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CX-9600(T) Benchtop Photoelectric Direct Reading Spectrometer for Alloy Analysis

• The CX-9600 benchtop optical emission spectrometer can measure trace amounts of carbon (C), phosphorus (P), and sulfur (S) for a variety of metal matrices, such as iron-based, aluminum-based, copper-based, nickel-based, chromium-based, titanium-based, magnesium-based, zinc-based, tin-based, and lead-based. The full spectrum technology covers the full range of elemental analysis, and the channel elements can be selected according to the customer's needs.
• Fast analysis of elemental composition in all channels in less than 20 seconds. For different analytical materials, the pre-ignition time and marking line are set to achieve the optimal analysis effect in a short time.
• The optical system adopts a vacuum constant temperature optical chamber, and the arc flame generated during excitation is directly introduced into the vacuum optical chamber by the lens to achieve direct optical path, eliminate optical path loss, improve the detection limit, accurate measurement results, excellent reproducibility and long-term stability.
• Special optical chamber structure design, so that the vacuum chamber volume is smaller; Automatic optical path calibration, the optical system automatically performs spectral line scanning, ensuring the correctness of reception and eliminating tedious peak scanning work. The instrument automatically identifies specific spectral lines, compares them with the original storage lines, determines the drift position, and finds out the current pixel position of the analysis line for measurement.
• Open electrode holder design with adjustable sample clamps for easy analysis of samples of various shapes and sizes.
• The working curve adopts international standard samples, pre-made working curves, which can be extended and expanded according to needs, and each curve is generated by up to dozens of standard samples, and the interference is automatically deducted; HEPS digital solid-state light source, adaptable to a variety of different materials
• Solid-state adsorption trap to prevent oil and gas from polluting the optical chamber and improve long-term operation stability; Copper spark stand base for improved heat dissipation and robust performance.
• Reasonable argon gas circuit design shortens the argon flushing time when the sample is excited, saving argon gas for users.
• Tungsten electrode is used for longer electrode life, and the electrode self-purge function is designed to make it easier to clean the electrode.
• High-performance DSP and ARM processor, with high-speed data acquisition and control functions, and automatic real-time monitoring of the operating status of optical chamber temperature, vacuum, argon pressure, light source, excitation chamber and other modules.
• Ethernet connection between the instrument and the computer, good anti-interference performance, external computer upgrade has nothing to do with the instrument configuration, so that the instrument has better applicability.
• All the core components are imported to ensure the quality of the instrument. CCD/CMOS full-spectrum spectrometer manufacturing technology (digital technology replaces the old bulky and bulky photomultiplication tube simulation technology), and the channel is not limited; There is no need to change the hardware, there is no cost to change the channel within the matrix, and the same sample can be analyzed in different time periods, and good data consistency can be obtained; Small size, light weight, easy to move and install; High integration, high reliability and high stability.

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