CN222577987U - Portable solar lighting system - Google Patents
Portable solar lighting system Download PDFInfo
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- CN222577987U CN222577987U CN202421447637.0U CN202421447637U CN222577987U CN 222577987 U CN222577987 U CN 222577987U CN 202421447637 U CN202421447637 U CN 202421447637U CN 222577987 U CN222577987 U CN 222577987U
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Abstract
The utility model relates to the technical field of solar illumination and discloses a portable solar illumination system which comprises a storage and charging device, a solar panel connected to the storage and charging device, a charging wire and a plurality of illumination lamps, wherein the storage and charging device is used for storing electric energy converted by the solar panel and supplying power to the illumination lamps and external electronic products connected to the charging wire, magnetic rings are sleeved on the outer ring of a connecting wire of the illumination lamps at equal intervals, and when the storage state is adopted, the connecting wire of the illumination lamps is spirally folded, and the upper and lower adjacent magnetic rings are attracted together to enable the middle of a coil to form a space for accommodating the illumination lamps. The utility model aims to provide a portable solar lighting system which can convert light energy into electric energy for storage and supply power for lighting lamps and electronic equipment, thereby meeting the lighting and electronic equipment charging requirements in the environment without electrifying or with difficult electricity taking, and being convenient to store, transport and carry.
Description
Technical Field
The utility model relates to the technical field of solar illumination, in particular to a portable solar illumination system.
Background
In the areas without power on or power on difficulty and in outdoor exercises or camping, the lighting is a troublesome problem, candles or kerosene lamps are generally adopted as daily lighting tools in the areas without power on or power on difficulty, but harmful gases are discharged when the candles and the kerosene lamps are used, so that human bodies are easy to infect respiratory diseases, while in the outdoor camping, common flashlights, portable lamps and the like are generally adopted for lighting, the lighting is very inconvenient, the problem of insufficient battery endurance and the like exists, and the electronic equipment requiring power on cannot be charged, so that camping is difficult to be happy due to electric anxiety.
Disclosure of utility model
The utility model aims to solve the problems and provide a portable solar lighting system which can convert light energy into electric energy for storage and supply power for a lighting lamp and electronic equipment, thereby meeting the lighting and electronic equipment charging requirements in environments with difficult power taking, and being convenient to store, transport and carry.
In order to solve the technical problems, the portable solar lighting system comprises a storage and charging device, a solar panel connected to the storage and charging device, a charging wire and a plurality of lighting lamps, wherein the storage and charging device is used for storing electric energy converted by the solar panel and supplying power to the lighting lamps and external electronic products connected to the charging wire, magnetic rings are sleeved on the outer ring of connecting wires of the lighting lamps at equal intervals, and when the portable solar lighting system is in a storage state, connecting wires of the lighting lamps are spirally folded, and the upper magnetic rings and the lower magnetic rings are attracted together to enable the middle of the coils to form a space for accommodating the lighting lamps.
As an improvement, store up and fill device and include upper cover, lower cover and set up control circuit board and lithium cell group in the cavity that upper cover and lower cover are constituteed, the upper cover inboard is equipped with the spacing seat of battery, lithium cell group installs in the spacing seat of battery, be equipped with the battery connecting seat on the control circuit board, the connecting terminal of lithium cell group inserts the battery connecting seat, be equipped with charging seat, USB connecting seat and a plurality of lamp stand on the control circuit board, charging hole, discharge hole and lamp stand hole have been seted up respectively with charging seat, USB connecting seat, lamp stand corresponding position on the upper cover.
As an improvement, a switch mounting hole is formed in the upper cover, a switch is mounted in the switch mounting hole, a switch connecting seat is arranged on the control circuit board, and a connecting terminal of the switch is connected to the switch connecting seat in a plugging mode.
As an improvement, be equipped with voltage detection circuit, current detection circuit and a plurality of LED pilot lamp on the control circuit board, the pilot lamp hole has been seted up with the corresponding position of LED pilot lamp on the upper cover, the leaded light post is installed to the upper cover inner chamber, LED pilot lamp is pressed close to the one end of leaded light post, the other end extends to in the pilot lamp hole.
As an improvement, the extending end of the light guide column is a spherical bulge.
As an improvement, at least two positioning columns are arranged on the inner side of the upper cover, and positioning holes are formed in positions, corresponding to the positioning columns, on the light guide columns.
As an improvement, the storage and filling device is provided with a hanging rope, two ends of the top of the upper cover are provided with hooks, two ends of the hanging rope are provided with hanging buckles, the hanging buckles are sleeved on the hooks, and when the lower cover and the upper cover are closed, the free ends of the hooks are closed.
As an improvement, a plurality of studs are arranged in the upper cover, screw holes are formed in positions, corresponding to the studs, of the lower cover, the screw holes are step holes, foot pads are arranged in the screw holes, and the outer sides of the foot pads are higher than the surface of the lower cover after the foot pads are arranged.
As an improvement, the charging wire is a one-to-many charging wire.
By combining the technical scheme, compared with the prior art, the utility model has the following beneficial effects:
The portable solar lighting system provided by the utility model adopts sunlight as an energy source, converts light energy into electric energy through the solar panel and stores the electric energy in the storage device to provide power for the lighting lamp and the electronic equipment, does not generate waste in the use process, does not pollute the environment, has the characteristics of environmental friendliness, can meet the requirements of daily lighting and electronic equipment charging in the environment without electrifying or difficult power taking, and has the advantages of simple and light structure, convenience in carrying and capability of fully meeting the power supply requirements of activities such as outdoor camping and the like. The magnetic rings are sleeved on the outer ring of the connecting wire of the lighting lamp at equal intervals, and the connecting wire of the lighting lamp can be spirally folded when being stored, so that a space for containing the lighting lamp is formed in the middle of the coil, and the lighting lamp is convenient to store, pack and store and transport.
Drawings
Fig. 1 is a schematic structural diagram of a portable solar lighting system according to the present utility model.
Fig. 2 is an exploded view of the storage and charging device according to the present utility model.
Fig. 3 is an exploded view of another view of the storage and filling device according to the present utility model.
Fig. 4 is a schematic view of a connection line of the lighting lamp in the storage state.
The solar energy storage and charging device comprises a 1-storage and charging device, an 11-upper cover, a 111-hook, a 112-switch mounting hole, a 113-indication lamp hole, a 114-charging hole, a 115-discharging hole, a 116-lamp holder hole, a 117-positioning column, a 118-battery limiting seat, 119-studs, a 12-lower cover, a 121-screw hole, 122-foot pads, a 13-switch, a 14-hanging rope, a 141-hanging buckle, a 15-lithium battery pack, a 16-control circuit board, a 161-switch connecting seat, a 162-battery connecting seat, a 163-USB connecting seat, a 164-lamp holder, a 165-charging seat, a 166-LED indication lamp, a 17-light guide column, a 171-spherical protrusion, a 172-positioning hole, a 2-solar panel, a 3-lighting lamp, a 31-lighting lamp connecting wire, a 32-magnetic ring and a 4-charging wire.
Detailed Description
In order to describe the technical features and the achieved objects and effects of the present utility model in detail, the present utility model will be described in further detail with reference to the accompanying drawings and examples. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the scope of the utility model.
Referring to fig. 1-4, a portable solar lighting system includes a storage and charging device 1, a solar panel 2 connected to the storage and charging device 1, a charging line 4 and a plurality of lighting lamps 3, wherein the storage and charging device 1 is used for storing electric energy converted by the solar panel 2 and supplying power to the lighting lamps 3 and external electronic products connected to the charging line 4, magnetic rings 32 are sleeved on outer rings of lighting lamp connecting wires 31 on the lighting lamps 3 at equal intervals, when in a storage state, the lighting lamp connecting wires 31 are spirally folded, and the upper and lower adjacent magnetic rings 32 are attracted together to enable a space for accommodating the lighting lamps 3 to be formed in the middle of the coils. The solar panel 2 is illustratively a polysilicon solar panel.
In the above embodiment, the solar panel 2 converts light energy into electric energy under the illumination condition and then stores the electric energy by the storage and charging device 1, so that a user can arrange the illuminating lamp 3 in a corresponding space as required, and the illuminating lamp can be used as daily illumination or temporary illumination, and the charging wire 4 can be used for being connected to an external electronic product to charge the electronic product, so that the power supply requirement of the electronic product is met. The magnetic rings 32 are sleeved on the outer ring of the lamp connecting wire 31 at equal intervals, so that the lamp 3 can be conveniently stored, when the lamp connecting wire 31 is stored, the lamp connecting wire 31 is spirally folded, the upper and lower adjacent magnetic rings 32 are attached together through the magnetic attraction effect, at the moment, a space for placing the lamp 3 is formed between coils formed by folding the lamp connecting wire 31, and the lamp 3 stored in the mode is more convenient to package and store.
Preferably, the storage and charging device 1 includes an upper cover 11, a lower cover 12, and a control circuit board 16 and a lithium battery pack 15 disposed in a cavity formed by the upper cover 11 and the lower cover 12, a battery limit seat 118 is disposed on the inner side of the upper cover 11, the lithium battery pack 15 is mounted in the battery limit seat 118, a battery connection seat 162 is disposed on the control circuit board 16, a connection terminal of the lithium battery pack 15 is connected to the battery connection seat 162, a charging seat 165, a USB connection seat 163 and a plurality of lamp holders 164 are disposed on the control circuit board 16, and a charging hole 114, a discharging hole 115 and a lamp holder hole 116 are respectively disposed on positions, corresponding to the charging seat 165, the USB connection seat 163 and the lamp holders 164, on the upper cover 11, for example, the lighting lamp 3 is an LED lamp, and a bulb of the lighting lamp 3 is a detachable structure.
In the above embodiment, the USB connector 163 is used to connect the charging wire 4 to charge the external electronic product, the charging socket 165 is used to connect the solar panel 2 or the external power source to charge the lithium battery pack 15, the lamp holder 164 is used to connect the illuminating lamps 3, and the user can access the corresponding number of illuminating lamps 3 according to the requirement.
Preferably, the upper cover 11 is provided with a switch mounting hole 112, the switch mounting hole 112 is internally provided with a switch 13, the control circuit board 16 is provided with a switch connection seat 161, and a connection terminal of the switch 13 is connected to the switch connection seat 161.
In the above embodiment, the storage device 1 may be turned off by the switch 13 when the use is not required or after the charging is completed.
Preferably, the control circuit board 16 is provided with a voltage detection circuit, a current detection circuit (not shown in the figure) and a plurality of LED indicator lamps 166, the position of the upper cover 11 corresponding to the LED indicator lamps 166 is provided with an indicator lamp hole 113, the inner cavity of the upper cover 11 is provided with a light guide column 17, one end of the light guide column 17 is close to the LED indicator lamps 166, and the other end extends into the indicator lamp hole 113.
In the above embodiment, the LED indicator 166 is used to indicate the charge state and the electric quantity of the battery, and the user can see the state of the LED indicator 166 from the indicator hole 113 through the light guiding function of the light guiding column 17.
Preferably, the extending end of the light guiding pillar 17 is a spherical protrusion 171.
In the above embodiment, the spherical protrusion 171 can facilitate the installation of the light guide 17, reduce the difficulty of the installation, and enable the external angle to see the state of the LED indicator 166.
Preferably, at least two positioning posts 117 are disposed on the inner side of the upper cover 11, and positioning holes 172 are formed on the light guiding posts 17 at positions corresponding to the positioning posts 117.
In the above embodiment, the light guide post 17 is installed and positioned in a manner that the positioning post 117 and the positioning hole 172 are matched, which is simple and quick.
Preferably, the storage and filling device 1 is provided with a hanging rope 14, two ends of the top of the upper cover 11 are provided with hooks 111, two ends of the hanging rope 14 are provided with hanging buckles 141, the hanging buckles 141 are sleeved on the hooks 111, and when the lower cover 12 and the upper cover 11 are closed, the free ends of the hooks 111 are closed.
In the above embodiment, the hanging rope 14 can be conveniently placed when the storage and charging device 1 is carried and used, and the hanging rope 14 is simply and quickly installed by arranging the hanging hook 111 on the upper cover 11.
Preferably, a plurality of studs 119 are provided in the upper cover 11, screw holes 121 are provided in positions on the lower cover 12 corresponding to the studs 119, the screw holes 121 are stepped holes, foot pads 122 are mounted in the screw holes 121, and the outer sides of the foot pads 122 are higher than the outer surface of the lower cover 12 after the mounting is completed, and the foot pads are rubber pads.
In the above embodiment, the upper cover 11 and the lower cover 12 are connected and fixed by screws, and the foot pads 122 can close the screw holes 121 to avoid the screw from being exposed, and can play a role in buffering when the storage and filling device 1 is horizontally placed.
Preferably, the charging wire 4 is a one-to-many charging wire, and the external interface of the charging wire 4 includes a USB interface, a Type-C interface, a Micro-B interface, a lighting interface, and a DC interface.
In the above embodiment, the charging wire 4 with one-to-many connection can meet the charging requirements of electronic products with different interfaces.
It should be noted that, in the present disclosure, each embodiment is described in a progressive manner, and each embodiment is mainly described as different from other embodiments, and identical and similar parts between the embodiments are all enough to be referred to each other.
The utility model and its embodiments have been described in detail above, without limitation, and only some of the embodiments of the utility model have been shown in the drawings, without limitation. Those skilled in the art will appreciate that various modifications, adaptations and alternatives may be made without departing from the spirit of the utility model, and these are intended to be within the scope of the utility model.
Claims (9)
1. The portable solar lighting system is characterized by comprising a storage and charging device, a solar panel connected to the storage and charging device, a charging line and a plurality of lighting lamps, wherein the storage and charging device is used for storing electric energy converted by the solar panel and supplying power to the lighting lamps and external electronic products connected to the charging line, magnetic rings are sleeved on the outer ring of connecting wires of the lighting lamps at equal intervals, and when the portable solar lighting system is in a storage state, connecting wires of the lighting lamps are spirally folded, and the upper magnetic rings and the lower magnetic rings are attracted together to enable a space for accommodating the lighting lamps to be formed in the middle of a coil.
2. The portable solar lighting system of claim 1, wherein the charging device comprises an upper cover, a lower cover, a control circuit board and a lithium battery pack, wherein the control circuit board and the lithium battery pack are arranged in a cavity formed by the upper cover and the lower cover, a battery limiting seat is arranged on the inner side of the upper cover, the lithium battery pack is arranged in the battery limiting seat, a battery connecting seat is arranged on the control circuit board, a connecting terminal of the lithium battery pack is connected with the battery connecting seat, a charging seat, a USB connecting seat and a plurality of lamp holders are arranged on the control circuit board, and charging holes, discharging holes and lamp holder holes are respectively formed in positions, corresponding to the charging seat, the USB connecting seat and the lamp holders, of the upper cover.
3. The portable solar lighting system of claim 2, wherein the upper cover is provided with a switch mounting hole, a switch is arranged in the switch mounting hole, the control circuit board is provided with a switch connecting seat, and a connecting terminal of the switch is connected to the switch connecting seat in a plugging manner.
4. The portable solar lighting system of claim 2, wherein the control circuit board is provided with a voltage detection circuit, a current detection circuit and a plurality of LED indicator lamps, an indicator lamp hole is formed in the upper cover at a position corresponding to the LED indicator lamps, a light guide column is arranged in the inner cavity of the upper cover, one end of the light guide column is close to the LED indicator lamps, and the other end of the light guide column extends into the indicator lamp hole.
5. The solar lighting system of claim 4, wherein the extended end of the light guide column is a spherical protrusion.
6. The portable solar lighting system of claim 4, wherein the upper cover is provided with at least two positioning posts on the inner side, and positioning holes are formed in the light guide posts at positions corresponding to the positioning posts.
7. The portable solar lighting system of claim 2, wherein the storage and charging device is provided with a hanging rope, two ends of the top of the upper cover are provided with hooks, two ends of the hanging rope are provided with hanging buckles, the hanging buckles are sleeved on the hooks, and when the lower cover and the upper cover are closed, the free ends of the hooks are closed.
8. The portable solar lighting system of claim 2, wherein the upper cover is internally provided with a plurality of studs, the lower cover is provided with screw holes corresponding to the studs, the screw holes are stepped holes, foot pads are arranged in the screw holes, and the outer sides of the foot pads are higher than the surface of the lower cover after the foot pads are arranged.
9. The solar lighting system of claim 1, wherein the charging cord is a one-to-many charging cord.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202421447637.0U CN222577987U (en) | 2024-06-24 | 2024-06-24 | Portable solar lighting system |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202421447637.0U CN222577987U (en) | 2024-06-24 | 2024-06-24 | Portable solar lighting system |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN222577987U true CN222577987U (en) | 2025-03-07 |
Family
ID=94785543
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202421447637.0U Active CN222577987U (en) | 2024-06-24 | 2024-06-24 | Portable solar lighting system |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN222577987U (en) |
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2024
- 2024-06-24 CN CN202421447637.0U patent/CN222577987U/en active Active
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