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Raman
Sir Chandrasekhara Venkata Raman co-discoverer of the Raman effect in liquids.
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Scanning Probe Microscopes
SpectraView 2500
* Ultra-low noise SPM* Colocalized nanochemical analysis by IR, THz, Raman, AFM* Cantilever probes are completely transparent* Versatile configurations: Kelvin Probe chemical potential, electrical, thermal and photon force
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Triple Monochromator/ Spectrograph
Omni-λTripple Series
Omni-λ 500 Triple Monochromator/ SpectrographThe Triple Monochromators/Spectrographs include three 500 mm focus monochromators which are with fine alignment. The first two monochromators as the dispersion subtraction are used to reduce the stray light. The third monochromator as dispersion sum configuration is used to improve the resolution. And each unit can work well as the monochromator, and the two unit can also be used as the double monochromator. The first and the second monochromator are the side entrance and double exits, the third monochromator is the double entrances and double exits, it is easy to connect the CCD and PMT, the single channel detectors. There are three import gratings in each monochromator, and the spectral range is located in deep UV region, the middle UV and visible region. Each grating reflectivity can be up to 70% in their spectral region. Mainly used in high grade Raman spectroscopy measurement, such as UV-resonance Raman spectroscopy.
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Bench-Top Macroscopic Raman Spectrometer
Modular Raman Microscope
HORIBA’s modular Raman spectrometers allow the user to have a flexible Raman system to handle high performance spectroscopy at a price to fit most budgets. The modular microscope can also be used with a range of sampling options, including remote probes. A Raman spectrum recorded with a fiber-coupled Raman microscope of acetaminophen is shown below.
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UV Man Spectrometer
UV Raman (with laser wavelengths below 400nm) can be used to probe specific sample properties, and benefit from experiment properties different from typical visible Raman measurements – for example, greatly increased Raman scattering efficiency, modified laser penetration within the sample, and resonance coupling to different chemical moeities. However, UV analyses come with a number of technical challenges, that require considered instrument design to allow UV Raman to be a truly useful tool for the researcher.
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Raman Microscopes
Edinburgh Instruments has been providing high performance instrumentation in the Molecular Spectroscopy market for almost 50 years. Our Raman microscopes continue our commitment to offering the highest quality and sensitivity instruments. For further information on our Raman Microscopes, simply contact our sales team, sales@edinst.com, who will be delighted to help.
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NanoSpectralyzer
NS2
NS2 is the world's only three-in-one spectrometer for carbon nanotubes. The NS2 provides all of model NS1's state-of-the-art capabilities for analyzing SWCNT samples through near-IR fluorescence and absorption. In addition, the NS2 captures Raman spectra of all CNTs, whether single-walled, multi-walled aggregated, large diameter, or chemically altered. All spectra are automatically measured with a single placement of the sample cuvette. Sophisticated software then performs integrated data analysis to characterize the CNT sample.
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Atomic Force Microscope (AFM)
CombiScope
The CombiScope Atomic Force Microscope (AFM) is an advanced research instrument that provides the entry path for researchers in biology, spectroscopy and photonics. If you work with transparent samples either in air or in liquid towards nano-scale structures and (near-field) nano-optical properties investigation, the CombiScope is the right solution for you. It perfectly combines inverted optical and atomic force microscopies and unleash all the power of both techniques providing the instrument adjustment and measurement automation, high resolution and high speed. Plus it can be easily upgraded to our Raman spectrometers.
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Infrared, Near Infrared and Raman Spectroscopy
rom the very compact FTIR spectrometer to the world’s highest resolution: Bruker offers the industry's largest selection for demanding routine and High End FTIR research application including the new and unique verTera cw THz functionality.Process monitoring with FTIR / FT-NIR process spectrometers.A complete line of Near Infrared Spectrometers to fit all your needs, including Process Monitoring.FTIR Microscopy and Raman Microscopy and Spectral Imaging for high sensitivity at high spatial resolution.High spectral resolution, high performance Raman and FT-Raman spectrometers for advanced routine solutions.FTIR Gas Analyzers for the fully automated and high precision real-time monitoring of gas compoundsImaging Remote Sensing systems for analysis of gases, liquids and solids.CryoSAS semiconductor material quality control for photovoltaic and electronics industry.OPUS, the "all-in-one" IR and Raman spectroscopy software consists of a suite of software packages that cover both standard and specialized applications.ONET, software for the setup, administration and control of large FT-NIR spectrometer networks.
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IndiRAM GEM Identification System
ndiRAMTM Portable Series
IndiRAMTM Portable Series Raman Spectrometer system for Gemmological studies is a quick screening system of the samples with high throughput.
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C-Band Separate Raman Fiber Amplifier
RFA5000
Hangzhou Huatai Optic Tech. Co., Ltd.
1. Erbium-doped Fiber Amplifier, due to the multiple cascades and the accumulation of noise caused by spontaneous emission, will reduce the system CNR greatly and thus it will limit the transmission capacity and distance of the system. Raman Fiber Amplifier (RFA) is a newly designed fiber amplifier based on Stimulated Raman Scattering (SRS) effect. It is considered as the core technology of new generation DWDM fiber over-long communication. Compared with Erbium-Doped Fiber Amplifier, Raman amplifier has the advantage of low Noise Figure (NF), wider gain bandwidth, flexible gain spectral region and stable temperature. It is the only device that can operate in 1300~1600 nm.
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Hyperspectral Image Processing Software for THz Imaging Data
ImageLab
ImageLab is a one-of-a-kind image processing tool developed by our partner EPINA for the analysis of data from various spectroscopic imaging techniques such as THz, optical, UV/VIS, IR, Raman, or mass spectrometry. Based on multivariate statistical methods it enables the user to analyze and classify acquired hyperspectral images, to merge them with maps of physical properties and to overlay them with conventional high-resolution color photos. Visualization of the image data and highlighting of analytical information round up the software package to an indispensable instrument for in-depth analysis of spectroscopic image data. ImageLab is now part of Menlo Systems’ imaging extension TERA Image. Ask us for possibilities to upgrade your THz imaging system with our unique software tool!
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Sensitive Short-wave IR Fluorometer & Absorption Spectrometer
NS3 NanoSpectralyzer
A customizable, modular NanoSpectralyzer: In addition to its core function as a sensitive short-wave IR fluorometer and absorption spectrometer, the NS3 can be configured with any of the following spectral capabilities: Visible emission, extended SWIR emission, UV absorption, visible absorption, extended SWIR absorption, Raman. Up to 5 excitation lasers (405 to 830 nm).
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Raman Systems
Raman spectroscopy is a element specific non-contact analysis technique. It is widely used for the classification and quantification of a variety of substances and materials. Meanwhile, this versatile and selective method has established itself as an essential standard method in the industrial environment, making various process analytical applications easily accessible.
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Water Treatment Plant Analyzer
Aqualog
Aqualog® is the only instrument to simultaneously measure both absorbance spectra and fluorescence Excitation-Emission Matrices. EEMs are acquired up to a 100 times faster than with other instruments. Dedicated software automates traceable Quinine Sulfate Unit calibration and correction of inner-filter effects and Rayleigh and Raman scattering lines, enabling rapid export to modeling algorithms like PARAFAC.
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Single Frequency CW Diode Pumped Lasers
04-01 Series
*457 nm, 473 nm, 491 nm, 515 nm, 532 nm, 561 nm, 594 nm, 660 nm, 1064 nm,*CW DPSSL with output power up to 400 mW*Perfect TEM00 beam*Ultra-robust, hermetically sealed packages*Low noise, <0.25% rms*True fiber pigtail option, integrated isolator available*Optional integrated modulation up to 3MHz*Perfect for interferometry, Raman, holography, microscopy
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C & L-Band Separate Raman Fiber Amplifier
RFA7000
Hangzhou Huatai Optic Tech. Co., Ltd.
1. Erbium-doped Fiber Amplifier, due to the multiple cascades and the accumulation of noise caused by spontaneous emission, will reduce the system CNR greatly and thus it will limit the transmission capacity and distance of the system. Raman Fiber Amplifier (RFA) is a newly designed fiber amplifier based on Stimulated Raman Scattering (SRS) effect. It is considered as the core technology of new generation DWDM fiber over-long communication. Compared with Erbium-Doped Fiber Amplifier, Raman amplifier has the advantage of low Noise Figure (NF), wider gain bandwidth, flexible gain spectral region and stable temperature. It is the only device that can operate in 1300~1600 nm.
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Wafer Analyzer
RAMANdrive
RAMANdrive is the specialized Raman microscope for wafer analysis equipped with our dedicated 300 mm stage. RAMANdrive gives you an ultra-fast, highest resolution analysis of the whole wafer with unique stability and accuracy
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Hybrid Raman/Er-doped Fiber Amplifier
HFA5000
Hangzhou Huatai Optic Tech. Co., Ltd.
1. Erbium-doped Fiber Amplifier, due to multiple cascades and the accumulation of noise caused by spontaneous emission, will reduce the system CNR greatly and thus it will limit the transmission capacity and distance of the system. Raman Fiber Amplifier (RFA) is a newly designed fiber amplifier based on Stimulated Raman Scattering (SRS) effect. It is considered as the core technology of new generation DWDM fiber over-long communication. Compared with Erbium-Doped Fiber Amplifier, Raman amplifier has the advantage of low Noise Figure (NF), wider gain bandwidth, flexible gain spectral region and stable temperature. It is the only device that can operate in 1300~1600nm.
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OEM Raman Lasers with Wavelength Stabilization
Only available for volume OEM purchase, minimum order quantity 50 units.
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Handheld Analyzer for Narcotics Identification
BWT-840000994
The TacticID®–N Plus is a field-ready handheld instrument specifically designed for non-contact forensic analysis of narcotics, pharmaceutical drugs, cutting agents and precursors by law enforcement personnel.Featuring an intuitive workflow and touchscreen, samples can be nondestructively analyzed through opaque and transparent packaging, with sample threat level displayed prominently for first responders,safety personnel, law enforcement, bomb squads, customs and border patrol, and hazmat team to act quickly with minimal sample contact. The TacticID®–N Plus utilizes laboratory-proven Raman spectroscopy, whichallows users to obtain actionable identification of illicit substances without ever compromising the integrity of the sample or the chain of evidence.
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Easy Navigation Package for Optimal Raman Imaging
EasyNav
The new EasyNavTM package makes it easy to navigate through your image and acquire sharp Raman images in the blink of an eye, thanks to three new revolutionary applications: NavMapTM, NavSharpTM and ViewSharpTM. With the groundbreaking EasyNavTM package, it is fast and easy to navigate in-focus, in real-time, to identify the region of interest and obtain sharp, clear Raman chemical images. EasyNavTM has been tested and validated on a large variety of samples. HORIBA NavMapTM+ NavSharpTM+ ViewSharpTM apps can be used together or separately to deliver a powerful user experience for all Raman users.
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Advanced Stand-Alone AFM
SmartSPM
The SmartSPM Scanning Probe Microscope is the first 100% automated system that offers its cutting-edge technology of ultra-fast, metrological and high-resolution measurements for the most advanced materials research at the nanoscale in all AFM and STM modes. With the SmartSPM zooming in from large up to 100 µm overview scans down to atomic resolution has become a reality. Its design has been specially developed to be capable of being seamlessly integrated with optical spectroscopies (SNOM, Raman, Photoluminescence and TERS/SERS techniques).
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Compact Narrow Linewidth Laser
08-01 Series
*405 nm, 532 nm, 561 nm & 785 nm up to 500 mW*SLM diode pumped lasers (DPL) and narrow linewidth diode lasers (NLD)*Integrated optical isolator immune to optical feedback*Integrated spectral filter*Perfect for Raman, interferometry
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Industrial QC/QA Analyzer - "Column Free" Molecular Fingerprinting Technology
Aqualog - A-TEEM
A-TEEM™ Molecular Fingerprinting is a new optical technique that is ideal for comprehensive component analysis in a variety QC/QA applications, from water to wine to pharmaceuticals and more. It is a simple, fast, “column free” spectroscopic technique that simultaneously measures the absorbance, transmission and fluorescence of samples in solution, and offers unique benefits over traditional analytical techniques, such as chromatography, mass spec, IR, etc.. Fundamentally, this technique is best applied to samples in solution that have fluorescing components, like an aromatic molecule, although it also detects non-fluorescing species via absorbance. The fluorescence EEM fingerprint technique has also been applied to solids and skin. Fluorescence is a highly sensitive technique compared to other spectroscopic techniques such as absorbance, FTIR and Raman, and the three-dimensional nature of the data provides for a better foundation for complex component analysis.
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SensLine Spectrometers
The SensLine series of products is Avantes’ response to customers who require higher performance demanding spectroscopy applications such as fluorescence, luminescence, and Raman. The SensLine product range includes several high-sensitivity, low-noise spectrometers. Several of these instruments feature back-thinned detector technology, some of which feature our high-performance, thermoelectrically cooled detectors. The other models feature standard CCDs, upgraded to high-performing instruments as a result of Avantes’ unique detector cooling technology. The back-thinned CCD detectors featured in the SensLine series are high-quantum efficiency detectors with excellent response in the ultraviolet, visible, and near-infrared range from 200 to 1160 nm.
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EMORAL LiDARESA Mobile Raman
The EMORAL LIDAR observations at the PolWET site in Rzecin, Poland, on 10 June 2019. The scattering ratio (top), quasi-particle depolarization ratio (middle), and backscatter colour ratio (bottom) derived at 532 nm with 30 m spatial and 30 s temporal resolutions
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Raman Probes
As with Raman spectrometers, a Raman probe is used to measure the inelastic scattering of light from a sample. Raman scattering is produced when the energy levels of photons are shifted up or down as a result of excitation by a monochromatic source (usually a laser). The change in vibrational frequency is used to determine the composition of a target substance.
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High Performance Raman Spectrometer
Combining volume phase holographic (VPH) grating, wavelength optimized optics and deep-cooled CCD camera, Zolix is proud to present stateof-the-art Omni-iSpecT Raman spectrograph. It solves two essential problems concerned with Raman spectroscopy, speed and sensitivity. VPH spectrograph allows you to have faster acquisition and better S/N ratio, it is ideal for low light Raman applications such as remote detection, ultra fast Raman mapping etc, its lens-based design delivers minimum distortion at focal plane and ensures best image quality, which gives you high resolution and large spectral range simultaneously, also perfect image quality is ideal for multi-channel applications without cross-talking. The Omni-iSpecT's rugged and compact design make an ideal module for in-the-field and industrial applications; It is still suitable for academic research with research-grade performance; The Omni-iSpecT also provides the SDK file for secondary development.
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confocal Raman spectrometer
confocal Raman System provided by RTS-Mini is a non-destructive technique with minimum sample preparation required. The sample are extensive materials such as polymer, ceramic and nanomaterials as 2D materials: graphene or monolayer of MoS2 etc. Some biological samples like blood, tissue and cell are suitable for Raman measurement by certain laser excitation wavelength; Raman is an ideal technique for research and industry offering high quality data, reliability, versatility over other analytical techniques. Benefits not only include the range of samples that are suitable for analysis, but also the information content that is provided
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Handheld Raman Analyzer
TacticID®-1064
The TacticID®-1064 is a field-ready handheld spectral analysis instrument designed for non-contact forensic analysis by safety personnel and first responders, including law enforcement personnel, bomb squads, customs and border patrol, hazmat technicians, and more. The TacticID®-1064 utilizes proven Raman spectroscopy, allowing users to get real-time actionable identification of unknown chemicals, explosives, narcotics, pharmaceutical drugs and many other substances while reducing operational uncertainty and response time. The TacticID®-1064 includes a comprehensive library of over 10,000 substances. In addition, users have flexibility to create their own libraries. By utilizing the 1064nm wavelength, the TacticID®-1064 avoids fluorescence, allowing users to get results in less than 1 minute even when working with tough street samples.