Electronic equipment
By setting up boards with different power generation efficiencies on electronic devices and switching to use the more efficient board as the main power generator according to the lighting environment, the problem of reduced power generation efficiency of electronic devices under different lighting conditions is solved, and the stability and sufficiency of power generation efficiency are achieved.
Patent Information
- Application Number
- CN202520142755.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-21
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-01-21
AI Technical Summary
When electronic devices switch from bright light to dark light, the power generation efficiency of solar panels decreases, making it difficult to meet the power generation efficiency requirements under different environments.
The electronic device is equipped with a first plate and a second plate with different power generation efficiencies. The plate with higher efficiency is switched as the main power generator according to the lighting environment to meet the power generation needs of different lighting environments.
By switching to a plate with high power generation efficiency as the main power generator under different lighting conditions, the reduction in power generation efficiency is reduced, ensuring the stability and sufficiency of power generation under different conditions.
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Figure CN223957497U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present disclosure relates to the technical field of electronic devices, and in particular to an electronic device. BACKGROUND
[0002] A solar panel is arranged on an electronic device to enable the electronic device to be powered.
[0003] However, after the electronic device switches from a bright light environment to a dark light environment, the power generation efficiency of the solar panel is reduced. CONTENT OF THE INVENTION
[0004] The present disclosure provides an electronic device, and the technical solution is as follows:
[0005] To solve the above technical problem, the present disclosure provides an electronic device, which can include: a first body, a second body, and a solar panel, the first body is provided with an input device; the second body is provided with a display device and is rotationally connected with the first body; the solar panel is arranged on the surface of the first body and / or the second body, and is used to power the electrical devices and / or the electrical storage devices on the electronic device, the solar panel includes: a first panel body and a second panel body, the power generation efficiency of the first panel body and the second panel body in different light environments is different.
[0006] In some embodiments, the first panel body is arranged on a first surface of the first body, the first surface is the surface of the first body provided with the input device; the second panel body is arranged on a second surface of the second body, the second surface is the surface of the second body facing away from the display device; wherein, in a first light environment, the power generation efficiency of the first panel body is less than that of the second panel body; in a second light environment with light intensity less than the first light environment, the power generation efficiency of the first panel body is greater than that of the second panel body.
[0007] In some embodiments, the first panel body is arranged on the circumferential surface of the input device; or, the first panel body has a first storage state of being stored in the first body and a first use state of extending from the first body, in the first use state, the first panel body can cover the circumferential surface of the input device and / or cover the input device.
[0008] In some embodiments, the second panel body covers all of the second surface; or, the second panel body has a second storage state of being stored in the second body and a second use state of extending from the second body, in the second use state, the second body can cover the circumferential surface of the display device, and / or cover the display device, and / or cover all of the second surface of the second body.
[0009] In some embodiments, the first plate body comprises at least one of the following: a polycrystalline silicon plate body, a dye-sensitized plate body, a thin-film plate body; and the second plate body comprises a single-crystal silicon plate body.
[0010] In some embodiments, the first plate body is electrically connected to the input device to supply power to the input device; and the second plate body is electrically connected to the main board of the electronic device to supply power to a system load of the electronic device, the system load comprising at least a processor of the electronic device, the input device, and the display device.
[0011] In some embodiments, the electronic device further comprises a power storage device disposed in the first body; the first plate body is electrically connected to the power storage device to supply power to the power storage device; and the second plate body is electrically connected to the power storage device to supply power to the power storage device.
[0012] In some embodiments, the first plate body is connected to the main board to supply power to the system load; and the second plate body is further connected to the input device to supply power to the input device.
[0013] In some embodiments, the electronic device further comprises a detection device and a control device, the detection device being connected to the input device and / or the system load to detect power consumption of the connected input device and / or system load; and the control device being connected to the solar panel, the power storage device, and the detection device to control a line state between the solar panel and the power storage device.
[0014] In some embodiments, the first plate body and the second plate body are disposed in the first body, the first plate body and the second plate body respectively cover different positions of a third surface of the first body, the third surface being a side surface of the first body provided with the input device, and a coverage area of the first plate body is greater than a coverage area of the second plate body; and / or, the first plate body and the second plate body are disposed in the second body, the first plate body and the second plate body respectively cover different positions of a fourth surface of the second body, the fourth surface being a surface of the second body facing away from the display device, and a coverage area of the first plate body is less than a coverage area of the second plate body; wherein, in a first light environment, a power generation efficiency of the first plate body is less than a power generation efficiency of the second plate body; and in a second light environment with light intensity less than the first light environment, the power generation efficiency of the first plate body is greater than the power generation efficiency of the second plate body.
[0015] The above description is only a summary of the technical solutions of the present disclosure. In order to make the technical means of the present disclosure more clearly understood and can be implemented according to the content of the description, the following will be described in detail with the preferred embodiments of the present disclosure and with the help of the accompanying drawings. BRIEF DESCRIPTION OF DRAWINGS
[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present disclosure or the prior art, the drawings needed to be used in the embodiments or the prior art description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present disclosure, and for those skilled in the art, other drawings can also be obtained without creative labor on the basis of these drawings.
[0017] Figure 1 Structure diagram of the electronic device provided by the embodiment of the present disclosure Figure 1 ;
[0018] Figure 2 Structure diagram of the electronic device provided by the embodiment of the present disclosure Figure 2 ;
[0019] Figure 3 Structure diagram of the electronic device provided by the embodiment of the present disclosure Figure 3 .
[0020] Explanation of the reference signs:
[0021] 100, electronic device; 10, first body; 11, input device; 12, mainboard; 13, power storage device; 20, second body; 21, display device; 30, solar panel; 31, first plate body; 32, second plate body. DETAILED DESCRIPTION
[0022] The embodiments of the present disclosure will be further described in detail below in combination with the drawings and the embodiments. The detailed description of the following embodiments and the drawings are used to exemplarily illustrate the principles of the present disclosure, but cannot be used to limit the scope of the present disclosure, and the present disclosure can be implemented in many different forms, and is not limited to the specific embodiments disclosed in the text, but includes all technical solutions falling within the scope of the claims.
[0023] The present disclosure provides these embodiments in order to make the present disclosure thorough and complete, and fully express the scope of the present disclosure to those skilled in the art. It should be noted that: unless otherwise specifically stated, the relative arrangement of the components and steps, the composition of the materials, the numerical expressions and values set forth in these embodiments should be interpreted as merely exemplary, and not as a limitation.
[0024] It should be noted that in the description of the present disclosure, unless otherwise specified, the meaning of "a plurality of" is greater than or equal to two; the orientation or positional relationship indicated by the terms "upper", "lower", "left", "right", "inner", "outer" and the like is only for the purpose of facilitating the description of the present disclosure and simplifying the description, and does not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present disclosure. When the absolute position of the described object changes, the relative positional relationship may also change accordingly.
[0025] In addition, "first", "second", and similar words used in the present disclosure do not indicate any order, number, or importance, but are only used to distinguish different parts. "Vertical" is not strictly vertical, but within the allowable range of error. "Parallel" is not strictly parallel, but within the allowable range of error. "Include" or "contain" and similar words mean that the elements before the word cover the elements listed after the word, and do not exclude the possibility of also covering other elements.
[0026] It should also be noted that in the description of the present disclosure, unless otherwise specified and limited, the terms "mount", "connect", "connection" should be understood in a broad sense, for example, it can be fixed connection, or detachable connection, or integral connection; it can be directly connected, or indirectly connected through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in the present disclosure can be understood according to the specific circumstances. When it is described that a specific device is located between a first device and a second device, there can be an intermediate device between the specific device and the first device or the second device, or there can be no intermediate device.
[0027] All terms used in the present disclosure have the same meaning as understood by those skilled in the art to which the present disclosure belongs, unless otherwise specifically defined. It should also be understood that terms defined in general dictionaries should be interpreted to have meanings consistent with their meanings in the context of the relevant art, and should not be interpreted in an idealized or extremely formalized sense, unless specifically defined here.
[0028] Techniques, methods, and equipment known to those skilled in the relevant art may not be discussed in detail, but where appropriate, the techniques, methods, and equipment should be considered part of the specification.
[0029] A solar cell panel is provided on an electronic device to enable the electronic device to be powered.
[0030] However, after the electronic device switches from a bright light environment to a dark light environment, the power generation efficiency of the solar cell panel decreases.
[0031] In view of the above technical problems, the present disclosure provides an electronic device, which is provided with a plurality of plate bodies with different power generation efficiencies in different light emitting environments, so as to adapt to the environment in different environments to make the plate body with high power generation efficiency as the main power generation body, so as to meet the demand for power generation efficiency in different environments, for example, the electronic device is provided with a first plate body and a second plate body, the power generation efficiency of the first plate body is lower than that of the second plate body in a first light environment; in a second light environment with lower brightness than the first light environment, the power generation efficiency of the first plate body is higher than that of the second plate body; in this way, the second plate body can be used as the main power generation body in the first light environment, and the first plate body can be used as the main power generation body in the second light environment, so as to meet the demand for power generation efficiency in different environments, thereby reducing the probability of reduction of the power generation efficiency of the solar cell panel after the electronic device is switched from a bright light environment to a dark light environment.
[0032] Referring to Figures 1 to 3 As shown in the figure, the electronic device 100 can include a first body 10, a second body 20, and a solar cell panel 30. The first body 10 is provided with an input device 11. The second body 20 is provided with a display device 21 and is rotationally connected to the first body 10. The solar cell panel 30 is arranged on the surface of the first body 10 and / or the second body 20, and is used to supply power to the electrical devices and / or power storage devices 13 on the electronic device 100. The solar cell panel 30 includes a first plate body 31 and a second plate body 32, and the power generation efficiencies of the first plate body 31 and the second plate body 32 in different light environments are different.
[0033] The electronic device 100 can be a notebook computer, a folding mobile phone, or the like.
[0034] The first body 10 is provided with an input device 11 to support the input of information to the electronic device 100. The input device 11 can include but is not limited to physical keys, touch key areas, and the like. The first body 10 can also be provided with a mainboard 12, a memory card, a display screen, and the like, for example, the first body 10 is a system end of a notebook computer with a keyboard area, and the system end has a mainboard 12, a memory card, and the like.
[0035] The second body 20 is provided with display devices 21 capable of supporting the display of images, texts and other contents, and the contents of the display can be changed according to the information input by the input device 11 of the first body 10. The number of display devices 21 on the second body 20 can be one or more. When the number of display devices 21 on the second body 20 is more than one, the display devices 21 can display different contents respectively, or display different parts of the same content in cooperation, for example, when the number of display devices 21 is two and they are distributed on the left and right sides, the two display devices 21 can display the left and right parts of the same picture respectively. The second body 20 is rotatably connected with the first body 10, so that the second body 20 can be folded on the first body 10 (hereinafter referred to as: folded state), or have an included angle with the first body 10 (hereinafter referred to as: open state).
[0036] The solar panel 30 can convert solar energy into electrical energy to power the power-consuming devices such as the input device 11 and the display device 21 of the electronic device 100, or power the power storage device 13 such as the battery of the electronic device 100, or both. The solar panel 30 includes a first panel 31 and a second panel 32, which can be arranged at two different positions on at least one of the first body 10 and the second body 20 of the electronic device 100, and the first panel 31 and the second panel 32 have different power generation efficiencies in different environments, so that in different light environments, the panel with higher power generation efficiency among the first panel 31 and the second panel 32 can be used as the main power generation panel to ensure sufficient power generation, thereby reducing the influence of environmental changes (such as from bright light environment to dark light environment, from dark light environment to bright light environment, etc.) on the power generation efficiency.
[0037] In an example, referring to Figure 1 and Figure 2As shown, the electronic device 100 is a notebook computer, and the electronic device 100 can include a first body 10, a second body 20, and a solar panel 30. The first body 10 is provided with an input device 11 to form a system end of the notebook computer. The second body 20 is provided with a display device 21 to form a display end of the notebook computer. The second body 20 is rotationally connected with the first body 10 to enable the notebook computer to switch between a folded state and an unfolded state. The solar panel 30 can include a first panel body 31 and a second panel body 32. The first panel body 31 is arranged on a surface of the first body 10 where the input device 11 is arranged. The second panel body 32 is arranged on a surface of the second body 20 facing away from the display device 21. The first panel body 31 and the second panel body 32 have different power generation efficiencies in different light environments. The solar panel 30 is configured to supply power to an electrical device and an electrical storage device 13 on the electronic device 100.
[0038] In this embodiment, the first body 10 and / or the second body 20 of the electronic device 100 is provided with the solar panel 30. The solar panel 30 includes the first panel body 31 and the second panel body 32 arranged at different positions. The first panel body 31 and the second panel body 32 have different power generation efficiencies in different light environments. In different light environments, the panel body with a higher power generation efficiency can be used as a main power generation body to meet the power consumption and electrical storage requirements of the electronic device 100. For example, in a bright light environment, the power generation efficiency of the first panel body 31 is lower than that of the second panel body 32. In a dark light environment, the power generation efficiency of the first panel body 31 is higher than that of the second panel body 32. Thus, in the bright light environment, the second panel body 32 is used as the main power generation body, and in the dark light environment, the first panel body 31 is used as the main power generation body. Compared with the arrangement of the battery panel with the same coverage area and the same power generation efficiency at different positions on the electronic device 100, the embodiment can reduce the probability of the power generation efficiency of the solar panel 30 decreasing after the electronic device 100 switches from the bright light environment to the dark light environment.
[0039] In some embodiments, as shown in Figure 1 and Figure 2 The first panel body 31 is arranged on a first surface of the first body 10. The first surface is a surface of the first body 10 where the input device 11 is arranged. The second panel body 32 is arranged on a second surface of the second body 20. The second surface is a surface of the second body 20 facing away from the display device 21. In a first light environment, the power generation efficiency of the first panel body 31 is lower than that of the second panel body 32. In a second light environment with a light intensity lower than that of the first light environment, the power generation efficiency of the first panel body 31 is higher than that of the second panel body 32.
[0040] That is, the first plate body 31 has a lower power generation efficiency in a bright light environment than the second plate body 32, and the first plate body 31 has a higher power generation efficiency in a dark light environment than the second plate body 32, so that in the bright light environment, the second plate body 32 on the second surface of the second body 20 opposite to the display device 21 serves as the main power generation body to ensure sufficient power generation in the bright light environment; and in the dark light environment, the first plate body 31 on the first surface of the first body 10 corresponding to the input device 11 serves as the main power generation body to ensure sufficient power generation in the dark light environment.
[0041] Here, in the case of the electronic device 100 being a notebook computer, the second surface of the second body 20 can not be provided with other structures, so that the second plate body 32 can cover the entire second surface, and the second plate body 32 can be fully exposed whether the electronic device 100 is in the open state or the folded state, so as to ensure that the light receiving area of the second plate body 32 is large enough to have more power generation in the bright light environment; and the part of the first surface of the first body 10 other than the input device 11 can be fully covered by the first plate body 31, and in the dark light environment, the power generation efficiency of the second surface is reduced, but the first surface in the open state is exposed, and the first plate body 31 on the first surface has a high power generation efficiency in the dark light environment, so as to further ensure sufficient power generation in the dark light environment.
[0042] In some embodiments, referring to Figure 1 As shown, the first plate body 31 is laid on the peripheral surface of the input device 11; or, the first plate body 31 has a first storage state of being stored in the first body 10 and a first use state of extending out of the first body 10, and in the first use state, the first plate body 31 can cover the peripheral surface of the input device 11 and / or cover the input device 11.
[0043] In the case that the first plate body 31 is laid on the peripheral surface of the input device 11, the first plate body 31 surrounds the peripheral side of the input device 11 to expose the input device 11, so that the normal use of the input device 11 can be ensured while power is generated by the first plate body 31.
[0044] In the case that the first plate body 31 has a first storage state of being stored in the first body 10 and a first use state of extending out of the first body 10, the first plate body 31 can be switched between the first storage state and the first use state; in the first storage state, at least part of the first plate body 31 (which can be a flexible solar panel body) is located inside the first body 10 by winding, folding or the like; in the first use state, the first plate body 31 located inside the first body 10 can be moved to the outer surface side of the first body 10 to be exposed on the outer surface of the first body 10 and cover the peripheral side surface of the input device 11, or cover the input device 11, or cover both the peripheral side surface of the input device 11 and the input device 11 (i.e. cover the entire first surface in this state).
[0045] In the case that the input device 11 is covered, the user can be in a mode of not using the input device 11, for example: the electronic device 100 is a notebook computer and is in an open state, but the user does not use the electronic device 100, but only opens it to the open state to generate electricity by the first plate body 31, and the generated electricity can be stored in the battery or other power storage device 13 of the electronic device 100 for later use; for example: the electronic device 100 is a notebook computer and is in an open state, but the user watches a video through the display device 21 of the second body 20, so as not to use the input device 11, at this time, electricity can be generated by the first plate body 31 covering the input device 11 and stored in the battery or other power storage device 13 of the electronic device 100 for display power consumption of the display device 21; for example: the electronic device 100 is a notebook computer and is in an open state, but the user connects a wireless keyboard independent of the electronic device 100 to the notebook computer for input operation, so as not to use the input device 11, at this time, electricity can be generated by the first plate body 31 covering the input device 11 and stored in the battery or other power storage device 13 of the electronic device 100.
[0046] In the embodiment, various setting modes of the first plate body 31 are provided, so that the setting can be selected according to the actual situation.
[0047] In some embodiments, referring to Figure 2 As shown, the second plate body 32 covers the entire second surface; or, the second plate body 32 has a second storage state of being stored in the second body 20 and a second use state of extending out of the second body 20, in the second use state, the second body 20 can cover the peripheral side surface of the display device 21, and / or cover the display device 21, and / or cover the entire second surface of the second body 20.
[0048] In the case that the second plate body 32 covers the entire second surface, the light receiving area of the second plate body 32 is relatively large, so as to provide more power generation for the electronic device 100.
[0049] In the case that the second plate body 32 has a second storage state of being stored in the second body 20 and a second use state of being extended from the second body 20, the second plate body 32 can be switched between the second storage state and the second use state; in the second storage state, at least part of the second plate body 32 (which can be a flexible solar panel body) is located inside the second body 20 by means of winding, folding or the like; in the second use state, the second plate body 32 located inside the second body 20 can be moved to the outer surface side of the second body 20 to be exposed on the outer surface of the second body 20 and cover at least one of the circumferential surface of the display device 21, the display device 21 and the second surface.
[0050] In the case that the display device 21 is covered, the user can be in a mode of not using the display device 21, for example: the electronic device 100 is a notebook computer and is in an open state, but the user does not use the electronic device 100, but only opens it to the open state so that the first plate body 31 and the second plate body 32 can generate electricity synchronously, and the generated electricity can be stored in the battery or other electricity storage device 13 of the electronic device 100 for later use; for example: the electronic device 100 is a notebook computer and is in an open state, but the user is currently playing music, playing an e-book or the like, so that the display device 21 is not needed, at this time, the second plate body 32 covering the display device 21 can generate electricity, which can be stored in the battery or other electricity storage device 13 of the electronic device 100.
[0051] In the embodiment, various setting modes of the second plate body 32 are provided so as to be set according to actual conditions.
[0052] In some embodiments, the first plate body 31 includes at least one of the following: a polycrystalline silicon plate body, a dye-sensitized plate body, a thin film plate body; and the second plate body 32 includes a single crystal silicon plate body.
[0053] The polycrystalline silicon plate body, the dye-sensitized plate body (DSSC, Dye-Sensitized Solar Cells) and the thin film plate body (such as amorphous silicon (a-Si), cadmium telluride (CdTe) and copper indium gallium selenide (CIGS) and the like) have lower power generation efficiency than the single crystal silicon plate body in bright light environment and have higher power generation efficiency than the single crystal silicon plate body in dark light environment, and therefore, the polycrystalline silicon plate body, the dye-sensitized plate body and the thin film plate body can be selected to be arranged on the first plate body 31, and the single crystal silicon plate body can be selected to be arranged on the second plate body 32. Of course, if there are other plate bodies that meet the conditions, they can also be selected as the first plate body 31 and the second plate body 32.
[0054] The first plate 31 can be composed of one of the following three plates: a polycrystalline silicon plate, a dye-sensitized plate, and a thin film plate, or it can be formed by splicing two or three of these plates together.
[0055] In some embodiments, see Figure 3 As shown, the first board 31 is electrically connected to the input device 11 to supply power to the input device 11; the second board 32 is electrically connected to the motherboard 12 of the electronic device 100 to supply power to the system load of the electronic device 100, which includes at least the processor, the input device 11, and the display device 21 of the electronic device 100. Thus, the first board 31 and the second board 32 can supply power to the input device 11 and the motherboard 12 of the electronic device 100 respectively, to meet the power requirements of the input device 11 and the electronic device 100 respectively, and the separate power supply simplifies the wiring and facilitates manufacturing.
[0056] In some embodiments, see Figure 3 As shown, the electronic device 100 may further include a power storage device 13 disposed in the first body 10; the first plate 31 is electrically connected to the power storage device 13 to supply power to the power storage device 13; the second plate 32 is electrically connected to the power storage device 13 to supply power to the power storage device 13. That is to say, the electronic device 100 may also be provided with a power storage device 13, which can be electrically connected to other electrical devices (such as input device 11, display device 21, etc.) in the electronic device 100 to supply power to these electrical devices. The power of the power storage device 13 may come from the DC power input through the power adapter connected to the electronic device 100, or from the electricity converted from sunlight by the first plate 31 and the second plate 32. In this way, the electricity converted by the first plate 31 and the second plate 32 can be stored in the power storage device 13 for use by the electronic device 100.
[0057] In some embodiments, see Figure 3 As shown, the first board 31 is connected to the main board 12 to supply power to the system load; the second board 32 is also connected to the input device 11 to supply power to the input device 11. Thus, the electrical energy converted by the first board 31 can be used not only by the input device 11, but also stored in the energy storage device 13 and used by the system load; the electrical energy converted by the second board 32 can be used not only by the system load, but also stored in the energy storage device 13 and used by the input device 11; this creates multiple power channels, reducing the probability of power shortages in some loads.
[0058] Here, rules can be set for the power consumption channels, such as: the first plate body 31 preferentially supplies power to the input device 11, and the surplus can be stored in the power storage device 13; the second plate body 32 preferentially supplies power to the system load except the input device 11, and the surplus can be stored in the power storage device 13; when the converted electricity of the first plate body 31 does not meet the needs of the input device 11, the second plate body 32 supplies power to all power consumption loads of the system load including the input device 11, and in the case of not meeting the power consumption demand, the power storage device 13 is supplemented to provide power.
[0059] In some embodiments, the electronic device 100 can further include a detection device (not shown in the figure) and a control device (not shown in the figure), the detection device is connected with the input device 11 and / or the system load, for detecting the power consumption of the connected input device 11 and / or the system load; the control device is connected with the solar panel 30, the power storage device 13 and the detection device, for controlling the line state between the solar panel 30 and the power storage device 13.
[0060] In other words, by detecting the power consumption of at least one of the input device 11 and the system load through the detection device, the control device can control the connection or disconnection between the solar panel 30 and the power storage device 13 according to the power consumption detected by the detection device, so as to realize whether to supply power to the power storage device 13, and to realize the precise control of whether the solar panel 30 supplies power to the power storage device 13.
[0061] For example: in the initial state, the first plate body 31 supplies power to the input device 11, and the second plate body 32 supplies power to the system load except the input device 11, at this time the control device controls the disconnection between the solar panel 30 and the power storage device 13; then, in the case that either the detection device detects that the first plate body 31 has surplus after supplying power to the input device 11, or the second plate body 32 has surplus after supplying power to the system load except the input device 11, the control device controls the connection between the solar panel 30 and the power storage device 13, so as to store the surplus in the power storage device 13.
[0062] In some embodiments, the first plate body 31 and the second plate body 32 are arranged on the first body 10, the first plate body 31 and the second plate body 32 cover different positions of a third surface of the first body 10 respectively, the third surface is a surface of the first body 10 on which the input device 11 is arranged, and the covering area of the first plate body 31 is greater than that of the second plate body 32; and / or, the first plate body 31 and the second plate body 32 are arranged on the second body 20, the first plate body 31 and the second plate body 32 cover different positions of a fourth surface of the second body 20 respectively, the fourth surface is a surface of the second body 20 facing away from the display device 21, and the covering area of the first plate body 31 is less than that of the second plate body 32; wherein, in a first light environment, the power generation efficiency of the first plate body 31 is less than that of the second plate body 32; in a second light environment in which the light intensity is less than that of the first light environment, the power generation efficiency of the first plate body 31 is greater than that of the second plate body 32.
[0063] In some embodiments, the first plate body 31 and the second plate body 32 are arranged on the first body 10, the first plate body 31 and the second plate body 32 cover different positions of a third surface of the first body 10 respectively, the third surface is a surface of the first body 10 on which the input device 11 is arranged, and the covering area of the first plate body 31 is greater than that of the second plate body 32; and / or, the first plate body 31 and the second plate body 32 are arranged on the second body 20, the first plate body 31 and the second plate body 32 cover different positions of a fourth surface of the second body 20 respectively, the fourth surface is a surface of the second body 20 facing away from the display device 21, and the covering area of the first plate body 31 is less than that of the second plate body 32; wherein, in a first light environment, the power generation efficiency of the first plate body 31 is less than that of the second plate body 32; in a second light environment in which the light intensity is less than that of the first light environment, the power generation efficiency of the first plate body 31 is greater than that of the second plate body 32.
[0064] In some embodiments, the first plate body 31 and the second plate body 32 are arranged on the first body 10, the first plate body 31 and the second plate body 32 cover different positions of a third surface of the first body 10 respectively, the third surface is a surface of the first body 10 on which the input device 11 is arranged, and the covering area of the first plate body 31 is greater than that of the second plate body 32; and / or, the first plate body 31 and the second plate body 32 are arranged on the second body 20, the first plate body 31 and the second plate body 32 cover different positions of a fourth surface of the second body 20 respectively, the fourth surface is a surface of the second body 20 facing away from the display device 21, and the covering area of the first plate body 31 is less than that of the second plate body 32; wherein, in a first light environment, the power generation efficiency of the first plate body 31 is less than that of the second plate body 32; in a second light environment in which the light intensity is less than that of the first light environment, the power generation efficiency of the first plate body 31 is greater than that of the second plate body 32.
[0065] The third setting is that the same surface of the first body 10 can be provided with the first plate body 31 and the second plate body 32 simultaneously, the covering area of the first plate body 31 is larger than that of the second plate body 32, and in the bright light environment, the power generation efficiency of the first plate body 31 is lower than that of the second plate body 32, and in the dark light environment, the power generation efficiency of the first plate body 31 is higher than that of the second plate body 32, so that in the bright light environment, the second plate body 32 can serve as the main power generation body on the first body 10; in the dark light environment, the first plate body 31 can serve as the main power generation body on the first body 10. And, the same surface of the second body 20 can be provided with the first plate body 31 and the second plate body 32 simultaneously, the covering area of the first plate body 31 is smaller than that of the second plate body 32, and in the bright light environment, the power generation efficiency of the first plate body 31 is lower than that of the second plate body 32, and in the dark light environment, the power generation efficiency of the first plate body 31 is higher than that of the second plate body 32, so that in the bright light environment, the second plate body 32 serves as the main power generation body on the second body 20; in the dark light environment, the first plate body 31 serves as the main power generation body on the second body 20.
[0066] Here, the first plate body 31 includes at least one of the following: a polycrystalline silicon plate body, a dye-sensitized plate body, a thin film plate body; the second plate body 32 includes a single crystal silicon plate body. The power generation efficiency of the polycrystalline silicon plate body, the dye-sensitized plate body (DSSC, Dye-Sensitized Solar Cells), the thin film plate body (such as amorphous silicon (a-Si), cadmium telluride (CdTe) and copper indium gallium selenide (CIGS) and different types) in the bright light environment is lower than that of the single crystal silicon plate body, and the power generation efficiency in the dark light environment is higher than that of the single crystal silicon plate body. Therefore, the crystalline silicon plate body, the dye-sensitized plate body and the thin film plate body can be selected to be provided on the first plate body 31, and the single crystal silicon plate body can be selected to be provided on the second plate body 32. Of course, if there are other plate bodies that meet the conditions, they can also be selected as the first plate body 31 and the second plate body 32. The first plate body 31 can be one of the polycrystalline silicon plate body, the dye-sensitized plate body and the thin film plate body, or it can be formed by splicing two or three of them.
[0067] In this embodiment, the first plate body 31 and the second plate body 32 can be respectively provided at different positions on the same surface of the electronic device 100. Because the power generation efficiencies of the first plate body 31 and the second plate body 32 are different, in different environments, the plate body with high power generation efficiency serves as the main power generation body. Relative to the setting of providing the same power generation efficiency plate body at different positions on the same surface, the influence of the change of the environment on the power generation efficiency can be reduced.
[0068] So far, the embodiments of the present disclosure have been described in detail. In order to avoid obscuring the concept of the present disclosure, some details known in the art are not described. Those skilled in the art can fully understand how to implement the technical solutions disclosed herein according to the above description.
[0069] It should be noted that, in the case of the electronic device 100 being a notebook computer, the area of the third surface of the first body 10 on which the input device 11 is arranged, except for the area of the remaining part of the input device 11 (the area on which the solar cell panel 30 can be directly arranged), is generally smaller than the area of the second surface of the second body 20 facing away from the display device 21 (the area on which the solar cell panel 30 can be directly arranged), and the environment in which the user uses the electronic device 100 is generally a bright light environment, for which reason the area of the second panel 32 of the second body 20 is greater than the area of the first panel 31, and the second panel 32 is a panel with high power generation efficiency in a bright light environment, so as to be able to convert more electric energy; in the case of the environment in which the user uses the electronic device 100 being a dark light environment, the efficiency of the solar cell panel 30 on the second surface is low, for which reason the area of the first panel 31 of the first body 10 is greater than the area of the second panel 32, and the first panel 31 is a panel with high power generation efficiency in a dark light environment, so as to be able to convert more electric energy.
[0070] Although some specific embodiments of the present disclosure have been described in detail through examples, those skilled in the art should understand that the above examples are only for illustration, and are not intended to limit the scope of the present disclosure. Those skilled in the art should understand that the above embodiments can be modified or some technical features can be replaced equivalently without departing from the scope and spirit of the present disclosure. In particular, as long as there is no structural conflict, each technical feature mentioned in each embodiment can be combined in any manner.
Claims
1. An electronic device, comprising: The electronic device comprises: a first body provided with an input device; a second body provided with a display device and rotationally connected with the first body; a solar panel arranged on a surface of the first body and / or the second body, for supplying power to an electric device and / or an electric storage device on the electronic device, the solar panel comprising a first panel body and a second panel body, the first panel body and the second panel body having different power generation efficiencies under different light environments.
2. The electronic device according to claim 1, wherein: the first panel body is arranged on a first surface of the first body, the first surface being a surface of the first body provided with the input device; the second panel body is arranged on a second surface of the second body, the second surface being a surface of the second body facing away from the display device; wherein, in a first light environment, the power generation efficiency of the first panel body is less than that of the second panel body; and in a second light environment with light intensity less than the first light environment, the power generation efficiency of the first panel body is greater than that of the second panel body.
3. The electronic device according to claim 2, wherein: the first panel body is arranged on a circumferential surface of the input device; or the first panel body has a first storage state of being accommodated in the first body and a first use state of extending out of the first body, in the first use state, the first panel body is capable of covering the circumferential surface of the input device and / or covering the input device.
4. The electronic device according to claim 2, wherein: the second panel body covers the entire second surface; or the second panel body has a second storage state of being accommodated in the second body and a second use state of extending out of the second body, in the second use state, the second body is capable of covering a circumferential surface of the display device, and / or covering the display device, and / or covering the entire second surface of the second body.
5. The electronic device according to any one of claims 2 to 4, wherein: the first panel body comprises at least one of the following: a polycrystalline silicon panel body, a dye-sensitized panel body, a thin-film panel body; the second panel body comprises a single-crystal silicon panel body.
6. The electronic device according to claim 2, wherein: the first panel body is electrically connected with the input device to supply power to the input device; the second panel body is electrically connected with a mainboard of the electronic device to supply power to a system load of the electronic device, the system load comprising at least a processor of the electronic device, the input device and the display device.
7. The electronic device according to claim 6, further comprising: an electric storage device arranged on the first body; the first panel body is electrically connected with the electric storage device to supply power to the electric storage device; the second panel body is electrically connected with the electric storage device to supply power to the electric storage device.
8. The electronic device according to claim 7, wherein: the first panel body is connected with the mainboard to supply power to the system load. The second plate body is also connected to the input device to supply power to the input device.
9. The electronic device of claim 8, wherein, Further comprising: a detection device connected to the input device and / or the system load to detect the power consumption of the connected input device and / or system load; a control device connected to the solar cell panel, the power storage device and the detection device to control the state of the line between the solar cell panel and the power storage device.
10. The electronic device of claim 1, wherein: the first plate body and the second plate body are arranged on the first body, and the first plate body and the second plate body respectively cover different positions of a third surface of the first body, the third surface being a surface of the first body on which the input device is arranged, and the covering area of the first plate body is greater than that of the second plate body; and / or, the first plate body and the second plate body are arranged on the second body, and the first plate body and the second plate body respectively cover different positions of a fourth surface of the second body, the fourth surface being a surface of the second body facing away from the display device, and the covering area of the first plate body is less than that of the second plate body; wherein in a first light environment, the power generation efficiency of the first plate body is less than that of the second plate body, and in a second light environment with light intensity less than the first light environment, the power generation efficiency of the first plate body is greater than that of the second plate body.