Illuminating device and cooking fume equipment
By designing a lighting device that can adjust the illumination angle, the problem of insufficient light caused by oil fume equipment is solved, and the effect of sufficient light in different scenarios is achieved.
Patent Information
- Application Number
- CN202421788901.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-26
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2034-07-26
AI Technical Summary
Existing oil fume equipment leads to insufficient light during cooking, especially due to the differences in different kitchen layouts and installation locations of oil fume equipment, LED lights cannot fully shine on the stove.
A lighting device that can adjust the illumination angle is designed, including a connecting assembly and a lighting assembly, which is used for connecting to the fume equipment, and the lighting assembly is rotatably connected to the connecting assembly, and the user can adjust its illumination angle by rotating the lighting assembly to adapt to different scenarios.
By adjusting the illumination angle of the lighting components, sufficient light can be ensured, and it can adapt to different kitchen layouts and installation locations of the oil fume equipment, solving the problem of insufficient light.
Smart Images

Figure CN222992774U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of lighting, and particularly relates to a lighting device and an oil fume device. Background Art
[0002] As a kitchen appliance, an oil fume device is used to absorb the oil fume generated during cooking. A common oil fume device is an oil fume extractor. The oil fume extractor is usually installed above the cooking range for facilitating the absorption of oil fume. At the same time, the oil fume extractor will also block the light of the cooking range. In addition, when the user is cooking, the user also needs to be beside the cooking range, further blocking the light of the cooking range, resulting in insufficient light when the user is cooking.
[0003] At present, some oil fume extractors are installed with LED lights for lighting to facilitate the user's cooking. However, since the installation positions of each user's cooking ranges and the types of cooking ranges used are different, even if the oil fume extractor is installed with LED lights, it cannot adapt to all situations, and there is still a problem of insufficient light. Summary of the Utility Model
[0004] The utility model provides a lighting device and an oil fume device, aiming to solve the problem of insufficient light in the current oil fume device.
[0005] In a first aspect, the utility model provides a lighting device applied to an oil fume device, which includes a connection component and a lighting component; the connection component is used to connect with the oil fume device; the lighting component is rotatably connected to the connection component; wherein, the irradiation angle of the lighting component is adjusted by rotating the lighting component.
[0006] Further, the connection component includes a first adsorption component and a second adsorption component; one end of the first adsorption component is used for adsorbing and connecting with the oil fume device, the other end of the first adsorption component is adsorbed and connected with one end of the second adsorption component, and the other end of the second adsorption component is connected with the lighting component.
[0007] Further, the first adsorption component includes at least one first adsorbent, the second adsorption component includes at least one second adsorbent, and one first adsorbent is adsorbed and connected with one second adsorbent.
[0008] Further, the connection component further includes a connecting shaft, and through holes for the connecting shaft to pass through are provided on both the first adsorbent and the second adsorbent; the connecting shaft passes through the through holes of the first adsorbent and the second adsorbent to connect the first adsorbent and the second adsorbent in series.
[0009] Further, the connection component further includes a rotating part, and the rotating part is connected with one end of the connecting shaft.
[0010] Further, the lighting assembly includes a lighting board, which includes a lighting surface and a connection surface; a plurality of LED lights are provided on the lighting surface, and the second adsorption assembly is provided on the connection surface.
[0011] Further, the first adsorbent includes an adsorption plate and a triangular connection plate; one side of the adsorption plate is used for adsorbing and connecting with the fume equipment, and the other side of the adsorption plate is connected with the triangular connection plate.
[0012] Further, the first adsorption assembly includes two of the first adsorbents, and the second adsorption assembly includes two of the second adsorbents; one end of the connecting shaft passes through one of the first adsorbents and one of the second adsorbents, and the other end of the connecting shaft passes through the other first adsorbent and the other second adsorbent.
[0013] Further, the connection assembly further includes a limiting member sleeved on the connecting shaft.
[0014] In a second aspect, the present invention provides a fume equipment, which includes the lighting device described in any one of the above.
[0015] The fume equipment disclosed by the present invention includes a lighting device. The lighting device includes a connection assembly and a lighting assembly. The connection assembly is used for connecting with the fume equipment on the one hand and rotatably connecting with the lighting assembly on the other hand. The lighting assembly is used for providing light, and the lighting assembly is rotatably connected with the connection assembly. The user can adjust the irradiation angle of the lighting assembly to adapt to different scenarios and ensure sufficient light. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the following drawings are some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0017] Figure 1 is the overall structure diagram of the lighting device provided by an embodiment of the present invention;
[0018] Figure 2 is the exploded view of the lighting device provided by an embodiment of the present invention;
[0019] Figure 3 is the structure diagram of the first adsorbent provided by an embodiment of the present invention;
[0020] Figure 4 is the structure diagram of the lighting device after adjusting the irradiation angle provided by an embodiment of the present invention;
[0021] Brief Description of the Drawings: 100, lighting device; 10, connection component; 11, first adsorption component; 12, second adsorption component; 13, first adsorbent; 131, adsorption plate; 132, triangular connection plate; 14, second adsorbent; 15, connection shaft; 16, opening; 17, rotating part; 18, limiting part; 20, lighting component; 21, lighting plate; 22, lighting surface; 23, connection surface; 24, LED lamp. Detailed Implementation Manner
[0022] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are some, but not all, of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0023] It should be understood that when used in this specification and the appended claims, the terms "comprises" and "comprising" indicate the presence of the described features, wholes, operations, elements, and / or components, but do not preclude the presence or addition of one or more other features, wholes, operations, elements, components, and / or their combinations.
[0024] It should also be understood that the terms used in this specification of the present invention are only for the purpose of describing specific embodiments and are not intended to limit the present invention. As used in this specification of the present invention and the appended claims, unless the context clearly indicates otherwise, the singular forms "a", "an", and "the" are intended to include the plural forms. It should be further understood that the term "and / or" used in this specification of the present invention and the appended claims refers to any combination and all possible combinations of one or more of the related listed items, and includes these combinations.
[0025] In addition, the directional terms mentioned in the present invention, such as "up", "down", "front", "back", "left", "right", "inside", "outside", "side", etc., are only references to the directions in the attached drawings and the usage state of the product. Therefore, the directional terms used are for explaining and understanding the present invention, rather than for limiting the present invention. In addition, in the drawings, structures that are similar or the same are denoted by the same reference numerals.
[0026] See Figures 1 to 4 , Figure 1 is the overall structure diagram of the lighting device 100 provided by an embodiment of the present invention; Figure 2 is the exploded view of the lighting device 100 provided by an embodiment of the present invention; Figure 3It is a structural diagram of the first adsorbing member 13 provided by an embodiment of the present utility model; Figure 4 It is a structural diagram of the lighting device 100 provided by an embodiment of the present utility model after adjusting the irradiation angle. As shown in the figure, the lighting device 100 includes a connection component 10 and a lighting component 20; the connection component 10 is used to connect with the fume equipment; the lighting component 20 is rotatably connected to the connection component 10; wherein, the irradiation angle of the lighting component 20 is adjusted by rotating the lighting component 20.
[0027] Specifically, the fume equipment is used to absorb fumes and waste gases to purify the surrounding environment and improve the experience. The fume equipment can be a fume purifier, such as a range hood, which is generally used in the catering industry, food manufacturing industry or daily cooking. For the catering industry, the fume equipment can be used in various restaurants and canteens to absorb the fumes and waste gases generated during the cooking process. For the food manufacturing industry, the fume equipment can be used during the food processing process. For example, a large amount of fumes and waste gases are also generated during frying. For daily cooking, the fume equipment is mainly used to absorb the fumes and waste gases generated during the cooking process.
[0028] The fume equipment required for different application scenarios is also different. For example, for relatively dim restaurants, kitchens or restaurants and kitchens with insufficient light, fume equipment with LED lights is usually adopted, and the LED lights of the fume equipment can be used for lighting during cooking. Taking the kitchen as an example, generally, there is a lighting lamp installed in the kitchen. However, when the user is cooking, they are usually located next to the stove, and the fume equipment is generally installed above the stove. The light emitted by the lighting lamp cannot be fully irradiated on the stove due to the obstruction of the user and the fume equipment, resulting in insufficient light. However, due to the different specific layouts of kitchens and restaurants, there are differences in the specific installation positions of the fume equipment, resulting in some cases where the LED lights of the fume equipment cannot fully irradiate on the stove either.
[0029] The present utility model provides a lighting device 100, which can adjust the angle to adapt to different scenarios. The lighting device 100 includes a connection component 10 and a lighting component 20. The connection component 10 is used to connect the fume equipment and the lighting component 20, and the lighting component 20 is used for lighting. The connection component 10 can include a connection structure, which is used to connect with the fume equipment on the one hand and the lighting component 20 on the other hand. The connection method between the connection structure and the fume equipment can be screw connection. For example, screw holes are provided on the fume equipment and the connection structure, and the screw holes of the fume equipment and the screw holes of the connection structure are connected by screws to fix the connection component 10 to the fume equipment. The connection method between the connection structure and the fume equipment can also be magnetic connection, that is, the connection structure can be made of a magnetic material, or a magnetic material is coated on the surface of the connection structure, and the connection structure can be adsorbed on the fume equipment.
[0030] The lighting assembly 20 is rotatably connected to the connection assembly 10, that is, the lighting assembly 20 is rotatably connected to the connection structure. For example, the lighting assembly 20 can be hinged to the connection structure, so that the lighting assembly 20 can rotate relative to the connection assembly 10 through a hinge, and the user can rotate the lighting assembly 20 to adjust the irradiation angle of the lighting assembly 20. The lighting assembly 20 can also be magnetically connected to the connection structure in the same way, with magnetic materials provided on the connection parts of the lighting assembly 20 and the connection structure, and the lighting assembly 20 can be adsorbed on the connection structure. The lighting assembly 20 can also include one or more LED lights 24 for providing a lighting function. When the lighting assembly 20 includes one LED light 24, the LED light 24 can be a large LED light. When the lighting assembly 20 includes multiple LED lights 24, the multiple LED lights 24 can be small LED lights.
[0031] In addition to providing the conventional lighting function, the LED lights 24 included in the lighting assembly 20 can also be provided with light sensors for controlling the brightness and color of the LED lights 24. For example, the lighting assembly 20 can include multiple LED lights 24 and a light sensor. The light sensor is used to detect the brightness of the surrounding environment. When the brightness of the environment where the lighting assembly 20 is located is low, the LED lights 24 can be brightened. When the brightness of the environment where the lighting assembly 20 is located is high, the LED lights 24 can be dimmed. In addition, the color of the LED lights 24 can also be adjusted according to the brightness of the environment where the lighting assembly 20 is located. When the brightness of the environment where the lighting assembly 20 is located is low, the color of the LED lights 24 can be adjusted to make the light emitted by the LED lights 24 more eye-catching. When the brightness of the environment where the lighting assembly 20 is located is high, the color of the LED lights 24 can be adjusted to make the light emitted by the LED lights 24 softer. The lighting assembly 20 can also include an image sensor for detecting the distance between the person and the cooking stove, the height of the person, the position of the eyes, the type of the pot, the food being cooked, and the degree of ripeness of the food, and can correspondingly adjust the color and brightness of the LED lights 24. For example, when the distance between the person and the cooking stove is large, the brightness of the LED lights 24 can be brightened. When the pot has a strong light reflection ability, the color of the LED lights 24 can be adjusted to make the LED lights 24 emit soft light. For meat food, the LED lights 24 can be brightened, and for vegetable food, the LED lights 24 can be dimmed. In addition, the light reflectance of the pot can also be detected by a sensor. When the light reflectance is lower than the preset threshold, the LED lights 24 are brightened. When the light reflectance is higher than the preset threshold, the LED lights 24 are dimmed to ensure that the light irradiated by the LED lights 24 on the pot is not too bright or too dark. In addition to automatic adjustment, the lighting assembly 20 can also be connected to a control device through a wireless module. For example, it can be connected to a mobile phone through Bluetooth, and the user can adjust the brightness and color of the LED lights 24 through the mobile phone.
[0032] In actual use, first connect the oil fume equipment through the connection component 10 to complete the fixation of the connection component 10, and then connect the connection component 10 to the lighting component 20 to complete the fixation of the lighting component 20. Finally, the user rotates the lighting component 20 according to the actual situation to adjust the irradiation angle of the lighting component 20. As Figure 1 and Figure 4 shown, Figure 1 FIG. is a structural diagram of the lighting component 20 at the first angle, that is, the irradiation angle of the lighting component 20 is vertically downward, Figure 4 FIG. is a structural diagram of the lighting component 20 at the second angle, that is, the irradiation angle of the lighting component 20 has a certain inclination angle.
[0033] As a further embodiment, the connection component 10 includes a first adsorption component 11 and a second adsorption component 12; one end of the first adsorption component 11 is used for adsorbing and connecting with the oil fume equipment, the other end of the first adsorption component 11 is adsorbed and connected with one end of the second adsorption component 12, and the other end of the second adsorption component 12 is connected with the lighting component 20.
[0034] Among them, the connection component 10 may include a first adsorption component 11 and a second adsorption component 12. The first adsorption component 11 is used for connecting with the oil fume equipment, the second adsorption component 12 is used for connecting with the second adsorption component 12, and the first adsorption component 11 and the second adsorption component 12 are connected to each other. For example, one end of the first adsorption component 11 can be adsorbed and connected with the oil fume equipment, which is convenient for disassembly and easy to clean and maintain the first adsorption component 11. The other end of the first adsorption component 11 is adsorbed and connected with the second adsorption component 12. Similarly, the first adsorption component 11 and the second adsorption component 12 are adsorbed and connected, which is convenient for disassembling the first adsorption component 11 and the second adsorption component 12.
[0035] The second adsorption component 12 is also connected to the lighting component 20. The second adsorption component 12 can be fixedly connected to the lighting component 20. For example, the second adsorption component 12 and the lighting component 20 can be fixedly connected by screws. Screw holes are respectively provided on the second adsorption component 12 and the lighting component 20, which is convenient for connection by screws. The second adsorption component 12 can also be integrally formed with the lighting component 20. During installation, only the second adsorption component 12 needs to be connected to the first adsorption component 11.
[0036] See Figure 2 , as a further embodiment, the first adsorption component 11 includes at least one first adsorbent 13, the second adsorption component 12 includes at least one second adsorbent 14, and one first adsorbent 13 is adsorbed and connected with one second adsorbent 14.
[0037] Among them, the first adsorption component 11 may include at least one first adsorbent 13, and the second adsorption component 12 may include at least one second adsorbent 14. The first adsorbents 13 and the second adsorbents 14 correspond one by one, that is, one first adsorbent 13 is adsorbed and connected to one second adsorbent 14.
[0038] When only one first adsorbent 13 and one second adsorbent 14 are provided, the second adsorbent 14 may be connected to the middle area of the lighting component 20 to facilitate balancing the weights on both sides of the lighting component 20. When two first adsorbents 13 and two second adsorbents 14 are provided, the second adsorbents 14 may be arranged on both sides of the lighting component 20. When three or more second adsorbents 14 are provided, the second adsorbents 14 may be arranged at equal intervals.
[0039] Such as Figure 1 and Figure 4 shown, Figure 1 is a structural diagram when the lighting component 20 is at the first angle, that is, the irradiation angle of the lighting component 20 is vertically downward, Figure 4 is a structural diagram when the lighting component 20 is at the second angle, that is, the irradiation angle of the lighting component 20 has a certain inclination angle. The lighting component 20 changes from the Figure 1 shown angle to the Figure 4 shown angle can be achieved by adjusting the adsorption angle between the first adsorbent 13 and the second adsorbent 14.
[0040] As a further embodiment, the connection component 10 further includes a connection shaft 15, and through holes 16 for the connection shaft 15 to pass through are provided on both the first adsorbent 13 and the second adsorbent 14; the connection shaft 15 passes through the through holes 16 of the first adsorbent 13 and the through holes 16 of the second adsorbent 14 to connect the first adsorbent 13 and the second adsorbent 14 in series.
[0041] Among them, the connection component 10 may include a connection shaft 15, and correspondingly, through holes 16 may be opened in the first adsorbent 13 and the second adsorbent 14. For example, a through hole 16 may be opened in the middle area of the first adsorbent 13 and a through hole 16 may be opened near the connection of the second adsorbent 14 to the first adsorbent 13.
[0042] During connection, the connection shaft 15 is passed through the first adsorbent 13 and the second adsorbent 14, thereby connecting the first adsorbent 13 and the second adsorbent 14 in series. When the irradiation angle of the lighting component 20 needs to be adjusted, only the connection shaft 15 needs to be rotated. Such as Figure 1 shown, the user can drive the connection shaft 15 to rotate by rotating the end of the connection shaft 15, and then drive the lighting component 20 to rotate, so as to adjust the irradiation angle of the lighting component 20.
[0043] As a further embodiment, the connecting component 10 further includes a rotating member 17, and the rotating member 17 is connected to one end of the connecting shaft 15.
[0044] Among them, the rotating member 17 can be a rotating button. The rotating member 17 is connected to the end of the connecting shaft 15. An opening 16 can also be provided in the middle of the rotating member 17. The opening 16 of the rotating member 17 passes through the end of the connecting shaft 15 and is sleeved on the connecting shaft 15. At the same time, a serrated structure is provided on the surface of the rotating member 17 to increase the friction, facilitating the user to rotate the connecting shaft 15 through the rotating member 17.
[0045] During use, the user can rotate the connecting shaft 15 by turning the rotating member 17, and then rotate the lighting component 20 to adjust the irradiation angle of the lighting component 20.
[0046] As a further embodiment, the lighting component 20 includes a lighting plate 21, and the lighting plate 21 includes a lighting surface 22 and a connecting surface 23; a plurality of LED lights 24 are provided on the lighting surface 22, and the second adsorption component 12 is provided on the connecting surface 23.
[0047] Among them, as Figure 2 shown, the lighting component 20 can include a lighting plate 21. The lighting plate 21 can be a rectangular lighting plate 21. The lighting plate 21 includes a lighting surface 22 and a connecting surface 23. The side of the lighting plate 21 facing the cooking range is used as the lighting surface 22, and the side of the lighting plate 21 facing away from the cooking range and towards the fume equipment is used as the connecting surface 23, that is, the lighting surface 22 and the connecting surface 23 are two opposite surfaces.
[0048] One or more LED lights 24 are provided on the lighting surface 22 for providing a lighting function, and the second adsorption component 12 is provided on the connecting surface 23 to facilitate connection with the first adsorption component 11 through the second adsorption component 12. For example, screw holes can be provided on the connecting surface 23 and fixed to the second adsorption component 12 by screws, or the connecting surface 23 and the second adsorption component 12 are integrally formed.
[0049] As a further embodiment, the first adsorbing member 13 includes an adsorption plate 131 and a triangular connecting plate 132; one side of the adsorption plate 131 is used for adsorbing and connecting with the fume equipment, and the other side of the adsorption plate 131 is connected to the triangular connecting plate 132.
[0050] Among them, as Figure 3As shown in the figure, the first adsorbing member 13 may include an adsorption plate 131 and a triangular connecting plate 132. The adsorption plate 131 is connected to the top of the triangular connecting plate 132 and is used to connect to the fume equipment. An opening 16 may be provided in the middle area of the triangular connecting plate 132 for the connecting shaft 15 to pass through. Similarly, the second adsorbing member 14 may also be a triangular connecting member. The end of the triangular connecting plate 132 is abutted against the end of the second adsorbing member 14, so that the openings 16 of the triangular connecting plate 132 and the second adsorbing member 14 coincide, and then the connecting shaft 15 is passed through the openings 16 of the triangular connecting plate 132 and the second adsorbing member 14.
[0051] As a further embodiment, the first adsorption assembly 11 includes two of the first adsorbing members 13, and the second adsorption assembly 12 includes two of the second adsorbing members 14; one end of the connecting shaft 15 passes through one of the first adsorbing members 13 and one of the second adsorbing members 14, and the other end of the connecting shaft 15 passes through the other first adsorbing member 13 and the other second adsorbing member 14.
[0052] Among them, the first adsorption assembly 11 may include two first adsorbing members 13, the second adsorption assembly 12 may include two second adsorbing members 14, and one first adsorbing member 13 is connected to one second adsorbing member 14. The two second adsorbing members 14 are respectively located on both sides of the lighting assembly 20 and are connected to the first adsorbing member 13 to improve the stability during connection. Openings 16 may be provided on both the first adsorbing member 13 and the second adsorbing member 14. One end of the connecting shaft 15 passes through the openings 16 of the first adsorbing member 13 and the second adsorbing member 14 on one side, and the other side of the connecting shaft 15 passes through the openings 16 of the first adsorbing member 13 and the second adsorbing member 14 on the other side. That is, the connecting shaft 15 is located between the two first adsorbing members 13 and the two second adsorbing members 14. At the same time, both ends of the connecting shaft 15 pass through the corresponding openings 16 to facilitate the user to rotate the connecting shaft 15.
[0053] As a further embodiment, the connecting assembly 10 further includes a limiting member 18, and the limiting member 18 is sleeved on the connecting shaft 15.
[0054] Among them, the limiting member 18 may be a protective sleeve, which is sleeved on the connecting shaft 15. On the one hand, it is used to protect the connecting shaft 15, and on the other hand, it is used to limit the connecting shaft 15 to prevent the connecting shaft 15 from moving left and right when the connecting shaft 15 is rotated.
[0055] The present utility model also provides a fume equipment, and the fume equipment includes the lighting device 100 according to any one of the above embodiments; the lighting device 100 includes a connecting assembly 10 and a lighting assembly 20; the connecting assembly 10 is used to connect to the fume equipment; the lighting assembly 20 is rotatably connected to the connecting assembly 10; wherein, the irradiation angle of the lighting assembly 20 is adjusted by rotating the lighting assembly 20.
[0056] Specifically, the fume equipment is used to absorb fumes and waste gases to purify the surrounding environment and improve the experience. The fume equipment can be a fume purifier, such as a range hood, which is generally applicable to the catering industry, food manufacturing industry or daily cooking. For the catering industry, the fume equipment can be used in various restaurants and canteens to absorb the fumes and waste gases generated during the cooking process. For the food manufacturing industry, the fume equipment can be used during the food processing process. For example, a large amount of fumes and waste gases are also generated during frying. For daily cooking, the fume equipment is mainly used to absorb the fumes and waste gases generated during the cooking process.
[0057] The fume equipment required for different application scenarios is also different. For example, for relatively dim restaurants, kitchens or restaurants and kitchens with insufficient light, fume equipment with LED lights is usually adopted, and the LED lights of the fume equipment can be used for lighting during cooking. Taking the kitchen as an example, generally, there are lighting lamps installed in the kitchen. However, when the user is cooking, they are usually located next to the stove, and the fume equipment is generally installed above the stove. Due to the obstruction of the user and the fume equipment, the light emitted by the lighting lamp cannot fully illuminate the stove, resulting in insufficient light. However, due to the different specific layouts of the kitchen and the restaurant, there are differences in the specific installation positions of the fume equipment. In some cases, the LED lights of the fume equipment cannot fully illuminate the stove either.
[0058] The present utility model provides an illumination device 100, which can adjust the angle to adapt to different scenarios. The illumination device 100 includes a connection component 10 and an illumination component 20. The connection component 10 is used to connect the fume equipment and the illumination component 20, and the illumination component 20 is used for illumination. The connection component 10 can include a connection structure, which is used to connect with the fume equipment on the one hand and the illumination component 20 on the other hand. The connection mode between the connection structure and the fume equipment can be screw connection. For example, screw holes are provided on the fume equipment and the connection structure, and the screw holes of the fume equipment and the screw holes of the connection structure are connected by screws to fix the connection component 10 to the fume equipment. The connection mode between the connection structure and the fume equipment can also be magnetic connection, that is, the connection structure can be made of a magnetic material or coated with a magnetic material on the surface of the connection structure, and the connection structure can be adsorbed on the fume equipment.
[0059] The lighting assembly 20 is rotatably connected to the connection assembly 10, that is, the lighting assembly 20 is rotatably connected to the connection structure. For example, the lighting assembly 20 can be hinged to the connection structure, so that the lighting assembly 20 can rotate relative to the connection assembly 10 through a hinge, and the user can rotate the lighting assembly 20 to adjust the irradiation angle of the lighting assembly 20. The lighting assembly 20 can also be magnetically connected to the connection structure. Magnetic materials are provided on the connecting parts of the lighting assembly 20 and the connection structure, and the lighting assembly 20 can be adsorbed on the connection structure. The lighting assembly 20 can also include one or more LED lights 24 for providing a lighting function. When the lighting assembly 20 includes one LED light 24, the LED light 24 can be a large LED light 24. When the lighting assembly 20 includes multiple LED lights 24, the multiple LED lights 24 can be small LED lights 24.
[0060] In addition to providing the conventional lighting function, the LED lights 24 included in the lighting assembly 20 can also be provided with light sensors for controlling the brightness and color of the LED lights 24. For example, the lighting assembly 20 can include multiple LED lights 24 and a light sensor. The light sensor is used to detect the brightness of the surrounding environment. When the brightness of the environment where the lighting assembly 20 is located is low, the LED lights 24 can be brightened. When the brightness of the environment where the lighting assembly 20 is located is high, the LED lights 24 can be dimmed. In addition, the color of the LED lights 24 can also be adjusted according to the brightness of the environment where the lighting assembly 20 is located. When the brightness of the environment where the lighting assembly 20 is located is low, the color of the LED lights 24 can be adjusted so that the light emitted by the LED lights 24 is more eye-catching. When the brightness of the environment where the lighting assembly 20 is located is high, the color of the LED lights 24 can be adjusted so that the light emitted by the LED lights 24 is softer. The lighting assembly 20 can also include an image sensor for detecting the distance between the person and the stove, the height of the person, the position of the eyes, the type of pot, the food being cooked, and the degree of ripeness of the food, and can accordingly adjust the color and brightness of the LED lights 24. For example, when the distance between the person and the stove is large, the brightness of the LED lights 24 can be brightened. When the pot has a strong light reflection ability, the color of the LED lights 24 can be adjusted so that the LED lights 24 emit soft light. For meat food, the LED lights 24 can be brightened, and for vegetable food, the LED lights 24 can be dimmed. In addition, the light reflectivity of the pot can also be detected by a sensor. When the light reflectivity is lower than a preset threshold, the LED lights 24 are brightened. When the light reflectivity is higher than the preset threshold, the LED lights 24 are dimmed to ensure that the light of the LED lights 24 shining on the pot is not too bright or too dark. In addition to automatic adjustment, the lighting assembly 20 can also be connected to a control device through a wireless module. For example, it is connected to a mobile phone via Bluetooth, and the user can adjust the brightness and color of the LED lights 24 through the mobile phone.
[0061] In actual use, first connect the oil fume equipment through the connection component 10 to complete the fixation of the connection component 10, and then connect the connection component 10 to the lighting component 20 to complete the fixation of the lighting component 20. Finally, the user rotates the lighting component 20 according to the actual situation to adjust the irradiation angle of the lighting component 20. As Figure 1 and Figure 4 shown, Figure 1 FIG. is a structural diagram of the lighting component 20 at the first angle, that is, the irradiation angle of the lighting component 20 is vertically downward, Figure 4 FIG. is a structural diagram of the lighting component 20 at the second angle, that is, the irradiation angle of the lighting component 20 has a certain inclination angle.
[0062] The lighting device and the oil fume equipment disclosed by the present invention, the lighting component is rotatably connected to the connection component, and the irradiation angle of the lighting component can be adjusted by rotating the lighting component, which is convenient for adapting to different scenarios.
[0063] The above is only the specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention can easily think of various equivalent modifications or substitutions, and these modifications or substitutions should be covered within the protection scope of the present invention. Therefore, the protection scope of the present invention should be subject to the protection scope of the claims.
Claims
1. A lighting device, characterized in that: Applied to cooking fume equipment, the lighting device comprises: A connecting component, the connecting component is used to connect with the oil fume equipment; A lighting assembly, wherein the lighting assembly is rotatably connected to the connecting assembly; Wherein, the illumination angle of the lighting assembly is adjusted by rotating the lighting assembly; The connecting component includes a first adsorption component and a second adsorption component; One end of the first adsorption component is used for adsorption connection with the oil fume equipment, the other end of the first adsorption component is adsorbed and connected with one end of the second adsorption component, and the other end of the second adsorption component is connected with the lighting component.
2. The lighting device according to claim 1, characterized in that: The first adsorption component includes at least one first adsorption piece, the second adsorption component includes at least one second adsorption piece, and one first adsorption piece is adsorbed and connected to one second adsorption piece.
3. The lighting device according to claim 2, characterized in that: The connecting assembly further includes a connecting shaft, and both the first adsorption member and the second adsorption member are provided with openings for the connecting shaft to pass through; The connecting shaft passes through the opening of the first adsorption member and the opening of the second adsorption member to connect the first adsorption member and the second adsorption member in series.
4. The lighting device according to claim 3, characterized in that: The connecting assembly also includes a rotating member connected to one end of the connecting shaft.
5. The lighting device according to claim 2, characterized in that: The lighting assembly comprises a lighting board, and the lighting board comprises a lighting surface and a connection surface; The lighting surface is provided with a plurality of LED lamps, and the connecting surface is provided with the second adsorption component.
6. The lighting device according to claim 2, characterized in that: The first adsorption member includes an adsorption plate and a triangular connecting plate; One side of the adsorption plate is used for adsorption connection with the oil fume equipment, and the other side of the adsorption plate is connected with the triangular connection plate.
7. The lighting device according to claim 3, characterized in that: The first adsorption assembly includes two first adsorption members, and the second adsorption assembly includes two second adsorption members; One end of the connecting shaft passes through one of the first adsorption components and one of the second adsorption components, and the other end of the connecting shaft passes through another of the first adsorption components and another of the second adsorption components.
8. The lighting device according to claim 7, characterized in that: The connecting assembly further comprises a limiting member, and the limiting member is sleeved on the connecting shaft.
9. A fume device, characterized in that: The invention comprises a lighting device as described in any one of claims 1 to 8.