Universal intelligent module assembly and LED lamp set with same
The universal intelligent module components with decentralized modular design solve the problems of low modularity and single functionality of LED lamp groups, and realize convenient installation and intelligent function expansion suitable for multiple scenarios.
Patent Information
- Application Number
- CN202510823300.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-19
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2045-06-19
AI Technical Summary
The existing LED lamp groups have a low degree of modularity, resulting in a complex control panel structure, heat dissipation affecting service life, single functionality, poor compatibility, and inconvenient installation and maintenance.
The universal intelligent module assembly adopts a decentralized modular design, including a cover, a connection part, a plug-in rod, an expansion mechanism and a main control mechanism. It realizes convenient installation and replacement of each component through plug-in and screw connection, and supports the expansion of multiple intelligent functions.
It realizes the convenient installation and disassembly of LED light groups, improves the compatibility and versatility of modules, and is suitable for intelligent function expansion in various scenarios.
Smart Images

Figure CN120667695A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of lighting products, and in particular to a universal intelligent module component and an LED lamp group having the component. Background Art
[0002] LED (light-emitting diode) technology boasts advantages such as high efficiency, energy saving, long life, and environmental friendliness, making it widely used in lighting, display, and decoration. An LED light module is an integrated lighting device consisting of an LED light source array, an intelligent control module, a power drive unit, and a heat dissipation structure. This highly efficient light-emitting device is suitable for use in a variety of lighting scenarios, including home lighting, commercial lighting, landscape lighting, and industrial lighting.
[0003] With the growing demand for smart lighting, LED lamp groups not only need to have basic lighting functions, but also develop integrated intelligent control modules to realize intelligent functions such as dimming, color adjustment, control, and scene linkage.
[0004] Currently, conventional LED light sets incorporate intelligent functions by adding control units or modules to the existing light-emitting circuit units. Common intelligent functions include: human detection, which illuminates the LED light set only when a person moves within the detection range; and light detection, which illuminates the LED light set only when the ambient light is insufficient. Therefore, LED light sets incorporating intelligent modules for human detection and light detection can illuminate and deactivate the LED light set based on actual usage scenarios, reducing power consumption.
[0005] The existing method of adding smart modules to LED light groups is to design the LED light group and smart modules into an integrated control panel, or to implement it by stacking multiple boards. However, the current LED light groups equipped with smart module components still have the following technical problems in design and application:
[0006] 1. The low degree of modularization leads to a complex structure of the control panel, which also affects the heat dissipation of the LED lamp group and reduces its service life; and it is not convenient for installation and maintenance;
[0007] 2. Developing and designing according to specific functions results in single functionality, making the lamp group's compatibility and versatility poor. Summary of the Invention
[0008] In order to solve the technical problems existing in the background technology, the present invention provides a universal intelligent module component and an LED lamp group having the component. The decentralized modular design can facilitate the installation and replacement of various components; it has high compatibility and can select functional components according to needs and apply them to different scenarios; it has high versatility and can be applied to the expansion of the intelligent functions of various LED lamp groups.
[0009] The technical solution adopted by the present invention is:
[0010] A universal intelligent module assembly comprises: a cover, a connecting portion, and an insertion rod fixedly connected in sequence; an expansion mechanism is rotatably arranged in the cover; a main control mechanism electrically connected to the insertion rod is fixedly arranged in the connecting portion; the expansion mechanism and the main control mechanism are electrically plugged.
[0011] Furthermore, a convex transparent plate is provided in the center of the cover, a flat transparent plate is provided on the cover on one side of the convex transparent plate, an extension ear is provided downwardly extending from the inner edge of the lower end of the cover, a card slot is provided through the extension ear, and the card slot is provided in a downwardly open "┏" shape, a protrusion is extended in the cover, and a card ear is protruded on the inner wall of the extension ear in the middle of the extension ear.
[0012] Furthermore, the convex transparent plate is configured as a spherical surface convex outward; the flat transparent plate is configured as a flat surface concave inward; the lower end of the cover outside the extension ear is configured as an annular groove, and a sealing ring is configured in the annular groove.
[0013] Furthermore, a through hole is provided in the axial center of the connecting part, and a plate receiving groove and an installation external thread are provided at both ends of the connecting part respectively. A mounting seat is protruding from the plate receiving groove, and a buckle is protruding from the inner wall of the plate receiving groove. A screw hole group for fixing the insertion rod is provided on the end face of the installation external thread.
[0014] Furthermore, the buckle is composed of a sliding rod and a top head, the sliding rod is slidably inserted into the slot, and the top head is engaged with the ear.
[0015] Furthermore, the connecting portion is configured to be in a straight cylindrical shape or an elbow shape.
[0016] Furthermore, the expansion mechanism includes: a disc-shaped expansion plate, an infrared sensor is provided in the center of the expansion plate, the infrared sensor is accommodated in the convex plate, electrical pins are provided on the expansion plates on both sides of the infrared sensor, a through groove is provided radially open on one side of the expansion plate, a receiving groove is provided through the expansion plate, a ring is movably provided in the receiving groove, and a mounting screw is passed through the ring and screwed to the protrusion.
[0017] Furthermore, the main control mechanism includes: a main control board accommodated in the board slot, the main control board is provided with a photoresistor, an electrical socket, a jumper seat, and a connecting component, the photoresistor is passed through the through slot and accommodated in the flat transparent plate, the electrical socket is electrically connected to the electrical pin, and the connecting component is electrically connected to the plug rod.
[0018] Furthermore, a fixing plate extending in the radial direction is provided at the end of the insertion rod, a perforation group is provided through the fixing plate, a fixing screw is passed through the perforation group, and the fixing screw is screwed into the screw hole group.
[0019] An LED lamp assembly with a universal intelligent module assembly, comprising:
[0020] The LED lamp group includes: a floodlight, a tower crane lamp, and a street lamp. The light box walls of the floodlight, tower crane lamp, and street lamp are penetrated with mounting holes, and a fixing mechanism is fixed in the mounting hole.
[0021] The fixing mechanism includes: a straight cylindrical extension rod or an elbow-shaped extension elbow, an extension groove and a fixing thread are respectively provided at both ends of the extension rod and the extension elbow, an installation internal thread screwed to the installation external thread is provided on the inner wall of the extension groove, a rod seat for plugging into the rod electrical appliance is provided in the center of the inner bottom of the extension groove, the connection part of the fixing thread and the extension rod and the extension elbow is provided with a radially protruding lug, a wiring assembly electrically connected to the rod seat is provided in the center of the fixing thread, the wiring assembly is electrically plugged into the lamp panel of the floodlight, tower crane and street lamp, a fixing nut is screwed on the fixing thread, the fixing nut abuts against the inner wall of the light box, a spacer is sleeved on the fixing thread, and 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 lamp group having the component of the present invention are as follows:
[0023] 1. The decentralized modular LED light panel, main control mechanism, and expansion mechanism facilitate the installation and replacement of various components. The expansion mechanism also enables the expansion of intelligent functions, thus enabling application in different usage scenarios.
[0024] 2. Through the fixing mechanism that is easy to install and disassemble, it is suitable for a variety of different LED light groups. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] Figure 1 is a schematic overall perspective view of the intelligent module assembly of an embodiment of the present invention;
[0026] Figure 2 Schematic diagram of an exploded view of an intelligent module assembly according to an embodiment of the present invention;
[0027] Figure 3 This is a schematic diagram of the assembly of the cover and expansion mechanism of the smart module assembly of the present invention;
[0028] Figure 4 This is a schematic diagram of the assembly of the connection part A, main control mechanism, and plug rod of the intelligent module assembly of the embodiment of the present invention;
[0029] Figure 5 This is a three-dimensional schematic diagram of the connection portion B of the smart module assembly of the present invention;
[0030] Figure 6This is a schematic diagram of the expansion mechanism circuit of the intelligent module assembly of the present invention;
[0031] Figure 7 This is a schematic diagram of the main control mechanism circuit of the intelligent module assembly of the present invention;
[0032] Figure 8 This is a schematic diagram of the assembly of the floodlight and the fixing mechanism of an example of the present invention;
[0033] Figure 9 This is a schematic diagram of the tower crane and fixing mechanism assembly of an example of the present invention;
[0034] Figure 10 This is a schematic diagram of the assembly of a street lamp and a fixing mechanism according to an embodiment of the present invention;
[0035] Figure 11 This is a three-dimensional diagram of the fixing mechanism of the present invention. Figure 1 ;
[0036] Figure 12 This is a three-dimensional diagram of the fixing mechanism of the present invention. Figure 2 .
[0037] In the picture:
[0038] 1. Cover, 11. Convex plate, 12. Flat plate, 13. Extended ear, 14. Slot, 15. Protrusion, 16. Ear,
[0039] 2. Connecting part, 21. Through hole, 22. Plate slot, 23. Mounting seat, 24. Buckle, 25. Screw hole group, 26. External thread for installation,
[0040] 31. Expansion mechanism, 310. Expansion board, 311. Infrared sensor, 312. Through slot, 313. Receiving slot, 314. Electrical pin, 315. Ring, 316. Mounting screw,
[0041] 32. Main control mechanism, 320. Main control board, 321. Photoresistor, 322. Electrical socket, 323. Jumper socket, 324. Connection assembly,
[0042] 4. Insert rod, 41. Fixing plate, 42. Perforation group, 43. Fixing screw,
[0043] 5. Fixing mechanism, 50. Extension rod, 51. Extension slot, 52. Mounting internal thread, 53. Rod seat, 54. Fixing thread, 55. Lug, 56. Cable assembly, 57. Fixing nut, 58. Spacer, 59. Extension elbow,
[0044] 101. Floodlight, 102. Crane light, 103. Street light. DETAILED DESCRIPTION
[0045] In order to more clearly and specifically illustrate the specific implementation objectives and implementation methods of the present invention, the following is a complete description of the technical solution of the present invention. The described embodiments are only part of the embodiments of the present invention, not all of them. Without creative work, all other embodiments based on the described embodiments of the present invention fall within the scope of protection of the present invention.
[0046] The present invention provides a universal intelligent module component, such as Figure 1 、 Figure 2 As shown, it includes: a cover 1, a connecting part 2, and an inserting rod 4 which are fixedly connected in sequence.
[0047] like Figure 2 、 Figure 3 As shown, a convex plate 11 is provided in the center of the cover 1, and the convex plate 11 is configured as a spherical surface convex outward, and a flat plate 12 is provided on the cover 1 on one side of the convex plate 11, and the flat plate 12 is configured as a plane concave inward, and an extension ear 13 is provided downwardly extending from the inner edge of the lower end of the cover 1, and the lower end of the cover 1 outside the extension ear 13 is configured as an annular groove, and a sealing ring is provided in the annular groove, and a card slot 14 is provided through the extension ear 13, and the card slot 14 is configured as a "┏" shape open downward, and a protrusion 15 is extended in the cover 1, and a plurality of protrusions 15 are distributed along the central circular array of the cover 1, and a card ear 16 is provided on the inner wall of the extension ear 13 in the middle of the extension ear 13.
[0048] An expansion mechanism 31 is provided in the cover 1 for rotation. Figure 2 、 Figure 3 Shown, including:
[0049] A disc-shaped expansion board 310 is provided with an infrared sensor 311 in the center of the expansion board 310. The infrared sensor 311 is accommodated in the convex plate 11. Electrical pins 314 are provided on the expansion board 310 on both sides of the infrared sensor 311. A radially open through slot 312 is provided on one side of the expansion board 310. There are multiple through slots 312 distributed along the central circular array of the expansion board 310. A receiving slot 313 is provided through the expansion board 310. A ring 315 is movably accommodated in the receiving slot 313. A mounting screw 316 is passed through the ring 315 and is screwed to the protrusion 15.
[0050] like Figure 1 、 Figure 2 、 Figure 4 、 Figure 5As shown, the connecting part 2 is configured to be straight cylindrical or elbow-shaped, and a through hole 21 is provided in the axial center of the connecting part 2. A plate-containing groove 22 and an installation external thread 26 are provided at both ends of the connecting part 2. A mounting seat 23 is protruding from the plate-containing groove 21, and a buckle 24 is protruding from the inner wall of the plate-containing groove 21. The buckle 24 consists of a sliding rod and a plug. The sliding rod is slidably inserted in the card slot 14, and the plug is engaged with the ear 16. A screw hole group 25 for fixing the insertion rod 4 is provided on the end face of the installation external thread 26.
[0051] A main control mechanism 32 electrically connected to the insertion rod 4 is fixedly provided in the connecting portion 2. Figure 2 Shown, including:
[0052] The main control board 320 is accommodated in the board slot 22. The main control board 320 is provided with a photoresistor 321, an electrical socket 322, a jumper seat 323, and a connecting component 324. The photoresistor 321 is passed through the through slot 312 and is accommodated in the flat transparent plate 12. The electrical socket 322 is provided in two groups with different numbers of sockets and is electrically connected to the electrical pin 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, and the connecting plug is electrically connected to the connecting socket.
[0053] like Figure 4 As shown, a radially extending fixing plate 41 is provided at the end of the insertion rod 4 , and a through-hole group 42 is provided through the fixing plate 41 . A fixing screw 43 is provided in the through-hole group 42 , and the fixing screw 43 is screwed into the screw hole group 25 .
[0054] An LED lamp assembly with a universal intelligent module assembly, comprising:
[0055] The LED light group, such as Figure 8 、 Figure 9 、 Figure 10 As shown, it includes: a floodlight 101, a tower crane 102, and a streetlight 103. The light box walls of the floodlight 101, the tower crane 102, and the streetlight 103 are penetrated with mounting holes, and a fixing mechanism 5 is fixed in the mounting holes.
[0056] The fixing mechanism 5, such as Figure 11 、 Figure 12 Shown, including:
[0057] The straight cylindrical extension rod 50 or the elbow-shaped extension elbow 59, the extension rod 50, the extension elbow 59 are respectively provided with an extension groove 51 and a fixing thread 54 at both ends, the inner wall of the extension groove 51 is provided with an installation internal thread 52 that is screwed with the installation external thread 26, the center of the inner bottom of the extension groove 51 is provided with a plug-in rod seat 53 that is electrically connected to the plug-in rod 4, the connection part of the fixing thread 54 and the extension rod 50 and the extension elbow 59 is provided with a radially protruding lug 55, and the center of the fixing thread 54 is provided with an electrical connection to the plug-in rod seat 53. The connected cable assembly 56 consists of a cable, a cable socket, and a cable plug. The cable is electrically welded to the rod seat 53, and the cable socket is electrically welded to the lamp panel of the floodlight 101, the tower crane 102, and the street lamp 103. The cable plug is electrically plugged into the cable socket, and a fixing nut 57 is threaded on the fixing thread 54, and the fixing nut 57 abuts against the inner wall of the light box. A spacer 58 is sleeved on the fixing thread 54, and the two sides of the spacer 58 abut against the outer wall of the light box and the lug 55 respectively.
[0058] According to the specific structure of a universal intelligent module component and an LED lamp group having the component in the above embodiment, the working principle and method thereof are described below. Figure 6 、 Figure 7 As shown, further explanation is given:
[0059] The plug 4 is configured as a four-core structure, including: a VDD power supply terminal, a VCC power supply terminal, a common ground terminal, and a signal terminal.
[0060] The control chip of the expansion mechanism 31 is EG4002:
[0061] Pin 1 of the control chip is the output terminal of the op amp, 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, which is then electrically connected to the VDD power supply terminal via coupling capacitor C12 and jumper socket 323.
[0062] Pin 3 of the control chip is the disable trigger terminal, which is low level disable and high level enable. It is electrically connected to the VCC power supply terminal through the voltage divider resistor R13;
[0063] Pin 4 of the control chip is a repetitive trigger control terminal, which is non-repetitive when at low level and repetitive when at high level. It is electrically connected to the VCC power supply terminal via a jumper seat 323;
[0064] Pin 5 of the control chip is the ground terminal, which is electrically connected to the common ground terminal;
[0065] Pin 6 of the control chip is the output terminal. Diode D1 is connected between pins 3 and 6 of the control chip. Diode D1 ensures that pin 3 of the control chip is at a high level when sending signals.
[0066] 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;
[0067] Pin 8 of the control chip is the power supply terminal, which is electrically connected to the VDD power supply terminal.
[0068] A. LED lamp assembly:
[0069] Select the extension rod 50 or the extension elbow 59 according to the usage scenario, insert the fixing thread 54 with the spacer 58 into the mounting hole of the light box wall of the LED lamp group, and tighten the threaded fixing nut 57 on the fixing thread 54 extending into the light box of the LED lamp group, and electrically connect the lamp panel of the LED lamp group through the wiring assembly 56.
[0070] B. Light-sensitive LED light group:
[0071] B1. Assembly:
[0072] Pass the fixing screws 43 through the perforation group 42 respectively and screw them into the screw hole group 25 to fix them, and pass the connecting lead of the connecting component 324 through the through hole 21 to the side of the board slot 22 of the connecting part 2; fix the main control board 320 on the mounting seat 23 with screws, and electrically plug the connecting plug at the end of the connecting lead of the connecting component 324 into the connecting socket welded on the main control board 320; short-circuit the circuit on one side of the electrical socket 322 through the jumper seat 323, so that the coupling capacitor C12 is electrically connected to the VDD power supply end.
[0073] Place the cover 1 without the expansion mechanism 31 installed on one end of the receiving plate slot 22 of the connecting part 2, slide the sliding rod of the buckle 24 from the "┏"-shaped lower end opening into the slot 14 to its horizontal part, and rotate the cover 1 to make the sliding rod of the buckle 24 slide along the horizontal section of the slot 14 until the top of the buckle 24 is engaged with the ear 16.
[0074] B2. Working Principle:
[0075] After the 8th pin of the expansion mechanism 31 control chip is powered by the VDD power supply terminal, the 3rd pin of the control chip performs level detection. The photoresistor 321 is affected by the external brightness. When there is sufficient light, the resistance of the photoresistor 321 becomes smaller. Therefore, after the voltage is divided by R13, the 3rd pin of the control chip is at a low level, and the 2nd pin of the control chip is in a disabled state.
[0076] On the contrary, when the light is insufficient, the resistance of the photoresistor 321 becomes larger, and after the voltage is divided by R13, the 3rd pin of the control chip is at a high level, and the 2nd pin of the control chip is in the enabled state.
[0077] The VDD power supply passes through the coupling capacitor C12 and the negative feedback circuit between pins 1 and 2 of the control chip, causing the voltage at pin 2 of the control chip to change. Pin 6 of the control chip outputs a high level, the transistor is turned on, and a control signal is sent out through the signal end of the plug 4.
[0078] C. Light-sensing and human-sensing LED light sets:
[0079] C1. Assembly:
[0080] Pass the fixing screws 43 through the perforation group 42 respectively and screw them into the screw hole group 25 to fix them, and pass the connecting lead of the connecting component 324 through the through hole 21 to the side of the board slot 22 of the connecting part 2; fix the main control board 320 on the mounting seat 23 by screws, and electrically plug the connecting plug at the end of the connecting lead of the connecting component 324 into the connecting socket welded on the main control board 320; connect the circuits on one side of the electrical socket 322 respectively through the jumper seat 323, so that the expansion mechanism 31 is electrically connected to the coupling capacitor C12 and the VDD power supply end respectively.
[0081] The mounting screw 316 with the collar 315 is passed through the through slot 312 and screwed to the protrusion 15. At this time, the collar 315 is movably accommodated in the through slot 312, the expansion board 310 is gapped between the protrusion 15 and the mounting screw 316, and the infrared sensor 311 is accommodated in the convex plate 11.
[0082] The electrical pin 314 is electrically plugged into the electrical socket 322, and the photoresistor 321 is accommodated in the receiving groove 313. The sliding rod of the clip 24 is slid from the "┏"-shaped lower end opening into the slot 14 to its horizontal part. The cover 1 is rotated to make the sliding rod of the clip 24 slide along the horizontal part of the slot 14 until the top of the clip 24 is engaged with the ear 16. During the rotation of the cover 1, the expansion board 310 electrically plugged into the main control board 320 remains in position, and the ring 315 moves along the through groove 312 until the flat transparent plate 12 rotates to the trigger end face of the photoresistor 321.
[0083] C2. Working principle:
[0084] After the 8th pin of the control chip of the expansion mechanism 31 is powered by the VDD power supply terminal, the 3rd pin of the control chip performs level detection. The photoresistor 321 is affected by the external brightness. When the light is sufficient, the resistance of the photoresistor 321 becomes smaller. After the power supply of the VCC power supply terminal is divided by R13, the 3rd pin of the control chip is low, the 2nd pin of the control chip is in the prohibited state and the expansion mechanism 31 is invalid. On the contrary, when the light is insufficient, the resistance of the photoresistor 321 becomes larger. After the power supply of the VCC power supply terminal is divided by R13, the 3rd pin of the control chip is high, the 2nd pin of the control chip is in the allowed state and the expansion mechanism 31 is invalid. Mechanism 31 is effective. The infrared sensor 311 consists of a filter and two infrared receivers with opposite positive and negative poles connected in series. When the infrared sensor 311 is triggered, the signals of the two infrared receivers become different and generate a voltage, which changes the GS voltage of the junction field effect transistor and the DS resistance of the junction field effect transistor. The voltage across resistor R2 on the expansion board 310 changes, and then passes through coupling capacitor C12 to pin 2 of the control chip. After the voltage of pin 2 of the control chip changes, pin 6 of the control chip outputs a high level, turning on the transistor and sending a control signal outward through the signal end of the plug 4.
[0085] D. Turning on and off the LED light group:
[0086] A relay is welded on the lamp panel of the LED lamp group, and the relay is electrically connected to the signal end of the plug rod 4. When the signal end of the plug rod 4 is energized, the relay is closed and controls the lamp beads on the lamp panel of the LED lamp group to light up; conversely, when the signal end of the plug rod 4 is not energized, the relay is disconnected and the lamp beads on the lamp panel of the LED lamp group are extinguished.
[0087] E. Repeated trigger status adjustment:
[0088] The connection status between pin 4 of the control chip and the VCC power supply terminal is adjusted through jumper socket 323; when in the disconnected state, pin 4 of the control chip is at a low level and cannot trigger repetition. Only after pin 6 of the control chip is at a low level, pin 2 of the control chip is in a triggered state again, and it cooperates with pin 7 of the control chip, which is suitable for environments with regular lighting; when in the closed state, pin 4 of the control chip is at a high level and triggers repetition, and pin 2 of the control chip is always in a triggered state, which is suitable for environments with long-term lighting.
[0089] In summary, the above description is only a preferred embodiment of the present invention and is not intended to limit the scope of the present invention. Based on the above description, relevant personnel can make various changes and modifications without departing from the technical concept of the present invention. The technical scope of the present invention is not limited to the contents of the specification. All so-called equivalent changes and modifications of the shape, structure, characteristics and spirit described in the scope of the claims of the present invention should be included in the scope of the claims of the present invention.
Claims
1. A universal intelligent module assembly, characterized by: include: The sealing cover (1), the connecting portion (2), and the inserting rod (4) are fixedly connected in sequence; An expansion mechanism (31) is rotatably provided inside the cover (1); A main control mechanism (32) electrically connected to the insertion rod (4) is fixedly provided in the connecting portion (2); The expansion mechanism (31) and the main control mechanism (32) are electrically plugged in.
2. A universal intelligent module assembly according to claim 1, characterized in that: A convex transparent plate (11) is provided in the center of the cover (1), a flat transparent plate (12) is provided on the cover (1) on one side of the convex transparent plate (11), an extension ear (13) is provided at the inner edge of the lower end of the cover (1) and extends downward, a card slot (14) is provided through the extension ear (13), and the card slot (14) is provided in a downwardly open "┏" shape, a protrusion (15) is provided in the cover (1), and a card ear (16) is provided on the inner wall of the extension ear (13) in the middle of the extension ear (13).
3. A universal intelligent module assembly according to claim 2, characterized in that: The convex plate (11) is configured as a spherical surface convex outward; The flat transparent plate (12) is configured as an inwardly concave plane; The lower end of the sealing cover (1) outside the extension ear (13) is provided with an annular groove, and a sealing ring is provided in the annular groove.
4. A universal intelligent module assembly according to claim 2, characterized in that: A through hole (21) is provided in the axial center of the connecting portion (2), and a plate receiving groove (22) and an external mounting thread (26) are provided at both ends of the connecting portion (2). A mounting seat (23) is provided protruding from the plate receiving groove (21), and a buckle (24) is provided protruding from the inner wall of the plate receiving groove (21). A screw hole group (25) for fixing the insertion rod (4) is provided on the end surface of the external mounting thread (26).
5. A universal intelligent module assembly according to claim 4, characterized in that: The buckle (24) is composed of a slide bar and a top head. The slide bar is slidably inserted into the card slot (14), and the top head is snap-connected with the card ear (16).
6. A universal intelligent module assembly according to claim 5, characterized in that: The connecting portion (2) is configured to be in a straight cylindrical shape or an elbow shape.
7. A universal intelligent module assembly according to claim 4, 5 or 6, characterized in that: The expansion mechanism (31) comprises: A disc-shaped expansion board (310) is provided with an infrared sensor (311) at the center of the expansion board (310), the infrared sensor (311) being accommodated at the convex transparent board (11), electrical pins (314) being provided on the expansion board (310) on both sides of the infrared sensor (311), a radially open through groove (312) being provided on one side of the expansion board (310), a receiving groove (313) being provided through the expansion board (310), a collar (315) being movably accommodated in the receiving groove (313), and a mounting screw (316) being threadedly connected to the protrusion (15) being provided in the collar (315).
8. A universal intelligent module assembly according to claim 7, characterized in that: The main control mechanism (32) comprises: A main control board (320) is accommodated in the board accommodating slot (22), and is provided with a photoresistor (321), an electrical socket (322), a jumper seat (323), and a connecting assembly (324). The photoresistor (321) is passed through the through slot (312) and accommodated in the flat transparent plate (12). The electrical socket (322) is electrically connected to the electrical pin (314), and the connecting assembly (324) is electrically connected to the plug rod (4).
9. A universal intelligent module assembly according to claim 8, characterized in that: The end of the insertion rod (4) is provided with a fixing plate (41) extending in the radial direction, and a perforation group (42) is provided through the fixing plate (41). A fixing screw (43) is provided in the perforation group (42), and the fixing screw (43) is screwed into the screw hole group (25).
10. An LED lamp assembly having a universal intelligent module assembly, wherein the universal intelligent module assembly according to claim 9 is characterized in that: The LED lamp group includes: A floodlight (101), a tower crane (102), and a streetlight (103); a mounting hole is provided through the wall of a light box of each of the floodlight (101), the tower crane (102), and the streetlight (103); a fixing mechanism (5) is fixedly provided in the mounting hole; The fixing mechanism (5) comprises: A straight cylindrical extension rod (50) or an elbow-shaped extension elbow (59), the two ends of the extension rod (50) and the extension elbow (59) are respectively provided with an extension groove (51) and a fixing thread (54), the inner wall of the extension groove (51) is provided with an installation internal thread (52) screwed with the installation external thread (26), the center of the inner bottom of the extension groove (51) is provided with a plug rod seat (53) connected to the plug rod (4) electrical appliance, the connection part of the fixing thread (54) and the extension rod (50) and the extension elbow (59) is provided with a radial The protruding lug (55) is provided with a wiring assembly (56) electrically connected to the rod seat (53) at the center of the fixed thread (54). The wiring assembly (56) is electrically connected to the lamp panel of the floodlight (101), the tower crane (102), and the street lamp (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
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