LED Eyeglasses Real-Time Pattern Update via Wireless Module
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Solution Overview
Problem
Conventional light emitting diode (LED) eyeglasses are limited in displaying new patterns as they require external device intervention for new pattern data storage, restricting real-time pattern display and convenience.
Innovation Solution
Incorporating a communication module and control unit in LED eyeglasses that allows real-time communication with a control terminal unit and server for accessing and displaying pattern data, enabling immediate display of both pre-stored and new pattern data through a matrix arrangement of LEDs.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If conventional LED eyeglasses store pattern data in advance in a storage unit, then the eyeglasses can display pre-stored patterns, but new pattern data cannot be displayed without external device intervention and re-storing
Solution Approach 1:
The LED eyeglasses are equipped with both a storage unit for pre-stored patterns and a communication module for receiving new pattern data from external devices. This multi-functionality allows the system to operate in two modes: displaying pre-stored patterns and receiving/ displaying new patterns in real-time, thereby resolving the contradiction between adaptability and ease of operation.
2Device complexity
If LED eyeglasses require external device intervention to store new pattern data, then the system maintains simplicity, but real-time pattern display and user convenience are restricted
Solution Approach 1:
The communication module is pre-installed in the LED eyeglasses, enabling it to receive new pattern data from external devices at any time without requiring physical intervention or system reconfiguration. This preliminary preparation of the communication capability allows immediate pattern data updates, reducing the time loss while maintaining relatively simple system structure.
3Adaptability or versatility
If multiple LED eyeglasses are controlled individually, then each pair can display independent patterns, but coordination for mass games and user interaction becomes complicated
Solution Approach 1:
Multiple LED eyeglasses are equipped with communication modules that enable them to communicate with each other and with external devices. This merging of communication capabilities allows the glasses to be controlled individually for independent pattern display while also enabling coordinated control for mass games and interactive applications, resolving the contradiction between adaptability and control system complexity.
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 display of both pre-stored and new pattern data in real-time, facilitating enhanced user interaction and mass games by transmitting pattern data to multiple LED eyeglasses simultaneously, improving usability and functionality.
Implementation Method 1
a plurality of light emitting diodes mounted on a front frame of an eyeglass frame
Data Source
AI summary
The present disclosure relates to a pair of light emitting diode eyeglasses. The light emitting diode eyeglasses include an eyeglass frame that comprises a pair of leg frames and a front frame that is provided with a plurality of light emitting diodes, a communication module for communicating one or more pattern data with a control terminal unit, a control unit that is provided in the eyeglass frame and configured to control driving of the light emitting diodes such that the pattern data is displayed through the light emitting diodes, and a power supply unit that is provided for each leg frame of at least one of the pair of leg frames, and configured to supply electric power to the light emitting diodes, the memory unit, the communication module, and the control unit.


