Shepherd FTIR. Laboratory Quality Results. Continuous, real time portable monitoring of 385 individual species of gas: 100+ HAPs. ...

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Shepherd FTIR Portable FTIR Multi-gas Analyzer Laboratory Quality Results Acids VOCs, SVOCs Continuous, real time portable monitoring of 385 individual species of gas: 100+ HAPs. Fluorocarbons, CFCs Solvents Hydrocarbons Combustion Gases Organics Fully Portable CONTACT: Cerex Monitoring Solutions, LLC. 1816 Briarwood Industrial Ct. Ste D...In Real Time

Unmatched Sensitivity: Industry Leading Performance only a Cerex System can deliver... The Shepherd FTIR utilizes an ultra-sensitive cryo-cooled MCT detector system for sensing minute changes in IR absorption due to the presence of trace concentrations of individual gases. The result of coupling our proven detection system with a 20 meter internal optical sample path and CMS real time analytic software is an industry leading FTIR multi-gas analyzer. Offering true ppb detection limits in a simple to operate portable package, in practice, only the Cerex cryo-cooled system can reliably deliver unattended, continuous real time monitoring of ultra low ppb concentrations of individual gas species with absorption features spanning the IR spectrum from 2 to 14 microns. There are no additional costs for sample handling, wet chemistry, carrier gas, sorbent filters or tedious ongoing calibrations. There are none of the constant maintenance costs or extra work associated with the handling of, or regulatory compliance issues arising from the use of liquid nitrogen coolant. Results are immediate, and the raw data containing all the information necessary for gas identification and quantification is always saved. Low cost of ownership is achieved through a three year routine maintenance cycle. Shepherd FTIR Features: Features Defined by Years of Operator Feedback... For twenty years Cerex has manufactured the premier open path FTIR analyzer: Our AirSentry FTIR. With so many installations among diverse users worldwide, Cerex has received high quality feedback from Industry, Government, Engineers, Operators, Systems Integrators and Scientists operating our FTIR analyzers. We listened The Shepherd FTIR offers features and a variety of configurations for flexible operations. An internal cell, long life consumables, a simple user interface, simplified networking and unknown gas analysis software. The touchscreen interface, intuitive controls, large buttons, multiple analysis routines, advanced signal smoothing and low ppb detection limits make the Shepherd FTIR ready to meet a broad spectrum of monitoring requirements, with the flexibility to meet the needs of field technicians as well scientists. Integrated Computer with Windows Simultaneous multi-component detection Full functionality of a PC Inherent calibration Touchscreen Interface Internal cell for QA, or user specific calibration Integrated WiFi and Ethernet Networking Easily configured for your application.csv data file output User configurable acquisition cycles, alarms Raw data files are always saved Audible, Visual and Email alarm functionality Software for reference file creation Software for unidentified gas analysis The Shepherd FTIR is designed to minimize operational costs and maximize uptime. Only two consumable items: The IR Source and the Cryo-cooler Compressor Cerex Monitoring Solutions, LLC. 1816 Briarwood Industrial Court, Suite D Windows is a registered trademark of Microsoft Corporation in the United States and many other countries.

Cerex CMS Software: Control is in your hands... All Cerex analyzers use Continuous Monitoring Software. CMS provides user interface, data-logging and analytic gas detection and quantification functionality. CMS puts control where it belongs,. In your hands. Target gas concentrations and alarm parameters are reported each user configured acquisition cycle. Alarms, acquisition time, background acquisition, detectable gases, and detection limits are all user configurable. Raw single beam files are always saved, providing permanency and third party of monitoring verification....from anywhere Deploying the Shepherd FTIR with internet access, or adding a cellular USB modem adds powerful real-time remote control and data access functionality. Alarms may be automatically emailed to any email address when gas concentrations exceed userconfigurable alarm thresholds, and data may be automatically emailed daily. The analyzer may be controlled and monitored from any pc or smartphone with Internet access. The CMS Data tab displays per acquisition gas concentration, data validity and visual alarms. Single beam and absorption plots are readily viewed in real time. Raw single beam data is always saved. Trended concentration data is available at a glance on the CMS Data Summary tab.

Detection Capabilities FTIR Principle of Operation... The Shepherd FTIR operates by sending a beam of infrared light through a twenty meter sealed sample cell within the instrument. The IR beam is directed by a series of optics to an ultra-sensitive MCT detector where the absorption due to target gases is measured and recorded. A classical least squares regression analysis compares the measured absorption spectrum to calibrated reference absorption spectra files. Beer s law is then used to determine gas concentrations. Unrivaled Detection Capabilities of Individual Gases... The Cerex detectable gas library consists of 385 compounds, including many of the most scrutinized hazardous air pollutants. The wide measurement spectrum makes detection of individual species simple. You can know the concentrations of the species you are required to monitor, without erroneous concentrations due to cross interference. Shepherd FTIR Minimum Detection Limits of Commonly Requested Single Gases: Parts per Billion Acetaldehyde 30.5 Cyclohexene 35.5 Hydrogen Sulfide 22500 Octane 12.5 Acetic Acid, monomer 70 Cyclopentene 65 Isobutane 37 Ozone 32.5 Acetone 145 Cyclopropane 100 Isobutanol 17 n-pentane 42.5 Acetonotrile 650 1,2 Dibromoethane 115 Isobutylene 20.5 1-Pentene 50 Acetl Chloride 33.5 m-dichlorobenzene 60 Isoctane 29.5 2-Pentene 75 Acetylene 38.5 o-dichlorobenzene 47 Isoprene 22.5 trans-3-pentene nitrile 29.5 Acrolein 42.5 Dichlorodifluoromethane 10 Isopropanol 55 Phosgene 10 Acrylic Acid 23 1,1 Dichloroethane 55 Mesitylene 46 Phosphine 135 Acrylonitrile 75 1,2 Dichloroethane 365 Methane 175 Propane 95 Ammonia 10 1,1 Dichloroethene 34 Methanol 20.5 Propionaldehyde 24.5 Aniline 195 1,2 Dichloroethene 100 Methyl Acetate 40 Propionic Acid 110 Arsine 85 Dichloromethane 65 Methyl Acrylate 33 Propylene 70 Benzene 170 1,2 Dichlorotetrafluorethane 10 Methylamine 145 Propylene Oxide 110 Bis-dichloroethylether 35 Diethyl Ether 13 2-Methyl 2-Butene 235 Silicon Tetrafluoride 10 Boron Trichloride 10 Dimethylamine 36.5 3-Methyl 1-Butene 80 Styrene 60 Bromomethane 410 Dimethyl Ether 45.5 Methyl Formate 75 Sulfur Dioxide 225 Butadiene 46.5 1,1 Dimethyl Hydrazine 17.5 Methyl Methacrylate 32.5 Sulfur Hexafluoride 10 n-butane 105 Dimethyl Sulfide 15 Methyl Nitrite 33 1,1,1,2 Tetrachloroethane 19 2-Butanone 105 Ethane 80 2-Methyl Pentane 55 1,1,1,2 Tetrachloroethane 2000 Carbon Dioxide 655 Ethanol 44.5 3-Methyl Pentane 30 Tetrachloroethene 10 Carbon Disulfide 170 Ethyl Benzene 170 2-Methyl 1-Pentene 85 Tetrahydrothiophene 44.5 Carbon Monoxide 65 Ethylene 32 2-Methyl 2-Pentene 45 Toluene 170 Carbon Tetrachloride 11.5 Ethylene Oxide 55 4-Methyl 2-Pentene 60 1,1,1 Trichloroethane 27.5 Carbon Tetrafluoride 10 Ethyl Vinyl Ether 60 Methyl Vinyl Ether 70 1,1,2 Trichloroethane 70 Carbonyl Sulfide 24 Fluorobenzene 85 Methyl Vinyl Ketone 95 Trichloroethene 11.5 Chlorobenzene 75 Formaldehyde 22.5 Nitric Acid 31.5 Trichlorofluormethane 10 Chlorodifluoromethane 10.5 Formic Acid, Monomer 39 Nitric Acid 1150 Trochlorotrifluoroethane 10 Crotonaldehyde 38 Furan 55 Nitro Benzene 65 Vinyl Acetate 37.5 Chloroethane 100 n-hexane 22.5 Nitro Ethane 150 Vinyl Chloride 80 Chloroform 12.5 Hydrogen Bromide 60 Nitrogen Dioxide 145 Vinylidene Chloride 34.5 Chloromethane 470 Hydrogen Chloride 30.5 Nitro Methane 405 m-xylene 75 Chlorotrifluoromethane 30 Hydrogen Cyanide 340 Nitrous Acid 11 o-xylene 135 Cyclohexane 10 Hydrogen Fluoride 10 Nitrous Oxide 95 p-xylene 70 Cerex Monitoring Solutions, LLC. 1816 Briarwood Industrial Court, Suite D

Options for Manufacturing, Engineering, Security and HAZMAT Powerful Communication Features Internal and external USB ports make the addition of optional USB peripherals such as GPS, Cellular Modem or even a Streaming Webcam possible. This flexibility adds powerful real time monitoring, automated data reporting and automated alarm reporting functionality. The Shepherd FTIR may be deployed and environmental conditions monitored by onsite personnel as well as remote decision makers via any PC or smartphone with an internet connection. Simplified Process Control Integration, Industrial Communication, Control Outputs, Data Acquisition Inputs The Shepherd FTIR is available with user specific control outputs, as well as MODBUS, Serial and analog outputs to allow simple and direct integration with existing data acquisition and control systems. Core Data Acquisition and Integrated Meteorological Monitoring With optional inputs the Shepherd FTIR is easily configured as a data acquisition system to allow logging and communication capabilities to be extended to particulate analyzers, ancillary sensors, external analyzers, and more. Definitive source support is available by ordering a Shepherd FTIR analyzer with integrated temperature and 3-D ultrasonic wind modeling hardware. All data parameters are integrated into CMS data tables, and the anemometer is tripod mounted for rapid deployment. External Battery Systems The Shepherd FTIR smart charger will charge and maintain the internal lithium polymer battery while simultaneously supplying power for continuous monitoring. Ready to go at a moments notice, a variety of optional external batteries are available to extend continuous monitoring capability in the absence of power.

Shepherd FTIR Multi-Gas Analyzer Specifications General parameters Measuring principle Cerex Shepherd FTIR General Specifications FTIR Common Applications Chemical Manufacturing AQ Performance Response time, T90 Operating temperature Storage temperature Power supply Run Time Power consumption Spectrometer Resolution Scan frequency Detector Source Beamsplitter Simultaneous analysis of up to 50 gas compounds Typically < 120s, depending on the gas flow and measurement time. Short term 0-40⁰C, long term 5-30⁰C, non-condensing -20⁰C-60⁰C non-condensing 100 to 240 VAC/50-60Hz 3 Hour Battery, Continuous AC Average 120W; Max 300W User configurable: 1cm -1, 4cm -1, 8cm -1, 16cm -1, 32cm -1, 64cm -1 6 scans/s Standard: Sterling Cooled MCT, (Optional Application Dependent: 2 stage Peltier cooled MCT) SiC, 1550K ZnSe Refinery Air Quality Fertilizer Manufacturing AQ Container Inspection Leak Detection Ambient Air Quality Indoor Air Quality HAZMAT Response Border Patrol Inspection Window material ZnSe Wave number range 600-4200 cm -1 Chemical Warfare Agent Detection Cerex manufactures a full line of UVDOAS and FTIR Multi-gas Analyzer products for CEMs, Process Monitoring, PAAM, Leak detection, Zone Monitoring, IAQ, Ambient Monitoring and HAZMAT Response as well as custom analyzers for specific monitoring needs. CONTACT: Contact us for a demonstration of our technology: +1 Cerex Monitoring Solutions 1816 Briarwood Industrial Court, Suite D www.cerexms.com