LED Module Wireless Control and Heat Dissipation Integration
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Solution Overview
Problem
Conventional light emitting diode modules lack integration of power input control systems and wireless devices on the main base board, making assembly inconvenient and posing heat dissipation issues.
Innovation Solution
A light emitting diode module that integrates a wireless communication module, power output control system, and control unit on a main base board, allowing for user-controlled light emission through adjustable current flow to vary color and brightness, with components such as Bluetooth devices for signal reception and memory for timing and color settings.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of manufacture
If power input control system and wireless device are integrated into the main base board, then assembly convenience is improved and heat dissipation is enhanced, but device complexity increases
Solution Approach 1:
The patent integrates the power input control system and wireless communication device into the main base board, merging previously separate components into a single unified structure. This consolidation simplifies assembly processes and improves heat dissipation while managing the added complexity through integrated design
2Temperature
If power input control system and wireless device are integrated into the main base board, then heat dissipation is improved, but device complexity increases
Solution Approach 1:
By combining the power input control system and wireless device into the main base board, the patent creates a unified structure that improves heat dissipation pathways while managing complexity through integrated architecture
3Adaptability or versatility
If power output control system adjusts current flowing through light emitting diodes, then color and brightness control is improved, but energy consumption increases
Solution Approach 1:
The power output control system dynamically adjusts the current flowing through each light emitting diode based on control signals, enabling real-time control of color and brightness while optimizing energy consumption according to actual lighting requirements
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
Enables convenient assembly, improved heat dissipation, and user-controlled color and brightness adjustments, enhancing the functionality and usability of light emitting diode modules.
Implementation Method 1
The plurality of light emitting diodes is disposed on the main base board. The plurality of light emitting diodes comprises light emitting diodes having at least one color.
Data Source
AI summary
A light emitting diode module includes a main base board, a wireless communication module, multiple light emitting diodes, a power output control system and a control unit. The wireless communication module is used for receiving a control signal. The light emitting diodes are disposed on the main base board and include light emitting diodes having at least one color. The power output control system is electrically connected to the light emitting diodes. The power output control system adjusts an amount of current flowing through each light emitting diode to control the light emitting diodes to emit light by adjusting the amount of current. The control unit is electrically connected to the wireless communication module and the power output control system for controlling the power output control system to adjust the amount of current of each light emitting diode.


