Movable portable energy storage standby power device

By introducing photovoltaic conversion and portable components into portable energy storage backup devices, the problems of outdoor power shortages and carrying fatigue are solved, achieving effective energy storage and convenient portability.

CN223540498UActive Publication Date: 2025-11-11JIANGSU ZHONGJUN POWER TECH CO LTD
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Patent Information

Application Number
CN202423065566.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-12
Publication Date
2025-11-11
Estimated Expiration
2034-12-12

AI Technical Summary

Technical Problem

Existing portable energy storage backup devices are prone to running out of power when used outdoors, and are also tiring to carry.

Method used

A device comprising a protective case, an energy storage component, and a portable component was designed. It utilizes a first electric telescopic rod, a torque motor, and a photovoltaic panel to achieve photovoltaic conversion and energy storage. Combined with the design of omnidirectional wheels and the portable component, it is convenient and quick to carry.

Benefits of technology

It enables effective outdoor power storage, avoiding power shortages, and improves portability and efficiency through portable components.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a movable portable energy storage standby power device, which belongs to the technical field of energy storage and comprises a protection box, an energy storage assembly and a portable assembly, the portable assembly comprises a first handle arranged on one side of the protection box, an auxiliary guide rail is arranged at one end of the protection box, and a sliding strip is slidably connected in the auxiliary guide rail. The beneficial effects of the utility model are that the insertion rod moves downwards to slide out from the auxiliary plate and the insertion slot, at the moment, a user pulls the second handle to pull out the sliding strip, the sliding strip moves to make the clamping strip move, when the sliding strip moves to a proper position, the user loosens the pull ring, and the clamping strip can move to the auxiliary plate. When the protection box is used, an inserting rod is reset through rebounding of a spring and then is inserted into an inserting groove to limit a sliding strip, at the moment, a user turns over the protection box and pulls a second handle to be matched with universal wheels, then the protection box is rapidly carried, and therefore the portable purpose is achieved.
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Description

Technical Field

[0001] This utility model belongs to the field of energy storage technology, specifically relating to a mobile and portable energy storage backup power device. Background Technology

[0002] Currently, batteries are widely used in various small portable electronic devices such as mobile communications and laptops. Larger capacity batteries are beginning to be used in transportation, industry, and other applications, showing huge market potential. A search reveals that application number "CN202222258210.3" discloses "a portable energy storage backup device," which describes a configuration of an energy storage backup box, connecting shaft, inverted U-shaped frame, folding tarpaulin, threaded rod, and box cover. The inverted U-shaped frame rotates around the connecting shaft, unfolding the folding tarpaulin and placing it on top of the energy storage backup box. Simultaneously, the threaded rod is adjusted to change its length at the bottom of the energy storage backup box, thus raising the box to a certain height above the ground and preventing the energy storage backup device from being damaged. The enclosure is designed to withstand rain and water immersion, making it more suitable for use in harsh outdoor weather. The retractable U-shaped frame can also be used as a handle for easy lifting and carrying. By rotating the U-shaped frame around the connecting shaft, a folded tarpaulin can be unfolded and placed on top of the energy storage enclosure. Simultaneously, adjusting the length of the threaded rod at the bottom of the enclosure raises it to a certain height above the ground, preventing rain and water immersion and ensuring better usability in harsh outdoor weather. The retractable U-shaped frame also serves as a handle for easy lifting and carrying. However, the above-mentioned comparison document still has the following problems in actual use:

[0003] In practical use, when using electricity outdoors, it is prone to running out of power and cannot store electricity. Furthermore, it can only be carried by lifting it, which can easily cause fatigue for the person carrying it while moving.

[0004] Therefore, providing a device that can store electricity outdoors and is more portable and less tiring is of great practical value. Utility Model Content

[0005] The purpose of this invention is to provide a portable energy storage backup device to solve the aforementioned technical problems.

[0006] This utility model provides a portable energy storage backup device, including a protection box, an energy storage component, and a portable component.

[0007] The protective box has an isolation plate installed in the middle of its inner wall;

[0008] The energy storage assembly includes a battery disposed on one side of an isolation plate. Two first electric telescopic rods are located at the bottom of the inner wall of the protective box. A support plate is located at the top of the two first electric telescopic rods. A torque motor is located at the bottom of the support plate. A connecting box is located through the output shaft of the torque motor and passes through the support plate. Two sliding grooves are formed on one side of the connecting box. A connecting ring is located at the bottom of the connecting box, and the bottom of the connecting ring is rotatably connected to the support plate. A photovoltaic panel is hinged to one side of the connecting box. Two first hinge seats are located on one side of the inner wall of the connecting box. A first connecting block is hinged inside each of the two first hinge seats. A second electric telescopic rod is located on one side of each of the two first connecting blocks. A second connecting block is located on one side of each of the two second electric telescopic rods. A second hinge seat is hinged to one side of each of the two second connecting blocks. A moving block is located on one side of each of the two second hinge seats. One side of each of the two moving blocks is slidably connected to one side of the photovoltaic panel. The outer walls of each of the two moving blocks are slidably connected to the sliding grooves.

[0009] The portable component includes a first handle on one side of the protective case, an auxiliary guide rail at one end of the protective case, a sliding strip slidably connected inside the auxiliary guide rail, a second handle on one side of the sliding strip, a snap-fit ​​strip at one end of the sliding strip, a plurality of slots inside the snap-fit ​​strip, two limiting plates at the bottom of one end of the auxiliary guide rail, a plug rod slidably connected inside the two limiting plates, a limiting ring at the middle of the plug rod, a spring at the bottom of the limiting ring, the bottom of the spring being fixedly connected to one of the limiting plates, an auxiliary plate inserted through the end of the plug rod, and the outer wall of the plug rod being inserted through one of the slots.

[0010] In one embodiment of this utility model, a pull ring is provided at the bottom of the insertion rod.

[0011] In one embodiment of this utility model, a number of casters are provided on the other side of the protective box.

[0012] In one embodiment of this utility model, the top of the protective box is hinged with a protective cover, the top of the protective cover is provided with a pull handle, and the top center of the protective cover is provided with a door lock.

[0013] In one embodiment of this utility model, the protective box is cast from titanium alloy, and the bottom of the protective box is provided with several support legs.

[0014] In one embodiment of this utility model, both the first handle and the second handle are made of polyethylene, and a microcontroller is provided at one corner of the protective box.

[0015] In one embodiment of this utility model, the first electric telescopic rod, the torque motor, and the second electric telescopic rod are all electrically connected to a microcontroller, and the microcontroller is electrically connected to a storage battery.

[0016] Compared with the prior art, the beneficial effects of this utility model are:

[0017] 1) The first electric telescopic rod allows users to easily access the protective box after prolonged use when the battery is low. The box can be tilted and supported by the legs. Users can then open the protective cover using a pull handle and activate the first electric telescopic rod via a microcontroller. This causes the first electric telescopic rod to move upwards, pushing the connecting box out through the support plate and connecting ring. The user can then activate the second electric telescopic rod via the microcontroller, unfolding it and pushing the second hinge seat through the second connecting block. The second hinge seat slides on the photovoltaic panel via a moving block and engages with the first hinge seat, causing the photovoltaic panel to tilt and unfold. The user can then activate the torque motor via the microcontroller, causing the connecting box to rotate, which in turn rotates the photovoltaic panel, adjusting it to a position where sunlight is abundant for photovoltaic conversion. This allows the battery to store electricity, effectively preventing power shortages during outdoor use and thus achieving the energy storage function.

[0018] 2) The first handle allows users to easily lift the protective case for quick transport into a vehicle. When carrying it on foot, pulling the pull ring moves the insert rod downwards, causing it to retract and store force through the limiting ring and spring. The rod then slides out of the auxiliary plate and slot. At this point, pulling the second handle pulls out the sliding bar, which moves the locking strip. When the sliding bar reaches the desired position, releasing the pull ring allows the insert rod to return to its original position via the spring's rebound, then inserts into the slot to limit the sliding bar. The user can then flip the protective case over and pull the second handle to engage the casters for quick and easy transport. Attached Figure Description

[0019] The accompanying drawings are provided to further illustrate the present invention and form part of the specification. They are used together with the embodiments of the present invention to explain the present invention, but do not constitute a limitation thereof. In the drawings:

[0020] Figure 1 This is a schematic diagram of the structure of this utility model;

[0021] Figure 2 This is a cross-sectional view of one side of the present invention;

[0022] Figure 3 This is a schematic diagram of the flipping structure of this utility model;

[0023] Figure 4 This is an enlarged schematic diagram of the spring structure of this utility model.

[0024] In the diagram: 100, protective box; 110, isolation plate; 200, energy storage component; 210, battery; 220, first electric telescopic rod; 230, support plate; 240, torque motor; 250, connecting box; 260, connecting ring; 270, photovoltaic panel; 280, first hinge seat; 290, second electric telescopic rod; 2910, second hinge seat;

[0025] 300. Portable component; 310. First handle; 320. Sliding bar; 330. Second handle; 340. Snap-fit ​​bar; 350. Limiting plate; 360. Insert rod; 370. Limiting ring; 380. Spring; 390. Auxiliary plate; 400. Pull ring;

[0026] 500. Casters;

[0027] 600. Protective cover. Detailed Implementation

[0028] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0029] Example

[0030] Please see Figure 1 - Figure 4 A portable energy storage backup device includes a protection box 100, an energy storage component 200, and a portable component 300.

[0031] Please refer to the details. Figure 1 An isolation plate 110 is provided in the middle of the inner wall of the protective box 100.

[0032] Please see Figure 2The energy storage assembly 200 includes a battery 210 disposed on one side of the isolation plate 110. Two first electric telescopic rods 220 are provided at the bottom of the inner wall of the protective box 100. A support plate 230 is provided at the top of the two first electric telescopic rods 220. A torque motor 240 is provided at the bottom of the support plate 230. A connecting box 250 is provided through the output shaft end of the torque motor 240, penetrating the support plate 230. Two sliding grooves are provided on one side of the connecting box 250. A connecting ring 260 is provided at the bottom of the connecting box 250. The bottom of the connecting ring 260 is rotatably connected to the support plate 230. A photovoltaic panel 270 is hinged to the side. Two first hinge seats 280 are provided on one side of the inner wall of the connecting box 250. A first connecting block is hinged inside each of the two first hinge seats 280. A second electric telescopic rod 290 is provided on one side of each of the two first connecting blocks. A second connecting block is provided on one side of each of the two second electric telescopic rods 290. A second hinge seat 2910 is hinged on one side of each of the two second connecting blocks. A moving block is provided on one side of each of the two moving blocks. One side of each of the two moving blocks is slidably connected to one side of the photovoltaic panel 270. The outer walls of each of the two moving blocks are slidably connected to the sliding groove.

[0033] In one specific embodiment, the first electric telescopic rod 220 allows users to easily access the protective box 100 when the battery is low after prolonged use. The box is tilted and supported by its legs. The user then opens the protective cover 600 using a pull handle and activates the first electric telescopic rod 220 via a microcontroller. This causes the first electric telescopic rod 220 to move upwards, pushing out the connecting box 250 via the support plate 230 and connecting ring 260. The user can then activate the second electric telescopic rod 290 via the microcontroller, unfolding it. The second connecting block pushes the second hinge seat 2910, causing the second hinge seat 2910 to slide on the photovoltaic panel 270 via the moving block and cooperate with the first hinge seat 280, thereby causing the photovoltaic panel 270 to unfold and tilt. At this time, the user turns on the torque motor 240 through the microcontroller, causing the torque motor 240 to drive the connecting box 250 to rotate, which in turn drives the photovoltaic panel 270 to rotate, adjusting the photovoltaic panel 270 to a position where there is sufficient sunlight for photovoltaic conversion, and then storing electricity in the battery 210. This effectively avoids the situation of power shortage when using outdoors, thus realizing energy storage.

[0034] Please see Figure 1 - Figure 4The portable component 300 includes a first handle 310 disposed on one side of the protective case 100. An auxiliary guide rail is disposed at one end of the protective case 100. A sliding strip 320 is slidably connected inside the auxiliary guide rail. A second handle 330 is disposed on one side of the sliding strip 320. A snap-fit ​​strip 340 is disposed at one end of the sliding strip 320. Several slots are opened inside the snap-fit ​​strip 340. Two limiting plates 350 are disposed at the bottom of one end of the auxiliary guide rail. A plug rod 360 is slidably connected inside the two limiting plates 350. A limiting ring 370 is disposed in the middle of the plug rod 360. A spring 380 is disposed at the bottom of the limiting ring 370. The bottom of the spring 380 is fixedly connected to one of the limiting plates 350. An auxiliary plate 390 is inserted through the end of the plug rod 360. The outer wall of the plug rod 360 is inserted through one of the slots.

[0035] In one specific embodiment, the first handle 310 allows the user to easily lift the protective case 100 for quick carrying into a vehicle. When carrying it on foot, the user pulls the pull ring 400, causing the insertion rod 360 to move downwards, which in turn causes the spring 380 to be compressed and stored through the limiting ring 370. The downward movement of the insertion rod 360 will cause it to slide out of the auxiliary plate 390 and the slot. At this time, the user pulls the second handle 330 to pull out the sliding bar 320. The movement of the sliding bar 320 will cause the locking bar 340 to move. When the sliding bar 320 moves to the appropriate position, the user releases the pull ring 400, causing the insertion rod 360 to return to its original position due to the rebound of the spring 380, and then insert it into the slot to limit the sliding bar 320. At this time, the user flips the protective case 100 and pulls the second handle 330 to engage with the caster wheel 500 for quick carrying, thus achieving the purpose of portability.

[0036] Please see Figure 3 The bottom of the 360-degree insertion rod is equipped with a pull ring 400.

[0037] In one specific embodiment, the provided pull ring 400 allows the user to easily pull the insertion rod 360, thereby improving work efficiency.

[0038] Please see Figure 3 On the other side of the protective box 100, there are several casters 500.

[0039] In one specific embodiment, the protective box 100 is provided to protect the internal parts, preventing them from being damaged by bumps during use and improving stability.

[0040] Please see Figure 1 The top of the protective box 100 is hinged to a protective cover 600, the top of the protective cover 600 is provided with a pull handle, and the top center of the protective cover 600 is provided with a door lock.

[0041] In one specific embodiment, a door lock is provided, which allows users to unlock the door with a key and then open the protective cover 600 by pulling a handle, so that users can maintain the parts inside the protective box 100.

[0042] Please see Figure 1 The protective box 100 is made of titanium alloy.

[0043] In one specific embodiment, the titanium alloy provides a convenient way to carry the product, making it easier for users to carry and improving portability.

[0044] Please see Figure 1 The first handle 310 and the second handle 330 are both made of polyethylene, and a microcontroller is installed at one corner of the protective box 100.

[0045] In one specific embodiment, the presence of polyethylene allows the first handle 310 and the second handle 330 to be made more robust by utilizing the durable properties of polyethylene.

[0046] Please see Figure 1 - Figure 4 The first electric telescopic rod 220, the torque motor 240, and the second electric telescopic rod 290 are all electrically connected to the microcontroller, which is electrically connected to the battery 210.

[0047] In one specific embodiment, the provided microcontroller facilitates the power supply control of electrical equipment, enabling the equipment to be powered on when needed, thus avoiding the situation where power cannot be supplied when power is required.

[0048] In use, the first electric telescopic rod 220 allows the user to easily access the protective box 100 when the battery is low after prolonged use. The protective box 100 can be tilted and supported by its legs. The user then opens the protective cover 600 using the handle and activates the first electric telescopic rod 220 via the microcontroller, causing it to move upwards. This, in turn, pushes out the connecting box 250 via the support plate 230 and connecting ring 260. The user then activates the second electric telescopic rod 290 via the microcontroller, allowing the first electric telescopic rod 220 to move upwards. The two electric telescopic rods 290 unfold and push the second hinge seat 2910 through the second connecting block. The second hinge seat 2910 then slides on the photovoltaic panel 270 via a moving block and engages with the first hinge seat 280, causing the photovoltaic panel 270 to unfold and tilt. At this point, the user activates the torque motor 240 via a microcontroller, causing the connecting box 250 to rotate, which in turn rotates the photovoltaic panel 270, adjusting it to a position where sunlight is abundant for photovoltaic conversion. This process then powers the battery 2. 10. Energy storage effectively prevents power shortages during outdoor use, thus achieving the purpose of energy storage. The first handle 310 allows users to easily lift the protective box 100 for quick transport into a vehicle. When carrying it on foot, pulling the pull ring 400 moves the insertion rod 360 downwards, causing it to pass through the limit ring 370 and compress the spring 380 to store energy. The auxiliary plate 390 slides out of the slot. At this time, the user pulls the second handle 330 to pull out the sliding bar 320. Finally, the movement of the sliding bar 320 will cause the locking bar 340 to move. When the sliding bar 320 moves to the appropriate position, the user releases the pull ring 400, so that the insertion rod 360 is reset by the rebound of the spring 380, and then inserted into the slot to limit the sliding bar 320. At this time, the user flips the protective box 100 and pulls the second handle 330 to cooperate with the universal wheel 500, and then quickly carries it.

[0049] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A portable energy storage backup power device, characterized in that, include: A protective box (100) is provided with an isolation plate (110) in the middle of the inner wall of the protective box (100). An energy storage assembly (200) includes a battery (210) disposed on one side of an isolation plate (110). Two first electric telescopic rods (220) are provided at the bottom of the inner wall of the protective box (100). A support plate (230) is provided at the top of the two first electric telescopic rods (220). A torque motor (240) is provided at the bottom of the support plate (230). A connecting box (250) is provided through the output shaft end of the torque motor (240) through the support plate (230). Two sliding grooves are provided on one side of the connecting box (250). A connecting ring (260) is provided at the bottom of the connecting box (250). The bottom of the connecting ring (260) rotates with the support plate (230). The connection is such that a photovoltaic panel (270) is hinged to one side of the connecting box (250), and two first hinge seats (280) are provided on one side of the inner wall of the connecting box (250). A first connecting block is hinged inside each of the two first hinge seats (280). A second electric telescopic rod (290) is provided on one side of each of the two first connecting blocks. A second connecting block is provided on one side of each of the two second electric telescopic rods (290). A second hinge seat (2910) is hinged to one side of each of the two second connecting blocks. A moving block is provided on one side of each of the two moving blocks. A side of each of the two moving blocks is slidably connected to one side of the photovoltaic panel (270). The outer walls of each of the two moving blocks are slidably connected to the sliding groove. A portable component (300) includes a first handle (310) disposed on one side of a protective case (100). An auxiliary guide rail is provided at one end of the protective case (100). A sliding strip (320) is slidably connected inside the auxiliary guide rail. A second handle (330) is provided on one side of the sliding strip (320). A snap-fit ​​strip (340) is provided at one end of the sliding strip (320). Several slots are provided inside the snap-fit ​​strip (340). The auxiliary guide rail... Two limiting plates (350) are provided at the bottom of the end. A plug rod (360) is slidably connected inside the two limiting plates (350). A limiting ring (370) is provided in the middle of the plug rod (360). A spring (380) is provided at the bottom of the limiting ring (370). The bottom of the spring (380) is fixedly connected to one of the limiting plates (350). An auxiliary plate (390) is inserted through the end of the plug rod (360). The outer wall of the plug rod (360) is inserted through one of the slots.

2. The portable energy storage backup power device according to claim 1, characterized in that: The bottom of the insertion rod (360) is provided with a pull ring (400).

3. The portable energy storage backup power device according to claim 1, characterized in that: Several casters (500) are provided on the other side of the protective box (100).

4. A portable energy storage backup power device according to claim 3, characterized in that: The top of the protective box (100) is hinged with a protective cover (600), the top of the protective cover (600) is provided with a handle, and the top center of the protective cover (600) is provided with a door lock.

5. A portable energy storage backup power device according to claim 4, characterized in that: The protective box (100) is made of titanium alloy.

6. A portable energy storage backup power device according to claim 5, characterized in that: The first handle (310) and the second handle (330) are both made of polyethylene, and a microcontroller is provided at one corner of the protective box (100).

7. A portable energy storage backup power device according to claim 1, characterized in that: The first electric telescopic rod (220), the torque motor (240), and the second electric telescopic rod (290) are all electrically connected to a microcontroller, which is electrically connected to a battery (210).

Citation Information

Patent Citations

  • Movable portable energy storage standby power device

    CN217882938U