IP Library Granted Patent US 7,338,168
Granted Patent B2
US 7,338,168 · App. 10/758,579 · Granted Mar 4, 2008

Particle analyzing system and methodology

Assignees: Palantyr Research, LLC; Angkor Technology, LLP; Himanshu S. Amin; Daniel B. Bortnick; Gregory Turocy
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Quick Facts
Patent No.
US 7,338,168
App. No.
10/758,579
Granted
Mar 4, 2008
Kind
B2
Abstract

An imaging system, methodology, and various applications are provided to facilitate optical imaging performance. The system contains a sensor having one or more receptors and an image transfer medium to scale the sensor and receptors in accordance with resolvable characteristics of the medium, and as defined with certain ratios. A computer, memory, and/or display associated with the sensor provides storage and/or display of information relating to output from the receptors to produce and/or process an image, wherein a plurality of illumination sources can also be utilized in conjunction with the image transfer medium. The image transfer medium can be configured as a k-space filter that correlates receptor size to a diffraction-limited spot associated with the image transfer medium, wherein the receptor size can be unit-mapped within a certain ratio to the size of the diffraction-limited spot.

Claims (21)

1. A particle analyzing system comprising

an area for accommodating particles;

an imaging sensor for capturing image data of the particles, the imaging sensor comprising receptors having a size;

an image transfer medium having a diffraction limited spot size in an object plane, the object plane positioned within the area for accommodating particles, the image transfer medium operative to unit map a projected receptor size in the object plane to about the diffraction limited spot size in the object plane, the image transfer medium comprising a first lens positioned toward the object plane and a second lens positioned toward the imaging sensor, the first lens sized to have a focal length smaller than the second lens to provide an apparent reduction of the receptors within the object plane; and

an analyzer coupled to the imaging sensor, the analyzer for characterizing the particles.

2. The particle analyzing system of claim 1 , wherein the receptors comprise pixels having a pixel pitch from about 0.1 microns to about 20 microns.

3. The particle analyzing system of claim 1 , wherein the area for accommodating particles comprises a chamber through which flows a gaseous medium comprising particles.

4. The particle analyzing system of claim 1 , wherein the area for accommodating particles comprises a chamber through which flows a liquid medium comprising particles.

5. The particle analyzing system of claim 1 , wherein the analyzer for characterizing the particles is operative to determine at least one of particle shape, particle size, particle color, and particle transparency.

6. The particle analyzing system of claim 1 , wherein the analyzer for characterizing the particles comprises a processor and a data store, and the analyzer is operative to compare image data of the particles with data in the data store.

7. The particle analyzing system of claim 1 , wherein image data is captured in a synchronous or asynchronous manner.

8. The particle analyzing system of claim 1 , wherein the particle analyzing system is an air quality monitor.

9. The particle analyzing system of claim 1 , wherein the particle analyzing system is a clean room monitor.

10. A particle sizing system comprising

a chamber for accommodating particles;

a sensor for capturing image data of the particles, the sensor comprising pixels having a size;

an image transfer medium having a diffraction limited spot size in an object plane, the object plane positioned within the chamber, the image transfer medium operative to unit map a projected pixel size in the object plane to about the diffraction limited spot size in the object plane, the image transfer medium comprising a first lens positioned toward the object plane and a second lens positioned toward the imaging sensor, the first lens sized to have a focal length smaller than the second lens to provide an apparent reduction of the receptors within the object plane;

an analyzer coupled to the sensor, the analyzer for determining the size of the particles.

11. The particle sizing system of claim 10 , wherein the analyzer comprises a computer.

12. The particle sizing system of claim 10 further comprising an illumination source providing at least about 75% of illumination energy having a wavelength range from about 100 nm to about 2,000 nm.

13. The particle sizing system of claim 10 , wherein the particle sizing system is a clean room monitor or an air quality monitor.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 17, 2015
From: PALANTYR RESEARCH, LLC; AMIN, HIMANSHU S.; ANGKOR TECHNOLOGY, LLP; BORTNICK, DANIEL. B.; TUROCY, GREGORY
To: PIXEL MATCHED HOLDINGS LLC
Reel/Frame 037060/0667 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 16, 2004
From: CARTLIDGE, ANDREW G.; FEIN, HOWARD
To: PALANTYR RESEARCH, LLC.; ANGKOR TECHNOLOGY, L.L.P.; AMIN, HIMANSHU S.; BORTNICK, DANIEL B.; TUROCY, GREGORY
Reel/Frame 015684/0207 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 26, 2004
From: FEIN, HOWARD; CARTLIDGE, ANDREW G.
To: PALANTYR RESEARCH, LLC; ANGKOR TECHNOLOGY, LLP; AMIN, HIMANSHU S.; BORTNICK, DANIEL B.; TUROCY, GREGORY
Reel/Frame 014894/0276 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 15, 2004
From: CARTLIDGE, ANDREW G.; FEIN, HOWARD
To: PALANTYR RESEARCH, LLC
Reel/Frame 014928/0200 →
Continuity (4)
Continuation In Part 1061682900 · Jul 10, 2003
Continuation In Part 1018932600 · Jul 2, 2002
Continuation In Part 0990021800 · Jul 6, 2001
Related Publication 20040246479A1 · Dec 9, 2004