Teledyne 3010MB operating instructions Total Cross Interference

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1 Operational Theory

Model 3010M

 

 

 

 

 

 

 

 

 

Gas

Acetylene C2H2

Allene C3H4

Ammonia NH3

Argon Ar

Bromine Br2

1.2Butadiene C4H6

1.3Butadiene C4H6

n-Butane C4H10 I-Butane C4H8

cis 2-Butane C4H8 trans 2-Butane C4H8 Carbon dioxide CO2 Carbon monoxide CO Chlorine Cl2

Cyclo hexane C6H12

Ethane C2H6

Ethylene C2H4 Helium He

n-Heptane C7H16 n-Hexane C6H14 Hydrogen H2

Hydrogen bromide HBr

Cross

Gas

Cross

Sensitivity

 

Sensitivity

in vol. %

 

in vol. %

-0.24

Hydrogen chloride HCI

-0.30

-0.44

Hydrogen fluoride HF

+0.10

-0.26

Hydrogen iodide HI

-1.10

-0.22

Hydrogen sulphide H2S

-0.39

-1.30

Iodine I

-2.40

-0.49

Isobutane C4H10

-1.11

-0.49

Isopantane C5H12

-1.49

-1.11

Krypton Kr

-0.51

-085

Laughing gas N2O

-0.20

-0.89

Methane CH4

-0.20

-0.92

Neon Ne

+0.13

-0.27

NeopentaneC5H12

-1.49

+0.06

Nitric acid HNO3

+0.43

-0.77

Nitrogen dioxide NO2

+28.00

-1.56

Nitrous oxide NO

+40.00

-0.43

n-Octane C8H18

-2.50

-0.26

n-Pentane C5H12

-1.45

+0.30

Propane C3H8

-0.86

-2.10

Propylene C3H6

-0.55

-1.70

Vinyl chloride

-0.63

+0.24

Water H2O

-0.02

-.0.61

XenonXe

-0.95

With gas mixtures the components are weighted according to their proporational volumes.

The cross interference with a gas mixture can be determined in advance if the concentration of the individual background gases is known.

Example:

Cross sensitivity calculation for a gas mixture:

The gas to be measured consists of 10 % CO2, 40 % of N2, and 50% of Ar.

C02: -0.27 x 10% = -0.027

Ar: -0.22x5O%=-0.11

TOTAL CROSS INTERFERENCE -0.137

Calculation of the zero value:

(0% 02) - (Cross Interference Value) = Zero Point Value

0% -(-0.137) = +0.137%02

1-4: Part II

Teledyne Analytical Instruments

Image 62
Contents Model 3010MB Teledyne Analytical InstrumentsModel 3010MB Copyright 1999 Teledyne Analytical InstrumentsTable of Contents IiiSpecific Model Information Instrument Serial NumberOverview Typical ApplicationsMain Features of the Analyzer Model 3010MB Operational Theory InstallationIi Part OperationPart I Control Unit MaintenancePart I AppendixIv Part Model 3010MB Percent Paramagnetic Oxygen AnalyzerControl Unit Inner Control Panel Percent Paramagnetic Oxygen Analyzer Part I Control UnitIntroduction Model 3010MB Front of Unmounted Control UnitRecognizing Difference Between LCD VFDControl Unit Interface Panel Model 3010MB Rear PanelRemote Probe Analog OutputsRS-232 Port Network I/OIntroduction Model 3010MB Electronics and Signal Processing Operational Theory IntroductionBlock Diagram of the 3010TB CU Electronics Operational Theory Model 3010MBUnpacking the Control Unit Mounting the Control UnitInstallation Model 3010MB NPTElectrical Connections Required Front Door ClearancePrimary Input Power Connections Examples Analog Output ConnectionsRange Voltage Current mA Alarm Relays Connectors arePart RS-232 Signals RS-232 Sig RS-232 Pin PurposeCommand Description Parameter SettingFET Series Resistance Testing the System Operation Using the Data Entry and Function Buttons Operation Model 3010MBSystem Function Span ZeroPart Setting up an Auto-Cal Password Protection Entering the PasswordInstalling or Changing the Password Characters Available for Password Definition System Self-Diagnostic Test LogoutVersion Screen Showing Negative Oxygen ReadingsZero and Span Functions Auto Mode Zeroing Zero CalManual Mode Zeroing Cell FailureAuto Mode Spanning Span CalManual Mode Spanning Alarms Function Span FailurePart I Range Function Range LimitsSetting the Analog Output Ranges Analyze Function Operation Model 3010MB Fixed Range AnalysisSignal Output Voltage Signal Current Signal Ppm O Output V dc Output mA dcOperation Model 3010MB Fuse Replacement Part I Control Unit MaintenanceAnalog System Self Diagnostic TestPower Major Internal Components PreampPart Model 3010M Ii Part Principles of Operation Precise Paramagnetic SensorPercent Paramagnetic Oxygen Analyzer Operational Theory Operational Theory Model 3010M Cross Interference Sensor Rear view shownTotal Cross Interference Percent Paramagnetic Oxygen Analyzer Maintenance Routine MaintenanceSensor Replacement Output Goes NegativeMaintenance Model 3010M Percent Paramagnetic Oxygen Analyzer Appendix SpecificationsOperating Temperature 0-45 C Appendix Model 3010M Recommended 2-Year Spare Parts List Drawing ListAppendix Model 3010M Percent Paramagnetic Oxygen Analyzer Appendix Zero Cal ZeroSettlingMan ENT To Begin

3010MB specifications

The Teledyne 3010MB is a cutting-edge instrument designed for the analysis of various gases in a multitude of applications. It is renowned for its reliability, accuracy, and advanced features that cater to diverse industrial needs. This sophisticated gas analyzer is particularly favored in environmental monitoring, process control, and emissions measurement sectors.

One of the main features of the Teledyne 3010MB is its ability to measure gaseous components such as carbon dioxide, methane, and various other hydrocarbons. Its robust design is complemented by state-of-the-art technology, ensuring consistent performance even in challenging environments. The analyzer leverages a microprocessor-controlled system, which allows for real-time data processing and enhanced operational efficiency.

The Teledyne 3010MB employs advanced infrared (IR) measurement techniques, providing superior sensitivity and specificity compared to conventional methods. The optical system utilizes a multi-path sample cell, which significantly increases the interaction of light with the sample gas, thereby improving the detection limits. This feature is particularly useful when dealing with trace gas measurements, where minute concentrations need to be accurately quantified.

Another key characteristic of the 3010MB is its user-friendly interface, which facilitates ease of operation. The large, graphic LCD display provides clear readouts of measured concentrations, operational status, and diagnostics, enabling operators to quickly interpret data. Moreover, intuitive menus and controls streamline navigation, reducing the learning curve for new users.

For data management, the Teledyne 3010MB offers comprehensive connectivity options. It can interface with various data logging systems and can be integrated into existing monitoring networks. This adaptability enhances its functionality, allowing users to easily collect and analyze data over time.

Furthermore, the device is built to withstand harsh operating conditions, featuring durable materials and a design that minimizes maintenance requirements. Its compact footprint makes it suitable for installation in limited spaces, while its versatility accommodates both laboratory and field applications.

In summary, the Teledyne 3010MB stands out as a leading gas analyzer, boasting features such as precise infrared measurement technology, a user-centric interface, and robust data connectivity capabilities. Its reliability and accuracy make it an invaluable tool for professionals in environmental monitoring and industrial process control, solidifying its reputation as a premier choice in gas analysis.