IP Library › Patent Application 11297170
Patent Application
App. No. 11/297,170

System and method for guiding light from an interrogation zone to a detector system

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Quick Facts
Patent No.
US None
App. No.
11/297,170
Abstract

An optical system for guiding light from an interrogation zone to a detector system. The optical system includes an optical device, a first waveguide, and a second waveguide. The optical device is preferably adapted to collect and partition light into a first channel and a second channel of substantially similar light from a substantially singular orientation of the interrogation zone. The first waveguide is preferably adapted to guide the first channel from the optical device to a detector system without substantial interruption. Likewise, the second waveguide is preferably adapted to guide the second channel from the optical device to a detector system without substantial interruption. Preferably, the light of the first channel can be filtered without affecting the light of the second channel, and the light of the second channel can be filtered without affecting the light of the first channel.

Claims (30)

1 . An optical system for guiding light from an interrogation zone to a detector system, comprising:

an optical device adapted to collect and partition light into a first channel and a second channel, wherein the first channel and the second channel are substantially similar light from a substantially singular orientation of the interrogation zone;

a first waveguide adapted to guide the first channel from the optical device to a detector system without substantial interruption; and

a second waveguide adapted to guide the second channel from the optical device to a detector system without substantial interruption.

2 . The optical system of claim 1 wherein the first channel and the second channel are substantially similar light with substantial similar wavelength parameters.

3 . The optical system of claim 1 wherein the first channel and the second channel are substantially similar light with substantial similar intensity parameters.

4 . The optical system of claim 1 wherein the optical device includes a lens adapted to collect from a substantially singular orientation of the interrogation zone and to separate the light into the first channel and the second channel of substantially similar light.

5 . The optical system of claim 1 wherein the optical device includes distributed sub-channels, wherein a first portion of the sub-channels is combined into the first channel, and wherein a second portion of the sub-channels is combined into the second channel.

6 . The optical system of claim 1 wherein the first waveguide and the second waveguide are optical fiber.

7 . The optical system of claim 6 wherein the first waveguide and the second waveguide are polarization-maintaining optical fiber.

8 . The optical system of claim 1 further comprising a first detector subsystem, wherein the first waveguide is adapted to guide the first channel of light to the first detector system, further comprising a second detector system, wherein the second waveguide is adapted to guide the second channel of light to the second detector subsystem.

9 . The optical system of claim 8 wherein the first detector subsystem and the second detector subsystem include a wavelength based filter.

10 . The optical system of claim 9 wherein the first detector subsystem and the second detector subsystem include a collimating lens.

11 . A method of guiding light from an interrogation zone to a detector system, comprising the following steps:

collecting and partitioning light into a first channel and a second channel of substantially similar light from a substantially singular orientation of the interrogation zone;

guiding the first channel of substantially similar light to a detector system without substantial interruption; and

guiding the second channel of substantially similar light to a detector system without substantial interruption.

12 . The method of claim 11 wherein partitioning light into substantially similar light includes partitioning light into substantially similar light with substantial similar wavelength parameters.

13 . The method of claim 11 wherein partitioning light into substantially similar light includes partitioning light into substantially similar light with substantial similar intensity parameters.

14 . The method of claim 11 wherein the step of collecting and partitioning the light from a singular orientation includes collecting the light with a lens from a substantially singular orientation of the interrogation zone and partitioning the light by separating the light into the first channel and the second channel of substantially similar light.

15 . The method of claim 11 wherein the step of collecting and partitioning the light from a singular orientation includes collecting the light with distributed sub-channels and partitioning the light by combining a first portion of the sub-channels into the first channel and by combining a second portion of the sub-channels into the second channel.

16 . The method of claim 11 wherein the steps of guiding the first channel and guiding the second channel including guiding with optical fiber.

17 . The method of claim 16 wherein the steps of guiding the first channel and guiding the second channel including guiding with polarization-maintaining optical fiber.

18 . The method of claim 11 wherein the step of guiding the first channel includes guiding the first channel to a first detector subsystem, and wherein the step of guiding the second channel includes guiding the second channel to a second detector subsystem.

19 . The method of claim 18 wherein the first detector subsystem and the second detector subsystem includes a wavelength based filter.

20 . The method of claim 19 wherein the first detector subsystem and the second detector subsystem includes a collimating lens.

21 . The method of claim 11 further comprising filtering the light of the first channel and filtering the light of the second channel.

22 . The method of claim 21 wherein the step of filtering the light of the first channel does not affect the light of the second channel, and wherein the step of filtering the light of the second channel does not affect the light of the first channel.

23 . The method of claim 21 further comprising detecting the light of the first channel and detecting the light of the second channel.

24 . The method of claim 23 wherein the step of detecting the light of the first channel does not affect the light of the second channel, and wherein the step of detecting the light of the second channel does not affect the light of the first channel.

Assignments (3)
SECURITY AGREEMENT Recorded Sep 27, 2007
From: ACCURI CYTOMETERS, INC.
To: VENTURE LENDING & LEASING IV, INC. AND VENTURE LENDING & LEASING V M INC.
Reel/Frame 019913/0721 →
CHANGE OF NAME Recorded Aug 7, 2007
From: ACCURI INSTRUMENTS, INC.
To: ACCURI CYTOMETERS, INC.
Reel/Frame 019659/0157 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 7, 2005
From: BAIR, NATHANIEL C.; FISHER, RICHARD L.; RICH, COLLIN A.
To: ACCURI INSTRUMENTS, INC.
Reel/Frame 017340/0400 →