LabTech LabICP2000 ICP-OES

LabICP2000 Series is a new-generation full-spectrum, direct-reading inductively coupled plasma optical emission spectrometer (ICP-OES), primarily used for qualitative, semi-quantitative, and quantitative analysis of major, minor, and trace elements in various samples.

Key Features

  • The instrument is based on a prism, high-resolution mid-order grating, two-dimensional cross-dispersion full-spectrum direct-reading optical system. It features fully automated control, with all monitoring instruments computer-controlled, eliminating the need for manual adjustment of instrument parameters.
  • Equipped with a stable and advanced all-solid-state RF source, with automatic matching and real-time power control, and a 3-turn inductively coupled coil, providing excellent coupling efficiency and sample adaptability.
  • Bidirectional pre-optics design with a super-spherical reflection mirror achieves excellent imaging performance; radial observation height is adjustable, allowing improved signal-to-noise ratio during measurements.
  • Protection and safety measures cover key operational parameters, including cooling fan, working temperature, reflected power, forward power, and current.
  • Fully enclosed optical chamber features sealed micro-positive pressure design, effectively reducing purge time in the deep ultraviolet region.
  • Uses a large-area back-illuminated CCD detector with efficient semiconductor cooling; the detector surface has no photo-conversion chemical coating, preventing damage or replacement due to coating aging.
  • The software is user-friendly and intuitive, supporting qualitative, semi-quantitative, and quantitative analysis, as well as data reprocessing. It also features a “spectral capture” function to record all element emission lines simultaneously, with storage and retrieval capabilities.
Environmental
For determining metal elements in environmental samples such as water, soil, sediments, and airborne particulates.
Food & Beverage
For measuring trace and ultra-trace metal elements in food and beverage samples, such as fruits, vegetables, grains, dairy products, and drinking water.
Pharmaceutical & Medical
For analyzing pharmaceuticals, raw materials, preparations, and biological samples (e.g., blood and urine) to determine harmful metal impurities or essential trace elements.
Semiconductor Analysis
For detecting metal contamination in ultrapure chemicals and process water used in semiconductor manufacturing.
Disease Control
For biomonitoring metal content in blood, urine, and tissue samples for public health and disease surveillance purposes.
Geology & Mining
For determining metal elements in rocks, ores, soils, and sediments for geochemical analysis.
Forensics
For analyzing evidence such as glass, metals, and paint to determine metal content for identification or investigation purposes.
Industrial Materials
For measuring metal elements in industrial materials, including alloys, metal products, and coatings, for quality control.
Energy & Chemicals
For analyzing petroleum, fuels, lubricating oils, and other chemical samples to determine trace metal elements for process optimization and quality assurance.
Nuclear
For determining metal impurities in nuclear materials and radioactive samples to support fuel processing and safety monitoring.
Environmental
Food & Beverage
Pharmaceutical & Medical
Semiconductor Analysis
Disease Control
Geology & Mining
Forensics
Industrial Materials
Energy & Chemicals
Nuclear

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