Microstat N, an optical low-temperature thermostat used for microscopic research, provides users with a low-temperature sample environment with various optical path designs and optical performance characteristics. The refrigeration method is vacuum refrigerant cooling, and liquid nitrogen or liquid helium refrigeration can be selected according to temperature requirements, with a temperature range from below 2.2K to 500K. The Microstat series is one of the effective and cost-effective micro low-temperature thermostats on the market.
Optical Cryostat for Microscopic Research - MicrostatN
•Thermostat type: Liquid Nitrogen Thermostat (LN)2)
•Sample space: 20mm x 2mm
•Applicable samples: solids, powders, and particles
•Temperature range: 77 K to 500 K
•Temperature stability: ± 0.5 K
•System cooling time: less than 10 minutes (up to 77 K)
•Liquid nitrogen consumption:<0.5 L/hr (nominal value)
•Low operating costs
•Sample replacement time: about 30 minutes (the thermostat needs to be restored to room temperature for operation)
•Sample position stability: The stability of the sample holder position is about 1 µ m
•Short working distance: as low as 2 mm
•Maximum sample thickness: can accommodate samples with a thickness of 8mm
•Configuration support: Reflection and transmission measurement modes
Optical Cryostat for Microscopic Research - MicrostatNEquipment parameters
Low refrigerant consumptionCan significantly reduce operating costs
Easy to operateThe experimental window and sample holder can be easily replaced
versatileMultiple window materials to choose from
software controlAll electronic instruments can be controlled through software, and communication interfaces include RS232, USB (serial emulation), TCP/IP, and GPIB. Provide LabVIEW function library and virtual controller to realize PC based electronic device monitoring, and integrate them into a complete LabVIEW data acquisition system.
system configuration
Typical configurations include:
Thermostat host
MercuryiTC temperature controller
• Infusion tube
Easy to fill liquid nitrogen Dewar
• Flow meter
Small and compact design: diameter 90 mm, thickness 24 mm
Equipped with 4-pin electrical measurement signal leads for instant installation and measurement
• Attachments and operation manual
• Control software
• Weight: 0.4 Kg
Micro Fourier transform infrared spectroscopy (Micro FTIR): studying molecular bonds in lattices
Microscopic Raman scattering and inelastic light scattering: studying molecular energy levels
Microscopic Optics: Investigating Quantum Dot Structures in AS/GaHS
• Luminescence: Research on Semiconductors
Microscopic Optics: Quantum Dot/Wire/Well Structure