CN219713256U - Switch over-and-under type view light - Google Patents

Switch over-and-under type view light Download PDF

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Publication number
CN219713256U
CN219713256U CN202321028084.0U CN202321028084U CN219713256U CN 219713256 U CN219713256 U CN 219713256U CN 202321028084 U CN202321028084 U CN 202321028084U CN 219713256 U CN219713256 U CN 219713256U
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China
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rotating
lamp
screw
accommodating
lifting column
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CN202321028084.0U
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Chinese (zh)
Inventor
郑道昌
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Sichuan Lishida Intelligent Lighting Technology Co ltd
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Sichuan Lishida Intelligent Lighting Technology Co ltd
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Abstract

The utility model provides a switching lifting type landscape lighting lamp, which comprises: the lighting assembly comprises a lamp bin and a lamp body, wherein one end of the lamp body is provided with an underground bulb, the lower bottom surface of the other end of the lamp body is provided with a road lamp tube, and the outer bottom surface of the lamp bin is provided with a first screw hole and a first rotating stud; the lifting assembly comprises a first lifting column and a second lifting column, wherein the inner bottom surface of the first lifting column is rotatably provided with a first rotary screw rod, the inner bottom surface of the second lifting column is provided with a second rotary screw bolt and a second screw hole, the outer bottom surface of the first lifting column is provided with a second rotary screw rod, and the outer bottom surface of the second lifting column is provided with a third rotary screw rod; the accommodating assembly comprises an accommodating bin and an accommodating column, wherein the inner bottom surface of the accommodating bin is provided with a third rotating stud, a third screw hole and a through hole which are all communicated with the outer bottom surface of the accommodating bin, and the accommodating column is arranged on the outer bottom surface of the accommodating bin. The lamp body structure with the liftable structure is formed by the sectional columns, the accommodating bin is arranged at the bottom of the lamp body structure deeply underground, the switching between the street lamp state and the underground lamp state is realized, and the lamp body structure is suitable for different environments and application scenes.

Description

Switch over-and-under type view light
Technical Field
The utility model relates to the field of lighting devices, in particular to the field of landscape lighting lamps, and particularly relates to a switching lifting park lighting lamp.
Background
Most of the existing landscape lighting lamps are divided into underground lamps and street lamps. When the underground lamp is used as a landscape lamp, the influence on the attractiveness of the landscape is small, and safety accidents caused by collision of pedestrians with the landscape lamp are not easy to occur; but the illumination degree of the underground lamp is limited, and the accumulated water is difficult to prevent from penetrating in the rainstorm weather, the heat exchange area between the underground lamp body and the outside is limited, the heat is difficult to dissipate, and the underground lamp body is easy to damage. The street lamp is used as a landscape lighting lamp, so that the lighting area is wider, and the heat dissipation and water seepage prevention capability is stronger; but the street lamp has larger volume, has influence on the beauty of the landscape, occupies more space and is easy to cause safety accidents.
Disclosure of Invention
In order to solve the defects of the related prior art, the utility model provides a switching lifting type landscape lighting lamp, which adopts a lifting lamp body structure formed by sectional columns, and the bottom of the lamp body structure is provided with a containing bin which is deep underground, so that the switching of a street lamp state and an underground lamp state is realized, and the lamp body structure is suitable for different environments and application scenes.
In order to achieve the above object, the present utility model adopts the following technique:
a switched lift landscape lighting comprising:
the lighting assembly comprises a lamp bin, one side of the lamp bin is provided with a storage groove for accommodating a lamp body, one end of the lamp body is rotatably connected to the inner wall of the storage groove, the end of the lamp body is provided with a buried bulb, the lower bottom surface of the other end of the lamp body is provided with a road lamp tube, the outer bottom surface of the lamp bin is provided with a first screw hole and a first rotating motor, and the first rotating motor is connected with a first rotating stud through a driving shaft;
the lifting assembly comprises a first lifting column and a second lifting column, columnar spaces are formed in the first lifting column, the lamp bin is arranged in the first lifting column in a sliding manner, the first lifting column is arranged in the second lifting column in a sliding manner, a first rotary screw rod is arranged on the inner bottom surface of the first lifting column in a rotating manner, the first rotary screw rod stretches into the first screw hole and is in threaded fit with the first screw hole and the first rotary screw rod, a second rotary motor and a second screw hole penetrating through the outer bottom surface are arranged on the inner bottom surface of the second lifting column, the second rotary motor is connected with the second rotary screw rod through a driving shaft, a second rotary screw rod is arranged on the outer bottom surface of the first lifting column in a rotating manner, the second rotary screw rod stretches into the second screw hole and is in threaded fit with the second screw hole and the second rotary screw rod, and a third rotary screw rod is arranged on the outer bottom surface of the second lifting column in a rotating manner;
the accommodating assembly comprises an accommodating bin and an accommodating column, wherein columnar spaces are reserved in the accommodating bin, a second lifting column is arranged in the accommodating bin in a sliding mode, a third rotating motor is arranged on the bottom surface in the accommodating bin and is connected with a third screw hole and a through hole which are all communicated with the outer bottom surface of the accommodating bin, the third rotating motor is connected with a third rotating stud through a driving shaft, the third rotating screw stretches into the third screw hole and is in threaded fit with the third screw hole and the third rotating stud, a second rotating screw stretches into the through hole, the accommodating column is arranged on the outer bottom surface of the accommodating bin, the inner space of the second lifting column is communicated with the third screw hole and the through hole, and the second rotating screw and the third rotating screw are arranged in the accommodating column in a sliding mode.
Further, the bottom surface is equipped with a storage pole groove under the lamp body, and the inner wall that keeps away from the lamp storehouse in the storage pole groove rotates and is connected with the folding lever, and the folding lever other end is fixed in the axis of rotation motor, and rotation motor is fixed in the storage tank inner wall.
Further, the folding rod comprises two sections of rod bodies, the joint of the rod bodies is in rotary connection, and the rotary motor is used for driving one section of rod body to rotate, so that the other section of rod body under the action of the rotary moment drives the lamp body to rotate.
Further, the lamp body is close to the both sides face of lamp storehouse one end and all is equipped with the pivot, and the pivot other end is connected with the spacing dish, and in the spacing groove in the lamp storehouse was located in the spacing dish rotation, the lamp body revoluted the pivot.
Further, a transparent glass plate is arranged on the top surface of the lamp bin.
Further, the bottom of the inner wall of the lamp body, the bottom of the inner wall of the first lifting column and the bottom of the inner wall of the second lifting column are respectively provided with a drainage groove communicated with the outer wall, and the bottom surface in the accommodating bin is provided with a drainage pipe communicated with the outer bottom surface.
The number of further first screw holes is matched with the first rotary screw rod, the number of second screw holes is matched with the second rotary screw rod and the through holes, the number of third screw holes is matched with the number of third rotary screw rods, and the number of accommodating columns is matched with the sum of the number of third screw holes and the through holes.
The utility model has the beneficial effects that:
1. the switching lifting type lamp body structure is adopted, free expansion and contraction of the multi-section column body are realized by driving the screw rod to rotate through the motor, and the switching of the lamp body in the height state is completed; the underground bulb is installed to lamp body one end, and the road fluorescent tube is installed to the bottom surface under the other end, drives the lamp body to revolve around the pivot through the telescopic link and rotates, accomplishes the switching of lamp body in the irradiation direction, realizes underground lamp state and street lamp state switching, adapts to various environmental change and scene needs.
2. The surface of the lamp post is provided with a drainage groove which penetrates through the inner part and the outer part, the bottom surface of the accommodating bin is provided with a drainage pipe, and when the lamp post rises, accumulated water can be effectively prevented from depositing in the column body.
Drawings
Fig. 1 is a perspective view of an embodiment of the present utility model.
Fig. 2 is a bottom view of an embodiment of the present utility model.
FIG. 3 is a cross-sectional view of the A-A plane of FIG. 2 in accordance with an embodiment of the present utility model.
FIG. 4 is a cross-sectional view of the B-B side of FIG. 2 in accordance with an embodiment of the present utility model.
Fig. 5 is a partial enlarged view of fig. 3 at C according to an embodiment of the present utility model.
Fig. 6 is a partial enlarged view of fig. 4 at D according to an embodiment of the present utility model.
The marks in the figure: 1-lighting device, 11-lamp body, 111-storage pole groove, 112-buried bulb, 113-way fluorescent tube, 12-lamp storehouse, 121-storage tank, 13-glass board, 14-folding pole, 15-rotation motor, 16-pivot, 17-first screw, 18-first rotation double-screw, 19-first rotation motor, 2-lifting assembly, 21-first lifting column, 211-first rotation screw, 22-second lifting column, 221-second rotation screw, 222-second screw, 223-second rotation motor, 224-second rotation double-screw, 3-accommodation assembly, 31-accommodation storehouse, 32-third rotation screw, 33-third rotation double-screw, 34-third rotation motor, 35-third screw, 36-accommodation column, 37-through hole, 41-water drainage groove, 42-drain pipe, 5-wire.
Detailed Description
For the purpose of making the objects, technical solutions and advantages of the embodiments of the present utility model more apparent, the following detailed description of the embodiments of the present utility model will be given with reference to the accompanying drawings, but the described embodiments of the present utility model are some, but not all embodiments of the present utility model.
As shown in fig. 1, the present embodiment provides a switching elevating type landscape lighting lamp, which comprises a lighting assembly 1, an elevating assembly 2 and a containing assembly 3.
Specifically, as shown in fig. 2 and 6, the lighting assembly 1 includes a lamp housing 12, a storage groove 121 for completely accommodating the lamp body 11 is formed on one side of an outer wall thereof, one end of the lamp body 11 opposite to the lamp housing 12 is rotatably connected to an inner wall of the storage groove 121, an underground bulb 112 is mounted at the end, a road lamp 113 is mounted at a lower bottom surface of the other end of the lamp body 11, a first rotating motor 19 and at least one first screw hole 17 are formed at an outer bottom surface of the lamp housing 12, and specifically, in this example, the first rotating motor 19 is buried in a groove at an outer bottom surface of the lamp housing 12 and two first screw holes 17 are formed; the first rotary motor 19 is connected to a first rotary stud 18 via a drive shaft.
Specifically, as shown in fig. 3 to 6, the lifting assembly 2 includes a first lifting column 21 and a second lifting column 22, in which a column space is formed inside the first lifting column 21, and an outer wall of the lamp house 12 is slidably disposed on an inner wall of the first lifting column 21, and an outer wall of the first lifting column 21 is slidably disposed on an inner wall of the second lifting column 22. At least one first rotation screw 211 is rotatably provided to the inner bottom surface of the first elevating column 21, specifically, in this example, two first rotation screws 211 are provided; the first rotary screw 211 extends into the first screw hole 17 and is in threaded engagement with the first screw hole 17 and the first rotary stud 18. The inner bottom surface of the second lifting column 22 is provided with a second rotating motor 223 and at least one second screw hole 222 penetrating to the outer bottom surface, specifically, in this example, the second rotating motor 223 is buried in a groove on the inner bottom surface of the second lifting column 22, and two second screw holes 222 are provided; the second rotating motor 223 is connected to a second rotating stud 224 through a driving shaft. At least one second rotation screw 221 is rotatably provided at the outer bottom surface of the first elevating column 21, specifically, in this example, two second rotation screws 221 are provided; the second rotating screw 221 extends into the second screw hole 222 and is in threaded engagement with the second screw hole 222 and the second rotating stud 224, and at least one third rotating screw 32 is rotatably provided at the outer bottom surface of the second lifting column 22, specifically, in this example, two third rotating screws 32 are provided.
Specifically, as shown in fig. 3 and 4, the accommodating assembly 3 includes an accommodating bin 31 and an accommodating column 36, in which a columnar space is formed, and the outer wall of the second lifting column 22 is slidably disposed on the inner wall of the accommodating bin 31. The inner bottom surface of the accommodating bin 31 is provided with a third rotating motor 34, at least one third screw hole 35 penetrating to the outer bottom surface and at least one through hole 37 penetrating to the outer bottom surface, specifically, in this example, the third rotating motor 34 is buried in a circular groove on the inner bottom surface of the accommodating bin 31, and two third screw holes 35 and two through holes 37 are provided. The third rotating motor 34 is connected with a third rotating stud 33 through a driving shaft, the third rotating screw 32 extends into the third screw hole 35 and is in threaded fit with the third screw hole 35 and the third rotating stud 33, and the second rotating screw 221 extends into the through hole 37. The accommodating column 36 is arranged on the outer bottom surface of the accommodating bin 31, the inner space of the accommodating column is the same as the diameter of the third screw hole 35 and the diameter of the through hole 37, and the outer walls of the rod bodies of the second rotary screw 221 and the third rotary screw 32 are slidably arranged on the inner wall of the accommodating column 36.
Specifically, as shown in fig. 2 and 4, the lamp body 11, the lamp cabin 12, the rotating shaft 16, the first lifting column 21, the second lifting column 22 and the accommodating cabin 31 are all provided with a plurality of wires 5, one part of the wires 5 is used for supplying power to the power utilization assembly, and the other part of the wires 5 is used for controlling the switch of the underground bulb 112 and the street lamp tube 113, the rotation motor 15, the first rotation motor 19, the second rotation motor 223 and the third rotation motor 34. The wire 5 is taken out from the outer bottom surface of the accommodating chamber 31 and connected with external control equipment.
Preferably, as shown in fig. 2, 3 and 6, a rod storage groove 111 is formed on the lower bottom surface of the lamp body 11 and close to the lamp bin 12, a rod body is connected between the side walls of the rod storage groove 111 far away from the lamp bin 12, and a folding rod 14 is rotatably arranged on the rod body; the other end of the folding bar 14 is fixed to a rotation shaft of the rotation motor 15, and the rotation motor 15 is fixed to an inner wall of the storage tank 121.
Preferably, as shown in fig. 1 and 6, the folding bar 14 includes two sections of bars, the joints of the bars are rotationally connected, specifically, in this example, a freely movable stub shaft is penetrated at the joint of the two sections of bars, the bars can rotate around the stub shaft, and the position of the stub shaft moves along with the rotation of the two sections of bars. The rotary motor 15 is used for driving one section of the rod body to rotate, so that the other section of the rod body under the action of the rotary moment drives the lamp body 11 to rotate.
Preferably, as shown in fig. 6, both sides of the lamp body 11, which are close to one end of the lamp cabin 12, are provided with rotating shafts 16, the other end of each rotating shaft 16 is connected with a limiting disc, the limiting disc is rotatably arranged in a limiting groove in the lamp cabin 12, a perforation is arranged between the storage groove 121 and the limiting groove, and the outer wall of each rotating shaft 16 is rotatably arranged on the inner wall of the perforation; inside the rotating shaft, there are buried wires 5 connected to the buried bulb 112 and the street lamp tube 113 on the lamp body 11.
Preferably, as shown in fig. 6, the top surface of the lamp housing 12 is provided with a transparent glass plate 13, which is sized to match the lamp housing 12, for transmitting illumination light of the buried bulb 112 while protecting the buried bulb 112.
Preferably, as shown in fig. 2 and 4, the bottoms of the inner walls of the lamp body 11, the first lifting column 21 and the second lifting column 22 are respectively provided with a drain groove 41 penetrating through to the outer wall, and the inner bottom surface of the accommodating bin 31 is provided with a drain pipe 42 penetrating through to the outer bottom surface, so that the accumulated water is prevented from depositing in the column.
Preferably, as shown in fig. 3 to 6, the number of the first screw holes 17 is matched with the first rotation screw 211, the number of the second screw holes 222 is matched with the second rotation screw 221 and the through hole 37, the number of the third screw holes 35 is matched with the third rotation screw 32, and the number of the receiving posts 36 is matched with the sum of the number of the third screw holes 35 and the through hole 37.
The present example, when applied, may operate as follows:
when the landscape lighting lamp is installed, the accommodating bin 31 and the accommodating column 36 are buried under the ground, so that the top surface of the accommodating bin 31 is flush with the ground; and when the lamp is buried, the top surfaces of the lamp house 12, the first lifting column 21, the second lifting column 22 and the accommodating house 31 are all on the same horizontal plane with the ground.
When the landscape lighting lamp is converted from the ground-buried lamp state to the street lamp state, the control device is started, the first rotating motor 19 drives the first rotating stud 18 to rotate, the first rotating stud 18 drives the first rotating screw 211 to rotate through threaded fit, and the first rotating screw 211 drives the lamp bin 12 to rise to the highest point through threaded fit with the first screw hole 17; meanwhile, the second rotating motor 223 drives the second rotating stud 224 to rotate, the second rotating stud 224 drives the second rotating screw 221 to rotate through threaded cooperation, and the second rotating screw 221 drives the first lifting column 21 to rise to the highest point through threaded cooperation with the second screw hole 222; meanwhile, the third rotating motor 34 drives the third rotating stud 33 to rotate, the third rotating stud 33 drives the third rotating screw 32 to rotate through threaded cooperation, and the third rotating screw 32 drives the second lifting column 22 to rise to the highest point through threaded cooperation with the third screw hole 35. After the column body rises to the highest point, the rotary motor 15 drives one section of rod body of the folding rod 14 to rotate in the direction away from the lamp bin, the other section of rod body of the folding rod 14 drives the lamp body 11 to rotate around the rotary shaft 16 in the direction away from the lamp bin, the rotation is stopped after the rod bodies at the two ends of the folding rod 14 are parallel, the buried lamp 112 is extinguished, and the street lamp tube 113 is lighted.
When the landscape lighting lamp is converted from a street lamp state to a buried lamp state, a control device is started, a first rotating motor 19 drives a first rotating stud 18 to rotate along the other direction, the first rotating stud 18 drives a first rotating screw 211 to rotate through threaded fit, and the first rotating screw 211 drives a lamp bin 12 to descend to the lowest point through threaded fit with a first screw hole 17; meanwhile, the second rotating motor 223 drives the second rotating stud 224 to rotate in the other direction, the second rotating stud 224 drives the second rotating screw 221 to rotate through threaded cooperation, and the second rotating screw 221 drives the first lifting column 21 to descend to the lowest point through threaded cooperation with the second screw hole 222; meanwhile, the third rotating motor 34 drives the third rotating stud 33 to rotate in the other direction, the third rotating stud 33 drives the third rotating screw 32 to rotate through threaded cooperation, and the third rotating screw 32 drives the second lifting column 22 to descend to the lowest point through threaded cooperation with the third screw hole 35. After the column body descends to the lowest point, the rotary motor 15 drives one section of rod body of the folding rod 14 to rotate towards the direction close to the lamp bin, the other section of rod body of the folding rod 14 drives the lamp body 11 to rotate towards the direction close to the lamp bin around the rotary shaft 16, the rotation is stopped after the rod bodies at the two ends of the folding rod 14 are overlapped, the buried lamp bulb 112 is lighted, and the street lamp tube 113 is extinguished.
The above description is only of the preferred embodiments of the present utility model and is not intended to limit the utility model, and it will be apparent to those skilled in the art that various modifications and variations can be made in the present utility model without departing from the spirit and scope of the utility model. Thus, it is intended that the present utility model also include such modifications and alterations insofar as they come within the scope of the appended claims or the equivalents thereof.

Claims (7)

1. A switch over lift landscape lighting lamp, comprising:
the lighting assembly (1) comprises a lamp bin (12), one side of the lamp bin is provided with a storage groove (121) for accommodating a lamp body (11), one end of the lamp body (11) is rotatably connected to the inner wall of the storage groove (121), the end is provided with a buried bulb (112), the lower bottom surface of the other end is provided with a road lamp tube (113), the outer bottom surface of the lamp bin (12) is provided with a first screw hole (17) and a first rotating motor (19), and the first rotating motor (19) is connected with a first rotating stud (18) through a driving shaft;
the lifting assembly (2) comprises a first lifting column (21) and a second lifting column (22), wherein columnar spaces are formed in the first lifting column (21), the lamp bin (12) is arranged in the first lifting column (21) in a sliding mode, the first lifting column (21) is arranged in the second lifting column (22) in a sliding mode, a first rotating screw (211) is arranged on the inner bottom surface of the first lifting column (21) in a rotating mode, the first rotating screw (211) stretches into the first screw hole (17) and is in threaded fit with the first screw hole (17) and the first rotating screw (18), a second rotating motor (223) and a second screw hole (222) penetrating through the outer bottom surface are arranged on the inner bottom surface of the second lifting column (22), a second rotating screw (224) is connected to the second rotating motor (223) through a driving shaft, a second rotating screw (221) is arranged on the outer bottom surface of the first lifting column (21) in a rotating mode, the second rotating screw (221) stretches into the second screw hole (222) and is in threaded fit with the second screw hole (222) and the second rotating screw (224), and a third rotating screw (32) is arranged on the second lifting column (22);
the accommodating assembly (3) comprises an accommodating bin (31) and an accommodating column (36), wherein columnar spaces are reserved in the accommodating bin (31), a second lifting column (22) is slidably arranged in the accommodating bin (31), a third rotating motor (34) and a third screw hole (35) and a through hole (37) which are all communicated with the outer bottom surface are arranged on the inner bottom surface of the accommodating bin (31), the third rotating motor (34) is connected with a third rotating stud (33) through a driving shaft, the third rotating screw (32) stretches into the third screw hole (35) and is in threaded fit with the third screw hole (35) and the third rotating stud (33), the second rotating screw (221) stretches into the through hole (37), the accommodating column (36) is arranged on the outer bottom surface of the accommodating bin (31), the inner space of the accommodating column is communicated with the third screw hole (35) and the through hole (37), and the second rotating screw (221) and the third rotating screw (32) are slidably arranged in the accommodating column (36).
2. The switching lifting landscape lighting lamp according to claim 1, wherein a rod storage groove (111) is formed in the lower bottom surface of the lamp body (11), a folding rod (14) is rotatably connected to the inner wall, far away from the lamp bin (12), of the rod storage groove (111), the other end of the folding rod (14) is fixed on a rotating shaft of a rotating motor (15), and the rotating motor (15) is fixed on the inner wall of the storage groove (121).
3. The switching elevating landscape lighting as claimed in claim 2, wherein the folding bar (14) comprises two bar bodies, the connection parts of the bar bodies are connected in a rotating way, and the rotating motor (15) is used for driving one bar body to rotate, so that the other bar body under the action of the rotating moment drives the lamp body (11) to rotate.
4. A switching lifting type landscape lighting lamp according to claim 3, wherein the two side surfaces of the lamp body (11) close to one end of the lamp cabin (12) are respectively provided with a rotating shaft (16), the other end of the rotating shaft (16) is connected with a limiting disc, the limiting disc is rotatably arranged in a limiting groove in the lamp cabin (12), and the lamp body (11) rotates around the rotating shaft (16).
5. The switching elevating landscape lighting according to claim 1, wherein the top surface of the lamp house (12) is provided with a transparent glass plate (13).
6. The switching lifting type landscape lighting lamp according to claim 1, wherein the bottoms of the inner walls of the lamp body (11), the first lifting column (21) and the second lifting column (22) are respectively provided with a drainage groove (41) penetrating through the outer wall, and the inner bottom surface of the accommodating bin (31) is provided with a drainage pipe (42) penetrating through the outer bottom surface.
7. The switching elevating landscape lighting lamp according to claim 1, wherein the number of the first screw holes (17) is matched with the first rotating screw (211), the number of the second screw holes (222) is matched with the second rotating screw (221) and the through holes (37), the number of the third screw holes (35) is matched with the number of the third rotating screw (32), and the number of the accommodating columns (36) is matched with the sum of the number of the third screw holes (35) and the through holes (37).
CN202321028084.0U 2023-05-04 2023-05-04 Switch over-and-under type view light Active CN219713256U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321028084.0U CN219713256U (en) 2023-05-04 2023-05-04 Switch over-and-under type view light

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321028084.0U CN219713256U (en) 2023-05-04 2023-05-04 Switch over-and-under type view light

Publications (1)

Publication Number Publication Date
CN219713256U true CN219713256U (en) 2023-09-19

Family

ID=87984075

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321028084.0U Active CN219713256U (en) 2023-05-04 2023-05-04 Switch over-and-under type view light

Country Status (1)

Country Link
CN (1) CN219713256U (en)

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