CN117869846A - Intelligent monitor lamp - Google Patents

Intelligent monitor lamp Download PDF

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Publication number
CN117869846A
CN117869846A CN202311431880.3A CN202311431880A CN117869846A CN 117869846 A CN117869846 A CN 117869846A CN 202311431880 A CN202311431880 A CN 202311431880A CN 117869846 A CN117869846 A CN 117869846A
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CN
China
Prior art keywords
monitoring
lamp
temperature sensing
unit
heat dissipation
Prior art date
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Granted
Application number
CN202311431880.3A
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Chinese (zh)
Other versions
CN117869846B (en
Inventor
焦向辉
王彦良
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Imigy Lighting Electric Co Ltd
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Imigy Lighting Electric Co Ltd
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Application filed by Imigy Lighting Electric Co Ltd filed Critical Imigy Lighting Electric Co Ltd
Priority to CN202311431880.3A priority Critical patent/CN117869846B/en
Publication of CN117869846A publication Critical patent/CN117869846A/en
Application granted granted Critical
Publication of CN117869846B publication Critical patent/CN117869846B/en
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V23/00Arrangement of electric circuit elements in or on lighting devices
    • F21V23/02Arrangement of electric circuit elements in or on lighting devices the elements being transformers, impedances or power supply units, e.g. a transformer with a rectifier
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V23/00Arrangement of electric circuit elements in or on lighting devices
    • F21V23/04Arrangement of electric circuit elements in or on lighting devices the elements being switches
    • F21V23/0435Arrangement of electric circuit elements in or on lighting devices the elements being switches activated by remote control means
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V29/00Protecting lighting devices from thermal damage; Cooling or heating arrangements specially adapted for lighting devices or systems
    • F21V29/50Cooling arrangements
    • F21V29/70Cooling arrangements characterised by passive heat-dissipating elements, e.g. heat-sinks
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V29/00Protecting lighting devices from thermal damage; Cooling or heating arrangements specially adapted for lighting devices or systems
    • F21V29/50Cooling arrangements
    • F21V29/70Cooling arrangements characterised by passive heat-dissipating elements, e.g. heat-sinks
    • F21V29/83Cooling arrangements characterised by passive heat-dissipating elements, e.g. heat-sinks the elements having apertures, ducts or channels, e.g. heat radiation holes
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V33/00Structural combinations of lighting devices with other articles, not otherwise provided for
    • F21V33/0004Personal or domestic articles
    • F21V33/0052Audio or video equipment, e.g. televisions, telephones, cameras or computers; Remote control devices therefor
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01KMEASURING TEMPERATURE; MEASURING QUANTITY OF HEAT; THERMALLY-SENSITIVE ELEMENTS NOT OTHERWISE PROVIDED FOR
    • G01K7/00Measuring temperature based on the use of electric or magnetic elements directly sensitive to heat ; Power supply therefor, e.g. using thermoelectric elements
    • G01K7/16Measuring temperature based on the use of electric or magnetic elements directly sensitive to heat ; Power supply therefor, e.g. using thermoelectric elements using resistive elements
    • G01K7/22Measuring temperature based on the use of electric or magnetic elements directly sensitive to heat ; Power supply therefor, e.g. using thermoelectric elements using resistive elements the element being a non-linear resistance, e.g. thermistor
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N23/00Cameras or camera modules comprising electronic image sensors; Control thereof
    • H04N23/50Constructional details
    • H04N23/52Elements optimising image sensor operation, e.g. for electromagnetic interference [EMI] protection or temperature control by heat transfer or cooling elements
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B45/00Circuit arrangements for operating light-emitting diodes [LED]
    • H05B45/10Controlling the intensity of the light
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B47/00Circuit arrangements for operating light sources in general, i.e. where the type of light source is not relevant
    • H05B47/10Controlling the light source
    • H05B47/175Controlling the light source by remote control
    • H05B47/19Controlling the light source by remote control via wireless transmission
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES F21K, F21L, F21S and F21V, RELATING TO THE FORM OR THE KIND OF THE LIGHT SOURCES OR OF THE COLOUR OF THE LIGHT EMITTED
    • F21Y2115/00Light-generating elements of semiconductor light sources
    • F21Y2115/10Light-emitting diodes [LED]
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B20/00Energy efficient lighting technologies, e.g. halogen lamps or gas discharge lamps
    • Y02B20/40Control techniques providing energy savings, e.g. smart controller or presence detection

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Multimedia (AREA)
  • Electromagnetism (AREA)
  • Signal Processing (AREA)
  • Nonlinear Science (AREA)
  • General Physics & Mathematics (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Power Engineering (AREA)
  • Arrangement Of Elements, Cooling, Sealing, Or The Like Of Lighting Devices (AREA)
  • Circuit Arrangement For Electric Light Sources In General (AREA)

Abstract

The invention relates to an intelligent monitoring lamp applied to the field of illumination, which comprises a lamp cover, a switching heat-insulating card arranged on the upper inner wall of the lamp cover and a monitoring head arranged at the lower end of the lamp cover by being connected with the switching heat-insulating card.

Description

Intelligent monitor lamp
Technical Field
The invention relates to a monitoring lamp, in particular to an intelligent monitoring lamp applied to the field of illumination.
Background
In the conventional application, the lamps and the monitoring belong to two different categories, and in use, external facilities such as power supply, network and the like are required to be independently provided for the lamps and the monitoring, so that the lamps and the monitoring are complicated.
The monitoring lamp is the lighting equipment for monitoring camera shooting, can also monitor the picture when playing the illumination effect, and the picture can be clearer through the cooperation with the light, has better monitoring field of vision, so the present monitoring lamp is widely used.
However, when the existing monitoring lamp is used as an integrated device for monitoring and lamps, the excessive load can cause the rapid temperature rise of the monitoring lamp during simultaneous use of the lamp light and the monitoring, so how to reduce the monitoring damage caused by the temperature rise of the load while guaranteeing the functional stability of the monitoring lamp is one of the problems to be solved currently.
Disclosure of Invention
Aiming at the prior art, the invention aims to solve the technical problem of reducing the monitoring damage caused by load heating while guaranteeing the functional stability of the monitoring lamp.
In order to solve the problems, the invention provides an intelligent monitoring lamp, which comprises a lamp shade, a switching heat-insulating card arranged on the upper inner wall of the lamp shade and a monitoring head connected with the switching heat-insulating card and arranged at the lower end of the lamp shade, wherein the outer end of the switching heat-insulating card is fixedly sleeved with a temperature sensing ring, the lower end of the temperature sensing ring is fixedly connected with a buckling bottom plate matched with the lamp shade, a temperature sensing cavity is arranged in the temperature sensing ring, and two thermistors which are symmetrically arranged are fixedly arranged in the temperature sensing cavity;
the upper end of the lamp cover is buckled with a dust cover, the lower inner wall of the dust cover is fixedly provided with LED lamp beads, the upper end of the dust cover is fixedly provided with an electric control box matched with the monitoring head, the LED lamp beads and the thermistor, a monitoring main board is fixedly arranged in the electric control box, an electric control circuit is printed in the monitoring main board, and the thermistor and the electric control circuit communicated to the LED lamp beads form series connection;
an intelligent monitoring lamp regulation and control system is mounted in the monitoring main board and comprises a regulation and control processing unit, wherein the input end of the regulation and control processing unit is connected with a monitoring acquisition unit, a lamplight feedback unit and an instruction receiving unit, and the output end of the regulation and control processing unit is connected with a monitoring lamp regulation unit and a monitoring data transmission unit;
the input end of the monitoring acquisition unit is in signal connection with the monitoring head, the input end of the lamplight feedback unit is in signal connection with the electric control circuit, and the input end of the instruction receiving unit is respectively in signal connection with the control switch and the mobile control end through a wireless receiving and transmitting antenna arranged in the electric control box;
the output end of the monitoring lamp adjusting unit is respectively connected with the monitoring head and the LED lamp beads in a signal mode, and the output end of the monitoring data transmission unit is respectively connected with the cloud server and the mobile control end in a signal mode through a wireless receiving and transmitting antenna arranged in the electric control box.
In the intelligent monitoring lamp, after the temperature rises, the brightness of the LED lamp beads is automatically reduced, the damage to the monitoring lamp caused by continuous temperature rising is avoided, and the application robustness and safety of the monitoring lamp are effectively ensured.
As the further improvement of this application, the temperature sensing intracavity still fixedly connected with is a pair of ventilative sponge that the symmetry set up, and ventilative sponge and corresponding thermistor fixed connection, offered a plurality of louvres that switch on mutually with the temperature sensing chamber on the temperature sensing ring, thermistor one end fixedly connected with slip setting is kept away from to ventilative sponge in the temperature sensing intracavity temperature-sensing heat dissipation strip, temperature-sensing heat dissipation strip is kept away from ventilative sponge one end fixedly connected with guide ball, guide ball is kept away from temperature-sensing heat dissipation strip one end fixedly connected with and is sliding fit's heat dissipation fin with the temperature sensing chamber.
As a supplement to the further improvement of the application, the inner walls of the temperature-sensing heat dissipation strips are respectively and fixedly connected with heat dissipation electromagnetic blocks close to the ventilation sponge and the inner wall of one side close to the guide ball, and an elastic guide strip is fixedly connected between the two heat dissipation electromagnetic blocks;
the input end of the regulation and control processing unit is also connected with a resistance value sensing unit, the output end of the regulation and control processing unit is also connected with a temperature sensing heat dissipation unit, the input end of the resistance value sensing unit is connected with a thermistor through a signal, and the output end of the temperature sensing heat dissipation unit is connected with a heat dissipation electromagnetic block through a signal.
As a supplement to the further improvement of the application, the guiding ball is fixedly connected with a guiding rotating column, and the inner wall of the temperature sensing cavity is provided with a guiding arc groove matched with the guiding rotating column.
As the supplement of this application, dust cover upper end fixedly connected with is located the installation roof of electric control box upside, and lamps and lanterns cover lower extreme has seted up with switching heat-insulating card matched with monitoring hole, and the monitoring head upper end rotates and is connected with the adapter sleeve, and adapter sleeve upper end passes monitoring hole and switching heat-insulating card threaded connection.
In addition to the method, the external diameter of the switching heat insulation card is 1.1-1.5 times of the aperture of the monitoring hole, and the external diameter of the buckling bottom plate is 1.1-1.5 times of the external diameter of the switching heat insulation card.
As the supplement of this application, fixed mounting has horizontal rotating electrical machines in the adapter sleeve, and the output shaft of horizontal rotating electrical machines lower extreme passes through shaft coupling fixed connection with the control head, and fixed mounting has perpendicular rotating electrical machines in the control head, and the output shaft of perpendicular rotating electrical machines front end sets up the camera fixed connection at the control head front end with rotating, and the output of monitor lamp adjusting unit respectively with horizontal rotating electrical machines and perpendicular rotating electrical machines signal connection.
As a further improvement of the intelligent lamp, the output end of the regulating and controlling processing unit is also connected with an intelligent lamp regulating and controlling unit, and the output end of the intelligent lamp regulating and controlling unit is connected with an intelligent lamp through a wireless receiving and transmitting antenna arranged in the electric control box.
As a further improvement of the application, the monitoring lamp adjusting unit comprises a monitoring lamp processing module, wherein the input end of the monitoring lamp processing module is connected with an instruction classification module, and the output end of the monitoring lamp processing module is respectively connected with a lamplight adjusting and controlling module, a monitoring and controlling module and an abnormal adjusting and controlling module;
the input end of the instruction classification module is connected with the control processing unit through signals, the light control module is connected with the LED lamp beads through signals of the electric control circuit, the monitoring control module is connected with the monitoring head through signals of the electric control circuit, and the output end of the abnormal control module is connected with the LED lamp beads, the monitoring head and the temperature sensing heat dissipation unit through signals of the electric control circuit.
To sum up, through thermistor, electric control circuit and intelligent monitoring lamp regulation and control system's cooperation, effectively realize the state control and the assurance in the monitor lamp use, start for a long time at the LED lamp pearl or because the too high mode that causes monitor lamp temperature to rise of brightness adjustment, can be effectively through thermistor by the electric control circuit who inserts to be connected with the LED lamp pearl, realize the intelligent regulation effect to the temperature self-adaptation of LED lamp pearl, after the temperature risees, through the mode that the thermistor resistance value increases in the cluster income LED lamp pearl, independently reduce the luminance of LED lamp pearl, avoid continuously rising the damage that causes the monitor lamp, effectively guarantee the application robustness and the security of monitor lamp, and the setting of switching heat-proof card can also realize carrying out the heat insulation effect to the monitor head, reduce the damage that the high temperature caused the monitor head, guarantee the validity of monitor head.
Drawings
FIG. 1 is an isometric view of a monitor lamp according to embodiments 1 and 2 of the present application;
FIG. 2 is an explosion diagram of a monitor lamp according to embodiments 1 and 2 of the present application;
FIG. 3 is an electrical logic diagram of the intelligent monitor lamp control system according to embodiments 1 and 2 of the present application;
FIG. 4 is a cross-sectional view of a monitor lamp according to embodiments 1 and 2 of the present application;
FIG. 5 is an exploded view of the monitor head, adapter heat shield card and temperature sensing ring of embodiments 1 and 2 of the present application;
FIG. 6 is a top view of the monitor head, adapter heat shield and temperature sensing ring of embodiments 1 and 2 of the present application;
FIG. 7 is a top cross-sectional view of a temperature sensing ring according to embodiments 1 and 2 of the present application;
fig. 8 is an electric control circuit diagram in an electric control box according to embodiments 1 and 2 of the present application.
The reference numerals in the figures illustrate:
the LED lamp comprises a lamp cover 1, a mounting top plate 11, a dust cover 12, LED lamp beads 13, a monitoring head 2, a switching sleeve 21, a horizontal rotating motor 22, a switching heat insulation card 3, a temperature sensing ring 4, a buckling bottom plate 41, a temperature sensing cavity 42, a guiding arc groove 43, a heat dissipation hole 44, a temperature sensing heat dissipation strip 5, a guiding ball bead 51, a heat dissipation push plate 52, an electric control box 6, a ventilation sponge 7 and a thermistor 71.
Detailed Description
The following describes 2 embodiments of the present application in detail with reference to the accompanying drawings.
Embodiment 1:
fig. 1-8 show a lamp cover 1, a switching heat insulation card 3 arranged on the upper inner wall of the lamp cover 1 and a monitoring head 2 which is connected with the switching heat insulation card 3 and is arranged at the lower end of the lamp cover 1, wherein the outer end of the switching heat insulation card 3 is fixedly sleeved with a temperature sensing ring 4, the lower end of the temperature sensing ring 4 is fixedly connected with a buckling bottom plate 41 matched with the lamp cover 1, a temperature sensing cavity 42 is arranged in the temperature sensing ring 4, and two thermistors 71 which are symmetrically arranged are fixedly arranged in the temperature sensing cavity 42;
the upper end of the lamp cover 1 is buckled with a dust cover 12, the lower inner wall of the dust cover 12 is fixedly provided with an LED lamp bead 13, the upper end of the dust cover 12 is fixedly provided with an electric control box 6 matched with the monitoring head 2, the LED lamp bead 13 and a thermistor 71, a monitoring main board is fixedly arranged in the electric control box 6, an electric control circuit is printed in the monitoring main board, and the thermistor 71 and the electric control circuit connected to the LED lamp bead 13 form series connection;
an intelligent monitoring lamp regulation and control system is mounted in the monitoring main board and comprises a regulation and control processing unit, wherein the input end of the regulation and control processing unit is connected with a monitoring acquisition unit, a lamplight feedback unit and an instruction receiving unit, and the output end of the regulation and control processing unit is connected with a monitoring lamp regulation unit and a monitoring data transmission unit;
the input end of the monitoring acquisition unit is in signal connection with the monitoring head 2, the input end of the lamplight feedback unit is in signal connection with the electric control circuit, and the input end of the instruction receiving unit is respectively in signal connection with the control switch and the mobile control end through a wireless receiving and transmitting antenna arranged in the electric control box 6;
the output end of the monitoring lamp adjusting unit is respectively connected with the monitoring head 2 and the LED lamp beads 13 in a signal manner, the output end of the monitoring data transmission unit is respectively connected with the cloud server and the mobile control end in a signal manner through a wireless receiving and transmitting antenna installed in the electric control box 6, the state monitoring and guaranteeing of the monitoring lamp in the using process are effectively achieved through the cooperation of the thermistor 71, the electric control circuit and the intelligent monitoring lamp adjusting system, the temperature rising of the monitoring lamp can be achieved when the LED lamp beads 13 are started for a long time or due to overhigh brightness adjustment, the intelligent adjusting function of the temperature self-adaptation of the LED lamp beads 13 can be achieved through the way that the thermistor 71 is connected into the electric control circuit connected with the LED lamp beads 13, after the temperature rising, the brightness of the LED lamp beads 13 is automatically reduced through the way that the resistance value of the thermistor 71 is increased in a serial-in the LED lamp beads 13, the damage to the monitoring lamp is avoided, the application robustness and the safety of the monitoring lamp are effectively guaranteed, and the heat insulation effect can also be achieved through the arrangement of the switching heat insulation card 3, the damage to the monitoring head 2 caused by the high temperature is reduced, and the effectiveness of the monitoring head 2 is guaranteed.
Fig. 1-7 show that the upper end of the dust cover 12 is fixedly connected with the mounting top plate 11 positioned on the upper side of the electric control box 6, the lower end of the lamp cover 1 is provided with a monitoring hole matched with the switching heat insulation card 3, the upper end of the monitoring head 2 is rotationally connected with the switching sleeve 21, the upper end of the switching sleeve 21 penetrates through the monitoring hole and is in threaded connection with the switching heat insulation card 3, the switching heat insulation card 3 and the switching sleeve 21 are made of heat insulation materials, the heat is prevented from being transferred to the monitoring head 2 in the use process of the monitoring lamp, the damage degree of heat to the monitoring head 2 is reduced, the effectiveness and the stability of monitoring data acquisition of the monitoring head 2 are ensured, the portable mounting and the dismounting of the monitoring lamp are realized through the mounting cooperation of the switching heat insulation card 3, the switching sleeve 21 and the monitoring hole, the maintenance difficulty in the subsequent use process can be effectively reduced while the production difficulty is reduced, and the economic benefit of the monitoring lamp is fully improved.
Fig. 4 shows that the external diameter of the heat-insulating adapter card 3 is 1.1-1.5 times of the aperture of the monitoring hole, the external diameter of the fastening bottom plate 41 is 1.1-1.5 times of the external diameter of the heat-insulating adapter card 3, and the connection stability of the monitoring head 2 and the lamp shade 1 can be further ensured by matching the heat-insulating adapter card 3 with the fastening bottom plate 41.
Fig. 1-7 show that the adapter sleeve 21 is internally and fixedly provided with the horizontal rotating motor 22, the output shaft at the lower end of the horizontal rotating motor 22 is fixedly connected with the monitoring head 2 through a coupler, the monitoring head 2 is internally and fixedly provided with the vertical rotating motor, the output end shaft at the front end of the vertical rotating motor is fixedly connected with the camera which is rotatably arranged at the front end of the monitoring head 2, the output end of the monitoring lamp adjusting unit is respectively connected with the horizontal rotating motor 22 and the vertical rotating motor through signals, the control of the monitoring head 2 can be effectively realized through the arrangement of the horizontal rotating motor 22 and the vertical rotating motor, the monitoring lamp adjusting unit can collect the indoor monitoring in a full range, and the usability of the monitoring head 2 is fully ensured.
Fig. 1-8 show that the output end of the regulation and control processing unit is also connected with an intelligent light regulation and control unit, the output end of the intelligent light regulation and control unit is connected with an intelligent lamp through a wireless receiving and sending antenna installed in the electric control box 6, the functions and the intelligent effects of the monitoring lamp can be further improved through the arrangement of the intelligent light regulation and control unit, the effectiveness of indoor illumination can be ensured when the brightness of the LED lamp beads 13 is reduced due to overhigh temperature, the intelligent lamp can be matched with other intelligent lamps in the room for use, the intelligent lamp can be regulated and controlled in an auxiliary mode, and the effectiveness of illumination can be effectively ensured when the normal use of the monitoring lamp and the high-temperature damage of the monitoring lamp are ensured.
Fig. 1-8 show that the monitoring lamp can be installed at an indoor ceiling through an installation top plate 11, further realize the full-range detection effect on the indoor environment, play an effective safety monitoring role, and can also increase the collection definition and precision of the monitoring picture of the monitoring head 2 through the cooperation of the LED lamp beads 13 and the monitoring head 2, in the using process of the monitoring lamp, a user can control the monitoring lamp through a control switch and a mobile control end, an instruction receiving unit converts a control instruction and then transmits the control instruction to a regulation and control processing unit, the regulation and control processing unit can control and regulate according to the instruction of the user, the requirement of the user is met, the camera at the front end of the monitoring head 2 transmits the collected data to a monitoring collection unit, the monitoring collection unit transmits the monitoring data to a regulation and control processing unit, the regulation and control processing unit judges the collected data, when the monitoring acquisition data is judged to be abnormal, the monitoring data is normally transmitted to the monitoring data transmission unit, so that the monitoring data transmission unit stores the monitoring data into the cloud server and displays images to the mobile terminal, when the monitoring data is judged to be abnormal, the monitoring data transmission unit transmits the same data to the mobile terminal, and simultaneously sends an abnormal prompt to the mobile terminal, the monitoring head 2 is controlled to send an alarm through the monitoring lamp adjusting unit, the horizontal rotating motor 22 and the vertical rotating motor on the monitoring head 2 are controlled to control the camera of the monitoring head 2, the abnormality is tracked, the LED lamp beads 13 are controlled to be lightened through the monitoring lamp adjusting unit at night, the monitoring head 2 is assisted to acquire the abnormality, the definition and the accuracy of the monitoring acquisition are ensured, and in addition, the LED lamp beads 13 are lightened, the night lamp lighting effect can be generated, so that some abnormal behaviors are warned, and the safety guarantee effect is effectively achieved;
when the LED lamp beads 13 are lightened for a long time or work with high power, the temperature in the monitoring lamp is continuously increased due to the increase of the monitoring load and the effect of the light of the LED lamp beads 13, further after the thermistor 71 senses the temperature change, the resistance value of the thermistor is continuously increased, the current input into the LED lamp beads 13 can be effectively reduced, the effect of closing or weakening the illumination intensity is realized, the self-adaptive intelligent light adjusting effect of the monitoring lamp is effectively assisted, after the temperature of the follow-up monitoring lamp is gradually recovered, the resistance value of the thermistor 71 is recovered to a smaller value, the effect of the LED lamp beads 13 is continuously recovered, the effect of the monitoring lamp is effectively ensured, the heat damage probability of the monitoring lamp is reduced, and when the intelligent lamp matched with the monitoring lamp is installed in a home, the signal transmission of a wireless transceiver antenna is realized, the control processing unit is enabled to reduce the current amount fed into the LED lamp beads 13 through the electric control circuit fed back by the lamplight feedback unit, when the current amount is inconsistent with the original control parameters, the intelligent lamplight control unit is controlled to start, a control signal is sent to the intelligent lamp through the wireless transceiver antenna, the intelligent lamp can compensate the weakened brightness of the LED lamp beads 13, the indoor lamplight illumination effect is effectively ensured, the auxiliary use can be carried out when monitoring is abnormal, the accurate and clear range of monitoring head 2 for abnormal monitoring acquisition is further improved, the state monitoring and ensuring in the use process of the monitoring lamp are effectively realized, the temperature of the monitoring lamp is increased when the LED lamp beads 13 are started for a long time or due to overhigh brightness adjustment, the self-adaptive intelligent regulation effect on the temperature of the LED lamp beads 13 is realized through the way that the thermistor 71 is connected to the electric control circuit connected with the LED lamp beads 13, after the temperature is increased, the brightness of the LED lamp beads 13 is automatically reduced in a mode that the resistance value of the heat sensitive resistor 71 is increased in the LED lamp beads 13 in a serial manner, damage to the monitoring lamp caused by continuous temperature increase is avoided, the application robustness and safety of the monitoring lamp are effectively ensured, the heat insulation effect on the monitoring head 2 can be realized through the arrangement of the switching heat insulation card 3, damage to the monitoring head 2 caused by high temperature is reduced, and the effectiveness of the monitoring head 2 is ensured;
the electric control circuit is divided into a mains supply access part, an LED lamp bead 13 power supply part and a monitoring head 2 power supply part, and also comprises a monitoring and lamp bead regulating part arranged at the electric control box 6, the mains supply access part rectifies and converts the mains supply, the LED lamp bead 13 power supply part comprises circuits of U1, U2 and U4 parts, the LED lamp bead 13 is powered, the monitoring head 2 power supply part is a U3 part, the continuous power supply of the monitoring head 2 is kept, the monitoring and lamp bead regulating part realizes the control and conduction functions of an intelligent monitoring lamp regulating system on the circuit when the LED lamp bead 13 and the monitoring head 2 are regulated, the control of parameters such as the opening, closing, color temperature, illumination intensity and the like of the LED lamp bead 13 is realized through the effect of a monitoring main board, and the control of the position and the action of the data acquisition of the monitoring head 2 is realized.
Embodiment 2:
fig. 1-8 show that a pair of symmetrically arranged ventilation sponges 7 are fixedly connected in the temperature sensing cavity 42, the ventilation sponges 7 can carry out dustproof filtration on gas sucked into the temperature sensing cavity 42 when the subsequent temperature sensing heat dissipation strip 5 generates reset deformation, the cleanliness inside the temperature sensing cavity 42 is effectively ensured, the matched effectiveness of the temperature sensing ring 4 and the temperature sensing heat dissipation strip 5 is ensured, the ventilation sponges 7 are fixedly connected with the corresponding thermistors 71, a plurality of heat dissipation holes 44 communicated with the temperature sensing cavity 42 are formed on the temperature sensing ring 4, one end of the ventilation sponges 7 far away from the thermistors 71 is fixedly connected with the temperature sensing heat dissipation strip 5 which is slidably arranged in the temperature sensing cavity 42, one end of the temperature sensing heat dissipation strip 5 far away from the ventilation sponges 7 is fixedly connected with a guide ball 51, one end of the guide ball 51 far away from the temperature sensing heat dissipation strip 5 is fixedly connected with a heat dissipation push plate 52 which is in sliding fit with the temperature sensing cavity 42, the heat dissipation push plate 52 and the temperature sensing cavity 42 are in sealed sliding fit, the heat dissipation push plate 52 can be made of materials such as rubber, a piston-like movement mode can be formed with the temperature sensing cavity 42, and then the effect of blowing in the lamp cover 1 through the heat dissipation holes 44 can be effectively achieved, the self-adaptive intelligent adjustment of the brightness of the LED lamp beads 13 through temperature sensing is effectively achieved through the arrangement of the temperature sensing heat dissipation strips 5, the deformation of the temperature sensing heat dissipation strips 5 can be controlled according to the resistance change of the thermistor 71, the purpose of promoting the air circulation of the periphery side of the monitoring lamp and improving the heat dissipation efficiency is effectively achieved, the service life of the monitoring lamp is effectively prolonged, and the functional effect of the monitoring lamp is improved.
Fig. 1-8 show that the inner walls of the temperature-sensing heat dissipation strips 5 are respectively and fixedly connected with heat dissipation electromagnetic blocks near the ventilation sponge 7 and the inner wall of one side near the guide ball 51, and an elastic guide strip is fixedly connected between the two heat dissipation electromagnetic blocks;
the input of regulation and control processing unit still is connected with resistance sensing unit, the output of regulation and control processing unit still is connected with temperature sensing heat dissipation unit, resistance sensing unit's input and thermistor 71 signal connection, temperature sensing heat dissipation unit's output and heat dissipation electromagnetic block signal connection, through the cooperation of heat dissipation electromagnetic block, resistance sensing unit and temperature sensing heat dissipation unit, effectively realized the radiating effect of monitor lamp intelligence, when can be according to resistance change data realization auxiliary role to the heat dissipation, can also be according to the effect of monitor head 2 service environment demand, when can monitor head 2 needs illumination, through increasing radiating cooperation, effectively guarantee the validity of LED lamp pearl 13 start illumination, can cooperate monitor head 2 to monitor data accurate acquisition, the monitor effect nature of monitor head 2 and data acquisition precision are improved, play effectual environmental protection.
Fig. 1-8 show that the guiding ball 51 is fixedly connected with a guiding rotary column, the inner wall of the temperature sensing cavity 42 is provided with a guiding arc groove 43 matched with the guiding rotary column, and the guiding rotary column and the guiding arc groove 43 are matched with each other, so that the temperature sensing heat dissipation strip 5 and the deformation direction can be effectively guided and limited, the smoothness of movement of the heat dissipation push plate 52 is effectively ensured, the fluidity of air in the lamp cover 1 is promoted, and the effect of rapid heat dissipation is realized.
1-8 show that the monitoring lamp adjusting unit comprises a monitoring lamp processing module, wherein the input end of the monitoring lamp processing module is connected with an instruction classification module, and the output end of the monitoring lamp processing module is respectively connected with a light adjusting and controlling module, a monitoring and controlling module and an abnormal adjusting and controlling module;
the input end regulation and control processing unit signal connection of instruction classification module, light regulation and control module pass through electric control circuit and LED lamp pearl 13 signal connection, and control regulation and control module passes through electric control circuit and control head 2 signal connection, and the output of unusual regulation and control module passes through electric control circuit and respectively with LED lamp pearl 13, control head 2 and temperature sensing heat dissipation unit signal connection.
The control processing unit sends instructions to the instruction classification module of the monitoring lamp adjusting unit through the monitoring data and the control instruction data, so that the instruction classification module classifies the instructions according to the types of the instructions, the instructions are transmitted to the monitoring lamp processing module, the monitoring lamp processing module controls the follow-up module according to the classified instructions, when receiving the lamplight control instructions, the lamplight instructions are transmitted to the lamplight control module, the lamplight control module controls the LED lamp beads 13 to act, the electronic control circuit controls the states of the LED lamp beads 13 such as on-off, brightness, color temperature and the like, when receiving the monitoring control instructions, the monitoring instructions are transmitted to the monitoring control module, the monitoring control module sends control instructions to the monitoring head 2, the horizontal rotating motor 22 and the vertical rotating motor, the monitoring head 2 is controlled to act, when receiving the abnormal control instructions, the abnormal regulation and control instruction is transmitted to the abnormal regulation and control module, the abnormal regulation and control module respectively controls the monitoring head 2 and the LED lamp beads 13, controls the LED lamp beads 13 to start, controls the monitoring head 2 to generate abnormal tracking action through the cooperation of the horizontal rotating motor 22 and the vertical rotating motor, controls the loudspeaker on the monitoring head 2 to generate abnormal alarm, controls normal lamplight regulation and control when the monitoring lamp is in a normal state through the cooperation of the lamplight regulation and control module, controls the monitoring and control module, can cooperate with the temperature sensing heat dissipation unit to realize normal illumination action on the monitoring environment of the monitoring head 2 when the monitoring and control data are abnormal, can increase the definition and accuracy of the monitoring head 2 on the abnormal monitoring and control data acquisition through the auxiliary illumination action while reducing the heat accumulation influence use effect, improves the judgment precision of the system, reasonable emergency response can be made according to the abnormal monitoring state, and the safety effect of the monitoring lamp is enhanced.
Fig. 1-8 show that, in the use process of the monitor lamp, if the temperature is too high, so that the thermistor 71 generates resistance change, the self-use intelligent regulation and control function is performed on the LED lamp beads 13, meanwhile, the prevention sensing unit can also sense the prevention change data of the thermistor 71, then the sensed data is transmitted to the regulation and control processing unit, the regulation and control processing unit sends a heat dissipation regulation and control instruction to the temperature sensing and heat dissipation unit, so that the temperature sensing and heat dissipation unit controls the heat dissipation electromagnetic blocks, simultaneously, the two heat dissipation electromagnetic blocks positioned in the same temperature sensing and heat dissipation strip 5 generate the same magnetic pole function, the repulsive interaction can cause the temperature sensing and heat dissipation strip 5 to generate elongation deformation, then the heat dissipation pushing sheet 52 is driven to slide in the temperature sensing cavity 42 under the guidance of the guide ball 51, the guide rotating column and the guide arc groove 43, and the heat dissipation pushing sheet 52 is moved in the temperature sensing cavity 42, the air in the temperature sensing cavity 42 is discharged into the lamp housing 1 through the heat dissipation holes 44, then the air flow is promoted through the gaps of the lamp housing 1, the dust cover 12 and the mounting top plate 11, the effect of blowing the air into the lamp housing 1 is formed, after the heat dissipation push plates 52 move for a period of time, two heat dissipation electromagnetic blocks positioned in the same temperature sensing heat dissipation strip 5 are controlled to generate different magnetic pole effects, the heat sensing heat dissipation strip 5 is contracted and deformed under the cooperation of the attraction effect and the elastic force recovery effect of the elastic guide strip, then the heat dissipation push plates 52 are driven to reversely slide in the temperature sensing cavity 42 under the guidance of the guide ball 51, the guide rotating column and the guide arc groove 43, the air in the lamp housing 1 can be absorbed through the heat dissipation holes 44 through the sliding of the heat dissipation push plates 52, then the air flow is promoted through the gaps of the lamp housing 1, the dust cover 12 and the mounting top plate 11, by repeatedly controlling the deformation action of the temperature-sensing heat dissipation strip 5 in this way, the rapid heat dissipation and cooling effect on the monitoring lamp is realized, the damage to the monitoring lamp caused by overheating is effectively avoided, and the effectiveness of the LED lamp beads 13 is recovered in time;
and when abnormal state appears because the control appears, when needs LED lamp pearl 13 keep opening supplementary control head 2 and monitor the collection, synchronous start temperature sensing heat dissipation unit effect keeps the air flowability of control lamp, promotes the heat dissipation, avoids the heat to pile up the rising that causes the temperature for thermistor 71's resistance value increase influences the illumination effect of LED lamp pearl 13, and then has effectively guaranteed application stability and validity.
The scope of protection of the above-described embodiments employed in the present application is not limited to the above-described embodiments, and various changes made by those skilled in the art without departing from the spirit of the present application are still within the scope of protection of the present invention.

Claims (8)

1. An intelligent monitor lamp, its characterized in that: the intelligent lamp comprises a lamp shade (1), a switching heat insulation card (3) arranged on the upper inner wall of the lamp shade (1) and a monitoring head (2) arranged at the lower end of the lamp shade (1) in a connecting mode through being connected with the switching heat insulation card (3), wherein a temperature sensing ring (4) is fixedly sleeved at the outer end of the switching heat insulation card (3), a buckling bottom plate (41) matched with the lamp shade (1) is fixedly connected to the lower end of the temperature sensing ring (4), a temperature sensing cavity (42) is formed in the temperature sensing ring (4), and two thermistors (71) which are symmetrically arranged are fixedly arranged in the temperature sensing cavity (42);
the LED lamp comprises a lamp cover (1), wherein the upper end of the lamp cover (1) is buckled with a dust cover (12), an LED lamp bead (13) is fixedly arranged on the lower inner wall of the dust cover (12), an electric control box (6) matched with a monitoring head (2), the LED lamp bead (13) and a thermistor (71) is fixedly arranged at the upper end of the dust cover (12), a monitoring main board is fixedly arranged in the electric control box (6), an electric control circuit is printed in the monitoring main board, and the thermistor (71) and the electric control circuit connected to the LED lamp bead (13) form series connection;
an intelligent monitoring lamp regulation and control system is mounted in the monitoring main board and comprises a regulation and control processing unit, wherein the input end of the regulation and control processing unit is connected with a monitoring acquisition unit, a lamplight feedback unit and an instruction receiving unit, and the output end of the regulation and control processing unit is connected with a monitoring lamp regulation unit and a monitoring data transmission unit;
the input end of the monitoring acquisition unit is in signal connection with the monitoring head (2), the input end of the lamplight feedback unit is in signal connection with the electric control circuit, and the input end of the instruction receiving unit is respectively in signal connection with the control switch and the mobile control end through a wireless receiving and transmitting antenna arranged in the electric control box (6);
the output end of the monitoring lamp adjusting unit is respectively connected with the monitoring head (2) and the LED lamp beads (13) in a signal mode, and the output end of the monitoring data transmission unit is respectively connected with the cloud server and the mobile control end in a signal mode through a wireless receiving and transmitting antenna arranged in the electric control box (6).
2. An intelligent monitor light as set forth in claim 1, wherein: the temperature sensing chamber (42) is interior still fixedly connected with a pair of ventilative sponge (7) that are the symmetry setting, and ventilative sponge (7) and corresponding thermistor (71) fixed connection, set up a plurality of louvres (44) that are linked together with temperature sensing chamber (42) on temperature sensing ring (4), ventilative sponge (7) are kept away from thermistor (71) one end fixedly connected with slip setting in temperature sensing chamber (42) temperature sensing heat dissipation strip (5), ventilative sponge (7) one end fixedly connected with guide ball (51) are kept away from to temperature sensing heat dissipation strip (5), guide ball (51) are kept away from temperature sensing heat dissipation strip (5) one end fixedly connected with and are sliding fit's heat dissipation fin (52) with temperature sensing chamber (42).
3. An intelligent monitoring lamp as set forth in claim 2, wherein: the inner walls of the temperature-sensing radiating strips (5) are respectively and fixedly connected with radiating electromagnetic blocks close to the ventilation sponge (7) and the inner wall of one side close to the guiding ball (51), and an elastic guiding strip is fixedly connected between the two radiating electromagnetic blocks;
the input end of the regulation and control processing unit is also connected with a resistance value sensing unit, the output end of the regulation and control processing unit is also connected with a temperature sensing heat dissipation unit, the input end of the resistance value sensing unit is in signal connection with a thermistor (71), and the output end of the temperature sensing heat dissipation unit is in signal connection with a heat dissipation electromagnetic block.
4. An intelligent monitoring lamp as set forth in claim 2, wherein: the guiding ball (51) is fixedly connected with a guiding rotating column, and a guiding arc groove (43) matched with the guiding rotating column is formed in the inner wall of the temperature sensing cavity (42).
5. An intelligent monitoring lamp as set forth in claim 3, wherein: the monitoring lamp adjusting unit comprises a monitoring lamp processing module, wherein the input end of the monitoring lamp processing module is connected with an instruction classification module, and the output end of the monitoring lamp processing module is respectively connected with a lamplight adjusting and controlling module, a monitoring and controlling module and an abnormal adjusting and controlling module;
the LED lamp comprises an LED lamp bead (13), a light control module, an instruction classification module, a monitoring control module, an abnormal control module, an LED lamp bead (13), a monitoring head (2) and a temperature sensing heat dissipation unit, wherein the input end of the instruction classification module is connected with the control processing unit through signals, the light control module is connected with the LED lamp bead (13) through an electric control circuit, the monitoring control module is connected with the monitoring head (2) through signals, and the output end of the abnormal control module is connected with the LED lamp bead (13), the monitoring head (2) and the temperature sensing heat dissipation unit through signals through electric control circuits.
6. An intelligent monitor light as set forth in claim 1, wherein: the anti-dust lamp is characterized in that the upper end of the dustproof cover (12) is fixedly connected with a mounting top plate (11) positioned on the upper side of the electric control box (6), a monitoring hole matched with the switching heat insulation card (3) is formed in the lower end of the lamp cover (1), the upper end of the monitoring head (2) is rotationally connected with an adapter sleeve (21), and the upper end of the adapter sleeve (21) penetrates through the monitoring hole and is in threaded connection with the switching heat insulation card (3).
7. An intelligent monitoring lamp as set forth in claim 6, wherein: the external diameter of the switching heat insulation card (3) is 1.1-1.5 times of the aperture of the monitoring hole, and the external diameter of the buckling bottom plate (41) is 1.1-1.5 times of the external diameter of the switching heat insulation card (3).
8. An intelligent monitor light as set forth in claim 1, wherein: the output end of the regulation and control processing unit is also connected with an intelligent light regulation and control unit, and the output end of the intelligent light regulation and control unit is connected with an intelligent lamp through a wireless receiving and transmitting antenna arranged in an electric control box (6).
CN202311431880.3A 2023-10-31 2023-10-31 Intelligent monitor lamp Active CN117869846B (en)

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