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Introducing MIRA Pico SeriesTM Middle Infrared Laser-‐Based Gas Analyzers
Next Generation Gas Analyzers Introducing the new MIRA Pico Series portable middle infrared laser-‐based gas analyzers from Aeris Technologies, Inc. MIRA gas analyzers utilize simple and robust direct absorption spectroscopy using high resolution tunable lasers, enabling target species to be measured in real-‐time with sub-‐ppb sensitivity, ppb-‐level accuracy, and high specificity. MIRA Pico Series analyzers provide performance levels previously only achieved in much larger and higher power consumption portable analyzers. Species accessible with the MIRA platform include:
• Greenhouse gases: CO2, CH4, N2O, H2O • Natural Gas: CH4, C2H6 • Pollutants: CO, H2CO
Core Technologies MIRA series analyzers combine state-‐of-‐the-‐art electronics, solid state laser sources, and Aeris’ unique multipass cell technology to achieve sub-‐ppb sensitivity and ppb level accuracy in an ultraportable, low power consumption package. MIRA’s single board computer efficiently controls all critical analyzer functions, with industry-‐lowest power consumption. The proprietary sensor engine used in every MIRA analyzer uniquely achieves a long absorption path length in an extremely small volume, providing ultra-‐high sensitivity and a fast response time with reduced pumping requirements.
MIRA laser-‐based sensor engine, comprising a fixed, sealed optical bench, integrated laser and detector subassemblies, and ultra-‐compact, 60cc, 13m path length optical multipass cell.
Capabilities MIRA Pico Series portable analyzers utilize a compact, pressure stabilized sensor core to achieve high sensitivity and low drift, significantly reducing or eliminating calibration requirements in many field applications. Key Features include:
• Ultra-‐portable: 11.5”x8”x3.75” • Sub-‐ppb/s sensitivity • 10-‐20 ppb p-‐p long-‐term drift, 5-‐10ppb typical • 3kg (7lbs) with batteries • 10Hz intrinsic reporting, user-‐defined update • 60cc cell volume, rapid flushing with small pump • WiFi, Ethernet, USB Interfaces • 15W power consumption (ambient conditions) • On-‐board Li-‐ion batteries provide up to 8 hours
continuous use Applications MIRA Pico Series analyzers offer high accuracy, real-‐time monitoring solutions for applications including:
• Natural gas (CH4/C2H6) leak detection • Greenhouse gas and pollution field monitoring • Hazardous gas detection • Portable emissions monitoring • Calibration of other field instruments
MIRA Pico Series portable systems come in a compact 0.2ft3 form factor, the smallest in the industry. MIRA Pico Series gas analyzers redefine the state-‐of-‐the-‐ art in portable, laser-‐based gas analysis systems. About Aeris Technologies, Inc. Aeris Technologies, Inc. is a Silicon Valley startup focused on providing laser-‐based gas analysis solutions to the chemical sensing marketplace. The Aeris team includes experts in laser technology, laser spectroscopy, and complete, laser-‐based gas analysis systems.
Aeris Technologies, Inc. 230 Twin Dolphin Drive, Ste D. Redwood City, CA 94065 650.620-‐9421 FAX 9451 www.aerissensors.com
MIRA Pico-SeriesTM Gas Analyzers
Preliminary Specifications
Metric Specification Concentration Range (typical, CH4) 0.1ppm to 10,000ppm
Sensitivity (typical, CH4) <1ppb/Hz1/2 Accuracy, drift (typical, CH4) 20ppb p-‐p (1hr average) over full temp range, or 1% reading Operating Environment 15-‐35°C, 10-‐95% RH, noncondensing
Intrinsic Data Rate, Update Rate 1kHz, up to 10Hz Size (Nominal) 11-‐1/2”W x 8”D x 3-‐3/4”H
Weight 3 kg (7lbs) Power Consumption 15W ambient Power Requirements 100-‐240VAC (AC-‐DC converter)/12V DC/Battery Interface/Outputs USB, Ethernet, HDMI, Wi-‐Fi option
Data Storage 32GB minimum Temporal Response 10 Hz intrinsic, 3 second 90% recovery with 2 lpm pump
Aeris Technologies, Inc. 230 Twin Dolphin Drive, Ste D. Redwood City, CA 94065 650.620-‐9421 FAX 9451 www.aerissensors.com
NIR Analyzers
Aeris MIR Analyzers
CH4
H2O
H2O
MIRA Pico Series gas analyzers are based on mid-‐infrared absorption spectroscopy, providing high sensitivity and specificity. Compared to near-‐infrared absorption-‐based analyzers currently on the market, MIRA mid-‐infrared analyzers enable the same absorption to be obtained in a much shorter path length. This eliminates the need for fragile, high reflectivity optics in the sensor core, making MIRA analyzers 100x less susceptible to optical contamination than analyzers based on “cavity-‐enhanced” approaches.
Typical CH4 absorption spectrum obtained with the MIRA Pico Series Analyzer. Spectra are obtained at a repetition rate of 1kHz, providing real-‐time concentration as well as dry mole fraction data in cases where water vapor is measured simultaneously.
Typical CH4 precision and long-‐term drift shown over an extended period under typical varying room temperature conditions (few degrees C). This level of stability is sufficient for many field applications.