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A range of sample mounting solutions for use with all ICE Products.
Cryogenic Spares » Cryogenics » Cryostats
The CFICEEL-V is a continuous flow cryostat that operates with either LN2 or LHe4. The sample is mounted in vacuum on the bottom of a copper plate providing fast, efficient cool down.
The entry level (EL) cryostat includes and OVC (outer vacuum can), an inner radiation shield, a temperature sensor, a heater and a blanked off 10 pin connector, which can be used for experimental wiring.
Measured Performance (Using an ICEoxford low loss transfer tube ICEMF01-90)
Continuous Base Temperature: 3.2K using a 12m3/hr pump
Flow required to operate at 4.2K: Less than 500cc/hr
Sample change: 30 minutes from Room temperature to 4K
Temperature Stability: Better than +/-50mk
Temperature range: Base temperature to 300K
More information:
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Entry Level EL Products
TLICEEL
The TLICEEL is a top loading variable temperature insert that operates in a standard Helium storage dewar with a 50mm neck. The sample is mounted in exchange gas on the bottom of a top loading probe providing fast, efficient cool down.
The entry level (EL) insert includes a temperature sensor and heater mounted on the top loading probe, a blanked off 10 pin connector, which can be used for experimental wiring, a manually operated needle valve for control of the Helium flow, a sliding seal for initial loading of the insert into the storage dewar and an evacuation valve with safety pressure relief.
Measured Performance
Continuous Base Temperature: 1.4 K using a 40m3/hr pump
Sample change: Less than 15 minutes from Room temperature to 4K
Temperature range: Base temperature to 325 K
Sample space size: Greater than 25mm. (centrally positioned, not offset)
Operation: Either push or pull mode.
Sample Probe: Includes Basic height and rotation
More information:
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I have worked with IceOxford for a number of years building, developing and repairing cryogenic systems, and I have found their Cryobitz supplies section excellent in both availability and speed of response.
Dr Mark Ellerby, Department of Physics and Astronomy, University College London