LED Lamp Lens Plate Angle Adjustment via Segmented Control
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Solution Overview
Problem
Existing LED lamps have a fixed lens panel position, limiting the adjustability of light distribution direction, and lack intelligent control features to adapt to changing user demands.
Innovation Solution
An LED lamp with a heat dissipation base, an LED lamp panel, a driving power supply, a lens plate, and a controlling device that includes a Bluetooth circuit and relays to adjust the light emitting angle and brightness of light emitting elements corresponding to different positions of the lens plate.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If the lens panel position is fixed in existing LED lamps, then the structure is simple and easy to manufacture, but the light distribution direction cannot be adjusted according to different use places
Solution Approach 1:
The LED lamp panel is divided into multiple independently controllable light emitting elements (first, second, third, and fourth lamp beads) arranged in a matrix pattern. Each light emitting element can be controlled separately through the controlling device, allowing selective activation to achieve different light distribution directions without moving the entire lens panel, thus improving adaptability while maintaining structural simplicity.
2Adaptability or versatility
If existing LED lamps lack intelligent control features, then the device complexity is low, but they cannot adapt to changing user demands for intelligent lighting
Solution Approach 1:
The controlling device dynamically controls the illumination state of different light emitting elements based on received control signals. The system can switch between different lighting modes (first, second, third lighting modes) by activating specific combinations of lamp beads, enabling intelligent adaptation to varying user requirements while maintaining a relatively simple device structure through electronic control rather than mechanical complexity.
3Illumination intensity
If all light emitting elements are activated, then the total brightness is maximum, but the energy consumption increases and brightness distribution becomes uniform without flexibility
Solution Approach 1:
Different light emitting elements are activated based on specific lighting modes to create non-uniform brightness distribution. The controlling device selectively turns on or off individual lamp beads (first, second, third, fourth) to achieve different illumination patterns, allowing bright areas to be concentrated where needed while reducing energy consumption in areas where full illumination is not required, thus achieving both brightness flexibility and energy efficiency.
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
The LED lamp can adjust its light emitting angle and brightness according to user requirements, enhancing its adaptability and user experience while maintaining energy efficiency and safety.
Implementation Method 1
an LED lamp panel fixedly mounted in the mounting groove and including a plurality of light emitting elements
Data Source
AI summary
An LED lamp includes a heat dissipation base including a lamp panel mounting portion and a power supply mounting portion connected to an end of the lamp panel mounting portion, the lamp panel mounting portion being provided with a mounting groove; an LED lamp panel fixedly mounted in the mounting groove and including a plurality of light emitting elements; a driving power supply mounted to the power supply mounting portion; a lens plate covering the LED lamp panel; and a controlling device provided on the power supply mounting portion. The controlling device is electrically connected between the LED lamp panel and the driving power supply and is configured to control each light emitting element corresponding different positions of the lens plate to emit light and adjust brightness of each light emitting element corresponding to different positions of the lens plate.


