Christmas tree with built-in intelligent light control circuit technological RGB lights

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Solution Overview

Problem

Existing artificial Christmas trees require special tools for decorating the higher places, are difficult to adjust decorations to desired angles, and occupy large storage space due to their integrated structure.

Innovation Solution

A Christmas tree with a built-in intelligent light control circuit featuring a bearing base, trunk, limbs, and an intelligent control unit, which includes electric telescopic rods and adjustable branches for easy decoration and disassembly, and ambient lights that adjust brightness and rhythm based on environmental and musical inputs.

Engineering Contradictions & Design Principles

VSEngineering Contradiction Analysis

1Volume of moving object

If an integrated artificial Christmas tree structure is used, then the tree maintains a stable shape and is easy to manufacture, but it occupies large storage space and is difficult to disassemble for decoration

Engineering Contradiction:
Improvestorage spaceVSAvoidstructural stability
Core Design Contradiction:
Volume of moving objectVSStability of the object's composition

Solution Approach 1:

The Christmas tree is divided into multiple detachable branches that can be separated from the main trunk. Each branch is equipped with independent lighting circuits, allowing the tree to be disassembled into compact components for storage while maintaining structural integrity when assembled. The bearing base with receiving slots and limiting rods enables easy connection and disconnection of these segmented parts.

Inventive Principle:
Principle #1Segmentation

2Adaptability or versatility

If the Christmas tree structure is made adjustable for decoration, then decorations can be positioned at desired angles, but the structure becomes more complex and difficult to manufacture

Engineering Contradiction:
Improvedecoration adjustabilityVSAvoidstructural complexity
Core Design Contradiction:
Adaptability or versatilityVSDevice complexity

Solution Approach 1:

The Christmas tree branches are designed with adjustable angles and positions. The bearing base includes receiving slots and limiting rods that allow branches to be positioned at different orientations. The electric telescopic rods enable dynamic adjustment of branch positions, providing decoration flexibility without requiring complex mechanical structures.

Inventive Principle:
Principle #15Dynamics

3Ease of operation

If ladders and special tools are used to decorate higher places of the Christmas tree, then the entire tree can be decorated uniformly, but the operation becomes dangerous and time-consuming

Engineering Contradiction:
Improvedecoration convenienceVSAvoiddecoration time
Core Design Contradiction:
Ease of operationVSLoss of time

Solution Approach 1:

The Christmas tree incorporates electric telescopic rods that can extend and retract to adjust the height and position of branches. This allows decorations to be easily accessed and positioned at any height without requiring ladders or special tools, significantly improving operational safety and reducing decoration time.

Inventive Principle:
Principle #15Dynamics

4Volume of moving object

If the Christmas tree is designed as an integrated structure, then it maintains a complete appearance, but it cannot be compactly stored after Christmas

Engineering Contradiction:
Improvestorage volumeVSAvoidappearance completeness
Core Design Contradiction:
Volume of moving objectVSShape

Solution Approach 1:

The Christmas tree is designed with detachable branches that can be separated from the main trunk. When disassembled, the components can be compactly stored in a bearing base with receiving slots. The limiting rods ensure that when reassembled, the branches return to their proper positions, maintaining the complete appearance of the tree.

Inventive Principle:
Principle #1Segmentation

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

Facilitates easy decoration and disassembly of Christmas trees, reduces storage space, and enhances decorative flexibility through intelligent light control.

Implementation Method 1

a first electric telescopic rod is provided inside the sleeve, and a bottom end of the first electric telescopic rod is fixedly connected to a bottom of an inner wall of the sleeve

Methodology Applied
Scientific EffectElectric telescopic mechanism:

Implementation Method 2

an intelligent control unit that includes a power supply, a light control assembly electrically connected to the power supply, a master control assembly electrically connected to the light control assembly, and a plurality of ambient lights electrically connected to the power supply and the master control assembly

Methodology Applied
Scientific EffectLED light emission: Light Emitting Diode

Implementation Method 3

a music capture unit electrically connected to the master control assembly, the music playing unit is used for playing music, and the music capture unit is used for capturing and analyzing a music played by the music playing unit to obtain a rhythm degree of the music played by the music playing unit

Methodology Applied
Scientific EffectSound wave detection: Sound

Data Source

PatentUS12478204B2Christmas tree with built-in intelligent light control circuit technological RGB lights
Publication Date: 2025.11.25 WINNER IND CO LTD
  • US12478204B2 patent drawing
  • US12478204B2 patent drawing
  • US12478204B2 patent drawing

AI summary

The Christmas tree with built-in intelligent light control circuit technological RGB lights includes a bearing base, a trunk and an intelligent control unit, wherein the bearing base includes a support ring, and receiving slots are provided on a top of the supporting ring uniformly and vertically. Also, a plurality of first slots are provided on the top of the supporting ring uniformly. The trunk may be stably erected on the ground through a support by the bearing base. This application drives racks up or down through a first electric telescopic rod, and then drives limbs to rotate downward or upward and adjusts angles of limbs.