Brand: Oxford Instruments | Category: Nanotechnology
The Shamrock 750 offers the highest resolution in the Shamrock family and also handles multi-track work well. Its rugged Czerny-Turner platform is supported by a wide range of light coupling accessories and gratings, and pairs with Andor's CCD, electron multiplying CCD, InGaAs and intensified CCD cameras. Systems are supplied pre-aligned and factory calibrated, and Solis spectroscopy software provides a single interface for spectrograph, detector and motorised accessory control. A multi-track enhanced option optimises the system for low crosstalk, high density multi-leg fibre signal acquisition.
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The Mechelle ME5000 echelle spectrograph records a wide wavelength range from 200 to 975 nm simultaneously in a single acquisition. It has no moving components and is available in a pre-aligned detector and spectrometer format, with a patented optical design based on the echelle grating principle that gives extremely low crosstalk and high resolution. Automatic temperature correction compensates for the change in prism refractive index with temperature, and nitrogen purging maximises throughput in the ultraviolet. Andor Solis software extracts a fully wavelength calibrated spectrum from the complex echelle image and can label peaks against the NIST table.
Built on a Czerny-Turner optical design, the Shamrock 500i imaging spectrometer is optimised for multi-track spectroscopy. It is supplied pre-aligned and pre-calibrated as a camera and spectrometer detection solution so it drops into an existing set-up, with a spectroscopy-dedicated software interface giving real time control of detectors and spectrometer together. Optimised toroidal optics correct image astigmatism for high density multi-track work, and the motorised indexed triple grating turret can be upgraded in the field.
The PDA-23 add-on equips the Luminosa confocal microscope with a cooled 23-pixel SPAD array for confocal time-resolved detection, combining the higher resolution of image scanning microscopy with quantitative FLIM. Pixel reassignment raises resolution by about 30%, taking 485 nm excitation down to 155 nm FWHM, and deconvolution takes that further to 120 nm FWHM. Computational sectioning improves contrast by rejecting out of focus light, and every pixel of the array is time tagged, with dual-channel acquisition available simultaneously through pulsed interleaved excitation. Integrated in Luminosa, the detector keeps alignment stable and pairs with the MultiHarp 160 multichannel time tagging and TCSPC unit, with analysis handled in NovaISM.