors and indicator lights in the storage system, the problem of low mask search efficiency in the prior art is solved, and fast and accurate mask positioning is achieved.
Patent Information
- Application Number
- CN202421741712.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-19
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-07-19
AI Technical Summary
Existing storage shelves are difficult to quickly find the required goods when a large amount of goods is stacked. Although the height can be adjusted, there is still a problem of inefficient search efficiency.
An intelligent storage warehousing system for optical masks is designed, including housing components, storage components, display control components and control modules. The presence of the optical mask is detected through the sensor and the indicator light is controlled to light up, and the display information is displayed on the display screen to achieve rapid positioning.
Through the coordination of sensors and indicator lights, the search efficiency of the mask is significantly improved, allowing users to quickly find the specified mask, improving the convenience and accuracy of the search.
Smart Images

Figure CN223238669U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of storage devices, in particular to a storage system for intelligent storage of photomasks. Background Art
[0002] Warehouse shelves are storage devices. They are based on the six basic functions of logistics: packaging, transportation, loading and unloading, sorting, and information management. With the continuous development of the warehouse shelf industry, more and more industries and enterprises have used warehouse shelves, and more and more enterprises have entered the warehousing industry to serve friends from all walks of life. Shelves are one of the main facilities of warehousing. It can be said that shelves are an indispensable component of modern industrial warehouses, logistics centers, and distribution centers. Warehousing in the prior art generally involves stacking goods on shelves, which makes it difficult for people to quickly find the desired goods when searching. For example, a warehouse shelf disclosed in patent number CN202210157729.4, although the warehouse shelf cooperates with the upper semicircular fixing plate and the lower semicircular fixing plate, when the device is installing the upper semicircular fixing plate and the lower semicircular fixing plate, the spring buckle is inserted into the inner part of the outer groove of the semicircular fixing plate to complete the stability between the upper semicircular fixing plate and the lower semicircular fixing plate, thereby improving the stability of the device. By cooperating with the movable rod and the movable baffle, when the height between the storage plates needs to be adjusted, the threaded rod can be rotated so that the threaded rod is engaged with the inner thread groove, thereby adjusting the position of the movable rod and the movable baffle so that the movable rod and the movable baffle no longer block the position of the straight-shaped fixed plate, thereby lowering the straight-shaped fixed plate to adjust the position of the storage plates. Although the shelves in the prior art can be moved for adjustment, it is difficult to quickly find the desired items when a large amount of goods are stacked on the shelves. Utility Model Content
[0003] In view of this, the present invention provides a system for intelligent storage of photomasks to solve the above technical problems.
[0004] A system for intelligent storage and warehousing of photomasks is provided for storing photomasks. The system comprises a housing assembly, at least one storage assembly mounted on the housing assembly, a display control assembly mounted on the housing assembly, and a control module connected to the display control assembly. The storage assembly comprises a base plate, a plurality of spacers spaced apart on the base plate, a plurality of sensors mounted on the base plate, and a plurality of indicator lights mounted on the base plate. The base plate comprises a first base plate and a second base plate mounted perpendicular to the first base plate. The first base plate is provided with a plurality of detection holes, each located between two adjacent spacers. The second base plate is provided with a plurality of light holes, each corresponding to the detection holes. The spacers are arranged in a straight line, with the arrangement of the spacers parallel to the arrangement of the detection holes. The sensors are mounted within the detection holes and are used to detect the presence of a photomask. The indicator lights are mounted within the light holes. The control module is used to store recorded information and, based on the sensors, to determine whether a photomask is present and control the corresponding indicator lights to illuminate or extinguish.
[0005] Furthermore, the shell assembly includes a base plate, two side plates arranged on the base plate, at least one partition plate arranged on the base plate, two sliding doors arranged on the base plate, an electric control box shell arranged on the side plates, and at least four universal wheels arranged at the bottom of the base plate.
[0006] Furthermore, the side panels are located at both ends of the bottom panel, the planes of the side panels are perpendicular to the plane of the bottom panel, one end of the side panel is connected to the bottom panel, and the other end is provided with the electric control box shell.
[0007] Furthermore, the partition is located between the two side plates and the planes on which they are located are parallel to each other. The partition and the side plates are spaced apart from each other, and the partition is hollow.
[0008] Furthermore, the storage assembly also includes a protective cover arranged on the substrate, the protective cover is located at the bottom of the substrate, one end of the protective cover is connected to the second substrate, and the other end is connected to the bottom surface of the first substrate.
[0009] Furthermore, one side of the first substrate is connected to the first substrate of another storage assembly and the angle between the two is an obtuse angle.
[0010] Furthermore, a stop bar is provided at the connection between the two first substrates.
[0011] Furthermore, the display control component includes a display screen and a barcode scanner installed on the side panel, the barcode scanner is used to read the barcode on the mask and transmit it to the control module, and the display screen is used to display the information read and organized by the control module.
[0012] Compared with the prior art, the utility model provides a base plate for the intelligent storage and warehousing system for light masks, on which a plurality of partition bars and a plurality of detection holes are arranged at intervals. The partition bars divide the area for placing the light masks, and a sensor and an indicator light are provided in each area. The sensor is arranged in the detection hole and is used to detect whether there is a light mask in the corresponding position. The indicator light is controlled by the control module and lights up when it is necessary to enter or take out, serving as an indication. The control module determines whether goods are stored in different positions based on the information transmitted by the sensor, and selects an indicator light corresponding to an area where no light mask is stored, which lights up and then goes out after storage. At the same time, the read information can be sorted and displayed on the display screen, so that the user can find the goods easily. When a specific light mask needs to be taken, the desired light mask can be directly selected according to the details displayed on the display screen, such as by entering the number or model. The control module will determine the position based on the entered information and light up the corresponding indicator light. The user can directly find the goods, which is more convenient and quick. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 This is a structural diagram of a mask intelligent storage system provided by the utility model.
[0014] Figure 2 for Figure 1 Structural diagram of the intelligent storage warehouse system for photomasks without the electrical control box shell and sliding door.
[0015] Figure 3 for Figure 1 A schematic structural diagram of the storage components of the intelligent storage and warehousing system for masks.
[0016] Figure 4 for Figure 1 Schematic diagram of the exploded structure of the storage components of the intelligent storage and warehousing system for masks. DETAILED DESCRIPTION
[0017] The following is a further detailed description of specific embodiments of the present invention. It should be understood that the description of the embodiments of the present invention herein is not intended to limit the scope of protection of the present invention.
[0018] like Figures 1 to 4, which is a schematic structural diagram of the intelligent storage and warehousing system for photomasks provided by the present invention. The intelligent storage and warehousing system for photomasks includes a housing assembly 10, at least one storage assembly 20 disposed on the housing assembly 10, a display control assembly 30 disposed on the housing assembly 10, and a control module 40 connected to the display control assembly 30. It is conceivable that the intelligent storage and warehousing system for photomasks also includes other functional modules, such as assembly components and installation components, etc., which are well known to those skilled in the art and will not be described in detail here.
[0019] The housing assembly 10 includes a base plate 11, two side plates 12 arranged on the base plate 12, at least one partition 13 arranged on the base plate 11, two sliding doors 14 arranged on the base plate 11, an electric control box shell 15 arranged on the side plate 12, and at least four universal wheels 16 arranged at the bottom of the base plate 11.
[0020] Two side panels 12 are respectively provided at both ends of the bottom plate 11, and two sliding doors 14 are respectively provided on both sides of the bottom plate 11. The side panels 12 are located at both ends of the bottom plate 11, and the plane of the side panels 12 is perpendicular to the plane of the bottom plate 11. One end of the side panel 12 is connected to the bottom plate 11, and the other end is provided with the electric control box shell 15. The partition 13 is located between the two side panels 12 and their planes are parallel to each other. The partition 13 and the side panels 12 are spaced apart from each other to separate out a space for setting up the storage assembly 20. In this embodiment, two partitions 13 are provided to separate out three storage spaces. The partition 13 is hollow so that it can accommodate wires. The sliding door 14 is a multi-section sliding door, and the number of sliding doors is the same as the storage space, so that any storage space can be opened separately. The interior of the electric control box shell 15 is used to accommodate the power supply assembly, which should be existing technology and will not be described in detail. The universal wheels 16 are provided at the four corners of the bottom of the base plate 11, thereby enabling the housing assembly 10 to be movable and improving convenience. The housing assembly 10 is used to support the storage assembly 20. Therefore, the housing assembly 10 is provided with various functional structures, such as screws, bolts, clamps, etc., to complete the installation and assembly of the above functional modules. These can be provided according to actual needs and will not be described in detail here.
[0021] The storage assembly 20 includes a base plate 21 , a plurality of partition rods 22 spaced apart on the base plate 21 , a plurality of sensors 23 disposed on the base plate 21 , a plurality of indicator lights 24 disposed on the base plate 21 , and a protective cover 25 disposed on the base plate 21 .
[0022] The substrate 21 includes a first substrate 211 and a second substrate 212 vertically arranged on the first substrate 211. The two ends of the first substrate 211 are respectively connected to the partition 13 and the side plate 12, so that the storage component 20 is fixed in the shell component 10. A plurality of the storage components 20 are arranged vertically in the shell component 10, thereby forming a multi-layer space for storage. One side of the first substrate 211 is connected to the first substrate 211 of another storage component 20 and the angle between the two is an obtuse angle, so that the first substrate 211 and the first substrate 211 of another storage component 20 are in a V-shaped structure with a large angle. When the light mask is placed, there will be a certain slope, so that the light mask slides toward the center. Preferably, in order to block the light mask from sliding inward, a stop bar 26 is also provided at the connection between the two first substrates 211 to block the light mask from sliding. The first substrate 211 is provided with a plurality of detection holes 213, each located between two adjacent partition bars 22 and arranged in a straight line. The detection holes 213 are used to accommodate the sensors 23. The second substrate 212 is provided with a plurality of lamp holes 214, each arranged in a straight line. One lamp hole 214 is located between two adjacent partition bars 22, and the positions of the lamp holes 214 correspond one-to-one with the positions of the detection holes 213.
[0023] The partition bars 22 are U-shaped and arranged in a straight line. The arrangement direction of the partition bars 22 is parallel to the arrangement direction of the detection holes 213. The partition bars 22 are used to separate the placed photomasks.
[0024] The sensor 23 is disposed in the detection hole 213 and is used to detect whether there is a light shield at the corresponding position. The detection result of the sensor 23 is transmitted to the control module 40. The sensor 23 can be an infrared sensor.
[0025] The indicator light 24 is disposed within the lamp hole 214 and is controlled by the control module 40. It illuminates when data entry or retrieval is required, serving as an indication. The indicator light 24 is connected to the power supply assembly within the electrical control box housing 15 via a wire. The wire passes along the first substrate 211 into the hollow partition 13, and then along the partition 13 into the electrical control box housing 15.
[0026] The protective cover 25 is located at the bottom of the substrate 21, with one end of the protective cover 25 connected to the second substrate 212 and the other end connected to the bottom surface of the first substrate 211. The protective cover 25 can cover the wires connected to the indicator light 24 to protect and bundle the wires.
[0027] The display control assembly 30 includes a display screen 31 and a barcode scanner 32 mounted on the side panel 12. The display screen 31 has a built-in processor, and both the display screen 31 and the barcode scanner 32 are connected to the control module 40. The control module 40 is used to store the information recorded by the barcode scanner 40 and determine whether a light mask is placed based on the sensor 23. When a light mask is placed, the barcode scanner 32 reads the barcode on the light mask and transmits it to the control module 40. The control module 40 determines whether goods are stored in different locations based on the information transmitted by the sensor 23, and selects an indicator light 24 corresponding to an area without a light mask, which lights up and then turns off after the light mask is placed. The control module 40 also organizes the read information and displays it on the display screen 31, making it easier for users to find goods. When a specific light mask is needed, users can directly select the desired light mask based on the details displayed on the display screen 31, such as by entering a number or model number. The control module 40 will determine the location based on the recorded information and illuminate the corresponding indicator light 24, allowing users to directly find the goods, making it more convenient and quick. It is conceivable that the control module 40 can be executed and completed by a compiled program, and as long as the technical personnel in this field know the working principle of the utility model, the program can be compiled using existing computer programs such as VB, VC, etc. to execute the corresponding program. Therefore, these computer programs themselves should be existing technologies.
[0028] Compared with the prior art, the substrate 21 of the intelligent storage system for photomasks provided by the present invention is provided with a plurality of partitions 22 and a plurality of detection holes 213 at intervals. The partitions 22 divide the areas for placing photomasks, and each area is provided with a sensor 23 and an indicator light 24. The sensor 23 is arranged in the detection hole 213 and is used to detect whether there is a photomask placed in the corresponding position. The indicator light 24 is controlled by the control module 40 and lights up when it is necessary to enter or remove the goods, serving as an indication. The control module 40 determines whether goods are stored in different locations based on the information transmitted by the sensor 23, and selects an indicator light 24 corresponding to an area where no photomask is stored, lights it up, and then turns it off after storage. At the same time, the read information can be sorted and displayed on the display screen 31, making it easier for users to find goods. When a specific photomask needs to be taken, the user directly selects the desired photomask according to the details displayed on the display screen 31, such as entering the number or model. The control module 40 will determine the location based on the entered information and light up the corresponding indicator light 24, allowing users to directly find the goods, which is more convenient and quick.
[0029] The above are only preferred embodiments of the present invention and are not intended to limit the scope of protection of the present invention. Any modifications, equivalent replacements or improvements within the spirit of the present invention are included in the scope of the claims of the present invention.
Claims
1. A system for intelligent storage of photomasks, wherein the system is used for storing photomasks, and is characterized by: The intelligent storage and warehousing system for photomasks includes a shell component, at least one storage component arranged on the shell component, a display control component arranged on the shell component, and a control module connected to the display control component. The storage component includes a substrate, a plurality of partition rods arranged at intervals on the substrate, a plurality of sensors arranged on the substrate, and a plurality of indicator lights arranged on the substrate. The substrate includes a first substrate and a second substrate arranged vertically on the first substrate. The first substrate is provided with a plurality of detection holes, and the detection holes are located between two adjacent partition rods. The second substrate is provided with a plurality of lamp holes, and the positions of the lamp holes correspond one-to-one to the positions of the detection holes. The plurality of partition rods are arranged in a straight line, and the arrangement direction of the plurality of partition rods is parallel to the arrangement direction of the detection holes. The sensor is arranged in the detection hole and is used to detect whether a photomask is placed. The indicator light is arranged in the lamp hole. The control module is used to store the entered information and at the same time judge whether a photomask is placed according to the sensor and control the corresponding indicator light to light up or go out.
2. The intelligent storage system for photomasks according to claim 1, wherein: The housing assembly includes a base plate, two side plates arranged on the base plate, at least one partition plate arranged on the base plate, two sliding doors arranged on the base plate, an electric control box shell arranged on the side plates, and at least four universal wheels arranged at the bottom of the base plate.
3. The intelligent storage system for photomasks according to claim 2, wherein: The side panels are located at both ends of the bottom panel, the planes of the side panels are perpendicular to the plane of the bottom panel, one end of the side panels is connected to the bottom panel, and the other end is provided with the electric control box shell.
4. The intelligent storage system for photomasks according to claim 2, wherein: The partition is located between the two side plates and the planes on which they are located are parallel to each other. The partition is spaced apart from the side plates and is hollow.
5. The intelligent storage system for photomasks according to claim 1, wherein: The storage assembly further includes a protective cover arranged on the substrate. The protective cover is located at the bottom of the substrate. One end of the protective cover is connected to the second substrate, and the other end is connected to the bottom surface of the first substrate.
6. The intelligent storage system for photomasks according to claim 1, wherein: One side of the first substrate is connected to the first substrate of another storage assembly, and the angle between the two is an obtuse angle.
7. The intelligent storage system for photomasks according to claim 1, wherein: A stop bar is further provided at the connection between the two first substrates.
8. The intelligent storage system for photomasks according to claim 1, wherein: The display control assembly includes a display screen and a barcode scanner mounted on the side panel. The barcode scanner is used to read the barcode on the mask and transmit it to the control module. The display screen is used to display the information read and organized by the control module.
Citation Information
Patent Citations
Storage shelf
CN114313721A