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Mass spectrometer Product List and Ranking from 33 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Sep 03, 2025~Sep 30, 2025
This ranking is based on the number of page views on our site.

Mass spectrometer Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Sep 03, 2025~Sep 30, 2025
This ranking is based on the number of page views on our site.

  1. サーモフィッシャーサイエンティフィック株式会社/Thermo Fisher Scientific K.K. Tokyo//Testing, Analysis and Measurement
  2. 日本ウォーターズ(米国本社 Waters Corporation)  Tokyo//Testing, Analysis and Measurement
  3. 一般財団法人材料科学技術振興財団 MST Tokyo//Testing, Analysis and Measurement
  4. 4 アズサイエンス 松本本社 Nagano//Trading company/Wholesale
  5. 4 Kyoritsu Electric Corporation Shizuoka//Industrial Electrical Equipment

Mass spectrometer Product ranking

Last Updated: Aggregation Period:Sep 03, 2025~Sep 30, 2025
This ranking is based on the number of page views on our site.

  1. Triple Quadrupole Mass Spectrometer (LC-MS/MS) サーモフィッシャーサイエンティフィック株式会社/Thermo Fisher Scientific K.K.
  2. Orbitrap Astral Mass Spectrometer サーモフィッシャーサイエンティフィック株式会社/Thermo Fisher Scientific K.K.
  3. [Case Study] Quantitative Analysis of Brighteners and Decomposition Products in Electrolytic Nickel Plating Solutions サーモフィッシャーサイエンティフィック株式会社/Thermo Fisher Scientific K.K.
  4. 4 HPLC and mass spectrometry for the analysis and testing of cosmetics and personal care products. 日本ウォーターズ(米国本社 Waters Corporation) 
  5. 4 Tandem Quadrupole Mass Spectrometer Xevo TQ Absolute 日本ウォーターズ(米国本社 Waters Corporation) 

Mass spectrometer Product List

121~135 item / All 160 items

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compact

It combines mass accuracy, sensitivity, MS/MS performance, and robustness, providing an unparalleled dynamic range.

In routine work, technologies required at the research level are also used. The Bruker compact QTOF has the following features: - Provides high-precision MS and MS/MS data with sensitivity in the order of a few picograms. - Achieves reliable trace analysis from complex, high-background matrices by expanding the dynamic range. - Ensures mass accuracy below 1 ppm through true isotope pattern automatic calibration for clear spectra. - Maintains high resolution even in ultra-fast chromatography with 50 GBit/second sampling technology. The compact combines the robustness of Bruker's orthogonal time-of-flight mass spectrometer with 10-bit digitizer technology, enabling the detection and identification of compounds with an unmatched dynamic range.

  • Analytical Equipment and Devices

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High-Precision Stable Isotope Ratio Mass Spectrometer '253 Plus'

Active in cutting-edge isotope science research! High-precision stable isotope ratio analysis advanced model.

It is a stable isotope ratio analysis device (Gas IRMS) primarily for light elements such as carbon, nitrogen, sulfur, oxygen, and hydrogen. It is a higher model of the Thermo Scientific DELTA Q stable isotope ratio mass spectrometer, demonstrating high performance in cutting-edge isotope science research. ■ High-precision stable isotope ratio analysis - Excellent sensitivity, stability, robustness, and signal linearity with a 10 kV acceleration voltage - Capable of high-precision analysis of trace samples - Numerous achievements in determining certified values for international standard materials ■ Compatible with various pretreatment devices to support a wide range of isotope ratio analysis applications - Seamless connection and integrated control with pretreatment devices - Particularly demonstrates outstanding performance in paleoclimate and paleoenvironment research when combined with the Thermo Scientific Kiel IV automatic carbonate pretreatment device dedicated to the dual inlet system ■ High performance that paves the way for new fields of isotope science research, including Clumped Isotope/Isotopomer studies - Improved resolution compared to conventional models - Introduction of new signal integration technology (Long Integration Dual Inlet, LIDI method) - Equipped with an amplifier with a 10^13Ω resistance for ultra-trace measurements

  • Kiel IV.png
  • Analytical Equipment and Devices

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Surface Ionization Mass Spectrometer (TIMS) "TRITON"

TIMS, which has a proven track record in precise isotopic ratio analysis of metallic elements.

This is a thermal ionization mass spectrometer (TIMS) primarily used for isotope ratio analysis (IRMS) of metal elements. The samples, after purification, are applied to a filament and measured using a method of thermal ionization under vacuum. ■ High-precision isotope ratio analysis is possible - Low energy scattering of ions allows for precise analysis - Over 25 years of proven performance and reliability <Representative measured elements> - Geochemistry field: Neodymium (Nd), Strontium (Sr), Lithium (Li), Lead (Pb), etc. - Nuclear field: Uranium (U), Plutonium (Pu), etc. <Representative applications> - Space geochemical research (dating of geological and meteorite samples, material cycle studies) - Nuclear security and nuclear inspections - Environmental radioactivity research (such as 90Sr) For more details, please download the PDF or feel free to contact us.

  • Analytical Equipment and Devices

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[Case Study] Quantitative Analysis of Monosaccharides, Disaccharides, and Sugar Alcohols by LC-qMS

ISQ EC single quadrupole mass spectrometer achieving high sensitivity and high selectivity in sugar analysis.

This technical document presents a case study on the highly sensitive quantification of eight components, including monosaccharides, disaccharides, and sugar alcohols, in beverages using the Thermo Scientific ISQ EC single quadrupole mass spectrometer. There are various methods for sugar analysis using HPLC, but traditional differential refractive index detectors have challenges such as sensitivity issues and the inability to perform gradient analysis. Additionally, while fluorescence detectors can detect low concentrations, they require derivatization, making the sample preparation complicated. The ISQ EC single quadrupole mass spectrometer enables the quantification of sugars at low concentrations ranging from a few to several tens of ng/mL, thanks to its high sensitivity and selectivity. Furthermore, its user-friendly device and analysis software allow easy operation for both beginners and experts in mass spectrometry, streamlining routine analyses and enabling the rapid acquisition of reliable quantitative data. 【Features】 ■ High sensitivity: Detection limit of a few to several tens of ng/mL ■ High selectivity: Accurate quantification unaffected by interfering components ■ Improved operability: No complex sample preparation required

  • Thermo ISQ EM with Vanquish_09_2.png
  • Analytical Equipment and Devices

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[Case Study] Quantitative Analysis of Brighteners and Decomposition Products in Electrolytic Nickel Plating Solutions

Management of gloss agents and decomposition products using a single quadrupole mass spectrometer LC-MS enables stable quality assessment of plating solutions!

Quantitative analysis of gloss agents (saccharin and 2-butin-1,4-diol) in electroplating nickel plating solution using LC-MS helps maintain a consistent composition of the plating solution and greatly aids in the quality control of gloss agents. This method analyzes the components contained in the gloss agents under two different conditions based on their chemical composition. Additionally, samples can be easily measured by simply diluting them with water, and good results ranging from 92% to 108% have been obtained in addition-recovery tests. Furthermore, analytical conditions have been devised to achieve stable measurements over a long period. By using MS, detection is possible even at low concentrations in samples containing high concentrations of impurities, such as plating solutions, and detection is possible with both UV and MS. Measurement of not only gloss agents but also decomposition and by-products is possible, leading to further evaluation of the plating solution. For more details, please download the materials. 【Features】 ■ Quality control of gloss agents achieved through quantitative analysis using LC-MS ■ Measurement of gloss agents and decomposition/by-products is possible ■ Analysis of gloss agent components under two different conditions ■ Samples can be easily measured by simply diluting with water ■ Analytical conditions enable stable measurements over a long period

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  • Analytical Equipment and Devices

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Technical Data: Isotope Ratio Analysis Using Orbitrap Mass Spectrometry

A new tool for analyzing the dynamics of substances in the environment.

The Orbitrap mass spectrometer enables direct isotopic ratio analysis of isotopologue species and clumped isotopes. It serves as a new tool for elucidating chemical, physical, and biological processes in the environment. The technical documentation below explains the measurement techniques of the Orbitrap mass spectrometer for isotopologue measurements of nitrates, sulfates, and acetic acid, including measurement conditions and comparisons with conventional magnetic field IRMS. For more details, please download the PDF or feel free to contact us.

  • Analytical Equipment and Devices

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[Case Study] High-Sensitivity Quantitative Analysis of Volatile PFAS in Environmental Samples

Efficient PFAS analysis method using SPME Arrow fibers and Orbitrap Exploris GC.

This technical document introduces a highly sensitive quantitative analysis method for volatile perfluoroalkyl substances (PFAS) in environmental samples. By combining the Thermo Scientific Orbitrap Exploris GC high-resolution accurate mass spectrometer with Thermo Scientific SPME Arrow fibers, PFAS in complex environmental samples can be efficiently analyzed. This method allows for the detection of low concentrations of PFAS compounds with high sensitivity while minimizing sample pretreatment. Furthermore, by utilizing HRAM full scan data, both targeted compound quantification and non-target analysis can be achieved, rapidly expanding the analytical scope. In actual sample applications, PFAS compounds were detected in all samples, with particularly high concentrations confirmed in untreated wastewater and landfill leachate. 【Features】 ■ High sensitivity and high selectivity analysis through high-resolution accurate mass spectrometry ■ Efficient sample pretreatment using SPME Arrow ■ Flexible data processing with full scan data ■ Low LOD (0.1–1.4 ng/L) meets stringent reporting limits ■ Detection of a wide range of PFAS compounds in complex environmental samples

  • p6の図?_Exploris_240__GC_Triplus.png
  • Food Testing/Analysis/Measuring Equipment
  • Analytical Equipment and Devices
  • others

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[Case Study] Residual Pesticide Analysis in Baby Food Using High-Resolution GC-MS

Achieving high selectivity and high sensitivity for accurate quantitative analysis of pesticide residues in food.

The Thermo Scientific Orbitrap Exploris GC mass spectrometer demonstrates excellent performance in pesticide analysis in baby food. This system provides high selectivity and sensitivity with mass resolutions set at 30,000 and 60,000, accurately detecting low concentrations of pesticides from complex sample matrices. The QuEChERS method using citrate buffer was employed for sample preparation. This technical document presents the performance evaluation results of linearity, sensitivity, mass accuracy, and ion ratios for 18 types of pesticides in baby food extracts. All pesticides were detected and identified at the lowest standard concentration of 0.005 mg/kg, with mass accuracy showing high reliability within 1.5 ppm across all concentration levels. 【Features】 ■ Accurate mass measurement at high resolution ■ High selectivity and sensitivity even in complex sample matrices ■ Easy data acquisition and analysis using Thermo Scientific Chromeleon chromatography data system (CDS) software ■ Good linearity with a coefficient of determination of over 0.99 ■ Mass accuracy within 1.5 ppm across all concentration levels

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  • Food Testing/Analysis/Measuring Equipment
  • Analytical Equipment and Devices
  • others

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Ultra-high sensitivity tandem quadrupole mass spectrometer [Xevo-TQ XS]

Ultra-high sensitivity tandem quadrupole MS enabling maintenance and optimization without tools.

By extending the range of analysis with extremely high sensitivity, we have achieved an unprecedented level of reliability, reproducibility, and performance. Through the optimization of each technology, it has been designed with a focus on standardization, allowing more users to apply class-leading sensitivity to a greater number of compounds.

  • Separation device

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High-Resolution Mass Spectrometer (LC-QTof) Xevo MRT

Uncompromising performance and speed - high resolution across a wide m/z range, regardless of scan rate.

By using the state-of-the-art Xevo MRT mass spectrometer, which operates at 100 Hz with a mass resolution of 100K FWHM and mass accuracy within ppm, reliable identification and increased productivity can be achieved in the lab. The Multi-Reflection Time-of-Flight (MRT) technology ensures consistent mass resolution across a wide m/z range, regardless of the scan rate, even at the highest acquisition rates. This system guarantees excellent data quality, enabling scientific analysis, making it ideal for large cohort studies in biopharmaceutical research. 【Features】 - Reliable separation of analytes in complex matrices - Improved reliability of compound identification - Reproducible results due to high stability and robustness

  • Analytical Equipment and Devices

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High-resolution mass spectrometer (LC-QTof) Xevo G3 QTof

Reliable characteristic analysis - A mass spectrometer that maximizes information about the analysis species.

By using the Xevo G3 QTof, you can maximize the information about the analysis species from samples, enhancing the reliability of results from detailed characterization to accurate quantification. It simplifies and expands the characterization and evaluation of properties, from unstable low molecular weight compounds to complex biopharmaceuticals. By updating the design of the ion optical system and incorporating core technologies that achieve comprehensive quantification capabilities, consistent robustness and performance have been achieved. 【Features】 - Improved permeability of unstable low molecular compounds maximizes coverage of analysis species - Enhanced quantitativeness and expanded dynamic range within and between spectra enable optimal comprehensive quantification/qualitative analysis for screening and target applications - Improvements in the ion optical system lead to a more reliable and robust system - Achieves high levels of accuracy and reproducibility

  • Analytical Equipment and Devices

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Ion Mobility High-Resolution Mass Spectrometer Cyclic IMS

When you feel the limitations of MS selectivity - Achieving separation of co-eluting isomers with dramatically improved mobility resolution.

With the SELECT SERIES Cyclic IMS, ions can be selected based on both mass and mobility. By combining ion mobility and mass spectrometry, isomers can be separated based on shape and m/z, allowing for the measurement of ion collision cross-section (CCS) and obtaining very clean mass spectral data. Traditional mobility cells were linear, but by making them circular, the mobility resolution has dramatically improved. Ions can be repeatedly cycled within the cell, and the number of repetitions can be freely set.

  • Analytical Equipment and Devices

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High-Resolution Mass Spectrometer (QTof) SELECT SERIES MRT

Exceeding high-resolution MS - consistent mass resolution across a wide m/z range and scan rate, along with high mass accuracy.

Using the state-of-the-art multi-reflecting time-of-flight mass spectrometry (MRT) technology, the SELECT SERIES MRT enables clear compound identification even in very complex samples, regardless of the scan rate, thanks to its high resolution and high specificity. The class-leading ToF mass resolution is achieved through innovative ion beam multi-reflection. This technology allows for high resolution and mass accuracy at sub-ppm levels across a wide m/z range, enabling very detailed structural characterization and overcoming many scientific challenges. 【Features】 - Consistently ppb level mass accuracy (<500ppb) - High mass resolution unaffected by measurement speed (>300,000 FWHM; 30Hz) - High data quality for both MS and MS/MS - Compatible with MS imaging (DESI, MALDI) and LC-MS applications

  • Analytical Equipment and Devices

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Tandem Quadrupole Mass Spectrometer Xevo TQ Absolute

Are you satisfied with just high sensitivity? - Ultra-high sensitivity LC-MS/MS that maintains stable operation for a long time and is easy to maintain.

Many people are struggling with systems that are prone to contamination and time-consuming maintenance. The Xevo TQ Absolute, known for its resistance to contamination thanks to the "ZSpray Ion Source," along with a new source shield, minimizes contamination of the ion source from sample matrices and salts in the mobile phase. It also allows for the removal of neutral molecules before the mass separation section (StepWave XS), concentrating ions for introduction into the mass separation section. This helps maintain the system in a "good condition" for a longer period, maximizing uptime. As a latest high-sensitivity model, it achieves higher sensitivity and lower quantitation limits. Additionally, it is more compact compared to conventional products, reducing power and gas consumption by about 50%, and also decreasing heat generation by approximately 50%. 【Features】 - Sensitivity to anionic compounds improved by up to 15 times (compared to previous products) - Ensures consistent robustness and reproducibility, maintaining performance and productivity over a longer period - Reduces electricity and gas consumption by about 50% compared to typical high-performance TQ mass spectrometers, with heat generation also reduced by about 50%

  • Mass Spectrometer

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[Analysis Case] Investigation of the Causes of Yellowing in Polyurethane

By using PDA and MS in LC, it is possible to qualitatively analyze colored extracts.

Many organic materials (resins) may discolor due to aging and other factors. The causes include the formation of conjugated double bonds within the polymer, the degradation of additives contained in the resin, and the transfer of surrounding substances, among others. When the degradation of additives is the cause, the responsible substances can be analyzed by elution using methods such as LC or GC. Here, we provide an overview of the causes of resin discoloration and analysis methods, and introduce a case where the coloring substances responsible for yellowing in polyurethane were separated by LC and qualitatively identified using a combination of PDA and MS.

  • Contract Analysis
  • Contract measurement

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