Modular LED Plant Lighting Lamp with Snap-Connect Cases
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Solution Overview
Problem
Existing LED plant illumination lamps lack universality and flexibility, being inflexible in size, power, and specifications, making them unsuitable for various application occasions and requiring extensive external wiring.
Innovation Solution
The LED plant illumination lamp module features modular design with adjustable light source modules and cases, allowing for flexible installation and rapid adjustment through snap connections, threaded connections, and adhesive methods, enabling optimal combinations of light source modules and lamp modules according to specific needs.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of manufacture
If LED plant illumination lamps are integratedly designed with fixed size and power specifications, then the lamp structure is simplified and easier to manufacture, but the lamp becomes inapplicable to different occasions and not adjustable when actual on-site demand changes
Solution Approach 1:
The lamp is divided into multiple independent lamp modules, each with its own light source module and case. These modules can be independently manufactured with standardized structures, then combined in different configurations to meet various application requirements, resolving the contradiction between manufacturing simplicity and application adaptability.
Solution Approach 2:
The lamp system transitions from a fixed integrated design to a dynamic modular configuration. Users can adjust the number, arrangement, and connection of lamp modules based on actual on-site demand, enabling the system to adapt to different occasions while maintaining standardized module designs for ease of manufacture.
2Device complexity
If LED plant illumination lamps are designed with fixed specifications, then the design and production process is simplified, but extensive external wiring is required to accommodate different application scenarios
Solution Approach 1:
Multiple lamp modules are connected through integrated wiring systems where power supply lines and control lines are merged into unified connection structures. The modules share common power input and control signals, reducing the need for extensive separate external wiring while maintaining design simplicity.
Solution Approach 2:
The lamp modules are designed with universal connection interfaces and standardized wiring protocols that can be applied across different configurations. A single module design can be used in various applications with minimal wiring modifications, reducing both design complexity and installation wiring requirements.
3Adaptability or versatility
If lamp modules are designed to be interchangeable between different cases, then the system becomes more flexible and adaptable, but the connection and fixation mechanisms become more complex
Solution Approach 1:
All lamp modules use identical connection interfaces, fixation mechanisms, and electrical connectors. This homogeneous design across all modules enables easy interchangeability between different cases while keeping the connection mechanisms simple and standardized, rather than requiring different mechanisms for different module types.
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
This modular design enhances the universality and application range of LED plant illumination, allowing for customizable lighting solutions that improve plant growth quality, reduce resource waste, and extend the lamp's service life by distributing power across multiple modules.
Implementation Method 1
The light source module and the lamp module case are adhesively joined to one another
Data Source
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AI summary
The present invention relates to the field of plant illumination technology, and particularly to an LED plant illumination lamp module. The lamp module includes at least two light source modules and two lamp module cases located at both ends of the light source modules. Each of the light source modules includes a lamp tube, a circuit board mounted inside the lamp tube, and LED lamp beads fixed on the circuit board. At least two lamp tube insertion slots are arranged on one side of each of the lamp module cases, and two ends of the lamp tube are respectively inserted into the lamp tube insertion slots on the lamp module cases. At least one of the lamp module cases is provided with an LED power supply, and an output end of the LED power supply is connected to the circuit board inside the lamp tube. The lamp module and the assemblies thereof according to the present invention have the advantages of strong universality, wide application range, convenient use, flexible installation, and rapid adjustment.