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  • Diffractometer
    Diffractometer
    1. The accuracy of Diffractometer is high. 2. The application range of Diffractometer is wide. 3. Diffractometer is easy to operate, convenient and efficient.
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  • Single Crystal XRD
    Single Crystal XRD
    1.The single crystal machine adopts PLC control technology. 2.Modular design, accessories plug and play. 3.Electronic lead door interlocking equipment with double protection. 4.Single crystal X-ray tube: a variety of targets can be selected, such as Cu, Mo,etc. 5. Single crystal adopts four-circle concentric technology to ensure that the center of no goniometer remains unchanged.
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  • A 2D X-ray Diffractometer
    A 2D X-ray Diffractometer
    Advantages: Continuously adjustable X-ray penetration depth Capability to observe the distribution of crystal planes with different orientations Analysis of orientation distribution in samples such as fibers, thin films, and powders Examination of structural characteristics like lattice distortion and crystallite size
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  • X-ray Diffraction Residual Stress Analyzer
    X-ray Diffraction Residual Stress Analyzer
    TD-RSD XRD Residual Stress Analyzer ±7MPa accuracy, dual-detector innovation, full-auto operation & powerful software. Optimize processes, enhance product reliability. Compact, efficient, leading solution.
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  • Efficient energy utilization
    High temperature accessory is experimental equipment used for sample analysis in high temperature environment, in order to understand the changes in crystal structure of samples during high temperature heating and the changes in mutual dissolution of various substances during high temperature heating. According to different experimental requirements, different configurations of high temperature attachment can be selected, such as different window materials and reaction chamber designs, to adapt to specific experimental conditions. High temperature attachment is indispensable temperature accessory in laboratory research, which not only improve the efficiency and accuracy of experiments, but also expand the boundaries of scientific research.
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    2024
    12-17
  • Exploring the unique charm and application potential of in-situ low-temperature attachments
    The in-situ medium and low temperature accessory​ is designed to understand the changes in crystal structure during the low-temperature refrigeration process; In order to provide a medium and low temperature (usually below room temperature but not extremely low temperature, such as a range between -100 ℃ and room temperature) sample environment for microscopes and other instruments. Vacuum environment: -196~500℃ Temperature control accuracy: ±0.5℃ Refrigeration method: liquid nitrogen (consumption less than 4L/h) Window material: Polyester film Cooling method: deionized water circulation cooling
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    2024
    11-20
  • Learn how our high-temperature accessories can change your life
    High temperature accessory is designed to understand the changes in the crystal structure of samples during high-temperature heating, as well as the changes in mutual dissolution of various substances during high-temperature heating.  High-temperature accessory play a crucial role as important experimental and industrial equipment in multiple fields. Its wide range of application fields, precise technical parameters, and diverse product types make high-temperature accessory an indispensable part of scientific research and industrial production. technical parameter Temperature setting: Inert gas environment from room temperature to 1200 ℃ Vacuum environment with high temperature of 1600 ℃ Temperature control accuracy: ± 0.5 ℃ Window material: Polyester film
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    2024
    11-19
  • In situ medium and low temperature accessories
    In order to understand the changes in crystal structure during low-temperature refrigeration processes.
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    2024
    10-16
  • High temperature accessories
    To understand the changes in crystal structure of samples during high-temperature heating and the changes in mutual dissolution of various substances during high-temperature heating.
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    2024
    10-15
  • Cryogenic equipment
    The data collected through low-temperature equipment yields more ideal results. With the help of low-temperature equipment, more advantageous conditions can be provided, which can enable undesirable crystals to obtain ideal results, as well as ideal crystals to obtain more ideal results.
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    2024
    09-30
  • TD-5000
    The X-ray single crystal diffractometer is mainly used to determine the three-dimensional spatial structure and electron cloud density of crystalline substances such as inorganic, organic, and metal complexes, and to analyze the structure of special materials such as twinning, non commensurate crystals, quasicrystals, etc. Determine the accurate three-dimensional space (including bond length, bond angle, configuration, conformation, and even bonding electron density) of new compound (crystalline) molecules and the actual arrangement of molecules in the lattice; It can provide information on the crystal cell parameters, space group, crystal molecular structure, intermolecular hydrogen bonding and weak interactions, as well as structural information such as molecular configuration and conformation. It is widely used in analytical research in chemical crystallography, molecular biology, pharmacology, mineralogy, and materials science.
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    2024
    09-20
  • High precision multifunctional angle measuring instrument
    The goniometer is the heart of the X-ray diffractometer, and the TD series X-ray diffractometer has extremely high measurement accuracy
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    2024
    09-03
  • Diffractometer accessories
    X-ray diffractometer (XRD) is the use of diffraction principle, accurate phase analysis, qualitative analysis and so on. Today, we will introduce some accessories that can be equipped with XRD instruments.
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    2023
    10-05

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