IP Library Granted Patent US 8,481,944
Granted Patent B2
US 8,481,944 · App. 13/137,085 · Granted Jul 9, 2013

IR spectrometer with non-contact temperature measurement

Inventors: Norbert Rapp (Hagenbach, DE); Michael Taraschewski (Rheinzabern, DE); Alberto Sossai (Karlsruhe, DE)
Assignee: Bruker Optik GmbH
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Quick Facts
Patent No.
US 8,481,944
App. No.
13/137,085
Granted
Jul 9, 2013
Kind
B2
Abstract

An infrared (IR) spectrometer ( 20 ) for IR spectroscopic investigation of a test sample ( 1 ) in a first wavenumber range WB 1 , comprising a sample container ( 1 a ) for the test sample ( 1 ), wherein the sample container ( 1 a ) is transparent to IR radiation in the first wavenumber range WB 1 , and wherein the IR spectrometer ( 20 ) comprises a measuring device for determining the temperature of the test sample ( 1 ), is characterized in that the measuring device comprises an IR sensor ( 2 ) which measures, without contact, the intensity of the IR radiation emitted by the sample container ( 1 a ), and the sample container ( 1 a ) is opaque to IR radiation in the second wavenumber range WB 2 . A simple and reliable measurement of the temperature of a test sample in an IR spectrometer is thereby enabled.

Claims (14)

1. An infrared (IR) spectrometer for IR spectroscopic investigation of a test sample in a first wavenumber range, the spectrometer comprising:

a sample container for holding the test sample, said sample container being transparent to IR radiation in the first wavenumber range; and

a measuring device having an IR sensor for determining a temperature of the test sample, said IR sensor measuring, without contact, an Intensity of the IR radiation emitted by said sample container within a second wavenumber range, wherein said sample container is opaque to IR radiation in said second wavenumber range.

2. The IR spectrometer of claim 1 , wherein said sample container completely fills an inspection window of said IR sensor.

3. The IR spectrometer of claim 1 , wherein the first wavenumber range is in a near infrared range.

4. The IR spectrometer of claim 3 , wherein said first wavenumber range is between 12800 cm −1 and 4000 cm −1 .

5. The IR spectrometer of claim 1 , wherein said second wavenumber range is in a mid infrared range.

6. The IR spectrometer of claim 5 , wherein said second wavenumber range is between 2000 cm −1 and 400 cm −1 .

7. The IR spectrometer of claim 1 , wherein said sample container is surrounded by a temperature control block which can be heated or cooled by a temperature control system.

8. The IR spectrometer of claim 7 , wherein said temperature control system is designed as a Peltier temperature control system.

9. The IR spectrometer of claim 7 , further comprising a measuring chamber in which at least said IR sensor, said temperature control block and said sample container are arranged.

10. The IR spectrometer of claim 7 , further comprising a temperature control loop which evaluates a temperature determined by said IR sensor for driving said temperature control system of said temperature control block.

11. A method for controlling the temperature control loop of the IR spectrometer of claim 10 , wherein the temperature determined by the IR sensor is corrected with a calibration function such that a corrected temperature approximates an actual temperature of the test sample.

12. A method for IR spectroscopic measurement of a test sample using the IR spectrometer of claim 1 , the method comprising the step of examining a test sample which is not opaque in the second wavenumber range.

Assignments (2)
NUNC PRO TUNC ASSIGNMENT Recorded Feb 18, 2022
From: BRUKER OPTIK GMBH
To: BRUKER OPTICS GMBH & CO. KG
Reel/Frame 059049/0058 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 4, 2011
From: RAPP, NORBERT; TARASCHEWSKI, MICHAEL; SOSSAI, ALBERTO
To: BRUKER OPTIK GMBH
Reel/Frame 027022/0581 →
Priority Claims (1)
DE 10 2010 038 329 · Jul 23, 2010 · national
Continuity (1)
Related Publication 20120025081A1 · Feb 2, 2012