CN216312740U - Hidden solar mobile power supply - Google Patents

Hidden solar mobile power supply Download PDF

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Publication number
CN216312740U
CN216312740U CN202022754250.8U CN202022754250U CN216312740U CN 216312740 U CN216312740 U CN 216312740U CN 202022754250 U CN202022754250 U CN 202022754250U CN 216312740 U CN216312740 U CN 216312740U
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China
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power supply
solar
rotating shaft
charging
shell
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CN202022754250.8U
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Chinese (zh)
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王玉夏
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Individual
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Individual
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/50Photovoltaic [PV] energy

Abstract

The utility model relates to a hidden solar mobile power supply which comprises a power supply main body, a solar component and a rotating shaft component, wherein the power supply main body comprises a power supply shell, the solar component comprises a solar mounting shell and a plurality of solar charging pieces, the solar charging pieces are respectively mounted on the power supply shell and the solar mounting shell, the rotating shaft component comprises a plurality of rotating shaft pieces, the power supply shell and the solar mounting shell can be rotatably and foldingly mounted together through a corresponding rotating shaft piece, each rotating shaft piece comprises a rotating shaft upper part and a rotating shaft lower part, the power supply shell and the solar mounting shell are respectively provided with an axle center at the connecting side edge, and the axle centers are clamped between two ends of the rotating shaft upper part and the rotating shaft lower part. Install a plurality of solar panel respectively on power main part and solar energy installation shell, through pivot spare with solar energy component rotary mounting in the power main part, realize solar energy component's folding installation of hiding.

Description

Hidden solar mobile power supply
Technical Field
The utility model relates to a mobile charging device, in particular to a hidden solar mobile power supply.
Background
The solar storage battery is an application of the storage battery in solar photovoltaic power generation, and four types of currently adopted lead-acid maintenance-free storage batteries, common lead-acid storage batteries, colloid storage batteries and alkaline nickel-cadmium storage batteries are adopted. The solar storage battery widely used at present in China mainly comprises: lead-acid maintenance-free storage batteries and colloid storage batteries are suitable for solar power systems with reliable performance, especially unattended workstations, due to the inherent maintenance-free characteristic and the characteristic of less pollution to the environment.
Some solar mobile power supply charge slower speed, open and folding inconvenience, carry inconvenience, consequently, to above current situation, urgent need develop a charge fast, open and folding convenience, portable's solar mobile power supply to overcome not enough in the current practical application, satisfy current demand.
SUMMERY OF THE UTILITY MODEL
In view of this, a hidden solar mobile power source that can be folded conveniently is needed.
The utility model provides a hidden solar energy portable power source, includes power source, solar energy component and pivot subassembly, the power source includes power supply housing, solar energy component includes solar energy installation shell and a plurality of solar charging spare, and is a plurality of solar charging spare is installed respectively on power supply housing and solar energy installation shell, the pivot subassembly includes a plurality of pivot spares, power supply housing and solar energy installation shell are through corresponding one the pivot spare can be changeed to rotate and install together foldingly, every the pivot spare includes parts under pivot upper part and the pivot, power supply housing and solar energy installation shell are respectively being connected the side and are equipped with the axle center, the axle center clamping is between the both ends of parts under pivot upper part and the pivot.
Further, the power main part still includes charging source, charging source installs in the power casing and connects solar energy component, through solar energy component charges charging source, charging source is as the main part of portable power source charge-discharge.
Furthermore, the solar energy installation shell comprises an installation inner shell and an installation outer shell, and the power supply shell, the installation inner shell and the installation outer shell are connected in series in a rotatable and foldable mode through the rotating shaft piece in sequence.
Further, the solar module also comprises a lighting piece.
Further, installation shell bottom surface is provided with the mounting groove, the illumination piece is installed in the mounting groove and is connected charging power supply and provides the illumination function.
Further, it is a plurality of pivot spare includes first pivot and second pivot, first pivot and second pivot all are provided with in the pivot part with the part under the pivot, in the pivot part with the pivot is the respective both ends of part have half axle center groove respectively down, in the pivot part with the pivot is the half axle center groove combination of part forms closed slotted hole down.
Furthermore, the installation inner shell, the installation outer shell and the power supply outer shell are respectively provided with the axle center at the side edges connected with each other.
Furthermore, the side edges of the power supply shell and the installation shell, which are connected with the installation inner shell, are provided with rotating shaft grooves, the rotating shaft grooves are used for placing rotating shaft pieces, and the rotating shaft grooves in the power supply shell and the installation shell are provided with groove walls, so that the power supply shell and the installation shell can be smoothly folded when being folded.
Further, the axle center sets up and leads to the inslot at pivot groove and pivot, first pivot and second pivot are all rotatably installed on the axle center through closed slotted hole and are placed at pivot groove and pivot and lead to the inslot, will first pivot spare and second pivot spare are installed on installation inner shell and installation shell and power shell.
Furthermore, a plurality of solar charging pieces include three solar charging panels, three solar charging panels are installed respectively on power supply housing, installation inner shell and installation shell, three solar panel converts solar energy when solar energy component expandes and charges for the electric energy.
Further, the power supply main body further comprises a charging connecting wire, the charging connecting wire penetrates through the axis to be installed in the rotating shaft piece, and the charging connecting wire is used for connecting the solar assembly and the charging power supply.
According to the solar mobile power supply, the solar panels are respectively arranged on the power supply main body and the solar mounting shell, the solar assembly is rotatably arranged on the power supply main body through the rotating shaft piece, the solar assembly is folded and hidden, when the mobile power supply is used, the solar mounting shell is unfolded through the rotating shaft piece, the solar assembly and the power supply main body are arranged into a working state, and the solar panels are simultaneously in a using state, so that the mobile power supply is rapidly charged.
Drawings
Fig. 1 is a schematic perspective view of a hidden solar mobile power supply according to an embodiment of the present invention.
Fig. 2 is a schematic perspective view of the embodiment of the present invention with the installation housing removed.
Fig. 3 is a schematic front view of a usage status of a hidden solar mobile power supply according to an embodiment of the present invention.
Fig. 4 is a schematic back side perspective view of a hidden solar mobile power supply according to an embodiment of the present invention.
Fig. 5 is an exploded perspective view of a usage state of a hidden solar mobile power supply according to an embodiment of the present invention.
Detailed Description
The present invention will be described in detail below with reference to specific embodiments and the accompanying drawings.
Referring to fig. 1, fig. 2, fig. 3, fig. 4 and fig. 5, a hidden solar mobile power supply 100 according to an embodiment of the present invention is shown, which includes a power supply main body 10, a solar module 20 and a rotating shaft module 30, the power supply main body 10 includes a power supply housing 11, the solar module 20 includes a solar mounting case 21 and a plurality of solar charging pieces 22, the plurality of solar charging pieces 22 are respectively mounted on the power supply housing 11 and the solar mounting case 21, the rotary shaft assembly 30 includes a plurality of rotary shaft members 30, the power supply housing 11 and the solar mounting case 21 are rotatably and foldably mounted by a corresponding one of the rotary shaft members 30, each rotary shaft member 30 includes a rotary shaft upper part and a rotary shaft lower part, the power supply housing 11 and the solar mounting case 21 have axes, respectively, which are sandwiched between both ends of the upper and lower rotary shaft members.
Specifically, the power supply main body 10 includes the charging power supply 12, the power supply housing 11 is provided with a charging switch 111, a plurality of charging interfaces 112, a charging connection line 113 and a pendant 114, the charging switch 111 is used for switching on and off the charging power supply, the plurality of charging interfaces 112 are used for charging different types of mobile devices, and the pendant 114 is used for fixing the mobile power supply 100.
Specifically, the charging power source 12 is installed in the power source housing 11 and connected to the solar module 20 through the charging connection line 113, so that the charging power source 12 is charged by the electric energy converted by the solar module 20. The charging power supply 12 is used as a main body for charging and discharging the mobile power supply 100, can be used as the mobile power supply 100, and can supply power to other modules in the mobile power supply 100. One of the solar charging elements 22 is mounted in the power supply housing 11 as one of the energy sources of the charging power supply 12.
Preferably, the two surfaces of the power supply housing 11 are respectively provided with the solar charging pieces 22, wherein one surface of the solar charging piece 22 is a face shell, and as the front surface 221 of the whole mobile power supply 100, the front surface 221 is provided with a plurality of indicating pieces, including a power supply capacity indicating lamp and a power supply switch indicating lamp, etc.
Specifically, the solar installation shell 21 includes an installation inner shell 211 and an installation outer shell 212, and the installation inner shell 211 and the installation outer shell 212 are rotatably installed on the installation inner shell 211 through a rotating shaft member 30.
Preferably, the mounting inner case 211 is provided with the solar charging member 22, so that the solar charging member 22 on the mounting inner case 211 can absorb solar energy to supply power when the portable power source 100 is unfolded.
Specifically, the solar module 20 further comprises an illuminating member 23, the mounting housing 212 is provided with a mounting groove 213, and the illuminating member 23 is mounted in the mounting groove 213 and connected to the charging power source 12 to provide an illuminating function. Specifically, the lighting part 23 includes a lamp panel 23, a lighting circuit is arranged in the lamp panel 23, the lamp panel 23 preferably adopts the existing solar lamp panel structure, and this embodiment does not describe this in detail.
Preferably, the other side of the mounting case 212 opposite to the mounting groove 213 is provided with the solar charging member 22, and the side provided with the solar charging member 22 is the rear surface of the entire power supply 100 when folded.
Specifically, the plurality of shaft members 30 includes a first shaft 31 and a second shaft 32.
Specifically, the first shaft 31 includes a first shaft upper member 311 and a first shaft lower member 312, and the second shaft 32 includes a second shaft upper member 321 and a second shaft lower member 322. The first rotating shaft 31 and the second rotating shaft 32 have substantially the same structure and installation manner, and the first rotating shaft 31 is taken as an example in the present embodiment for explanation. The first upper and lower shaft members 311 and 312 have semi-axial slots 313 at both ends, and the mounting inner and outer housings 211 and 212 and the power supply housing 11 are respectively provided with axial centers 13 at the connected side edges, preferably, two axial centers 13 are respectively provided at each connected side edge, and the two axial centers 13 are oppositely arranged. The rotating shaft groove 15 is respectively arranged on each connected side edge, and the two shaft centers 13 are respectively arranged on the groove walls at the two ends of the rotating shaft groove 15. The first upper shaft member 311 and the first lower shaft member 312 are fixed together by a fastener, and the half shaft center grooves 313 of each pair of the first upper shaft member 311 and the first lower shaft member 312 are combined into a closed groove hole for accommodating the shaft center. In the embodiment shown in fig. 5, each end of the first upper rotating shaft part 311 and the first lower rotating shaft part 312 is provided with two half axial slots 313, and the two closed slot holes correspondingly receive the axial centers 13 of the two adjacent housing side edges after being closed. The half axial groove 313 may be a half-hole structure, for example, the end of the first upper shaft member 311 may be a side end plate, and two half-holes may be formed in the side end plate, and the two half-holes may be combined to form two circular holes, so that the axial core 13 may be installed. The first upper part 311 and the first lower part 312 are formed by unwinding an upper cover and a lower cover, which have arch-shaped cross sections, and are combined to form a long box.
Specifically, the plurality of solar charging pieces 22 includes three solar charging plates 22.
Specifically, the three solar charging panels 22 are respectively installed on the power supply housing 11, the installation inner housing 211 and the installation outer housing 212, and convert solar energy into electric energy for charging when the solar module 20 is unfolded. The three solar charging panels 22 are connected through charging connecting wires 113, a central hole 131 is arranged in each shaft center 13, the charging connecting wires 113 penetrate through the central holes 131 of the shaft centers 13 to connect the solar charging panels 22, and the charging connecting wires 113 are hidden inside the first upper rotating shaft part 311 and the first lower rotating shaft part 312 through the shaft centers 13, so that the wires can be hidden.
According to the utility model, the plurality of solar panels 22 are respectively arranged on the power supply main body 10 and the solar installation shell 21, the solar assembly 20 is rotatably arranged on the power supply main body 10 through the rotating shaft member 30, so that the folding and hidden installation of the solar assembly 20 is realized, when the mobile power supply 100 is used, the solar installation shell 21 is unfolded through the rotating shaft member 30, the solar assembly 20 and the power supply main body 10 are arranged in a working state, and the plurality of solar panels 22 are simultaneously in a using state, so that the mobile power supply 100 is rapidly charged.
It should be noted that the present invention is not limited to the above-mentioned embodiments, and other changes and modifications can be made by those skilled in the art according to the spirit of the present invention, and these changes and modifications made according to the spirit of the present invention should be included in the scope of the present invention as claimed.

Claims (9)

1. The hidden solar mobile power supply is characterized by comprising a power supply main body, a solar component and a rotating shaft component, wherein the power supply main body comprises a power supply shell, the solar component comprises a solar installation shell and a plurality of solar charging pieces, the solar charging pieces are respectively installed on the power supply shell and the solar installation shell, the rotating shaft component comprises a plurality of rotating shaft pieces, the power supply shell and the solar installation shell are rotatably and foldingly installed together through one corresponding rotating shaft piece, each rotating shaft piece comprises an upper rotating shaft part and a lower rotating shaft part, the power supply shell and the solar installation shell are respectively provided with an axle center at the connecting side edge, the axle centers are clamped between two ends of the upper rotating shaft part and the lower rotating shaft part, the rotating shaft pieces comprise a first rotating shaft and a second rotating shaft, and the upper rotating shaft part and the lower rotating shaft part are arranged on the first rotating shaft and the second rotating shaft, the two ends of the upper rotating shaft part and the two ends of the lower rotating shaft part are respectively provided with a semi-axis groove, and the semi-axis grooves of the upper rotating shaft part and the lower rotating shaft part are combined to form a closed groove hole.
2. The hidden solar mobile power supply of claim 1, wherein the power supply main body further comprises a charging power supply, the charging power supply is installed in the power supply housing and connected to the solar module, the charging power supply is charged through the solar module, and the charging power supply is used as a main body for charging and discharging the mobile power supply.
3. The hidden solar mobile power supply of claim 2, wherein the solar mounting shell comprises an inner mounting shell and an outer mounting shell, and the power supply shell, the inner mounting shell and the outer mounting shell are connected in series via a rotating shaft member in a rotatable and foldable manner.
4. The hidden solar mobile power supply as claimed in claim 3, wherein the solar module further comprises an illuminating member, the bottom surface of the mounting housing is provided with a mounting groove, and the illuminating member is mounted in the mounting groove and connected to the charging power supply to provide an illuminating function.
5. The hidden solar mobile power supply of claim 4, wherein the mounting inner and outer housings and the power supply outer housing are each provided with the hub at joined side edges.
6. The hidden solar mobile power supply as claimed in claim 5, wherein the power supply housing and the mounting outer housing are provided with a hinge slot at the side edge connecting with the mounting inner housing, the hinge slot is used for placing a hinge member, and the hinge slot on the power supply housing and the mounting outer housing is provided with a slot wall, so that the power supply housing and the mounting outer housing can be folded smoothly when folded.
7. The hidden solar mobile power supply as claimed in claim 6, wherein the shaft is disposed in the shaft slot and the shaft slot, the first and second shafts are rotatably mounted on the shaft through the closed slot and placed in the shaft slot and the shaft slot, and the first and second shafts are mounted on the inner and outer mounting cases and the power supply outer case.
8. The hidden solar mobile power supply as claimed in claim 7, wherein the plurality of solar charging elements comprises three solar charging panels, the three solar charging panels are respectively mounted on the power supply housing, the mounting inner housing and the mounting outer housing, and the three solar charging panels convert solar energy into electric energy for charging when the solar module is unfolded.
9. The hidden solar mobile power supply as claimed in claim 7, wherein the power supply main body further comprises a charging connection line, the charging connection line is installed in the rotating shaft member through the shaft center, and the charging connection line is used for connecting the solar module and the charging power supply.
CN202022754250.8U 2020-11-24 2020-11-24 Hidden solar mobile power supply Active CN216312740U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022754250.8U CN216312740U (en) 2020-11-24 2020-11-24 Hidden solar mobile power supply

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022754250.8U CN216312740U (en) 2020-11-24 2020-11-24 Hidden solar mobile power supply

Publications (1)

Publication Number Publication Date
CN216312740U true CN216312740U (en) 2022-04-15

Family

ID=81080224

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022754250.8U Active CN216312740U (en) 2020-11-24 2020-11-24 Hidden solar mobile power supply

Country Status (1)

Country Link
CN (1) CN216312740U (en)

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