Luminous hanging ornament
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Solution Overview
Problem
Existing luminous hanging decorations lack dynamic visual changes and interconnected lighting effects, with each hanging part being independent and unable to produce an overall lighting effect.
Innovation Solution
A luminous hanging apparatus featuring a transparent main body with customized thermal transfer printing images, connected through optical fibers to color-changing light-emitting diodes, allowing remote control via a mobile app for static, stepless, and dynamic color adjustments, and capable of forming colorful shapes and light shows.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If traditional fixed graphics are used on pendants, then manufacturing is simple, but visual variety and dynamic effects are limited
Solution Approach 1:
The patent applies dynamics by replacing fixed static graphics with dynamic color-changing LED lights that can display various colors and patterns. The LED module includes red, green, and blue LEDs that can be controlled to produce different colors and lighting effects, transforming the pendant from a static decorative item to a dynamic visual display device.
Solution Approach 2:
The patent utilizes parameter changes by varying the electrical parameters (current, voltage) to different LED elements to achieve different colors and brightness levels. The control circuit adjusts the illumination parameters of multiple LEDs to create diverse visual effects, enabling the same physical structure to produce varied visual outputs through parameter modulation.
2Adaptability or versatility
If each hanging part is independent, then manufacturing and assembly are simple, but overall interconnected lighting effects cannot be produced
Solution Approach 1:
The patent merges multiple independent hanging parts into a coordinated system by connecting them through a common control circuit. The control circuit integrates signals from multiple sensors and coordinates the illumination of multiple LED modules across different pendants, creating synchronized lighting effects that require the hanging parts to work together as a unified system rather than independently.
Solution Approach 2:
The patent implements feedback mechanisms where sensors detect environmental conditions or user inputs and the control circuit adjusts the LED illumination accordingly. This feedback loop enables the system to respond dynamically to external stimuli, coordinating the lighting effects across multiple pendants based on real-time conditions, thus achieving interconnected adaptive lighting behavior.
3Adaptability or versatility
If thermal transfer printing is used for customization, then image personalization is achieved, but additional manufacturing steps are required
Solution Approach 1:
The patent applies preliminary action by pre-customizing the pendant bodies with thermal transfer printing before assembly. The images are printed and transferred onto the pendant surfaces in advance during the manufacturing process, allowing for personalized designs to be integrated into the base structure before the electronic components are added, thus preparing the visual foundation for later dynamic lighting effects.
4Adaptability or versatility
If multiple colors and dynamic modes are added, then visual appeal increases, but energy consumption and control complexity increase
Solution Approach 1:
The patent utilizes periodic action by implementing dynamic lighting modes that cycle through different colors and illumination patterns over time. The LED module can switch between various predefined sequences and modes, creating time-varying visual effects that consume energy in periodic bursts rather than continuous high-power operation, thus managing energy consumption through temporal modulation of the light output.
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 the creation of visually appealing, customizable, and interconnected light displays for decorations on the body, Christmas trees, walls, and desktops, offering personalized and dynamic lighting effects through connected light sources.
Implementation Method 1
The single light-emitting device or multiple light-emitting devices include a connection from a light source to each article through an optical fiber of the light source device
Implementation Method 2
a main body made of transparent materials, in which there is provided an image customized by thermal transfer printing
Data Source
AI summary
A luminous hanging apparatus has a transparent main body with an image customized by thermal transfer printing, a chain rope for hanging is provided on the upper part of the main body, and at least one side of the main body is provided with an illumination device that injects light into the main body to make the image customized by thermal transfer printing emit light. Images customized by heat transfer printing in the main body of transparent materials may be used to form various graphics, and uses different color illumination devices to illuminate the images. The hanger can be used as a decoration for Christmas trees and the like, as well as walls and desktops. Multiple hanging parts and light source devices connected by optical fiber control the static color of multiple hanging parts, stepless color adjustment, colorful dynamic mode and other modes through the mobile phone.
