Hydrogen Masers
Microwave Amplification by Stimulated Emission of Radiation is used as a frequency and time standard.
See Also: Time Standards, Atomic Clocks, Hydrogen Frequency Standards
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Product
Hydrogen Frequency & Time Standard
CH1-1007
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Hydrogen frequency and time standard Ch1-1007 is designed to generate and reproduce precision, highly stable, spectrally pure frequency and time signals. Main areas of application: – in metrology when transferring the sizes of units of frequency and time, including as part of mobile measuring complexes; – in radio astronomy when conducting scientific research; - in radio navigation when working as part of automated measuring systems and complexes.
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Elemental Analyzers for Carbon, Sulfur, Oxygen, Nitrogen and Hydrogen
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HORIBA Scientific provides inorganic elemental analyzers for a wide range of applications based on the inert gas fusion technique and high frequency heating combustion in oxygen stream.The EMIA Series for Carbon and Sulfur analysis and EMGA Series for oxygen, nitrogen and hydrogen analysis strongly rely on HORIBA’s experience as a pioneer in Non-Dispersive Infrared (NDIR) technology. Both EMIA and EMGA designs meet all requirements for the metallurgical industry. These instruments also help scientists working in other application fields such as semiconductor, battery materials, ceramics and more.
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Oxygen/Nitrogen/Hydrogen Analyzers
EMGA-Expert
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The characteristics and performance of metal and solid materials, including steel, various other metals, ceramics, and electronic materials, are determined by the amount of oxygen, nitrogen, and hydrogen. Analyzing elements in such materials at high accuracy and with a small amount has become increasingly important in the study and performance analysis of materials.The EMGA Series Oxygen/Nitrogen/Hydrogen Analyzers significantly reduces analysis time and costs while enhancing analysis accuracy and functionality. Pursuing also usability, the EMGA Series strongly supports improved efficiency in material research and development and quality control.
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Oxygen/Nitrogen/Hydrogen by Inert Gas Fusion Infrared and Thermal Conductivity Detection
836 Series
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The ONH836 Oxygen/Nitrogen/Hydrogen Elemental Analyzer is designed for wide-range measurement of oxygen, nitrogen, and hydrogen content of inorganic materials, ferrous and nonferrous alloys, and refractory materials using the inert gas fusion technique.
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Oxygen/Nitrogen/Hydrogen Analyzer
EMGA-930
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This is a simultaneous oxygen, nitrogen & hydrogen elemental analyzer with high accuracy and repeatability suiting to cutting-edge technology's R&D as well as quality control in the market of steel, new materials, catalyst and so on. This is a new generation model optimized to fit to user's requests.The oxygen is measured as carbon monoxide and carbon dioxide by two non-dispersive infrared detectors, the nitrogen by a thermal conductivity detector and the hydrogen with non dispersive Infra Red detector as H2O.
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Product
Tunable Laser Hydrogen Chloride Analyzer
TX-100
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Laser HCl analyzer with a probe type optical system which employs direct insert method. TX-100 is suitable for monitoring HCl concentration in incineration plants and the control of HCl removal process in various industries including cement factories and petrochemical plants, etc.
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Hydrogen Portable Leak Tester
H 6000
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The H 6000, a new comer in the ATEQ range of leak detectors, is one of the finest gas tracer and hydrogen leak detectors on the market today.This gas is less expensive than Helium gas. Furthermore, it's a volatile, non-toxic and nonpoisonous gas without any environmental impact.
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Carbon / Hydrogen / Sulfur Analyzer
CHS‑580A
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ELTRA’s 580A analyzers (A = Autoloader) are equipped with an automatic sample loader, allowing for analysis of large numbers of samples without operator intervention. The sample loader is available in two versions to accommodate 36 or 130 crucibles. The CHS-580A is based on the technology of the CHS-580 analyzer and features a vertical resistance furnace with ceramic tube.
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Hydrogen Leak Tester
T8999
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T8999 is a tool designed to meet the increasing need for easy and clean identification of the position of the leak on a piece being tested, therefore eliminating the need for methods such as water tank immersion or use of leak detecting sprays, which are harmful for the pieces which could develop rust or pieces that are difficult to accurately clean.
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Hydrogen Sulfide Detectors
INS2-H2S-03
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The professional-grade Hydrogen Sulfide Inspector is the ideal tool for all industrial applications. The Inspector is perfect for people working in refineries to people working in sewage and wastewater treatment facilities. With its advanced sensor technology, the Inspector allows for accurate readings of hydrogen sulfide concentrations. The Industrial Pro is the most advanced Inspector model, and features audio, visual, and vibration alarms.
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Hydrogen Gas Analyzer
HyEVO
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High-accuracy, high-resolution hydrogen gas analyzer designed to support the development of the hydrogen supply chain.Essential for the development of technologies necessary to produce, transport and use hydrogen and hydrogen related materials such as ammonia.HyEVO can be used for many applications in combination with other measurement devices.
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UV/IR Flame Detector for Hydrogen Apps
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The FL500-H2 is an Ultraviolet / Infrared flame detector designed specifically to detect hydrogen (H2) fires. The FL500-H2 optical flame detector monitors for radiation emitted by a hydrogen flame in both the ultraviolet (UV) and infrared (IR) spectral ranges.
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Process Hydrogen Analyzer
HY-OPTIMA™ 700B Series
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H2scan’s HY-OPTIMA™ 700B series in-line, real time hydrogen-specific process analyzers are designed for ease of use, interface flexibility and true process control. The HY-OPTIMA™ 700B series is a solid-state sensor that is configured to operate in process gas streams with temperatures up to 60ºC. The HY-OPTIMA™ 700B series is ideal for hydrogen production and petrochemical applications where real-time measurements can enhance process plant efficiencies, diagnostics and maintenance management.














