IP Library Granted Patent US 9,551,612
Granted Patent B2
US 9,551,612 · App. 15/185,291 · Granted Jan 24, 2017

Tandem dispersive range monochromator

Inventors: Jerome J. Workman, Jr. (Danbury, CT); Tushar Saraf (Brookfield, CT); Thomas Andrew Bennett (Brookfield, CT)
Assignee: WESTCO SCIENTIFIC INSTRUMENTS, INC
G01J3/027G01J3/0202G01J3/06G01J3/10G01J3/18
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Quick Facts
Patent No.
US 9,551,612
App. No.
15/185,291
Granted
Jan 24, 2017
Kind
B2
Abstract

Aspects of a monochromator are described herein. In one embodiment, the monochromator includes a light source that provides light, a diffraction grating including a first diffraction grating and a second diffraction grating, a grating drive motor that rotates the diffraction grating to provide dispersed wavelengths of light, a detector that detects a portion of the dispersed wavelengths of light, and processing circuitry that controls a grating drive motor to regulate an angular velocity of the grating based on an angular orientation of the diffraction grating. By using a diffraction grating having multiple, different dispersive surfaces, measurements of relatively high precision and quality may be taken throughout a wider spectral range. In another aspect, the processing circuitry controls a sample drive motor to vary an angle of incidence of the dispersed wavelengths of light onto a sample for evaluation.

Claims (41)

1. A monochromator, comprising:

a light source;

a diffraction grating comprising a first periodic surface region and a second periodic surface region;

a grating drive motor that rotates the diffraction grating to provide dispersed wavelengths of light from the light source;

a detector configured to detect at least one of a portion of the dispersed wavelengths of light or a reflection thereof; and

processing circuitry configured to control the grating drive motor to regulate a first angular velocity of the diffraction grating over a first range of motion for the first periodic surface region of the diffraction grating and to regulate a second angular velocity of the diffraction grating over a second range of motion for the second periodic surface region of the diffraction grating based on an angular orientation of the diffraction grating.

2. The monochromator of claim 1 , wherein the diffraction grating comprises a tandem diffraction grating, the tandem diffraction grating comprising a first diffraction grating, a second diffraction grating, and a mounting assembly having a rotatable shaft to rotate the tandem diffraction grating.

3. The monochromator of claim 2 , wherein:

the first diffraction grating comprises the first periodic surface for a first range of ultra-violet (UV) to visible (VIS) wavelengths of the light from the light source; and

the second diffraction grating comprises the second periodic surface for a second range of near-infrared (NIR) to infrared (IR) wavelengths of the light from the light source.

4. The monochromator of claim 2 , wherein the processing circuitry further controls the grating drive motor to regulate the first angular velocity over the first range of motion for the first diffraction grating and to regulate the second angular velocity over the second range of motion for the second diffraction grating.

5. The monochromator of claim 2 , wherein the processing circuitry is further configured to control the grating drive motor to regulate at least one of the first angular velocity or the second angular velocity based on an angular orientation of the tandem diffraction grating and an offset distance between a pivot point of the rotatable shaft and a surface of at least one of the first diffraction grating or the second diffraction grating.

6. The monochromator of claim 1 , further comprising:

a sample tray drive motor, wherein

the processing circuitry is further configured to control the sample tray drive motor to vary an angle of incidence of the portion of the dispersed wavelengths of light onto a sample tray.

7. The monochromator of claim 6 , wherein the processing circuitry is further configured to control the sample tray drive motor to vary the angle of incidence of the portion of the dispersed wavelengths of light onto the sample tray based on an angular orientation of the sample tray.

8. A method, comprising:

rotating, by a grating drive motor, a diffraction grating to provide dispersed wavelengths of light by diffraction of light from a light source, the diffraction grating comprising a first periodic surface region and a second periodic surface region;

detecting, by at least one detector, at least one of a portion of the dispersed wavelengths of light or a reflection thereof; and

controlling, with processing circuitry, the grating drive motor to regulate a first angular velocity of the diffraction grating over a first range of motion for the first periodic surface region of the diffraction grating and to regulate a second angular velocity of the diffraction grating over a second range of motion for the second periodic surface region of the diffraction grating based on an angular orientation of the diffraction grating.

9. The method of claim 8 , wherein the diffraction grating comprises a tandem diffraction grating, the tandem diffraction grating comprising a first diffraction grating, a second diffraction grating, and a mounting assembly having a rotatable shaft to rotate the tandem diffraction grating.

10. The method of claim 9 , wherein:

the first diffraction grating comprises the first periodic surface for a first range of ultra-violet (UV) to visible (VIS) wavelengths of the light from the light source; and

the second diffraction grating comprises the second periodic surface for a second range of near-infrared (NIR) to infrared (IR) wavelengths of the light from the light source.

11. The method of claim 10 , wherein controlling the grating drive motor comprises controlling, with the processing circuitry, the grating drive motor to regulate the first angular velocity over the first range of motion for the first diffraction grating and to regulate the second angular velocity over the second range of motion for the second diffraction grating.

12. The method of claim 10 , wherein the controlling comprises controlling, with the processing circuitry, the grating drive motor to regulate at least one of the first angular velocity or the second angular velocity based on an angular orientation of the tandem diffraction grating and an offset distance between a pivot point of the rotatable shaft and a surface of the second diffraction grating.

13. The method of claim 8 , further comprising controlling, by the processing circuitry, a sample tray drive motor to vary an angle of incidence of the portion of the dispersed wavelengths of light onto a sample tray.

14. A monochromator, comprising:

a light source that provides light;

an entrance optics assembly that collimates the light;

an entrance slit that passes at least a portion of the light;

a diffraction grating comprising a first periodic surface region, a second periodic surface region, and a mounting assembly having a rotatable shaft to rotate the diffraction grating;

a grating drive motor that rotates the diffraction grating about a pivot point of the rotatable shaft to provide dispersed wavelengths of light by diffraction of the portion of the light;

an exit slit that passes at least a portion of the dispersed wavelengths of light;

a detector configured to detect at least one of the portion of the dispersed wavelengths of light or a reflection thereof; and

processing circuitry configured to control the grating drive motor to regulate a first angular velocity of the diffraction grating for the first periodic surface region and to regulate a second angular velocity of the diffraction grating for the second periodic surface region based on an angular orientation of diffraction grating.

15. The monochromator of claim 14 , wherein the processing circuitry is further configured to control the grating drive motor to regulate the second angular velocity based on an angular orientation of the diffraction grating and an offset distance between a pivot point of a rotatable shaft of the diffraction grating and a surface of at least one of the first periodic surface region or the second periodic surface region.

16. The monochromator of claim 14 , further comprising:

a sample tray to hold a sample for evaluation; and

a sample tray drive motor, wherein

the processing circuitry is further configured to control the sample tray drive motor to vary an angle of incidence of the portion of the dispersed wavelengths of light onto the sample.

Assignments (7)
PATENT SECURITY AGREEMENT Recorded Feb 13, 2026
From: KPM ANALYTICS NORTH AMERICA CORPORATION
To: CCP AGENCY, LLC, AS ADMINISTRATIVE AGENT
Reel/Frame 074852/0543 →
RELEASE OF SECURITY INTEREST RECORDED AT REEL/FRAME 047989/0327 Recorded Jul 7, 2021
From: CRYSTAL FINANCIAL LLC
To: KPM ANALYTICS NORTH AMERICA CORPORATION (FORMERLY KNOWN AS PROCESS SENSORS CORPORATION)
Reel/Frame 057106/0699 →
SECURITY INTEREST Recorded Jul 2, 2021
From: KPM ANALYTICS NORTH AMERICA CORPORATION (FORMERLY KNOWN AS PROCESS SENSORS CORPORATION)
To: SOUND POINT AGENCY LLC
Reel/Frame 056741/0373 →
CHANGE OF NAME Recorded Jan 22, 2019
From: PROCESS SENSORS CORPORATION
To: KPM ANALYTICS NORTH AMERICA CORPORATION
Reel/Frame 049514/0312 →
MERGER AND CHANGE OF NAME Recorded Jan 22, 2019
From: WESTCO SCIENTIFIC INSTRUMENTS, INC.; PROCESS SENSORS CORPORATION
To: PROCESS SENSORS CORPORATION
Reel/Frame 048093/0794 →
PATENT SECURITY AGREEMENT Recorded Dec 28, 2018
From: KPM ANALYTICS NORTH AMERICA CORPORATION (FORMERLY KNOWN AS PROCESS SENSORS CORPORATION)
To: CRYSTAL FINANCIAL LLC, AS AGENT
Reel/Frame 047989/0327 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 22, 2016
From: WORKMAN, JEROME J., JR.; SARAF, TUSHAR; BENNETT, THOMAS ANDREW
To: WESTCO SCIENTIFIC INSTRUMENTS, INC
Reel/Frame 039495/0135 →
Continuity (3)
Continuation 14213214 · Mar 14, 2014
Provisional Application 61792209 · Mar 15, 2013
Related Publication 20160299003A1 · Oct 13, 2016