A universal intelligent module assembly and LED lamp set with the same
By using a distributed modular design, the general-purpose intelligent module components solve the problems of low modularity and limited functionality in LED light groups, enabling convenient installation and multi-functional expansion, and improving compatibility and service life.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- SHANDONG KEMING PHOTOELECTRIC TECH CO LTD
- Filing Date
- 2025-06-19
- Publication Date
- 2026-04-14
AI Technical Summary
Existing LED light sets have a low degree of modularity, resulting in complex control board structures, reduced heat dissipation affecting lifespan, limited functionality, poor compatibility, and inconvenient installation and maintenance.
The general-purpose intelligent modular component adopts a distributed modular design, including a cover, connector, plug, and expansion mechanism. The installation, replacement, and functional expansion of each component are realized through electrical connection, making it suitable for different scenarios.
It enables convenient installation and disassembly of LED light groups, improves the compatibility and versatility of modules, supports the expansion of various intelligent functions, and is suitable for various LED light groups.
Smart Images

Figure CN120667695B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of lighting product technology, specifically to a universal intelligent module component and an LED lamp assembly having the component. Background Technology
[0002] LED, or Light Emitting Diode, boasts advantages such as high efficiency, energy saving, long lifespan, and environmental friendliness, and is widely used in lighting, display, and decoration. An LED light assembly is an integrated lighting device consisting of an LED light source array, intelligent control module, power drive unit, and heat dissipation structure, achieving high-efficiency light emission and thus being suitable for home lighting, commercial lighting, landscape lighting, industrial lighting, and other scenarios.
[0003] With the increasing demand for smart lighting, LED light sets not only need to have basic light-emitting functions, but have also developed integrated smart control modules to achieve intelligent functions such as dimming, color adjustment, control, and scene linkage.
[0004] Currently, in addition to the existing light-emitting circuit units of conventional LED light sets, control units or modules are added to give the LED light sets intelligent functions. Common intelligent functions include: human body detection, which illuminates the LED light set only when a person moves into the detection range; and light detection, which illuminates the LED light set only when there is insufficient ambient light. It is evident that by incorporating intelligent modules for human body detection and light detection, LED light sets can be turned on and off according to actual usage scenarios, thereby reducing power consumption.
[0005] The existing methods for adding smart modules to LED light groups are: designing the LED light group and the smart module into an integrated control board, or using a multi-layer board stacking method. However, current LED light groups with added smart module components still have the following technical problems in design and application:
[0006] 1. Low modularity leads to a complex control board structure, which also affects the heat dissipation of the LED light group, reducing its lifespan; and it is also inconvenient to install and maintain.
[0007] 2. Development and design based on specific functions result in limited functionality, leading to poor compatibility and versatility of the light sets. Summary of the Invention
[0008] To address the technical problems existing in the background art, the present invention provides a universal intelligent module component and an LED light group having the component. The distributed modular design allows for easy installation and replacement of various components; it has high compatibility, allowing for the selection of functional components according to needs and application in different scenarios; and it has high versatility, applicable to the expansion of intelligent functions of various LED light groups.
[0009] The technical solution adopted by this invention is:
[0010] A general-purpose intelligent module component includes: a cover, a connecting part, and a plug rod that are fixedly connected in sequence; an expansion mechanism is rotatably disposed inside the cover; a main control mechanism electrically connected to the plug rod is fixedly disposed inside the connecting part; the expansion mechanism and the main control mechanism are electrically connected.
[0011] Furthermore, a convex through plate is provided in the center of the cover, and a flat through plate is provided on one side of the cover. An extension ear is provided extending downward at the inner edge of the lower end of the cover. A slot is provided through the extension ear. The slot is designed to be open downward in the shape of a "┏". A protrusion is provided extending inside the cover, and a locking ear is provided protruding on the inner wall of the extension ear in the middle of the extension ear.
[0012] Furthermore, the convex plate is configured as an outwardly protruding spherical surface; the flat plate is configured as an inwardly recessed plane; the lower end of the cover extending outward from the ear is configured as an annular groove, and a sealing ring is provided inside the annular groove.
[0013] Furthermore, the connecting part has a through hole in the center of the axial direction, and the two ends of the connecting part are respectively provided with a receiving plate groove and an external mounting thread. A mounting seat is provided protruding in the receiving plate groove, and a buckle is provided protruding on the inner wall of the receiving plate groove. A set of screw holes for fixing the insertion rod is provided on the end face of the external mounting thread.
[0014] Furthermore, the buckle consists of a sliding rod and a top head, with the sliding rod slidably inserted into the slot and the top head engaging with the ear.
[0015] Furthermore, the connecting part is configured as a straight cylinder or an elbow.
[0016] Furthermore, the expansion mechanism includes: a disc-shaped expansion plate, an infrared sensor disposed in the center of the expansion plate, the infrared sensor being housed in a convex plate, electrical pins disposed on the expansion plates on both sides of the infrared sensor, a radially open groove disposed on one side of the expansion plate, a through groove disposed through the expansion plate, a collar being movably housed in the through groove, and an installation screw threaded into the collar and connected to the protrusion.
[0017] Furthermore, the main control mechanism includes: a main control board housed in a slot in a receiving plate, the main control board being provided with a photoresistor, an electrical socket, a jumper socket, and a connecting component, the photoresistor passing through the slot and housed in a flat transparent plate, the electrical socket being electrically connected to an electrical pin, and the connecting component being electrically connected to a plug rod.
[0018] Furthermore, the end of the insertion rod is provided with a fixing plate extending radially, and a through hole group is provided through the fixing plate. A fixing screw is provided in the through hole group and the fixing screw is screwed into the screw hole group.
[0019] An LED light assembly with a universal intelligent module component includes:
[0020] The LED light assembly includes: floodlights, tower crane lights, and streetlights. The light box walls of the floodlights, tower crane lights, and streetlights are provided with mounting holes, and a fixing mechanism is fixedly installed in the mounting holes.
[0021] The fixing mechanism includes: a straight cylindrical extension rod or a bent extension elbow, both ends of which are respectively provided with an extension groove and a fixing thread; the inner wall of the extension groove is provided with an internal installation thread that is screwed into the external installation thread; a plug seat that is electrically connected to the plug rod is provided at the center of the bottom of the extension groove; the connection part between the fixing thread and the extension rod / extension elbow is provided with a radially protruding lug; a wiring assembly that is electrically connected to the plug seat is provided at the center of the fixing thread; the wiring assembly is electrically connected to the lamp panel of a floodlight, tower crane light, or street light; a fixing nut is screwed onto the fixing thread; the fixing nut abuts against the inner wall of the light box; a spacer is fitted onto the fixing thread; the two sides of the spacer abut against the outer wall of the light box and the lug, respectively.
[0022] The beneficial effects of the universal intelligent module component and the LED light assembly having the component as described in this invention are as follows:
[0023] 1. The distributed modular LED light assembly board, main control mechanism, and expansion mechanism facilitate the installation and replacement of various components; and the expansion mechanism enables the expansion of intelligent functions, thus allowing application in different usage scenarios.
[0024] 2. Its easy-to-install and disassemble fixing mechanism makes it suitable for a variety of different LED light groups. Attached Figure Description
[0025] Figure 1 This is a three-dimensional schematic diagram of the intelligent module components in an embodiment of the present invention;
[0026] Figure 2 This is an exploded view of the intelligent module components in an example of the present invention;
[0027] Figure 3 This is a schematic diagram of the assembly of the cover and expansion mechanism of the intelligent module component in this invention.
[0028] Figure 4 This is a schematic diagram of the connection part A, main control mechanism, and plug assembly of the intelligent module component in this invention example;
[0029] Figure 5 This is a three-dimensional schematic diagram of the connection part B of the intelligent module component in this invention.
[0030] Figure 6This is a schematic diagram of the extended mechanism circuit of the intelligent module component in this invention.
[0031] Figure 7 This is a schematic diagram of the main control mechanism circuit of the intelligent module component in this invention.
[0032] Figure 8 This is an assembly diagram of the floodlight and fixing mechanism according to an example of the present invention;
[0033] Figure 9 This is a schematic diagram of the tower crane light and fixing mechanism assembly according to an example of the present invention;
[0034] Figure 10 This is a schematic diagram of the assembly of a street lamp and fixing mechanism according to an example of the present invention;
[0035] Figure 11 This is a three-dimensional schematic diagram of the fixing mechanism in an example of the present invention. Figure 1 ;
[0036] Figure 12 This is a three-dimensional schematic diagram of the fixing mechanism in an example of the present invention. Figure 2 .
[0037] In the picture:
[0038] 1. Cap, 11. Raised through plate, 12. Flat through plate, 13. Extension ear, 14. Slot, 15. Protrusion, 16. Locking ear
[0039] 2. Connecting part; 21. Through hole; 22. Receiving plate groove; 23. Mounting base; 24. Snap-fit; 25. Screw hole assembly.
[0040] 26. Install the external thread.
[0041] 31. Expansion mechanism; 310. Expansion board; 311. Infrared sensor; 312. Through slot; 313. Receptacle.
[0042] 314. Electrical pin; 315. Collar; 316. Mounting screw.
[0043] 32. Main control mechanism; 320. Main control board; 321. Photoresistor; 322. Electrical socket; 323. Jumper socket.
[0044] 324. Connecting components,
[0045] 4. Insert rod; 41. Fixing plate; 42. Through hole assembly; 43. Fixing screw.
[0046] 5. Fixing mechanism; 50. Extension rod; 51. Extension groove; 52. Mounting internal thread; 53. Insert rod seat; 54. Fixing thread.
[0047] 55. Lug; 56. Cable assembly; 57. Retaining nut; 58. Spacer; 59. Extension elbow.
[0048] 101. Floodlight; 102. Tower crane light; 103. Street light. Detailed Implementation
[0049] To more clearly and explicitly illustrate the specific objectives and implementation methods of this invention, a complete description of the technical solution of this invention will be provided below. The described embodiments are only a part of the embodiments of this invention, not all of them. Without creative effort, all other embodiments based on the embodiments described in this invention are within the protection scope of this invention.
[0050] This invention provides a general-purpose intelligent module component, such as... Figure 1 , Figure 2 As shown, it includes: a cover 1, a connecting part 2, and a plug 4, which are fixedly connected in sequence.
[0051] like Figure 2 , Figure 3 As shown, a convex through plate 11 is provided in the center of the cover 1. The convex through plate 11 is a spherical surface that protrudes outward. A flat through plate 12 is provided on one side of the cover 1. The flat through plate 12 is a plane that is recessed inward. An extension ear 13 is provided downward at the inner edge of the lower end of the cover 1. The lower end of the cover 1 outside the extension ear 13 is a ring groove. A sealing ring is provided in the ring groove. A slot 14 is provided through the extension ear 13. The slot 14 is a downward open "┏" shape. A protrusion 15 is provided inside the cover 1. Multiple protrusions 15 are arranged in a circular array along the center of the cover 1. A locking ear 16 is provided protruding from the inner wall of the extension ear 13 in the middle of the extension ear 13.
[0052] An expansion mechanism 31 is rotatably provided inside the cover 1, such as Figure 2 , Figure 3 As shown, it includes:
[0053] A disc-shaped expansion plate 310 has an infrared sensor 311 disposed in the center of the expansion plate 310. The infrared sensor 311 is housed in the convex through plate 11. Electrical pins 314 are disposed on the expansion plate 310 on both sides of the infrared sensor 311. A receiving groove 313 is provided radially open on one side of the expansion plate 310. A through groove 312 is provided through the expansion plate 310. Multiple through grooves 312 are arranged in a circular array along the center of the expansion plate 310. A collar 315 is movably housed in the through groove 312. A mounting screw 316 that is screwed to the protrusion 15 passes through the collar 315.
[0054] like Figure 1 , Figure 2 , Figure 4 , Figure 5 As shown, the connecting part 2 is configured as a straight cylinder or an elbow. A through hole 21 is provided through the center of the connecting part 2 in the axial direction. The two ends of the connecting part 2 are respectively provided with a receiving plate groove 22 and an external mounting thread 26. A mounting seat 23 is provided protruding in the receiving plate groove 22. A buckle 24 is provided protruding on the inner wall of the receiving plate groove 22. The buckle 24 is composed of a sliding rod and a top head. The sliding rod is slidably inserted into the slot 14. The top head is engaged with the ear 16. A set of screw holes 25 for fixing the insert rod 4 is provided on the end face of the external mounting thread 26.
[0055] The connecting part 2 is fixedly equipped with a main control mechanism 32 that is electrically connected to the insertion rod 4, such as Figure 2 As shown, it includes:
[0056] The main control board 320 is housed in the receiving plate groove 22. The main control board 320 is provided with a photoresistor 321, an electrical socket 322, a jumper 323, and a connecting component 324. The photoresistor 321 passes through the receiving groove 313 and is housed in the flat transparent plate 12. The electrical socket 322 is arranged in two sets with different numbers of sockets and is electrically connected to the electrical pins 314. The connecting component 324 consists of a connecting lead, a connecting socket, and a connecting plug. The connecting lead is electrically welded to the plug rod 4. The connecting socket is electrically welded to the main control board 320. The connecting plug is electrically connected to the connecting socket.
[0057] like Figure 4 As shown, the end of the insertion rod 4 is provided with a fixing plate 41 extending radially. A perforation group 42 is provided through the fixing plate 41, and a fixing screw 43 is provided inside the perforation group 42. The fixing screw 43 is screwed into the screw hole group 25.
[0058] An LED light assembly with a universal intelligent module component includes:
[0059] The LED light group, such as Figure 8 , Figure 9 , Figure 10 As shown, it includes: floodlight 101, tower crane light 102, and street light 103. The light box walls of the floodlight 101, tower crane light 102, and street light 103 are provided with mounting holes, and a fixing mechanism 5 is fixedly installed in the mounting holes.
[0060] The fixing mechanism 5, such as Figure 11 , Figure 12 As shown, it includes:
[0061] A straight cylindrical extension rod 50 or a bent extension elbow 59 is provided at both ends of the extension rod 50 and the extension elbow 59, respectively, with an extension groove 51 and a fixing thread 54. The inner wall of the extension groove 51 is provided with an internal mounting thread 52 that is screwed onto the external mounting thread 26. A rod holder 53, electrically connected to the insertion rod 4, is provided at the center of the inner bottom of the extension groove 51. The connection between the fixing thread 54 and the extension rod 50 and the extension elbow 59 is provided with a radially protruding lug 55. The center of the fixing thread 54 is provided with a lug electrically connected to the rod holder 53. The wiring assembly 56 is composed of a wiring cable, a wiring cable socket, and a wiring cable plug. The wiring cable is electrically welded to the plug base 53. The wiring cable socket is electrically welded to the lamp panel of the floodlight 101, tower crane light 102, and street light 103. The wiring cable plug is electrically plugged into the wiring cable socket. A fixing nut 57 is screwed onto the fixing thread 54. The fixing nut 57 abuts against the inner wall of the light box. A spacer 58 is fitted on the fixing thread 54. The two sides of the spacer 58 abut against the outer wall of the light box and the lug 55, respectively.
[0062] Based on the specific structure of a general-purpose intelligent module component and an LED light group having the component in the above embodiments, its working principle and method are described below. Figure 6 , Figure 7 As shown, further explanation is provided:
[0063] The plug 4 is configured as a four-core structure, including: VDD power supply terminal, VCC power supply terminal, common ground terminal, and signal terminal.
[0064] The control chip for expansion mechanism 31 is EG4002.
[0065] Pin 1 of the control chip is the output terminal of the operational amplifier, and pin 2 of the control chip is the inverting input terminal. A resistor-capacitor circuit is connected between pins 1 and 2 of the control chip to form a negative feedback circuit, and is electrically connected to the VDD power supply terminal in sequence through coupling capacitor C12 and jumper 323.
[0066] Pin 3 of the control chip is the trigger disable terminal, which disables at low level and enables at high level. It is electrically connected to the VCC power supply terminal through voltage divider resistor R13.
[0067] Pin 4 of the control chip is the repeat trigger control terminal, which is non-repeating when the level is low and repeating when the level is high. It is electrically connected to the VCC power supply terminal through jumper 323.
[0068] Pin 5 of the control chip is the ground terminal, which is electrically connected to the common ground terminal;
[0069] Pin 6 of the control chip is the output terminal. A diode D1 is connected between pin 3 and pin 6 of the control chip. Diode D1 ensures that pin 3 of the control chip is at a high level when an external signal is sent.
[0070] Pin 7 of the control chip is the oscillation frequency control terminal, which provides a clock signal to the control chip to control the signal output time;
[0071] The 8th pin of the control chip is the power supply terminal, which is electrically connected to the VDD power supply terminal.
[0072] A. LED light assembly:
[0073] Select either extension rod 50 or extension elbow 59 according to the usage scenario, insert the fixing thread 54 with spacer 58 into the mounting hole of the LED light set's light box wall, tighten the fixing nut 57 on the fixing thread 54 extending into the LED light set's light box, and electrically connect the LED light set's light panel through the ribbon cable assembly 56.
[0074] B. Light-sensitive LED light assembly:
[0075] B1. Assembly:
[0076] The fixing screws 43 are passed through the through hole group 42 and screwed into the screw hole group 25. The connecting lead of the connecting component 324 is passed through the through hole 21 to the side of the receiving plate groove 22 of the connecting part 2. The main control board 320 is fixed on the mounting base 23 with screws. The connecting plug at the end of the connecting lead of the connecting component 324 is electrically plugged into the connecting socket soldered on the main control board 320. The circuit on the side of the electrical socket 322 is shorted by the jumper 323, so that the coupling capacitor C12 is electrically connected to the VDD power supply terminal.
[0077] Place the cover 1 (without the extension mechanism 31 installed) on one end of the receiving plate groove 22 of the connecting part 2, slide the sliding rod of the buckle 24 into the groove 14 from the “┏”-shaped lower opening to its horizontal part, rotate the cover 1 to make the sliding rod of the buckle 24 slide along the horizontal section of the groove 14 until the top of the buckle 24 engages with the ear 16.
[0078] B2. Working principle:
[0079] After pin 8 of the control chip of the expansion mechanism 31 is powered by the VDD power supply, pin 3 of the control chip performs level detection. The photoresistor 321 is affected by the ambient brightness. When the light is sufficient, the resistance of the photoresistor 321 decreases. As a result, after voltage division by R13, pin 3 of the control chip is at a low level, and pin 2 of the control chip is in an disabled state.
[0080] Conversely, when there is insufficient light, the resistance of photoresistor 321 increases. This, through voltage division by R13, causes pin 3 of the control chip to be at a high level, and pin 2 of the control chip to be in the enabled state.
[0081] The VDD power supply, through coupling capacitor C12 and the negative feedback circuit between pins 1 and 2 of the control chip, causes a change in the voltage at pin 2 of the control chip. This causes pin 6 of the control chip to output a high level, turning on the transistor and sending a control signal outward through the signal terminal of connector 4.
[0082] C. Light-sensing and human-sensing type LED light groups:
[0083] C1. Assembly:
[0084] The fixing screws 43 are passed through the through hole group 42 and screwed into the screw hole group 25. The connecting lead of the connecting component 324 is passed through the through hole 21 to the side of the receiving plate groove 22 of the connecting part 2. The main control board 320 is fixed on the mounting base 23 by screws. The connecting plug at the end of the connecting lead of the connecting component 324 is electrically plugged into the connecting socket soldered on the main control board 320. The circuit on the side of the electrical socket 322 is connected through the jumper 323, so that the expansion mechanism 31 is electrically connected to the coupling capacitor C12 and the VDD power supply terminal respectively.
[0085] The mounting screw 316 with the collar 315 is passed through the through groove 312 and screwed to the protrusion 15. At this time, the collar 315 is movably accommodated in the through groove 312, the expansion plate 310 is spaced between the protrusion 15 and the mounting screw 316, and the infrared sensor 311 is accommodated in the convex through plate 11.
[0086] Electrically insert the electrical pin 314 into the electrical socket 322. The photoresistor 321 is housed in the receiving groove 313. Slide the sliding rod of the latch 24 from the lower opening of the "┏" shape into the slot 14 until it reaches its horizontal position. Rotate the cover 1 to make the sliding rod of the latch 24 slide along the horizontal position of the slot 14 until the top of the latch 24 engages with the ear 16. During the rotation of the cover 1, the expansion board 310, which is electrically connected to the main control board 320, remains in a fixed position. The collar 315 moves along the through groove 312 until the flat plate 12 rotates to the trigger end face of the photoresistor 321.
[0087] C2. Working principle:
[0088] After pin 8 of the control chip for the expansion mechanism 31 is powered by the VDD power supply, pin 3 of the control chip performs level detection. The photoresistor 321 is affected by ambient light. When there is sufficient light, the resistance of photoresistor 321 decreases. The VCC power supply, after being divided by R13, causes pin 3 of the control chip to be at a low level, thus disabling pin 2 and rendering the expansion mechanism 31 inactive. Conversely, when there is insufficient light, the resistance of photoresistor 321 increases. The VCC power supply, after being divided by R13, causes pin 3 of the control chip to be at a high level, thus enabling pin 2 and rendering the expansion mechanism 31 inactive. When mechanism 31 is active, infrared sensor 311 consists of a filter and two infrared receivers connected in series with opposite positive and negative polarities. When infrared sensor 311 is triggered, the signals from the two infrared receivers are different and generate voltages, which causes changes in the GS voltage and DS resistance of the junction field-effect transistor. The voltage across resistor R2 on expansion board 310 changes, and the voltage is transmitted to pin 2 of the control chip via coupling capacitor C12. After the voltage at pin 2 of the control chip changes, pin 6 of the control chip outputs a high level, the transistor conducts, and the control signal is sent out through the signal terminal of plug 4.
[0089] D. Turning the LED lights on and off:
[0090] A relay is soldered onto the LED light panel. The relay is electrically connected to the signal terminal of plug rod 4. When the signal terminal of plug rod 4 is energized, the relay closes and controls the LED beads on the LED light panel to light up. Conversely, when the signal terminal of plug rod 4 is not energized, the relay opens and the LED beads on the LED light panel turn off.
[0091] E. Adjustment of repeated trigger status:
[0092] Adjust the connection status of pin 4 of the control chip to the VCC power supply terminal using jumper 323. When in the open state, pin 4 of the control chip is at a low level and cannot trigger repeating. Only after pin 6 of the control chip is at a low level will pin 2 of the control chip be re-triggered. This works in conjunction with pin 7 of the control chip and is suitable for environments with periodic lighting. When in the closed state, pin 4 of the control chip is at a high level and triggers repeating. Pin 2 of the control chip is always in the triggered state and is suitable for environments with long-term lighting.
[0093] In summary, the above description is merely a preferred embodiment of the present invention and is not intended to limit the scope of the invention. Based on the above description, those skilled in the art can make various changes and modifications without departing from the inventive concept. The technical scope of the present invention is not limited to the contents of the specification; all equivalent variations and modifications of the shape, structure, features, and spirit described within the scope of the claims should be included within the scope of the claims.
Claims
1. A general-purpose intelligent module component, characterized in that: include: The cover (1), the connecting part (2), and the insert (4) are fixedly connected in sequence. A convex through plate (11) is provided in the center of the cover (1), and a flat through plate (12) is provided on the cover (1) on one side of the convex through plate (11). An extension ear (13) is provided extending downward at the inner edge of the lower end of the cover (1). A slot (14) is provided through the extension ear (13). The slot (14) is configured as a downward-open "┏" shape. A protrusion (15) is provided extending inside the cover (1), and a slot (16) is provided protruding on the inner wall of the extension ear (13) in the middle of the extension ear (13). An expansion mechanism (31) is provided inside the cap (1) for rotation. The connecting part (2) is fixedly provided with a main control mechanism (32) that is electrically connected to the plug rod (4); The extended mechanism (31) includes: A disc-shaped expansion plate (310) is provided with an infrared sensor (311) in the center of the expansion plate (310). The infrared sensor (311) is housed in the convex through plate (11). Electrical pins (314) are provided on the expansion plate (310) on both sides of the infrared sensor (311). A groove (313) is provided radially open on one side of the expansion plate (310). A through groove (312) is provided through the expansion plate (310). A collar (315) is movably housed in the through groove (312). An installation screw (316) is provided in the collar (315). The installation screw (316) is screwed to the protrusion (15). The main control mechanism (32) includes: The main control board (320) is housed in the slot (22). The main control board (320) is provided with a photoresistor (321), an electrical socket (322), a jumper (323), and a connecting component (324). The photoresistor (321) is inserted into the slot (313). The electrical socket (322) is electrically connected to the electrical pin (314). The connecting component (324) is electrically connected to the plug (4).
2. The universal intelligent module component according to claim 1, characterized in that: The convex plate (11) is configured as an outwardly convex spherical surface; The flat plate (12) is configured as an inwardly recessed plane; The lower end of the cover (1) on the outside of the extended ear (13) is provided with an annular groove, and a sealing ring is provided in the annular groove.
3. A general-purpose intelligent module component according to claim 1, characterized in that: The connecting part (2) has a through hole (21) through the center in the axial direction. The two ends of the connecting part (2) are respectively provided with a receiving plate groove (22) and an external installation thread (26). A mounting seat (23) is provided protruding inside the receiving plate groove (22). A buckle (24) is provided protruding on the inner wall of the receiving plate groove (22). A screw hole group (25) for fixing the insertion rod (4) is provided on the end face of the external installation thread (26).
4. A general-purpose intelligent module component according to claim 3, characterized in that: The buckle (24) consists of a sliding rod and a top head. The sliding rod is slidably inserted into the slot (14), and the top head is engaged with the ear (16).
5. A general-purpose intelligent module component according to claim 4, characterized in that: The connecting part (2) is configured as a straight cylinder or an elbow.
6. A general-purpose intelligent module component according to claim 3, 4, or 5, characterized in that: The photoresistor (321) is housed in the flat transparent plate (12).
7. A general-purpose intelligent module component according to claim 6, characterized in that: The end of the insertion rod (4) is provided with a fixing plate (41) extending radially. A perforation group (42) is provided through the fixing plate (41). A fixing screw (43) is provided inside the perforation group (42). The fixing screw (43) is screwed into the screw hole group (25).
8. An LED light assembly with a universal intelligent module component, as described in claim 7, characterized in that: The LED light assembly includes: Floodlight (101), tower crane light (102), street light (103), the light box wall of the floodlight (101), tower crane light (102), street light (103) is provided with mounting holes, and a fixing mechanism (5) is fixedly installed in the mounting holes; The fixing mechanism (5) includes: A straight cylindrical extension rod (50) or a bent extension elbow (59) is provided at both ends of the extension rod (50) and the extension elbow (59), respectively, with an extension groove (51) and a fixing thread (54). The inner wall of the extension groove (51) is provided with an internal installation thread (52) that is screwed into the external installation thread (26). The center of the bottom of the extension groove (51) is provided with a plug seat (53) that is electrically connected to the plug rod (4). The connection between the fixing thread (54) and the extension rod (50) and the extension elbow (59) is provided with a radially... The protruding lug (55) and the fixed thread (54) are provided with a cable assembly (56) that is electrically connected to the plug seat (53). The cable assembly (56) is electrically connected to the lamp panel of the floodlight (101), the tower crane light (102), and the street light (103). A fixing nut (57) is screwed on the fixed thread (54). The fixing nut (57) abuts against the inner wall of the light box. A spacer (58) is sleeved on the fixed thread (54). The two sides of the spacer (58) abut against the outer wall of the light box and the lug (55) respectively.
Citation Information
Patent Citations
Conversion device for converting LED dimming lamp into intelligent lamp and intelligent lamp
CN115568060A