CN213872297U - Intelligent Internet of things energy-saving LED lamp - Google Patents

Intelligent Internet of things energy-saving LED lamp Download PDF

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Publication number
CN213872297U
CN213872297U CN202022552438.4U CN202022552438U CN213872297U CN 213872297 U CN213872297 U CN 213872297U CN 202022552438 U CN202022552438 U CN 202022552438U CN 213872297 U CN213872297 U CN 213872297U
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China
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lamp holder
shell
bevel gear
lamp
mesh enclosure
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CN202022552438.4U
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Chinese (zh)
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不公告发明人
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Guangxi Nanning Strait Cailiang Photoelectric Co ltd
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Guangxi Nanning Strait Cailiang Photoelectric Co ltd
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Abstract

The utility model discloses an intelligent energy-saving LED lamp based on the Internet of things, which belongs to the technical field of LED lamps and comprises a shell, a mesh enclosure and a lamp holder, wherein the mesh enclosure is fixed on the periphery of the lower surface of the shell, the lamp holder is positioned below the inner part of the mesh enclosure, a chute is arranged in the middle of the inner part of the shell, a rack is connected in the chute in a sliding way, a first bevel gear is rotationally connected below the right side of the inner part of the shell, a motor is arranged on the right side of the first bevel gear, and a second bevel gear is rotationally connected at the left end of the motor; the beneficial effects of the utility model reside in that: can drive the lamp holder through motor, second bevel gear, first bevel gear and rack and reciprocate for two kinds of states outside the screen panel are stretched out in the lamp holder realization and the screen panel of withdrawal, and the lamp holder is floodlighting when stretching out, realizes spotlight illumination through the bowl during the lamp holder withdrawal, can in time spill the inside heat of screen panel through cooling tube and fan, avoids the overheated damage of lamp holder.

Description

Intelligent Internet of things energy-saving LED lamp
Technical Field
The utility model belongs to the technical field of the LED lamp technique and specifically relates to an energy-conserving LED lamp of intelligence thing networking is related to.
Background
The internet of things is a main trend of the development of current information technology and is also an important development stage in the information era, and objects are connected through the internet to exchange and communicate information, so that people can better control the objects and make the objects and the objects feel interesting. The development of new high-efficiency light sources, especially white light sources (suitable for general lighting), is important for greatly reducing the power consumption of lighting, because it can reduce the increase rate of power consumption, further reduce the cost of newly added power grid capacity, reduce energy consumption and reduce greenhouse gases and other pollutants discharged into the atmosphere. LEDs, especially white light LEDs, are favored by a wide range of professionals because of their theoretical and realistic advantages over conventional light sources. The illumination function and the form of the existing intelligent Internet-of-things energy-saving LED lamp are single, the lamp holder is not protected to some extent, the lamp holder is broken when meeting hard objects, the lamp tube can also generate heat when the lamp tube shines, and the danger of the overheat explosion of the lamp tube can be caused if the heat is not emitted in time.
SUMMERY OF THE UTILITY MODEL
The utility model aims at the problem that above-mentioned exists and not enough, provide an energy-conserving LED lamp of intelligence thing networking, it passes through the motor, second bevel gear, first bevel gear and rack can drive the lamp holder and reciprocate, make the lamp holder realize stretching out the screen panel outward and two kinds of states in the retraction screen panel, be floodlighting when the lamp holder stretches out, realize spotlight through the bowl during the lamp holder retraction, can in time spill the inside heat of screen panel through cooling tube and fan, avoid the overheated damage of lamp holder.
In order to achieve the purpose, the adopted technical scheme is as follows:
an intelligent Internet of things energy-saving LED lamp comprises a shell, a mesh enclosure and a lamp holder, wherein the mesh enclosure is fixed on the periphery of the lower surface of the shell, the lamp holder is positioned below the inner part of the mesh enclosure, a sliding groove is formed in the middle of the inner part of the shell, a rack is connected in the sliding groove in a sliding mode, a first bevel gear is connected to the right lower part of the inner part of the shell in a rotating mode, a motor is arranged on the right side of the first bevel gear, the left end of the motor is connected with a second bevel gear in a rotating mode, a radiating pipe is embedded into the left lower part of the inner part of the shell, and a fan is installed inside the radiating pipe;
a reflector is bonded on the lower surface of the shell and positioned above the inside of the mesh enclosure, a spring tube is fixed between the lower surface of the reflector and the lamp holder, a controller is embedded in the upper left part of the inside of the shell, a storage battery is embedded in the upper right part of the inside of the shell, and a heat sensor is fixedly installed on the lower surface of the reflector and positioned in the spring tube;
the lamp holder is characterized in that a lampshade is fixed below the lamp holder, a mounting seat is embedded into the lower portion of the interior of the lamp holder, a lamp holder is fixed on the lower surface of the mounting seat through bolts, and a plurality of lamp tubes are inserted into the lower surface of the lamp holder.
Preferably, the cross section of the mesh enclosure is arc-shaped, the mesh enclosure is woven by steel wires, and the lower end of the mesh enclosure is provided with lamp holes which are communicated with each other inside and outside.
Preferably, the outer wall and the front surface of the first bevel gear are both provided with gear teeth, and the first bevel gear is meshed with the rack and the second bevel gear respectively.
Preferably, the cooling tube is the type of falling L, just the cooling tube lower extreme passes through the bowl lower surface, the cooling tube left end passes through out the shell surface.
Preferably, the rack is located inside the spring tube, and the lower end of the rack is fixedly connected with the lamp holder.
Preferably, the inner diameter of the lamp hole is larger than the outer diameter of the lamp cap.
Preferably, a plurality of the fluorescent tube is the notch cuttype setting, is located in the middle of the lamp stand fluorescent tube length is the longest, is located the lamp stand edge fluorescent tube length is the shortest.
By adopting the technical scheme, the beneficial effects are as follows:
1. the lamp cap can be driven to move up and down through the motor, the second bevel gear, the first bevel gear and the rack, so that the lamp cap can be extended out of the mesh enclosure and retracted into the mesh enclosure, floodlighting is achieved when the lamp cap is extended out, spotlighting is achieved through the reflecting cover when the lamp cap is retracted, and after the lamp cap is retracted into the mesh enclosure, the mesh enclosure can well protect the lamp cap, and the lamp cap is prevented from being smashed by hard objects;
2. the heat sensor senses that the temperature in the screen panel is too high, can in time spill the inside heat of screen panel through cooling tube and fan, avoids the overheated damage of lamp holder.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings of the embodiments of the present invention will be briefly described below. The drawings are intended to depict only some embodiments of the invention, and not all embodiments of the invention are limited thereto.
Fig. 1 is a schematic view of an overall front view section lamp holder extension structure of the present invention;
fig. 2 is a schematic view of the overall front view section lamp head retraction structure of the present invention;
fig. 3 is a schematic view of the overall bottom plan structure of the present invention;
fig. 4 is a schematic view of the sectional structure of the lamp holder in front view;
fig. 5 is a schematic view of the bottom plan structure of the lamp holder of the present invention.
The labels in the figure are: a housing 1; a mesh enclosure 2; a lamp cap 3; a chute 4; a rack 5; a first bevel gear 6; a second bevel gear 7; an electric motor 8; a radiating pipe 9; a fan 10; a reflection cover 11; a spring tube 12; a controller 13; a storage battery 14; a thermal sensor 15; a lamp hole 16; a lamp cover 17; a mounting seat 18; a lamp base 19; a lamp tube 20.
Detailed Description
In order to make the purpose, technical features and technical effects of the technical solution of the present invention clearer, the drawings of the embodiments of the present invention are combined together, and the example solution of the embodiments of the present invention is clearly and completely described.
Referring to fig. 1 to 5, the utility model relates to an energy-conserving LED lamp of intelligence thing networking, including shell 1, screen panel 2 and lamp holder 3, screen panel 2 is fixed in the periphery of the lower surface of shell 1, lamp holder 3 is located below the inside of screen panel 2, the middle of the inside of shell 1 is opened has spout 4, and sliding connection has rack 5 in spout 4, the inside right side below of shell 1 is rotated and is connected with first bevel gear 6, the right side of first bevel gear 6 is equipped with motor 8, the left end of motor 8 is rotated and is connected with second bevel gear 7, the inside left side below of shell 1 is embedded with cooling tube 9, fan 10 is installed to cooling tube 9;
a reflector 11 is bonded on the lower surface of the shell 1 and positioned above the inside of the mesh enclosure 2, a spring tube 12 is fixed between the lower surface of the reflector 11 and the lamp holder 3, a controller 13 is embedded in the left upper part of the inside of the shell 1, a storage battery 14 is embedded in the right upper part of the inside of the shell 1, and a thermal sensor 15 is fixedly arranged on the lower surface of the reflector 11 and positioned in the spring tube 12;
a lampshade 17 is fixed below the lamp holder 3, a mounting seat 18 is embedded into the inner lower part of the lamp holder 3, a lamp holder 19 is fixed on the lower surface of the mounting seat 18 through bolts, and a plurality of lamp tubes 20 are inserted into the lower surface of the lamp holder 19.
The cross section of the mesh enclosure 2 is arc-shaped, the mesh enclosure 2 is woven by steel wires, the lower end of the mesh enclosure 2 is provided with a lamp hole 16 which is communicated with the inside and the outside, the outer wall and the front surface of a first bevel gear 6 are provided with gear teeth, the first bevel gear 6 is respectively meshed with a rack 5 and a second bevel gear 7, a radiating pipe 9 is inverted L-shaped, the lower end of the radiating pipe 9 penetrates through the lower surface of a reflector 11, the left end of the radiating pipe 9 penetrates through the outer surface of a shell 1, the rack 5 is positioned inside a spring pipe 12, the lower end of the rack 5 is fixedly connected with a lamp holder 3, the inner diameter of the lamp hole 16 is larger than the outer diameter of the lamp holder 3, a plurality of lamp tubes 20 are arranged in a step shape, the length of the lamp tube 20 positioned in the middle of a lamp holder 19 is longest, and the length of the lamp tube 20 positioned at the edge of the lamp holder 19 is shortest;
specifically, the motor 8, the fan 10, the controller 13 and the thermal sensor 15 are electrically connected with the storage battery 14 through wires, the storage battery 14 is charged by mains supply, the storage battery 14 can independently supply power to the whole LED lamp after charging, the operation is very convenient, the fan 10 and the thermal sensor 15 are respectively in signal connection with the controller 13, the controller 13 is used for receiving a sensing signal of the thermal sensor 15 and outputting the sensing signal as a control signal, so that the fan 10 is started, a Bluetooth and a Wifi receiver are further arranged inside the controller 13, intelligent physical connection of the LED lamp is facilitated, and a user can conveniently control the LED lamp through a mobile phone;
further, a user starts the motor 8, the motor 8 drives the second bevel gear 7 to rotate, the second bevel gear 7 drives the first bevel gear 6 to rotate, the first bevel gear 6 drives the rack 5 to move up and down, when the rack 5 moves downwards, the lamp holder 3 moves downwards along with the rack 5, at the moment, the spring tube 12 stretches, the lamp holder 3 penetrates through the lamp hole 16 to extend out of the mesh enclosure 2, the lamp tube 20 emits light to achieve flood lighting, the lighting area is large and suitable for indoor flood lighting, when the rack 5 moves upwards, the lamp holder 3 moves upwards along with the rack 5, at the moment, the spring tube 12 contracts, the lamp holder 3 penetrates through the lamp hole 16 to retract into the mesh enclosure 2, the light emitted by the lamp tube 20 is reflected by the reflecting cover 11 and then vertically downwards emitted from the lamp hole 16, the principle similar to flashlight is utilized to achieve centralized lighting, the local lighting is high in luminance and suitable for outdoor spot lighting, and the motor 8 is used for outdoor spot lighting, The second bevel gear 7, the first bevel gear 6 and the rack 5 can drive the lamp holder 3 to move up and down, so that the lamp holder 3 can extend out of the mesh enclosure 2 and retract into the mesh enclosure 2, floodlighting is achieved when the lamp holder 3 extends out, spotlighting is achieved through the reflecting cover 11 when the lamp holder 3 retracts, and after the lamp holder 3 retracts into the mesh enclosure 2, the mesh enclosure 2 can well protect the lamp holder 3 and prevent the lamp holder 3 from being smashed by hard objects;
further, the heat sensor 15 is provided with a conductor resistor inside, the resistance of the resistor changes along with the temperature change, when the temperature in the mesh enclosure 2 rises, the resistance of the resistor increases, when the resistance of the resistor increases to a threshold value, the heat sensor 15 sends a heat signal to the controller 13, the controller 13 controls the fan 10 to start, the hot air in the mesh enclosure 2 is discharged to the outside through the radiating pipe 9 through the fan 10, the mesh enclosure 2 plays an auxiliary radiating effect due to the porous characteristic of the mesh enclosure 2, the lamp holder 3 is prevented from being damaged due to overheating, and the service life of the lamp tube 20 is prolonged.
Unless otherwise defined, technical or scientific terms used in the present embodiments should have the ordinary meaning as understood by those having ordinary skill in the art to which the present invention belongs.
Exemplary embodiments of the present invention have been described in detail with reference to the preferred embodiments, however, it will be understood by those skilled in the art that various modifications and changes may be made to the above specific embodiments without departing from the scope of the present invention, and various combinations of the technical features and structures of the present invention may be implemented without departing from the scope of the present invention, which is defined by the appended claims.

Claims (7)

1. The utility model provides an energy-conserving LED lamp of intelligence thing networking, includes shell (1), screen panel (2) and lamp holder (3), screen panel (2) are fixed in shell (1) lower surface is peripheral, lamp holder (3) are located screen panel (2) inside below, its characterized in that:
a sliding groove (4) is formed in the middle inside the shell (1), a rack (5) is connected in the sliding groove (4) in a sliding mode, a first bevel gear (6) is connected to the lower right inside the shell (1) in a rotating mode, a motor (8) is arranged on the right side of the first bevel gear (6), a second bevel gear (7) is connected to the left end of the motor (8) in a rotating mode, a radiating pipe (9) is embedded into the lower left inside the shell (1), and a fan (10) is installed inside the radiating pipe (9);
a reflecting cover (11) is bonded on the lower surface of the shell (1) and positioned above the inner part of the mesh enclosure (2), a spring tube (12) is fixed between the lower surface of the reflecting cover (11) and the lamp holder (3), a controller (13) is embedded in the left upper part of the inner part of the shell (1), a storage battery (14) is embedded in the right upper part of the inner part of the shell (1), and a heat sensor (15) is fixedly arranged on the lower surface of the reflecting cover (11) and positioned in the spring tube (12);
a lampshade (17) is fixed below the lamp holder (3), a mounting seat (18) is embedded into the inner lower portion of the lamp holder (3), a lamp holder (19) is fixed on the lower surface of the mounting seat (18) through bolts, and a plurality of lamp tubes (20) are inserted into the lower surface of the lamp holder (19).
2. The intelligent Internet of things energy-saving LED lamp according to claim 1, characterized in that: the cross section of the mesh enclosure (2) is arc-shaped, the mesh enclosure (2) is woven by steel wires, and the lower end of the mesh enclosure (2) is provided with lamp holes (16) which are communicated with each other inside and outside.
3. The intelligent Internet of things energy-saving LED lamp according to claim 1, characterized in that: the outer wall and the front surface of the first bevel gear (6) are both provided with gear teeth, and the first bevel gear (6) is meshed with the rack (5) and the second bevel gear (7) respectively.
4. The intelligent Internet of things energy-saving LED lamp according to claim 1, characterized in that: the radiating pipe (9) is the type of falling L, just radiating pipe (9) lower extreme runs through out reflector (11) lower surface, radiating pipe (9) left end runs through out shell (1) surface.
5. The intelligent Internet of things energy-saving LED lamp according to claim 1, characterized in that: the rack (5) is positioned inside the spring tube (12), and the lower end of the rack (5) is fixedly connected with the lamp holder (3).
6. The intelligent Internet of things energy-saving LED lamp according to claim 2, characterized in that: the inner diameter of the lamp hole (16) is larger than the outer diameter of the lamp holder (3).
7. The intelligent Internet of things energy-saving LED lamp according to claim 1, characterized in that: a plurality of fluorescent tube (20) are the notch cuttype setting, are located in the middle of lamp stand (19) fluorescent tube (20) length is the longest, is located lamp stand (19) edge fluorescent tube (20) length is the shortest.
CN202022552438.4U 2020-11-07 2020-11-07 Intelligent Internet of things energy-saving LED lamp Active CN213872297U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022552438.4U CN213872297U (en) 2020-11-07 2020-11-07 Intelligent Internet of things energy-saving LED lamp

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022552438.4U CN213872297U (en) 2020-11-07 2020-11-07 Intelligent Internet of things energy-saving LED lamp

Publications (1)

Publication Number Publication Date
CN213872297U true CN213872297U (en) 2021-08-03

Family

ID=77053547

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022552438.4U Active CN213872297U (en) 2020-11-07 2020-11-07 Intelligent Internet of things energy-saving LED lamp

Country Status (1)

Country Link
CN (1) CN213872297U (en)

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