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Mass Spectrometer Product List and Ranking from 17 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Oct 15, 2025~Nov 11, 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:Oct 15, 2025~Nov 11, 2025
This ranking is based on the number of page views on our site.

  1. 一般財団法人材料科学技術振興財団 MST Tokyo//Testing, Analysis and Measurement
  2. ブルカージャパン ダルトニクス事業部 微生物同定・菌株識別 Kanagawa//Testing, Analysis and Measurement
  3. 日本ベクトン・ディッキンソン 品質管理・研究開発・注射剤の製剤研究・CMO Tokyo//Medical Devices
  4. 4 ATONARP INC. Tokyo//Electronic Components and Semiconductors
  5. 4 LECOジャパン Tokyo//Testing, Analysis and Measurement

Mass Spectrometer Product ranking

Last Updated: Aggregation Period:Oct 15, 2025~Nov 11, 2025
This ranking is based on the number of page views on our site.

  1. Mass array method: A gene analysis method using mass spectrometry. 一般財団法人材料科学技術振興財団 MST
  2. Rapid Microbial Identification "MALDI Biotyper" ブルカージャパン ダルトニクス事業部 微生物同定・菌株識別
  3. BD Bruker MALDI Biotyper smart 日本ベクトン・ディッキンソン 品質管理・研究開発・注射剤の製剤研究・CMO
  4. 4 [Analysis Case] Qualitative Evaluation of Fiber Optic Core and Cladding 一般財団法人材料科学技術振興財団 MST
  5. 4 Wafer bevel evaluation technology 東芝ナノアナリシス

Mass Spectrometer Product List

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Application Example: Mass Spectrometry Technology and Data Acquisition

You can obtain reproducible results even with the minimum level of ion signature! We are currently offering a comprehensive catalog and case studies.

I will introduce examples of applications for mass spectrometry technology and data acquisition. In mass spectrometry, data capture is quite challenging, but by using a properly designed digitizer, this challenge can be significantly alleviated, allowing for reproducible results even at minimal levels of ion signatures. The MS (Mass Spectrometry) system enables fundamental analysis of the chemical composition of substance samples. It is highly regarded for its high specificity and qualitative and quantitative capabilities. [Overview (Excerpt)] ■ Mass Spectrometry ■ Components of the MS System ■ Performance Requirements of the MS System ■ MS Digitizer Related Functions ■ Low-Speed Response Systems ■ High-Speed Response Systems *For more details, please feel free to contact us.

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Mass Spectrometry Instruments for Life Sciences (Comprehensive Lineup)

Perfect for analyzing complex applications! Download our comprehensive lineup of mass spectrometry devices that combine high precision, speed, and ease of use for free!

LECO's equipment is used daily around the world for the analysis of highly complex samples in today's environment. We provide instrument configurations tailored to your needs for sample analysis in various fields, including food, fragrances, petroleum, environmental issues, forensic science, materials science, and metabolomics. LECO's instruments are highly regarded for their accuracy, processing speed, and ease of use. Our quality policy is certified to ISO-9001:2008. 【Product Lineup】 ○ Comprehensive two-dimensional gas chromatography time-of-flight mass spectrometer "Pegasus 4D-C GC×GC-TOFMS" ○ Benchtop time-of-flight mass spectrometer "Pegasus BT 4D" ○ Ultra-high resolution gas chromatography time-of-flight mass spectrometer "Pegasus GC-HRT+4D" ● For more details, please download the catalog or contact us.

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

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[Document] Mass Spectrometry Guide

Analyze using information obtained from various analytical methods such as functional groups and skeletal structures! Introducing the mass spectrometry guide.

This document introduces a guide to mass spectrometry. In the analysis of organic compounds, information is obtained and analyzed from various analytical methods based on the functional groups, skeletal structures, and masses of the compounds. There are various methods for analyzing the mass of compounds, each with its own strengths in terms of the type of analysis and targets. Additionally, these methods can be selectively used according to the application or combined with other analytical techniques to obtain the necessary information. [Contents] ■ Methods mainly used in mass spectrometry - GC-MS - LC-MS - MALDI-TOFMS - GPC *For more details, please refer to the PDF document or feel free to contact us.

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  • Food Testing/Analysis/Measuring Equipment

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[Analysis Case] Depth Direction Analysis of Degradation Components in GCIB_Ar Cluster Organic Materials

Component evaluation of organic EL layer structures and degradation layers using GCIB under controlled atmosphere.

This paper presents a case study analyzing the degradation components of organic materials that deteriorate due to atmospheric exposure, using GCIB (Ar cluster). The experiment utilized the organic EL material, Rubrene. Measurements of the atmosphere-exposed samples using TOF-SIMS revealed the presence of a mass (m/z 564) estimated to be Rubrene peroxide, as well as low molecular weight benzene-related masses (m/z 77, 105). It was confirmed that these degradation-related components exist at depths of approximately 1μm or more from the surface. *GCIB: Gas Cluster Ion Beam

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[Analysis Case] Degradation Analysis of Organic EL Devices Using MSDM

By visualizing the mass spectrum, more accurate analysis is possible.

Organic EL (OLED) is used in various applications such as high-definition display panels and lighting, and the demand for layer structure analysis and degradation analysis is increasing. However, since it is formed by combining various organic materials, elemental analysis alone can only capture a portion of the phenomena. This document presents a case study where depth direction analysis data of OLED was obtained using TOF-SIMS, and insights into the degradation of the sample were gained through MSDM (Mass Spectra Depth Mapping).

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[Analysis Case] Analysis of Paper Coated with Dyes and Pigments

Visualization of molecular information derived from dyes and pigments is possible using TOF-SIMS.

Color printers use ink to print on the surface of paper. The ink contains dyes and pigments, which have characteristic molecular information based on their colors. By visualizing this molecular information, it becomes possible to obtain information about the distribution of ink components on the paper surface and how deeply the ink components penetrate into the paper cross-section. Below, I will summarize the "imaging results of the paper surface" visualized by TOF-SIMS. TOF-SIMS can perform image analysis of molecular information ranging from 10 μm to 3 cm square.

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[Analysis Case] Evaluation of Transdermal Absorption of Indomethacin in Rat Skin

Visualization of the distribution of active ingredients in biological tissues using TOF-SIMS.

TOF-SIMS identifies components based on the mass of molecular ions, eliminating the need for labels such as fluorescent substances, allowing for imaging evaluations without their influence. Additionally, by performing cross-sectional imaging, it is possible to assess distribution in the depth direction. In this study, a gel formulation of indomethacin was applied to rat skin for 2 hours, and the distribution of the permeated active ingredient was visualized. As a result, indomethacin was found to be highly concentrated at approximately 5μm on the stratum corneum surface, and the depth profile analysis showed that it was gradually permeating.

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[Analysis Case] TOF-SIMS Analysis of Solder Separation Cross Section

It is possible to evaluate the distribution of inorganic and organic substances in microdomains.

To investigate the causes of solder delamination, it is effective to conduct component analysis of the solder and the substrate interface. TOF-SIMS is a suitable method for evaluating delaminated areas because it can simultaneously analyze elemental composition and molecular information of organic and inorganic substances, as well as perform imaging analysis. This document presents a case study analyzing the cross-section of a delaminated solder area, confirming the distribution of substrate components, resin components, and organic components other than resin.

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[Analysis Case] Qualitative Evaluation of Fiber Optic Core and Cladding

Qualitative and distribution evaluation of optical fiber materials is possible using TOF-SIMS.

Optical fibers have a structure that consists of a core with a high refractive index surrounded by a cladding layer with a low refractive index. Due to the difference in refractive indices, light is totally internally reflected at the boundary and transmitted. Therefore, it is important to analyze the selection of materials, the presence of impurities, adhesion, coating conditions, and contaminants. Optical fibers can be broadly classified into two types: plastic and quartz. This document presents a case study in which the materials of the core and cladding were identified by analyzing the cross-section of plastic optical fibers using TOF-SIMS. Measurement method: TOF-SIMS Product field: Optical fibers, electronic components Analysis purpose: Qualitative evaluation, organic matter evaluation, composition distribution evaluation "For more details, please download the document or contact us."

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[Analysis Case] Molecular Structure Analysis of Liquid Crystal Materials

It is possible to estimate the structure of liquid crystal molecules in liquid crystal displays using GC/TOFMS.

The response speed, driving voltage, and reliability characteristics of liquid crystal panels are attributed to the molecular structure of the liquid crystals. Therefore, analyzing the details of the molecular structure is essential for controlling the display characteristics of liquid crystal panels. Here, we introduce a case where the liquid components in commercially available panels were extracted and structurally estimated using GC/TOFMS. Approximately 10 components, including liquid crystal materials that exhibit negative dielectric anisotropy, were estimated from precise mass information. Measurement method: GC/MS Product fields: Displays, televisions, projectors Analysis objectives: Market research, molecular structure evaluation, degradation investigation For more details, please download the materials or contact us.

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[Analysis Case] Structural Analysis of Fluoropolymer by LDI-MS

Structural analysis of fluorine-based grease, fluorine-based lubricants, and fluorine-based oils.

Fluoropolymer materials are chemically stable and possess various properties, making them widely used in industrial machinery, semiconductors, and electronics. LDI-MS (Laser Desorption Ionization Mass Spectrometry) is an analytical method that can ionize fluoropolymers with molecular weights of around several thousand while maintaining their molecular structure, allowing for the determination of the repeating units and molecular weights of fluoropolymers, as well as the estimation of end group compositions and structures. This document presents a case study on the structural analysis of perfluoropolyether (PFPE), which is used as a base oil in lubricants and heat transfer fluids. Measurement method: MALDI-MS Product field: Polymer materials Analysis purpose: Composition evaluation and identification, chemical bonding state evaluation For more details, please download the document or contact us.

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Differentiation of mass spectrometry methods for solid sample surfaces

It is effective to differentiate between the two methods according to the purpose components and the size of the imaging field.

TOF-SIMS and MALDI-MS, which are representative mass spectrometry methods for solid sample surfaces, both enable qualitative analysis and imaging analysis. TOF-SIMS, which utilizes hard ionization methods, can detect inorganic and organic components with masses up to several hundred with high sensitivity. On the other hand, MALDI-MS, which employs soft ionization methods, can detect polymers in the range of thousands to tens of thousands. Additionally, the spatial resolution of the images also varies depending on the diameter of the irradiation beam.

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[Analysis Case] Simultaneous Qualitative Analysis of Inorganic and Organic Contaminants/Adhesives on Wafers

Simultaneous measurement of inorganic and organic components in minute specific areas.

TOF-SIMS has features such as simultaneous evaluation of organic and inorganic materials, capability for micro-area analysis, and high sensitivity for analyzing the very surface, making it effective for residue investigation in cleaning processes. An example is presented where pure water was dried on a silicon wafer. Optical microscopy only reveals slight point-like foreign substances and cloudiness. However, the results measured by TOF-SIMS showed that in the contaminated areas, organic components such as hydrocarbons, PDMS, and amides, which tend to adsorb naturally, were aggregated.

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  • Wafer
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[Analysis Case] Imaging of Lipids

Imaging of lipids in mouse testis! Introducing cases measured with TOF-SIMS and MALDI-MS.

Our organization conducts lipid imaging. TOF-SIMS excels in low-mass components and enables imaging with high spatial resolution. On the other hand, MALDI-MS specializes in high-mass components and offers a wide variety of lipids that can be imaged. Here, we present examples of measurements taken with TOF-SIMS and MALDI-MS, using lipid imaging mass spectrometry results from mouse testes as a case study. [Measurement Methods] ■ [TOF-SIMS] Time-of-Flight Secondary Ion Mass Spectrometry ■ [MALDI-MS] Matrix-Assisted Laser Desorption Ionization Mass Spectrometry *For more details, please download the PDF or feel free to contact us.

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MS system "Smart Flash MS System"

Mass spectrometry detection medium pressure fractionation chromatography system!

This product is an easy-to-use MS system optimized for fractionation through the fusion of a high-performance benchtop MS and Smart Flash. It fully demonstrates the diverse capabilities of high-performance MS spectra. MS spectral analysis and MS monitoring can be conducted simultaneously with medium-pressure chromatography. It can measure accurate m/z values in 0.1 increments, allowing for precise identification of molecular weights, and it has minimal operational environment constraints, enabling accurate measurements even with temperature variations. Additionally, it comes standard with a dirt-resistant APCI probe, making it suitable for high-concentration samples and allowing for easy use without concerns about clogging or special maintenance. 【Features】 ■ The measurement range of MS spectra is broad, from m/z 10 to 1,200. ■ All m/z values within the specified range are saved in one-second increments. ■ Compact size that fits within a draft. ■ Standard equipped with an APCI probe. ■ Two types of probes, ESI and APCI, are provided as standard. *For more details, please contact us or download the catalog.

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