A multi-functional portable WIFI

Through the design of multi-function portable WIFI, combined with manual power generation, water purification and arc ignition head, the existing portable WIFI cannot help in the dilemma, and realizes a variety of power supply methods for obtaining electricity, water and fire sources in the field, suitable for use on aircraft and reducing weight.

CN115694533BActive Publication Date: 2025-07-04杭州可当科技有限公司
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Patent Information

Application Number
CN202211153025.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-09-21
Publication Date
2025-07-04
Estimated Expiration
2042-09-21

AI Technical Summary

Technical Problem

The existing portable WIFI function is relatively single and cannot provide effective help when the user is in trouble.

Method used

A multi-functional portable WIFI is designed, including a carrying frame and a connecting frame, and has built-in portable WIFI components, backup power supply components, manual power generation components and water purification components. It can obtain electricity through manual power generation, water purification and clean water sources, and obtain fire sources through arc ignition heads, providing a variety of power supply methods.

Benefits of technology

The application scope of the device is improved, and it can provide effective assistance to clean water, fire and electricity in difficult situations, while it can be used on aircraft, and the split design reduces handheld weight.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a multi-functional portable WIFI, comprising: a carrying frame and a connection frame; a portable WIFI component, disposed inside the carrying frame and used to provide a WIFI network for users; a backup power supply component, disposed inside the connection frame and used to provide a backup power supply for the portable WIFI component; a manual power generation component, disposed inside the connection frame and used to supply power to the backup power supply component manually. The present invention obtains and stores electric energy through manual power generation by the manual power generation component, obtains filtered clean water through the water purification component to solve the water source problem, forms an arc to generate high temperature to heat an object to obtain a fire source by energizing the arc ignition head, converts light energy into electric energy and stores it through the solar panel, provides two power supply methods to improve the applicable range of the device, so as to effectively help users in distress to obtain clean water source, obtain a fire source and obtain electric energy.
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Description

Technical Field

[0001] The present invention relates to the technical field of portable WIFI, and specifically to a multifunctional portable WIFI. Background Art

[0002] A portable WIFI is a device that can convert a wired, 2G, 3G, 4G network or an Internet connection on a computer into a WIFI signal, which can meet the needs of business and tourism people who travel on business and rely on the network. Now, many people who do live broadcasts in the wild or travel abroad will rent a portable WIFI to meet their network needs.

[0003] However, in actual use of the existing technology, the functions of the portable WIFI are relatively single. When used in the wild, it can only provide network needs for users. When users are in trouble, it cannot provide effective assistance. Summary of the Invention

[0004] The purpose of the present invention is to provide a multifunctional portable WIFI to solve the problems that the functions of the portable WIFI are relatively single and it cannot provide effective help when users are in trouble.

[0005] To achieve the above purpose, the present invention provides the following technical solutions: including:

[0006] A carrying frame and a connecting frame, the carrying frame is movably arranged at one end of the connecting frame;

[0007] A portable WIFI component, which is arranged inside the carrying frame and is used to provide a WIFI network for users;

[0008] A backup power supply component, which is arranged inside the connecting frame and is used to provide a backup power supply for the portable WIFI component;

[0009] A manual power generation component, which is arranged inside the connecting frame and is used to supply power to the backup power supply component manually;

[0010] A water purification component, which is arranged inside the connecting frame and cooperates with the manual power generation component to absorb and purify sewage.

[0011] Preferably, the portable WIFI component includes a portable WIFI circuit board, a charging and discharging port, a network cable interface, a first battery, and a power connection circuit board. The portable WIFI circuit board and the first battery are both fixedly connected to the bottom of the inner wall of the carrying frame. The connection end of the first battery is electrically connected to the connection end of the portable WIFI circuit board. The input end of the first battery is electrically connected to the output end of the power connection circuit board. The charging and discharging port and the network cable interface are fixedly embedded at one end of the carrying frame away from the connection frame. The connection end of the charging and discharging port is electrically connected to the connection end of the portable WIFI circuit board, and the input end of the network cable interface is electrically connected to the output end of the portable WIFI circuit board. A first positioning plate for protecting and positioning the portable WIFI circuit board and the first battery is fixedly connected to the inner wall of the portable WIFI circuit board, and the portable WIFI circuit board and the first battery are located at the bottom of the first positioning plate. Two first electrical contacts for electrically connecting to the input end of the power connection circuit board are fixedly embedded at one end of the carrying frame corresponding to the connection frame. A water-blocking and dust-proof sealing ring is fixedly embedded at one end of the carrying frame corresponding to the position of the first electrical contact, and one end of the sealing ring corresponding to the connection frame is of a flared structure.

[0012] Preferably, the backup power supply component includes a second battery and a power supply circuit board. The second battery and the power supply circuit board are both fixedly connected to the bottom of the inner wall of the connection frame respectively. A second electrical contact is fixedly embedded at one end of the connection frame corresponding to the position of the first electrical contact, and the input end of the second electrical contact is electrically connected to the output end of the power supply circuit board. A second positioning plate for protecting and positioning the second battery and the power supply circuit board is fixedly connected to the inner wall of the connection frame, and the second battery and the power supply circuit board are located at the bottom of the second positioning plate. A third positioning plate is fixedly connected to the inner wall of the connection frame, and the third positioning plate is located on top of the second positioning plate.

[0013] Preferably, a first sealing cover is fixedly connected to the top of the carrying frame through a screw, and the portable WIFI component is located between the carrying frame and the first sealing cover. A second sealing cover is fixedly connected to the top of the connection frame through a screw, and the backup power supply component, the manual power generation component, and the water purification component are all located between the connection frame and the second sealing cover. Sealing rings for water isolation are respectively provided at the joints between the carrying frame and the first sealing cover and between the connection frame and the second sealing cover.

[0014] Preferably, the manual power generation component includes a driving gear which is rotatably connected to the top of the third positioning plate. A driving column is fixedly embedded in the middle of the driving gear, and the driving column movably penetrates and extends to the top of the second sealing cover. A first threaded hole is formed in the middle of one end of the driving column away from the driving gear. A first driven gear is meshed with the surface of the driving gear. A power generation rotating shaft is rotatably connected to the middle of the first driven gear through a one-way bearing. A rotor assembly is fixedly connected to the surface of the middle part of the power generation rotating shaft. A magnet ring is rotatably connected to the surface of the rotor assembly, and the magnet ring is fixedly embedded in the bottom of the inner wall of the connection frame. A protective tube is fixedly connected to the surface of the magnet ring, and the protective tube fixedly penetrates and extends to both ends of the third positioning plate and the second positioning plate. An annular groove is formed in the bottom of the first driven gear, and the inner wall of the annular groove is movably connected to the surface of the protective tube. The inner wall of the protective tube is electrically connected to the surface of the top of the rotor assembly through a brush, and the output end of the protective tube is electrically connected to the input end of the power supply circuit board.

[0015] Preferably, a positioning hole is formed in the bottom of the driving column, and a positioning column is rotatably connected to the inner wall of the positioning hole, and the positioning column is fixedly connected to the top of the third positioning plate.

[0016] Preferably, the water purification component includes a tooth groove which is formed in the bottom of the driving gear. A second driven gear is meshed with the inner wall of the tooth groove. A first transmission shaft is rotatably connected to the middle of the second driven gear through a one-way bearing. The first transmission shaft movably penetrates and extends to both ends of the third positioning plate through a bearing. A first gear is fixedly connected to the surface of one end of the first transmission shaft away from the second driven gear. A second gear is meshed with the surface of the first gear, and both the first gear and the second gear are respectively rotatably connected to the top of the second positioning plate. A second transmission shaft is fixedly connected to the middle of the second gear, and the second transmission shaft is rotatably connected to the middle of the third positioning plate through a bearing. A water guide frame and a partition board are fixedly connected to one end of the opposite surfaces of the second positioning plate and the third positioning plate respectively. The number of the water guide frames and the partition boards is two respectively. The middle part of the partition board corresponding to the first gear is of an arc-shaped structure. The first gear and the second gear are located between the two water guide frames, and the two partition boards are respectively fixedly connected to the opposite surfaces of the two water guide frames. A sealed cavity is formed among the water guide frame, the partition board, the second positioning plate and the third positioning plate, and heat-conducting oil is filled in the sealed cavity. A liquid channel is formed among the two partition boards, the second positioning plate and the third positioning plate.

[0017] Preferably, one end of the second positioning plate and the third positioning plate corresponding to the position of the water guide frame is fixedly connected with a mounting frame. A first notch for liquid circulation is formed in the mounting frame corresponding to the position between the two water guide frames. One end of the mounting frame away from the water guide frame is fixedly embedded with a water suction port. The inner walls of the mounting frame and the water suction port are both movably connected with a second filter frame. A second notch for facilitating the assembly with the second filter frame is formed at the top of the water suction port. Connecting pipes are fixedly embedded in the side walls of the water suction port and the mounting frame. The second filter frame is provided with a third notch corresponding to the first notch, and both ends of the second filter frame are provided with first through holes corresponding to the position of one end of the mounting frame corresponding to the connecting pipe. Both ends of the second filter frame corresponding to the water suction port are provided with second through holes corresponding to the position of one end of the connecting pipe corresponding to the water suction port. One end of the second filter frame corresponding to the water suction port is of a mesh structure. Both ends of the second filter frame corresponding to the water suction port and the mounting frame are not communicated. The inside of the second filter frame is filled with filter cotton.

[0018] Preferably, a plurality of arc ignition heads are fixedly connected to the inner wall of the water suction port, and the input ends of the arc ignition heads are electrically connected to the output end of the power supply circuit board. One end of the connecting frame body corresponding to the position of the carrying frame body is fixedly embedded with a second socket. A communicating pipe is fixedly embedded at the bottom of the second socket, and the communicating pipe is fixedly connected to the middle of the connecting frame body. The communicating pipe fixedly penetrates through the connecting frame body and extends to the inside of the position between the second positioning plate and the third positioning plate corresponding to the two water guide frames. A first socket is fixedly embedded in the side wall of the carrying frame body corresponding to the second socket. A receiving groove is formed at the top of the first sealing cover, and a transparent frame is clamped on the inner wall of the receiving groove. The first socket movably penetrates through and extends to the inside of the transparent frame. One end of the transparent frame corresponding to the first socket is fixedly connected with a first filter frame, and the inside of the first filter frame is filled with filter cotton. Duckbill-shaped one-way valves are arranged on the inner walls of the second socket and the first socket. Water outlet holes are formed in the side wall of the transparent frame.

[0019] Preferably, connection components are fixedly arranged on the surfaces of the carrying frame and the connection frame. The connection component includes a first receiving tube, a second receiving tube, and an insertion tube. The first receiving tube and the second receiving tube are respectively fixedly connected to two ends of the connection frame. The number of insertion tubes is two, and the two insertion tubes are respectively fixedly connected to two ends of the carrying frame. A rotating arm is movably inserted into the inner wall of the first receiving tube, and threaded columns are respectively hinged to both ends of the rotating arm. A driving arm is movably inserted into the inner wall of the second positioning plate. A second threaded hole is formed at one end of the driving arm. Connection columns are respectively fixedly connected to one ends of the first receiving tube and the second receiving tube corresponding to the positions of the insertion tubes, and the connection columns are movably inserted into the inner wall of the insertion tube. Two solar panels are fixedly arranged at the bottom of the connection frame, and one ends of the opposite surfaces of the two solar panels are hinged through a hinge. Installation grooves are respectively formed at the bottoms of the carrying frame and the connection frame. One of the solar panels is fixedly connected to the inner wall of the installation groove at the bottom of the connection frame. Switches are respectively arranged on the sides of the carrying frame and the connection frame.

[0020] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0021] 1. In the present invention, the manual power generation component obtains electric energy through manual power generation and stores it. The water purification component obtains clean water after filtration to solve the water source problem. The arc ignition head is electrified to form an arc to generate high temperature to heat an object to obtain a fire source. The solar panel converts light energy into electric energy for storage, providing two power supply methods to improve the application range of the device, so as to effectively help users in distress to obtain clean water, obtain a fire source, and obtain electric energy.

[0022] 2. In the present invention, the portable WIFI circuit board and the first battery can generate WIFI signals. Through the network cable interface, the device can convert the wired network into WIFI, and can also convert WIFI into a wired network, greatly improving the application range of the device. By setting the charging and discharging port, the first battery can be powered through the charging and discharging port in cooperation with the portable WIFI circuit board, and the electric energy of the first battery can also be used to supply power to other devices through the charging and discharging port in cooperation with the portable WIFI circuit board. Since the safety factor of this part is relatively high, it can be used on an airplane. The structure inside the connection frame cannot be carried onto the airplane. Therefore, before boarding the plane, the part of the connection frame should be sent to the corresponding location first. When the user gets off the plane, the part of the connection frame will be picked up at the local corresponding location. Since the first battery is provided in the carrying frame, it will not affect the short-term use experience of the user. Since the multifunctional portable WIFI adopts a split design, that is, the carrying frame and the connection frame can be separated, in order to get better signal, the carrying frame can be held by hand, and the connection frame can be put into the backpack to reduce the weight of the hand-held. Description of the Drawings

[0023] Figure 1 Schematic diagram of the overall structure of a multi-functional portable WIFI of the present invention Figure 1 ;

[0024] Figure 2 Schematic diagram of the structure of the carrying frame of a multi-functional portable WIFI of the present invention Figure 1 ;

[0025] Figure 3 Schematic diagram of the structure of the connection frame of a multi-functional portable WIFI of the present invention Figure 1 ;

[0026] Figure 4 Cross-sectional view of the structure of the carrying frame of a multi-functional portable WIFI of the present invention;

[0027] Figure 5 Cross-sectional view of the structure of the connection frame of a multi-functional portable WIFI of the present invention;

[0028] Figure 6 Schematic diagram of the structure of the carrying frame of a multi-functional portable WIFI of the present invention Figure 2 ;

[0029] Figure 7 Schematic diagram of the structure of the connection frame of a multi-functional portable WIFI of the present invention Figure 2 ;

[0030] Figure 8 Cross-sectional view of the overall structure of a multi-functional portable WIFI of the present invention;

[0031] Figure 9 Exploded view of the structure of the carrying frame of a multi-functional portable WIFI of the present invention;

[0032] Figure 10 Exploded view of the structure of the connection frame of a multi-functional portable WIFI of the present invention;

[0033] Figure 11 Schematic diagram of the structure of the manual power generation component of a multi-functional portable WIFI of the present invention Figure 1 ;

[0034] Figure 12 Cross-section of the structure of the manual power generation component of a multi-functional portable WIFI of the present invention Figure 1 ;

[0035] Figure 13 Schematic diagram of the structure of the manual power generation component of a multi-functional portable WIFI of the present invention Figure 2 ;

[0036] Figure 14 Schematic diagram of the structure of the manual power generation component of a multi-functional portable WIFI of the present invention Figure 3 ;

[0037] Figure 15 Cross-sectional view of the structure of a multi-functional portable WIFI manual power generation component of the present invention Figure 2 ;

[0038] Figure 16 Schematic diagram of the structure of a multi-functional portable WIFI manual power generation component of the present invention Figure 4 ;

[0039] Figure 17 Schematic diagram of the structure of a multi-functional portable WIFI water purification component of the present invention Figure 1 ;

[0040] Figure 18 Schematic diagram of the structure of a multi-functional portable WIFI water purification component of the present invention Figure 2 ;

[0041] Figure 19 Schematic diagram of the structure of a multi-functional portable WIFI connection component of the present invention;

[0042] Figure 20 Schematic diagram of the usage state of the overall structure of a multi-functional portable WIFI of the present invention;

[0043] Figure 21 Schematic diagram of the overall structure of a multi-functional portable WIFI of the present invention Figure 2 ;

[0044] Figure 22 Schematic diagram of the folded state of the solar panel of a multi-functional portable WIFI of the present invention.

[0045] In the figure: 1. Carrying frame; 2. Connecting frame; 3. First sealing cover; 4. Second sealing cover; 501. Portable WIFI circuit board; 502. Charging and discharging port; 503. Network cable interface; 504. First battery; 505. First positioning plate; 506. First electrical contact; 507. Power connection circuit board; 508. First socket; 509. Transparent frame; 510. First filter frame; 601. Second battery; 602. Power supply circuit board; 603. Second electrical contact; 604. Second positioning plate; 605. Third positioning plate; 701. Driving gear; 702. Driving column; 703. First threaded hole; 704. Positioning column; 705. First driven gear; 706. Power generation rotating shaft; 707. Rotor assembly; 708. Magnet ring; 709. Protection tube; 801. Tooth groove; 802. Second driven gear; 803. First transmission shaft; 804. First gear; 805. Second gear; 806. Second transmission shaft; 807. Water guide frame; 808. Partition board; 809. Installation frame; 810. Connecting pipe; 811. Water suction port; 812. Second filter frame; 813. Arc ignition head; 814. Second socket; 815. Connecting pipe; 901. First receiving tube; 902. Rotating arm; 903. Threaded column; 904. Second receiving tube; 905. Driving arm; 906. Second threaded hole; 907. Connecting column; 908. Insertion connecting pipe; 11. Solar panel. Detailed implementation mode

[0046] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0047] Please refer to Figure 1 - 22 , the present invention provides a technical solution: including:

[0048] A carrying frame 1 and a connecting frame 2, the carrying frame 1 is movably arranged at one end of the connecting frame 2;

[0049] A portable WIFI component, which is arranged inside the carrying frame 1 and is used to provide WIFI network for users;

[0050] A backup power supply component, which is arranged inside the connecting frame 2 and is used to provide backup power for the portable WIFI component;

[0051] A manual power generation component, which is arranged inside the connecting frame 2 and is used to supply power to the backup power supply component manually;

[0052] A water purification component is arranged inside the connecting box body 2 and cooperates with the manual power generation component to absorb and purify sewage.

[0053] The portable WIFI component includes a portable WIFI circuit board 501, a charging and discharging port 502, a network cable interface 503, a first battery 504, and a power connection circuit board 507. Both the portable WIFI circuit board 501 and the first battery 504 are fixedly installed at the bottom of the inner wall of the carrying frame 1, and the connection end of the first battery 504 is electrically connected to the connection end of the portable WIFI circuit board 501. The input end of the first battery 504 is electrically connected to the output end of the power connection circuit board 507. At one end of the carrying frame 1 away from the connection frame 2, the charging and discharging port 502 and the network cable interface 503 are fixedly embedded. The connection end of the charging and discharging port 502 is electrically connected to the connection end of the portable WIFI circuit board 501, and the input end of the network cable interface 503 is electrically connected to the output end of the portable WIFI circuit board 501. A first positioning plate 505 for protecting and positioning the portable WIFI circuit board 501 and the first battery 504 is fixedly installed on the inner wall of the portable WIFI circuit board 501, and the portable WIFI circuit board 501 and the first battery 504 are located at the bottom of the first positioning plate 505. At one end of the carrying frame 1 corresponding to the connection frame 2, two first electrical contacts 506 for electrically connecting to the input end of the power connection circuit board 507 are fixedly embedded, and a waterproof and dustproof sealing ring is fixedly embedded at one end of the carrying frame 1 corresponding to the position of the first electrical contacts 506. One end of the sealing ring corresponding to the connection frame 2 is of a flared structure. The portable WIFI circuit board 501 integrates a baseband processor of model ZX297520V3, a WIFI chip of model SV6158 for providing WIFI and wired network, an eSIM card supporting three operators, and a power supply chip of model SW6106 supporting bidirectional charging. The portable WIFI circuit board 501 and the first battery 504 can generate a WIFI signal. Through the network cable interface 503, the device can convert the wired network into WIFI, and at the same time, it can also convert WIFI into a wired network, greatly improving the applicable range of the device. By setting the charging and discharging port 502, the first battery 504 can be powered through the cooperation of the charging and discharging port 502 and the portable WIFI circuit board 501, and the electrical energy of the first battery 504 can also be used to power other devices through the cooperation of the charging and discharging port 502 and the portable WIFI circuit board 501. Since the safety factor of this part is relatively high, it can be used on an airplane. The structure inside the connection frame 2 cannot be carried onto the airplane. Therefore, before boarding the plane, the part of the connection frame 2 should be sent to the corresponding location first. When the user gets off the plane, the part of the connection frame 2 will be picked up at the corresponding local location. Since the first battery 504 is provided in the carrying frame 1, it will not affect the user's short-term use experience. Since this multifunctional portable WIFI adopts a split design, that is, the carrying frame 1 and the connection frame 2 can be separated, in order to get a better signal, the carrying frame 1 can be held by hand, and the connection frame 2 can be put into a backpack to reduce the weight of the hand-held part.

[0054] The backup power supply component includes a second battery 601 and a power supply circuit board 602. The second battery 601 and the power supply circuit board 602 are both fixedly installed at the bottom of the inner wall of the connection frame 2. One end of the connection frame 2 corresponding to the position of the first electrical contact 506 is fixedly embedded with a second electrical contact 603, and the input end of the second electrical contact 603 is electrically connected to the output end of the power supply circuit board 602. A second positioning plate 604 for protecting and positioning the second battery 601 and the power supply circuit board 602 is fixedly installed on the inner wall of the connection frame 2, and the second battery 601 and the power supply circuit board 602 are located at the bottom of the second positioning plate 604. A third positioning plate 605 is fixedly installed on the inner wall of the connection frame 2, and the third positioning plate 605 is located on the top of the second positioning plate 604. The power supply circuit board 602 integrates a control chip of model SB6057 for controlling arc ignition, a MOS tube of model HC080N10L for realizing arc ignition, and a power supply chip of model STC89C52 supporting bidirectional charging. The STC89C52 chip supports hand-cranked power generation, solar power generation, and discharging functions.

[0055] The top of the carrying frame 1 is fixedly installed with a first sealing cover 3 through a screw, and the portable WIFI component is located between the carrying frame 1 and the first sealing cover 3. The top of the connection frame 2 is fixedly installed with a second sealing cover 4 through a screw, and the backup power supply component, the manual power generation component, and the water purification component are all located between the connection frame 2 and the second sealing cover 4. Sealing rings for water isolation are respectively provided at the joints of the carrying frame 1 and the first sealing cover 3 and the joints of the connection frame 2 and the second sealing cover 4.

[0056] The manual power generation component includes a driving gear 701, and the driving gear 701 is rotatably connected to the top of the third positioning plate 605. A driving column 702 is fixedly embedded in the middle of the driving gear 701, and the driving column 702 movably penetrates and extends to the top of the second sealing cover 4. A first threaded hole 703 is opened in the middle of the end of the driving column 702 away from the driving gear 701. A first driven gear 705 is meshed with the surface of the driving gear 701. A power generation rotating shaft 706 is rotatably connected to the middle of the first driven gear 705 through a one-way bearing. A rotor assembly 707 is fixedly installed on the surface of the middle of the power generation rotating shaft 706. A magnet ring 708 is rotatably connected to the surface of the rotor assembly 707, and the magnet ring 708 is fixedly embedded at the bottom of the inner wall of the connection frame 2. A protective tube 709 is fixedly installed on the surface of the magnet ring 708, and the protective tube 709 fixedly penetrates and extends to both ends of the third positioning plate 605 and the second positioning plate 604. An annular groove is opened at the bottom of the first driven gear 705, and the inner wall of the annular groove is movably connected to the surface of the protective tube 709. The inner wall of the protective tube 709 is electrically connected to the surface of the top of the rotor assembly 707 through a brush, and the output end of the protective tube 709 is electrically connected to the input end of the power supply circuit board 602.

[0057] A positioning hole is formed at the bottom of the driving column 702, and a positioning column 704 is rotatably connected to the inner wall of the positioning hole, and the positioning column 704 is fixedly installed on the top of the third positioning plate 605.

[0058] The water purification component includes a tooth groove 801, and the tooth groove 801 is formed at the bottom of the driving gear 701. A second driven gear 802 is engaged with the inner wall of the tooth groove 801. A first transmission shaft 803 is rotatably connected to the middle of the second driven gear 802 through a one-way bearing. The first transmission shaft 803 passes through and extends to both ends of the third positioning plate 605 through a bearing. A first gear 804 is fixedly installed on the surface of the first transmission shaft 803 at a position far from the second driven gear 802. A second gear 805 is engaged with the surface of the first gear 804, and both the first gear 804 and the second gear 805 are respectively rotatably connected to the top of the second positioning plate 604. A second transmission shaft 806 is fixedly installed in the middle of the second gear 805, and the second transmission shaft 806 is rotatably connected to the middle of the third positioning plate 605 through a bearing. Water guide frames 807 and partitions 808 are fixedly installed at one end of the opposite surfaces of the second positioning plate 604 and the third positioning plate 605. The numbers of the water guide frames 807 and the partitions 808 are both two. The middle of the partition 808 corresponding to the position of the first gear 804 is an arc structure. The first gear 804 and the second gear 805 are located between the two water guide frames 807, and the two partitions 808 are respectively fixedly installed on the opposite surfaces of the two water guide frames 807. A sealed cavity is formed among the water guide frames 807, the partitions 808, the second positioning plate 604 and the third positioning plate 605, and heat-conducting oil is filled in the sealed cavity. A liquid channel is formed among the two partitions 808, the second positioning plate 604 and the third positioning plate 605.

[0059] At one end of the second positioning plate 604 and the third positioning plate 605 corresponding to the position of the water guide frame 807, an installation frame 809 is fixedly installed. A first notch for liquid circulation is opened at a position between the two water guide frames 807 corresponding to the installation frame 809. At one end of the installation frame 809 away from the water guide frame 807, a water suction port 811 is fixedly embedded. The inner walls of the installation frame 809 and the water suction port 811 are both movably connected with a second filter frame 812. A second notch for facilitating the assembly with the second filter frame 812 is opened at the top of the water suction port 811. Connecting pipes 810 are fixedly embedded in the side walls of the water suction port 811 and the installation frame 809. A third notch is opened at a position of the second filter frame 812 corresponding to the first notch, and first through holes corresponding to one end of the installation frame 809 where the connecting pipes 810 are located are opened at both ends of the second filter frame 812. Second through holes corresponding to one end of the water suction port 811 where the connecting pipes 810 are located are opened at both ends of the second filter frame 812 corresponding to the position of the water suction port 811. One end of the second filter frame 812 corresponding to the position of the water suction port 811 is a mesh structure. Both ends of the second filter frame 812 corresponding to the positions of the water suction port 811 and the installation frame 809 are not connected, and the inside of the second filter frame 812 is filled with filter cotton.

[0060] A plurality of arc ignition heads 813 are fixedly installed on the inner wall of the water suction port 811, and the input ends of the arc ignition heads 813 are electrically connected to the output end of the power supply circuit board 602. At one end of the connecting frame body 2 corresponding to the position of the carrying frame body 1, a second socket 814 is fixedly embedded. A communicating pipe 815 is fixedly embedded at the bottom of the second socket 814, and the communicating pipe 815 is fixedly installed in the middle of the connecting frame body 2. The communicating pipe 815 fixedly penetrates through the connecting frame body 2 and extends to the inside of the position between the two water guide frames 807 corresponding to the second positioning plate 604 and the third positioning plate 605. A first socket 508 is fixedly embedded in the side wall of the carrying frame body 1 corresponding to the position of the second socket 814. A receiving groove is opened at the top of the first sealing cover 3, and a transparent frame 509 is clamped on the inner wall of the receiving groove. The first socket 508 movably penetrates through and extends to the inside of the transparent frame 509. A first filter frame 510 is fixedly installed at one end of the transparent frame 509 corresponding to the position of the first socket 508, and the inside of the first filter frame 510 is filled with filter cotton. Duckbill-shaped one-way valves are provided on the inner walls of the second socket 814 and the first socket 508. A water outlet hole is opened on the side wall of the transparent frame 509. The arc ignition heads 813 are usually in a power-off state and do not conduct electricity even when in contact with water.

[0061] The surfaces of the carrying frame 1 and the connecting frame 2 are both fixedly provided with connecting components. The connecting components include a first receiving tube 901, a second receiving tube 904 and an insertion connecting tube 908. The first receiving tube 901 and the second receiving tube 904 are respectively fixedly installed at both ends of the connecting frame 2. The number of the insertion connecting tubes 908 is two, and the two insertion connecting tubes 908 are respectively fixedly installed at both ends of the carrying frame 1. A rotating arm 902 is movably inserted into the inner wall of the first receiving tube 901, and threaded columns 903 are respectively hinged at both ends of the rotating arm 902. A driving arm 905 is movably inserted into the inner wall of the second positioning plate 604. A second threaded hole 906 is opened at one end of the driving arm 905. Connecting columns 907 are respectively fixedly installed at one ends of the first receiving tube 901 and the second receiving tube 904 corresponding to the insertion connecting tube 908, and the connecting columns 907 are movably inserted into the inner wall of the insertion connecting tube 908. Two solar panels 11 are fixedly provided at the bottom of the connecting frame 2, and one ends of the opposite surfaces of the two solar panels 11 are hinged by a hinge. Installation grooves are respectively opened at the bottoms of the carrying frame 1 and the connecting frame 2. One of the solar panels 11 is fixedly installed on the inner wall of the installation groove at the bottom of the connecting frame 2. Corresponding switches are respectively provided on the sides of the carrying frame 1 and the connecting frame 2. When assembling the carrying frame 1 and the connecting frame 2, the positions of the connecting column 907 and the insertion connecting tube 908, the second electrical contact 603 and the first electrical contact 506, and the second socket 814 and the first socket 508 are made to correspond, and the carrying frame 1 and the connecting frame 2 are relatively moved, so that the connecting column 907 is inserted into the inner wall of the insertion connecting tube 908, the second socket 814 is inserted into the inner wall of the first socket 508, and the second electrical contact 603 and the first electrical contact 506 are electrically connected, thus completing the installation of the carrying frame 1 and the connecting frame 2 in time.

[0062] Working principle: When in use, the invention can generate a WIFI signal through the cooperation of the portable WIFI circuit board 501 and the first battery 504 during normal use. And through the network cable interface 503, the device can convert the wired network into WIFI and also convert WIFI into a wired network, greatly improving the applicable range of the device. By setting the charging and discharging port 502, the charging and discharging port 502 can cooperate with the portable WIFI circuit board 501 to supply power to the first battery 504, and the electrical energy of the first battery 504 can also be used to supply power to other devices through the charging and discharging port 502 in cooperation with the portable WIFI circuit board 501. Since the safety factor of this part is relatively high, it can be used on the plane. The structure inside the connection frame 2 cannot be carried onto the plane. Therefore, before boarding the plane, the part of the connection frame 2 should be sent to the corresponding location first (to adapt to the popularization of this device, corresponding stations will be set up at the airport to provide services for collecting, distributing, repairing or replacing the connection frame 2). When the user gets off the plane, the user will pick up the part of the connection frame 2 at the corresponding local location. Since the carrying frame 1 is provided with the first battery 504, it will not affect the short-term use experience of the user (generally, the user is not allowed to connect to the network on the plane, and there is no network signal at high altitude. Therefore, when boarding the plane, the mobile phone and this device will be shut down according to the regulations on the plane and wait to be turned on after getting off the plane. The time when the carrying frame 1 is separated from the connection frame 2 during use is short, and the power consumption of the first battery 504 is small). Since this multifunctional portable WIFI adopts a split design, that is, the carrying frame 1 and the connection frame 2 can be separated. To get a better signal, the carrying frame 1 can be held by hand and the connection frame 2 can be put into the backpack to reduce the weight of the hand. When assembling the carrying frame 1 and the connection frame 2, the positions of the connection column 907 and the insertion tube 908, the second electrical contact 603 and the first electrical contact 506, and the second socket 814 and the first socket 508 are made to correspond, and the carrying frame 1 and the connection frame 2 are relatively moved, so that the connection column 907 is inserted into the inner wall of the insertion tube 908, the second socket 814 is inserted into the inner wall of the first socket 508, and the second electrical contact 603 and the first electrical contact 506 are electrically connected, that is, the installation of the carrying frame 1 and the connection frame 2 is completed. When the user gets into trouble in the wild and both the first battery 504 and the second battery 601 run out of power, at this time, the rotating arm 902 and the driving arm 905 are respectively taken out from the inner walls of the first receiving tube 901 and the second receiving tube 904, and the threaded column 903 at one end of the rotating arm 902 is threadedly connected to the first threaded hole 703, and the threaded column 903 at the other end of the rotating arm 902 is threadedly connected to the second threaded hole 906, and the rotating arm 902 is made to be in close contact with the driving column 702 and the driving arm 905 respectively, so that the rotating arm 902 is perpendicular to the driving arm 905 and the driving column 702 respectively. At this time, hold the driving arm 905 by hand and shake the rotating arm 902 through the driving arm 905, and make the rotating arm 902 drive the driving column 702 to rotate clockwise.Thus, the driving column 702 drives the driving gear 701 to rotate clockwise. When the driving gear 701 rotates clockwise, the driving gear 701 cooperates with the tooth grooves 801 to drive the first driven gear 705 and the second driven gear 802 to rotate respectively. Since the middle part of the second driven gear 802 is rotationally connected to the surface of the first transmission shaft 803 through a one-way bearing, the counterclockwise rotation of the second driven gear 802 will not drive the first transmission shaft 803 to rotate. When the first driven gear 705 rotates, the first driven gear 705 drives the power generation rotating shaft 706 to rotate through a one-way bearing, and the power generation rotating shaft 706 drives the rotor assembly 707 to cut the magnetic induction lines in the magnetic field of the magnet ring 708, and an induced current is generated in the coil on the surface of the rotor assembly 707. The induced current is transmitted to the power supply circuit board 602 through the brush on the inner wall of the protective tube 709, and the current is sent into the second battery 601 for storage after being boosted by the power supply circuit board 602. Thus, when the user is in trouble, the device can be powered by manual power generation, and the power supply circuit board 602 cooperates with the second electrical contact 603, the first electrical contact 506, the power connection circuit board 507 and the portable WIFI circuit board 501 to supply power to the first battery 504. When the user holds the driving arm 905 and shakes the rotating arm 902 through the driving arm 905 to drive the driving column 702 to rotate counterclockwise, at this time, the driving column 702 drives the first driven gear 705 to rotate clockwise through the driving gear 701. Since the first driven gear 705 is rotationally connected to the surface of the power generation rotating shaft 706 through a one-way bearing, the clockwise rotation of the first driven gear 705 cannot drive the power generation rotating shaft 706 to rotate. At the same time, when the driving gear 701 rotates counterclockwise, it cooperates with the tooth grooves 801 to drive the second driven gear 802 to rotate clockwise, and then the second driven gear 802 cooperates with the one-way bearing to drive the first transmission shaft 803 to rotate clockwise. When the first transmission shaft 803 rotates, the first transmission shaft 803 drives the first gear 804 to rotate, and then the first gear 804 meshes with the second gear 805. By setting the second transmission shaft 806, the first battery 504 and the first positioning plate 505 are meshed more stably. When the first gear 804 and the second gear 805 are meshed, it has the function of conveying the medium inside the two water guide frames 807 to one end of the carrying frame body 1, and then a negative pressure is generated between the positions of the two water guide frames 807 corresponding to the inside of the mounting frame 809. The water suction port 811 is inserted into the water, so that the outside water, under the action of the negative pressure, passes through the water suction port 811 through one end of the second filter frame 812 corresponding to the water suction port 811, and the sucked water is pre-treated under the action of the filter cotton inside one end of the second filter frame 812 corresponding to the water suction port 811. Under the action of the negative pressure, the water enters the inside of the connecting pipe 810 through the second through hole, and the water flow is injected into one end of the second filter frame 812 corresponding to the mounting frame 809 through the first through hole, and the water is filtered again.Afterwards, water enters the interior between the two water guide frames 807 through the third notch and the first notch, and finally passes through the communication pipe 815, cooperates with the second socket 814 and the first socket 508 to enter the interior of the transparent frame 509 under the guidance of the water guide frame 807, and is filtered again by the first filter frame 510 for the filtered water. At this time, the situation of the water can be observed through the transparent frame 509. Since the transparent frame 509 can be detached from the first sealing cover 3, the transparent frame 509 is a consumable, and the user can replace the new transparent frame 509 each time of use. The liquid filtered layer by layer inside the transparent frame 509 can be drunk through the water outlet holes, enabling the user to drink relatively clean water in the wild. By filling the cavity between the second positioning plate 604, the third positioning plate 605, the water guide frame 807 and the partition plate 808 with heat-conducting oil, the heat dissipation of the second battery 601 will be accelerated. At the same time, when there is water inside the transparent frame 509, the heat dissipation of the first battery 504 can also be accelerated. Through the power supply circuit board 602 cooperating with the arc ignition head 813, when the user presses the switches at both ends of the connection frame body 2, the power supply circuit board 602 energizes the arc ignition head 813 and forms an arc to generate high temperature, which can be used to heat an object to obtain a fire source. Through the solar panel 11 at the bottom of the connection frame body 2, after the connection frame body 2 is assembled with the carrying frame body 1, the two connection frame bodies 2 can be laid flat, and the light energy can be converted into electrical energy for storage, providing two power supply methods to increase the applicable range of the device, so as to provide effective help for the user in distress to obtain clean water, obtain a fire source and obtain electrical energy.,

[0063] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variant thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device.

[0064] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A multi-functional portable WIFI, characterized in that: Including: A carrying frame (1) and a connecting frame (2), wherein the carrying frame (1) is movably arranged at one end of the connecting frame (2); A portable WIFI component, which is arranged inside the carrying frame (1) and is used to provide a WIFI network for the user; A backup power supply component, which is arranged inside the connecting frame (2) and is used to provide a backup power supply for the portable WIFI component; A manual power generation component, which is arranged inside the connecting frame (2). The manual power generation component includes a driving gear (701), a driving column (702), a first driven gear (705), a power generation rotating shaft (706), a rotor assembly (707) and a magnet ring (708). By manually driving the driving gear (701), the rotor assembly (707) rotates in the magnet ring (708) to generate electric energy, and the electric energy is stored in the backup power supply component. The middle part of the first driven gear (705) is rotatably connected to the power generation rotating shaft (706) through a one-way bearing; Since the first driven gear (705) is rotatably connected to the surface of the power generation rotating shaft (706) through a one-way bearing, the clockwise rotation of the first driven gear (705) cannot drive the power generation rotating shaft (706) to rotate; A water purification component, which is arranged inside the connecting frame (2) and cooperates with the manual power generation component to absorb and purify sewage. The water purification component includes a tooth groove (801), a second driven gear (802), a first transmission shaft (803), a first gear (804), a second gear (805), a partition plate (808), a water suction port (811) and a second filter frame (812). The inside of the second filter frame (812) is filled with filter cotton. The tooth groove (801) is opened at the bottom of the driving gear (701) and meshes with the second driven gear (802), driving the first transmission shaft (803) to drive the first gear (804) and the second gear (805) to rotate to form a negative pressure, sucking in sewage through the water suction port (811) and filtering it through the second filter frame (812) and then outputting it. The middle part of the second driven gear (802) is rotatably connected to the first transmission shaft (803) through a one-way bearing; Since the middle part of the second driven gear (802) is rotatably connected to the surface of the first transmission shaft (803) through a one-way bearing, the counterclockwise rotation of the second driven gear (802) will not drive the first transmission shaft (803) to rotate.

2. The multi-functional portable WIFI according to claim 1, characterized in that: The portable WIFI component includes a portable WIFI circuit board (501), a charging and discharging port (502), a network cable interface (503), a first battery (504), and a power connection circuit board (507). The portable WIFI circuit board (501) and the first battery (504) are both fixedly connected to the bottom of the inner wall of the carrying frame (1), and the connection end of the first battery (504) is electrically connected to the connection end of the portable WIFI circuit board (501). The input end of the first battery (504) is electrically connected to the output end of the power connection circuit board (507). The charging and discharging port (502) and the network cable interface (503) are fixedly embedded at one end of the carrying frame (1) away from the connection frame (2). The connection end of the charging and discharging port (502) is electrically connected to the connection end of the portable WIFI circuit board (501), and the input end of the network cable interface (503) is electrically connected to the output end of the portable WIFI circuit board (501). A first positioning plate (505) for protecting and positioning the portable WIFI circuit board (501) and the first battery (504) is fixedly connected to the inner wall of the portable WIFI circuit board (501), and the portable WIFI circuit board (501) and the first battery (504) are located at the bottom of the first positioning plate (505). Two first electrical contacts (506) for electrically connecting to the input end of the power connection circuit board (507) are fixedly embedded at one end of the carrying frame (1) corresponding to the connection frame (2). A water-proof and dust-proof sealing ring is fixedly embedded at one end of the carrying frame (1) corresponding to the position of the first electrical contacts (506), and the end of the sealing ring corresponding to the connection frame (2) is of a flared structure.

3. The multi-functional portable WIFI according to claim 2, characterized in that: The backup power supply component includes a second battery (601) and a power supply circuit board (602). The second battery (601) and the power supply circuit board (602) are both fixedly connected to the bottom of the inner wall of the connection frame (2). A second electrical contact (603) is fixedly embedded at one end of the connection frame (2) corresponding to the position of the first electrical contacts (506), and the input end of the second electrical contact (603) is electrically connected to the output end of the power supply circuit board (602). A second positioning plate (604) for protecting and positioning the second battery (601) and the power supply circuit board (602) is fixedly connected to the inner wall of the connection frame (2), and the second battery (601) and the power supply circuit board (602) are located at the bottom of the second positioning plate (604). A third positioning plate (605) is fixedly connected to the inner wall of the connection frame (2), and the third positioning plate (605) is located on top of the second positioning plate (604).

4. The multi-functional portable WIFI according to claim 3, wherein: The top of the carrying frame (1) is fixedly connected with a first sealing cover (3) through a screw, and the portable WIFI component is located between the carrying frame (1) and the first sealing cover (3). The top of the connecting frame (2) is fixedly connected with a second sealing cover (4) through a screw, and the backup power supply component, the manual power generation component and the water purification component are all located between the connecting frame (2) and the second sealing cover (4). Sealing rings for water isolation are respectively provided at the joints of the carrying frame (1) and the first sealing cover (3) and the joints of the connecting frame (2) and the second sealing cover (4).

5. The multifunctional portable WIFI according to claim 4, characterized in that: The driving gear (701) is rotatably connected to the top of the third positioning plate (605). A driving column (702) is fixedly embedded in the middle of the driving gear (701), and the driving column (702) movably penetrates and extends to the top of the second sealing cover (4). A first threaded hole (703) is formed in the middle of one end of the driving column (702) away from the driving gear (701). A first driven gear (705) is meshed with the surface of the driving gear (701). A rotor assembly (707) is fixedly connected to the surface of the middle part of the power generation rotating shaft (706). A magnet ring (708) is rotatably connected to the surface of the rotor assembly (707), and the magnet ring (708) is fixedly embedded in the bottom of the inner wall of the connecting frame (2). A protective tube (709) is fixedly connected to the surface of the magnet ring (708), and the protective tube (709) fixedly penetrates and extends to both ends of the third positioning plate (605) and the second positioning plate (604). An annular groove is formed in the bottom of the first driven gear (705), and the inner wall of the annular groove is movably connected with the surface of the protective tube (709). The inner wall of the protective tube (709) is electrically connected to the surface of the top of the rotor assembly (707) through a brush, and the output end of the protective tube (709) is electrically connected to the input end of the power supply circuit board (602).

6. The multi-functional portable WIFI according to claim 5, characterized in that: A positioning hole is formed in the bottom of the driving column (702), and a positioning column (704) is rotatably connected to the inner wall of the positioning hole, and the positioning column (704) is fixedly connected to the top of the third positioning plate (605).

7. The multifunctional portable WIFI according to claim 6, wherein: The first transmission shaft (803) passes through and extends to both ends of the third positioning plate (605) movably through bearings. One end surface of the first transmission shaft (803) away from the second driven gear (802) is fixedly connected with a first gear (804). A second gear (805) is meshed with the surface of the first gear (804), and both the first gear (804) and the second gear (805) are respectively rotatably connected to the top of the second positioning plate (604). The middle of the second gear (805) is fixedly connected with a second transmission shaft (806), and the second transmission shaft (806) is rotatably connected to the middle of the third positioning plate (605) through a bearing. One end of the opposite surfaces of the second positioning plate (604) and the third positioning plate (605) is fixedly connected with a water guide frame (807) and a partition plate (808). The numbers of both the water guide frame (807) and the partition plate (808) are two. The middle of the partition plate (808) corresponding to the position of the first gear (804) is an arc structure. The first gear (804) and the second gear (805) are located between the two water guide frames (807), and the two partition plates (808) are respectively fixedly connected to the opposite surfaces of the two water guide frames (807). A sealed cavity is formed among the water guide frame (807), the partition plate (808), the second positioning plate (604) and the third positioning plate (605), and the inside of the sealed cavity is filled with heat-conducting oil. A liquid channel is formed among the two partition plates (808), the second positioning plate (604) and the third positioning plate (605).

8. The multifunctional portable WIFI according to claim 7, characterized in that: One end of the second positioning plate (604) and the third positioning plate (605) corresponding to the position of the water guide frame (807) is fixedly connected with a mounting frame (809). A first notch for liquid circulation is opened at the position of the mounting frame (809) corresponding to the middle of the two water guide frames (807). One end of the mounting frame (809) away from the water guide frame (807) is fixedly embedded with a water suction port (811). The inner walls of both the mounting frame (809) and the water suction port (811) are movably connected with a second filter frame (812). A second notch for facilitating the assembly with the second filter frame (812) is opened at the top of the water suction port (811). Connecting pipes (810) are fixedly embedded on the side walls of both the water suction port (811) and the mounting frame (809). A third notch is opened at the position of the second filter frame (812) corresponding to the first notch, and first through holes corresponding to the position of one end of the mounting frame (809) corresponding to the connecting pipe (810) are opened at both ends of the second filter frame (812). Second through holes corresponding to the position of one end of the water suction port (811) corresponding to the connecting pipe (810) are opened at both ends of the second filter frame (812) corresponding to the position of the water suction port (811). One end of the second filter frame (812) corresponding to the position of the water suction port (811) is a mesh structure. Both ends of the second filter frame (812) corresponding to the positions of the water suction port (811) and the mounting frame (809) are not communicated.

9. A multifunctional portable WIFI according to claim 8, characterized in that: The inner wall of the water suction port (811) is fixedly connected with a plurality of arc ignition heads (813), and the input end of the arc ignition head (813) is electrically connected to the output end of the power supply circuit board (602). One end of the connection frame body (2) corresponding to the position of the carrying frame body (1) is fixedly embedded with a second socket (814). The bottom of the second socket (814) is fixedly embedded with a connecting pipe (815), and the connecting pipe (815) is fixedly connected to the middle of the connection frame body (2). The connecting pipe (815) fixedly penetrates through the connection frame body (2) and extends to the inside of the position between the two water guide frames (807) corresponding to the second positioning plate (604) and the third positioning plate (605). One side wall of the carrying frame body (1) corresponding to the position of the second socket (814) is fixedly embedded with a first socket (508). The top of the first sealing cover (3) is provided with a receiving groove, and the inner wall of the receiving groove is clamped with a transparent frame (509). The first socket (508) movably penetrates through and extends to the inside of the transparent frame (509). One end of the transparent frame (509) corresponding to the position of the first socket (508) is fixedly connected with a first filter frame (510), and the inside of the first filter frame (510) is filled with filter cotton. The inner walls of the second socket (814) and the first socket (508) are both provided with duckbill-shaped one-way valves. The side wall of the transparent frame (509) is provided with water outlet holes.

10. A multifunctional portable WIFI according to claim 9, characterized in that: The surfaces of the carrying frame body (1) and the connection frame body (2) are both fixedly provided with connection components. The connection components include a first receiving pipe (901), a second receiving pipe (904) and an insertion pipe (908). The first receiving pipe (901) and the second receiving pipe (904) are respectively fixedly connected to both ends of the connection frame body (2). The number of the insertion pipes (908) is two, and the two insertion pipes (908) are respectively fixedly connected to both ends of the carrying frame body (1). A rotating arm (902) is movably inserted into the inner wall of the first receiving pipe (901), and threaded columns (903) are respectively hinged to both ends of the rotating arm (902). A driving arm (905) is movably inserted into the inner wall of the second positioning plate (604). A second threaded hole (906) is opened at one end of the driving arm (905). One ends of the first receiving pipe (901) and the second receiving pipe (904) corresponding to the position of the insertion pipe (908) are respectively fixedly connected with connection columns (907), and the connection columns (907) are movably inserted into the inner wall of the insertion pipe (908). Two solar panels (11) are fixedly provided at the bottom of the connection frame body (2), and one ends of the opposite surfaces of the two solar panels (11) are hinged through a hinge. Installation grooves are respectively opened at the bottoms of the carrying frame body (1) and the connection frame body (2). One of the solar panels (11) is fixedly connected to the inner wall of the installation groove at the bottom of the connection frame body (2). Corresponding switches are respectively provided on the sides of the carrying frame body (1) and the connection frame body (2).

Citation Information

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