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low temperature cryostat

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  • 1 최상창 마그네토 광학 크리오스타트 초전도 자석 크리오스타트 낮은 진동 광학 접근

    Superconducting Magnet Cryostats with Low Vibration Optical Access Product Description: The Ultra-Low-Temperature Superconducting-Magnet Integrated Optical Property Measurement Cryostat is a cutting-edge system designed to provide precise and reliable measurements in the field of magneto optical measurements and Raman spectroscopy. This advanced cryostat offers a wide temperature range from 1.7 K to 350 K, making it ideal for a variety of research applications requiring
  • 급속한 냉각 마그네토 광학 크리오스타트 1 상단 창 MO 크리오스타트 첨단 재료 연구

    Fast Cooldown MO-Cryostat for Advanced Material Research Product Description: The Ultra-Low-Temperature Superconducting-Magnet Integrated Optical Property Measurement Cryostat is a cutting-edge system designed for researchers working with quantum materials and conducting cryogenic microscopy experiments. This advanced cryostat offers precise control over temperature stability, sample space, magnetic field strength, and optical windows, making it an ideal solution for a wide
  • 정밀 마그네토 광학 크리오스타트 융합 마그네트 크리오스타트 유연한 크리오 측정

    Integrated Magneto Optical Cryostat For Flexible Cryo Measurements Product Description: The Magneto Optical Cryostat is a cutting-edge device designed for advanced research in the field of magneto optical measurements. With its exceptional features and superior performance, this cryostat offers researchers a powerful tool to conduct experiments in high magnetic fields with precision and accuracy. One of the standout attributes of this cryostat is its optical windows
  • 1.7 K - 350 K 자석 광적 냉정기 초전도 MO 냉정기

    Superconducting Magnet Optical Cryostat-MO-Cryo Product Introduction The MO-Cryo superconducting Magnet optical cryostat integrates ultra-low temperatures, strong magnetic fields, and optical testing into a highly integrated and flexible cryogenic system. With 7 side optical windows, 1 top optical window, and 1 bottom window, it enables multi-directional and free optical measurements in a cryogenic strong magnetic-field environment. The internal large sample space accommodate
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