Microstat
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Microstat - 1

microstat Microstat Product Family TM Optical cryostats for microscopy New accessories including electronics, transfer line and gas flow control

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Microstat - 2

Which Microstat is right for you? The Microstat range of optical cryostats has been specifically designed to provide a wide temperature range (from 2.2 K up to 500 K) while allowing excellent optical access and short working distances required for microscopy applications. These cryostats easily integrate with commercial microscopes and spectrometers. The Microstat model of choice will depend on the base temperature and level of mechanical stability required for your experiments and whether or not you need a magnetic field. If our standard range doesn’t suit your requirements, Oxford...

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Microstat - 3

With the new Mercury electronics and Oxsoft IDK software, you have new levels of control!Find out more at www.oxinst.com/mercury Full system integration and control System components designed for optimum cryostat performance New Transfer tube (helium cryostats only): New Intelligent cryogenic environment controller Easy monitoring and control of the sample stage The MercuryiTC controller combines several instruments into one allowing New Magnet power supply Best in class stability performance and optimised for accuracy and low noise The MercuryiPS is used to energise the magnet of the...

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Microstat - 4

New look! Lower base temperature! Reduced nitrogen consumption! micro Compact nitrogen cooled This cryostat has been designed for experiments requiring liquid nitrogen temperatures. It is very compact and lightweight and only requires a compact nitrogen container which is very convenient when space is limited. Nitrogen inlet • Wide temperature range: from 77 K to 500 K • Extremely compact: 90 mm diameter by 24 mm thickness. Only 400 g! • Economical use of cryogens: less than 0.5 L/h • Quick cooldown: 80 K in less than 10 minutes • Adjustable sample holders accomodate samples up to 8 mm...

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Microstat - 5

MicrostatHe2 MicrostatHe2 Rectangular tail Multi-experiments, helium cooled Lowest helium consumption and fastest cooldown on the market MicrostatHe Specifications This helium cryostat is well suited for experiments requiring a low temperature Wide temperature range: Schematic cross-section view Schematic cross-section of MicrostatHe view of MicrostatHe2 environment and which can evolved in the future due to its flexibility. • Easy integration into commercial microscopes facilitated by its compact size and short working choice of sample holders • Adjustable working distance via Heat...

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Microstat - 6

The lowest vibration microscopy cryostat on the market High resolution helium cooled This cryostat has been designed to minimise vibration and sample drift at stable and constant temperatures. This is achieved by cooling the sample on a stable cold platform rather than a cold finger and feeding the helium to the heat exchanger via a capillary thus isolating the helium flow vibration. The MicrostatHires2 is particularly well suited to sensitive applications such as micro-photoluminescence mapping of semiconductor microstructures with sub-micron spatial resolution. • Wide temperature range:...

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Microstat - 7

System for high resolution magneto-optical measurements The MicrostatMO2 is a compact stable cryostat, which provides a cryogenic environment (6 K) ideal for sensitive optical and electrical measurements in • Wide temperature range: from 6 K to 300 K • Magnetic field up to 5 T, satisfying the majority of spectroscopy applications • Can be used for reflection and transmission measurements • Minimum downtime: Convenient continuous operation including improved 300 K operation • Low sample drift: typically 4 nm/min • Quick sample change using a demountable sample holder. Two options are...

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Microstat - 8

Cryogenic spares and accessories Extensive choice of windows to suit your experiment’s needs Microstat cryostats are used in experiments where the samples must be irradiated or Oxford Instruments measurements made on emitted radiation from such samples. It is, therefore, essential that appropriate windows can be incorporated into your cryostat to permit radiation to pass through the sample space. In Microstat cryostats, the windows are glued and the materials For more information please email: selected will be determined by the wavelength and intensity of the radiation and whether or not...

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