Brand: Oxford Instruments | Category: Nanotechnology
Oxford Instruments publish the witec360 as the new benchmark for Raman imaging and correlative microscopy, aimed at academic and industrial researchers who need comprehensive analysis at the nanoscale. The core system is broadband from 350 to 1100 nm, with options extending from 266 nm in the UV to 1064 nm in the NIR, and spectral resolution reaches 0.1 cm-1 at 633 nm excitation. Lateral resolution is below 300 nm and depth resolution below 950 nm depending on excitation wavelength, with acquisition below 1 ms per spectrum. Spectrometers are offered at 300 mm or 600 mm focal length carrying up to six gratings, the objective turret holds up to six objectives, and sample positioning travel ranges run from 25 mm by 25 mm to 350 mm by 300 mm.
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A micro-Raman microscope for single spot analysis and mapping, engineered by Oxford Instruments for budget conscious customers who still hold high demands on instrument performance. It is built to be upgraded, so a laboratory can start at entry level and extend the system later.
Research grade multimodal confocal microscope carrying up to five integrated lasers, combining Raman imaging with photoluminescence spectra and fluorescence lifetime imaging in one instrument. The confocal pinhole is fully computer controlled, and a low wavenumber attachment extends coverage down to 5 wavenumbers.
A high end confocal Raman and photoluminescence microscope configured specifically for chemical imaging of semiconducting materials. Wafers up to 12 inch, that is 300 mm, are handled on a 300 by 350 mm scanning stage, and peak shifts below 0.01 cm-1 can be detected. Vibration damping, TrueSurface active focus stabilisation and fully automated microscope control are included, and various laser wavelengths are available.