Cooking bench panel and gas stove

By using thin-film photovoltaic modules to generate electricity on the gas stove, combined with detection and low-light lighting, the problems of insufficient battery supply and inconvenient battery replacement in the battery box are solved, achieving long-lasting power and convenient use of the gas stove.

CN121720132APending Publication Date: 2026-03-24SUZHOU GUOXIAN INNOVATION TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-25
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

In existing household gas stoves, the batteries in the battery compartment are difficult to keep sufficient and are inconvenient to replace, affecting the normal use of the gas stove.

Method used

By replacing the battery box with thin-film photovoltaic modules, the system generates its own power through the thin-film photovoltaic modules on the transparent cover. Combined with detection components and low-light lighting components, it achieves long battery life and convenient use.

Benefits of technology

It achieves long-lasting operation of the gas stove, eliminates the need for battery replacement, provides low-light illumination at night, and improves ease of use and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a cooking bench panel and a gas stove. The cooking bench panel comprises a transparent cover plate which comprises at least one through opening, and the opening exposes a stove frame of the gas stove; the thin film photovoltaic module is arranged on the side, facing the interior of the cooking bench panel, of the transparent cover plate, and the orthographic projection of the thin film photovoltaic module on the cooking bench panel covers at least part of the area of the transparent cover plate; the thin film photovoltaic module is used for self-generating electricity according to ambient light so as to ignite the cooking bench; the detection part is electrically connected with the thin film photovoltaic module; the detection part is used for detecting the ambient brightness around the cooking bench panel; the weak light illumination component is electrically connected with the thin film photovoltaic module; and the weak light illumination part is used for emitting light when the detection part detects that the ambient brightness is lower than a brightness threshold. According to the cooking bench panel provided by the embodiment of the invention, a battery mounted in a battery box can be replaced by the thin-film photovoltaic module, so that long endurance is realized, and the cooking bench panel is convenient to use.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of photovoltaic technology, and in particular to a cooking table panel and gas stove. BACKGROUND

[0002] At present, under the guidance of relevant carbon emission policies, clean energy is accelerating expansion, and is the core force of the incremental supply of energy supply. Energy systems are transforming towards clean and low carbon.

[0003] However, the existing household gas stove mostly adopts an internal integrated battery box to realize ignition of the gas stove. However, the power of the battery is difficult to ensure sufficient and inconvenient to replace after long-term use, which affects the normal use of the gas stove. SUMMARY

[0004] The present application provides a cooking table panel and gas stove to realize long-term endurance and convenient use.

[0005] According to an aspect of the present application, a cooking table panel is provided, comprising:

[0006] A transparent cover plate comprising at least one through opening, the opening exposing the grill of the gas stove;

[0007] A thin-film photovoltaic module is arranged on the side of the transparent cover plate facing the inside of the cooking table panel, and the orthographic projection of the thin-film photovoltaic module covers at least part of the area of the transparent cover plate; the thin-film photovoltaic module is used for self-power generation according to ambient light to ignite the cooking table;

[0008] A detection component is electrically connected with the thin-film photovoltaic module; the detection component is used for detecting the ambient brightness around the cooking table panel;

[0009] A weak light illumination component is electrically connected with the thin-film photovoltaic module; the weak light illumination component is used for emitting light when the detection component detects that the ambient brightness is lower than a brightness threshold.

[0010] Optionally, the detection component and the weak light illumination component are arranged between the transparent cover plate and the thin-film photovoltaic module;

[0011] The orthographic projection of the thin-film photovoltaic module covers the transparent cover plate, and the thin-film photovoltaic module is provided with at least one first through opening, the first opening coincides with the opening in the orthographic projection of the transparent cover plate;

[0012] Preferably, the detection component and the weak light illumination component are arranged in the same layer.

[0013] Optionally, the detection component, the weak light illumination component and the thin-film photovoltaic module are arranged in the same layer;

[0014] The thin-film photovoltaic module covers the transparent cover plate in the orthographic projection of the transparent cover plate, and the thin-film photovoltaic module is provided with at least one first opening, at least one second opening and at least one third opening;

[0015] The first opening coincides with the opening in the orthographic projection of the transparent cover plate, the second opening covers the detection component in the orthographic projection of the transparent cover plate, and the third opening covers the weak light illuminating component in the orthographic projection of the transparent cover plate.

[0016] Optionally, the cooktop panel further comprises an energy storage component.

[0017] The energy storage component is electrically connected with the thin-film photovoltaic module, the detection component and the weak light illuminating component respectively, for storing the electric energy generated by the thin-film photovoltaic module, providing electric energy for the detection component and the weak light illuminating component, and igniting the cooktop.

[0018] Preferably, the energy storage component comprises a thin-film super capacitor.

[0019] Preferably, the energy storage component comprises any one of a lithium ion battery, a nickel-hydrogen battery and a lead-acid battery.

[0020] Optionally, the energy storage component is arranged on the side of the thin-film photovoltaic module away from the transparent cover plate.

[0021] The thin-film photovoltaic module covers the transparent cover plate in the orthographic projection of the transparent cover plate, and the thin-film photovoltaic module is provided with at least one first opening; the first opening coincides with the opening in the orthographic projection of the transparent cover plate.

[0022] Optionally, the energy storage component is arranged in the same layer as the thin-film photovoltaic module.

[0023] The thin-film photovoltaic module covers the transparent cover plate in the orthographic projection of the transparent cover plate, and the thin-film photovoltaic module is provided with at least one first opening and at least one fourth opening; the first opening coincides with the opening in the orthographic projection of the transparent cover plate, and the fourth opening covers the energy storage component in the orthographic projection of the transparent cover plate.

[0024] Preferably, the energy storage component does not overlap with the detection component and the weak light illuminating component in the orthographic projection of the transparent cover plate.

[0025] Optionally, the thin-film photovoltaic module comprises at least two thin-film photovoltaic modules.

[0026] At least two of the thin-film photovoltaic modules are arranged in the same layer, and the thin-film photovoltaic modules do not overlap the projection of the transparent cover plate and the projection of the opening, the detection component, and the weak-light illumination component on the transparent cover plate.

[0027] Preferably, the thin-film photovoltaic assembly includes a perovskite thin-film photovoltaic cell.

[0028] Optionally, the detection component includes a sensor module.

[0029] The sensor module includes an optical sensor for detecting the ambient brightness around the cooktop panel and transmitting the ambient brightness to the control component for comparison with the brightness threshold.

[0030] Preferably, the sensor module further includes an acoustic sensor and a temperature sensor.

[0031] Preferably, the weak-light illumination component includes a light-emitting diode light bar, a single chip, or multiple chips.

[0032] Optionally, the transparent cover plate includes tempered glass or acrylic resin.

[0033] According to another aspect of the present application, a gas stove is provided, which includes the cooktop panel according to any embodiment of the first aspect.

[0034] The cooktop panel provided by the embodiments of the present application adopts a composite panel structure, and the outermost layer is provided with a transparent cover plate. At least one opening is arranged through the transparent cover plate to expose the burner rack of the gas stove. A thin-film photovoltaic assembly is arranged on the side of the transparent cover plate facing the inside of the cooktop panel. The thin-film photovoltaic assembly covers at least part of the area of the transparent cover plate in the projection of the transparent cover plate, and can generate electricity by itself through the external environmental light irradiated on the surface through the transparent cover plate, thereby providing the required electric energy for normal ignition of the gas stove. Compared with the related art in which the battery in the battery box provides the required electric energy for ignition of the cooktop, the thin-film photovoltaic assembly is used to replace the battery in the battery box in the embodiments of the present application, which can effectively achieve long-term endurance and does not need to be replaced, thereby making the use more convenient. Moreover, the cooktop panel provided by the embodiments of the present application is further provided with a detection component and a weak-light illumination component, which are electrically connected to the thin-film photovoltaic assembly. The thin-film photovoltaic assembly provides the required electric energy for the operation of the detection component and the weak-light illumination component. The detection component can detect the ambient brightness around the outside of the cooktop, and when the ambient brightness is dark, the weak-light illumination component emits weak light, so that the user can see the surrounding environment when passing through the kitchen gas stove at night, effectively avoiding the risk of bumping at night, and providing convenience for life.

[0035] It is to be understood that the details set forth herein do not limit the scope of the embodiments of the application to the specific embodiments described. The foregoing detailed description has set forth various embodiments of the devices and / or processes via the use of specific terminology. However, embodiments of the application are not necessarily limited to those described, but can be practiced with the BRIEF DESCRIPTION OF DRAWINGS

[0036] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiments description. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor.

[0037] Figure 1 is an exploded view of a cooktop panel according to an embodiment of the present application;

[0038] Figure 2 is a top view of a thin-film photovoltaic module in a cooktop panel according to an embodiment of the present application;

[0039] Figure 3 is a top view of a thin-film photovoltaic module in a cooktop panel according to another embodiment of the present application;

[0040] Figure 4 is an exploded view of a cooktop panel according to another embodiment of the present application;

[0041] Figure 5 is a top view of a thin-film photovoltaic module in a cooktop panel according to another embodiment of the present application;

[0042] Figure 6 is an exploded view of a cooktop panel according to another embodiment of the present application;

[0043] Figure 7 is a structural schematic view of a gas stove according to an embodiment of the present application. DETAILED DESCRIPTION

[0044] In order to make the technical personnel in the art better understand the present application scheme, the following will combine the drawings in the embodiments of the present application, the technical solutions in the embodiments of the present application are described clearly and completely, obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor should belong to the scope of protection of the present application.

[0045] It should be noted that the terms "first", "second", and the like in the description and in the claims of the present application and in the above-described drawings are intended to distinguish similar objects and not necessarily describe a particular sequential or chronological order. It should be understood that the data thus used can be interchanged, where appropriate, so that the embodiments of the application described herein can be practiced in other than the illustrated or described order. Furthermore, the terms "comprise" and "have", and any variations thereof, are intended to cover non-exclusive inclusion, for example, processes, methods, systems, products, or devices that include a list of steps or units not necessarily limited to those clearly listed, but can include other steps or units not clearly listed or inherent to such processes, methods, products, or devices.

[0046] The embodiment of the present application provides a cooktop panel. Figure 1 An exploded view of the structure of a cooktop panel is provided in the embodiment of the present application. As shown in the figure, the cooktop panel 000 comprises: Figure 1

[0047] A transparent cover plate 100 comprises at least one through opening 101, and the opening 101 exposes the burner frame of the gas stove;

[0048] A thin-film photovoltaic module 200 is arranged on the side of the transparent cover plate 100 facing the inside of the cooktop panel 000, and the orthographic projection of the thin-film photovoltaic module 200 covers at least part of the area of the transparent cover plate 100; the thin-film photovoltaic module 200 is used for self-power generation according to ambient light to ignite the cooktop;

[0049] A detection component 300 is electrically connected with the thin-film photovoltaic module 200; the detection component 300 is used for detecting the ambient brightness around the cooktop panel 000;

[0050] A weak light illuminating component 400 is electrically connected with the thin-film photovoltaic module 200; the weak light illuminating component 400 is used for emitting light when the detection component 300 detects that the ambient brightness is lower than a brightness threshold.

[0051] ​Specifically, the cooktop panel 000 provided by the embodiment of the present application adopts a composite panel structure, which includes a transparent cover plate 100, a thin-film photovoltaic assembly 200, a detection component 300 and a weak-light illumination component 400, which can be respectively arranged in different layers, thereby forming a laminated composite structure in the thickness direction of the cooktop panel 000. Among them, the transparent cover plate 100 is arranged in the uppermost layer of the cooktop panel 000, that is, the outermost layer of the cooktop panel 000, so as to protect other components inside the cooktop panel 000 from being damaged. The through opening 101 arranged on the transparent cover plate 100 is a reserved burner position, so that the burner rack of the gas stove is exposed from the opening 101. The thin-film photovoltaic assembly 200 is arranged on the lower side of the transparent cover plate 100, which is used to absorb external environmental light to generate electricity, so as to serve as the main source of electric energy of the cooktop panel 000 and ensure the normal use of the gas stove. Therefore, the transparent cover plate 100 in the outermost layer is made of transparent material, which can maximize the transmission of external environmental light through the transparent cover plate 100 to the surface of the thin-film photovoltaic assembly 200, thereby effectively reducing the blockage of light. For example, the transparent cover plate 100 includes tempered glass or acrylic resin. In addition, the transparent cover plate 100 can also include a flat plate structure with appropriate decorative patterns arranged on the surface of the transparent material, which is beneficial to improve the aesthetic effect. Since the area of the thin-film photovoltaic assembly 200 receiving external environmental light determines the power generation, the thin-film photovoltaic assembly 200 can be arranged to cover the entire cooktop panel 000, that is, the orthogonal projection of the thin-film photovoltaic assembly 200 on the transparent cover plate 100 covers the transparent cover plate 100 as much as possible, so as to ensure the normal cooking of the gas stove and the use of other electric power applications. The cooktop panel 000 provided by the embodiment of the present application adopts the thin-film photovoltaic assembly 200 to replace the battery installed in the battery box in the traditional cooktop, which can generate electricity by itself as long as there is weak light in the external environment, thereby meeting the daily application of the gas stove, realizing long-term endurance, and avoiding complex operations such as battery replacement, and being convenient to use.

[0052] The stove panel 000 is provided with a detection component 300 and a weak light illumination component 400 in addition to the conventional ignition cooking function. The detection component 300 and the weak light illumination component 400 are electrically connected with the thin-film photovoltaic module 200, and the thin-film photovoltaic module 200 generates electric energy to supply the detection component 300 and the weak light illumination component 400 to maintain normal operation. The detection component 300 can detect the ambient brightness outside the stove panel 000 and transmit it to the related control component, so as to determine whether the ambient brightness outside the stove panel 000 is too dark according to the obtained ambient brightness data, and the control component can control the weak light illumination component 400 to emit soft light when the ambient brightness is too dark, thereby providing convenience for the user's life. In the related art, the lighting component is generally provided on the range hood, and the light emitted by the lighting component is relatively bright, and the main function is to provide illumination during cooking to better cook dishes. However, the stove panel 000 provided in the embodiment of the present application is provided with a weak light illumination component 400 inside the stove, and the weak light illumination component 400 is used to emit light with relatively weak brightness to provide illumination when the ambient brightness outside is relatively dark, for example, at night, so that the user can clearly see the surrounding environment of the kitchen when passing through the kitchen stove at night, effectively avoiding the risk of bumping at night.

[0053] The stove panel provided in the embodiment of the present application adopts a composite panel structure, and the outermost layer is provided with a transparent cover plate, and at least one through opening is arranged on the transparent cover plate to expose the burner rack of the gas stove. A thin-film photovoltaic module is arranged on the side of the transparent cover plate facing the inside of the stove panel, and the thin-film photovoltaic module covers at least part of the area of the transparent cover plate in the orthographic projection of the transparent cover plate. The thin-film photovoltaic module can generate electricity by itself through the external ambient light irradiated on the surface through the transparent cover plate, thereby providing the required electric energy for normal ignition of the gas stove. Compared with the related art in which the battery in the battery box provides the required electric energy for ignition of the stove, the thin-film photovoltaic module is used to replace the battery in the embodiment of the present application, which can effectively realize long-term endurance and does not need to be replaced, thereby making the use more convenient. Moreover, the stove panel provided in the embodiment of the present application is also provided with a detection component and a weak light illumination component, which are electrically connected with the thin-film photovoltaic module. The thin-film photovoltaic module provides the required electric energy for the detection component and the weak light illumination component. The detection component can detect the ambient brightness outside the stove, and when the ambient brightness is relatively dark, the weak light illumination component emits relatively weak light, so that the user can clearly see the surrounding environment when passing through the kitchen gas stove at night, effectively avoiding the risk of bumping at night, thereby providing convenience for life.

[0054] On the basis of the above-mentioned embodiments, Figure 2 is a top view structural schematic diagram of a thin-film photovoltaic module in a stove panel provided in the embodiment of the present application. Referring to Figure 1 and Figure 2Optionally, the detection component 300 and the weak light illumination component 400 are arranged between the transparent cover plate 100 and the thin-film photovoltaic assembly 200.

[0055] The thin-film photovoltaic assembly 200 covers the transparent cover plate 100 in orthographic projection, and the thin-film photovoltaic assembly 200 is provided with at least one first opening 201 penetrating therethrough, the first opening 201 being coincident with the opening 101 in orthographic projection of the transparent cover plate 100.

[0056] Specifically, the thin-film photovoltaic assembly 200 can cover the transparent cover plate 100 in orthographic projection, and the thin-film photovoltaic assembly 200 is provided with at least one first opening 201 penetrating therethrough, the first opening 201 being coincident with the opening 101 in orthographic projection of the transparent cover plate 100. In this way, the thin-film photovoltaic assembly 200 with the largest area can be arranged to generate electricity to supply the cooktop panel 000 with electricity required for ignition and other power applications.

[0057] The detection component 300 and the weak light illumination component 400 can be arranged between the transparent cover plate 100 and the thin-film photovoltaic assembly 200, so that the thin-film photovoltaic assembly 200 does not block the detection component 300 and the weak light illumination component 400, and the detection component 300 can accurately detect the brightness of the external environment, and control the weak light illumination component 400 to emit light when the brightness of the external environment is low. The light is directly emitted from the transparent cover plate 100, achieving the effect of weak light illumination at night. The area of the detection component 300 and the weak light illumination component 400 blocked by the thin-film photovoltaic assembly 200 is very small relative to the overall area of the thin-film photovoltaic assembly 200, and thus the blocking of the thin-film photovoltaic assembly 200 by the detection component 300 and the weak light illumination component 400 can be ignored. Alternatively, openings of corresponding sizes can be arranged on the thin-film photovoltaic assembly 200 corresponding to the positions of the detection component 300 and the weak light illumination component 400, so as to reduce the preparation area of the thin-film photovoltaic assembly 200, which is conducive to reducing the preparation cost.

[0058] On the basis of the above embodiments, further referring to Figure 1 Optionally, the detection component 300 and the weak light illumination component 400 are arranged in the same layer.

[0059] Specifically, since the detection component 300 and the weak light illumination component 400 occupy a small area, the detection component 300 and the weak light illumination component 400 can be arranged in the same layer, so as to simplify the composite structure of the cooktop panel 000 and reduce the thickness of the cooktop panel 000 to a certain extent.

[0060] On the basis of the above-mentioned embodiments, Figure 3 is another top view structural schematic diagram of the thin-film photovoltaic module in the cooktop panel provided by the embodiment of the present application. Referring to Figure 1 and Figure 3 Optionally, the detection component 300, the weak-light illuminating component 400 and the thin-film photovoltaic module 200 are arranged in the same layer;

[0061] The thin-film photovoltaic module 200 covers the transparent cover plate 100 in the orthographic projection, and is provided with at least one first opening 201, at least one second opening 202 and at least one third opening 203 which are all penetrated;

[0062] The first opening 201 coincides with the opening 101 in the orthographic projection of the transparent cover plate 100, the second opening 202 covers the detection component 300 in the orthographic projection of the transparent cover plate 100, and the third opening 203 covers the weak-light illuminating component 400 in the orthographic projection of the transparent cover plate 100.

[0063] Specifically, in order to reduce the overall thickness of the cooktop panel 000, the detection component 300 and the weak-light illuminating component 400 can be arranged in the same layer as the thin-film photovoltaic module 200. At least one first opening 201 which is penetrated is arranged on the thin-film photovoltaic module 200 at a position corresponding to the hob, at least one second opening 202 which is penetrated is arranged at a position corresponding to the detection component 300, and at least one third opening 203 which is penetrated is arranged at a position corresponding to the weak-light illuminating component 400, so that the thin-film photovoltaic module 200 exposes the detection component 300 through the second opening 202 and exposes the weak-light illuminating component 400 through the third opening 203, avoiding that the thin-film photovoltaic module 200 causes the detection component 300 and the weak-light illuminating component 400 to be shielded and affects normal detection and illumination. In this way, the invalid power generation area of the thin-film photovoltaic module 200 which is shielded by the detection component 300 and the weak-light illuminating component 400 can be effectively reduced, and the preparation cost of the thin-film photovoltaic module 200 can be reduced.

[0064] On the basis of the above-mentioned embodiments, Figure 4 is another structure explosion diagram of the cooktop panel provided by the embodiment of the present application. Referring to Figure 4 Optionally, the cooktop panel 000 further comprises an energy storage component 500.

[0065] The energy storage component 500 is electrically connected with the thin-film photovoltaic module 200, the detection component 300 and the weak-light illuminating component 400 respectively, is used for storing the electric energy generated by the thin-film photovoltaic module 200, providing electric energy for the detection component 300 and the weak-light illuminating component 400, and igniting the cooktop.

[0066] Specifically, the cooktop panel 000 is further provided with an energy storage component 500, which is electrically connected with the thin-film photovoltaic module 200, and can store the electric energy generated by the thin-film photovoltaic module 200 relying on external ambient light and not consumed in time. The energy storage component 500 is further electrically connected with the detection component 300 and the weak-light lighting component 400, respectively, and can transmit the stored excess electric energy to the detection component 300 and the weak-light lighting component 400, so as to ensure the normal work of the detection component 300 and the weak-light lighting component 400; the energy storage component 500 can also be electrically connected with the ignition needle of the gas stove, and is used for pulse power supply to the ignition needle when the thin-film photovoltaic module 200 cannot generate electricity or the generated electric energy is insufficient to realize the ignition of the cooktop, so as to realize the ignition of the cooktop and ensure the normal use of the gas stove.

[0067] On the basis of each of the above embodiments, optionally, the energy storage component 500 includes a thin-film super capacitor.

[0068] Specifically, the thin-film super capacitor is a miniaturized and flexible branch of the super capacitor, and has the energy storage characteristics of the traditional super capacitor and the structural advantages of the thin-film material. The thin-film super capacitor has super-high power density and fast charging and discharging capacity, super-long cycle life, excellent flexibility and integration compatibility, wide temperature working interval and high safety, and flexible design structure. As the energy storage component 500 applied in the cooktop panel 000, the thin-film super capacitor has good effects in structure and function. Exemplarily, the energy storage component 500 includes any one of a lithium ion battery, a nickel-hydrogen battery and a lead-acid battery, which is not limited herein.

[0069] On the basis of each of the above embodiments, continuing to refer to Figure 4 Optionally, the energy storage component 500 is arranged on the side of the thin-film photovoltaic module 200 away from the transparent cover plate 100.

[0070] The thin-film photovoltaic module 200 covers the transparent cover plate 100 in orthographic projection, and the thin-film photovoltaic module 200 is provided with at least one first opening 201 penetrating through; the orthographic projection of the first opening 201 on the transparent cover plate 100 coincides with the opening 101.

[0071] Specifically, since the working of the energy storage component 500 has no requirement for light, the energy storage component 500 can be arranged at a lower layer of the thin-film photovoltaic module 200, and can be arranged at any position of the lower layer corresponding to the thin-film photovoltaic module 200, which is not limited herein. In this way, it can be ensured that the energy storage component 500 will not cause light blocking to the thin-film photovoltaic module 200, and thus will not affect the power generation of the thin-film photovoltaic module 200. The thin-film photovoltaic module 200 covers the cooktop panel 000 as much as possible, and at least one first opening 201 is arranged to correspond to the position of the opening 101 on the transparent cover plate 100, so that the stove rack is exposed through the first opening 201 and the opening 101.

[0072] On the basis of the above-mentioned embodiments, Figure 5 is another top view structural schematic diagram of a thin-film photovoltaic module in a cooktop panel provided by an embodiment of the present application. Referring to Figure 5 Optionally, the energy storage component 500 is arranged at the same layer as the thin-film photovoltaic module 200.

[0073] The thin-film photovoltaic module 200 covers the transparent cover plate 100 in orthographic projection, and the thin-film photovoltaic module 200 is provided with at least one first opening 201 and at least one fourth opening 204. The orthographic projection of the first opening 201 on the transparent cover plate 100 coincides with the opening 101, and the orthographic projection of the fourth opening 204 on the transparent cover plate 100 covers the orthographic projection of the energy storage component 500 on the transparent cover plate 100.

[0074] Specifically, the energy storage component 500 can also be arranged at the same layer as the thin-film photovoltaic module 200, so as to reduce the overall thickness of the composite structure of the cooktop panel 000. The thin-film photovoltaic module 200 can be provided with a fourth opening 204, and the size of the fourth opening 204 is the same as that of the energy storage component 500, so that the energy storage component 500 can be arranged at the same layer as the thin-film photovoltaic module 200 through the fourth opening 204, and the invalid area of the thin-film photovoltaic module 200 that cannot generate electricity due to being blocked by the energy storage component 500 can be effectively reduced, which is beneficial to reducing the manufacturing cost of the thin-film photovoltaic module 200.

[0075] On the basis of the above-mentioned embodiments, continuing to refer to Figure 4 Optionally, the orthographic projection of the energy storage component 500 on the transparent cover plate 100 does not overlap with the orthographic projection of the detection component 300 and the weak-light illuminating component 400 on the transparent cover plate 100.

[0076] Specifically, in the case of the energy storage component 500 being arranged in the same layer as the thin-film photovoltaic assembly 200, the energy storage component 500 can be arranged alternately with the detection component 300 and the weak-light illumination component 400, i.e., the energy storage component 500 does not overlap with the projections of the detection component 300 and the weak-light illumination component 400 on the transparent cover plate 100. In this way, the energy storage component 500 does not block the detection component 300 and the weak-light illumination component 400, and the detection component 300 and the weak-light illumination component 400 can work normally.

[0077] On the basis of the above embodiments, Figure 6 is another structure explosion view of the cooktop panel provided by the embodiments of the present application. Referring to Figure 6 Optionally, the thin-film photovoltaic assembly 200 includes at least two thin-film photovoltaic modules 210.

[0078] The at least two thin-film photovoltaic modules 210 are arranged in the same layer, and the projections of the thin-film photovoltaic modules 210 on the transparent cover plate 100 do not overlap with the projections of the openings 101, the detection component 300, and the weak-light illumination component 400 on the transparent cover plate 100.

[0079] Specifically, the thin-film photovoltaic assembly 200 can also be provided as at least two independent thin-film photovoltaic modules 210, and each thin-film photovoltaic module 210 is electrically connected to the detection component 300, the weak-light illumination component 400, and the energy storage component 500, to supply the detection component 300 and the weak-light illumination component 400 with the electrical energy required for working, and store the excess electrical energy in the energy storage component 500. To reduce the thickness of the cooktop panel 000, the at least two thin-film photovoltaic modules 210 can be arranged in the same layer, and the arrangement positions of the thin-film photovoltaic modules 210 and the arrangement positions of the detection component 300 and the weak-light illumination component 400 are staggered in the thickness direction of the cooktop panel 000, so that the thin-film photovoltaic modules 210, the detection component 300, and the weak-light illumination component 400 do not block each other, and the thin-film photovoltaic modules 210, the detection component 300, and the weak-light illumination component 400 can work normally.

[0080] On the basis of the above embodiments, optionally, the thin-film photovoltaic assembly 200 includes a perovskite thin-film photovoltaic cell.

[0081] Specifically, the perovskite thin-film photovoltaic cell is a third-generation photovoltaic technology that attracts much attention due to its potential high efficiency and low cost. The perovskite thin-film photovoltaic cell has better photoelectric conversion performance than cadmium telluride cells, copper indium gallium selenide cells, or organic photovoltaic cells, because the band gap of the perovskite thin-film photovoltaic cell is adjustable, and the perovskite thin-film photovoltaic cell has a shallow energy level defect feature. Therefore, the perovskite thin-film photovoltaic cell can be better applied to indoor weak-light environments, and provide convenience for users.

[0082] On the basis of the above-mentioned embodiments, the detection component comprises a sensor module.

[0083] The sensor module comprises an optical sensor for detecting the ambient brightness around the hob panel and transmitting to the control component for comparison with the brightness threshold.

[0084] Specifically, the detection component can comprise a related sensor module, which can comprise an optical sensor for detecting the ambient brightness around the outside of the hob panel and transmitting the collected brightness data to the control component for comparison with the brightness threshold.

[0085] On the basis of the above-mentioned embodiments, the sensor module further comprises an acoustic sensor and a temperature sensor.

[0086] Specifically, the acoustic sensor can detect the decibel size of the sound around the outside of the hob panel and transmit the collected sound data to the control component for comparison with the sound threshold. When the brightness data is lower than the brightness threshold and the sound data is less than the sound threshold, it indicates that the outside ambient brightness is dim and the sound is small, i.e.

[0087] On the basis of the above-mentioned embodiments, the weak light illumination component comprises a light-emitting diode (LED) light bar, a single chip or multiple chips.

[0088] Specifically, the weak light illumination component comprises a light-emitting diode (LED) light bar, a single chip or multiple chips.

[0089] The embodiment of the present application also provides a gas stove. Figure 7is a structural schematic diagram of a gas stove provided by an embodiment of the present application. Referring to Figure 7 The gas stove comprises the cooktop panel 000 provided by any of the above embodiments, has similar functional modules and beneficial effects to the cooktop panel 000, and thus will not be described herein.

[0090] The above specific embodiments do not constitute a limitation on the protection scope of the present application. It should be understood by those skilled in the art that various modifications, combinations, sub-combinations and substitutions can be made according to design requirements and other factors. Any modification, equivalent replacement and improvement made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A stovetop panel, characterized in that, include: A transparent cover, including at least one through opening that exposes the burner frame of the gas stove; A thin-film photovoltaic module is disposed on the side of the transparent cover plate facing the inside of the stove panel, and the orthographic projection of the thin-film photovoltaic module on the transparent cover plate covers at least a portion of the transparent cover plate; the thin-film photovoltaic module is used to generate electricity based on ambient light for stove ignition; A detection component is electrically connected to the thin-film photovoltaic module; the detection component is used to detect the ambient brightness around the stove panel; A low-light illumination component is electrically connected to the thin-film photovoltaic module; the low-light illumination component is used to emit light when the detection component detects that the ambient brightness is lower than the brightness threshold.

2. The cooktop panel according to claim 1, characterized in that, Both the detection component and the low-light illumination component are disposed between the transparent cover plate and the thin-film photovoltaic module; The thin-film photovoltaic module covers the transparent cover plate in its orthographic projection, and the thin-film photovoltaic module is provided with at least one through-hole, the first opening being coincident with the orthographic projection of the transparent cover plate. Preferably, the detection component and the low-light illumination component are arranged in the same layer.

3. The cooktop panel according to claim 1, characterized in that, The detection component, the low-light illumination component, and the thin-film photovoltaic module are arranged in the same layer; The thin-film photovoltaic module covers the transparent cover plate in the orthographic projection of the transparent cover plate, and the thin-film photovoltaic module is provided with at least one through first opening, at least one through second opening and at least one through third opening; The first opening's orthographic projection on the transparent cover plate coincides with the opening itself; the second opening's orthographic projection on the transparent cover plate covers the orthographic projection of the detection component on the transparent cover plate; and the third opening's orthographic projection on the transparent cover plate covers the orthographic projection of the low-light illumination component on the transparent cover plate.

4. The stovetop panel according to claim 1, characterized in that, Also includes: Energy storage components; The energy storage component is electrically connected to the thin-film photovoltaic module, the detection component, and the low-light lighting component, respectively, and is used to store the electrical energy generated by the thin-film photovoltaic module, provide electrical energy to the detection component and the low-light lighting component, and ignite the stove. Preferably, the energy storage component includes a thin-film supercapacitor; Preferably, the energy storage component includes any one of lithium-ion batteries, nickel-metal hydride batteries, and lead-acid batteries.

5. The stovetop panel according to claim 4, characterized in that, The energy storage component is located on the side of the thin-film photovoltaic module away from the transparent cover plate; The thin-film photovoltaic module covers the transparent cover plate in its orthographic projection, and the thin-film photovoltaic module is provided with at least one through-hole; the orthographic projection of the first opening on the transparent cover plate coincides with the opening.

6. The stovetop panel according to claim 4, characterized in that, The energy storage component is disposed on the same layer as the thin-film photovoltaic module; The thin-film photovoltaic module's orthographic projection on the transparent cover plate covers the transparent cover plate, and the thin-film photovoltaic module is provided with at least one through-hole first opening and one through-hole fourth opening; the orthographic projection of the first opening on the transparent cover plate coincides with the opening, and the orthographic projection of the fourth opening on the transparent cover plate covers the orthographic projection of the energy storage component on the transparent cover plate. Preferably, the orthographic projection of the energy storage component onto the transparent cover does not overlap with the orthographic projections of the detection component and the low-light illumination component onto the transparent cover.

7. The cooktop panel according to claim 1, characterized in that, The thin-film photovoltaic module includes at least two thin-film photovoltaic modules; At least two of the thin-film photovoltaic modules are arranged on the same layer, and the orthographic projection of the thin-film photovoltaic module on the transparent cover does not overlap with the orthographic projection of the opening, the detection component, and the low-light illumination component on the transparent cover. Preferably, the thin-film photovoltaic module includes a perovskite thin-film photovoltaic cell.

8. The cooktop panel according to claim 1, characterized in that, The detection component includes a sensor module; The sensor module includes an optical sensor for detecting the ambient brightness around the cooktop panel and transmitting the data to a control unit to compare the ambient brightness with a brightness threshold. Preferably, the sensor module further includes an acoustic sensor and a temperature sensor; Preferably, the low-light illumination component includes a light-emitting diode strip, a single chip, or multiple chips.

9. The stovetop panel according to claim 1, characterized in that, The transparent cover plate includes tempered glass or acrylic resin.

10. A gas stove, characterized in that, Including the cooktop panel as described in any one of claims 1-9.