CN213453120U - Road lighting lamp based on intelligent control - Google Patents

Road lighting lamp based on intelligent control Download PDF

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Publication number
CN213453120U
CN213453120U CN202022846622.XU CN202022846622U CN213453120U CN 213453120 U CN213453120 U CN 213453120U CN 202022846622 U CN202022846622 U CN 202022846622U CN 213453120 U CN213453120 U CN 213453120U
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China
Prior art keywords
module
heat dissipation
lamp
lamp holder
shell
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CN202022846622.XU
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Chinese (zh)
Inventor
朱恺
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Shenzhen mingzhihui Intelligent Technology Co.,Ltd.
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Shenzhen Mingzhihui Construction Engineering Co ltd
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Abstract

The utility model discloses a road lighting lamp based on intelligent control, which comprises a lamp holder module, a heat dissipation shell, a lamp shade, a reflective cup, a lamp holder module, an induction module, a main control module and a LED lamp panel; the lampshade is sleeved at the bottom of the radiating shell to form a cavity structure, and the LED lamp panel and the main control module are arranged in the cavity structure; the induction module is embedded on the radiating shell and used for inducing pedestrians and vehicles to come and go and controlling the LED lamp panel to work through the main control module; the lamp holder module is magnetically mounted and connected with the lamp cap module, the lamp cap module is arranged at one end, far away from the lampshade, of the heat dissipation shell, and the reflection cup is arranged between the lamp cap module and the heat dissipation shell. The utility model discloses be in the same place infrared induction control and road lighting lamp are integrated, magnetism installation connection structure is convenient for install fast and is dismantled with reduce cost, utilizes the structure of heat dissipation shell to effectively improve heat transfer efficiency, improves road lighting lamp's life.

Description

Road lighting lamp based on intelligent control
Technical Field
The utility model relates to a road lighting lamp technical field especially relates to a road lighting lamp based on intelligent control.
Background
The purpose of road lighting lamp is for the pedestrian provides comfortable and safe visual environment, guarantees that the pedestrian can see clearly the road surface condition of road, ensures the trip safety and reduces the chance of criminal activity. Because most road lighting lamp is in outdoor environment, in case when lamps and lanterns break down, need the high altitude construction dismouting maintenance, maintenance duration is longer, has inconvenient problem in the reality.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a road lighting lamp based on intelligent control, with infrared induction control and road lighting lamp integration together, magnetism installation connection structure is convenient for install fast and is dismantled with reduce cost, utilizes the structure of heat dissipation shell effectively to improve heat transfer efficiency, improves road lighting lamp's life.
In order to realize the purpose, the following technical scheme is adopted:
a road illuminating lamp based on intelligent control comprises a lamp holder module, a radiating shell, a lampshade, a reflecting cup, a lamp holder module, an induction module, a main control module and an LED lamp panel; the lampshade is sleeved at the bottom of the radiating shell to form a cavity structure, and the LED lamp panel and the main control module are arranged in the cavity structure; the induction module is embedded on the radiating shell and used for inducing pedestrians and vehicles to come and go and controlling the LED lamp panel to work through the main control module; the lamp holder module is magnetically mounted and connected with the lamp cap module, the lamp cap module is arranged at one end, far away from the lampshade, of the heat dissipation shell, and the reflection cup is arranged between the lamp cap module and the heat dissipation shell.
Preferably, the main control module comprises a controller, an aluminum-based mounting plate, a power driver and a heat-conducting silica gel sheet which is mounted on the back of the LED lamp panel and used for improving heat transfer efficiency; the controller and the power supply driver are arranged on one side, facing the lamp holder module, of the heat-conducting silica gel sheet; the aluminum-based mounting plate is fixedly mounted at the top end of the controller and is connected with the heat dissipation shell for heat transfer.
Preferably, the lamp holder module comprises a lamp holder shell, a sealing rubber ring, two independent magnets and two power contacts; the lamp holder shell is provided with a groove for inserting the lamp holder module, the two magnets are distributed on two opposite sides of the bottom of the groove, and the two power contacts are distributed on the other two sides of the bottom of the groove; the lamp holder is characterized in that a first annular sealing groove is formed in the side wall of the groove of the lamp holder shell, and a sealing rubber ring is embedded into the first annular sealing groove and used for being connected with the lamp holder module in a sealing mode.
Preferably, the lamp holder module comprises a lamp holder body, and two independent iron blocks and two metal contacts which are arranged at the end part of the lamp holder body; each iron block corresponds to a magnet, and each metal contact corresponds to a power supply contact; and the outer peripheral surface of the lamp holder body is provided with a second annular sealing groove corresponding to the first annular sealing groove and used for embedding a sealing rubber ring.
Preferably, the heat dissipation housing is made of heat dissipation ceramic material, a plurality of strip-shaped heat dissipation ribs are arranged on the periphery of the heat dissipation housing, each heat dissipation rib is arranged from the top to the bottom of the heat dissipation housing, and a heat dissipation hole penetrating into the cavity structure is arranged at the bottom end of each heat dissipation rib for improving heat transfer efficiency.
Preferably, the sensing module comprises a bluetooth receiver and an infrared sensor, and is installed on the side surface of the bottom of the heat dissipation shell; the induction end of the infrared sensor faces the bottom direction of the heat dissipation shell, and the Bluetooth receiver is used for setting the on-off state and time of the infrared sensor through the main control module.
Preferably, the reflecting cup is in an umbrella-shaped structure, and the inner surface of the reflecting cup is vacuum-plated with aluminum, so that a long-distance spotlight condition is provided for a light source of the LED lamp panel.
Adopt above-mentioned scheme, the beneficial effects of the utility model are that:
1) the magnet adsorption lamp holder structure is adopted, so that the lamp holder is convenient to mount and dismount quickly; the sealing rubber ring has a waterproof effect, and is beneficial to prolonging the service life;
2) the heat dissipation shell utilizes the heat dissipation ceramic to carry out heat transfer, so that the heat conductivity is good, and the heat transfer efficiency is effectively improved; in addition, the heat dissipation ribs arranged on the heat dissipation shell are provided with heat dissipation holes, so that the heat exchange between the inside and the outside is facilitated, and the heat dissipation effect is enhanced;
3) the LED lamp panel is controlled to work by infrared induction, the lamp is on when people come, and the lamp is off when people go, so that more energy is saved;
4) maintainers can set the on-off state and the time of the infrared sensor through the Bluetooth receiver according to different application scenes, and the energy-saving effect is achieved.
Drawings
Fig. 1 is a perspective view of the present invention;
FIG. 2 is a perspective view of the internal structure of the present invention;
FIG. 3 is an exploded view of the present invention;
FIG. 4 is a perspective view of the present invention with the lamp holder module and the reflective cup omitted;
fig. 5 is a perspective view of the heat dissipation housing, the induction module, and the lamp holder module of the present invention;
wherein the figures identify the description:
1-lamp holder module, 2-radiating shell,
3-a lampshade, 4-a reflecting cup,
5-a lamp holder module, 6-a sensing module,
7-a main control module, 8-an LED lamp panel,
11-a lamp holder body, 12-an iron block,
13-metal contact, 14-second annular seal groove
21-radiating ribs, 22-radiating holes,
51-lamp holder shell, 52-sealing rubber ring,
53-magnet, 54-power supply contact,
71-controller, 72-aluminum-based mounting plate,
73-power driver, 74-heat conduction silica gel piece.
Detailed Description
The present invention will be described in detail below with reference to the accompanying drawings and specific embodiments.
Referring to fig. 1 to 5, the utility model provides a road lighting lamp based on intelligent control, which comprises a lamp holder module 1, a heat dissipation shell 2, a lampshade 3, a reflective cup 4, a lamp holder module 5, an induction module 6, a main control module 7 and an LED lamp panel 8; the lampshade 3 is sleeved at the bottom of the radiating shell 2 to form a cavity structure, and the LED lamp panel 8 and the main control module 7 are arranged in the cavity structure; the induction module 6 is embedded on the heat dissipation shell 2 and used for inducing pedestrians and vehicles to come and go and controlling the LED lamp panel 8 to work through the main control module 7; the lamp holder module 5 is magnetically mounted and connected with the lamp holder module 1, the lamp holder module 1 is arranged at one end, far away from the lampshade 3, of the heat dissipation shell 2, and the reflection cup 4 is arranged between the lamp holder module 1 and the heat dissipation shell 2.
The main control module 7 comprises a controller 71, an aluminum-based mounting plate 72, a power driver 73, and a heat-conducting silica gel sheet 74 which is mounted on the back surface of the LED lamp panel 8 and is used for improving heat transfer efficiency; the controller 71 and the power driver 73 are mounted on one side of the heat-conducting silicon sheet 74 facing the lamp holder module 1; the aluminum-based mounting plate 72 is fixedly mounted at the top end of the controller 71 and is connected with the heat dissipation shell 2 for heat transfer.
The lamp holder module 5 comprises a lamp holder shell 51, a sealing rubber ring 52, two independent magnets 53 and two power contacts 54; the lamp holder shell 51 is provided with a groove for inserting the lamp holder module 1, the two magnets 53 are distributed on two opposite sides of the bottom of the groove, and the two power contacts 54 are distributed on the other two sides of the bottom of the groove; the groove side wall of the lamp holder shell 51 is provided with a first annular sealing groove, and a sealing rubber ring 52 is embedded into the first annular sealing groove for sealing and connecting the lamp holder module 1. The lamp holder module 1 comprises a lamp holder body 11, two independent iron blocks 12 and two metal contacts 13, wherein the two independent iron blocks 12 and the two metal contacts 13 are arranged at the end part of the lamp holder body 11; each iron block 12 corresponds to a magnet, and each metal contact 13 corresponds to a power supply contact 54; the outer peripheral surface of the base body 11 is provided with a second annular sealing groove 14 corresponding to the first annular sealing groove for embedding a sealing rubber ring 52.
When the lamp holder module 1 and the lamp holder module 5 are installed in a magnetic attraction manner, the magnet 53 guides the iron block 12 to move upwards through magnetic force to fix the lamp holder module 1 in an attraction manner, the metal contact 13 is electrically connected with the power contact 54 correspondingly, and meanwhile, the inner ring part of the sealing rubber ring 52 in the lamp holder module 5 is sleeved on the second annular sealing groove 14 of the lamp holder body 11 to form a sealing area, so that the effect of preventing water from entering the lamp holder module 5 is achieved; the heat dissipation shell 2 is fixedly connected with the lamp cap module 1, one hand holds the heat dissipation shell 2, the other hand holds the lamp holder module 5 to rotate towards the left or right direction, and then the lamp cap module 1 can be detached by slightly pulling downwards.
The heat dissipation shell 2 is made of heat dissipation ceramic materials, a plurality of strip-shaped heat dissipation ribs 21 are arranged on the periphery of the heat dissipation shell 2, each heat dissipation rib 21 is arranged from the top of the heat dissipation shell 2 to the bottom of the heat dissipation shell, and a heat dissipation hole 22 penetrating into the cavity structure is formed in the bottom end of each heat dissipation rib 21 and used for improving heat transfer efficiency.
The induction module 6 comprises a Bluetooth receiver and an infrared sensor and is arranged on the side surface of the bottom of the heat dissipation shell 2; the induction end of the infrared sensor faces the direction of the bottom of the heat dissipation shell 2, and the Bluetooth receiver is used for setting the on-off state and time of the infrared sensor through the main control module 7.
Maintainer sets up infrared sensor's operating time through bluetooth receiver according to different application scenes, and the illumination sight is good daytime, closes infrared sensor in order to reach energy-conserving effect. The infrared sensor senses that people pass through the identification area and controls the LED lamp panel 8 to work and light; the unmanned passing of the identification area is automatically extinguished.
The reflective cup 4 is in an umbrella-shaped structure, and has the effects of solarization prevention and water drenching prevention. The inner surface is vacuum aluminized to provide a long-distance spotlight condition for the light source of the LED lamp panel 8.
The above description is only exemplary of the present invention and should not be construed as limiting the present invention, and any modifications, equivalents and improvements made within the spirit and principles of the present invention are intended to be included within the scope of the present invention.

Claims (7)

1. A road illuminating lamp based on intelligent control is characterized by comprising a lamp holder module, a heat dissipation shell, a lampshade, a reflecting cup, a lamp holder module, an induction module, a main control module and an LED lamp panel; the lampshade is sleeved at the bottom of the radiating shell to form a cavity structure, and the LED lamp panel and the main control module are arranged in the cavity structure; the induction module is embedded on the radiating shell and used for inducing pedestrians and vehicles to come and go and controlling the LED lamp panel to work through the main control module; the lamp holder module is magnetically mounted and connected with the lamp cap module, the lamp cap module is arranged at one end, far away from the lampshade, of the heat dissipation shell, and the reflection cup is arranged between the lamp cap module and the heat dissipation shell.
2. The intelligent control-based road illuminating lamp according to claim 1, wherein the main control module comprises a controller, an aluminum-based mounting plate, a power supply driver and a heat-conducting silica gel sheet which is arranged on the back surface of the LED lamp panel and used for improving heat transfer efficiency; the controller and the power supply driver are arranged on one side, facing the lamp holder module, of the heat-conducting silica gel sheet; the aluminum-based mounting plate is fixedly mounted at the top end of the controller and is connected with the heat dissipation shell for heat transfer.
3. The intelligent control-based road illumination lamp according to claim 1, wherein the lamp holder module comprises a lamp holder housing, a sealing rubber ring, two independent magnets and two power contacts; the lamp holder shell is provided with a groove for inserting the lamp holder module, the two magnets are distributed on two opposite sides of the bottom of the groove, and the two power contacts are distributed on the other two sides of the bottom of the groove; the lamp holder is characterized in that a first annular sealing groove is formed in the side wall of the groove of the lamp holder shell, and a sealing rubber ring is embedded into the first annular sealing groove and used for being connected with the lamp holder module in a sealing mode.
4. The intelligent control-based road illuminating lamp according to claim 3, wherein the lamp holder module comprises a lamp holder body, and two independent iron blocks and two metal contacts which are arranged at the end part of the lamp holder body; each iron block corresponds to a magnet, and each metal contact corresponds to a power supply contact; and the outer peripheral surface of the lamp holder body is provided with a second annular sealing groove corresponding to the first annular sealing groove and used for embedding a sealing rubber ring.
5. The road lighting lamp based on intelligent control as claimed in claim 1, wherein the heat dissipation casing is made of heat dissipation ceramic material, and a plurality of long-strip heat dissipation ribs are disposed on the periphery of the heat dissipation casing, each heat dissipation rib is opened from the top to the bottom of the heat dissipation casing, and the bottom end of each heat dissipation rib is provided with a heat dissipation hole penetrating into the cavity structure for improving heat transfer efficiency.
6. The intelligent control-based road illuminating lamp according to claim 1, wherein the sensing module comprises a Bluetooth receiver and an infrared sensor, and is arranged on the side surface of the bottom of the heat dissipation shell; the induction end of the infrared sensor faces the bottom direction of the heat dissipation shell, and the Bluetooth receiver is used for setting the on-off state and time of the infrared sensor through the main control module.
7. The intelligent control-based road illuminating lamp according to claim 1, wherein the reflecting cup is in an umbrella-shaped structure, the inner surface of the reflecting cup is vacuum-aluminized, and the reflecting cup provides a long-distance spotlight condition for a light source of an LED lamp panel.
CN202022846622.XU 2020-11-30 2020-11-30 Road lighting lamp based on intelligent control Active CN213453120U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022846622.XU CN213453120U (en) 2020-11-30 2020-11-30 Road lighting lamp based on intelligent control

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022846622.XU CN213453120U (en) 2020-11-30 2020-11-30 Road lighting lamp based on intelligent control

Publications (1)

Publication Number Publication Date
CN213453120U true CN213453120U (en) 2021-06-15

Family

ID=76303798

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022846622.XU Active CN213453120U (en) 2020-11-30 2020-11-30 Road lighting lamp based on intelligent control

Country Status (1)

Country Link
CN (1) CN213453120U (en)

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Address after: No.1401, block B, No.2 building, Tianan Digital Innovation Park, Longcheng street, Longgang District, Shenzhen, Guangdong 518000

Patentee after: Shenzhen mingzhihui Intelligent Technology Co.,Ltd.

Address before: No.1401, block B, No.2 building, Tianan Digital Innovation Park, Longcheng street, Longgang District, Shenzhen, Guangdong 518000

Patentee before: SHENZHEN MINGZHIHUI CONSTRUCTION ENGINEERING Co.,Ltd.