LED Light Mounting Member With Rotating Shaft And Sealed Inlets
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Solution Overview
Problem
Traditional LED lights are limited in installation options, typically only allowing horizontal or vertical mounting, with fixed angles and single connection modes, and lack waterproofing, making them inconvenient and unsafe for various applications.
Innovation Solution
The LED light design features a mounting member with a rotating shaft and seal system allowing for vertical, horizontal, and inclined installations, adjustable light angles, and multiple wire connection modes, along with a waterproof structure to enhance safety and versatility.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If traditional LED lights use fixed mounting structures, then the installation process is simple, but the installation surface is limited and only horizontal or vertical surfaces can be used
Solution Approach 1:
The mounting member incorporates a rotating shaft that enables dynamic adjustment of the light angle between 0-90 degrees, allowing the LED light to adapt to various installation surfaces including vertical walls, ceilings, horizontal platforms and sloping surfaces. This dynamic mechanism transforms a static mounting structure into an adaptable one without excessive complexity
Solution Approach 2:
The mounting member is designed with universal applicability to accommodate multiple installation orientations (vertical, horizontal, inclined) and surfaces. The standardized mounting structure with rotating capability serves multiple functions: fixed mounting, angle adjustment, and adaptation to different surface types, eliminating the need for multiple specialized mounting solutions
2Adaptability or versatility
If traditional LED lights have fixed light angles, then the structure is simple, but the luminescent range is limited and cannot meet upward, downward or inclined illumination needs
Solution Approach 1:
The connecting portion is designed to rotate relative to the mounting member via a rotating shaft, enabling dynamic adjustment of the light angle between 0-90 degrees. This allows the luminescent surface to be oriented in different directions (upward, downward, inclined) to meet various illumination needs while maintaining a relatively simple mechanical structure
Solution Approach 2:
The mounting member and connecting portion are arranged in perpendicular spatial relationships, creating a two-dimensional adjustment capability. The rotating shaft mechanism adds a rotational degree of freedom, enabling the light to be directed in multiple spatial dimensions without requiring complex multi-axis adjustment systems
3Adaptability or versatility
If traditional LED lights use single connection mode, then the wiring is simple, but the connection versatility is limited and waterproof performance is poor
Solution Approach 1:
The base of the mounting member is equipped with multiple inlets (four first inlets arranged on the side surface and one second inlet perpendicular to them) that support various wire connection modes. This universal connection interface allows different wiring configurations while the integrated seal system provides waterproof protection, eliminating the need for separate waterproofing components
Solution Approach 2:
The seal system integrates multiple sealing functions into a unified structure. The first seal connects the base and connecting portion, while the second seal connects the mounting member and connecting portion. This merged sealing approach provides comprehensive waterproof protection for all wire connection points without requiring individual waterproofing solutions for each inlet
Data Source
AI summary
An LED light includes a housing, a mounting member and a body respectively mounted on two opposite ends of the housing to simultaneously obtain a vertical installation, a horizontal installation or an inclined installation. The mounting member includes a base, a connecting portion connected to the base and a first seal connected between the base and the connecting portion to waterproof the connecting portion. The housing includes a mounting portion, a supporting portion and a slot surrounded thereby. The mounting portion includes a first fixing bole and the connecting portion includes a corresponding second fixing hole and a rotating shaft passing through the first and second fixing holes in turn to rotate the connecting portion in the slot in a rotation angle range between 0 degree and 90 degree. The base includes four first inlets and a second inlet simultaneously perpendicular to the four first inlets thereby supporting a variety of connection modes.


