Removable LED Module for Illuminating Objects
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Solution Overview
Problem
Existing luminous objects, such as shoes, are inconvenient due to fixed LED lamps that cannot be easily removed or repositioned, and suffer from issues like poor charging connections, battery safety concerns, and cumbersome operation for changing light modes.
Innovation Solution
An intelligent light-emitting device integrated with an illuminating object, featuring a removable LED light set with wireless control, rechargeable high-safety battery, and wireless charging, allowing for flexible placement and convenient operation via a smart product app.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If LED lamps are fixed in a specific position on the object, then the lighting function is stable, but the adaptability to different objects and positions is poor
Solution Approach 1:
The light-emitting device is divided into independent modular components: LED light source module, battery module, control module, and wireless communication module. Each module can be independently assembled and disassembled, allowing the device to be configured for different objects while maintaining stable lighting function through standardized module interfaces.
Solution Approach 2:
The light-emitting device is designed with universal mounting structures and standardized interfaces that enable it to be installed on multiple types of objects (shoes, hats, clothing, etc.). The wireless control and rechargeable battery features provide multi-functional capabilities that adapt to different usage scenarios while maintaining core lighting stability.
2Adaptability or versatility
If the light-emitting device includes charging connection, switch, and lighting mode switching button, then the functionality is complete, but the device complexity increases and operation becomes inconvenient
Solution Approach 1:
Multiple functions are merged into single components: the power button serves dual purposes as both power on/off switch and mode switching trigger; the wireless communication module integrates control signals and charging communication; the control module consolidates lighting mode selection and power management functions, reducing the number of separate components while maintaining complete functionality.
Solution Approach 2:
Mechanical switching operations are replaced with wireless control through mobile application. Users can power on/off, switch lighting modes, and adjust parameters remotely without physically touching buttons on the device, simplifying the user interface while maintaining full functional control.
3Reliability
If the battery is fixed in the sole with charging connection, then the power supply is stable, but the charging convenience is poor and safety risks increase
Solution Approach 1:
The mechanical charging connection (physical plug insertion) is replaced with wireless charging technology. The device incorporates a wireless charging receiver that communicates with and receives power from a wireless charging base, eliminating the need for exposed charging ports and connection cables while maintaining stable power transfer.
Solution Approach 2:
The device automatically manages the charging process through wireless communication: the control module detects when the device is placed on the charging base, initiates power transfer, monitors charging status, and terminates charging when full. This self-service charging mechanism improves convenience while maintaining power supply stability through automated protection protocols.
4Adaptability or versatility
If the user needs to change luminous color by pressing switch button, then the color changing function is achieved, but the operation is inconvenient and time-consuming
Solution Approach 1:
The mechanical button-pressing operation for color selection is replaced with wireless control through mobile application. Users can browse color options, select desired luminous colors, and adjust parameters remotely via touch screen interface, eliminating the need to physically locate and repeatedly press buttons on the device while maintaining full color changing capability.
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
The solution provides a waterproof, portable, and safe light-emitting device that can be easily moved between objects, offering extensive application scope, convenient charging, and user-friendly control, while minimizing risks of battery failure and operation inconvenience.
Implementation Method 1
a transparent or semi-transparent block with light-conducting function and at least one light guiding groove configured to hold the light-emitting device
Implementation Method 2
a wireless charging module, coupled to the bottom of the LED light set and configured to charge the rechargeable battery with the received energy by wireless charging method
Data Source
AI summary
An intelligent light-emitting device integrated with an illuminating object, the illuminator being an independent and removable component, comprising a LED light assembly, a control unit, a rechargeable battery, a switch and a wireless charging module, which are assembled and sealed to form a waterproof, portable and independent light-emitting device; the control unit configured to control different lighting mode of the LED light set and including a wireless remote control unit, remotely controlled by a light control. APP of an intelligent article; wherein the illuminating object includes a transparent or semi-transparent block with light-conducting function and a light-conducting groove; the block is a shoe sole, a lamp holder or a box; the light-emitting device is placed in the light-transmitting groove and removable therefrom.


