CN221171885U - Extensible solar lamp - Google Patents

Extensible solar lamp Download PDF

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Publication number
CN221171885U
CN221171885U CN202323310245.8U CN202323310245U CN221171885U CN 221171885 U CN221171885 U CN 221171885U CN 202323310245 U CN202323310245 U CN 202323310245U CN 221171885 U CN221171885 U CN 221171885U
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CN
China
Prior art keywords
assembly
solar panel
solar
lampshade
lamp shade
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Application number
CN202323310245.8U
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Chinese (zh)
Inventor
张雨昕
周红燕
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Foshan Nanhai Liangming Electric Appliance Co ltd
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Foshan Nanhai Liangming Electric Appliance Co ltd
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Priority to CN202323310245.8U priority Critical patent/CN221171885U/en
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Publication of CN221171885U publication Critical patent/CN221171885U/en
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Abstract

The utility model relates to an extensible solar lamp, and belongs to the technical field of solar illumination. A malleable solar lamp, comprising: a lamp shade assembly provided with a receiving cavity; the light source assembly is arranged on the lampshade assembly and is positioned in the accommodating cavity; the solar panel assembly is arranged on the lampshade assembly, the solar panel assembly and the lampshade assembly can be unfolded or stored relatively, and the solar panel assembly is electrically connected with the light source assembly. Through setting up solar panel module on lamp shade subassembly and solar panel module and lamp shade subassembly can expand relatively or accomodate, can be when solar panel module expands and set up on lamp shade subassembly, convert electricity into the light source subassembly and supply power after absorbing solar energy through solar panel module.

Description

Extensible solar lamp
Technical Field
The utility model relates to the technical field of solar illumination, in particular to an extensible solar lamp.
Background
With the aggravation of energy crisis problems, the prices of petroleum and electric power are increased, and meanwhile, the application of solar energy is popularized due to the reduction of the price per watt of a solar panel and the price of an energy storage battery. The solar lamp is an important application direction of solar energy, the solar lamp is powered by a crystalline silicon solar battery, a maintenance-free valve control type sealed storage battery (a colloid battery) stores electric energy, an ultra-bright LED lamp is used as a light source and is controlled by an intelligent charge-discharge controller to replace a traditional electric lighting lamp. The existing solar lamp occupies a large area when in use, and is inconvenient to transport.
Disclosure of utility model
Based on this, it is necessary to provide a scalable solar lamp in order to solve the problem of large occupation area of the solar panel.
A malleable solar lamp, comprising: a lamp shade assembly provided with a receiving cavity; the light source assembly is arranged on the lampshade assembly and is positioned in the accommodating cavity; the solar panel assembly is arranged on the lampshade assembly, the solar panel assembly and the lampshade assembly can be unfolded or stored relatively, and the solar panel assembly is electrically connected with the light source assembly.
The application discloses an extensible solar lamp, which is characterized in that a solar panel assembly is arranged on a lampshade assembly, the solar panel assembly and the lampshade assembly can be unfolded or contained relatively, and when the solar panel assembly is unfolded and arranged on the lampshade assembly, solar energy is absorbed by the solar panel assembly and then converted into electricity to supply power for a light source assembly. When power supply is not needed in overcast days or at night, the storage can be carried out in a rotating or disassembling mode. The solar panel assembly and the lampshade assembly are more convenient to use in cooperation.
In one embodiment, the solar panel assembly is rotatably connected with the lamp shade assembly, and the solar panel assembly can be unfolded or stored relative to the lamp shade assembly when rotating relative to the lamp shade assembly. The solar panel and the lampshade assembly can be rotated relatively when solar power supply is needed, so that the solar panel and the lampshade assembly can be rotated relatively to the sun, and the area is increased in an unfolding state. When the light source assembly is not required to be used for illumination, the solar panel assembly can be in a folded state for storage, and the service life of the solar panel assembly is prolonged.
In one embodiment, the solar panel assembly is detachable from the lamp housing assembly, and when the solar panel assembly is disposed on the lamp housing assembly, the solar panel assembly is unfolded relative to the lamp housing assembly, and when the solar panel assembly is detached from the lamp housing assembly, the solar panel assembly can be stored in the lamp housing assembly. Can assemble solar panel assembly on lamp shade subassembly when need carry out solar energy power supply through solar panel assembly and lamp shade subassembly's removable setting, can realize expanding when solar panel assembly assembles on lamp shade subassembly and carry out solar energy power supply. The solar panel assembly can be detached from the lamp shade assembly for storage when solar power supply is not needed.
In one embodiment, the solar panel assembly is rotatably coupled to the lamp housing assembly, the solar panel assembly is rotatable about the lamp housing assembly and the solar panel assembly is autorotatable. The solar panel assembly can be unfolded through relative rotation of the solar panel assembly and the lampshade assembly, the angle towards the sun can be adjusted through self-transmission of the solar panel assembly, the solar panel assembly can be adjusted relative to the sun through self-transmission of the solar panel assembly through relative rotation of the solar panel assembly and the lampshade assembly, and more efficient solar energy utilization is achieved.
In one embodiment, the solar panel assembly comprises a support plate and a solar panel, the support plate is rotatably connected with the lampshade assembly, a mounting groove is formed in the support plate, and the solar panel is arranged on the support plate and clamped at the mounting groove. Can realize simpler position adjustment through backup pad rotation setting on lamp shade subassembly, can cooperate through mounting groove and solar panel through setting up the mounting groove in the backup pad, carries out quick assembly, and assembly method is simple reliable, promotes solar panel subassembly's production efficiency.
In one embodiment, the support plate comprises a support plate body and a hinge rod, wherein the support plate body is provided with a mounting groove, the solar panel is arranged on the support plate body, the hinge rod is arranged on the support plate body, and the hinge rod is rotatably arranged on the lampshade assembly. Set up the articulated pole through the backup pad body on, can stir the backup pad body when needs rotate through the rotation connection of articulated pole and lamp shade subassembly and can make the articulated pole rotate on lamp shade subassembly, can make the connection simpler through the setting of articulated pole.
In one embodiment, the lamp shade assembly further comprises a locking piece, wherein the locking piece is arranged on the supporting plate and is positioned at the joint of the supporting plate and the lamp shade assembly. The support plate can be positioned after the support plate and the lampshade assembly rotate through the locking piece, and the positioning mode is simple and reliable. The support plate is rotated when solar power supply is needed, and the support plate can be rapidly positioned through the locking piece after the support plate is unfolded.
In one embodiment, the lamp shade assembly comprises a support assembly, a cover assembly and a lamp shade, wherein the cover assembly is arranged on the support assembly, the lamp shade is arranged on the cover assembly, the lamp shade is provided with the accommodating cavity, the light source assembly is arranged on the cover assembly or the lamp shade, and the solar panel assembly is arranged on the cover assembly or the lamp shade. Through the support component with the external structure assembly, can be with the lamp shade stable assembly on the lid subassembly after the lid subassembly is assembled on the support component, can realize stable assembly through the cooperation of support component, lid subassembly and lamp shade. The solar panel assembly can also be more efficiently assembled and supported by the cover assembly or the lamp housing.
In one embodiment, the cover assembly comprises an upper cover, a control box and a hanging hook, the control box is arranged on the upper cover, the lamp shade is arranged on the control box, the hanging hook is arranged on the upper cover and connected with the supporting assembly, the lamp shade is arranged on the control box, and the solar panel assembly is rotatably arranged on the upper cover. Can carry out stable assembly with solar panel subassembly through the upper cover, and the setting of control box can be convenient in the control box structure such as circuit board or battery that the assembly needs can make the use more convenient, protects inside. The hanging hook is arranged to be matched with the supporting component, the hanging hook is positioned and supported through the supporting component, and the hanging hook can be matched with the supporting component more stably.
In one embodiment, the support assembly comprises a back plate, a support rod and a connecting pipe, wherein the support rod is arranged on the back plate, the support rod is matched with the hanging hook, one end of the connecting pipe is connected with the control box body, and one end of the connecting pipe is connected with the back plate. Can carry out stable connection with external structure through the backplate, can realize through the bracing piece and hang the mutually supporting of colluding, support the string and collude, the cooperation mode is simple reliable. The setting through the connecting pipe can be convenient cooperate with the outside with the electricity consumption structure of extensible solar lamp, and the realization mode is simple and reliable.
In one embodiment, the lamp shade comprises a lamp shade support and a panel, the lamp shade support is arranged on the control box body, a plurality of light transmission openings are formed in the lamp shade support, the number of the panels is multiple, and the panels are arranged on the lamp shade support and respectively cover the light transmission openings. The lamp shade support and the control box body are matched for stable assembly, and the panel can be matched for realizing omnibearing light transmission through the arrangement of the plurality of light transmission openings, so that the light transmission efficiency is high.
In one embodiment, the upper cover is provided with a limit groove, two opposite sides of the groove wall of the limit groove are provided with limit holes, the limit holes are matched with the solar panel assembly, and the solar panel assembly is in rotary connection with the upper cover in the limit holes. Through covering, set up the spacing groove to set up spacing hole in the both sides of spacing groove, can carry out spacingly to solar module through the spacing hole of both sides, spacing mode is simple, can carry out quick assembly, and assembly mode is simple reliable.
In one embodiment, the solar panel module further comprises a control assembly, wherein the control assembly is arranged on the lampshade assembly and is electrically connected with the light source assembly and the solar panel assembly. The solar panel module and the light source module can be controlled by the control module, so that the use mode is more convenient, the solar panel module and the light source module can be controlled by the control module according to the needs, and the use reliability is ensured.
In one embodiment, the lamp shade assembly further comprises a motion sensing assembly, wherein the motion sensing assembly is arranged on the lamp shade assembly and is electrically connected with the control assembly. Whether can respond to someone through the action sensing subassembly and be close to, can control the operating condition of light source subassembly through the action sensing subassembly when detecting that the people is close to, can make to use simpler through the action sensing subassembly.
Drawings
FIG. 1 is a first perspective view of a malleable solar light;
FIG. 2 is a second perspective view of the malleable solar light;
FIG. 3 is a third perspective view of the malleable solar light;
FIG. 4 is a first exploded view of the malleable solar light;
FIG. 5 is a second exploded view of the malleable solar light;
FIG. 6 is a perspective view of a solar panel assembly;
fig. 7 is an exploded view of a solar panel assembly.
Wherein, the correspondence between the reference numerals and the component names is:
The lamp shade assembly, the 11 support assembly, the 111 back plate, the 112 support rod, the 113 connecting pipe, the 12 cover assembly, the 121 upper cover, the 122 control box, the 123 hanging hook, the 13 lamp shade, the 131 lamp shade bracket, the 132 panel, the 101 accommodating cavity, the 102 limiting groove and the 103 limiting hole;
2, a light source assembly;
The solar panel comprises a solar panel assembly, a 31 supporting plate, a 311 supporting plate body, a 312 hinging rod, a 32 solar panel, a 33 locking piece and a 301 mounting groove;
4, an action sensing component.
Detailed Description
In order that the above-recited objects, features and advantages of the present application will be more clearly understood, a more particular description of the application will be rendered by reference to the appended drawings and appended detailed description. It should be noted that, without conflict, the embodiments of the present application and features in the embodiments may be combined with each other.
In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present invention, but the present invention may be practiced in other ways than those described herein, and therefore the scope of the present invention is not limited to the specific embodiments disclosed below.
The following describes some embodiments of the scalable solar lamp according to the present invention with reference to the accompanying drawings.
As shown in fig. 1 to 7, the present embodiment discloses a scalable solar lamp, including: a lamp shade assembly 1, the lamp shade assembly 1 being provided with a receiving chamber 101; a light source assembly 2, the light source assembly 2 being disposed on the lamp housing assembly 1 and the light source assembly 2 being located within the receiving cavity 101; the solar panel assembly 3, the solar panel assembly 3 sets up on lamp shade subassembly 1, and solar panel assembly 3 and lamp shade subassembly 1 can expand relatively or accomodate, and solar panel assembly 3 is connected with light source subassembly 2 electricity.
The application discloses a malleable solar lamp, which is characterized in that a solar panel assembly 3 is arranged on a lampshade assembly 1, the solar panel assembly 3 and the lampshade assembly 1 can be unfolded or contained relatively, and when the solar panel assembly 3 is unfolded and arranged on the lampshade assembly 1, solar energy is absorbed by the solar panel assembly 3 and then converted into electricity to supply power for a light source assembly 2. When power supply is not needed in overcast days or at night, the storage can be carried out in a rotating or disassembling mode. The solar panel assembly 3 and the lampshade assembly 1 are matched for use more conveniently.
As shown in fig. 2 and 3, this embodiment further defines, in addition to the features of the above-described embodiment: the solar panel assembly 3 is rotatably connected with the lamp shade assembly 1, and the solar panel assembly 3 can be unfolded or stored relative to the lamp shade assembly 1 when rotating relative to the lamp shade assembly 1. The solar panel 3 and the lampshade assembly 1 can be rotated relatively when solar power supply is needed through the rotary connection between the solar panel assembly 3 and the lampshade assembly 1, so that the solar panel and the lampshade assembly 1 can be opposite to each other, and the area is increased in the unfolded state. When the light source assembly 2 is not required to be used for illumination, the solar panel assembly 3 can be stored in a folded state, and the service life of the solar panel assembly 3 is prolonged.
As shown in fig. 1 and 2, this embodiment further defines, in addition to the features of the above-described embodiment: the solar panel assembly 3 is detachable from the lamp shade assembly 1, when the solar panel assembly 3 is arranged on the lamp shade assembly 1, the solar panel assembly 3 is unfolded relative to the lamp shade assembly 1, and when the solar panel assembly 3 is detached from the lamp shade assembly 1, the solar panel assembly 3 can be stored in the lamp shade assembly 1. The solar panel assembly 3 can be assembled on the lampshade assembly 1 when solar power supply is needed through the detachable arrangement of the solar panel assembly 3 and the lampshade assembly 1, and the solar power supply can be realized by unfolding when the solar panel assembly 3 is assembled on the lampshade assembly 1. The solar panel assembly 3 can be detached from the lamp housing assembly 1 for storage when solar power supply is not required.
As shown in fig. 1 and 2, this embodiment further defines, in addition to the features of the above-described embodiment: the solar panel assembly 3 is rotatably connected with the lampshade assembly 1, the solar panel assembly 3 can rotate around the lampshade assembly 1, and the solar panel assembly 3 can rotate. The solar panel assembly 3 can be unfolded by relatively rotating the solar panel assembly 3 and the solar lampshade assembly 1, the angle towards the sun can be adjusted by self-transmission through the solar panel assembly 3, the solar panel assembly 3 can be adjusted by self-transmission through the solar panel assembly 3 by relatively rotating and matching the solar panel assembly 3 with the solar lampshade assembly 1, and more efficient solar energy utilization can be realized.
As shown in fig. 6 and 7, this embodiment further defines, in addition to the features of the above-described embodiment: the solar panel assembly 3 comprises a supporting plate 31 and a solar panel 32, the supporting plate 31 is rotatably connected with the lampshade assembly 1, the supporting plate 31 is provided with a mounting groove 301, and the solar panel 32 is arranged on the supporting plate 31 and clamped at the mounting groove 301. Can realize simpler position adjustment through backup pad 31 rotation setting on lamp shade subassembly 1, through setting up mounting groove 301 on backup pad 31 and can cooperate with solar panel 32 through mounting groove 301, carry out quick assembly, assembly method is simple reliable, promotes solar panel subassembly 3's production efficiency.
As shown in fig. 6 and 7, this embodiment further defines, in addition to the features of the above-described embodiment: the support plate 31 includes a support plate body 311 and a hinge lever 312, the support plate body 311 is provided with the mounting groove 301, the solar panel 32 is arranged on the support plate body 311, the hinge lever 312 is arranged on the support plate body 311, and the hinge lever 312 is rotatably arranged on the lampshade assembly 1. Set up articulated pole 312 on through backup pad body 311, be connected through articulated pole 312 and the rotation of lamp shade assembly 1 and stir backup pad body 311 when needs rotate and can make articulated pole 312 rotate on lamp shade assembly 1, can make the connection simpler through articulated pole 312's setting.
As shown in fig. 6 and 7, this embodiment further defines, in addition to the features of the above-described embodiment: and a locking member 33, wherein the locking member 33 is arranged on the supporting plate 31 and positioned at the joint of the supporting plate 31 and the lampshade assembly 1. The supporting plate 31 can be positioned after the supporting plate 31 and the lampshade assembly 1 rotate through the locking piece 33, and the positioning mode is simple and reliable. The support plate 31 is rotated when solar power is required, and rapid positioning can be performed by the locking member 33 after deployment.
As shown in fig. 4 and 5, this embodiment further defines, in addition to the features of the above-described embodiment: the lamp shade assembly 1 comprises a support assembly 11, a cover body assembly 12 and a lamp shade 13, wherein the cover body assembly 12 is arranged on the support assembly 11, the lamp shade 13 is arranged on the cover body assembly 12, the lamp shade 13 is provided with a containing cavity 101, the light source assembly 2 is arranged on the cover body assembly 12 or the lamp shade 13, and the solar panel assembly 3 is arranged on the cover body assembly 12 or the lamp shade 13. Through support assembly 11 and external structure assembly, can be with lamp shade 13 stable assembly on lid subassembly 12 after the assembly of lid subassembly 12 on support assembly 11, can realize stable assembly through the cooperation of support assembly 11, lid subassembly 12 and lamp shade 13. The solar panel assembly 3 can also be more efficiently assembled and supported by the cover assembly 12 or the lamp housing 13.
As shown in fig. 4 and 5, this embodiment further defines, in addition to the features of the above-described embodiment: the cover body assembly 12 comprises an upper cover 121, a control box body 122 and a hanging hook 123, the control box body 122 is arranged on the upper cover 121, the lampshade 13 is arranged on the control box body 122, the hanging hook 123 is arranged on the upper cover 121 and connected with the supporting assembly 11, the lampshade 13 is arranged on the control box body 122, and the solar panel assembly 3 is rotatably arranged on the upper cover 121. The solar panel assembly 3 can be stably assembled through the upper cover 121, and the control box 122 can be conveniently assembled with a required circuit board or battery and other structures in the control box 122, so that the solar panel assembly is more convenient to use and can protect the inside. The hanging hook 123 can be matched with the supporting component 11, the hanging hook 123 is positioned and supported by the supporting component 11, and the hanging hook 123 can be matched with the supporting component 11 more stably.
As shown in fig. 4 and 5, this embodiment further defines, in addition to the features of the above-described embodiment: the supporting component 11 comprises a back plate 111, a supporting rod 112 and a connecting pipe 113, wherein the supporting rod 112 is arranged on the back plate 111, the supporting rod 112 is matched with the hanging hook 123, one end of the connecting pipe 113 is connected with the control box 122, and one end of the connecting pipe 113 is connected with the back plate 111. The back plate 111 can be stably connected with an external structure, the supporting rod 112 can be matched with the hanging hook 123, the hanging hook 123 is supported, and the matching mode is simple and reliable. The electricity utilization structure of the extensible solar lamp can be matched with the outside conveniently through the arrangement of the connecting pipe 113, and the implementation mode is simple and reliable.
As shown in fig. 4 and 5, this embodiment further defines, in addition to the features of the above-described embodiment: the lamp shade 13 includes lamp shade support 131 and panel 132, and lamp shade support 131 sets up on control box 122, and a plurality of light-transmitting openings have been seted up to lamp shade support 131, and the quantity of panel 132 is a plurality of, and a plurality of panels 132 set up on lamp shade support 131 and cover respectively and establish in a plurality of light-transmitting openings department. Stable assembly is carried out through the cooperation of lamp shade support 131 and control box 122, and can realize the omnidirectional printing opacity with panel 132 through the setting of a plurality of light-transmitting openings, and printing opacity is efficient.
As shown in fig. 4 and 5, this embodiment further defines, in addition to the features of the above-described embodiment: the upper cover 121 is provided with a limiting groove 102, two opposite sides of the groove wall of the limiting groove 102 are provided with limiting holes 103, the limiting holes 103 are matched with the solar panel assembly 3, and the solar panel assembly 3 is rotatably connected with the upper cover 121 at the limiting holes 103. Set up spacing groove 102 on through upper cover 121 to set up spacing hole 103 in the both sides of spacing groove 102, can carry out spacingly to solar module 3 through the spacing hole of both sides, spacing mode is simple, can carry out quick assembly, and assembly mode is simple reliable.
In addition to the features of the above embodiments, the present embodiment further defines: the solar panel lamp further comprises a control assembly, wherein the control assembly is arranged on the lamp shade assembly 1 and is electrically connected with the light source assembly 2 and the solar panel assembly 3. The solar panel module 3 and the light source module 2 can be controlled by the control module according to the requirement, so that the use mode is more convenient, and the use reliability is ensured.
As shown in fig. 4 and 5, this embodiment further defines, in addition to the features of the above-described embodiment: still include action sensing component 4, action sensing component 4 sets up on lamp shade subassembly 1, and action sensing component 4 is connected with the control assembly electricity. Whether someone approaches can be responded to through the action sensing component 4, the working state of the light source component 2 can be controlled through the action sensing component 4 when the approach of the person is detected, and the use is simpler through the action sensing component 4.
In addition to the features of the above embodiments, the present embodiment further defines: and the solar panel lamp further comprises a battery, wherein the battery is arranged on the lamp shade assembly 1 and is electrically connected with the light source assembly 2 and the solar panel assembly 3. Through the setting of battery can be at the in-process that solar panel subassembly 3 used when solar energy produced more, can reserve unnecessary electric energy through the battery, and the electric energy of reserve can be weaker or at night continue to use, uses more convenient and reliable.
The technical features of the above-described embodiments may be arbitrarily combined, and all possible combinations of the technical features in the above-described embodiments are not described for brevity of description, however, as long as there is no contradiction between the combinations of the technical features, they should be considered as the scope of the description.
The above examples illustrate only a few embodiments of the utility model, which are described in detail and are not to be construed as limiting the scope of the utility model. It should be noted that it will be apparent to those skilled in the art that several variations and modifications can be made without departing from the spirit of the utility model, which are all within the scope of the utility model. Accordingly, the scope of protection of the present utility model is to be determined by the appended claims.

Claims (10)

1. A malleable solar lamp, the malleable solar lamp comprising:
-a canopy assembly (1), the canopy assembly (1) being provided with a receiving cavity (101);
The light source assembly (2) is arranged on the lampshade assembly (1), and the light source assembly (2) is positioned in the accommodating cavity (101);
The solar panel assembly (3), solar panel assembly (3) set up on lamp shade subassembly (1), solar panel assembly (3) with lamp shade subassembly (1) can expand relatively or accomodate, solar panel assembly (3) with light source subassembly (2) electricity is connected.
2. The scalable solar light of claim 1 wherein,
The solar panel assembly (3) is rotationally connected with the lampshade assembly (1), and the solar panel assembly (3) can be unfolded or stored relative to the lampshade assembly (1) when rotating relative to the lampshade assembly (1);
Or solar panel subassembly (3) with lamp shade subassembly (1) is removable, solar panel subassembly (3) set up when on lamp shade subassembly (1), solar panel subassembly (3) are relative lamp shade subassembly (1) are expanded, solar panel subassembly (3) with can accomodate in lamp shade subassembly (1) when lamp shade subassembly (1) is dismantled.
3. The scalable solar light according to claim 1, wherein the solar panel assembly (3) is rotatably connected with the globe assembly (1), the solar panel assembly (3) being rotatable around the globe assembly (1) and the solar panel assembly (3) being autorotatable.
4. The malleable solar light according to claim 1, characterized in that the solar panel assembly (3) comprises a support plate (31) and a solar panel (32), the support plate (31) is rotatably connected with the lamp shade assembly (1), the support plate (31) is provided with a mounting groove (301), and the solar panel (32) is arranged on the support plate (31) and is clamped at the mounting groove (301).
5. The scalable solar light of claim 4,
The solar lamp shade assembly comprises a support plate (31), a solar panel (32) and a lamp shade assembly (1), wherein the support plate (31) comprises a support plate body (311) and a hinging rod (312), the support plate body (311) is provided with a mounting groove (301), the solar panel (32) is arranged on the support plate body (311), the hinging rod (312) is arranged on the support plate body (311), and the hinging rod (312) is rotatably arranged on the lamp shade assembly (1);
And/or further comprises a locking member (33), wherein the locking member (33) is arranged on the supporting plate (31) and is positioned at the joint of the supporting plate (31) and the lampshade assembly (1).
6. The malleable solar light according to claim 1, characterized in that the light shade assembly (1) comprises a support assembly (11), a cover assembly (12) and a light shade (13), the cover assembly (12) being arranged on the support assembly (11), the light shade (13) being arranged on the cover assembly (12), the light shade (13) being provided with the accommodation cavity (101), the light source assembly (2) being arranged on the cover assembly (12) or the light shade (13), the solar panel assembly (3) being arranged on the cover assembly (12) or the light shade (13).
7. The malleable solar light of claim 6, characterized in that the cover assembly (12) comprises an upper cover (121), a control box (122) and a hanging hook (123), the control box (122) is arranged on the upper cover (121), the lampshade (13) is arranged on the control box (122), the hanging hook (123) is arranged on the upper cover (121) and connected with the support assembly (11), the lampshade (13) is arranged on the control box (122), and the solar panel assembly (3) is rotatably arranged on the upper cover (121).
8. The scalable solar light of claim 7,
The support assembly (11) comprises a back plate (111), a support rod (112) and a connecting pipe (113), wherein the support rod (112) is arranged on the back plate (111), the support rod (112) is matched with the hanging hook (123), one end of the connecting pipe (113) is connected with the control box body (122), and one end of the connecting pipe (113) is connected with the back plate (111);
And/or the lampshade (13) comprises a lampshade bracket (131) and a panel (132), wherein the lampshade bracket (131) is arranged on the control box body (122), the lampshade bracket (131) is provided with a plurality of light transmission openings, the panel (132) is a plurality of panels, and the panel (132) is arranged on the lampshade bracket (131) and respectively covers the light transmission openings;
And/or be equipped with spacing groove (102) on upper cover (121), the opposite both sides of the cell wall of spacing groove (102) are equipped with spacing hole (103), spacing hole (103) with solar panel subassembly (3) looks adaptation, solar panel subassembly (3) are in spacing hole (103) are in upper cover (121) rotates to be connected.
9. The scalable solar light of claim 6, further comprising a control assembly disposed on the globe assembly (1), the control assembly electrically connected to the light source assembly (2) and the solar panel assembly (3).
10. The scalable solar light of claim 9,
The lampshade comprises a lampshade body, and is characterized by further comprising a motion sensing assembly (4), wherein the motion sensing assembly (4) is arranged on the lampshade assembly (1), and the motion sensing assembly (4) is electrically connected with the control assembly;
And/or further comprising a battery provided on the lamp shade assembly (1), the battery being electrically connected with the light source assembly (2) and the solar panel assembly (3).
CN202323310245.8U 2023-12-05 2023-12-05 Extensible solar lamp Active CN221171885U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202323310245.8U CN221171885U (en) 2023-12-05 2023-12-05 Extensible solar lamp

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202323310245.8U CN221171885U (en) 2023-12-05 2023-12-05 Extensible solar lamp

Publications (1)

Publication Number Publication Date
CN221171885U true CN221171885U (en) 2024-06-18

Family

ID=91531696

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202323310245.8U Active CN221171885U (en) 2023-12-05 2023-12-05 Extensible solar lamp

Country Status (1)

Country Link
CN (1) CN221171885U (en)

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