LGA-4000Z HCl, H2Ov, NH3, CO, O2, CO2, CH4 Analyzer
The Tunable Diode Laser (TDL) Absorption Spectroscopy analyzer provides inline monitoring of combustion parameters, HCl emissions, NH3 slip limits, and CO/O2 in-situ monitoring for feedback combustion efficiency. The analyzer can be mounted in coal and heavy oil-fired boilers, baghouses, and economizers for combustion efficiency, can be located after a selective catalytic reduction (SCR) system to detect trace levels of ammonia or low HCl.
• Provides immediate response to process changes
• Eliminates cross interferences from background gases and dust
• Excellent long-term drift characteristics, less than 1% FS drift over 6 months
• Full explosion-proof, IP-66 rated enclosures, ATEX & IECEx Zone 1 IIC T6
Teledyne Falcon UltraFast Gas Chromatograph
The Teledyne Falcon Gas Chromatograph is a fast and superior analyzer perfect for process sampling and field testing to verify consistency of materials and processes. Fence line or exhaust Benzene or VOC monitoring can be performed continuously or on an intermittent (portable) basis. The Teledyne Falcon GC paired with an FID detector will speciate hydrocarbons in a fuel sample for determining fuel quality and heating value. The simplified modular design means that a technician can swap a column or detector and perform maintenance quickly and with minimal training.
Teledyne's Ultra-fast Gas Chromatograph is:
▶ FASTER, ▶ SMALLER, ▶ SMARTER, ▶ EASIER, ▶ GREENER
- Fast cycle times with true composition measurements suitable for composition control in near real-time
- Adaptable to many challenging applications such as purity, impurity measurements and simulated distillation
- Scrutinize data rich measurement results in the laboratory
- Portable units available for field testing
- Low power consumption
- Auto sampler and Sample splitter available
- ASTM Methods D2887, D7798, D3710, D7096, D86
- Chromperfect® Chromatography Data System
Total Hydrocarbon Analyzer, Series 4030
Because of its relatively high sensitivity to most organic compounds, the flame ionization detector is a powerful tool for measuring hydrocarbon impurities in other gases. It also provides a linear response over a wide range of analysis. Organic compounds are broken down into carbon fragments detected by the collector. The field proven FID detector is in a chamber heated to a high temperature to meet US EPA requirements for THC emissions monitoring.
• Certified Class 1, Div. 1 or Zone 1 configurations
• CE Marking certification
UV Chlorine Dioxide Monitor
The Model 6020UV monitor uses a polar membrane sensor to accurately measure ClO2. The sensor operates much like a battery, generating current that is linearly proportional to the concentration of chlorine dioxide in solution. A ClO2 permeable membrane isolates the sensor from the measured sample and insures that the measurement is interference free. The light sources typically last 5-10 years and no utilities are required except for power. It comes in non-hazardous and explosion proof versions for use in Class I, Division 1, Groups B, C and D. The 6000 Series can also detect H2S, SO2, CL2 as well as Phenol-in-Water. The 6020UV carries minimal maintenance requirements and low cost of ownership.
Multi-Gas Analyzer CO, CO2, CH4, O2, SO2, NO or NOx Model 7600Z
The 7500Z and 7600Z Series Infrared (IR) Analyzers are capable of detecting up to four chosen, individual IR absorbing components (i.e. CO, CO2, CH4, SO2, NO or NOx with external converter) on a continuous basis. Conveniently packaged in either a 19” rack mount (Model 7500ZA / 7600ZA) or NEMA-4 wall mount enclosure (Model 7500ZB / 7600ZB), the analyzer can also be supplied with an oxygen sensor, providing the operator with space saving, five in one, cost-effective design. The NEMA-4 enclosure can be purged to meet Class I, Div 1 (Zone 1) or Class I, Div 2 (Zone 2) hazardous area installation requirements.
Combustion Efficiency
Nearly half of all fuel burned by U.S. manufacturers is consumed to raise steam. Considering the cost of fuel used to feed steam generating systems, it is essential that operators maximize the efficiency of their combustion processes by properly controlling and optimizing the air-to-fuel ratio.
3110 Combustion Efficiency Analyzer
The 3110 is the quick and easy way to fine tune boilers, furnaces, fire boxes, and any other industrial combustion process. With logical design and simple controls, it's easy to obtain money saving combustion efficiency.
At the push of a button, this unit calculates efficiency and displays the results of burner adjustments without the need for charts or tables. In addition, the unit is compact and completely portable, making it convenient to spot check in the most difficult locations. The 3110 Series analyze O2, CO, combustibles, temperature and calculates CO2 and net combustion efficiency. The unit utilizes maintenance free sensors and includes standard sample probe and pre-conditioning systems.
Portable Turbine Generator Analyzer Model 2750
The 2750 is a rugged, portable, easy-to-use gas analyzer that accurately and reliably measures hydrogen-in-CO2 and air-in-CO2 during maintenance purging of hydrogen-cooled turbine generators. These measurements assure that the purging proceeds quickly, efficiently and effectively. Switch-selectable ranges on the instrument make it easy to choose the measurement required. Plus, the 2750 features a third range that alerts the user to air leaks in the hydrogen cooling gas and thus helps assure optimum efficiency during normal generator operation.
- Monitor purge gas composition during maintenance
- Spot-check hydrogen purity during normal generator operation
- Maintenance free. A simple periodic calibration is all that is needed to assure years of trouble-free service.

H2S, Hydrocarbon, Hydrogen, BTX, MBTE Analysis
Series 7300/7320 BTX, H2S, and H2
Series 2020 Thermal Conductivity for Hydrogen
• Optimizing burner air flow with online analysis of oxygen consuming species
• Analyzes H2S (with UV-Absorption technology) as well as ammonia (NH3), carbon dioxide (CO2) and BTX aromatics reported as “methane equivalent”
• Optical technologies provide fast response with robust, non-consuming detection with no utilities required
• Fully explosion proof, ATEX & IECEx Zone 1 IIB + H2 T6 version of FM Class I Div 1 Groups B-D version available
O2 Systems
Teledyne provides three technical methods to accurately detect O2 on a continuous or intermittent basis. Each method has unique advantages depending on the fuel burned and application. It will also benefit operations to add a CO monitor for achieving even greater precision in the adjustment of burner controls. Optimizing combustion efficiency and minimizing exhaust emissions are vital for proper operation of fuel-burning industrial processes. Teledyne is in an excellent position to guide potential oxygen analyzer users in the proper solution for a given application. Teledyne manufactures over 100 different O2 sensors for a variety of uses. Please call or email us for help finding the right solution for you.
3020 Series Process Oxygen Analyzer
The Model 3020T is a microprocessor-based instrument for detecting oxygen at the parts-per-million (ppm) level in a variety of gases. This instrument serves as the explosion-proof, bulkhead-mount version of the 3000 Series. All controls and displays are available from outside the housing. A digital meter, an alphanumeric display, and a sample flowmeter give the operator constant feedback. Simple menu choices, externally accessible command switches, and dual LCD and LED displays make setup and operation clear and quick.
9060 Zirconium Oxide Flue Gas Analyzer
The Model 9060Z provides in-situ analysis capability, accepting signals from up to two zirconium probes in furnaces, kilns, and boilers with sample temperatures ranging from ambient to 1400C. The display provides percent O2 and CO2 (calculated) readings as well as burner efficiency reading and various diagnostic parameters for operators.

6700 Series Total Organic Carbon (TOC) Analyzer with Optional Correlated BOD/COD
Teledyne Organic Carbon Analyzers provide accurate and reliable on-line TOC analysis using the UV/Heated Persulfate Oxidation Method. The analyzers have been designed for easy operation and maintenance. Particular attention has been devoted to the design, whereby any module can be replaced by the operator within 15 minutes. Components such as the NDIR unit have been specifically designed with no moving parts and use a corrosion resistant design to further reduce maintenance tasks. It is designed to conform to EPA, DIN, CE, ASTM and NAMUR regulations and meet requirements of ISO and EN directives.
- Dual-compartment IP-65 powder-coated steel enclosure
- Flow verification and alarms
- Auto-clean, auto-calibration, auto-validation functions
- Integral air compressor option eliminates carrier gas requirement
- Real-time analysis without reagents or utility gases required
- UV source: long life xenon flash lamp
Total Hydrocarbon in Water System, Model 4080
The 4080 FID sensor measures total hydrocarbons in boiler feed, water and condensate. It also detects THC content found in cooling tower water for environmental compliance purposes. The 4080 can detect both aliphatic and aromatic hydrocarbon content such as ppm levels of alkanes, VOC, lubricant or motor oil. The temperature controlled stripper system effectively strips hydrocarbons from water by cross flowing N2 over the packed stripper column.
• Certified Class 1, Div 1 or Zone 1 configurations
• Designed to detect hydrocarbons (C1 - C9+) which may not absorb in the UV region
• Model 402REU supplied as a 19-inch sheet metal relay rack enclosure with temperature controller, isothermal chamber and stainless steel sample system
• X and Z purge options available
Model 6650 Oil-in-Water Analyzer System
Teledyne has developed a single sample cell, chopped beam, dual-wavelength photometric analyzer unmatched in reliability and accuracy. The 6600 has been extensively field tested to show excellent correlation with the EPA gravemetric reference method 413.1. The system utilizes optical filters to isolate and make energy measurements at two specific wavelength bands for measurement and reference. The output signal, linear with absorption, shows little or no affect from turbidity. Additionally, electro-optical stability is enhanced by the dual wavelength design. The unit features
- Auto-calibration, remotely initiated via 24 VDC input
- Self-diagnostics and Form C relay contacts
- Total and Undissolved Ratio continuous measurements
- Integral alarms
- Self-cleaning cell
- Response time under 5 seconds possible (application dependent)
- NEMA-4x (stainless steel standard) mounted control unit
LXT 330 /380 /800 AND SP-3 Smart Sensors pH, Conductivity, Dissolved O2, and Turbidity
The universal transmitter configuration works with all digital sensor types and automatically configures to each sensor upon connection. The LXT has a NEMA-4X polycarbonate enclosure for outdoor suitability and is available in loop or line powered configurations. For hazardous area requirements, LXT 380 has pertinent NEC, ATEX and IECEx certifications. The SMART sensor technology stores all sensor parameters in the probe and digitally communicates with transmitter. Field-replaceable sensor cartridges simplify field replacement and reduce cost of ownership. Teledyne's En GardeTM sensor design and gel electrolyte make it perfect for gritty influent processes.
Application |
LXT330 |
SP3 |
FCA330 |
TCA330 |
CA600 |
CE800 |
NA6 |
LXT800 |
MAKE UP WATER |
pH (GP) |
X |
X |
|
|
|
|
|
|
Conductivity |
X |
X |
|
|
|
|
|
|
Free or Total Chlorine |
|
|
X |
X |
|
|
|
|
Conductivity, % reject |
X |
|
|
|
|
|
|
|
Silica |
|
|
|
|
X |
|
|
|
CONDENSATE |
PPB Dissolved Oxygen |
X |
X |
|
|
|
|
|
|
Conductivity |
X |
X |
|
|
|
|
|
|
pH (HPW) |
X |
X |
|
|
|
|
|
|
Cation Conductivity |
|
|
|
|
|
X |
|
|
Silica |
|
|
|
|
X |
|
|
|
Sodium |
|
|
|
|
|
|
X |
|
FEEDWATER |
PPB Dissolved Oxygen |
X |
X |
|
|
|
|
|
|
Conductivity |
X |
X |
|
|
|
|
|
|
pH (HPW) |
X |
X |
|
|
|
|
|
|
Cation Conductivity |
|
|
|
|
|
X |
|
|
Sodium |
|
|
|
|
|
|
X |
|
BOILER WATER |
PPB Dissolved Oxygen |
X |
X |
|
|
|
|
|
|
pH (HPW) |
X |
|
|
|
|
|
|
|
Conductivity |
X |
|
|
|
|
|
|
|
Cation Conductivity |
|
|
|
|
|
X |
|
|
Silica |
|
|
|
|
X |
|
|
|
COOLING WATER |
pH (GP) |
X |
X |
|
|
|
|
|
|
Conductivity |
X |
X |
|
|
|
|
|
|
Free Chlorine |
|
|
X |
|
|
|
|
|
FGD SCRUBBER |
pH (GP) |
X |
X |
|
|
|
|
|
|
EFFLUENT |
pH (GP) |
X |
X |
|
|
|
|
|
|
Conductivity |
X |
X |
|
|
|
|
|
|
Total Chlorine |
|
|
|
X |
|
|
|
|
Dissolved Oxygen |
X |
X |
|
|
|
|
|
|
Turbidity |
|
|
|
|
|
|
|
X
|