Container with electronic messaging
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Solution Overview
Problem
Existing message display systems lack efficient and robust customization capabilities, failing to provide seamless communication with computer systems for dynamic message generation and control.
Innovation Solution
A container-based display system that includes a processor, memory, transceiver, and a screen with LEDs, allowing communication with computer networks for multiple users to control and customize messages, with hierarchical control schemes enabling flexible message execution based on user discretion, geographic location, and time.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If known message display systems are used, then basic message display functionality is provided, but customization capability is limited and inefficient
Solution Approach 1:
The system divides message display functionality into separate modular components: display hardware module, communication module, and multiple independent messaging schemes (first messaging scheme, second messaging scheme). Each module can be independently configured and controlled, enabling flexible customization without increasing overall system complexity.
Solution Approach 2:
The display system is designed to support multiple messaging schemes and multiple computer devices simultaneously. The same display hardware can execute different messaging schemes based on geographic location and user input, providing universal functionality across diverse customization scenarios without requiring separate systems.
2Adaptability or versatility
If multiple users are allowed to control the display, then customization flexibility is improved, but control coordination becomes complex
Solution Approach 1:
Different computer devices are assigned specific messaging schemes based on their local characteristics (geographic location, user preferences). The first computer device executes the first messaging scheme while the second computer device executes the second messaging scheme, allowing each user to have customized control without complex coordination protocols.
Solution Approach 2:
The system dynamically determines which messaging scheme to execute based on real-time conditions such as geographic location and user input. The display can switch between different messaging schemes executed by different computer devices, providing adaptive multi-user control that responds to changing conditions rather than requiring pre-configured static control structures.
3Ease of operation
If hierarchical control schemes are implemented, then message execution flexibility is improved, but system control complexity increases
Solution Approach 1:
Multiple messaging schemes are pre-configured and stored in the system before operation. The first messaging scheme and second messaging scheme are both prepared in advance, allowing the display to quickly switch between them based on geographic location and user input without requiring complex real-time decision-making or hierarchical control logic.
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 efficient and robust customization of messages, allowing multiple users to control and interact with the display system through a computer network, providing flexible message execution and integration with geographic and temporal factors.
Implementation Method 1
The substrate can include a plurality of LEDs formed therein or thereon, each individual LED forming an individual pixel of the plurality of pixels
Implementation Method 2
The display can be configured to transmit and receive data from at least one computer device. The data can include instructions to be processed by the display processor for controlling the transmission of electrical power from the power source to the plurality of pixels to generate a message
Implementation Method 3
at least a portion of the shell can be translucent to frequencies of light being emitted from the display
Implementation Method 4
at least a portion of the liner can be opaque to frequencies of light within the visible spectrum
Data Source
AI summary
Disclosed are various embodiments of a system configured to generate a customized message via a display. Some embodiments can include a computer network allowing multiple users, via different computer devices, to generate different messages to be displayed on the display. In some embodiments, the display can be attached to a beverage container or other container to allow users to personalize the container via the message being displayed by the display.


