4 products found
AVL Analytical Technologies GmbH products
Gas Analyzers

AVL - Portable FID Analyzer for TOC Emission Monitoring
The AVL PA-FID C50 is a portable Flame Ionization Detector (FID) analyzer specifically designed to monitor Total Organic Carbon (TOC) emissions in both the process industry and laboratories. Engineered with flexibility and robustness in mind, the AVL PA-FID C50 meets stringent design standards, ensuring top-tier performance while maintaining cost-efficiency. This lightweight and compact analyzer operates with minimal supply gases, specifically ambient air and hydrogen, which enhances its portability and makes it ideal for difficult-to-access sampling points associated with QAL 2 and AST applications. Its modular and easy-to-access design simplifies maintenance, allowing for swift operator-initiated service actions. The analyzer offers reliable performance over varying ambient temperatures with minimal impact from oxygen concentration variations. Currently pursuing QAL 1 certification, the PA-FID C50 is versatile enough for use in diverse environments, including waste incineration and power plants.

AVL - Compact Nitrogen Oxides Analyzer for Industrial and Laboratory Use
The AVL CLD C50TM is a sophisticated continuous monitoring device designed specifically for the precision measurement of nitrogen oxides (NOx) in both industrial and laboratory settings. This compact chemiluminescence detector (CLD) analyzer delivers reliable and precise measurement results, making it ideal for applications such as assessing indoor air quality, supporting advanced research, and monitoring industrial emissions. Its robust construction suits demanding environments like power plants and manufacturing facilities where stringent emissions control is essential. The device excels in various ambient temperatures, featuring exceptional specifications to minimize quenching effects from substances like H2O and CO2. A significant advantage is its minimal need for supply gases, owing to its operation with ambient air. Additionally, the analyzer is designed for flexibility, ease of transport, serviceability, and operational simplicity, featuring an intuitive interface for tasks such as auto-calibration and data recording. These attributes, combined with its low total cost of ownership and modular design, make it a preferred choice for effective and efficient NOx monitoring.

AVL - Portable FTIR Gas Analyzer for Challenging Environments
The AVL PA-FTIR C50 is a portable, lightweight FTIR analyzer designed to operate effectively in challenging and hard-to-reach locations. It features a robust construction that can withstand vibrations and harsh conditions, delivering reliable performance consistently. The device includes easily accessible mechanical and electrical connectors, which allow for quick setup, and offers intuitive usage through a web interface on devices like notebooks or smartphones. This analyzer supports customizable options to accommodate a variety of gas components and measurement ranges, catering to specific application requirements. It employs a compact, low-drift FTIR spectrometer with a resolution of 0.5 cm-1 and a data rate of 1 Hz, ensuring precise and dynamic measurement results. Notably, this system requires no operating gases or liquid nitrogen, simplifying long-term operation in demanding environments. Integrated self-plausibility checks during and after warm-up ensure accurate measurement data, enhancing the reliability of this instrument.Calibration

AVL - Gas Divider for Gas Analyzer Calibration
The AVL iCAL GDU SL is a gas divider engineered to enhance calibration accuracy of gas analyzers. This device provides precise linearizations, crucial for maintaining accuracy in gas analysis. Equipped with a certified ISO 17025 calibration, it assures compliance with stringent regulatory demands. The device boasts up to 1023 division steps utilizing sonic nozzles, which allow dilution from concentrations like 10,000 ppm to just 9.77 ppm. This efficiency minimizes the need for multiple gas cylinders. Constructed with high-precision pressure sensors and stainless steel components, it offers accuracy within 0.5% of the cut point, ensuring long-term reliability. Its advanced flow design, achieved through virtual simulations and 3D printed stainless steel structures, accelerates purge and stabilization periods, thereby conserving calibration gases and reducing operational costs. It is particularly advantageous for gases such as NH3 that are prone to surface adhesion issues, ensuring faster stabilization and accurate readings.