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The XploRA ONE is the highly versatile, easy to use, Raman microscope targeted at the industrial and routine analytical sector. It combines optical microscopy, with sensitive Raman analysis in a “ONE shot “ analysis concept. It is ideal for applications driven measurements in QA/QC analysis, Raw material validation, Forensic routine analysis, Pharmaceutical testing, Routine inspection etc. The XploRA ONE offers simplicity in design and operation so that the analyst can focus on the sample measurements and routine analysis that is important, obtaining results not just spectra.
3880 Park Avenue, Edison, New Jersey, , UNITED STATES
UNITED STATES
Triple grating Raman spectrometers offer the ultimate in spectroscopic performance, and are ideally suited for fundamental research and advanced application of chemical analysis using Raman spectroscopy. It has an integrated triple spectrometer design for unprecedented optical stability. The mechanical coupling is rigid and stable. The important features are it is provided with double subtractive stage, it is triple additive and further it consists of direct single spectrometer.
Double Raman Spectrometers has been designed for maximum versatility and adaptability to advancing detector technology. It uses unequalled line of standard and blazed holographic plane gratings to ensure optimal throughput in any spectral region. The Double grating Raman spectrometers offer the ultimate in spectroscopic performance, and are ideally suited for fundamental research and advanced application of chemical analysis using Raman spectroscopy.
XploRA Raman microscope brings chemical identification directly to the microscope. The microscope can be coupled to both upright and inverted microscopes, allowing analysis of all sample types, ranging from semiconductors and nano-materials, through to biological cells and tissues. Combining microscopy and chemical analysis it retains the full functionality of the microscope coupled with high performance Raman spectroscopy. The XploRA Raman microscope is also powered by software, which offers an intuitive, flexible environment for data acquisition, processing and display.
SENTERRA Dispersive Raman Microscope The SENTERRA is a high performance Raman microscope spectrometer designed for the most demanding analytical and research applications. Its most important innovation is certainly its internal continuous calibration as it ensures highest wavenumber accuracy without the need for calibrations with external standards. The SENTERRA combines numerous novel and several patented features: - Continuous calibration with Sure_Cal® - Compact design with spectrometer included in the microscope - Multiple wavelengths: 1064nm, 830nm, 785nm, 633nm, 532nm and 488nm - High performance confocal depth profiling with FlexFocusTM - Automatic Fluorescence Rejection (AFR) using SERDS - Open architecture version for the study of larger samples (e.g. in art) with high lateral resolution - Inverted version for the investigation of living cells Compact and Rugged Design Most commercial Raman microscopes employ spectrometers that are separate from the microscope. Therefore, alignment and maintenance of these devices is time consuming. SENTERRA integrates a multi-laser Raman spectrometer between the reflected light illuminator and the binocular of the microscope. SENTERRA’s compact design provides a short beam path, which increases sensitivity and makes it more robust and stable.
Rudolf-Plank-Str. 27 76275 Ettlingen, Ettlingen, GERMANY
GERMANY
Lab Raman Analyzer is a superior laboratory, desktop analyzer using Raman spectrometry for determining precisely the composition of powders and liquids used in the petrochemical, pharmaceutical and polymer industry. The main features are it is provided with superior solid-state Raman technology, there is no need of sample pretreatment required for samples containing water and further it is provided with Laser of 400 mW frequency-stabilized with standard wavelength of 785 nm.
Venecoweg 19, Nazareth, , BELGIUM
BELGIUM
Raman microspectrometer is designed to obtain the highest quality Raman spectra from microscopic samples. As such, it is perfect for research, metrology and inspection of microscopic sampling areas. The Raman spectrometer employs optics, software and hardware optimized for Raman spectroscopy of microscopic samples. The Raman spectrometer is perfect for rapid, non-destructive analysis in fields such as life sciences, materials science, chemistry and physics.
948 N. Amelia Ave, San Dimas, CA, , UNITED STATES
Portable Raman Micro-Spectrometer has been developed to meet the needs of Material Science, Manufacturing and Biochemistry offering a portable, high quality optical bench which can be fully customized for use with fiber-optic probes or an optional microscope with spatial resolution down to 20 µm. The optical performance is close to that of a conventional bench top Raman system and offers many of the same features like interchangeable grating monochromators for a range of spectral resolutions. The device is designed to provide laboratory quality data in a portable system.
28600 Mary's Court, Easton, MD 21601, USA, Talbot, UNITED STATES
Raman and Atomic Force Microscope alpha500 is an automated imaging system for analyzing chemical and surface structural properties. The alpha500 combines Confocal Raman Imaging and Atomic Force Microscopy in a fully automated and integrated system incorporating a motorized sample stage (150 x 100 mm) and a piezo-driven scan stage (100 x 100 x 20 µm). The system also provides Raman imaging, large area Raman scans and multi-point spectra acquisition on a user-defined arbitrary number of measurement points.
Instrumente und Technologie GmbH Lise-Meitner-Str. 6 Ulm, Germany, , GERMANY
Raman Microscope alpha300 R offers the unique ability to acquire chemical information non-destructively with a resolution down to the optical diffraction limit (~ 200 nm). This allows to observe and analyze the distribution of different phases within a sample in ambient conditions without specialized sample preparation. When analyzing dedicated peak characteristics of the spectra, a variety of images can be generated using only a single set of data. This allows not only to image the distribution of chemical compounds, but also to analyze, for example crystallinity or material stress properties. Further applications are typically found in polymer science, geoscience and in the pharmaceutical industry.
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