Detector Circuit With Programmable Dark Current Compensation

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Solution Overview

Problem

Digital imaging devices suffer from distortion due to dark current, which is indistinguishable from photo current and consumes a part of the detector's capacity, leading to inaccurate image representation and increased gaps between active imaging areas.

Innovation Solution

Implementing a programmable current source to provide a neutralizing charge that counters the effect of dark current, allowing for more accurate photo current representation and reducing or eliminating the need for guard rings, thus straightening bias voltage field lines and minimizing image distortion.

Engineering Contradictions & Design Principles

VSEngineering Contradiction Analysis

1Measurement precision

If guard rings are used to reduce dark current effects, then image distortion is reduced, but gaps between active imaging areas increase and device complexity increases

Engineering Contradiction:
Improveimage accuracyVSAvoidactive imaging area
Core Design Contradiction:
Measurement precisionVSArea of stationary object

Solution Approach 1:

The patent extracts the dark current compensation function from the structural guard ring and relocates it to the electronic domain through a programmable current source. This removes the need for physical guard rings while maintaining dark current correction capabilities, thereby eliminating the gaps they create between active imaging areas.

Inventive Principle:
Principle #2Taking out (Extraction)

Solution Approach 2:

The patent replaces the mechanical/structural guard ring system with an electronic current source system. Instead of using physical structures to manage dark current, the invention uses programmable electrical current to counteract dark current effects, achieving the same goal without the spatial overhead of guard rings.

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

2Measurement precision

If guard rings are used to reduce dark current effects, then image distortion is reduced, but device complexity increases

Engineering Contradiction:
Improveimage accuracyVSAvoiddetector circuit complexity
Core Design Contradiction:
Measurement precisionVSDevice complexity

Solution Approach 1:

The patent extracts the dark current compensation function from the complex guard ring structure and implements it through a programmable current source with control logic. This approach maintains image accuracy while potentially reducing overall device complexity by using standard semiconductor components rather than specialized guard ring structures.

Inventive Principle:
Principle #2Taking out (Extraction)

3Measurement precision

If detector capacity is increased to handle dark current, then image accuracy improves, but detector capacity is consumed by dark current

Engineering Contradiction:
Improvephoto current representation accuracyVSAvoiddetector capacity
Core Design Contradiction:
Measurement precisionVSQuantity of substance

Solution Approach 1:

The patent converts the harmful dark current into a manageable parameter by measuring it separately and using it to program the compensating current source. Instead of treating dark current as noise to be tolerated within limited detector capacity, the invention uses it as information to generate an equal and opposite corrective current, effectively eliminating its harmful impact.

Inventive Principle:
Principle #22Blessing in disguise (Convert harm into benefit)

Solution Approach 2:

The patent introduces a programmable current source as an intermediary between the detector and the readout electronics. This intermediary measures the dark current, processes it through control logic, and generates a compensating current that is added to the photo current signal, thereby separating the dark current management function from the primary detection function.

Inventive Principle:
Principle #24Intermediary (Mediator)

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 solution enhances image accuracy by reducing the impact of dark current, enabling smaller gaps between active imaging areas and improving image quality without the need for guard rings.

Implementation Method 1

The detector substrate is made of a photo-conductor material which converts incoming radiation into electronic signals

Methodology Applied
Scientific EffectPhoto-conduction: Photoconductivity

Implementation Method 2

a capacitor coupled with the detector substrate, the capacitor arranged to collect an electrical charge from the detector substrate

Methodology Applied
Scientific EffectCapacitance: Capacitance

Data Source

PatentUS12436303B2Detector circuit
Publication Date: 2025.10.07 OY VAREX IMAGING FINLAND LTD
  • US12436303B2 patent drawing
  • US12436303B2 patent drawing
  • US12436303B2 patent drawing

AI summary

Some embodiments include an imaging system comprising a detector substrate, at least one detector circuit comprising a capacitor coupled with the detector substrate, the capacitor arranged to collect an electrical charge from the detector substrate, and the imaging system further comprises at least one programmable current source, arranged to provide a neutralizing charge to the capacitor, and the imaging system is configured to select a value for the neutralizing charge in dependence of a frame number.