Electronic device

By setting first and second photoelectric conversion components in parallel in electronic devices, the problem of limited power storage capacity of mobile power supplies is solved, and the power supply needs of high power-consuming devices or those that need to be away from home for extended periods of time are met.

CN223957309UActive Publication Date: 2026-02-27LENOVO (BEIJING) LTD
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Patent Information

Application Number
CN202520076441.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-13
Publication Date
2026-02-27
Estimated Expiration
2035-01-13

AI Technical Summary

Technical Problem

Portable power banks have limited energy storage capacity and cannot meet the power needs of high-power-consuming devices or long-term outdoor use.

Method used

By setting a first body and a second body in the electronic device, the first body includes a first photoelectric conversion component and a first port, and the second body includes a second photoelectric conversion component, a second port, a power consumption part and a first energy storage part. The two are connected in parallel to supply power in a first target state, so that light energy is simultaneously converted into electrical energy and supplied to the power consumption part and/or the energy storage part.

Benefits of technology

It achieves high-power and continuous power supply performance, meeting the power needs of high-power-consuming equipment or long-term away-from-home use, and avoiding the problem of insufficient power supply.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses electronic equipment, and relates to the technical field of electronic equipment. The electronic equipment comprises a first body and a second body. The first body is provided with a first photoelectric conversion assembly, a first port and a first circuit, and the first photoelectric conversion assembly is connected with the first port through the first circuit so as to convert light energy into electric energy and output the electric energy through the first port; the second body is provided with a second photoelectric conversion assembly, a second port, a second circuit, a power consumption part and a first power storage part, and the second photoelectric conversion assembly is connected with the first power storage part and the power consumption part through the second circuit so as to convert light energy into electric energy to supply power to the first power storage part and / or the power consumption part; the first power storage part is connected with the power consumption part, and the second port is connected with the second photoelectric conversion assembly; wherein the second body and the first body are in a first target state, the first port is connected with the second port, and the first photoelectric conversion assembly and the second photoelectric conversion assembly can supply power to the power consumption part and / or the first power storage part at the same time.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of electronic equipment, in particular to an electronic equipment. BACKGROUND

[0002] At present, with the needs of people's life and work, electronic equipment will usually need to be carried out for use at any time.

[0003] In view of this, the power supply performance or the power storage performance of the electronic equipment is under test, and the designer designs a mobile power supply to realize power supply at any time and anywhere to meet the use requirements.

[0004] However, the power storage capacity of the mobile power supply is limited, which cannot meet the power demand of high-power consumption equipment or long time out of use. CONTENT OF THE INVENTION

[0005] The present application provides an electronic equipment, which comprises:

[0006] A first body, the first body is provided with a first photoelectric conversion assembly, a first port and a first circuit, the first photoelectric conversion assembly is connected with the first port through the first circuit, so as to convert light energy into electric energy and output through the first port;

[0007] A second body, the second body is provided with a second photoelectric conversion assembly, a second port, a second circuit, a power consumption part and a first power storage part, the second photoelectric conversion assembly is connected with the first power storage part and the power consumption part through the second circuit, so as to convert light energy into electric energy to supply power to the first power storage part and / or the power consumption part; the first power storage part is connected with the power consumption part, and the second port is connected with the second photoelectric conversion assembly;

[0008] Wherein, the second body and the first body are in a first target state, the first port is connected with the second port, and the first photoelectric conversion assembly can supply power to the power consumption part and / or the first power storage part at the same time with the second photoelectric conversion assembly.

[0009] In some modified embodiments of the present application, the electronic equipment described above, wherein the first body has a containing space and an opening communicating with the containing space, the containing space is used to contain at least the second body, and the opening is used for the second body to enter or exit the containing space.

[0010] In some modified embodiments of the present application, the electronic equipment described above, wherein the first port is placed in the containing space.

[0011] The second body is further provided with a third circuit, the third circuit is connected with the second circuit in parallel, and the second port connects the first power storage part and the power consumption part through the third circuit.

[0012] The second body is placed in the accommodating space to make the first body and the second body in a second target state, the first port and the second port are connected, and the first photoelectric conversion assembly can supply power to the power consumption part and / or the first power storage part through the third circuit;

[0013] The second target state is different from the first target state.

[0014] In some modified embodiments of the present application, the electronic device, wherein the first body further comprises a cover plate.

[0015] The cover plate is movably connected with the first edge of the opening, the cover plate has an unfolded state and a folded state, the cover plate is in the unfolded state to shield the opening, and the cover plate is in the folded state to support the second body so that the first body and the second body can be in the first target state.

[0016] In some modified embodiments of the present application, the electronic device, wherein the cover plate can rotate around the first edge of the opening to the direction of the accommodating space or to the direction away from the accommodating space to form a first support posture and a second support posture respectively;

[0017] The cover plate is in the first support posture, and the first port is shielded by the cover plate; the cover plate is in the second support posture, and the first port is exposed, and the second body is supported by the cover plate to be in the first target state with the first body.

[0018] The second body and the first body are in the first target state, and the first photoelectric conversion assembly and the second photoelectric conversion assembly are both exposed outward for receiving light energy.

[0019] In some modified embodiments of the present application, the electronic device, wherein the first body further comprises a second power storage part, a third port and a fourth circuit.

[0020] The fourth circuit is connected with the first circuit in parallel, the first photoelectric conversion assembly is connected with the second power storage part and the third port in sequence through the fourth circuit; and the third port is used for connecting the second body.

[0021] The third port is connected with the second body, the second power storage part can supply power to the power consumption part and / or the first power storage part through the fourth circuit, and the third port has a connection form different from that of the first port.

[0022] In some modified embodiments of the present application, the electronic device as described above, wherein the second body further comprises a fourth port;

[0023] The fourth port and the second port are connected in different forms, the fourth port is connected with the third circuit, and the fourth port is used for connecting an external power supply or the third port.

[0024] In some modified embodiments of the present application, the electronic device as described above, wherein the second power storage unit and the third port are connected in parallel with a fifth circuit and a sixth circuit;

[0025] The fifth circuit is used for connecting the third port;

[0026] The sixth circuit is used for connecting the first port.

[0027] In some modified embodiments of the present application, the electronic device as described above, wherein the second body is provided with a first switch;

[0028] The first switch is arranged at the input end of the second photoelectric conversion assembly, and the first switch is used for switching the on-off of the second circuit and the third circuit;

[0029] In the first target state of the first body and the second body, the first switch is controlled to turn on the second circuit.

[0030] In some modified embodiments of the present application, the electronic device as described above, wherein the first body is provided with a second switch;

[0031] The second switch is arranged at the output end of the first photoelectric conversion assembly, and the second switch is used for switching the on-off of the first circuit and the fourth circuit;

[0032] In the first target state of the first body and the second body, the second switch is controlled to turn on the first circuit. BRIEF DESCRIPTION OF DRAWINGS

[0033] The above and other objects, features and advantages of the example embodiments of the present application will be more apparent from the following detailed description taken in conjunction with the accompanying drawings, in which several embodiments of the present application are shown by way of example, and wherein like or corresponding elements show like or corresponding parts, by referring to which; drawings:

[0034] Figure 1 A schematic diagram of a first target state of an electronic device provided by the present embodiment is schematically shown;

[0035] Figure 2 A first schematic diagram of the internal circuit of the first body in the present embodiment is schematically shown.

[0036] Figure 3 A first schematic diagram of the internal circuit diagram of the second body in the embodiment is shown schematically;

[0037] Figure 4 A schematic diagram of a second target state of the electronic device in the embodiment is shown schematically;

[0038] Figure 5 A second schematic diagram of the internal circuit diagram of the first body in the embodiment is shown schematically;

[0039] Figure 6 A second schematic diagram of the internal circuit diagram of the second body in the embodiment is shown schematically;

[0040] Figure 7 A schematic diagram of a third target state of the electronic device in the embodiment is shown schematically;

[0041] Figure 8 A third schematic diagram of the internal circuit diagram of the first body in the embodiment is shown schematically;

[0042] Figure 9 A third schematic diagram of the internal circuit diagram of the second body in the embodiment is shown schematically;

[0043] Figure 10 A schematic diagram of the state of cooperation of the first body and the cover in the embodiment is shown schematically;

[0044] Figure 11 A schematic diagram of another use state of the electronic device in the embodiment is shown schematically;

[0045] BRIEF DESCRIPTION OF DRAWINGS: first body 1, first port 11, second power storage unit 12, first sub power storage unit 121, second sub power storage unit 122, storage bag 13, third port 14, second switch 15, second body 2, second port 21, power consumption unit 22, first power storage unit 23, first switch 24, controller 25, power manager 26, fourth port 27, first photoelectric conversion assembly 3, first circuit 4, second photoelectric conversion assembly 5, second circuit 6, third circuit 7, voltage regulation circuit 8, boost circuit 81, direct output circuit 82, fourth circuit 9, fifth circuit 91, sixth circuit 92, first sub circuit 93, second sub circuit 94, cover 10, first section 101, second section 102, third section 103. DETAILED DESCRIPTION

[0046] Exemplary embodiments of the present disclosure will be described more fully hereinafter with reference to the accompanying drawings; however, they are not limited to only the embodiments set forth herein but can be implemented in various forms. The present embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the disclosure to those skilled in the art. Accordingly, the embodiments are not limited to the embodiments set forth herein but can be implemented in various forms. On the contrary, it is intended to cover all modifications, equivalents and alternatives falling within the scope of the present disclosure. The above-mentioned terms are merely used to describe particular embodiments, and are not intended to limit the scope of a specific feature described using the above-mentioned terms.

[0047] In the description of the embodiments of the present application, the technical terms "first", "second", and the like are used only to distinguish different objects, and cannot be understood as indicating or implying relative importance or implicitly indicating the number, specific order or primary and secondary relationship of the technical features indicated. In the description of the embodiments of the present application, the meaning of "a plurality of" is more than two, unless otherwise explicitly specified. "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 terms 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.

[0048] In the description of the embodiments of the present application, the technical terms "first", "second", and the like are used only to distinguish different objects, and cannot be understood as indicating or implying relative importance or implicitly indicating the number, specific order or primary and secondary relationship of the technical features indicated. In the description of the embodiments of the present application, the meaning of "a plurality of" is more than two, unless otherwise explicitly specified. "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 terms 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.

[0049] Reference herein to "an embodiment" means that a particular feature, structure, or characteristic described in connection with the embodiment can be included in at least one embodiment of the application. The appearances of the phrase in various places in the specification are not necessarily all referring to the same embodiment, nor are they necessarily mutually exclusive or alternative embodiments. It is expressly understood that the embodiments described herein are combinable.

[0050] The present disclosure provides these embodiments in order to make the present disclosure thorough and complete, and to fully convey 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 components and steps, the composition of materials, numerical expressions and values set forth in these embodiments should be interpreted as merely exemplary, and not as limiting.

[0051] 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 position relationship indicated by the terms "upper", "lower", "left", "right", "inner", "outer" and the like is only for the convenience of describing the present disclosure and simplifying the description, and is not intended to 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.

[0052] It should be noted that in the description of the present disclosure, unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "connection" should be understood in a broad sense, for example, can be fixedly connected, can be detachably connected, or integrally connected, 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 or can not be an intermediate device between the specific device and the first device or the second device.

[0053] It should be noted that, unless otherwise specified, the technical terms or scientific terms used in the present application should be understood as the general meaning understood by those skilled in the art to which the present application belongs.

[0054] The technical scheme of the embodiment of the present application provides an electronic device to solve the above technical problems:

[0055] Reference is made to the accompanying drawings Figure 1 , the accompanying drawings Figure 2 and the accompanying drawings Figure 3 , the electronic device provided by the embodiment of the present application comprises a first body 1 and a second body 2; the first body 1 is provided with a first photoelectric conversion assembly 3, a first port 11 and a first circuit 4, the first photoelectric conversion assembly 3 is connected with the first port 11 through the first circuit 4, so as to convert light energy into electric energy and output through the first port 11; the second body 2 is provided with a second photoelectric conversion assembly 5, a second port 21, a second circuit 6, a power consumption part 22 and a first power storage part 23, the second photoelectric conversion assembly 5 is connected with the first power storage part 23 and the power consumption part 22 through the second circuit 6, so as to convert light energy into electric energy to supply power to the first power storage part 23 and / or the power consumption part 22; the first power storage part 23 is connected with the power consumption part 22, and the second port 21 is connected with the second photoelectric conversion assembly 5;

[0056] Wherein, the second body 2 and the first body 1 are in a first target state, the first port 11 is connected with the second port 21, and the first photoelectric conversion assembly 3 can supply power to the power consumption part 22 and / or the first power storage part 23 at the same time as the second photoelectric conversion assembly 5.

[0057] It can be understood that, in order to solve the problem that the power storage capacity of the mobile power supply is limited and cannot meet the power demand of high-power-consumption equipment or long-time-out-of-home use, the electronic device provided in the embodiment realizes that the first photoelectric conversion assembly 3 of the first body 1 and the second photoelectric conversion assembly 5 of the second body 2 can simultaneously supply power to the power-consuming part 22 and / or the first power storage part 23 in the second body 2 in the first target state through the cooperation of the first port 11, the second port 21, the first photoelectric conversion assembly 3 and the second photoelectric conversion assembly 5, realizing the performance of supplying power with large power and continuity, and even if the second body 2 is high-power-consumption equipment or long-time-out-of-home use, the problem of insufficient power supply will not occur.

[0058] Among them, the second body 2 can be a notebook computer, a tablet computer, a mobile phone, a display and other equipment that needs to be powered, and the following description in the embodiment will be described in detail with the second body 2 being a notebook computer as an example. The second photoelectric conversion assembly 5 can be arranged on the back side of the display screen of the notebook computer, or the second photoelectric conversion assembly 5 can be arranged on the keyboard side of the notebook computer. Referring to the accompanying drawings, Figure 3 The first power storage part 23 can be at least one battery, for example, the first power storage part 23 can include a plurality of batteries, which can be in series or in parallel. The power-consuming part 22 can be a display screen, a mainboard, a system and other components that need to be powered by the first power storage part 23, and the first power storage part 23 can supply power to the power-consuming part 22. The second body 2 has a controller 25 and a power manager 26 therein. The controller 25 can be a total control in the second body 2, such as an embedded controller (EC), a microcontroller, a program editing control, etc. The power manager 26 (PD) is connected between the controller 25 and the first power storage part 23, which can control and manage the charging and discharging of the first power storage part 23 according to the instructions of the controller 25 and the power supply of the power-consuming part 22 by the first power storage part 23. The arrangement of the controller 25 and the power manager 26 is easily understood by those skilled in the art, and will not be described in detail here. Of course, it can be understood that the first power storage part 23 can also be charged by an external power supply or a wall plug power supply, and the fourth port 27 can also be arranged on the second body 2. The fourth port 27 is directly connected with the first power storage part 23 and the power-consuming part 22, the fourth port 27 is used for connecting an external power supply or a wall plug power supply, and the fourth port 27 can be a USB port (including Type-A, Type-C), Lightning, DC round hole plug and the like. The fourth port 27 cooperates with the controller 25 and the power manager 26 to supply power to the first power storage part 23 and the power-consuming part 22, which is easily understood by those skilled in the art, and will not be described in detail here.

[0059] Wherein, the first body 1 and the second body 2 have a matching relationship, the first body 1 can be a containing device, such as an inner bag, a storage box, a protective sleeve, etc., the first body 1 can also be a support, a folding support, etc., the first body 1 can also be a containing structure capable of forming a support, etc., the first target state of the first body 1 and the second body 2 can be a state of mutual stacking of the first body 1 and the second body 2, a state of mutual support of the first body 1 and the second body 2, a state of the first body 1 and the second body 2 being in the same plane, etc. The first body 1 in the embodiment can be used separately from the second body 2 or simultaneously.

[0060] Wherein, the first port 11 can be a plug-in electrical connection port, a wireless charging port, a magnetic attraction port, etc., and correspondingly, the second port 21 can be a plug-in electrical connection port, a wireless charging port, a magnetic attraction port, etc. adapted to the first port 11; in the first target state of the first body 1 and the second body, the positions of the first port 11 and the second port 21 correspond and can be automatically connected, the first target state can be a state of mutual stacking of the first body 1 and the second body 2, a state of mutual support of the first body 1 and the second body 2, a state of the first body 1 and the second body 2 being in the same plane, etc. For example, refer to the attached Figure 1 , the first body 1 supports the second body 2, the positions of the first port 11 and the second port 21 correspond to automatically connect the first circuit 4 and the second circuit 6, so that the first photoelectric conversion assembly 3 and the second photoelectric conversion assembly 5 are connected in parallel with each other, the power generation area and the power generation power are expanded, and a larger and more sustained power supply is provided.

[0061] Wherein, refer to the attached Figure 2 and the attached Figure 10 The first photoelectric conversion assembly 3 can convert light energy into electrical energy, which can be a solar panel, a photoelectrochemical cell, a photocatalytic fuel cell, etc. In the embodiment, the following content will be described in detail with the first photoelectric conversion assembly 3 including a solar panel as an example; in the embodiment, the first photoelectric conversion assembly 3 can include at least one solar panel, when including a plurality of solar panels, the plurality of solar panels are connected in parallel with each other, and the first port 11 serves as an output port of the first photoelectric conversion assembly 3. The first photoelectric conversion assembly 3 can be arranged on any side outer surface of the first body 1, so that when the side surface can receive light, the first photoelectric conversion assembly 3 can perform photoelectric conversion. In the embodiment, the first photoelectric assembly 3 can also include a second power storage part 12 and an output circuit matched with the solar panel, to realize power storage and external power supply after photoelectric conversion of the first body 1.

[0062] The second photoelectric conversion component 5 can convert light into electrical energy, which can be a solar panel, a photoelectrochemical cell, a photocatalytic fuel cell, etc. In this embodiment, the following content will be described in detail with the second photoelectric conversion component 5 including a solar panel as an example. In this embodiment, the second photoelectric conversion component 5 can include at least one solar panel. When a plurality of solar panels are included, the plurality of solar panels are connected in parallel. The second photoelectric conversion component 5 can supply power to the first power storage unit 23 and the power consumption unit 22. Specifically, the controller 25 and the power manager 26 are required to cooperate with the control. The power manager 26 is connected to the first power storage unit 23 and the power consumption unit 22 at the same time. The controller 25 is electrically connected to the second photoelectric conversion component 5 and the power manager 16. The power supply mode can refer to the external power source or the wall plug-in power source cooperating with the controller 25 and the power manager 26 to supply power to the first power storage unit 23 and the power consumption unit 22. For example, when the first power storage unit 23 is insufficient to supply power to the power consumption unit 22, the controller 25 can supply the electrical energy of the second photoelectric conversion component 5 to the power consumption unit 22 through the power manager 26. If there is redundancy, it can be charged to the first power storage unit 23. Correspondingly, when the first power storage unit 23 has enough power to supply power to the power consumption unit 22, the controller 25 can supply the electrical energy of the second photoelectric conversion component 5 to the first power storage unit 23 and the power consumption unit 22 through the power manager 26. Correspondingly, when the power consumption unit 22 is not working, the controller 25 can supply the electrical energy of the second photoelectric conversion component 5 to the first power storage unit 23 through the power manager 26 to charge it. It is not difficult to understand that the first photoelectric conversion component 3 and the second photoelectric conversion component 5 can also refer to the above-mentioned power supply mode for the first power storage unit 23 and the power consumption unit 22, which will not be described here. In addition, a voltage regulation circuit 8 can also be provided on the second circuit 6 in this embodiment. The voltage regulation circuit 8 includes a boost circuit 81 and a direct output circuit 82. The voltage regulation circuit 8 can be provided with a voltage boosting device. The voltage boosting device can be a collection of voltage detection chips and voltage conversion chips. The voltage detection chip can be but is not limited to TLV840, TPS3808, etc. The voltage conversion chip can be but is not limited to TPS61200, NCP1402, etc. The voltage detection chip can determine whether the voltage output by the first photoelectric conversion component 3 and the second photoelectric conversion component 5 is greater than a preset value. If it is greater than or equal to the preset value, the direct output circuit 82 is turned on to the power manager 26. Otherwise, if it is less than the preset value, the boost circuit 81 is turned on to the power manager 26. The input voltage requirement of the power manager 26 is met, that is, when the light intensity is weak, the working requirement of the power manager 16 can be met through the boost circuit 81. This setting can be easily realized by those skilled in the art, and will not be described here. It is not difficult to understand that the above-mentioned preset value depends on the input voltage of the power manager 26, which can be but is not limited to 3.6v. It can be designed and adjusted according to the rated parameters of the actual power manager 26.

[0063] According to the above, the electronic device provided by the application can realize power supply expansion in the first target state through the cooperation of the first port 11, the second port 21, the first photoelectric conversion assembly 3 and the second photoelectric conversion assembly 5, and the first photoelectric conversion assembly 3 of the first body 1 and the second photoelectric conversion assembly 5 of the second body 2 supply power to the first power storage part 23 and / or the power consumption part 22 at the same time; thereby solving the problem that the power storage capacity of the mobile power supply is limited and cannot meet the power demand of high-power-consumption equipment or long-time outing.

[0064] The term "and / or" in this document merely describes an association relationship of associated objects, and indicates that there can be three relationships, for example, A and / or B, which are specifically understood as: A and B can be included at the same time, A can exist alone, B can exist alone, and any one of the above three cases can exist.

[0065] Further, with reference to the accompanying drawings Figure 4 The electronic device provided by the embodiment can have a containing space and an opening communicating with the containing space in the specific implementation, the containing space can be used to contain at least the second body 2, and the opening can be used for the second body 2 to enter or exit the containing space.

[0066] It can be understood that, in order to improve the portability of the electronic device, the first body 1 is arranged in the form of having a containing space and an opening in the embodiment, so that the second body 2 can enter or exit the containing space via the opening, and when not in use, the second body 2 and its related accessories can be placed in the containing space, which is convenient for carrying and can protect the second body 2 and prevent the accessories from being lost. The first body 1 can be flexible or rigid, for example, with reference to the accompanying drawings Figure 4 The first body 1 can be in the form of a flexible inner bag, a pocket bag, and the first body 1 can also be in the form of a rigid box body, a groove body, a protective shell and the like; the specific shape and size of the first body 1 in the embodiment can be adaptively designed and adjusted according to the second body 2, and will not be described in detail here.

[0067] Further, with reference to the accompanying drawings Figure 4In the specific implementation, the first port 11 can be arranged in the accommodating space; the second body 2 can further be provided with a third circuit 7, the third circuit 7 is connected in parallel with the second circuit 6, the second port 21 can be connected to the first power storage part 23 and the power consumption part 22 through the third circuit 7; the second body 2 can be arranged in the accommodating space, so that the first body 1 and the second body 2 are in a second target state, the first port 11 and the second port 21 are connected, and the first photoelectric conversion assembly 3 can supply power to the power consumption part 22 and / or the first power storage part 23 through the third circuit 7; wherein the second target state is different from the first target state.

[0068] It can be understood that, in order to realize automatic charging in the storage or accommodation state, the first port 11 is arranged in the accommodating space in the embodiment, which can be the bottom, opening, inner wall or the like of the accommodating space, and the second port 21 on the second body 2 needs to correspond to the first port 11, for example, the first port 11 is arranged at the opening of the accommodating space, and the second port 21 can be arranged at the edge of the second body 2, the rotating shaft of the notebook computer or the like, the second port 21 can be opposite to the first port 11 when the second body 2 is arranged in the accommodating space, and the first port 11 and the second port 21 can be arranged as magnetic interfaces or wireless charging coils in the embodiment, so that the two can be automatically connected when they are opposite, and the connection convenience and efficiency are improved. At the same time, the second body 2 is arranged in the accommodating space, and the second photoelectric conversion assembly 5 cannot provide power, so that the power supplied by the first body 1 cannot be transmitted to the power manager 26 through the second circuit 6, and the third circuit 7 is arranged in the second body 2 in the embodiment, the power manager 26 is also arranged on the third circuit 7 and connected to the power consumption part 22 and the first power storage part 23, and the power supplied by the first body 2 can be directly supplied to the power manager 26 on the third circuit 7 to supply power to the first power storage part 23 and / or the power consumption part 22. Referring to FIG. 1, Figure 10 In order to improve the appearance of the first body 1, the first photoelectric conversion assembly 3 can be arranged on the back of the first body 1 in the embodiment, and the front of the first body 1 can be provided with an additional storage bag 13, the storage bag 13 is used to accommodate accessories of the second body 2 or articles of a user, and the number and shape of the storage bag 13 can be designed and adjusted according to actual needs.

[0069] Further, the power supplied by the first body 1 needs to meet the rated parameters of the power manager 26 on the third circuit 7 in order to supply power to the first power storage part 23 and / or the power consumption part 22 through the third circuit 7, and the voltage of the first body 1 needs to be adjusted to meet the rated parameters of the power manager 26 on the third circuit 7, and the voltage of the first body 1 can be adjusted through the voltage regulation circuit 8 in the fourth circuit 9. Figure 5 In the embodiment, a fourth circuit 9 can be arranged in the first body 1, the fourth circuit 9 can be connected in parallel with the first circuit 4, and the fourth circuit 9 can be provided with a voltage regulation circuit 8 and connected to the first port 11.

[0070] It can be understood that the setting of the voltage regulation circuit 8 on the fourth circuit 9 can refer to the voltage regulation circuit 8 on the second circuit 6, and the first photoelectric conversion assembly 3 is regulated by the voltage regulation circuit 8 to meet the working requirements of the power manager 26 on the third circuit 7. Meanwhile, the second power storage unit 12 can also be arranged in the first body in the embodiment, and the first photoelectric conversion assembly 3 is connected to the second power storage unit 12 and the first port 11 in sequence through the fourth circuit 9; wherein the first port 11 is connected with the second port 21, and the second power storage unit 12 can supply power to the power consumption unit 22 and / or the first power storage unit 23 through the third circuit 7. The controller 25 and the power manager 26 can also be arranged in the first body 1 in this setting mode, and the settings of the controller 25 and the power manager 26 can refer to those of the controller 25 and the power manager 26 in the second body 2, which will not be repeated here. The first photoelectric conversion assembly 3 is connected to the power manager 26, the second power storage unit 23 and the first port 11 in sequence through the voltage regulation circuit 8, so that the working requirements of the power manager 16 can be met through the voltage regulation circuit 8 when the light intensity is weak, and then the power supplied by the first photoelectric conversion assembly 3 can be transmitted to the second power storage unit 12 for charging and storage through the voltage regulation circuit 8 on the fourth circuit 9. Correspondingly, when the first photoelectric conversion assembly 5 cannot receive light to provide power, the power of the second power storage unit 12 can also be transmitted to the power manager 26 of the third circuit 7 through the first port 11. It is not difficult to understand that the first port 11 can be connected to different circuits in the embodiment, and different function PINs can be arranged in the first port 11, for example: the first function PIN is used to connect the first circuit 4 and the second circuit 6, the second function PIN is used to connect the third circuit 7 and the fourth circuit 9, and the third function PIN is used to communicate state data between the first body 1 and the second body 2, etc. This setting is easily understood by those skilled in the art, and will not be repeated here.

[0071] Further, with reference to the accompanying drawings Figure 1 , the accompanying drawings Figure 7 and the accompanying drawings Figure 10 , the electronic device provided in the embodiment can further include a cover plate 10; the cover plate 10 can be movably connected with the first edge of the opening, and the cover plate 10 can have an unfolded state and a folded state. The cover plate 10 is in the unfolded state to shield the opening, and the cover plate 10 is in the folded state to support the second body 2 so that the first body 1 and the second body 2 can be in the first target state.

[0072] It can be understood that, in order to achieve that the first body 1 and the second body 2 can be in the first target state, in the embodiment, a cover plate 10 is arranged at the opening of the first body 1, the cover plate 10 is a rigid structure or a structure with certain ductility, for example: a plastic plate body, a rubber plate body, a metal plate body wrapped with a flexible outer film, etc., the cover plate 10 can be in a form that folds to form a support structure, for example: two parallel and spaced folds can be arranged on the cover plate 10, the cover plate 10 is divided into three sections at the connection between the cover plate 10 and the opening, and the three sections can cooperate to form a hollow triangular prism support structure to support the second body 2 when folded, the following content will be described in detail by taking the first section 101, the second section 102 and the third section 103 of the cover plate 10 in the direction away from the opening as an example. Of course, it can be understood that the cover plate 10 can be rotated around the first edge of the opening to the direction of the accommodation space (i.e. the front surface of the first body 1) or to the direction away from the accommodation space (i.e. the back surface of the first body 1) to form a first support posture and a second support posture, respectively, in the first support posture, the cover plate 10 is folded by turning over to the opening direction, the bottom of the second body 2 can abut against the opening edge, the back surface of the second body 2 can be attached to the third section 103 of the cover plate 10 or abut against the connection between the third section 103 and the second section 102, and the end of the second body 2 away from the cover plate 10 can abut against the outer wall of the first body 1, accordingly, the outer surface of the first body 1 can be a material with certain friction, which can be but is not limited to pixel material, soft cloth material, etc., so as to generate damping between the second body 2 and the first body 1, thereby achieving abutting support, of course, a corresponding groove or protrusion can also be arranged on the outer wall of the first body 1 to cooperate with the folding of the cover plate 10 to support the second body 2; in the second support posture, the cover plate 10 is folded by turning over to the back surface of the first body 1, the bottom of the second body 2 can be supported by the bearing surface, the back surface of the second body 2 can be attached to the second section 102 of the cover plate 10, or the bottom of the second body 2 can be supported by the bearing surface, the back surface of the second body 2 can be attached to the first section 101 of the cover plate or abut against the connection between the first section 101 and the second section 102, and the like Figure 1The folding degree of the cover plate 10 in the shown state can be designed and adjusted according to actual needs. In the support state, the back of the first body 1, i.e., the first photoelectric conversion assembly 3, can be exposed to receive light. Correspondingly, in order to achieve support at different angles, convex or concave grooves can be arranged on the first body 1 to support and limit the cover plate 10. The above-mentioned bearing surface can be a desktop, a table top, etc. that supports the second body 2 and the first body 1. Further, in order to protect the first port 11 from being scratched and damaged, the first port 11 can be arranged at the connection between the cover plate 10 and the opening. When the cover plate 10 is in the unfolded state and covers the opening, the first port 11 can be hidden inside. When the cover plate 10 is in the first support state, the first port 11 can also be hidden inside, ensuring the safety of the first port 11. Correspondingly, when the cover plate 10 is in the second support state, the first port 11 can be exposed to correspond to the second port 21. When the second body 2 is supported by the cover plate 10 in the second support state, it is the first target state described above. It is not difficult to understand that in this state, the first photoelectric conversion assembly 3 and the second photoelectric conversion assembly 5 are both exposed outward to receive light energy, and the probability of photoelectric conversion is expanded.

[0073] Further, with reference to the accompanying Figure 7 In the specific implementation of the electronic device provided by the embodiment, the first body 1 can further include a third port 14. The third port 13 can be connected with the second power storage unit 12 for connecting the second body 2. The third port 14 can be connected with the second body 2. The second power storage unit 12 can supply power to the power consumption unit 22 and / or the first power storage unit through the fourth circuit 9. The connection form of the third port 14 and the first port 11 is different.

[0074] It can be understood that the cover plate 10 is in the first supporting posture or the cover plate 10 is in the unfolded state, the first body 1 cannot supply power to the power consumption part 22 and / or the first power storage part 23 through the first port 11, and then the third port 14 is provided in the embodiment, the connection form of the third port 14 is different from that of the first port 11, for example: when the first port 11 is a magnetic suction interface or a wireless charging coil, the third port 14 can be provided as a plug-in connection port, which can be but is not limited to a USB port (including Type-A, Type-C), Lightning, DC round hole plug and the like, and the third port 14 can be connected with the fourth port 27 of the second body 2; the third port 14 can also cooperate with the second power storage part 12 to supply power in the way of a power bank, and the photoelectric conversion assembly 3 of the first body 1 cannot receive light to supply power, and then the second power storage part 12 can supply power to the second body 2 through the third port 14, and it is not difficult to understand that the connection form of the fourth port 27 on the second body 2 and the second port 21 is different, the fourth port 27 can be but is not limited to a USB port (including Type-A, Type-C), Lightning, DC round hole plug and the like, the fourth port 27 is connected with the third circuit 7, and the fourth port 17 is used for connecting an external power supply or the third port 14; that is, the fourth port 17 can cooperate with the third circuit 7 to supply power in a plug-in manner, and the external power supply can be but is not limited to a wall plug power supply, a mobile power supply and the like.

[0075] Further, with reference to the accompanying Figure 8 The electronic device provided by the embodiment can be understood as follows: in the specific implementation, the second power storage part 12 and the third port 14 can be connected through the parallel connection of the fifth circuit 91 and the sixth circuit 92; the fifth circuit 91 can be used for connecting the third port 14; and the sixth circuit 92 can be used for connecting the first port 11.

[0076] It can be understood that, in order to realize the multiple power supply forms of the first body 1 to the second body 2, the second power storage part 12 is connected to the third port 14 and the first port 11 through the fifth circuit 91 and the sixth circuit 92 in the embodiment, the first body 1 and the second body 2 are in the first target state, the first body 1 can be connected in parallel with the photoelectric conversion assembly of the second body 2 through the sixth circuit 92 and the first port 11; the first body 1 and the second body 2 are in the second target state, the first body 1 can directly supply power to the second body 2 through the fifth circuit 91 and the first port 11; when the cover plate 10 of the first body 1 is in the first supporting posture or other forms, the first body 1 can directly supply power to the second body 2 through the fifth circuit 91 or the sixth circuit 92 and the third port 13 in plug-in connection.

[0077] Further, with reference to the accompanying Figure 9In the specific implementation of the electronic device provided in this embodiment, the second body 2 may be provided with a first switch 24; the first switch 24 may be set at the input end of the second photoelectric conversion component 5, and the first switch 24 may be used to switch the on / off state of the second circuit 6 and the third circuit 7; wherein, the first body 1 and the second body 2 are in the first target state, and the first switch 24 is controlled to conduct the second circuit 6.

[0078] It is understandable that, in order to meet the charging requirements of the second body 2 under different states, a first switch 24 can be set inside the second body 2 in this embodiment. The first switch 24 can perform circuit switching. In this embodiment, the first switch 24 can be, but is not limited to, a single-pole single-throw switch or a field-effect transistor (PMOS). If the first switch 24 is set as a single-pole single-throw switch, only one is needed. If the first switch 24 is a field-effect transistor, one can be set for the second circuit 6 and the third circuit 7 respectively. Figure 9 As shown in the diagram. When the first body 1 and the second body 2 are in the first target state, the controller 25 of the second body 2 controls the field-effect transistor on the second circuit 6 to turn on and the field-effect transistor on the third circuit 7 to turn off.

[0079] Further, see Appendix Figure 8 In the specific implementation of the electronic device provided in this embodiment, the first body 1 may be provided with a second switch 15; the second switch 15 may be set at the output end of the first photoelectric conversion component 5, and the second switch 15 may be used to switch the on / off state of the first circuit 4 and the fourth circuit 9; wherein, the first body 1 and the second body 2 are in the first target state, and the second switch 15 is controlled to conduct the first circuit 4.

[0080] It is understandable that, in order to power the second body 2 in different states, a second switch 15 can be set in the first body 1 in this embodiment. The second switch 15 can switch circuits. In this embodiment, the second switch 15 can be, but is not limited to, a single-pole single-throw switch or a field-effect transistor (PMOS). If the second switch 15 is set as a single-pole single-throw switch, only one is needed. If the second switch 15 is a field-effect transistor, one can be set for the first circuit 4 and one for the fourth circuit 9, respectively. Figure 8The first body 1 and the second body 2 are in the first target state, the controller 25 of the first body 1 controls the field effect transistor on the first circuit 4 to be turned on and the field effect transistor on the fourth circuit 9 to be turned off, so as to realize the parallel connection of the first photoelectric conversion assembly 3 and the second photoelectric conversion assembly 5. Correspondingly, the second body 2 is in the second target state, i.e., placed in the accommodating space, the controller 25 of the first body 1 can control the field effect transistor on the first circuit 4 to be turned off and the field effect transistor on the fourth circuit 9 to be turned on, and the controller 25 of the second body 2 can control the field effect transistor on the third circuit 7 to be turned on and the field effect transistor on the second circuit 6 to be turned off, so as to realize that the first body 1 separately supplies power to the power consumption part 22 and / or the first power storage part 23 of the second body 2.

[0081] Further, the electronic device provided by the embodiment can further include a detection assembly in specific implementation. The detection assembly can be used to detect the state of the second body 2 placed in the accommodating space. When the second body 2 is not placed in the accommodating space and the first port 11 and the second port 21 are connected, the first circuit 4 and the second circuit 6 are turned on.

[0082] It can be understood that, in order to accurately determine whether the first body 1 and the second body 2 are in the first target state, the second target state, etc., a detection assembly (not shown in the figure) can be arranged in the embodiment. The detection assembly can be a position sensor, an infrared sensor, etc. For example, a Hall sensor connected with the controller 25 of the first body 1 can be arranged in the accommodating space. When the second body 2 is placed in the accommodating space, any metal element in the second body 2 will cooperate with the Hall sensor to generate an electric potential transmitted to the controller 25 in the first body 1, indicating that the first body 1 and the second body 2 are in the second target state. At this time, the controller 25 in the second body 2 can control the third circuit 7 to be turned on, and the controller 25 in the first body 1 can control the fourth circuit 9 to be turned on and separately or simultaneously supply power to the power consumption part 22 and / or the first power storage part 23 through the first port 11, depending on whether the third port 14 is connected with the fourth port 27. Correspondingly, when the second body 2 is not placed in the accommodating space and the first port 11 and the second port 21 are connected, the controller 25 in the first body 1 controls the first circuit 4 to be turned on, and the controller 25 in the second body 2 controls the second circuit 6 to be turned on. Conversely, when the third port 14 and the fourth port 27 are connected, no matter what state the second body 2 and the first body 1 are in, the controller 25 of the first body 1 can control the fourth circuit 9 to be turned on, and the controller 15 of the second body 2 can correspondingly control the third circuit 7 to be turned on.

[0083] Further, with reference to the accompanying Figure 9In the specific implementation, the second power storage unit 12 can include a first sub power storage unit 121 and a second sub power storage unit 122; the first photoelectric conversion assembly 3 can be connected to the first sub power storage unit 121 through the fourth circuit 9 and a first sub circuit 93, and the first photoelectric conversion assembly 3 can be connected to the second sub power storage unit 122 through the fourth circuit 9 and a second sub circuit 94; one of the first sub power storage unit 121 and the second sub power storage unit 122 can be charged by the first photoelectric conversion assembly 3, and the other one can be powered by the power consumption unit 22 and / or the first power storage unit 23 through the third port 14.

[0084] It can be understood that, in order to improve the energy storage capacity of the first body 1 and provide certain power supply in a lightless environment, in the embodiment, the second power storage unit 12 is arranged in the form of including the first sub power storage unit 121 and the second sub power storage unit 122, each of the first sub power storage unit 121 and the second sub power storage unit 122 corresponds to a power manager 26, the power manager 26 and the first sub power storage unit 121 are connected in series on the first sub circuit 93, the power manager 26 and the second sub power storage unit 122 are connected in series on the second sub circuit 94, and the charging and discharging of the first sub power storage unit 121 and the second sub power storage unit 122 can be independently regulated by the corresponding power manager 26. For example, when the first port 11 and / or the third port 14 is connected to the second body 2 and needs to be powered by the second power storage unit 12, the first photoelectric conversion assembly 3 cannot receive light conversion power, and then the controller 25 of the first body 1 can adaptively regulate according to the power of the first sub power storage unit 121 and the second sub power storage unit 122, and can first control the sub power storage unit with higher power to supply power to the second body 2, and then control the sub power storage unit with lower power to charge through the first photoelectric conversion assembly 3. When the power in the sub power storage unit for power supply is used up, the sub power storage unit that is first charged is replaced to supply power to the second body 2, and the above process is repeated.

[0085] In summary, the electronic device provided in the embodiment can have at least the following cooperation modes:

[0086] The first body 1 and the second body 2 are in the first target state, that is, the cover plate 10 is reversely folded to support the second body 2, and the first port 11 is exposed and can be directly connected to the second port 21 of the second body 2.

[0087] In the light environment, for example, the case of outdoor or indoor light, the first photoelectric conversion component 3 and the second photoelectric conversion component 5 can receive light, the first body 1 determines that the second body 2 is not in the accommodation space according to the detection result of the detection component, and the first port 11 and the second port 21 are connected, then the controller 25 of the first body 1 can control the first circuit 4 to be turned on and connected to the second circuit 6 through the first port 11 and the second port 21, and the controller 25 of the second body 2 can turn on the second circuit 6, so that the first photoelectric conversion component 3 and the second photoelectric conversion component 5 are connected in parallel, realizing the expansion of power and the continuity of power supply.

[0088] In the light environment, for example, the case of outdoor or indoor light, the first photoelectric conversion component 3 and the second photoelectric conversion component 5 can receive light, the first body 1 determines that the second body 2 is not in the accommodation space according to the detection result of the detection component, and the first port 11 and the second port 21 are connected, then the controller 25 of the first body 1 can control the first circuit 4 to be turned on and connected to the second circuit 6 through the first port 11 and the second port 21, and the controller 25 of the second body 2 can turn on the second circuit 6, so that the first photoelectric conversion component 3 and the second photoelectric conversion component 5 are connected in parallel, realizing the expansion of power and the continuity of power supply.

[0089] The second kind: the first body 1 and the second body 2 are in the second target state, that is, the second body 2 is placed in the accommodation space of the first body 1, and the first port 11 and the second port 21 are directly connected;

[0090] The first photoelectric conversion component 3 cannot receive light, for example, the electronic device is carried, the first photoelectric conversion component 3 is covered, the first body 1 determines that the second body 2 is in the accommodation space according to the detection result of the detection component, and the first port 11 and the second port 21 are connected, then the controller 25 in the first body 1 can control the fourth circuit 9 to be turned on, the controller 25 in the second body 2 controls the third circuit 7 to be turned on, the fourth circuit 9 of the first body 1 can be connected to the third circuit 7 through the first port 11 and the second port 21, so that the second power storage part 12 in the first body 1 supplies power to the second body 2; Specifically, it can be in the form of outputting electric energy one by one, which is referred to in the above description, and will not be repeated here.

[0091] The second photoelectric conversion assembly 3 can receive light, for example, the first body 1 is placed with the first photoelectric conversion assembly 3 exposed on the back, or the first photoelectric conversion assembly 3 is exposed and carried, the first body 1 determines that the second body 2 is in the accommodation space according to the detection result of the detection assembly, and the first port 11 and the second port 21 are connected, then the controller 25 in the first body 1 can control the fourth circuit 9 to be turned on, the controller 25 in the second body 2 controls the third circuit 7 to be turned on, one of the first sub power storage part 121 and the second sub power storage part 122 supplies power to the power consumption part 22 and / or the first power storage part 23 through the first port 11, the second port 21 and the third circuit 7, and the other is charged through the first photoelectric conversion assembly 3, and the above-mentioned two processes are alternately repeated.

[0092] The third kind: refer to the attached drawings Figure 11 The first body 1 is placed in an outdoor light environment to enable the first photoelectric conversion assembly 3 to receive light, the second body 2 is placed in an indoor dark or weak light environment, the third port 14 and the fourth port 27 are directly connected, and the controller 25 in the first body 1 can control one of the first sub power storage part 121 and the second sub power storage part 122 to supply power to the power consumption part 22 and / or the first power storage part 23 through the third circuit 7, and the other is charged through the first photoelectric conversion assembly 3, and the above-mentioned two processes are alternately repeated.

[0093] The fourth kind: the second body 2 is placed in an outdoor light environment to enable the second photoelectric conversion assembly 5 to receive light, the first body 1 is placed in an indoor dark or weak light environment, the third port 14 and the fourth port 27 are directly connected, and the controller 25 in the first body 1 can control the first sub power storage part 121 and the second sub power storage part 122 to supply power to the power consumption part 22 and / or the first power storage part 23 through the third circuit 7 one by one, and the controller 25 in the second body 2 can control the second photoelectric conversion assembly 5 to supply power to the power consumption part 22 and / or the first power storage part 23 through the second circuit 6.

[0094] The fifth kind: the first body 1 and the second body 2 are simultaneously placed in an outdoor light environment, and the cover plate 10 is in the first supporting posture, at this time the second photoelectric conversion assembly 5 can receive light, the first photoelectric conversion assembly 3 cannot receive light, and the first port 11 and the second port 21 cannot be connected, then the third port 14 and the fourth port 27 can be directly connected, the controller 25 in the first body 1 can control the fourth circuit 9 to be turned on, the controller 25 in the second body 2 can control the third circuit 7 to be turned on, and correspondingly make the first sub power storage part 121 and the second sub power storage part 122 supply power to the power consumption part 22 and / or the first power storage part 23 through the third port 14, the fourth port 27 and the third circuit 7 one by one; at the same time, the controller 25 of the second body 2 can control the second photoelectric conversion assembly 5 to supply power to the power consumption part 22 and / or the first power storage part 23 through the second circuit 6.

[0095] The sixth: the first body 1 and the second body 2 are placed in the indoor lightless or weak light environment at the same time, and the cover plate 10 is in the first supporting posture, at this time, the second photoelectric conversion assembly 5 and the first photoelectric conversion assembly 3 cannot receive light, the first port 11 and the second port 21 cannot be connected, then the third port 14 and the fourth port 27 can be directly connected, the controller 25 in the first body 1 can control the fourth circuit 9 to be turned on, and the controller 25 in the second body 2 can control the third circuit 7 to be turned on, so that the first sub power storage part 121 and the second sub power storage part 122 supply power to the power consumption part 22 and / or the first power storage part 23 through the third port 14, the fourth port 27 and the third circuit 7 one by one.

[0096] The above is only a specific embodiment of the present application, but the protection scope of the present application is not limited to this, any person skilled in the art can easily think of changes or replacements within the technical range disclosed by the present application, which should be covered within the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

Claims

1. An electronic device, comprising: It comprises: a first body provided with a first photoelectric conversion assembly, a first port and a first circuit, the first photoelectric conversion assembly is connected with the first port through the first circuit to convert light energy into electrical energy and output through the first port; a second body provided with a second photoelectric conversion assembly, a second port, a second circuit, a power consumption part and a first power storage part, the second photoelectric conversion assembly is connected with the first power storage part and the power consumption part through the second circuit to convert light energy into electrical energy to power the first power storage part and / or the power consumption part; the first power storage part is connected with the power consumption part, and the second port is connected with the second photoelectric conversion assembly; wherein the second body and the first body are in a first target state, the first port is connected with the second port, and the first photoelectric conversion assembly can supply power to the power consumption part and / or the first power storage part at the same time as the second photoelectric conversion assembly.

2. The electronic device of claim 1, wherein: the first body has a containing space for containing at least the second body and an opening communicating with the containing space, and the opening is used for the second body to enter or exit the containing space.

3. The electronic device of claim 2, wherein: the first port is arranged in the containing space; the second body is further provided with a third circuit connected in parallel with the second circuit, and the second port is connected with the first power storage part and the power consumption part through the third circuit; the second body is arranged in the containing space to make the first body and the second body in a second target state, the first port is connected with the second port, and the first photoelectric conversion assembly can supply power to the power consumption part and / or the first power storage part through the third circuit; wherein the second target state is different from the first target state.

4. The electronic device of claim 2, wherein: the first body further comprises a cover plate; the cover plate is movably connected with a first edge of the opening, and the cover plate has an unfolded state and a folded state, the cover plate is in the unfolded state to shield the opening, and the cover plate is in the folded state to support the second body so that the first body and the second body can be in the first target state.

5. The electronic device of claim 4, wherein: the cover plate can be rotated around the first edge of the opening to the direction of the containing space or to the direction away from the containing space to form a first support posture and a second support posture respectively; when the cover plate is in the first support posture, the first port is shielded by the cover plate; when the cover plate is in the second support posture, the first port is exposed, and the second body is supported by the cover plate to be in the first target state with the first body; wherein the second body and the first body are in the first target state, and the first photoelectric conversion assembly and the second photoelectric conversion assembly are both exposed outwardly for receiving light energy. 6.The electronic device of claim 3, wherein: the first body further comprises a second power storage unit, a third port, and a fourth circuit; the fourth circuit is connected in parallel with the first circuit, and the first photoelectric conversion assembly connects the second power storage unit and the third port in sequence through the fourth circuit; and the third port is configured to connect the second body. In the third port is connected to the second body, the second power storage unit can supply power to the power consumption unit and / or the first power storage unit through the fourth circuit; and the third port and the first port are connected in different forms. 7.The electronic device of claim 6, wherein: the second body further comprises a fourth port; the fourth port and the second port are connected in different forms, the fourth port is connected to the third circuit, and the fourth port is configured to connect an external power supply or the third port. 8.The electronic device of claim 6, wherein: fifth and sixth circuits are connected in parallel between the second power storage unit and the third port; the fifth circuit is configured to connect the third port; and the sixth circuit is configured to connect the first port. 9.The electronic device of claim 3, wherein: a first switch is arranged in the second body; the first switch is arranged at an input end of the second photoelectric conversion assembly, and is configured to switch on and off the second circuit and the third circuit; in the first target state of the first body and the second body, the first switch is controlled to turn on the second circuit. 10.The electronic device of claim 6, wherein: a second switch is arranged in the first body; the second switch is arranged at an output end of the first photoelectric conversion assembly, and is configured to switch on and off the first circuit and the fourth circuit; in the first target state of the first body and the second body, the second switch is controlled to turn on the first circuit.