Optical emission spectrometer LB-12OES is a non-ferrous metal analyzer with a wavelength of 200 nm to 560 nm. High-Performance DSP and ARM processors have the functions of ultra-high speed data acquisition and control. Pollution-free tungsten electrodes do not need to be renewed. It offers highest levels of precision and accuracy, fully automatic and easy to use.
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Wavelength range | 200 nm ̴ 560 nm |
Pixel resolution | 30 pm |
Spectrum Width | 18 mm |
Grating Focus | 150 mm |
Spark frequency | 100 Hz ̴ 1000 HZ |
Plasma current | 1 A ̴ 80 A |
Ignition voltage | > 7000 V |
Storage temperature | 0°C - 45°C |
Operating temperature | 10 °C - 35 °C, 23 ± 2°C |
Power | AC 220 V / 550 Hz |
Power consumption | Excitation : 600 W Stand by : 50 W |
Argon quality | 99.999 %, Argon pressure > 4 Mpa |
Argon consumption | 4L / min during spark mode |
Dimension | 520 x 570 x 330 mm |
Features
Applications
Used for metal and trace elemental analysis, foundry, mechanical engineering, scientific research, product inspection, automobile, petrochemical engineering, shipbuilding, electrics, aerospace, nuclear power, metallic and nonferrous metallic smelting, processing and recycling.
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Wavelength range | 130 nm ̴ 800 nm |
Degree of vacuum | Auto control within 6 pa ̴ 20 pa |
Pixel resolution | 30 pm |
Spectrum Width |
Wavelength range | 130 nm ̴ 800 nm |
Degree of vacuum | Auto control within 6 pa ̴ 20 pa |
Pixel resolution | 30 pm |
Spectrum Width |
Wavelength range | 130 nm ̴ 800 nm |
Degree of vacuum | |
Pixel resolution | |
Spectrum Width |
Our Photomultiplier tube (PMT) spectrometers are advanced optical instruments used for sensitive and precise detection of light signals across different wavelengths. Employing a photomultiplier to amplify weak light signals, these spectrometers excel in applications requiring high sensitivity, such as fluorescence spectroscopy, Raman spectroscopy, and low-light-level measurements. PMT spectrometers convert incoming photons into electrical signals, offering excellent signal-to-noise ratios and wide dynamic ranges. Their versatility makes them essential in scientific research, biomedical diagnostics, and environmental monitoring, where the ability to detect and analyze faint light signals is crucial.
Analysis wave band(width range) | 120 nm ̴ 800 nm |
Optical system(large focal length) | Curvature radius : 750 mm |
Optical room | 35 °C ± 0.2 °C |
Working temperature | 10 ° C ̴ 30 ° C |
Our Raman Spectrometers operate under controlled temperature conditions for precise analysis in various environments. These spectrometers are equipped with high-sensitivity detectors such as CCDs and photodiode arrays. They achieve ultra-high resolution by precisely focusing the laser spots on the samples. They feature optimized excitation wavelengths, automatic focusing, and auto-scan functionality. These are integrated with confocal optics and provide exceptional spatial resolution for high-precision analysis.
Excitation Wavelength | 785 nm |
Spectral Range | 250 to 4300 cm⁻1 |
Spectral Resolution | 8 to 11 cm⁻1 |
Maximum Laser Power | 500 mW (Power for 532 nm: 100 mW) |
Excitation Wavelength | 785 nm |
Spectral Range | 250 to 3500 cmˉ¹ |
Spectral Resolution | 6 to 8 cmˉ¹ |
Maximum Laser Power | 500 mW (Power for 532 nm: 100 mW) |
Excitation Wavelength | 785 nm |
Spectral Range | 250 to 2700 cmˉ¹ |
Spectral Resolution | 5 cmˉ¹ |
Maximum Laser Power | 500 mW (Power for 532 nm: 100 mW) |
We provide an X-ray Fluorescence (XRF) Spectrometer, a powerful analytical instrument used for non-destructive elemental analysis of various materials. Operating on the principle of X-ray excitation, the spectrometer measures the characteristic X-ray fluorescence emitted by elements in a sample. It provides rapid and quantitative information about the elemental composition across a wide range of materials, including metals, minerals, and alloys. Widely used in fields such as geology, environmental science, and quality control, XRF spectrometers offer high precision and accuracy, enabling users to identify and quantify elements with minimal sample preparation.
Analysis Range | 1ppm to 99.99% |
Temperature Range | -20℃ to +50℃ |
Measurement Range | From Si to U |
Testing Samples | Solid, liquid and powders |
Energy range | 1 keV - 50 keV |
Analysis range | 1 ppm - 99.99 % |
Resolution of imported electrical refrigeration semiconductor detector | 130 ev |
Tube voltage: 0-50Kv tube current | 1 μA ̴ 2000 μA |
Analysis Range | 0.5 ppm to 20% |
Working Temperature | 0 to 40℃ |
Test Elements | Sulfur, Chlorine |
Detection Limit | 0.5ppm |
Labotronics Inductively Coupled Plasma Mass Spectrometry (ICP-MS) is a highly sensitive analytical technique used for elemental analysis. It combines the ionization capability of inductively coupled plasma with the precision of mass spectrometry. Our ICP-MS can detect and quantify a wide range of elements at trace levels, making it crucial in environmental, pharmaceutical, and geological research. With its high sensitivity, accuracy, and speed, ICP-MS is a powerful tool for applications requiring the quantification of elements in complex matrices, contributing to advancements in various scientific fields.
Mass Range | 2 amu ~ 255 amu |
Dynamic ( Linear ) range | ≥ 108 |
Sensitivity | Be ≥ 5 × 106 ( cps/mg/L ) In ≥ 60 × 106 ( cps/mg/L ) U ≥ 60 × 106 ( cps/mg/L ) |
Limit of detection | Be ≤ 5 ( ng/L ) In ≤ 0.5 ( ng/L ) U ≤ 0 .5 ( ng/L ) |
Labotronics Energy Dispersive X-Ray Fluorescence Spectrometer provides analysis of elements from light to heavy with minimal preparation. Its easy software ensures a smooth, hassle-free analytical process. Our spectrometer's durable design ensures reliability and reduces maintenance. Offers versatile analysis of multiple materials, revealing detailed composition and purity insights. It guarantees safety, meets standards, and minimizes radiation, all while delivering high performance.
Elemental Analysis Range | From Na to U |
Analytical range | 1 ppm to 99.99% |
Operating temperature | 15 to 30 ℃ |
Relative humidity | 40% to 50% |
Elemental Analysis Range | Fluorine (F) to Uranium (U) |
Temperature Range | 15°C to 30°C |
Analytical Range | ppm to 99.99% |
Detection Limit | As low as 0.2 ppm (for light matrices) |
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