Multifunctional control system for energy-saving illuminating lamp
By designing a multi-function control system for energy-saving lighting lamps including a central processor, pulley, telescopic mechanism and rotary mechanism, the problem that existing lighting systems cannot be adjusted flexibly is solved, and the automatic control of the brightness, color temperature and position of the lighting is realized, which improves the applicability and energy-saving effect of lighting.
Patent Information
- Application Number
- CN202510537835.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-27
- Publication Date
- 2025-06-20
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing lighting system cannot flexibly adjust the lighting effect according to the number of people in the classroom or weather conditions, resulting in the lighting being unsuitable for specific needs.
A multi-function control system for energy-saving lighting is designed, including a central processor, pulley, telescopic mechanism and rotary mechanism. By adjusting the controller and the central processor, automatic control of the brightness, color temperature and position of the lighting lamp is achieved.
It realizes flexible adjustment of lighting, dynamically adjusts brightness and color temperature according to the number of people in the classroom and weather conditions, improves the applicability and energy-saving effect of lighting, and beautifies the classroom environment.
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Figure CN120176074A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of lighting lamp control systems, and in particular to a multifunctional control system for energy-saving lighting lamps. Background Art
[0002] Lights, lighting supplies, generally refer to tools that can illuminate. In ancient times, humans used torches for lighting, and later candles and oil lamps were invented. In ancient times, "candles" were torches made of flammable materials. A torch that was already lit was called a candle; a pile of fine grass and branches placed on the ground for lighting was called a "liao". The "liao" placed outside the door was called a "dazhu" and the "liao" inside the door was called a "tingliao". Warm light can be used for lighting during night study to provide a better lighting environment, but the lamps in the classroom cannot be flexibly adjusted according to the specific number of people in the classroom or the weather conditions. Therefore, a multifunctional control system for energy-saving lighting lamps is proposed. Summary of the invention
[0003] 1. Technical issues to be resolved
[0004] In view of the shortcomings of the prior art, the present invention provides a multifunctional control system for energy-saving lighting lamps, which has the advantages of flexible adjustment of height, brightness and color temperature, and solves the problem of not being able to flexibly adjust according to the specific number of classroom students or weather conditions.
[0005] (II) Technical solution
[0006] To achieve the above-mentioned object, the present invention provides the following technical solutions: a multifunctional control system for energy-saving lighting lamps, comprising a fixed structure, wherein the fixed structure is plugged with an adjustment mechanism;
[0007] The adjustment mechanism includes a central processing unit, a pulley, a telescopic mechanism and a rotating mechanism. The main body of the adjustment mechanism is set as the central processing unit, and the central processing unit can slide in the sliding groove. A pulley is set on the top of the central processing unit, and the pulley can slide in the roller groove. The telescopic mechanism is set at the bottom of the central processing unit, and the rotating mechanism is set at the bottom of the telescopic mechanism.
[0008] The regulating mechanism comprises a central processing unit, a pulley, a telescopic mechanism and a rotating mechanism. The regulating mechanism body is set as the central processing unit, a pulley is set on the top of the central processing unit, a telescopic mechanism is set at the bottom of the central processing unit, and a rotating mechanism is set at the bottom of the telescopic mechanism.
[0009] Preferably, the fixed structure is sleeved with an indoor suspended ceiling, and a suspended ceiling slot is provided at the connection between the indoor suspended ceiling and the fixed structure.
[0010] By setting up an indoor suspended ceiling and a suspended ceiling slot, the fixed structure is plugged into the suspended ceiling slot to avoid dust accumulation in the fixed structure, while beautifying the classroom top and the fixed structure.
[0011] Preferably, energy-saving lighting lamps are connected to the bottom of the adjusting mechanism.
[0012] Preferably, the energy-saving lighting lamp includes an H-shaped lamp slot, an adjusting main unit, a rotating shaft, and a lighting tube. The outside of the energy-saving lighting lamp is provided with an H-shaped lamp slot. The adjusting main unit is inserted into the top of the H-shaped lamp slot. The rotating shaft is arranged at the top of the adjusting main unit. The lighting tube is arranged at the bottom of the H-shaped lamp slot.
[0013] By setting the adjusting main unit, the brightness and color tone of the energy-saving lighting lamp can be controlled. By setting the rotating shaft, the energy-saving lighting lamp can swing left and right on the adjusting mechanism.
[0014] Preferably, first magnetic attraction grooves are formed on both sides of the energy-saving lighting lamp, and first magnetic attraction blocks are inserted into the first magnetic attraction grooves.
[0015] By operating the adjusting controller, several specified adjusting mechanisms are moved together, and the telescopic mechanism, the rotating mechanism, and the rotating shaft are controlled to connect the first magnetic attraction blocks between multiple energy-saving lighting lamps.
[0016] Preferably, second magnetic attraction grooves are formed on both sides inside the insertion slot, and second magnetic attraction blocks are inserted into the second magnetic attraction grooves.
[0017] When it is necessary to raise the energy-saving lighting lamp, it is also possible to control the telescopic mechanism to retract the energy-saving lighting lamp into the insertion slot, or control the pulley to move the energy-saving lighting lamp to one end of the fixing structure, connect the second magnetic attraction block with the first magnetic attraction block, and connect it with the first magnetic attraction block of the energy-saving lighting lamp to make the energy-saving lighting lamp parallel to the indoor ceiling, which is more beautiful.
[0018] Preferably, the central processing unit includes an MCU control module, a language recognition module, a power controller, and a power connection.
[0019] By setting the MCU control module, the central processing unit realizes functions such as automatic control, data processing, and communication control. By setting the language recognition module, the adjusting mechanism can be controlled by language. By setting the power controller, the pulley, the telescopic mechanism, the rotating mechanism, and the rotating shaft can be controlled at will. By setting the power connection, the power supply energy is satisfied.
[0020] Preferably, the adjusting mechanism is controlled and connected with an adjusting controller.
[0021] By setting the adjusting controller in the classroom and cooperating with the central processing unit, the teacher can adjust the energy-saving lighting lamp according to the specific number of people in the classroom and the weather conditions at will.
[0022] Compared with the prior art, the present invention provides a multi-functional control system for energy-saving lighting lamps, having the following beneficial effects:
[0023] 1. The multi-functional control system of the energy-saving lighting lamp enables the central processing unit to achieve automatic control functions, data processing functions, communication control, etc. through the setting of the MCU control module. The adjustment mechanism can be controlled by voice through the setting of the voice recognition module. The pulley, telescopic mechanism, rotating mechanism and rotating shaft can be arbitrarily controlled through the setting of the power controller. The power connection is set to meet the power supply energy. The adjustment controller is used to cooperate with the central processing unit of the adjustment mechanism for operation. When it is necessary to lower the light, the telescopic mechanism of the adjustment mechanism starts to operate by manipulating the adjustment controller. When it is necessary to rotate and adjust the light, the rotating mechanism is controlled to make the energy-saving lighting lamp rotate arbitrarily. When it is necessary to move the light left and right, the pulley of the adjustment mechanism is manipulated by the adjustment controller to move back and forth inside the sliding groove of the fixed structure to achieve the desired effect. By setting the adjustment controller in the classroom to cooperate with the central processing unit, the teacher can arbitrarily adjust the energy-saving lighting lamp according to the specific number of people in the classroom and the weather conditions.
[0024] 2. The multi-functional control system of the energy-saving lighting lamp enables the energy-saving lighting lamp to swing left and right on the adjustment mechanism through the setting of the rotating shaft. By operating the adjustment controller, several specified adjustment mechanisms are moved together, and the telescopic mechanism, rotating mechanism and rotating shaft are controlled to connect the first magnetic attraction blocks between multiple energy-saving lighting lamps. When it is necessary to raise the energy-saving lighting lamp, it is also possible to control the telescopic mechanism to retract the energy-saving lighting lamp into the insertion slot. The pulley can be controlled to move the energy-saving lighting lamp to one end of the fixed structure, and the second magnetic attraction block is connected to the first magnetic attraction block and the first magnetic attraction block of the energy-saving lighting lamp to make the energy-saving lighting lamp parallel to the indoor ceiling, which is more beautiful. By setting the indoor ceiling and the ceiling slot, the fixed structure is inserted into the ceiling slot to avoid dust accumulation on the fixed structure, and at the same time, it plays a beautifying role for the top of the classroom and the fixed structure. By setting the adjustment host, it can control the brightness and color tone of the energy-saving lighting lamp. Brief Description of the Drawings
[0025] Figure 1 Structural Schematic Diagram of the Present Invention;
[0026] Figure 2 Expanded Structural Schematic Diagram of the Present Invention;
[0027] Figure 3 Partial One Structural Schematic Diagram of the Present Invention;
[0028] Figure 4 Partial Two Structural Schematic Diagram of the Present Invention.
[0029] Wherein: 1. Fixed structure; 101. Fixed top plate; 102. Fixed side plate; 103. Fixed cross plate; 104. Insertion slot; 105. Sliding slot; 106. Roller slot; 2. Adjusting mechanism; 201. Central processing unit; 2011. MCU control module; 2012. Language recognition module; 2013. Power controller; 2014. Power connection; 202. Pulley; 203. Telescopic mechanism; 204. Rotating mechanism; 3. Indoor ceiling; 4. Ceiling slot; 5. Energy-saving lighting lamp; 501. H lamp slot; 502. Adjusting host; 503. Rotating shaft; 504. Lighting tube; 6. First magnetic attraction slot; 7. First magnetic attraction block; 8. Second magnetic attraction slot; 9. Second magnetic attraction block; 10. Adjusting controller. Detailed implementation manner
[0030] 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 the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative work shall fall within the protection scope of the present invention.
[0031] Please refer to Figures 1-4 , the present invention provides the following technical solutions: An energy-saving lighting lamp multi-functional control system includes a fixed structure 1, and a plurality of adjusting mechanisms 2 are inserted into the fixed structure 1.
[0032] The fixed structure 1 includes a fixed top plate 101, fixed side plates 102, a fixed cross plate 103, an insertion slot 104, a sliding slot 105, and a roller slot 106. The top of the fixed structure 1 is provided with a fixed top plate 101. Both sides of the bottom of the fixed top plate 101 are connected with fixed side plates 102. The fixed side plates 102 are both connected with a fixed cross plate 103. An insertion slot 104 is arranged inside the fixed cross plate 103. A sliding slot 105 is opened inside the insertion slot 104. A roller slot 106 is opened at the top of the sliding slot 105.
[0033] The adjusting mechanism 2 includes a central processing unit 201, a pulley 202, a telescopic mechanism 203, and a rotating mechanism 204. The main body of the adjusting mechanism 2 is set as the central processing unit 201. The central processing unit 201 can slide inside the sliding slot 105. A pulley 202 is arranged at the top of the central processing unit 201. The pulley 202 can slide inside the roller slot 106. A telescopic mechanism 203 is arranged at the bottom of the central processing unit 201. A rotating mechanism 204 is arranged at the bottom of the telescopic mechanism 203.
[0034] The fixed structure 1 is sleeved with an indoor ceiling 3. A ceiling slot 4 is provided at the connection between the indoor ceiling 3 and the fixed structure 1. By setting the indoor ceiling 3 and the ceiling slot 4, the fixed structure 1 is inserted into the ceiling slot 4 to avoid dust accumulation on the fixed structure 1. At the same time, it plays a beautifying role for the top of the classroom and the fixed structure 1. The bottom of the adjusting mechanism 2 is connected with energy-saving lighting lamps 5. The energy-saving lighting lamp 5 includes an H lamp slot 501, an adjusting host 502, a rotating shaft 503 and a lighting tube 504. The outside of the energy-saving lighting lamp 5 is set as the H lamp slot 501. The adjusting host 502 is inserted into the top of the H lamp slot 501. The rotating shaft 503 is arranged at the top of the adjusting host 502. The lighting tube 504 is arranged at the bottom of the H lamp slot 501. By setting the adjusting host 502, the brightness and color tone of the energy-saving lighting lamp 5 can be controlled. By setting the rotating shaft 503, the energy-saving lighting lamp 5 can swing left and right on the adjusting mechanism 2. One magnetic attraction groove 6 is opened on both sides of the energy-saving lighting lamp 5. A first magnetic attraction block 7 is inserted into the inside of the first magnetic attraction groove 6. By setting the first magnetic attraction blocks 7 on both sides of the energy-saving lighting lamp 5, multiple energy-saving lighting lamps 5 can be connected into one body. Second magnetic attraction grooves 8 are opened on both sides inside the insertion slot 104. A second magnetic attraction block 9 is inserted into the inside of the second magnetic attraction groove 8. By setting the second magnetic attraction blocks 9 inside the insertion slot 104, when the adjusting mechanism 2 contracts the energy-saving lighting lamp 5 into the insertion slot 104 and connects with the first magnetic attraction blocks 7 of the energy-saving lighting lamp 5, the energy-saving lighting lamp 5 is in a parallel state with the indoor ceiling 3, which is more beautiful. The central processing unit 201 includes an MCU control module 2011, a language recognition module 2012, a power controller 2013 and a power connection 2014. By setting the MCU control module 2011, the central processing unit 201 realizes functions such as automatic control, data processing and communication control. By setting the language recognition module 2012, the adjusting mechanism 2 can be controlled by language. By setting the power controller 2013, the pulley, the telescopic mechanism, the rotating mechanism and the rotating shaft can be controlled at will. By setting the power connection 2014, the power supply energy is satisfied. The adjusting mechanism 2 is controlled and connected with an adjusting controller 10. By setting the adjusting controller 10 in the classroom and cooperating with the central processing unit 201, the teacher can adjust the energy-saving lighting lamps according to the specific number of people in the classroom and the weather conditions at will.
[0035] In use, the operator can operate by adjusting the controller 10 to cooperate with the central processing unit 201 of the adjusting mechanism 2. When it is necessary to lower the energy-saving lighting lamp 5, the telescopic mechanism 203 of the adjusting mechanism 2 is started by operating the adjusting controller 10. When it is necessary to rotate and adjust the light, the rotating mechanism 204 is controlled to rotate the energy-saving lighting lamp 5 at will. When it is necessary to move the light left and right, the adjusting controller 10 is operated to run the pulley 202 of the adjusting mechanism, so that the adjusting mechanism moves back and forth inside the sliding groove 105 of the fixed structure 1 to achieve the desired effect. By using the adjusting controller 10, the light brightness and color temperature of the energy-saving lighting lamp 5 can also be adjusted under different weather conditions. When it is necessary for the light to be tilted, the adjusting controller 10 is also operated to make the rotating shaft 503 start to rotate, so that the entire energy-saving lighting lamp 5 starts to tilt slightly left and right. When it is necessary for the lights to be gathered and connected, several specified adjusting mechanisms 2 are moved together by operating the adjusting controller 10, and the telescopic mechanism 203, the rotating mechanism 204 and the rotating shaft 503 are controlled to connect the first magnetic attraction blocks 7 between the multiple energy-saving lighting lamps 5. When it is necessary to raise the energy-saving lighting lamp 5, it is also possible to control the telescopic mechanism 203 to retract the energy-saving lighting lamp 5 into the insertion slot 104, or control the pulley 202 to move the energy-saving lighting lamp 5 to one end of the fixed structure 1, and connect the second magnetic attraction block 9 to the first magnetic attraction block 7, so that the energy-saving lighting lamp 5 is parallel to the indoor ceiling 3, which is more beautiful.
[0036] Although the embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and variations can be made in these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A classroom energy-saving lighting fixture, comprising a fixing structure (1), characterized in that: The fixed structure (1) is plugged with a plurality of adjustment mechanisms (2), and the fixed structure (1) comprises a fixed top plate (101), a fixed side plate (102), a fixed transverse plate (103), a plug-in slot (104), a sliding slot (105) and a roller slot (106); the top of the fixed structure (1) is provided with a fixed top plate (101), both sides of the bottom of the fixed top plate (101) are connected to fixed side plates (102), and both sides of the fixed side plates (102) are connected to the fixed transverse plate (103). 03), a plug-in slot (104) is arranged inside the fixed horizontal plate (103), a sliding slot (105) is arranged inside the plug-in slot (104), a roller slot (106) is arranged on the top of the sliding slot (105), the adjustment mechanism (2) comprises a central processing unit (201), a pulley (202), a telescopic mechanism (203) and a rotating mechanism (204), the main body of the adjustment mechanism (2) is set as the central processing unit (201), and the central processing unit (201) can be arranged in the sliding slot (105) slides inside, a pulley (202) is arranged on the top of the central processing unit (201), and the pulley (202) can slide inside the roller groove (106), a telescopic mechanism (203) is arranged at the bottom of the central processing unit (201), and a rotating mechanism (204) is arranged at the bottom of the telescopic mechanism (203), the fixed structure (1) is sleeved with an indoor ceiling (3), and a ceiling slot (4) is arranged at the connection between the indoor ceiling (3) and the fixed structure (1), and the adjusting mechanism The bottom of each structure (2) is connected to an energy-saving lighting lamp (5), the energy-saving lighting lamp (5) comprising an H-shaped lighting trough (501), an adjusting main unit (502), a rotating shaft (503) and a lighting tube (504), the outer side of the energy-saving lighting lamp (5) being set as an H-shaped lighting trough (501), the top of the H-shaped lighting trough (501) being plugged into the adjusting main unit (502), the top of the adjusting main unit (502) being set with a rotating shaft (503), and the bottom of the H-shaped lighting trough (501) being set with a lighting tube (504).
2. The energy-saving classroom lighting fixture according to claim 1, characterized in that: A first magnetic attraction groove (6) is provided on both sides of the energy-saving lighting lamp (5), and a first magnetic attraction block (7) is inserted into the first magnetic attraction groove (6).
3. The energy-saving classroom lighting fixture according to claim 1, characterized in that: The plug-in slot (104) is provided with a second magnetic suction slot (8) on both sides thereof, and a second magnetic suction block (9) is plugged into the second magnetic suction slot (8).
4. The energy-saving classroom lighting fixture according to claim 1, characterized in that: The regulating mechanism (2) is control-connected to a regulating controller (10).
5. A control system for the energy-saving classroom lighting fixture according to claim 1, characterized in that: The central processing unit (201) comprises an MCU control module (2011), a language recognition module (2012), a power supply controller (2013) and a power supply connection (2014).