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CN212361758U - a smart light - Google Patents

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Publication number
CN212361758U
CN212361758U CN202021037173.8U CN202021037173U CN212361758U CN 212361758 U CN212361758 U CN 212361758U CN 202021037173 U CN202021037173 U CN 202021037173U CN 212361758 U CN212361758 U CN 212361758U
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Prior art keywords
electrically connected
module
light source
rear shell
wireless communication
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CN202021037173.8U
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Chinese (zh)
Inventor
庄伟彬
钟军平
许建兴
张月清
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Xiamen Lidaxin Digital Education Technology Co ltd
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Xiamen Lidaxin Lighting Co ltd
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Abstract

本实用新型提供了一种智能灯,属于灯具技术领域,包括内部设有光源的壳体、设于壳体上用于与供电线路电连接的驱动组件,以及智能扩展单元;其中,驱动组件设有与光源电连接的光源驱动、与光源驱动电连接的无线通讯控制模块、与无线通讯控制模块电连接的串行扩展端子;无线通讯控制模块用于与控制管理系统无线连接;智能扩展组件嵌装于壳体内部,与串行扩展端子电连接。本实用新型提供的一种智能灯,能够根据实际需要,连接不同功能的智能扩展组件,从而实现智能功能多样化;无线通讯控制模块、串行扩展端子与光源驱动集成于设置在壳体上的驱动组件上,并将智能扩展组件嵌装在壳体内部,使智能灯形成一个整体结构,从而提升产品外观档次。

Figure 202021037173

The utility model provides an intelligent lamp, belonging to the technical field of lamps and lanterns. There are a light source driver electrically connected with the light source, a wireless communication control module electrically connected with the light source driver, and a serial expansion terminal electrically connected with the wireless communication control module; the wireless communication control module is used for wireless connection with the control management system; It is installed inside the shell and is electrically connected to the serial expansion terminal. The intelligent lamp provided by the utility model can be connected with intelligent expansion components with different functions according to actual needs, so as to realize the diversification of intelligent functions; the wireless communication control module, the serial expansion terminal and the light source driver are integrated in a The intelligent expansion assembly is embedded in the casing, so that the intelligent lamp forms an integral structure, thereby improving the appearance grade of the product.

Figure 202021037173

Description

Intelligent lamp
Technical Field
The utility model belongs to the technical field of lamps and lanterns, more specifically say, relate to an intelligent lamp.
Background
At present, school or workplace are more and more high to the requirement of environment, along with the development of intelligent lamps and lanterns, school or some workplaces have begun to popularize installation intelligent lamps and lanterns, but, present common intelligent lamps and lanterns, its intelligent function unit belongs to the independent accessory with the lamp body separation, adopts the mode of magnetism to adsorb at the rim of a lamp edge usually, and this kind of mounting means is because the sense of piecing together is strong, not only influences the pleasing to the eye of lamps and lanterns, has drawn down the product grade, has restricted intelligent lamps and lanterns moreover to the diversified development of function.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an intelligent lamp aims at solving prior art's intelligent lamps and lanterns outward appearance wholeness poor, the diversified restricted problem of intelligence function.
In order to achieve the above object, the utility model adopts the following technical scheme: the intelligent lamp comprises a shell, a driving assembly and an intelligent extension unit, wherein a light source is arranged in the shell, the driving assembly is arranged on the shell and is used for being electrically connected with a power supply circuit, and the intelligent extension unit is arranged on the shell; the driving assembly is provided with a light source driver electrically connected with the light source, a wireless communication control module electrically connected with the light source driver, and a serial expansion terminal electrically connected with the wireless communication control module; the wireless communication control module is used for being in wireless connection with the control management system; the intelligent expansion assembly is embedded in the shell and is electrically connected with the serial expansion terminal.
As another embodiment of the present application, the housing includes a rear case, a frame, and a grill; one end of the rear shell is opened for emitting light, the outer wall of the rear shell is connected with the driving assembly, and the inner wall of the rear shell is connected with the light source; the frame is connected with the light-emitting end of the rear shell; the grid is embedded in the frame, and the top end of the grid is abutted against the rear shell; be equipped with the installation through-hole on the grid, intelligence extension subassembly inlays and adorns in the installation through-hole.
As another embodiment of this application, the internal perisporium of frame is equipped with to its inside convex mount table, still is connected with the clamping ring in the top of mount table on the internal perisporium of frame, and the clamping ring presss from both sides the border all around of tight backshell with the mount table cooperation.
As another embodiment of this application, be equipped with a plurality of screw holes along the circumference interval of frame on the mount table, a plurality of screws pass the border and a plurality of screw hole one-to-one connection of clamping ring, backshell respectively in proper order.
As another embodiment of the application, the intelligent expansion assembly comprises an installation box and a monitoring module; the outer peripheral wall of the mounting box is embedded with the mounting through hole, and the top wall of the mounting box is connected with the rear shell; the monitoring module is arranged in the mounting box and is electrically connected with the serial expansion terminal, and the monitoring end of the monitoring module penetrates out of the rear shell.
As another embodiment of the present application, a mounting box includes a base and a housing; wherein, the base is embedded in the mounting through hole, the peripheral wall is provided with a convex edge, and the convex edge is lapped with the top surface of the grating; the base is provided with a first mounting position for mounting the monitoring module; the outer cover is arranged on the base, the top of the outer cover is connected with the rear shell, and the bottom of the outer cover is abutted to the convex edge.
As another embodiment of the application, the monitoring module comprises a sensing module electrically connected with the serial expansion terminal, and an infrared sensor, a human body induction sensor and an optical sensor which are respectively electrically connected with the sensing module.
As another embodiment of the application, a second installation position is further arranged on the base, the second installation position is connected with an expansion module, and the expansion module is a wireless sound amplification unit or an environment detection module; the wireless sound amplifying unit is used for being in wireless connection with the wireless sound amplifying host and electrically connected with a power supply line, and the environment detection module is an air quality sensor, a temperature and humidity sensor and a noise sensor which are respectively electrically connected with the sensing module.
As another embodiment of the application, the driving assembly is further provided with an electric quantity metering module, and the electric quantity metering module is electrically connected with the wireless communication control module.
As another embodiment of the application, the light source driver is provided with an emergency socket which is used for being electrically connected with an emergency power supply.
The utility model provides a pair of intelligent lamp's beneficial effect lies in: compared with the prior art, the intelligent lamp is provided with the wireless communication control module on the driving assembly, so that an operator can remotely control the opening and closing of the light source and the brightness adjustment through the control management system, and the serial extension terminal is arranged on the driving assembly, so that intelligent extension assemblies with different functions can be connected according to actual needs, and the intelligent function diversification is realized; the wireless communication control module, the serial expansion terminal and the light source drive are integrated on the drive assembly arranged on the shell, and the intelligent expansion assembly is embedded in the shell, so that the intelligent lamp forms an integral structure, and the appearance grade of the product is improved.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings required for the embodiments or the prior art descriptions will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art to obtain other drawings without creative efforts.
Fig. 1 is a schematic structural diagram of an intelligent lamp provided in an embodiment of the present invention;
FIG. 2 is a partial enlarged structural view at A in FIG. 1;
FIG. 3 is a partial enlarged structural view at C in FIG. 2;
FIG. 4 is a partially enlarged structural view at B in FIG. 1;
fig. 5 is a control block diagram of an intelligent lamp provided by an embodiment of the present invention.
In the figure: 1. a housing; 11. a rear housing; 12. a frame; 121. an installation table; 1211. a threaded hole; 122. pressing a ring; 123. a screw; 13. a grid; 130. mounting a through hole; 2. a light source; 3. a drive assembly; 4. an intelligent extension component; 41. a monitoring module; 410. a first mounting location; 411. an infrared sensor; 412. a human body induction sensor; 413. a light sensor; 42. an expansion module; 420. a second mounting location; 43. mounting a box; 431. a base; 4311. a convex edge; 432. a housing.
Detailed Description
In order to make the technical problem, technical solution and advantageous effects to be solved by the present invention more clearly understood, the following description is given in conjunction with the accompanying drawings and embodiments to illustrate the present invention in further detail. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
Referring to fig. 1 and fig. 5, an intelligent lamp according to the present invention will be described. The intelligent lamp comprises a shell 1, a driving assembly 3 and an intelligent extension unit, wherein a light source 2 is arranged in the shell 1, the driving assembly 3 is arranged on the shell 1 and is used for being electrically connected with a power supply circuit; the driving component 3 is provided with a light source driver electrically connected with the light source 2, a wireless communication control module electrically connected with the light source driver, and a serial expansion terminal electrically connected with the wireless communication control module; the wireless communication control module is used for being in wireless connection with the control management system; the intelligent expansion module 4 is embedded in the housing 1 and electrically connected to the serial expansion terminal.
It should be noted that, as the prior art, the wireless communication control module mainly performs wireless data communication, bus expansion, data operation, PWM (Pulse Width Modulation) control and local data storage functions of the intelligent lamp; the light source drive adjusts the output power of the wireless communication control assembly according to the received PWM signal of the wireless communication control assembly, so that the brightness adjustment is realized; the intelligent expansion component 4 transmits the monitoring data of the running state or running environment to the wireless communication control component, and wirelessly transmits the operation result data to the control management system after intelligent control algorithm operation (data operation); the control management system can be a computer software program or a mobile phone software program, is in wireless connection with the wireless communication control module through a wireless communication signal, receives data transmitted by the wireless communication control module, and can send instructions to the wireless communication control module through operating the control management system.
The utility model provides a pair of theory of operation of intelligence lamp: an operator sends a wireless signal instruction to the wireless communication control module through the control management system, the wireless communication control module controls the output power of the light source drive according to the instruction, thereby realizing the opening and closing and the brightness adjustment of the light source 2, meanwhile, the wireless communication control module also receives a data signal of the intelligent extension component 4 electrically connected with the serial extension terminal, and wirelessly transmits the data to the control management system after the data is operated, thereby enabling a user to monitor the running state or the running environment of the intelligent lamp in real time through the control management system, realizing diversified intelligent functions, and being understood, the intelligent extension component 4 can be an integrated module structure of various intelligent functional units, and the user can selectively install the intelligent extension component 4 with different intelligent functions according to the self requirements.
Compared with the prior art, the intelligent lamp provided by the utility model has the advantages that the wireless communication control module is arranged on the driving assembly 3, an operator can remotely control the opening and closing of the light source 2 and the brightness adjustment through the control management system, and the serial expansion terminal is arranged on the driving assembly 3, so that the intelligent expansion assemblies 4 with different functions can be connected according to actual needs, and the intelligent functions are diversified; wireless communication control module, serial expansion terminal and light source drive integrate on setting up drive assembly 3 on casing 1 in the lump to inlay intelligent expansion subassembly 4 and inlay the dress in casing 1 inside, make intelligent lamp form an overall structure, thereby promote product appearance grade.
As a specific embodiment of the intelligent lamp provided by the present invention, please refer to fig. 1 and 4, the housing 1 includes a rear shell 11, a frame 12 and a grille 13; wherein, one end of the rear shell 11 is opened for emitting light, the outer wall of the rear shell 11 is connected with the driving component 3, and the inner wall is connected with the light source 2; the frame 12 is connected with the light-emitting end of the rear shell 11; the grid 13 is embedded in the frame 12, and the top end of the grid is abutted against the rear shell 11; the grid 13 is provided with an installation through hole 130, and the intelligent expansion assembly 4 is embedded in the installation through hole 130.
The frame 12 is connected with the light-emitting end of the rear shell 11, specifically, the frame 12 can surround the peripheral wall of the light-emitting end of the rear shell 11, and then the frame 12 sequentially passes through the side wall of the frame 12 and the peripheral wall of the rear shell 11 to be connected, or the frame 12 sequentially passes through the peripheral wall of the rear shell 11 and the side wall of the frame 12 to be connected after the light-emitting end of the rear shell 11 is inserted towards one end of the light source 2 (the outer wall of the insertion end of the frame 12 is attached to the inner peripheral wall of the light-emitting end of the rear shell 11).
The grating 13 is arranged at the light emitting end of the rear shell 11 and used for transmitting light rays, the light rays can directly penetrate through the grating of the grating 13 to be emitted, the light transmission effect is good, the top end of the grating is abutted to (the inner wall of) the rear shell 11, the connection stability of the grating 13 can be ensured, the phenomenon of light energy loss caused by gaps between the grating 13 and the rear shell 11 is avoided, the light effect of the light source 2 is improved, in addition, the heat of the light source 2 and the intelligent expansion assembly 4 in the shell 1 can be quickly dissipated through the grating of the grating 13, and the heat dissipation effect is good;
according to people's aesthetic habits, installation through-hole 130 can the preferred choice setting in the central point of grid 13 puts, of course, installation through-hole 130 also can set up other positions on grid 13, and intelligence extension subassembly 4 inlays the dress in installation through-hole 130 on grid 13, forms an organic whole structure with grid 13, connects compactly, the outward appearance is beautiful, has overcome the intelligent function unit of current intelligent lamps and lanterns and has adsorbed the problem that influences product appearance wholeness at casing 1 outer wall, promotes product grade.
In this embodiment, referring to fig. 4, the inner peripheral wall of the frame 12 is provided with a mounting table 121 protruding inward, the inner peripheral wall of the frame 12 is further connected with a pressing ring 122 above the mounting table 121, and the pressing ring 122 and the mounting table 121 cooperate to clamp the peripheral edge of the rear housing 11.
When the product is assembled, with light source 2, the first installation of intelligence extension subassembly 4 is accomplished the back, the border of the light-emitting end of backshell 11 is in mount table 121 alignment subsides and is put, then press through clamping ring 122 and establish on the border of backshell 11, thereby form the centre gripping of the border all around of backshell 11, of course, need be connected clamping ring 122 and mount table 121 at last, it is firm reliable to guarantee that frame 12 and backshell 11 are connected, connected mode can be for setting up the draw-in groove and carry out the joint with clamping ring 122 in mount table 121 or frame 12 internal perisporium, also can wear to establish screw 123 and fasten.
Specifically, referring to fig. 4, a plurality of threaded holes 1211 are formed in the mounting table 121 at intervals along the circumferential direction of the frame 12, and a plurality of screws 123 respectively penetrate through the press ring 122 and the edge of the rear case 11 to be connected with the plurality of threaded holes 1211 in a one-to-one correspondence manner. It should be understood that through holes should be prepared at positions of the pressing ring 122 and the edge of the rear case 11 corresponding to the plurality of threaded holes 1211 to facilitate the passing of the screws 123, and the connection is performed through the screws 123, so that the connection is stable and reliable, and the disassembly and assembly are convenient.
As a specific implementation manner of the embodiment of the present invention, please refer to fig. 1 to 3, the intelligent expansion component 4 includes an installation box 43 and a monitoring module 41; wherein, the peripheral wall of the mounting box 43 is embedded with the mounting through hole 130, and the top wall is connected with the rear shell 11; the monitoring module 41 is disposed in the mounting box 43 and electrically connected to the serial expansion terminal, and the monitoring end of the monitoring module 41 penetrates the outside of the rear case 11.
Through the embedding connection of the mounting box 43 and the mounting through hole 130, the mounting box 43 can avoid the monitoring module 41 from being damaged by stress and can prevent dust; the monitoring end of the monitoring module 41 penetrates out of the rear shell 11 to avoid the interference of the mounting box 43 on the monitoring process, and the specific penetrating position should be set according to the specific function of the monitoring module 41, of course, since the product is usually arranged at the indoor top and irradiates downwards, the monitoring end usually penetrates out of the lower bottom of the mounting box 43 downwards.
In the present embodiment, referring to fig. 2 and fig. 3, the mounting box 43 includes a base 431 and a housing 432; wherein, the base 431 is embedded in the installation through hole 130, the peripheral wall is provided with a convex edge 4311, and the convex edge 4311 is lapped with the top surface of the grating 13; the base 431 is provided with a first mounting position 410 for mounting the monitoring module 41; the outer cover 432 is covered on the base 431, the top of which is connected with the rear shell 11, and the bottom of which is abutted against the convex edge 4311.
After the base 431 is embedded into the mounting through hole 130, the convex edge 4311 is lapped on the top surface of the grid 13, the outer cover 432 is connected to the rear shell 11, and the bottom end (the end far away from the rear shell 11) of the outer cover 432 is abutted against the convex edge 4311 (the top surface, namely the surface facing the direction of the rear shell 11), so that the bottom end of the outer cover 432 is matched with the top surface of the grid 13 to clamp the convex edge 4311, and the base 431 is embedded with the mounting through hole 130, and a layer of clamping connection mechanism is added to ensure the connection stability of the mounting base 431 and the monitoring module 41 connected to the mounting base 431, so that the mounting base is prevented from falling off and falling, and; when the rear case 11 is disassembled, the outer cover 432 and the mounting base 431 can be driven together to be separated, so that the maintenance or replacement of the monitoring module 41 is facilitated.
Specifically, referring to fig. 2 and 5, the monitoring module 41 includes a sensing module electrically connected to the serial expansion terminal, and an infrared sensor 411, a human body sensor 412, and an optical sensor 413 respectively electrically connected to the sensing module.
It should be noted that the sensor is composed of a sensing element, a conversion element and a signal conditioning and converting circuit, sometimes an additional auxiliary power supply is needed to provide conversion energy, and the sensing element refers to a part which can directly sense or respond to a measured object in the sensor; a transducer is a portion of the sensor that converts a measurand sensed or responded by a sensor into an electrical signal suitable for transmission or measurement. Because the output signals of the sensors are weak, the signals output by the sensors generally need to be processed by signal conditioning and conversion, amplification, operation and modulation before being displayed and participating in control. The sensing module used in this embodiment is an integrated module of a conversion element and a signal conditioning conversion circuit, and the infrared sensor 411, the human body sensing sensor 412, and the optical sensor 413 are respectively sensing elements connected to the integrated module (i.e., the sensing module).
The infrared sensor 411 can be matched with an infrared remote controller, so that a user can conveniently start and stop the light source 2 and adjust the brightness of the light source 2 by operating the infrared remote controller; the human body induction sensor 412, namely a PIR (pyroelectric infrared sensor) sensor, can induce the movement of a human body within the monitoring range thereof, so as to judge whether a person is in the monitoring range, and transmit a monitoring signal to the wireless communication control assembly, and the wireless communication control assembly controls the on and off of the light source 2 according to the received monitoring signal; the light sensor 413 can sense and monitor the brightness around the light source in real time, and after the monitoring data are transmitted to the wireless communication control component, the wireless communication control component automatically adjusts the brightness of the light source 2 according to the monitoring data.
In addition, referring to fig. 2 and fig. 5, a second installation position 420 is further disposed on the base 431, the second installation position 420 is connected to the expansion module 42, and the expansion module 42 is a wireless sound amplifying unit or an environment detecting module; the wireless sound amplifying unit is used for being in wireless connection with the wireless sound amplifying host and electrically connected with a power supply line, and the environment detection module is an air quality sensor, a temperature and humidity sensor and a noise sensor which are respectively electrically connected with the sensing module.
The second installation location 420 may select to install the wireless microphone unit or select to install the environment detection module according to the user's requirement.
The wireless sound amplifying unit is an independent extension unit, is arranged on the second installation position 420 in an independent power supply mode, does not interfere with the monitoring module 41 arranged on the first installation position 410, and is reasonable in layout; wireless public address unit carries out sound under the control of wireless public address host computer and expands and put, is particularly useful for the teaching environment, can carry out the omnidirectional to teacher's sound through a plurality of intelligent lamps of installing in the classroom and expand and put, improves teaching sound definition, uses and experiences well.
The air quality sensor can be a carbon dioxide sensor and/or a Volatile Organic Compound (VOC) sensor, data such as indoor carbon dioxide and/or VOC concentration, temperature and humidity, noise and the like are collected through an environment detection module, the collected environment data are transmitted to a wireless communication control assembly, the collected data are processed and converted into readable information, and then the readable information is transmitted to a management control system through wireless communication so that a user can know the indoor environment state in real time.
As a specific implementation manner of the embodiment of the present invention, please refer to fig. 5, the driving assembly 3 is further provided with an electric quantity metering module, and the electric quantity metering module is electrically connected to the wireless communication control module.
The electric quantity metering module can monitor the electric parameters of the whole running state of the product, real-time monitoring of voltage, current, power and power factor is realized, monitoring data are transmitted to the wireless communication control assembly, collected data are processed and converted into readable information, the monitoring information is transmitted to the management control system through wireless communication, the running power utilization state of the product is known by a user in real time, the power consumption of the product is reasonably controlled by the user, and therefore the purposes of energy conservation and emission reduction are achieved.
As a specific implementation manner of the embodiment of the present invention, please refer to fig. 5, an emergency socket is disposed on the light source driver, and the emergency socket is used for being electrically connected to an emergency power supply. When the power supply line is accidentally powered off, the emergency power supply can be used for supplying power to the light source drive for a short time, so that sufficient power-off preparation time is provided for users.
The above description is only exemplary of the present invention and should not be taken as limiting the scope of the present invention, as any modifications, equivalents, improvements and the like made within the spirit and principles of the present invention are intended to be included within the scope of the present invention.

Claims (10)

1. A smart lamp, comprising:
a housing having a light source therein;
the driving assembly is arranged on the shell and is used for being electrically connected with a power supply circuit, and the driving assembly is provided with a light source drive electrically connected with the light source, a wireless communication control module electrically connected with the light source drive and a serial expansion terminal electrically connected with the wireless communication control module; the wireless communication control module is used for being in wireless connection with the control management system;
and the intelligent expansion assembly is embedded in the shell and is electrically connected with the serial expansion terminal.
2. A smart lamp as recited in claim 1, wherein said housing comprises:
one end of the rear shell is opened for emitting light, the outer wall of the rear shell is connected with the driving assembly, and the inner wall of the rear shell is connected with the light source;
the frame is connected with the light emitting end of the rear shell;
the grid is embedded in the frame, and the top end of the grid is abutted to the rear shell; the grid is provided with an installation through hole, and the intelligent expansion assembly is embedded in the installation through hole.
3. A smart lamp as claimed in claim 2, wherein: the interior perisporium of frame is equipped with to its inside convex mount table, on the interior perisporium of frame in the top of mount table still is connected with the clamping ring, the clamping ring with the mount table cooperation is pressed from both sides tightly the border all around of backshell.
4. A smart lamp as claimed in claim 3, wherein: the mounting table is provided with a plurality of threaded holes along the circumferential interval of the frame, and a plurality of screws respectively penetrate through the compression ring and the edge of the rear shell and are connected with the threaded holes in a one-to-one correspondence mode.
5. The smart lamp of claim 2, wherein the smart expansion assembly comprises:
the outer peripheral wall of the mounting box is embedded with the mounting through hole, and the top wall of the mounting box is connected with the rear shell;
and the monitoring module is arranged in the mounting box and is electrically connected with the serial expansion terminal, and the monitoring end of the monitoring module penetrates out of the rear shell.
6. The smart lamp of claim 5, wherein said mounting case comprises:
the base is embedded in the mounting through hole, the peripheral wall of the base is provided with a convex edge, and the convex edge is in lap joint with the top surface of the grating; the base is provided with a first mounting position for mounting the monitoring module;
the outer cover is covered on the base, the top of the outer cover is connected with the rear shell, and the bottom of the outer cover is abutted to the convex edge.
7. A smart lamp as claimed in claim 6, wherein: the monitoring module comprises a sensing module electrically connected with the serial expansion terminal, and an infrared sensor, a human body induction sensor and an optical sensor which are respectively electrically connected with the sensing module.
8. A smart lamp as claimed in claim 7, wherein: the base is also provided with a second installation position, the second installation position is connected with an expansion module, and the expansion module is a wireless sound amplification unit or an environment detection module; the wireless sound amplifying unit is used for being in wireless connection with the wireless sound amplifying host and electrically connected with a power supply line, and the environment detection module is an air quality sensor, a temperature and humidity sensor and a noise sensor which are respectively electrically connected with the sensing module.
9. A smart lamp as claimed in any one of claims 1 to 8, wherein: the driving assembly is further provided with an electric quantity metering module, and the electric quantity metering module is electrically connected with the wireless communication control module.
10. A smart lamp as claimed in any one of claims 1 to 8, wherein: the light source drive is provided with an emergency socket which is used for being electrically connected with an emergency power supply.
CN202021037173.8U 2020-06-08 2020-06-08 a smart light Active CN212361758U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021037173.8U CN212361758U (en) 2020-06-08 2020-06-08 a smart light

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021037173.8U CN212361758U (en) 2020-06-08 2020-06-08 a smart light

Publications (1)

Publication Number Publication Date
CN212361758U true CN212361758U (en) 2021-01-15

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Application Number Title Priority Date Filing Date
CN202021037173.8U Active CN212361758U (en) 2020-06-08 2020-06-08 a smart light

Country Status (1)

Country Link
CN (1) CN212361758U (en)

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Address after: No. 1511, North Fanghu 2nd Road, Huli District, Xiamen City, Fujian Province 361000

Patentee after: Xiamen Lidaxin Digital Education Technology Co.,Ltd.

Country or region after: China

Address before: 5th Floor, 1511 Fanghu North 2nd Road, Huli District, Xiamen City, Fujian Province

Patentee before: LEELEDS LIGHTING (XIAMEN) Co.,Ltd.

Country or region before: China