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Lake Shore showcasing cryogenic probe stations at MRS Spring Apr 15, 2014

Company details

Lake Shore Cryotronics, Inc.
575 McCorkle Blvd.
United States

Tel: 614-891-2244
Fax: 614-818-1600

Lake Shore showcasing cryogenic probe stations, including entry-level TTPX, at MRS Spring.

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Columbus, Ohio (April 15, 2014) – Lake Shore Cryotronics, a leading innovator in solutions for measurement over a wide range of temperature and magnetic field conditions, announced today that it will showcase cryogenic probe stations and discuss its new fully integrated system for terahertz (THz) materials characterization at the upcoming MRS Spring Meeting & Exhibit in San Francisco, Calif.

Lake Shore offers a full line of cryogenic and cryogen-free probe stations, with configurations and options available for DC, RF and microwave probing of nanoscale devices and materials on full and partial wafers at variable temperatures. For attendees interested in seeing a Lake Shore probe station up close, the company will have its entry-level Model TTPX set up in booth 301 during the April 22–24 exhibit.

Attendees can also learn about Lake Shore’s fully configured version of the TTPX (the Model PS-100), which is designed for cost-conscious researchers in need of a basic cryogenic probe station at an affordable price. The Model PS-100 gives users a straightforward probing solution without the complexity of choosing from multiple configuration options. It features a four-arm configuration suitable for most common probing applications.

In addition, Lake Shore will be discussing its new fully integrated Model 8501 THz system for non-contact, THz-frequency characterization of materials. This complete, turnkey hardware/software platform includes a variable-temperature, high-field cryostat for measuring spectroscopic responses across a range of frequencies, temperatures and field strengths. Using continuous wave THz transmission spectroscopy, the Model 8501 enables fully automated, high-resolution characterization for detailed profiles of material responses. Analysis of these spectral profiles can lead to discovery of interesting physical phenomena not visible with other conventional characterization techniques.

Also at MRS Spring, Lake Shore will provide information on its:

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