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Nu Instruments
Multicollector Inductively Coupled Plasma Mass Spectrometry (MC-ICPMS)
Enhanced Sensitivity High Resolution ICP-MS Attom ES

Attom ES is a high-frequency inductively coupled plasma mass spectrometry system with dual-focusing technology, specializing in the rapid and accurate analysis of isotope ratios and trace elements in solid/liquid sample matrices. With a wide dynamic range detection system & recording data for up to 73 elements in <105ms, Attom ES is a powerful solution for geochronology, environmental science, and nanomaterials research.

Multicollector Inductively Coupled Plasma Mass Spectrometry (MC-ICPMS)
Multi-Collector ICP-MS Plasma 3

Plasma 3 is a multi-collector mass spectrometry system specialized for multi-isotope analysis with high accuracy and repeatability. The device features a variable Zoom lens that allows switching between isotope systems without moving the detector. It has a static detector array with 16 Faraday cups and up to 6 ion counting detectors. It is the optimal solution for Earth science, environmental, nuclear, archaeological, forensic, and biomedical applications.

Multicollector Inductively Coupled Plasma Mass Spectrometry (MC-ICPMS)
Collision Cell Multi-Collector ICP-MS Sapphire

Sapphire is a Multi-Collector Inductively Coupled Plasma Mass Spectrometry (MC-ICPMS) system featuring a proprietary dual-path technology, integrating a collision/reaction cell to thoroughly eliminate spectral interferences from the argon source. The instrument possesses two distinct ion paths: a high-energy path (6 kV) for traditional isotope analyses, and a low-energy path (4 kV) routed through the reaction hexapole. It stands as an ideal solution for analyses in geochemistry, cosmochemistry, and life sciences

Multicollector Inductively Coupled Plasma Mass Spectrometry (MC-ICPMS)
High Resolution Multi-Collector ICP-MS Plasma 1700

Nu Plasma 1700 is a multi-collector mass spectrometry system (MC-ICP-MS) designed for large mass dispersion (mass dispersion ~1700 mm). The device can achieve a resolution of >30,000, while at levels >5,000 it still maintains a flat-top peak, preserving almost absolute sensitivity. Each detector is equipped with independently adjustable slits. An optimal solution in geochemistry, cosmochemistry, and life sciences.

Inductively Coupled Plasma Time-of-Flight Mass Spectrometry (ICPMS-TOF)
Time-of-Flight ICP-MS Vitesse

Vitesse is an Inductively Coupled Plasma Time-of-Flight Mass Spectrometry (ICP-TOF-MS) system, specifically designed for high-speed multi-element applications such as laser ablation imaging and nanoparticle analysis. It features a segmented reaction cell and powerful interference removal capabilities, making it an ideal solution for geochemical, biological, environmental, and materials research.

Thermal Ionization Mass Spectrometry (TIMS)
Thermal Ionisation Mass Spectrometry TIMS

Nu TIMS is a thermal ionization mass spectrometry system developed based on variable dispersion multi-collector technology. Nu TIMS achieves peak accuracy with a mass range of 5–300 amu, outstanding sensitivity, and fully automated operation. An optimal solution for U-Pb geochronology, radioactive isotope analysis (Sr, Nd, Pb) and nuclear, environmental, and cosmochemical applications.

Stable Isotope Ratio Mass Spectrometry (IRMS)
Isotope Ratio Mass Spectrometry Horizon 2

Horizon 2 is a stable isotope mass spectrometry system designed for both Dual Inlet (DI) and Continuous Flow (CF) analysis. The proprietary Zoom Optics system combined with narrow Faraday cups allows simultaneous monitoring of masses from 1 to 100 with precise peak matching. An ideal solution for geochemistry, environmental science, food traceability, and forensics.

Stable Isotope Ratio Mass Spectrometry (IRMS)
Isotope Ratio Mass Spectrometry Perspective

Perspective is a stable isotope mass spectrometry system with a versatile collector supporting up to 12 Faraday detectors along with proprietary Zoom Optics technology. Flexibly integrates both Dual Inlet (DI) and Continuous Flow (CF) analysis, enabling accurate analysis of stable isotopes C, N, O, S, H. An ideal solution for geochemistry, environmental science, food traceability, forensics, and advanced clumped isotopes analysis.

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