Cryogenic Ltd.
enowned in low temperature research and material science laboratories world-wide for delivering high quality measurement systems and providing the highest magnetic fields (up top 25 Tesla) and lower temperatures (down to 10mK)
- 44(0)20 8743 6049
- 44(0)20 8749 5315
- sales@cryogenic.co.uk
- Units 29/30, Acton Park, Industrial Estate
The Vale, Acton
London, W3 7QE
United Kingdom
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Resistivity and Hall Effect
The Resistivity System allows the user to make Resistivity and Hall Effect measurements in the range of to M. Samples are mounted on special platforms inside the VTI with contacts made to the sample according to the customer's requirements. Connections at the top of the probe are made via Fischer Connectors or Coaxial Cables. Keithley source and measurement electronics are provided with the system. These are fully controlled using the Measurement System Software.
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Vector Field and Multi-Axis Systems
Cryogenic vector magnet systems allow precise alignment of the magnetic field to an exact direction in a measurement sample. The system provides the capability of orienting the magnetic field to any vector direction. This is suitable for experiments where samples cannot be moved easily.
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Neutron Scattering and Beamline Systems
For optical, neutron and particle beam experiments, Cryogenic offers a range of split pair magnets. These allow strong magnetic fields to be produced in a small volume with maximum access to the working space. Split pair coils can be mounted to provide either a vertical field with horizontal access or a horizontal field offering horizontal or vertical access.
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Free Room Temperature Bore magnet with Insertable DR
Room Temperature magnet bore 50 mm sample space in DR Suitable for use with Leiden DR type CF200, CF450, CF650 or CF1000 DR
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Vibrating Sample Magnetometer
VSM
The Cryogenic Vibrating Sample Magnetometer (VSM) is designed for measurement of the DC magnetic moment of a sample with a noise floor sensitivity of 10-6 and at 10 seconds integration time.
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High field Superconducting Magnets
Cryogenic Ltd manufactures a wide range of superconducting magnets for research and industrial purposes. A range of standard solenoids between 1 to 22 Tesla is produced, and in addition split pair solenoids in the range 1 to 14 Tesla, with a typical central field homogeneity of 0.1%.
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Solid State NMR
Magnets for NMR experiments are required to have a high homogeneity, which can be maintained over a wide range of field. Experiments are performed at fixed frequency and the spectrum is obtained by sweeping the magnetic field. This requires the field to be stable in spatial homogeneity and change steadily and repeatedly over time.
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Mini Cryogen Free Systems
mCFMS
Cryogenic offers cryogen free measurement systems, which include a cryocooler, cryostat with superconducting magnet (3, 5, 7 or 9 Tesla), variable temperature sample space, a selection of special probes for measurements of different physical properties, as well as electronics, computer and measurement software.
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Free DR and High Field Magnet in Shared Vacuum Space
50 mm 4 K magnet bore, 30 mm sample space in DRSuitable for use with Leiden DR type CF200, CF450, CF650 or CF1000 DR
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Ultra High Vacuum
UHV
Our range of UHV magnet systems for x-ray beamline applications offers the highest performance specifications currently available combined with an unparalleled degree of flexibility ensuring that the system is tailored precisely to the requirements of the user facility.
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Free Room Temperature Bore Systems
The cryomagnetic system contains the cryogen free room temperature bore superconducting magnet, cryostat, cryocooler and compressor, temperature monitor unit (nominally Lakeshore) and HTS current leads. The cooling for the magnet and cryostat housing is provided by a standard cryocooler with a base temperature of 4K. The magnet is designed to operate safely at the guaranteed field without quenching.
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High Temperature VSM probe
To perform measurements at or above room temperature, separate heated sample probes are offered for electrical or magnetic measurements. In normal operation, the CFMS has a continuous temperature range of 1.6 K to 400 K. With these inserts the range can be extended up to 1000 K.
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High Resolution Magnet Systems
EPR
EPR samples with S=1/2 electronic spins exhibiting a narrow signal at G=2 and require magnetic fields of only ca. 3.5 T. However, EPR spectra from S>1/2 spins are typically much broader and have spectral features that spread over magnetic field range of several Tesla. Such fields could be easily achieved with superconducting magnets, but, unlike NMR, these magnets cannot operate in a persistent mode in order to satisfy a wide range of resonant fields required by the experiment.
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Thermal Transport
The thermal transport probe measures thermal conductivity and thermoelectric power (defined by the Seeback Coefficient). Electrical and thermal contacts are made to opposite ends of the sample allowing for customisation to suit the sample requirements of the user.
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Cryogen-Free DR With Integrated Magnet
Magnet thermally linked to cryocooler 2nd stage Ideal for smaller magnets up to 17 T or small vector magnets up to 7T / 2T / 2TSingle pulse tube cryocooler for cooling both magnet and DRMagnet operation at 700 mK or 4 KUse with top-loading probeFast Sample Change