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Address
Room 501, Building B22, Hengtong Business Park, No. 10 Jiuxianqiao Road, Chaoyang District, Beijing
Qingdi Quantum Science Instrument (Beijing) Co., Ltd
Room 501, Building B22, Hengtong Business Park, No. 10 Jiuxianqiao Road, Chaoyang District, Beijing
Optical low-temperature thermostat for spectroscopic experiments - OptistatCF-V
•Liquid helium continuous flow refrigeration, with the sample in vacuum
Sample space: 30 x 58 mm
Applicable samples: solids, particles, powders
• Temperature range: 3.2 K to 500 K (expandable to 2.2 K at low temperatures)
• Temperature stability: ± 0.1 K
• System cooling time: Reduce to 4.2 K, approximately 10 minutes
• Liquid helium consumption rate at 4.2 K temperature:<0.45 L/hr
• Cooling process consumption: 1.3 L (nominal value)
• Compatible with liquid nitrogen operating mode: temperature range from 77 K to 500 K
The number of windows in the optical path is extremely small, effectively reducing reflection loss
Excellent optical access capability (f/0.9), meeting the high collection efficiency measurement needs
• Configuration support: Reflection and transmission measurement
Large spot illumination: Window aperture diameter of 23 mm
Equipped with detachable radiation shielding windows toimproveTransmitting light intensity
Sample replacement time: approximately 60 minutes (supports sample replacement at low temperatures)
Optical low-temperature thermostat for spectroscopic experiments - OptistatCF-VEquipment parameters
Low refrigerant consumptionCan significantly reduce operating costs
quick experimentProvide multiple sample racks and probes, including liquid colorimetric cups, sample cups, and height adjustable/rotating probes
Easy to operateThe experimental window and sample holder can be easily replaced
multi-functionalMultiple window materials are available for selection. The refrigeration unit of OptistatCF-V can be interchanged between MicrostatHe and MicrostatHe-R, realizing a series of modular low-temperature thermostats and providing great flexibility for experimental configuration.
Excellent performanceOptional dynamic exchange gas environment, suitable for samples with low thermal conductivity or high thermal load.
software controlElectronic 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, which can be integrated into a complete LabVIEW data acquisition system
system configuration
Typical configurations include:
Thermostat
MercuryiTC temperature controller
Compact structure, easily integrated into commercial spectrometers
Connect the sample through a 10 pin electrical interface for immediate installation and testing
• Attachments and operation manual
• Control software
• Weight: 2 Kg