Check out how our CryoPS system works.
Precisely controlled environment – high vacuum chamber with 4.4K-675K stage temperature range.
Upgradable – Upgradable in positioners, temperature range, vacuum range, and optical access.
Affordable – Using liquid cryogen, very competitive price among the products of the same grade.
Compact Footprint – Perfect for academic and laboratory research settings with limited space.
The temperature of the device under test (DUT) would be affected by heat radiation and transmission from the parts around it. If without comprehensive thermal anchoring to these parts, the real temperature of the DUT would be much higher than you see on
the temperature controller. That is because the temperature seonsor is always installed on the stage but not the DUT. To avoid erroneous results, we apply the innovative thermal anchoring technique to probes, arms and radiation shields.
There are four temperature sensors in our system to provide you with a accurate thermal profile of the test environment. One sensor is installed on the sample stage and the others are installed on the radiation shields, probe arms, and probes separately.
The most common sample holder is a OFC holder grounded to the System chasis. It is used when no background signal transmission is needed on the DUT. We also provide coax and triax versions with low noise for high resolution signal measurement. All holders are Type II gold plated.
FemtoProbe is compatible with CryoPS cryogenic probe station( vacuum probe station ). This set up will provide guarded probe tips to triax source and measurement units. It significantly reduces system noise level and will enable you to measure signals down to 1 femtoamp resolution.
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