Microwave oven with code scanning function

By tilting the scanning lens on the microwave oven and equipping it with a camera and guidance positioning component, the safety hazards and accuracy issues in the existing microwave oven scanning process are solved, achieving efficient and convenient scanning operation, improving user experience and equipment reliability.

CN223624609UActive Publication Date: 2025-12-02GUANGDONG GALANZ ENTERPRISES CO LTD +2
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Patent Information

Application Number
CN202423291134.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-12-02
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Existing microwave ovens with barcode scanning functions have safety hazards in their design, affect scanning accuracy, and have high maintenance costs. In particular, when food contains water or soup, it is easy for soup to spill or the scanner lens to become contaminated, affecting user experience and equipment reliability.

Method used

Design a microwave oven with a barcode scanning function. The barcode scanning lens is obliquely arranged on the panel component above the door component, and is equipped with a camera component and a guide positioning component. The lens bracket is detachable, the mounting bracket is adjustable in angle, and the protective cover provides all-round protection. The structural layout of the barcode scanning component is optimized.

Benefits of technology

It improves the accuracy and stability of QR code scanning, simplifies the operation process, reduces maintenance costs, enhances user experience and device usability, and ensures the flexibility and security of the QR code scanning process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of cooking electric appliances, and provides a microwave oven with a code scanning function, the microwave oven with the code scanning function comprises a main body structure and a door body assembly, the door body assembly can be rotatably arranged at the front end of the main body structure, a panel assembly is arranged above the door body assembly, and the panel assembly is arranged above the main body structure. A scanning assembly is arranged at the position, close to the left end or the right end, of the panel assembly, and a code scanning lens in the scanning assembly is obliquely arranged towards the front lower portion. According to the microwave oven with the code scanning function, the problem that the lens is shielded or polluted by the door body is effectively avoided by optimizing the structural layout and the arrangement form of the scanning assembly with the code scanning function, so that the accuracy, the stability and the reliability of code scanning are improved.
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Description

Technical Field

[0001] This utility model relates to the field of cooking appliance technology, and in particular to a microwave oven with a barcode scanning function. Background Technology

[0002] With the rapid development of modern technology, microwave ovens, as an important component of kitchen appliances, are becoming increasingly diversified in function and their level of intelligence is constantly improving. Against this backdrop, microwave ovens with barcode scanning capabilities are gradually becoming emerging products in the market. These microwave ovens can automatically identify food information by scanning barcodes on food packaging, and then automatically adjust cooking parameters to achieve intelligent cooking, greatly facilitating the user experience. However, existing microwave ovens with scanning capabilities still have some design flaws that affect the user experience and product reliability.

[0003] Currently, microwave ovens with scanning functions on the market offer a variety of scanner installation locations and scanning methods. One common design places the scanner on the front of the right-side panel of the microwave oven. While this design offers some convenience to users, in practice, when food contains water or broth, the user needs to stand the food upright for scanning. This method can easily lead to spills, contaminating the microwave oven's interior and potentially creating safety hazards. Furthermore, the user's hand position and the stability of the food can also affect the scanning success rate.

[0004] Another design mounts the scanner on top of the microwave oven, either on the left, right, or center. While this design avoids spills, steam and fumes can easily contaminate the scanner lens when the door is opened after cooking, leading to inaccurate scanning. Since steam and fumes are unavoidable byproducts of microwave cooking, this design can cause the scanner lens to become blurry in practical use, affecting scanning accuracy. Furthermore, users need to clean the scanner lens frequently, increasing maintenance costs, and the lens is easily scratched during cleaning, further impacting scanning performance.

[0005] Existing microwave ovens with scanning functions mainly have the following design problems:

[0006] 1. Safety Hazard: The design of the front right panel makes it easy for liquid to spill when scanning food with water or soup, causing internal contamination of the microwave oven and potential safety hazards.

[0007] 2. Scanning accuracy is affected: After cooking, the top position design can cause the scanner lens to become blurry due to water vapor and oil fumes, resulting in inaccurate scanning and affecting the user experience.

[0008] 3. Increased maintenance costs: The microwave oven with its top-mounted design requires users to clean the scanner lens frequently, increasing maintenance costs. Furthermore, the lens is prone to scratches, further reducing the scanning effect.

[0009] Existing microwave ovens with scanning functions have shortcomings in the design location and scanning method of the scanning module, which may lead to problems such as inconvenience in operation, food and soup leakage, and lens contamination during use. These problems not only affect the practicality of the equipment but also reduce user satisfaction. Therefore, it is necessary to improve and optimize these aspects to provide products that better meet user needs. Utility Model Content

[0010] In view of this, the present invention proposes a microwave oven with barcode scanning function to solve the technical problem of the lack of intelligence and convenience in the use of existing microwave ovens. In particular, when dealing with food packaging with barcodes or QR codes, users usually need additional barcode scanning equipment to obtain information, which is cumbersome and inefficient.

[0011] To achieve the above objectives, the technical solution of this utility model is implemented as follows:

[0012] A microwave oven with a barcode scanning function includes a main structure and a door assembly. The door assembly is rotatably mounted on the front end of the main structure. A panel assembly is disposed above the door assembly. A scanning assembly is disposed near the left or right end of the panel assembly. The barcode scanning lens in the scanning assembly is arranged in a forward and downward angle.

[0013] Furthermore, the scanning lens includes a lens bracket, on which a camera component is mounted, the camera component being used for image scanning and data acquisition.

[0014] Furthermore, a guide positioning component is also provided on the lens bracket, which emits light through a light emitting device for positioning guidance.

[0015] Furthermore, the panel assembly includes a support body, the scanning assembly includes a barcode scanning module, the barcode scanning module includes a mounting bracket, the mounting bracket is detachably fixed to the support body, and the barcode scanning lens is mounted on the mounting bracket.

[0016] Furthermore, the angle between the scanning direction of the scanning lens and the vertical direction is α, and the value of α ranges from 15° to 75°.

[0017] Furthermore, the mounting bracket includes a mounting base plate and two mounting side plates, the two mounting side plates being disposed on opposite sides of the mounting base plate, a first connecting plate being disposed at one end of the mounting base plate, the first connecting plate being arranged at an inclination to the mounting base plate, and a first connecting hole being disposed on the first connecting plate.

[0018] Furthermore, a control module is provided on the mounting bracket, the barcode scanning lens is located near the front end of the mounting base plate, the control module is located near the rear end of the mounting base plate, and the first connecting plate is located at the rear end of the mounting base plate.

[0019] Furthermore, an outwardly facing connecting flange is provided at the front end of the mounting side plate, the connecting flange being used to connect the protective lens.

[0020] Furthermore, a protective cover is provided on the support body. The protective cover is wrapped around the outside of the scanning module. The scanning module can be inserted into the protective cover from bottom to top and detachably connected to the support body.

[0021] Furthermore, the upper side of the protective cover is configured as a front cover plate parallel to the mounting base plate, and the front cover plate is arranged in a forward inclined shape from top to bottom.

[0022] Compared with existing technologies, the microwave oven with barcode scanning function described in this utility model has the following advantages:

[0023] (1) The microwave oven with barcode scanning function described in this utility model effectively avoids the problem of the lens being blocked or contaminated by the door by optimizing the structural layout and setting of the scanning component with barcode scanning function, thereby improving the accuracy, stability and reliability of barcode scanning.

[0024] (2) The microwave oven with barcode scanning function described in this utility model has a tilted design of the barcode scanning lens and a detachable mounting bracket, which makes the barcode scanning process more flexible and accurate. Users can easily align the food with the barcode scanning lens for quick scanning, ensuring accurate reading of barcode information. This solves the angle and position limitations that traditional microwave ovens may encounter when scanning, and improves the overall operating experience. Attached Figure Description

[0025] The accompanying drawings, which form part of this utility model, are used to provide a further understanding of the utility model. The illustrative embodiments of the utility model and their descriptions are used to explain the utility model and do not constitute an undue limitation of the utility model. In the drawings:

[0026] Figure 1 This is a schematic diagram of the structure of a microwave oven with barcode scanning function for scanning cooked food, as described in an embodiment of this utility model.

[0027] Figure 2 This is an exploded view of the scanning component in the microwave oven with barcode scanning function as described in this embodiment of the invention, assembled on the supporting body.

[0028] Figure 3 This is a schematic diagram of the structure of the barcode scanning module described in an embodiment of the present invention;

[0029] Figure 4 This is a schematic diagram of the structure of the barcode scanning lens described in an embodiment of the present utility model;

[0030] Figure 5 This is a cross-sectional view of the microwave oven with barcode scanning function described in an embodiment of the present invention.

[0031] Figure 6 for Figure 5 A cross-sectional view of a partial assembly structure of the mid-scanning component;

[0032] Explanation of reference numerals in the attached figures:

[0033] 100-Main structure; 200-Door assembly; 300-Panel assembly; 400-Scanning assembly; 500-Cooking food; 1-Supporting main body; 2-Protective cover; 3-Scanning module; 4-Protective lens; 5-Mounting bracket; 6-First connecting plate; 7-First connecting hole; 8-Scanning lens; 81-Lens bracket; 82-Camera assembly; 83-Guidance and positioning assembly; 9-Mounting base plate; 10-Mounting side plate; 11-Connecting flange; 12-Control module; 13-Front cover plate. Detailed Implementation

[0034] To make the technical means and objectives and effects of this utility model easier to understand, the embodiments of this utility model will be described in detail below with reference to specific figures.

[0035] It should be noted that all directional and positional terms used in this utility model, such as "up," "down," "left," "right," "front," "back," "vertical," "horizontal," "inner," "outer," "top," "lower," "lateral," "longitudinal," and "center," are only used to explain the relative positional relationships and connections between components in a specific state (as shown in the accompanying drawings). They are merely for the convenience of describing this utility model and do not require that this utility model be constructed and operated in a specific orientation; therefore, they should not be construed as limitations on this utility model. Furthermore, descriptions involving "first," "second," etc., in this utility model are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated.

[0036] In the description of this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0037] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "illustrative embodiment," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.

[0038] In existing technologies, microwave ovens, as common kitchen appliances, primarily focus on heating and cooking food. However, with the development of intelligent technology, users have placed higher demands on the convenience and intelligence of microwave ovens. Traditional microwave ovens require users to use a separate scanning device to obtain information when handling food packaging with barcodes or QR codes, and then manually set the microwave oven. This operation is cumbersome and lacks intelligence. Especially for pre-cooked foods, where barcodes and related production dates are designed on the front of the packaging for easy verification of the actual production date, existing microwave ovens make it difficult to check whether the food's production date is within its expiration date, thus affecting the user experience.

[0039] like Figures 1-6 As shown, this application discloses a microwave oven with a barcode scanning function, including a main structure 100 and a door assembly 200. The door assembly 200 is rotatably mounted on the front end of the main structure 100. A panel assembly 300 is arranged above the door assembly 200. A scanning assembly 400 is arranged near the left or right end of the panel assembly 300. The barcode scanning lens 8 in the scanning assembly 400 is arranged in a forward and downward inclined manner.

[0040] The microwave oven with barcode scanning function disclosed in this application cleverly combines microwave oven and barcode scanning technology by setting a panel assembly above the door assembly and installing a scanning component at the left or right end of the panel assembly with an inclined design. Users can easily scan food with the front facing the scanner, avoiding the problem of soup spillage that may occur when food is upright. In addition, the inclined design allows the scanner to better capture barcode information, improving scanning accuracy and efficiency, thereby simplifying the user's operation process and making the entire heating process more convenient. When the user needs to heat cooked food 500 with barcode or QR code, they only need to place the cooked food 500 in a specific area in front of the microwave oven. The scanning lens 8 in the scanning component 400 quickly captures the barcode information at an inclined downward angle, enabling the microwave oven to instantly read the barcode on the food packaging, obtain product information or cooking information of the cooked food 500, and then automatically match the corresponding cooking program, thereby simplifying the operation process and improving the convenience of use. In this way, the microwave oven not only improves the efficiency of operation but also reduces the cumbersome steps in the user's operation process, making food heating more intuitive and convenient, thus providing users with a smoother user experience.

[0041] This microwave oven with barcode scanning function, through optimized structural layout and arrangement of the scanning component 400, effectively avoids the problem of the lens being obstructed or contaminated by the door, thereby improving the accuracy, stability, and reliability of barcode scanning. For pre-cooked foods, this microwave oven can also simultaneously check the food's production date during the barcode scanning process, reminding the user whether the food is within its expiration date. This not only effectively avoids the health risks associated with consuming expired food but also further enhances the user experience and safety.

[0042] As a preferred example of this application, the barcode scanning lens 8 includes a lens bracket 81, on which a camera component 82 is mounted. The camera component 82 is used for image scanning and data acquisition. This application uses a barcode scanning lens 8 comprising a lens bracket 81 and a camera component 82. The lens bracket 81 serves as a stable carrier for the camera component 82, providing necessary physical support and ensuring its stability and accuracy during operation. The camera component 82, embedded within the lens bracket 81, is a key component for performing image scanning and data acquisition. When a user points the barcode scanning lens 8 at an object with a barcode or QR code, the camera component 82 automatically activates, capturing image information from the surface of the target object. Through built-in image recognition technology, the camera component can quickly analyze the captured image and convert it into a data format suitable for subsequent processing, thereby achieving the barcode scanning operation.

[0043] As a preferred example of this application, a guide positioning component 83 is also provided on the lens bracket 81. The guide positioning component 83 uses a light emitting device to emit light for positioning guidance. Addressing the inaccurate positioning problem in existing microwave ovens with scanning functions during barcode scanning, this application further adds a guide positioning component 83 to the lens bracket 81 to achieve precise positioning through a light emitting device. Preferably, the guide positioning component 83 uses an infrared emitter to emit a beam of infrared light for positioning. When the user brings the food container 500 close to the microwave oven, the infrared rays emitted by the infrared emitter in the guide positioning component 83 allow the user to accurately position the barcode, thus ensuring the barcode on the food container 500 is in the optimal scanning position. Simultaneously, the camera component 82 is also activated to capture the image of the positioned barcode. This design allows for accurate target alignment from the beginning of the scanning operation, avoiding scanning failures or the need for repeated scanning due to improper positioning, thereby significantly improving the efficiency and accuracy of barcode scanning. In addition, the barcode scanning module 2 is installed on the panel 1 at a certain angle. This layout allows the infrared beam and camera to be more directly aligned with and scan the barcode on the front of the food box, further simplifying the user's operation process and improving the overall user experience.

[0044] This setup solves the positioning problem during microwave oven barcode scanning by introducing a guide positioning component 83 and forming an effective synchronous combination with the camera component 82, significantly improving the accuracy and efficiency of barcode scanning and greatly enhancing the user experience.

[0045] As a preferred example of this application, the panel assembly 300 includes a support body 1, the scanning assembly 400 includes a barcode scanning module 3, the barcode scanning module 3 includes a mounting bracket 5, the mounting bracket 5 is detachably fixed to the support body 1, and the barcode scanning lens 8 is mounted on the mounting bracket 5. In the example of this application, the barcode scanning lens 8 and the control module 12 are disposed on the mounting bracket 5, and the barcode scanning lens 8 is disposed on the lower front side of the control module 12. This application achieves detachable fixing of the barcode scanning module 3 in the scanning assembly 400 to the support body 1 of the panel assembly 300 through the mounting bracket 5. This design not only facilitates the installation and removal of the barcode scanning module 3, but also facilitates subsequent maintenance and replacement. The barcode scanning lens 8, as the core component of the barcode scanning module 3, is precisely mounted on the mounting bracket 5 and located on the lower front side of the control module 12. During operation, when the food 500 appears in the scanning area aligned with the barcode camera 8, the control module 12 drives the barcode camera 8 to scan the target, thereby obtaining the required barcode or QR code information. The entire scanning process is fast and accurate, ensuring the stability and reliability of the scanning, enabling users to easily and quickly identify food information when using the microwave oven, thus improving the overall user experience.

[0046] This setup simplifies the overall structure of the device, making it easier to test, repair, and replace the barcode scanning module 3 separately. This reduces maintenance costs and time, allowing users to quickly resolve issues and minimize downtime. While ensuring barcode scanning performance, it also fully considers the ease of use and maintainability of the device, providing users with a more convenient and efficient user experience.

[0047] As a preferred example of this application, the scanning direction of the scanning lens 8 forms an angle α with the vertical direction, and the value of α ranges from 15° to 75°. Preferably, the value of α ranges from 30° to 60°. This setting, by precisely setting the angle α between the scanning direction of the scanning lens 8 and the vertical direction, ensures the accuracy and stability of the scanning. In practical applications, this design allows the scanning lens 8 to scan the target at a specific angle, thereby improving the flexibility and adaptability of the scanning process. By optimizing the working position and angle of the scanning lens 8, interference and errors during the scanning process are effectively avoided, improving the accuracy and reliability of the scanning. Especially when the angle is preferably between 30° and 60°, the performance of the scanning lens 8 reaches its optimal level. This not only results in faster scanning speed and higher accuracy but also reduces repetitive operations and wasted time caused by scanning failures, thereby improving work efficiency.

[0048] The design of this application improves scanning efficiency, eliminating the need for users to frequently adjust the placement of food items during operation. This simplifies the operation process, enhances the user experience, and improves the overall practical value and market competitiveness of the equipment.

[0049] As a preferred example of this application, the mounting bracket 5 includes a mounting base plate 9 and two mounting side plates 10. The two mounting side plates 10 are disposed on opposite sides of the mounting base plate 9. A first connecting plate 6 is disposed at one end of the mounting base plate 9. The first connecting plate 6 is arranged at an angle to the mounting base plate 9, and a first connecting hole 7 is provided on the first connecting plate 6. In the example of this application, by arranging the first connecting plate 6 at an angle to the mounting base plate 9, during installation, the first connecting plate 6 can be connected and fixed tightly to the support body 1 through the first connecting hole 7, thereby setting the mounting base plate 9 and the front side of the support body 1 at an angle α. The two mounting side plates 10 are disposed on opposite sides of the mounting base plate 9 perpendicular to the scanning direction of the barcode scanning lens 8. The barcode scanning lens 8 and the control module 12 are both mounted on the mounting base plate 9. The barcode scanning lens 8 is disposed on the mounting base plate 9 near the front end, and the control module 12 is disposed on the mounting base plate 9 near the rear end. The first connecting plate 6 is disposed on the rear end of the mounting base plate 9. This application achieves efficient installation and angle adjustment of the barcode scanning device by designing a specific mounting bracket 5. The mounting bracket 5 consists of a mounting base plate 9 and two mounting side plates 10. The mounting base plate 9 supports core components such as the barcode scanning lens 8 and the control module 12, while the two mounting side plates 10 provide stable lateral support. A first connecting plate 6 is provided at one end of the mounting base plate 9. The first connecting plate 6 is arranged at an angle to the mounting base plate 9 and is connected to the support body 1 through a first connecting hole 7. This inclined design allows the mounting base plate 9 to form an angle α with respect to the front side of the support body 1 during installation, thereby achieving precise adjustment of the scanning angle of the barcode scanning lens 8. The barcode scanning lens 8 is located near the front end of the mounting base plate 9 and is responsible for scanning the target object, while the control module 12 is located near the rear end of the mounting base plate 9 and is responsible for processing the scanning data and controlling the operation of the entire barcode scanning device. The first connecting plate 6 is located at the rear end of the mounting base plate 9, ensuring the stability of the installation and the reliability of the angle adjustment. The overall structural design allows the barcode scanning device to adapt flexibly to different application scenarios, improving the user experience and operating efficiency.

[0050] This design enables flexible adjustment of the barcode scanner's installation angle and quick installation, optimizes the spatial layout, and ensures that the barcode scanner can maintain high performance in a compact structure. The two mounting side plates 10 further enhance the stability and durability of the mounting bracket 5, enabling the barcode scanner to operate stably in various complex environments.

[0051] As a preferred example of this application, an outwardly facing connecting flange 11 is provided at the front end of the mounting side plate 10, and the connecting flange 11 is used to connect the protective lens 4. As a preferred example of this application, the protective lens 4 is glued to the connecting flange 11, and the rear side of the protective lens 4 is tightly fitted to the barcode scanning lens 8. This arrangement is achieved by further optimizing the structure of the mounting bracket 5, adding an outwardly facing connecting flange 11 at the front end of the mounting side plate 10, a design specifically for connecting the protective lens 4. In actual assembly, the protective lens 4 is firmly fixed to the connecting flange 11 by adhesive, ensuring a tight fit between the two. At the same time, the rear side of the protective lens 4 is carefully arranged to be tightly fitted to the barcode scanning lens 8, which not only provides an additional protective layer for the barcode scanning lens 8, preventing damage to the lens from external dust, impurities, or accidental collisions, but also ensures that the barcode scanning lens 8 is not disturbed during scanning and always maintains a clear scanning field of view. Preferably, the mounting bracket 5 is integrally formed.

[0052] The design uses adhesive bonding between the connecting flange 11 and the protective lens 4, which is simple and reliable. It ensures convenient installation and that the protective lens 4 can be firmly fixed in the predetermined position, making it difficult to fall off or loosen. The protective lens 4 effectively isolates the barcode scanning lens 8 from potential threats from the external environment, extends the service life of the barcode scanning lens 8, and reduces the maintenance costs caused by lens damage. This allows the barcode scanning device to maintain excellent scanning performance in harsher or more complex operating environments, improves the overall reliability and durability of the device, and brings users a more stable and efficient barcode scanning experience.

[0053] As a preferred example of this application, a protective cover 2 is provided on the support body 1, and the scanning module 3 can be detachably connected to the support body 1 by being installed inside the protective cover 2 from bottom to top. In the example of this application, the protective cover 2 is provided in a wrapping shape on the outside of the scanning module 3. The scanning module 3, after the protective lens 4 is glued on, can be installed inside the protective cover 2 from bottom to top, and is detachably fixed to the support body 1 by the first connecting plate 6 at the rear end of the mounting bracket 5. This arrangement, by providing a protective cover 2 on the support body 1, provides a comprehensive protective space for the scanning module 3. The scanning module 3 includes components such as a scanning lens 8, a control module 12, and a protective lens 4, which can be easily installed inside the protective cover 2 from bottom to top, and is detachably fixed to the support body 1 by the first connecting plate 6 at the rear end of the mounting bracket 5. This simplifies the installation process, allowing the scanning module 3 to be stably installed in the predetermined position. The protective cover 2 tightly wraps around the outside of the scanning module 3, providing it with all-round protection. Preferably, the upper side of the protective cover 2 is configured as a front cover plate 13 parallel to the mounting base plate 9, and the front cover plate 13 is arranged in a forward inclined shape from top to bottom. This inclined design allows the scanning module 3 to effectively guide the scanning light during use, improving the scanning accuracy and efficiency. The reasonable layout of the overall structure enables the device to achieve a high level in both function and appearance, ensuring that users can have a good experience during operation.

[0054] The microwave oven with barcode scanning function disclosed in this application has a panel assembly 300 set above the door assembly 200, and a scanning assembly 400 installed at the left or right end of the panel assembly. The scanning lens 8 in the scanning assembly is arranged at an angle facing forward and downward, so that when the user places the cooked food 500 with barcode or QR code, the front of the food is facing the scanning lens for scanning. This avoids the problem of soup overflowing when the food is upright. The tilted design not only improves the accuracy and efficiency of scanning, but also simplifies the user's operation process, reduces operation steps, improves overall convenience, reduces the user's maintenance costs and time, and provides the user with a smoother, safer and more efficient user experience.

[0055] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A microwave oven with a barcode scanning function, characterized in that, It includes a main structure (100) and a door assembly (200). The door assembly (200) is rotatably mounted on the front end of the main structure (100). A panel assembly (300) is provided above the door assembly (200). A scanning assembly (400) is provided near the left or right end of the panel assembly (300). The scanning lens (8) in the scanning assembly (400) is arranged in a forward and downward tilt.

2. The microwave oven with barcode scanning function according to claim 1, characterized in that, The scanning lens (8) includes a lens bracket (81), and a camera component (82) is disposed on the lens bracket (81). The camera component (82) is used for image scanning and data acquisition.

3. The microwave oven with barcode scanning function according to claim 2, characterized in that, A guide positioning component (83) is also provided on the lens bracket (81), which emits light through a light emitting device for positioning guidance.

4. The microwave oven with barcode scanning function according to claim 1, 2, or 3, characterized in that, The panel assembly (300) includes a support body (1), the scanning assembly (400) includes a barcode scanning module (3), the barcode scanning module (3) includes a mounting bracket (5), the mounting bracket (5) is detachably fixed to the support body (1), and the barcode scanning lens (8) is mounted on the mounting bracket (5).

5. The microwave oven with barcode scanning function according to claim 4, characterized in that, The scanning direction of the scanning lens (8) is α with respect to the vertical direction, and the value of α ranges from 15° to 75°.

6. The microwave oven with barcode scanning function according to claim 4, characterized in that, The mounting bracket (5) includes a mounting base plate (9) and two mounting side plates (10). The two mounting side plates (10) are disposed on opposite sides of the mounting base plate (9). A first connecting plate (6) is disposed at one end of the mounting base plate (9). The first connecting plate (6) is arranged at an inclination with the mounting base plate (9). A first connecting hole (7) is disposed on the first connecting plate (6).

7. The microwave oven with barcode scanning function according to claim 6, characterized in that, A control module (12) is provided on the mounting bracket (5), the barcode scanning lens (8) is located on the mounting base plate (9) near the front end, the control module (12) is located on the mounting base plate (9) near the rear end, and the first connecting plate (6) is located at the rear end of the mounting base plate (9).

8. The microwave oven with barcode scanning function according to claim 6, characterized in that, An outwardly facing connecting flange (11) is provided at the front end of the mounting side plate (10), the connecting flange (11) being used to connect the protective lens (4).

9. The microwave oven with barcode scanning function according to claim 4, characterized in that, A protective cover (2) is provided on the support body (1). The protective cover (2) is wrapped around the outside of the scanning module (3). The scanning module (3) can be inserted into the protective cover (2) from bottom to top and is detachably connected to the support body (1).

10. The microwave oven with barcode scanning function according to claim 9, characterized in that, The upper side of the protective cover (2) is configured as a front cover plate (13) parallel to the mounting base plate (9), and the front cover plate (13) is arranged in a forward inclined manner from top to bottom.