Physike Technology Co., Ltd.

Scryo®S-100 Cryostat

The Scryo® S-100 (abbreviated as S-100) is a general-purpose continuous-flow cryostat with a high-efficiency vaporizer combined with super-adiabatic flexible transfer piping, featuring fast cooling speed and low cryogen consumption rate, etc. It comes standard with a calibrated ZrON® thermometer (calibrated range: 1K-420K), and with a high-precision temperature controller that can be realized from 1.8K to 420K variable temperature and temperature control, and can be equipped with the optional High-temperature upper limit up to 800K is available as an option.

 The S-100 cryostat is versatile and easy to use, with quick-release clamps for fast opening of the sample chamber, standard with high-efficiency flexible transfer piping with needle valve and four-way fused silica optical windows, two typical vacuum shrouds with F=1.0/0.9 for choice, with different window materials to meet the wide spectral range of tests from far/mid-infrared, UV to X-ray, easy to use with commercial spectrometers with optional compact vacuum shroud. Matching electromagnets, superconducting magnets or space-constrained optical experiments.

 The S-100 cryostat offers a wide range of options such as integrated linear actuator, multi-pin electrical feedthroughs, BNC/Triax feedthroughs, RF feedthroughs (SMA, 2.92mm, 2.4mm and 1.85mm, etc.), fiber-optic feedthroughs, atmosphere introduction, DC low-frequency cables (cryogenic twisted-pair, flexible coaxial/triaxial cable), cryogenic RF semi-steel cables, electrical sample holders (Puck/DIP/LCC), optical sample holders, probe sample holders, ultra-compact form factor, sealed cover plate to match vacuum type spectrometers, etc. The S-100 is also available in a variety of configurations. /LCC), optical sample holders, probe sample holders, ultra-compact form factor, sealing covers to match vacuum spectrometers, etc.


S-100 cryostat with F=1.0(left)& S-100 cryostat with F=0.9(middle)& S-100 cryostat with compact rectangular end(right )





Typical   Characteristics of S-100 Cryostat

Sample Environment

Vacuum

Temperature Range

1.8K-500K (Liquid helium pumping required below 4.5K)

Temperature Stability

±25mK

Typical Applications

UV, Visible, IR and THz spectroscopy; matrix isolation; Mössbauer spectroscopy;  

photoluminescence (electroluminescence); magneto-optics; high-energy physics;  X-ray and neutron scattering;

 high-pressure (DAC) studies; DLTS; solar cells; thermal transport; superconducting materials, etc.


Note:

1.  Minimum temperature is based on test data with cold windows installed and no external heating load.

2.  Standard with calibrated ZrON thermometer (calibration range: 1K-420K)





S-100 cryostat options

Vacuum Feedthroughs

Multi-pin electrical feedthroughs, SMA/2.92mm/2.4mm/1.85mm RF feedthroughs, BNC/Triax feedthroughs, 

fiber optic feedthroughs, atmosphere introduction, etc.

Windows

Transmission γ light, χ light, UV, Vis, IR, THz window

Sample Holders

Electrical sample holders (Puck/DIP/LCC), transmission holders, DLTS holders solar cell holders, probe sample holders, 

liquid sample holders, thermal transport holders, etc.

Test Leads

Cryogenic twisted-pair, flexible coaxial, microwave semi-steel and triaxial cables, etc.

Others

Sealed flanges, multi-axis linear actuators, rotators, tilt mechanisms, 800K high-temperature upgrade, 

ultra-compact vacuum enclosures, custom sample chamber dimensions, high-capacity vaporizers, etc.



The S-100 cryostat can not only be cooled with liquid helium or liquid nitrogen, but can also be combined with a Helium Cycle Cryogenic System (Qcryo®) to form a closed-loop, dry cryogenic system (Qcryo-S-100) that does not consume liquid helium, with a minimum temperature of<2.5K (1.8K optional) and low vibration characteristics.


Typical Qcryo-S-100 Closed-Loop Dry Cryogenic System Cooling Curve


Examples of S-100 Cryostat, Cryogenic Insert and Sample Holders


Supplied with sealing flange, HDPE window and RF vacuum feedthrough to match Bruker 80V vacuum spectrometer (left)& Compact rectangular tail and mounting flange (middle)& Compact tail section with tilt rotating mechanism to match superconducting magnets and electromagnets (right )



S-100 cryostat and cryogenic insert (in sample changer holder) with integrated 24 SMA, 24 coaxial cables, 3D linear actuator, 3 eight-pin puck sample holders for Bruker 80V spectrometer  (left and middle)& Integrated vertical linear actuator with Mylar window mounted for Mössbauer spectroscopy experiments (right )

Compact S-100 with optical sample holder disassembly drawing (left)& S-100 disassembly diagram with four probes installed (right )


Internal picture of S-100 with integrated five-dimensional motion function (matching electromagnet/superconducting magnet)


Optical sample holders with single, double and triple holes (left)& Three 8-pin puck sample holders with/without through-holes (middle)& Horizontal four-probe sample holder (for solar cell testing) (right )

Vertical four-probe sample holder (for solar cell testing)(left)& 84-pin LCC sample holder and 42 pairs of cryogenic twisted-pair (right )

S-100 cryostat mounting example


Matching Bruker 80V Infrared Fourier Spectrometer (left);Matching infrared light paths (right ).


Matching Mössbauer Spectrometer (left);Matching Bruker 80V Infrared Fourier Spectrometer (right ).


Qcryo-S-100 dry cryogenic system with integrated translational, rotational and tilt five-dimensional motion, matched with horizontal room-temperature bore superconducting magnets (left);Qcryo-S-100 dry cryogenic system, matching blackbody radiation sources and user-built THz optical paths (right ).



Qcryo-S-100 dry cryogenic system with tilt rotation and matching electromagnet for magneto-optical testing.


Qcryo-S-100 dry cryogenic system matching electromagnet for quantum precision measurements (left); 

Qcryo-S-100 dry cryogenic system matching the infrared PL module of the Bruker 80V Fourier spectrometer (right )