LED lamp module and LED lamp

By designing LED lamp modules with adjustable orientation lamp posts and anti-glare parts, the problem of inadequate lighting intensity in indoor environments is solved, and the lighting effect is effectively suppressed and adapted to different environmental needs is achieved.

CN120140674APending Publication Date: 2025-06-13任针锂
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Patent Information

Application Number
CN202510367258.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-26
Publication Date
2025-06-13

AI Technical Summary

Technical Problem

In indoor environments, especially in exhibition venues, lighting with different lighting intensity will cause glare and visual fatigue to the audience, and the lighting intensity cannot be effectively adjusted to meet different environmental needs.

Method used

An LED lamp module is designed, including lamp posts with adjustable orientation and anti-glare parts. The light is reflected through the reflective layer and reflective plate to reduce direct illumination, and the light intensity is adjusted through the servo motor and the light shield to adapt to different environmental needs.

Benefits of technology

It effectively suppresses glare, ensures the lighting intensity of the light, and adjusts the lighting intensity according to environmental needs, reduces visual fatigue and improves the lighting effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an LED lamp module and an LED lamp, and belongs to the technical field of LED lamps, the LED lamp module comprises a lamp post, the lamp post comprises a protective shell, circuit boards, LED lamp beads, a wire and a heat dissipation piece, the protective shell wraps the outer side of the circuit boards arranged in a linear array, the lamp beads are arranged at the lower ends of the circuit boards in the linear array, the wire is electrically connected between the adjacent circuit boards, and the heat dissipation piece is arranged between the adjacent circuit boards. According to the LED lamp, light is reflected through the light reflecting plate and the reflecting layer in the rotating process through the arranged lamp pole and the arranged light shield, the orientation of the lamp pole can be adjusted in the illumination process, and therefore the illumination effect is improved, and the service life of the lamp pole is prolonged. Light can be reflected after being irradiated on the surfaces of the reflecting plate and the reflecting layer, direct irradiation of the light can be avoided, the reflected light can still be used for illumination, the illumination intensity of the lamp pole can be guaranteed, and glare can be effectively restrained.
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Description

Technical Field

[0001] The present invention relates to the technical field of LED lighting fixtures, and more specifically, to an LED lighting fixture module and an LED lighting fixture. Background Art

[0002] An LED lighting fixture module is a component formed by integrating multiple LED lamp beads, a driving circuit, a heat dissipation structure and other components on a unit board. These modules usually appear in the form of rectangles or squares, can operate independently, and can be spliced and combined to form a large-area display screen or lighting system. Generally speaking, an LED module is a product formed by arranging light-emitting diodes together according to certain rules, encapsulating them, and adding some waterproof treatments.

[0003] Due to its unique performance advantages, the LED lighting fixture module is applicable to various environments. It can be used for road lighting, billboards, display screens and landscape lighting in outdoor environments, while in indoor environments, it is used for commercial places, home environments, exhibitions and conferences. When used in indoor environments, especially in exhibition venues, due to the different illumination intensities of different lights inside the exhibition hall, glare is likely to occur when viewers are illuminated by the lights.

[0004] Since different exhibits inside the exhibition hall usually use LED lighting fixture modules with different brightnesses to ensure the viewing effect of the exhibits, and the LED lighting fixture modules in corridors and walking areas require higher-intensity lights, the intensity difference generated when irradiated by different lights will cause glare, resulting in visual fatigue for visitors. If the irradiation intensity of the lights is directly reduced, it will lead to insufficient lighting. Summary of the Invention

[0005] Aiming at the problems existing in the prior art, the purpose of the present invention is to provide an LED lighting fixture module and an LED lighting fixture.

[0006] To solve the above problems, the present invention adopts the following technical solutions, which can enable the lamp post to adjust its orientation during the lighting process, reflect the light, and while the reflected light can still be used for lighting, it can also effectively suppress glare.

[0007] An LED lighting fixture module includes a lamp post. The lamp post includes a protective shell, a circuit board, LED lamp beads, wires and a heat dissipation member. The protective shell wraps around the outside of the circuit board arranged in a linear array. The lamp beads are arranged in a linear array at the lower end of the circuit board. The wires are electrically connected between adjacent circuit boards. The heat dissipation member is arranged on the outside of the protective shell, and the heat dissipation member penetrates through the upper side of the protective shell.

[0008] An LED lamp, comprising a lamp base, the lamp post is arranged on the lower side of the lamp base, a lamp shade is arranged on the outer side of the lamp base, the wire extends to the outer side of the lamp shade, the heat dissipation member extends into the lamp base, and the lamp base is penetrated by the heat dissipation member. Anti-glare components are jointly arranged on the inner and outer sides of the lamp shade. The anti-glare components include a servo motor arranged on the left side of the lamp shade. The output end of the servo motor penetrates into the lamp shade and is fixedly connected with a driving gear. Rotating rods are fixedly connected to both the left and right sides of the lamp base. A flipping member is arranged inside the lamp shade;

[0009] The flipping member includes sleeves sleeved on the outer sides of the rotating rods. A light-shielding cover is fixedly connected between the two sleeves. The light-shielding cover semi-wraps the outer sides of the lamp base and the lamp post. Teeth are fixedly connected in a circular array on the outer side of the sleeve on the left side. The driving gear meshes with the teeth. A rotating groove is formed inside the sleeve. Rotating plates are fixedly connected to the front and rear sides inside the rotating groove. Limit frames are fixedly connected to the front and rear sides of the outer side of the rotating rod. The rotating plates are slidably connected inside the limit frames after rotation. A reflecting plate is fixedly connected to the upper side inside the lamp shade. Reflective layers are laid on the four circumferences inside the lamp shade. The inner diameter of the rotating groove is larger than the opening diameter of the sleeve.

[0010] Furthermore, a light brightness adjustment component is jointly arranged inside the sleeve and on the outer side of the rotating rod. The light brightness adjustment component includes first chutes linearly arranged on the left and right sides inside the limit frame. A support plate is slidably connected inside the limit frame. The front and rear adjacent support plates are distributed in an up-and-down staggered manner. First sliders are fixedly connected in a linear array on both the left and right sides of the support plate. The first sliders are slidably connected inside the first chutes. First compression springs are jointly fixedly connected between the first sliders and the inner walls of the first chutes.

[0011] Furthermore, a tensioning component is jointly arranged on the inner and outer sides of the lamp shade. The tensioning component includes a turntable fixedly connected to the outer side of the sleeve.

[0012] Furthermore, a connecting rope is bound inside the turntable. A moving plate is in sliding contact with the lower side of the lamp shade. The other end of the connecting rope penetrates through the front surface of the lamp shade, and the connecting rope extends to the front surface of the moving plate. Fixed pulleys are fixedly connected to the left and right sides of the lower part of the front surface of the lamp shade. The connecting rope is wound around the outer sides of the fixed pulleys. A cleaning cotton is fixedly connected to the upper side of the moving plate. The upper side of the cleaning cotton is in pressing contact with the lower side of the lamp shade. After the cleaning cotton moves, it is in pressing contact with the lower side of the optical lens.

[0013] Further, a mirror dust removal component is provided both inside and outside the lampshade. The mirror dust removal component includes second chutes opened on the left and right sides at the lower end of the lampshade. A second slider is slidably connected inside the second chutes. The second slider is fixedly connected to the upper side of the moving plate. A second pressure spring is fixedly connected between the front surface of the second slider and the front surface inside the second chutes.

[0014] Further, a wetting component is provided on the lower side of the lampshade. The wetting component includes a storage tank fixedly connected to the lower side of the lampshade.

[0015] Further, a pressure sensor is fixedly connected to the front surface of the storage tank, and a controller is fixedly connected to the front surface of the storage tank. A collision plate is fixedly connected to the lower side of the moving plate. The collision plate is in pressing contact with the pressure sensor. Both the pressure sensor and the controller are electrically connected to an external power supply. Atomizing nozzles are arranged in a linear array at the lower part of the front surface of the storage tank.

[0016] Further, a defogging component is provided both inside and outside the lampshade. The defogging component includes first magnetic blocks fixedly connected to the left and right sides at the upper end of the moving plate.

[0017] Further, a moving groove is opened on the lower side inside the lampshade. The moving groove is above the optical lens. A connecting plate is slidably connected inside the moving groove. Second magnetic blocks are fixedly connected to the left and right sides at the lower end of the connecting plate. The first magnetic blocks and the second magnetic blocks are magnetically adsorbed to each other. A moisture-absorbing cotton is fixedly connected to the lower side of the connecting plate. After the moisture-absorbing cotton moves, it is in sliding contact with the upper side of the optical lens.

[0018] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0019] (1) In the present invention, during the rotation of the lamp post and the light-shielding cover, the light is reflected by the reflector and the reflective layer. Since the lamp post can adjust its orientation during illumination, and the light is reflected after irradiating on the surfaces of the reflector and the reflective layer, direct irradiation of the light can be avoided, and the reflected light can still be used for illumination. This can not only ensure the illumination intensity of the lamp post but also effectively suppress glare.

[0020] (2) In the present invention, different position changes occur during the rotation of the lamp post and the light-shielding cover, so that the intensity of the light is correspondingly adjusted. Since the intensity of the light irradiation will be correspondingly adjusted due to the position changes of the light-shielding cover and the lamp post during rotation, it can not only be adjusted according to environmental requirements, but also the glare generated by the light emitted by the lamp post will be further suppressed.

[0021] (3) By means of the connecting rope provided in the present invention, while adjusting the light-shielding cover, the position of the cleaning cotton is adjusted, and the optical lens is wiped. Since the connecting rope will pull the moving plate and the cleaning cotton during the rotation of the light-shielding cover and the lamp post, the surface of the optical lens can be wiped when the cleaning cotton passes through the optical lens, avoiding the influence of impurities adhering to the surface of the optical lens on the lighting effect of the lamp. Description of the Drawings

[0022] Figure 1 is a schematic structural diagram of the present invention;

[0023] Figure 2 is a schematic cross-sectional structural diagram of the present invention;

[0024] Figure 3 is a left-sectional view structural diagram of the lamp shade of the present invention;

[0025] Figure 4 is a front-sectional view structural diagram of the lamp shade of the present invention;

[0026] Figure 5 is a partially enlarged schematic diagram of the storage box of the present invention;

[0027] Figure 6 is a left-sectional view structural diagram of the light-shielding cover of the present invention;

[0028] Figure 7 is a front-sectional view structural diagram of the lamp post of the present invention

[0029] Figure 8 is a front-sectional view structural diagram of the light-shielding cover of the present invention;

[0030] Figure 9 is a top-sectional view structural diagram of the sleeve of the present invention;

[0031] Figure 10 is a left-sectional view structural diagram of the sleeve of the present invention;

[0032] Figure 11 is a left-sectional view structural diagram of the rotating rod of the present invention.

[0033] Explanation of the reference numerals in the drawings:

[0034] 1. Lamp post, 11. Protective shell; 12. Circuit board; 13. LED lamp beads; 14. Wire; 15. Heat dissipation component; 2. Lamp holder; 3. Lamp shade; 4. Optical lens; 5. Anti-glare component; 51. Servo motor; 52. Driving gear; 53. Rotating rod; 54. Flipping component; 541. Sleeve; 542. Light-shielding cover; 543. Teeth; 544. Rotating groove; 545. Rotating plate; 546. Limit frame; 55. Reflector; 56. Reflective layer; 57. Brightness adjustment component; 571. First chute; 572. First slider; 573. First compression spring; 574. Support plate; 58. Tensioning component; 581. Turntable; 582. Connecting rope; 583. Fixed pulley; 584. Moving plate; 585. Cleaning cotton; 6. Mirror dust removal component; 61. Second chute; 62. Second slider; 63. Second compression spring; 64. Wetting component; 641. Storage box; 642. Pressure sensor; 643. Controller; 644. Bumper plate; 645. Atomizing nozzle; 65. Defogging component; 651. First magnet; 652. Moving groove; 653. Connecting plate; 654. Second magnet; 655. Moisture-absorbing cotton. Detailed implementation manners

[0035] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention; obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0036] Please refer to Figures 1 to 11 , an LED lamp module, including a lamp post 1. The lamp post 1 includes a protective shell 11, a circuit board 12, LED lamp beads 13, a wire 14 and a heat dissipation component 15. The protective shell 11 is wrapped outside the circuit board 12 arranged in a linear array. The lamp beads 13 are arranged in a linear array at the lower end of the circuit board 12. The wire 14 is electrically connected between adjacent circuit boards 12. The heat dissipation component 15 is arranged outside the protective shell 11, and the heat dissipation component 15 penetrates through the upper side of the protective shell 11;

[0037] An LED lamp includes a lamp holder 2. The lamp post 1 is arranged on the lower side of the lamp holder 2. A lamp shade 3 is arranged outside the lamp holder 2. The wire 14 extends to the outside of the lamp shade 3. The heat dissipation component 15 extends into the lamp holder 2, and the lamp holder 2 is penetrated by the heat dissipation component 15. An anti-glare component 5 is jointly arranged on the inner and outer sides of the lamp shade 3. The anti-glare component 5 includes a servo motor 51 arranged on the left side of the lamp shade 3. The output end of the servo motor 51 penetrates into the interior of the lamp shade 3 and is fixedly connected with a driving gear 52. Rotating rods 53 are fixedly connected to both the left and right sides of the lamp holder 2. A flipping component 54 is arranged inside the lamp shade 3;

[0038] The flipping member 54 includes a sleeve 541 sleeved outside the rotating rod 53. A light-shielding cover 542 is fixedly connected between the two sleeves 541. The light-shielding cover 542 semi-wraps the outside of the lamp base 2 and the lamp post 1. Tooth teeth 543 are fixedly connected in an annular array on the outside of the left sleeve 541. The driving gear 52 meshes with the tooth teeth 543. A rotating groove 544 is formed inside the sleeve 541. Rotating plates 545 are fixedly connected to both the front and rear sides inside the rotating groove 544. Limiting frames 546 are fixedly connected to both the front and rear sides of the outside of the rotating rod 53. The rotating plates 545 are slidably connected inside the limiting frames 546 after rotation. A reflecting plate 55 is fixedly connected to the upper side inside the lamp cover 1. Reflective layers 56 are laid around the inside of the lamp cover 1. The inner diameter of the rotating groove 544 is larger than the opening diameter of the sleeve 541.

[0039] A light brightness adjustment assembly 57 is jointly provided inside the sleeve 541 and outside the rotating rod 53.

[0040] By adopting the above technical solution, first, the lamp post 1 is installed below the lamp socket 2. The rotating rods 53 on both sides of the lamp socket 2 are respectively inserted into the rotatable sleeves 541 inside the lamp cover 1, and the lower side of the lamp cover 1 is closed by the optical lens 4. When the lamp post 1 is started, the current is transmitted to the circuit board 12 through the wire 14, and the LED lamp beads 13 connected to the circuit board 12 will be lit. At this time, the light generated by the LED lamp beads 13 will pass through the protective shell 11. At the same time, the heat generated inside the protective shell 11 will be discharged through the heat dissipation part 15. The light generated by the lamp post 1 will pass through the light-shielding cover 542 and the optical lens 4, and provide light for the surrounding area below the environment where the lamp cover 1 is located. Subsequently, the servo motor 51 is started to drive the driving gear 52 located on the left side inside the lamp cover 1 to rotate. Only the outer side of the sleeve 541 on the left side is provided with teeth 543, and the teeth 543 are engaged with the driving gear 52, so that after the driving gear 52 rotates, it will drive the left rotating cylinder to rotate through the teeth 543. At this time, the two rotating plates 545 fixed on the side wall of the rotating groove 544 of the sleeve 541 will gradually move away from the two limiting frames 546 fixed on the outer side of the rotating rod 53. The rotating plate 545 that was originally in contact with the limiting frame 546 will contact another limiting frame 546. The left and right rotating cylinders are respectively on the left and right sides of the light-shielding cover 542. When the left rotating cylinder rotates, the light-shielding cover 542 and the right rotating cylinder will also rotate with it. When the light-shielding cover 542 rotates 180 degrees, the light-shielding cover 542 will completely lose the wrapping of the lamp post 1 and be directly above it. At the same time, the light generated by the lamp post 1 will directly pass through the optical lens 4. At this time, the illumination intensity generated by the lamp post 1 will reach the maximum value. As the servo motor 51 continues to rotate, the rotating plate 545 is restricted by the limiting frame 546 and the light adjustment component 57 inside it, so that the rotating plate 545 will push the limiting frame 546 and the light adjustment component 57 inside it, resulting in the lamp socket 2 fixed to the rotating rod 53 starting to flip. When it rotates 180 degrees again, the lamp post 1 will face upward and the light-shielding cover 542 will face downward. At the same time, after the light generated by the lamp post 1 irradiates on the surface of the reflector 55 inside the lamp cover 1, the reflector 55 reflects the light, and the scattered light around will be reflected by the reflection layer 56 inside the lamp cover 1, so that the light is irradiated out through the light-transmitting cover and the optical lens 4. Since the lamp post 1 can adjust its orientation during the lighting process, and the light irradiating on the surfaces of the reflector 55 and the reflection layer 56 can reflect the light, it can avoid direct light irradiation, and the reflected light can still be used for lighting, which can not only ensure the illumination intensity of the lamp post 1, but also effectively suppress glare.

[0041] Such as Figure 8 and Figure 10As shown, the driving gear 52 and the teeth 543 are both arranged inside the left side wall of the lamp housing 1. The light adjustment assembly 57 includes first sliding grooves 571 linearly arranged on the left and right sides inside the limiting frame 546. A support plate 574 is slidably connected inside the limiting frame 546. The front and rear adjacent support plates 574 are distributed in a vertical offset manner. First sliders 572 are fixedly connected to the left and right sides of the support plate 574 in a linear array. The first sliders 572 are slidably connected in the first sliding grooves 571. A first compression spring 573 is fixedly connected between the first sliders 572 and the inner walls of the first sliding grooves 571.

[0042] By adopting the above technical solution, first, after the servo motor 51 drives the driving gear 52 to rotate in the reverse direction, the sleeve 541 will drive the two rotating plates 545 to rotate inside the rotating groove 544. When it rotates 180 degrees, the rotating plate 545 will contact the support plate 574 inside the limiting frame 546 and extrude the support plate 574. At this time, the first sliders 572 on both sides of the support plate 574 slide in the first sliding grooves 571, and the first sliders 572 extrude the first compression spring 573 until the left and right support plates are on the same horizontal plane. At this time, the sleeve 541 will drive the light-shielding cover 542 to wrap around the outside of the lamp post 1. After the lamp post 1 is lit, the light emitted by the lamp post 1 is blocked by the light-shielding cover 542, and the light passing through the light-shielding cover 542 can still irradiate on the reflector 55 and the reflective layer 56. Subsequently, it is reflected by the reflector 55 and the reflective layer 56. At this time, the reflected light will directly pass through the optical lens 4. At this time, the illumination intensity of the light will be reduced. When the sleeve 541 continues to rotate, the rotating plate 545 extrudes the support plate 574, and the first sliders 572 on both sides of the support plate 574 push the limiting frame 546 through the first compression spring 573, causing the limiting frame 546 to drive the rotating rod 53 to rotate. When the limiting rod rotates 180 degrees again, the light-shielding cover 542 and the lamp post 1 both face downward, and the light emitted by the lit lamp post 1 directly passes through the light-shielding cover 542 and the optical lens 4. The intensity of the light that fails to be reflected will be reduced after passing through the light-shielding cover 542. Since the intensity of the light irradiation will be correspondingly adjusted according to the position changes of the light-shielding cover 542 and the lamp post 1 during the rotation process of the light-shielding cover 542 and the lamp post 1, it can not only be adjusted according to the environmental requirements, but also the glare generated by the light emitted by the lamp post 1 will be further suppressed.

[0043] As Figure 1 and Figure 9 As shown, a tensioning assembly 58 is provided inside and outside the lamp housing 1. The tensioning assembly 58 includes a turntable 581 fixedly connected to the outside of the sleeve 541.

[0044] Inside the turntable 581, a connecting rope 582 is bound. A moving plate 584 is in sliding contact with the lower side of the lamp shade 1. The other end of the connecting rope 582 penetrates the front surface of the lamp shade 1 and extends to the front surface of the moving plate 584. Fixed pulleys 583 are fixedly connected to both the left and right sides of the lower part of the front surface of the lamp shade 1. The connecting rope 582 is wound around the outside of the fixed pulley 583. A cleaning cotton 585 is fixedly connected to the upper side of the moving plate 584. The upper side of the cleaning cotton 585 is in pressing contact with the lower side of the lamp shade 1. After the cleaning cotton 585 moves, it is in pressing contact with the lower side of the optical lens 4.

[0045] A mirror surface dust removal component 6 is provided both inside and outside the lamp shade 1.

[0046] By adopting the above technical solution, first, during the rotation of the sleeve 541, the turntable 581 on the outside of the sleeve 541 will rotate along with it. One end of the connecting rope 582 is bound to the outside of the turntable 581, and the other end passes through the fixed pulley 583 and is fixed to the front surface of the moving plate 584. As the turntable 581 starts to rotate, the connecting rope 582 will gradually be wound around the outside of the turntable 581. After the connecting rope 582 is wound, it will pull the moving plate 584. After the moving plate 584 is pulled, the cleaning cotton 585 above the moving plate 584 will move along with the moving plate 584 and gradually pass through the optical lens 4. Since the light shielding cover 542 and the lamp post 1 are rotating, the connecting rope 582 will pull the moving plate 584 and the cleaning cotton 585, so that the cleaning cotton 585 can wipe the surface of the optical lens 4 during the process of passing through the optical lens 4, avoiding impurities adhering to the surface of the optical lens 4 and affecting the lighting effect of the light.

[0047] As Figure 1 and Figure 5 As shown, a mirror surface dust removal component 6 is provided both inside and outside the lamp shade 1. The mirror surface dust removal component 6 includes second chutes 61 opened on both the left and right sides of the lower end of the lamp shade 1. Second sliders 62 are slidably connected inside the second chutes 61. The second sliders 62 are fixedly connected to the upper side of the moving plate 584. A second compression spring 63 is fixedly connected between the front surface of the second slider 62 and the inner front surface of the second chute 61.

[0048] By adopting the above technical solution, first, after the connecting rope 582 pulls the moving plate 584, the second slider 62 on the upper side of the moving plate 584 will slide in the second chute 61 on the lower side of the lamp cover 1. At the same time, the moving plate 584 drives the cleaning cotton 585 to move under the optical lens 4 and clean the surface of the optical lens 4. When the sleeve 541 rotates in the reverse direction, the connecting rope 582 wound around the outside of the turntable 581 will gradually disengage. At this time, the second pressure spring 63 inside the second chute 61 will push the second slider 62 inside the second chute 61, so that the cleaning cotton 585 wipes the optical lens 4 in the reverse direction. Since the connecting rope 582 pulls the moving plate 584, the moving direction of the cleaning cotton 585 under the optical lens 4 can be controlled according to the rotation direction of the sleeve 541, so that the cleaning cotton 585 can clean the optical lens 4 repeatedly, further ensuring the cleaning efficiency of the cleaning cotton 585 for the optical lens 4.

[0049] As Figures 3 to 5 shown, a wetting component 64 is provided on the lower side of the lamp cover 1, and the wetting component 64 includes a storage tank 641 fixedly connected to the lower side of the lamp cover 1.

[0050] A pressure sensor 642 is fixedly connected to the front surface of the storage tank 641, a controller 643 is fixedly connected to the front surface of the storage tank 641, a striker plate 644 is fixedly connected to the lower side of the moving plate 584, the striker plate 644 is in pressing contact with the pressure sensor 642, and both the pressure sensor 642 and the controller 643 are electrically connected to an external power supply. Atomizing nozzles 645 are arranged in a linear array at the lower part of the front surface of the storage tank 641.

[0051] By adopting the above technical solution, first, when the connecting rope 582 pulls the moving plate 584, when the striker under the moving plate 584 is separated from the pressure sensor 642 on the front surface of the water storage tank under the lamp cover 1, the pressure sensor 642 will transmit information to the controller 643, so that the controller 643 controls the atomizing nozzles 645 to spray the cleaning liquid. When the atomizing nozzles 645 spray for several seconds and then stop working, and the cleaner is atomized and adheres to the lower side of the optical lens 4, the cleaning cotton 585 driven by the moving plate 584 will pass through the optical lens 4. After the impurities adhering to the lower side of the optical lens 4 are softened by the cleaning liquid, the cleaning cotton 585 will wipe them. When the striker contacts the pressure sensor 642 and then moves away again, the atomizing nozzles 645 work again. Since the cleaning cotton 585 driven by the moving plate 584 cleans the optical lens 4, atomizable cleaning liquid can be sprayed to soften the impurities, so that the cleaning efficiency of the cleaning cotton 585 for the impurities is improved, and thus the light intensity of the lamp post 1 is ensured.

[0052] As Figure 3 and Figure 4As shown, a defogging component 65 is provided both inside and outside the lamp shade 1. The defogging component 65 includes first magnets 651 fixedly connected to the left and right sides of the upper end of the moving plate 584.

[0053] A moving groove 652 is formed in the lower side inside the lamp shade 1. The moving groove 652 is located above the optical lens 4. A connecting plate 653 is slidably connected inside the moving groove 652. Second magnets 654 are fixedly connected to the left and right sides of the lower end of the connecting plate 653. The first magnets 651 and the second magnets 654 are magnetically adsorbed to each other. A moisture-absorbing cotton 655 is fixedly connected to the lower side of the connecting plate 653. After the moisture-absorbing cotton 655 moves, it is in sliding contact with the upper side of the optical lens 4.

[0054] By adopting the above technical solution, first, during the movement of the moving plate 584, the two first magnets 651 above it will move together with it. Second magnets 654 are arranged at positions corresponding to the first magnets 651 on the connecting plate 653 that slides inside the moving groove 652 inside the lamp shade 1, and the first magnets 651 and the second magnets 654 are magnetically attracted to each other. After the moving plate 584 moves, the first magnets 651 adsorb the second magnets 654, causing the connecting plate 653 to move following the moving plate 584. At this time, the moisture-absorbing cotton 655 below the connecting plate 653 will pass above the optical lens 4 and wipe and absorb the water mist generated above the optical lens 4. Since the moving plate 584 can drive the connecting plate 653 to move together during the movement, the moisture-absorbing cotton 655 below the connecting plate 653 absorbs and wipes the water mist, and the cleaning cotton 585 moves together with the moisture-absorbing cotton 655, further ensuring the cleaning efficiency of the optical lens 4 and ensuring the intensity of the light again.

[0055] Working principle: Since the teeth 543 are engaged with the driving gear 52, after starting the servo motor 51 to drive the driving gear 52 to rotate, the teeth 543 will drive the drum on the left side to rotate. When the drum on the left side rotates, the light-shielding cover 542 and the drum on the right side will also rotate with it. When the light-shielding cover 542 rotates 180 degrees, the light-shielding cover 542 will completely lose the wrapping of the lamp post 1 and be directly above it. As the servo motor 51 continues to rotate, the rotating plate 545 squeezes the first slider 572 supported by the first pressure spring 573 inside the limit frame 546 through the support plate 574, causing the rotating plate 545 to push the limit frame 546. At this time, the lamp holder 2 fixed to the rotating rod 53 starts to flip. When it rotates 180 degrees again, the lamp post 1 will face upward, while the light-shielding cover 542 faces downward. After the light generated by the lamp post 1 irradiates on the reflecting plate 55 and the reflective layer 56 on the inner surface of the lamp cover 1, the light will be reflected, so that the light passes through the light-transmitting cover and the optical lens 4 and irradiates out. After the servo motor 51 drives the driving gear 52 to rotate in the reverse direction until the left and right support plates are on the same horizontal plane, at this time, the sleeve 541 will drive the light-shielding cover 542 to wrap around the outside of the lamp post 1. After the lamp post 1 is lit, the light emitted by the lamp post 1 is blocked by the light-shielding cover 542, and the light passing through the light-shielding cover 542 can still irradiate on the reflecting plate 55 and the reflective layer 56. When the sleeve 541 continues to rotate, the light-shielding cover 542 and the lamp post 1 both face downward. After the light that fails to be reflected passes through the light-shielding cover 542, the intensity of the light will be reduced. At the same time, the turntable 581 on the outside of the sleeve 541 will rotate with it and wind the connecting rope 582. The other end passes through the fixed pulley 583 and is fixed to the front of the moving plate 584. After the connecting rope 582 is wound, it will pull the moving plate 584, so that the cleaning cotton 585 above the moving plate 584 will move with the moving plate 584. If the striker below the moving plate 584 is separated from the pressure sensor 642 on the front of the water storage tank below the lamp cover 1, the pressure sensor 642 will transmit information to the controller 643, causing the controller 643 to control the atomizing nozzle 645 to spray the cleaning liquid, so that the impurities adhered to the lower part of the optical lens 4 are softened by the cleaning liquid, and then the cleaning cotton 585 will wipe it. When the striker contacts the pressure sensor 642 and moves away again, the atomizing nozzle 645 works again. At the same time, the two first magnetic blocks 651 above the moving plate 584 will attract each other with the second magnetic block 654, and the first magnetic block 651 and the second magnetic block 654 attract each other magnetically. While the connecting plate 653 slides inside the moving groove 652, the moisture-absorbing cotton 655 below it will wipe and absorb the water mist generated above the optical lens 4. When the second slider 62 on the upper side of the moving plate 584 slides in the second sliding groove 61 on the lower side of the lamp cover 1, the second pressure spring 63 will be squeezed by the second slider 62. When the turntable 581 rotates in the reverse direction, the connecting rope 582 is released. While the second pressure spring 63 pushes the second slider 62,The cleaning cotton 585 wipes the optical lens 4 in the reverse direction.,

[0056] The above is only a preferred specific embodiment of the present invention; however, the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution of the present invention and its improved concept, makes equivalent substitutions or changes, and should be covered by the protection scope of the present invention.

Claims

1. An LED lamp module, comprising a lamp post (1), characterized in that: The lamp post (1) comprises a protective shell (11), a circuit board (12), LED lamp beads (13), a wire (14) and a heat sink (15); the protective shell (11) is wrapped around the outside of the circuit board (12) arranged in a linear array; the lamp beads (13) are arranged in a linear array at the lower end of the circuit board (12); the wire (14) is electrically connected between adjacent circuit boards (12); the heat sink (15) is arranged on the outside of the protective shell (11); and the heat sink (15) passes through the upper side of the protective shell (11).

2. An LED lamp, applicable to the LED lamp module according to claim 1, characterized in that: The invention comprises a lamp holder (2), wherein the lamp post (1) is arranged at the lower side of the lamp holder (2), a lamp shade (3) is arranged on the outer side of the lamp holder (2), the wire (14) extends to the outer side of the lamp shade (3), the heat sink (15) extends to the inside of the lamp holder (2), and the lamp holder (2) is penetrated by the heat sink (15), an anti-glare component (5) is arranged on the inner and outer sides of the lamp shade (3), the anti-glare component (5) comprises a servo motor (51) arranged on the left side of the lamp shade (3), the output end of the servo motor (51) penetrates the inside of the lamp shade (3) and is fixedly connected to a driving gear (52), the left and right sides of the lamp holder (2) are fixedly connected to a rotating rod (53), and a flip component (54) is arranged inside the lamp shade (3); The flip member (54) comprises a sleeve (541) sleeved on the outside of the rotating rod (53); a light shield (542) is fixedly connected between the two sleeves (541); the light shield (542) half-wraps the outside of the lamp holder (2) and the lamp post (1); teeth (543) are fixedly connected in a circular array on the outside of the sleeve (541) on the left side; the driving gear (52) and the teeth (543) are meshed with each other; a rotation groove (54) is provided inside the sleeve (541) 4), the front and rear sides of the interior of the rotating groove (544) are fixedly connected to the rotating plate (545), the front and rear sides of the exterior of the rotating rod (53) are fixedly connected to the limiting frame (546), the rotating plate (545) is slidably connected to the interior of the limiting frame (546) after rotation, the upper inner side of the lampshade (3) is fixedly connected to a reflective plate (55), the interior of the lampshade (3) is paved with a reflective layer (56), and the inner diameter of the rotating groove (544) is larger than the opening diameter of the sleeve (541).

3. The LED lamp according to claim 2, characterized in that: The interior of the sleeve (541) and the outer side of the rotating rod (53) are jointly provided with a brightness adjustment component (57), and the brightness adjustment component (57) includes a first slide groove (571) arranged in a linear array on the left and right sides of the limit frame (546), and the interior of the limit frame (546) is slidably connected with a support plate (574), and the two adjacent support plates (574) are staggered in the upper and lower directions, and the left and right sides of the support plate (574) are both arranged in a linear array and fixedly connected with a first slider (572), and the first slider (572) is slidably connected in the first slide groove (571), and a first pressure spring (573) is fixedly connected between the first slider (572) and the inner wall of the first slide groove (571).

4. The LED lamp according to claim 2, characterized in that: The inside and outside of the lampshade (3) are jointly provided with a tensioning assembly (58), and the tensioning assembly (58) comprises a rotating disk (581) fixedly connected to the outside of the sleeve (541).

5. The LED lamp according to claim 4, characterized in that: A connecting rope (582) is bound inside the rotating disk (581); a movable plate (584) is slidably contacted on the lower side of the lampshade (3); the other end of the connecting rope (582) passes through the front side of the lampshade (3), and the connecting rope (582) extends to the front side of the movable plate (584); fixed pulleys (583) are fixedly connected to the left and right sides of the lower front side of the lampshade (3); the connecting rope (582) is wound around the outer side of the fixed pulley (583); a cleaning cotton (585) is fixedly connected to the upper side of the movable plate (584); the upper side of the cleaning cotton (585) is in pressure contact with the lower side of the lampshade (3); and after the cleaning cotton (585) moves, it is in pressure contact with the lower side of the optical lens (4).

6. The LED lamp according to claim 2, characterized in that: The inside and outside of the lampshade (3) are jointly provided with a mirror dust removal component (6), and the mirror dust removal component (6) includes a second slide groove (61) opened on the left and right sides of the lower end of the lampshade (3), and the inside of the second slide groove (61) is slidably connected to a second slider (62), and the second slider (62) is fixedly connected to the upper side of the movable plate (584), and a second pressure spring (63) is fixedly connected between the front side of the second slider (62) and the inner front side of the second slide groove (61).

7. The LED lamp according to claim 6, characterized in that: A wetting assembly (64) is provided on the lower side of the lampshade (3), and the wetting assembly (64) comprises a storage box (641) fixedly connected to the lower side of the lampshade (3).

8. The LED lamp according to claim 7, characterized in that: A pressure sensor (642) is fixedly connected to the front of the storage box (641), a controller (643) is fixedly connected to the front of the storage box (641), a collision plate (644) is fixedly connected to the lower side of the movable plate (584), the collision plate (644) is in compression contact with the pressure sensor (642), the pressure sensor (642) and the controller (643) are both electrically connected to an external power supply, and atomizing nozzles (645) are arranged in a linear array at the lower part of the front of the storage box (641).

9. The LED lamp according to claim 8, characterized in that: The inside and outside of the lampshade (3) are jointly provided with a demisting assembly (65), and the demisting assembly (65) comprises a first magnetic block (651) fixedly connected to the left and right sides of the upper end of the movable plate (584).

10. The LED lamp according to claim 9, characterized in that: A movable groove (652) is provided on the lower inner side of the lampshade (3), and the movable groove (652) is located above the optical lens (4). A connecting plate (653) is slidably connected to the inner side of the movable groove (652), and second magnetic blocks (654) are fixedly connected to the left and right sides of the lower end of the connecting plate (653). The first magnetic block (651) and the second magnetic block (654) are magnetically attracted to each other, and a moisture-absorbing cotton (655) is fixedly connected to the lower side of the connecting plate (653), and the moisture-absorbing cotton (655) is in sliding contact with the upper side of the optical lens (4) after moving.