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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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  • Series X-ray Crystal Analyzer
    Series X-ray Crystal Analyzer
    1. X-ray instrument is easy to operate and fast to detect. 2. X-ray instrument is accurate and reliable, with excellent performance. 3. X-ray instrument has various functional accessories to meet the needs of different testing purposes.
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  • Powder Diffractometer
    Powder Diffractometer
    1. Detector type: Array detector or SDD detector; 2. PLC automatic control calculus, Integration mode conversion, PLC automatically performs PHA, dead time correction 3.Sample measurement type: powder sample, liquid samples, melt-state samples, viscous samples, loose powders, bulk solid samples 4.Available with a variety of diffractometer accessories 5.Maximum output powder: 3kW
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  • The mystery and application of graphite curved crystal monochromator

    The graphite curved crystal monochromator used in X-ray diffractometers is a key component for selecting specific wavelengths of X-rays and removing unwanted radiation such as K β lines and fluorescent X-rays. The graphite curved crystal monochromator is a component installed in front of the X-ray detector, which monochromatizes the X-rays passing through the receiving slit and only detects the Kα characteristic X-rays in the X-ray spectrum. By using this device, continuous X-rays, K β characteristic X-rays, and fluorescent X-rays can be completely eliminated, enabling high signal-to-noise ratio X-ray diffraction analysis. When copper target X-ray tubes are used in conjunction with corresponding monochromators, fluorescent X-rays generated from Mn, Fe, Co, Ni based samples can be eliminated, making them suitable for analysis of various samples. working principle: Bragg diffraction: Based on Bragg's law, when X-rays are incident on a crystal at a certain angle, if 2dsin θ=n λ (where d is the interplanar spacing of the crystal, θis the incident angle, λ is the wavelength of the X-ray, and n is an integer), diffraction will occur. It utilizes this principle to adjust the orientation of the crystal so that only X-rays that meet specific conditions can pass through, thereby achieving the selection of X-ray wavelengths. Energy resolution: Due to the interplanar spacing and structural characteristics of graphite crystals, it can effectively distinguish X-rays of different energies. High energy resolution graphite curved crystal monochromator can further reduce unwanted radiation and improve the quality of diffraction data. Structural features: Curved shape: graphite curved crystal monochromator typically have a curved shape, which helps focus X-rays and improve diffraction efficiency. At the same time, the curved shape also helps to reduce the stress on the crystal, improve its stability and service life. High purity graphite: Graphite curved crystal monochromator is usually made of high-purity graphite materials to ensure their good diffraction performance and stability. High diffraction efficiency: It has a high diffraction efficiency, which can effectively select X-rays of the desired wavelength, thereby improving the quality of diffraction data. Wide wavelength range: It can operate over a wide wavelength range and is suitable for various types of X-ray diffraction experiments. Good stability: Due to the use of high-purity graphite material, it has good stability and a long service life. Application areas: Materials Science: In the field of materials science, X-ray diffractometers are widely used to study the crystal structure, phase composition, and other properties of materials. The graphite curved crystal monochromator, as an important component of X-ray diffractometer, provides important technical support for materials science research. Physics: In the field of physics, X-ray diffractometers are also used to study the microstructure and physical properties of matter. In summary, the graphite curved crystal monochromator used in X-ray diffractometers is an efficient and accurate X-ray selection and filtering device, providing important technical support for X-ray diffraction experiments.

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    The mystery and application of graphite curved crystal monochromator
  • A powerful assistant for improving material research and development efficiency

    The X-ray crystal orienter​ operates based on the principle of X-ray diffraction. The high voltage generated by the high-voltage transformer acts on the X-ray tube, producing X-rays. When the X-ray is irradiated onto the sample, diffraction occurs when the Bragg diffraction condition (n λ=2dsin θ) is satisfied. Among them, λ is the wavelength of X-rays, d is the spacing between atomic planes inside the crystal, and θ is the angle between the incident X-rays and the crystal plane. The diffraction line is received by the counting tube and displayed on the microampere meter of the amplifier. When using a monochromator, the diffraction line is monochromatized and then received by the counter and displayed on the microampere meter of the amplifier, thereby improving measurement accuracy. The X-ray crystal orienter can accurately and quickly determine the cutting angle of natural and artificial single crystals (piezoelectric crystals, optical crystals, laser crystals, semiconductor crystals), and is equipped with a cutting machine for directional cutting of the above-mentioned crystals. X-ray crystal orienter is an indispensable instrument for precision machining and manufacturing of crystal devices. The X-ray crystal orienter is widely used in the research, processing, and manufacturing industries of crystal materials. The X-ray crystal orienter is easy to operate, does not require professional knowledge or skilled techniques, displays the angle digitally, is easy to observe, and reduces reading errors. The display of the X-ray crystal orientation instrument can be zeroed at any position, making it easy to display the deviation value of the chip angle. The dual angle measuring instrument can work simultaneously, improving efficiency. The X-ray crystal orienter has a special integrator with peak amplification, which improves the detection accuracy. The integration of X-ray tube and high-voltage cable increases high-voltage reliability. The detector high-voltage adopts DC high-voltage module and vacuum suction sample board, which improves the angle measurement accuracy and speed. Overall, the X-ray crystal orienter is a precision instrument based on the principle of X-ray diffraction, which provides important technical support for crystal material research and related applications by accurately measuring the cutting angle of crystals.

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    A powerful assistant for improving material research and development efficiency
  • The new favorite in the field of education

    The TDF series X-ray crystal analyzer is a large-scale analytical instrument and X-ray instrument used to study the internal microstructure of materials. It is mainly used for single crystal orientation, defect inspection, determination of lattice parameters, determination of residual stress, study of the structure of plates and rods, study of the structure of unknown substances, and single crystal dislocations.

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    The new favorite in the field of education
  • Exploring the "Microscope" of the Crystal World

    The TD-5000 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. X-ray single crystal diffractometer​ is widely used in analytical research in chemical crystallography, molecular biology, pharmacology, mineralogy, and materials science. Single crystal XRD is a high-tech product under the National Major Scientific Instrument and Equipment Development Project of the Ministry of Science and Technology, led by Dandong Tongda Technology Co., Ltd., filling the gap in the development and production of single crystal x-ray diffractometer in China.

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    Exploring the
  • High-Precision X-Ray Crystal Analysis Technology: A Key Tool for Multi-Industry Material Characterization

    The TDF series X-ray crystal analyzer delivers exceptional performance in microstructure analysis, supporting single crystal orientation, defect detection, and stress measurement. Featuring a vertical tube design with multi-window operation and imported PLC control, it ensures high precision, safety compliance (radiation <0.1 µSv/h), and adaptability across industries. Backed by ISO certification and global exports, this instrument empowers scientific and industrial advancements worldwide

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    High-Precision X-Ray Crystal Analysis Technology: A Key Tool for Multi-Industry Material Characterization
  • Technological Breakthrough: Chinese Instruments Enter the High-End Arena

    TD-5000 X-ray diffractometer breaks international monopoly in high-end scientific instruments. This Chinese innovation delivers exceptional precision (0.0001° accuracy) and advanced detection capabilities, serving researchers in pharmaceuticals, materials science, and chemistry through comprehensive structural analysis.

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    Technological Breakthrough: Chinese Instruments Enter the High-End Arena
  • TD-5000 Single Crystal XRD

    The TD-5000 X-ray Single-Crystal Diffractometer is a high-performance instrument developed by Dandong Tongda Technology. Approved under China's National Key Scientific Instrument and Equipment Development Project, it fills a critical domestic gap in this field. Its primary function is determining the three-dimensional spatial structure and electron density distribution of crystalline substances—including inorganic compounds, organic compounds, and metal complexes—while also analyzing structures of special materials like twinned crystals, incommensurately modulated structures, and quasicrystals. It precisely measures the accurate 3D spatial structure of new crystalline compounds (including bond lengths, bond angles, configuration, conformation, and bonding electron density) and the actual arrangement of molecules within the crystal lattice. The system provides comprehensive structural information such as unit cell parameters, space group, molecular structure, intermolecular hydrogen bonding and weak interactions, and molecular configuration/conformation. It is widely used for analytical research in chemical crystallography, molecular biology, pharmacology, mineralogy, and materials science. Core Technology: A Dual Revolution in Precision and Intelligence (1) The "Mechanical Eye" with Atomic-Level Positioning Four-Circle Concentric Diffractometer: Overcomes traditional mechanical offset limitations, maintaining a constant rotational center to ensure diffraction spot coordinate errors remain below the nanometer level. PILATUS Detector: Combines single-photon counting technology with 172μm ultra-fine pixels. Achieves frame rates up to 20Hz, with noise suppression capability 3 times greater than conventional CCD detectors. (2) Fully Intelligent Closed-Loop Workflow PLC One-Touch Control: Automates the entire process from crystal positioning to data acquisition, reducing manual operation time by 90%. Cryogenic Enhancement System: Features ±0.3 K precision temperature control (100K–300K), boosting signal intensity for weakly diffracting crystals by 50% with liquid nitrogen consumption of only 1.1–2 L/h. (3) Dual Assurance: Safety and Expandability Lead Door Interlock + Leakage Protection (≤0.12 µSv/h), exceeding national safety standards. Optional Multilayer Focusing Optics (Mo/Cu Dual Target), enabling full-scale analysis from small-molecule pharmaceuticals to minerals with large unit cells. The advent of the TD-5000 X-ray Single-Crystal Diffractometer signifies more than an instrumental breakthrough—it marks the era where China's high-end scientific research equipment officially achieves autonomous precision definition. As of 2025, this system has served over 30 leading institutions across fields including chemistry, materials science, and aerospace. As crystals unveil the secrets of life under the probing gaze of domestically developed instruments, China's scientific "eye that discerns the essence of matter" now shines with brilliant clarity.

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    TD-5000 Single Crystal XRD
  • The iterative revolution of crystal analyzers is happening

    Product Spotlight: Dandong Tongda's X-Ray Crystal Analysis Solutions Dandong Tongda Science and Technology introduces its advanced X-ray crystal analysis equipment, delivering precision and reliability for industrial applications. The TDF Series X-Ray Crystal Analyzer combines powerful analytical capabilities with industrial-grade reliability. Featuring four operational windows and PLC control technology, it serves high-end manufacturing sectors including semiconductor wafer inspection, aerospace component stress evaluation, and laser crystal processing. Our X-Ray Crystal Orientators (TYX-200/TYX-2H8) enable rapid, precise measurement of crystal cutting angles with accuracy up to ±30 arcseconds. Capable of handling samples up to 30kg, these instruments support directional cutting of piezoelectric, optical, laser, and semiconductor crystals. Both product lines utilize non-destructive X-ray diffraction technology, replacing traditional radioactive methods while improving processing efficiency and accuracy for crystal material research and manufacturing.

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    The iterative revolution of crystal analyzers is happening
  • Breakthrough in Core Technology: The Unity of Precision and Safety

    The TD-5000 X-ray Single Crystal Diffractometer by Dandong Tongda Science & Technology Co., Ltd. delivers exceptional precision (0.0001°), efficiency, and safety. Featuring a four-circle kappa goniometer and PILATUS detector, it enables accurate 3D crystal structure analysis for materials science, pharmaceuticals, and geology, showcasing China's high-end instrument innovation.

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    Breakthrough in Core Technology: The Unity of Precision and Safety
  • New Breakthrough in China's Crystal Analyzer Technology

    Dandong Tongda's TDF Series X-ray Crystal Analyzer represents China's breakthrough in high-end, self-developed analytical instruments. It delivers precise, safe, and reliable crystal structure analysis for global materials science and pharmaceutical R&D.

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    New Breakthrough in China's Crystal Analyzer Technology

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