Hexagonal Light Modulator for Camera Lens Resolution
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Solution Overview
Problem
Current digital cameras struggle to capture high-definition images due to inefficiencies in light gathering and reflection, resulting in fuzzy or underexposed photos, especially when viewed on large screens or printed in large sizes, despite advancements in megapixels and post-processing techniques.
Innovation Solution
A removable EZ Hi-Def device is mounted on the camera lens, featuring six parallel round bars arranged in a hexagon shape that facilitate and modulate light rays from multiple sources, enhancing light capture and reflection efficiency to improve image quality.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Measurement precision
If more megapixels are used in digital cameras, then image resolution is improved, but device complexity and cost increase
Solution Approach 1:
The patent introduces a light modulating device with hexagonal bars as an intermediary component between the light source and camera lens. This device modifies light ray paths to improve image quality without requiring increased megapixels, thus resolving the contradiction by achieving better resolution through optical intervention rather than sensor complexity
Solution Approach 2:
The invention changes the optical parameters of the light rays by using hexagonal bars to modulate and redirect light paths. By altering how light reaches the lens rather than changing sensor parameters, the system achieves improved image resolution without increasing device complexity
2Illumination intensity
If light gathering efficiency is improved, then image quality in low light conditions is improved, but device complexity increases
Solution Approach 1:
The light modulating device is segmented into multiple hexagonal bars arranged in a hexagonal pattern. Each bar independently modulates light rays, and collectively they improve light gathering efficiency. This segmentation allows the system to achieve better light capture without requiring a single complex optical component
Solution Approach 2:
The hexagonal bars have curved surfaces that efficiently reflect and redirect light rays toward the camera lens. The curved geometry optimizes light gathering by capturing rays from multiple angles and directing them to the sensor, improving illumination intensity without adding complex mechanical systems
3Measurement precision
If post-processing techniques are used to improve photo quality, then image clarity is improved, but loss of time occurs
Solution Approach 1:
The hexagonal light modulating device performs preliminary action by optimizing light capture and modulation before the photograph is taken. By pre-conditioning the light rays to ensure optimal illumination and detail capture, the device reduces or eliminates the need for time-consuming post-processing operations
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 device enables the capture of high-definition photos with more details and depth, even in low light conditions, by effectively gathering and reflecting light rays, making existing digital cameras capable of producing clear, high-resolution images without the need for excessive megapixels or advanced lighting setups.
Implementation Method 1
They facilitate and modulate light rays from the live object to the lens
Implementation Method 2
facilitate and modulate light rays from the live object to the lens
Data Source
AI summary
EZ Hi-Def. device is comprised of 6 round bars arranged in a hexagon and a base ring. Round bar handles are located outside of base ring to make the shape of hexagon smaller or bigger, so that bars don't block the live view of the camera or don't show in a photograph. Six round bars reflect light to the camera lens to provide two critical factors to capture a high definition photograph: more image data and increased light sensitivity of the camera.


