
297
13.
THEORY OF OPERATION
The T300/T300M Gas Filter Correlation Carbon monoxide Analyzer is a
microprocessor-controlled analyzer that determines the concentration of carbon
monoxide (CO) in a sample gas drawn through the instrument. It requires that the
sample and calibration gases be supplied at ambient atmospheric pressure in order to
establish a stable gas flow through the sample chamber where the gases ability to absorb
infrared radiation is measured.
Calibration of the instrument is performed in software and does not require physical
adjustments to the instrument. During calibration, the microprocessor measures the
current state of the IR Sensor output and various other physical parameters of the
instrument and stores them in memory.
The microprocessor uses these calibration values, the IR absorption measurements made
on the sample gas along with data regarding the current temperature and pressure of the
gas to calculate a final CO concentration.
This concentration value and the original information from which it was calculated are
stored in one of the unit’s internal data acquisition system (DAS - See Sections 7) as
well as reported to the user via front panel display display or a variety of digital and
analog signal outputs.
13.1.
MEASUREMENT METHOD
This section presents measurement principles and fundamentals for this instrument.
13.1.1.
BEER’S LAW
The basic principle by which the analyzer works is called the Beer-Lambert Law or
Beer’s Law. It defines how light of a specific wavelength is absorbed by a particular gas
molecule over a certain distance. The mathematical relationship between these three
parameters is:
I = I
o
e
-
α
L
c
Equation 13-1
Where:
I
o
is the intensity of the light if there was no absorption.
06864B DCN6314
Содержание T300
Страница 2: ......
Страница 4: ...Teledyne API Model T300 T300M CO Analyzer ii This page intentionally left blank 06864B DCN6314 ...
Страница 8: ...Teledyne API Model T300 T300M CO Analyzer vi This page intentionally left blank 06864B DCN6314 ...
Страница 12: ...Teledyne API Model T300 T300M CO Analyzer x This page intentionally left blank 06864B DCN6314 ...
Страница 25: ...23 PART I GENERAL INFORMATION 06864B DCN6314 ...
Страница 26: ...24 06864B DCN6314 ...
Страница 88: ...Getting Started Teledyne API Model T300 T300M CO Analyzer 86 This page intentionally left blank 06864B DCN6314 ...
Страница 89: ...87 PART II OPERATING INSTRUCTIONS 06864B DCN6314 ...
Страница 90: ...Getting Started Teledyne API Model T300 T300M CO Analyzer 88 06864B DCN6314 ...
Страница 144: ...Setup Menu Teledyne API Model T300 T300M CO Analyzer 142 This page intentionally left blank 06864B DCN6314 ...
Страница 198: ...Remote Operation Teledyne API Model T300 T300M CO Analyzer 196 This page intentionally left blank 06864B DCN6314 ...
Страница 243: ...241 PART III TECHNICAL INFORMATION 06864B DCN6314 ...
Страница 244: ...06864B DCN6314 ...
Страница 245: ...243 06864B DCN6314 ...
Страница 246: ...06864B DCN6314 ...
Страница 346: ...INDEX Teledyne API Model T300 T300M CO Analyzer 344 This page intentionally left blank 06864B DCN6314 ...
Страница 386: ...This page intentionally left blank B 2 06864B DCN6314 ...
Страница 395: ...APPENDIX D Wire List and Electronic Schematics 06864B DCN6314 D 1 ...
Страница 396: ...This page intentionally left blank D 2 06864B DCN6314 ...
Страница 400: ...This page intentionally left blank D 6 06864B DCN6314 ...
Страница 401: ...06864B DCN6314 D 7 ...