|
|
|
Welcome to GlobalSpec - a trusted source for engineers and industrial professionals.
Search GlobalSpec to find infrared absorption-related products, suppliers, datasheets and CAD.
|
FREE GlobalSpec e-Newsletters
Receive the latest news, trends, and technology relevant to your work. (See Titles) |
Spectrometers are analytical instruments which disperse an emission (such as particles or radiation) according to some property of the emission (such as mass or energy) in order to measure the amount of the dispersion. This product area includes Portable / Miniature, visible, infrared (IR), ultraviolet (UV), atomic absorption (AA), optical emission (OE), Raman, X-ray fluorescence (XRF) and mass spectrometers. Specific search forms are also available. Search by Specification | Learn More about Spectrometers
Infrared (IR) spectrometers measure the wavelength and intensity of the absorption of infrared light by a sample. Search by Specification | Learn More about Infrared Spectrometers
Noncontact infrared temperature sensors absorb ambient infrared (IR) radiation given off by a heated surface. They are used in applications where direct temperature measurement is not possible. Search by Specification | Learn More about Noncontact Infrared Temperature Sensors
Infrared heaters use a reflective shield to direct radiant heat onto a heated surface. Search by Specification | Learn More about Infrared Heaters
Atomic absorption (AA) spectrometers use the absorption of light to measure the concentration of gas-phase atoms. Search by Specification | Learn More about Atomic Absorption Spectrometers
...or absorbed by a sample placed in the spectrometer. The wavelength at which a chemical absorbs light is a function of its electronic structure and the intensity of the light absorption is related to the amount of the chemical between the light source... Search by Specification | Learn More about UV and Visible Spectrometers
Thermal imagers detect heat patterns in the infrared wavelength (1 micron to 100 micron) spectrum. Search by Specification | Learn More about Thermal Imagers
Mass spectrometers separate ions by their mass-to-charge (m/z) ratios. They are used to identify compounds by the mass of one or more elements in the compound. They are also used to determine the isotopic composition of one or more elements in a compound. Search by Specification | Learn More about Mass Spectrometers
Infrared Sources are optoelectronic devices that emit infrared light. Learn More about Infrared Sources
...into contact with six types: thermocouples, resistive temperature devices (RTDs and thermistors), infrared radiators, bimetallic devices, liquid expansion devices, and change-of-state devices. This is a generic search form for the selection... Search by Specification | Learn More about Temperature Instruments
Temperature sensors are measurement devices that infer temperature by sensing some physical characteristic (i.e. resistance, emf or thermal radiation). Search by Specification | Learn More about Temperature Sensors
Heat lamps are also known as infrared emitters, infrared bulbs, infrared tubes, or infrared lamps. Heat lamps differ from illuminating lamps in their low filament temperature, resulting in much less light Search by Specification | Learn More about Heat Lamps
IR) spectroscopy measures the wavelength and absorption intensity of infrared light. Microscopy uses instruments such as optical and electron microscopes to study the structure and composition of materials. Non-destructive testing (NDT) examines... Search by Specification | Learn More about Material Testing Services
...emission spectroscopy and ionizes atoms for mass spectrometry. Infrared (IR) spectroscopy measures the wavelength and absorption intensity of infrared light. Microscopy uses instruments such as optical and electron microscopes to study the structure... Search by Specification | Learn More about Chemical Testing Services
...spectometer measure the vibrational energies of the molecules in a sample. Infrared spectroscopy or IR spectroscopy measures the absorption of light of certain energies that correspond to the vibrational energy of the molecule. Since Raman scattering... Learn More about Raman Spectrometers
|
|
||||||||
Precious Metal Analyzer Xenemetrix Inc. (Formerly Jordan Valley AR Inc.)
Fiberoptic Spectroscopy Solutions from Avantes Wilkens-Anderson Company
RoHS MicroAnalyzer Xenemetrix Inc. (Formerly Jordan Valley AR Inc.)
EX-6600 - Advanced Laboratory Spectrometer Xenemetrix Inc. (Formerly Jordan Valley AR Inc.)
RoHS MicroAnalyzer Xenemetrix Inc. (Formerly Jordan Valley AR Inc.)
Ex-Calibur EDXRF Benchtop Xenemetrix Inc. (Formerly Jordan Valley AR Inc.)
|
The IM series is an on-line multi IR wavelength analyzer utilizing infrared absorption technology for measuring product constituent and/or thickness. Signal processing capabilities are built into the compact, Stand-Alone detector unit for easy installation and operation. (read more)
Ideal for Large Manufacturing Fermentors and Bioreactors
The model ASD25-N is a high precision, single channel NIR absorption probe. Stainless steel for use in CIP/SIP processes - pilot or production scale fermenters or bioreactors. It precisely measures growth of microbial or cell cultures as a function of Near Infrared (NIR) absorption. (read more)
Medium to High Turbidity, Solids Concentration - NIR Absorption
The AF16-N is a single channel NIR absorption sensor. The inline sensor is designed for a variety of demanding industrial processes such as filter control, phase separation, and yeast cell concentration. The AF16-N measures concentration or turbidity with great accuracy and repeatability. (read more)
The InPro8300 RAMS systems are designed for in-line use in phase separation and product identification applications by turbidity or color. The rugged InPro8300 RAMS systems are simple to configure, easy to use and require minimal maintenance. These systems are widely used in brewery applications for beer/water separation, before the filler line and in separator control. (read more)
Low to High Turbidity & Optical Density
The AS16-N is a high-precision, single channel absorption probe. The stainless steel probe, equipped with an Ingold-style port, is designed for use in vessels or inline applications. (read more)
Carbon High Powered Infrared Heaters transmit large amounts of energy in a short time and at high efficiency. Infrared heaters, optimally matched to the materials to be heated, provide energy savings of up to 50%. Heraeus infrared lamp technology offers heat exactly where it is needed, with the optimum wavelength for the product and in line with the process. (read more)
Automotive Infrared Heating Systems from Heraeus Noblelight, Inc. Production of motor vehicles needs fast, precise and accessible infrared lamps for many different processing operations during their manufacture. IR heaters from Heraeus Noblelight can carry out these infrared heater operations efficiently and exactly matched to the product and process. (read more)
Fast Medium Wave infrared Heaters transfer large amounts of energy in a short time. Infrared heaters from Heraeus work well with thin foils and large surface areas, and solid, small, or complex geometry work pieces can be heated up very quickly. Fast medium wave infrared lamps are perfect for high efficiency with all substrates and materials. (read more)
Medium wave Infrared heater for plastics, water and other solvents absorb medium wave radiation especially well. The use of medium wave infrared heaters helps in the effective drying of paints and lacquers and in the economical processing of plastic foils and sheet. Because of their long life, these infrared heaters are best suited for continuous processes. (read more)
Fast Medium Wave Infrared Heaters from Heraeus Noblelight feature exceptional stability and high power density. Fast response medium wave IR heaters can be supplied in all lengths up to around 6m. These long-life infrared lamps transfer heat at a medium wave spectrum and are particularly suitable for drying processes. (read more)
|
Infrared - Wikipedia, the free encyclopedia Infrared spectroscopy examines absorption and transmission of photons in the infrared energy range, based on their frequency and intensity.[3 |
|
|
Infrared astronomy - Wikipedia, the free encyclopedia Infrared astronomy is the branch of astronomy and astrophysics which deals with objects visible in infrared (IR) radiation. |
|
|
Infrared Absorption Frequencies Interpretation of Infrared Spectra The interpretation of infrared spectra involves the correlation of absorption bands in the spectrum |
|
|
1999 Fire Publications - Obtaining and Interpreting... Obtaining and Interpreting Near-Infrared Wavelength Modulation Absorption Signals From Hot Fire Gases: Practical Issues. |
|
|
1998 Fire Publications - Comparison of Near and Mid-Infrared... Comparison of Near and Mid-Infrared Tunable Diode Laser Absorption Spectroscopy for the Analysis of Combustion Gases. |
|
|
Infrared Spectroscopy Infrared spectrometers, similar in principle to the UV-Visible spectrometer described elsewhere, permit chemists to obtain absorption spectra of |
|
|
Process Analytics Infrared absorption Safe and stable... Process Analytics Infrared absorption Safe and stable measurement of gas concentrations in the ppm range with ACF-NT Christoph Becker, Bernd |
|
|
FT-IR for RoHS Thermo Scientific Atomic Absorption Spectroscopy (AAS) Fourier transform infrared spectroscopy (FT-IR) Atomic Absorption Spectroscopy M and S Series and VP100 |
|
|
Thermo Scientific - Near Infrared (NIR) Spectroscopy... A near-infrared spectrum represents combination bands and overtone bands that are harmonics of absorption frequencies in the mid-infrared. |
|
|
ASTM E204 -98(2007) Standard Practices for Identification of... - 98(2007) Standard Practices for Identification of Material by Infrared Absorption Spectroscopy, Using the ASTM Coded Band and Chemical See ASTM International Information |