Adjustable LED Lighting Housing for Optical Parameter Control

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Solution Overview

Problem

There is a growing demand for flexible and customizable lighting solutions that can be tailored to specific user preferences and requirements, including adjustable color temperatures, brightness levels, and smart control options, while maintaining robustness and durability in various environments.

Innovation Solution

A lighting apparatus comprising multiple LED modules, a light source plate, a guiding unit, a top and bottom housing, a driver module, and an Edison cap, allowing for adjustable longitudinal length to alter optical parameters such as color temperature and light spanning angle through relative movement of the housings and components, with a data receiver for smart control.

Engineering Contradictions & Design Principles

VSEngineering Contradiction Analysis

1Adaptability or versatility

If the lighting apparatus uses a fixed rigid structure, then the manufacturing precision and assembly stability are improved, but the adaptability and customization options are limited

Engineering Contradiction:
Improvecustomizable lighting configurationsVSAvoidstructure complexity
Core Design Contradiction:
Adaptability or versatilityVSDevice complexity

Solution Approach 1:

The lighting apparatus is divided into multiple independent modules including LED modules, driver modules, and housings that can be separately configured and assembled. This segmentation allows for customizable lighting configurations while maintaining manageable structural complexity through modular design

Inventive Principle:
Principle #1Segmentation

Solution Approach 2:

The patent incorporates adjustable components that allow the lighting apparatus to dynamically change its configuration, such as adjustable LED module positions and reconfigurable housing structures, enabling adaptability without requiring a completely complex fixed structure

Inventive Principle:
Principle #15Dynamics

2Adaptability or versatility

If the housing components are made movable to adjust longitudinal length, then the adaptability for different optical parameters is improved, but the reliability of electrical connections may deteriorate

Engineering Contradiction:
Improveoptical parameter adjustmentVSAvoidelectrical connection stability
Core Design Contradiction:
Adaptability or versatilityVSReliability

Solution Approach 1:

The patent replaces traditional rigid mechanical electrical connections with flexible solutions such as flexible printed circuit boards or spring-loaded electrical contacts that maintain reliable electrical connections while allowing movement and adjustment of housing components

Inventive Principle:
Principle #28Mechanics substitution (Replace mechanical system)

Solution Approach 2:

The patent employs adjustable parameters in the electrical connection system, such as variable resistance or contact pressure, that automatically adapt to maintain reliable connections during movement and position changes of the housing components

Inventive Principle:
Principle #35Parameter changes

3Illumination intensity

If multiple LED modules are used to enhance lighting output, then the illumination intensity is improved, but the device complexity and heat management challenges increase

Engineering Contradiction:
Improvelight outputVSAvoidmodule configuration complexity
Core Design Contradiction:
Illumination intensityVSDevice complexity

Solution Approach 1:

The lighting apparatus uses multiple independent LED modules that can be separately controlled and configured, allowing high illumination output while managing complexity through modular architecture where each module is a standardized unit

Inventive Principle:
Principle #1Segmentation

Solution Approach 2:

The patent employs universal driver modules and control systems that can manage multiple LED modules with different configurations, enabling high illumination output without proportionally increasing overall system complexity through standardized interfaces and control protocols

Inventive Principle:
Principle #6Universality (Multi-functionality)

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 customizable lighting configurations, enhancing user experience and energy efficiency by allowing dynamic adjustment of lighting settings and integration with smart home systems, while maintaining reliable electrical connections and durability.

Implementation Method 1

multiple LED modules disposed on a front side of the light source plate

Methodology Applied
Scientific EffectLight Emitting Diode: Light Emitting Diode

Implementation Method 2

The fundamental principle of electroluminescence, where materials emit light in response to an electric current, laid the groundwork for future advancements

Methodology Applied
Scientific EffectElectroluminescence: Electroluminescence

Implementation Method 3

combining blue LEDs with phosphors that convert blue light to white light

Methodology Applied
Scientific EffectPhotoluminescence: Photoluminescence

Data Source

PatentUS12352417B2Lighting apparatus
Publication Date: 2025.07.08 LEEDARSON GREEN LIGHTING
  • US12352417B2 patent drawing
  • US12352417B2 patent drawing
  • US12352417B2 patent drawing

AI summary

A lighting apparatus includes multiple LED modules, a light source plate, a guiding unit, a top housing, a driver module, a bottom housing and an Edison cap. The multiple LED modules are disposed on a front side of the light source plate. The guiding unit is attached to the light source plate so that a protruding portion of the guiding unit is protruded from a back side of the light source extending downwardly. The top housing includes a light source housing and a first sleeve housing. The guiding unit is enclosed by the first sleeve housing. The light source housing is used for disposing the light source plate and has a light opening.