Color Separation Lens Array with PSF Decoupling for Image Sensors

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Solution Overview

Problem

Current image acquisition systems face challenges in maximizing light utilization efficiency and spatial resolution due to the limitations of pixel miniaturization and noise removal, particularly when using color separation techniques like the Bayer pattern, which can lead to spatial and spectral resolution degradation.

Innovation Solution

An image acquisition apparatus and method that incorporates a color separation lens array with a nanostructure capable of separating incident light by wavelength and condensing it onto adjacent photo-sensing cells, combined with a processor that decouples sensing signals using a kernel defined from the point spread function to improve image processing.

Engineering Contradictions & Design Principles

VSEngineering Contradiction Analysis

1Quantity of substance

If pixel miniaturization is implemented to increase the number of pixels, then the number of pixels increases, but light utilization efficiency deteriorates and noise increases

Engineering Contradiction:
Improvenumber of pixelsVSAvoidlight utilization efficiency
Core Design Contradiction:
Quantity of substanceVSLoss of energy

Solution Approach 1:

The incident light is segmented by wavelength using a color separation lens array, which divides the light into different color components (red, green, blue) and directs each component to corresponding photo-sensing cells. This segmentation allows efficient utilization of incident light across the spectrum while maintaining high pixel density, resolving the contradiction between increasing pixel quantity and maintaining light utilization efficiency.

Inventive Principle:
Principle #1Segmentation

2Quantity of substance

If pixel miniaturization is implemented to increase the number of pixels, then the number of pixels increases, but spatial resolution deteriorates

Engineering Contradiction:
Improvenumber of pixelsVSAvoidspatial resolution
Core Design Contradiction:
Quantity of substanceVSMeasurement precision

Solution Approach 1:

A color separation lens array is introduced as an intermediary component between the incident light and the photo-sensing cells. This intermediary optically processes the light by separating wavelengths and condensing them onto appropriate pixels, enabling high spatial resolution even with miniaturized pixels. The lens array acts as a mediator that compensates for the resolution loss inherent in pixel miniaturization.

Inventive Principle:
Principle #24Intermediary (Mediator)

3Ease of manufacture

If conventional demosaicing with micro lens and absorption color filter is used, then color image composition is achieved, but light utilization efficiency deteriorates

Engineering Contradiction:
Improvecolor image composition capabilityVSAvoidlight utilization efficiency
Core Design Contradiction:
Ease of manufactureVSLoss of energy

Solution Approach 1:

The conventional absorption-type color filter system is replaced with a color separation lens array that uses optical refraction and condensation mechanisms. Instead of absorbing unwanted wavelengths (which wastes light energy), the new system refracts and directs different wavelengths to appropriate photo-sensing cells, significantly improving light utilization efficiency while maintaining color image composition capability.

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

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

This approach enhances light utilization efficiency and spatial resolution while minimizing spatial and spectral resolution degradation, effectively addressing the limitations of traditional methods by optimizing light distribution and signal processing.

Implementation Method 1

a color separation lens array provided in front of the sensor substrate, the color separation lens array comprising a nanostructure configured to separate incident light by color

Methodology Applied
Scientific EffectLight separation by wavelength: Dispersion (of waves)

Implementation Method 2

the nanostructure is configured to form a phase distribution in a plurality of regions facing the plurality of photo-sensing cells, respectively

Methodology Applied
Scientific EffectPhase distribution: Phase Modulation

Implementation Method 3

the phase distribution is formed so as to condense light of different wavelengths onto photo-sensing cells adjacent to each other

Methodology Applied
Scientific EffectLight condensation: Focusing

Data Source

PatentUS20240080577A1Image acquisition apparatus and method using color separation lens array
Publication Date: 2024.03.07 SAMSUNG ELECTRONICS CO LTD
  • US20240080577A1 patent drawing
  • US20240080577A1 patent drawing
  • US20240080577A1 patent drawing

AI summary

An image acquisition apparatus according to an example embodiment includes an image sensor including a sensor substrate including a plurality of photo-sensing cells for sensing light thereon, and a color separation lens array disposed in front of the sensor substrate and including a nanostructure to separate incident light by color, wherein the nanostructure forms a phase distribution in a plurality of regions facing the plurality of photo-sensing cells, respectively, and the phase distribution is formed so as to condense light of different wavelengths onto photo-sensing cells adjacent to each other, and a processor configured to process an image signal for each color obtained from the image sensor. The processor is further configured to perform decoupling with respect to sensing signals of the plurality of photo-sensing cells by using a kernel defined from a point spread function determined by the phase distribution.