We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Mass Spectrometer.
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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

31~45 item / All 45 items

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[Analysis Case] Analysis of Discoloration Components in Fibers

It is possible to evaluate the organic and inorganic components on the fiber surface.

TOF-SIMS is a highly effective method for investigating the causes of foreign substances, contamination, and discoloration in various processes, as it allows for localized analysis of specific areas and simultaneous analysis of elemental composition and molecular information of organic and inorganic substances through the obtained mass spectrum. Additionally, it enables image analysis, making the visualization of molecular information of organic substances possible. This document summarizes the analysis results of discoloration in clean suits, which are textile products. From the qualitative results obtained by TOF-SIMS, it was inferred that the discolored areas may be due to sebum.

  • Contract Analysis

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[Analysis Case] Evaluation of Metal Element Concentration Near the Surface of Gallium Oxide Ga2O3 Film

High sensitivity analysis even in extremely shallow areas.

Gallium oxide (Ga2O3) has a wider bandgap than SiC and GaN, and possesses excellent physical properties, making it a material of interest for high-efficiency, low-cost power devices. Controlling the impurity concentration, which affects the characteristics, is crucial in wafer development. This document presents a case study of quantitative analysis of metal elements in the vicinity of Ga2O3 films. TOF-SIMS allows for highly sensitive evaluation even in very shallow regions.

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[Analysis Case] Qualitative and Imaging Analysis of Micro Areas Using TOF-SIMS

Qualitative and imaging analysis of foreign substances in the sub-micrometer order and micro-regions is possible.

TOF-SIMS allows for simultaneous elemental analysis and molecular information analysis of organic and inorganic substances through mass spectra obtained by locally analyzing specific areas, making it effective for evaluating foreign substances and micro-regions. This document summarizes examples of analysis in sub-micron order micro-regions. Samples that were sputter-processed with FIB on layered structures were measured using TOF-SIMS. Evaluation of sub-micron order micro-regions has been achieved.

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[Analysis Case] Evaluation of Transdermal Absorption of Indomethacin in Three-Dimensional Cultured Human Skin

Visualization of the distribution of active ingredients applied to cultured skin using TOF-SIMS.

TOF-SIMS identifies components from the mass of molecular ions, eliminating the need for labels such as fluorescent substances, allowing for imaging without their influence. Additionally, cross-sectional imaging enables the evaluation of distribution in the depth direction. In this study, a gel formulation of indomethacin was applied to three-dimensional cultured human skin, visualizing the distribution of the permeated active ingredient. As a result, it was found that indomethacin is concentrated on the surface side of the stratum corneum. Furthermore, depth profile analysis observed a gradual penetration towards the cell layers.

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[Analysis Case] Transdermal Absorption Evaluation Using Three-Dimensional Cultured Human Skin

Distribution evaluation and quantitative analysis of the same sample are possible.

In recent years, the development of alternative methods to animal testing has progressed in the efficacy and safety testing of pharmaceuticals and cosmetics, with particular attention being paid to testing methods using three-dimensional cultured human skin. In this case study, a permeation test of indomethacin was conducted using a Franz cell, and TOF-SIMS and LC/MS/MS measurements were performed on the same skin sample. LC/MS/MS was used to quantify skin concentration and skin permeation, while TOF-SIMS was used to evaluate the component distribution within the skin. Measurement methods: TOF-SIMS, LC/MS, cryo-processing, cutting Product fields: Biotechnology, pharmaceuticals, cosmetics Analysis objectives: Composition distribution evaluation, safety testing For more details, please download the materials or contact us.

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Mass array method: A gene analysis method using mass spectrometry.

Genetic analysis is a method that reads the nucleotide sequences of DNA to investigate gene mutations and functions.

In this method, the differences in the mass of bases are analyzed using MALDI-TOF-MS to determine the DNA base sequence. This allows for the detection of SNPs (single nucleotide polymorphisms), INDELs (insertions/deletions), CNVs (copy number variations), and more. It is characterized by the ability to analyze a large number of samples and detect a wide range of genes at once. - Multiplex PCR and MALDI-TOF-MS enable simultaneous analysis of up to 40 mutation sites. - Mass spectrometry specialized for the detection of bases (A/T/G/C) is possible. - A variety of analytical tools are available that have been pre-designed to detect target genes based on specific purposes. - Custom designs for analytical tools are also possible.

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  • Contract Analysis
  • Contract measurement

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MST [Chitose Sales Office] OPEN!

We aim to further improve our services for customers in the Hokkaido area, based at the Chitose Sales Office.

We will open the Chitose Sales Office, the first in the Hokkaido area as MST. Based in the Chitose Sales Office, we aim to further improve our services for customers in the Hokkaido area. We will also achieve satisfactory quality and delivery times through close collaboration with our Tokyo headquarters (lab). Please look forward to it! Opening date: Thursday, April 11, 2024 Address: Room 160, Chitose Arcadia Plaza, 1-3-1 Kashiwadai Minami, Chitose City, Hokkaido *Please send samples to the headquarters located in Setagaya, Tokyo. Headquarters address: 1-18-6 Kitami, Setagaya, Tokyo Phone number: 090-4001-1578 (Contact: Yanagimachi)

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BD Bruker MALDI Biotyper smart

Rapid microbial identification mass spectrometer (industrial) equipped with technology from higher-end models.

The "BD Bruker MALDI Biotyper smart" is a mass spectrometry device for rapid microbial identification. It employs the same Flash Detector as high-end machines and features a short flight tube realized through patented technology PAN. 【Features】 ■ Measures 96 samples in about 15 minutes with a 200 Hz laser ■ Uses an oil-free pump for quiet, maintenance-free operation ■ Provides a library of approximately 3,000 species, including general bacteria and filamentous fungi, with the option to add custom libraries ■ Certified by AOAC International and ISO 16140-part 6 *For more details, please feel free to contact us.

  • Microbiology
  • Mass Spectrometer

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[Information] Rapid Identification of Microorganisms Using MALDI-TOF MS

Introduction to the principles, methods, specific examples of rapid microbial identification, as well as future challenges and applications in the food sector!

Today's food manufacturing is conducted in hygienically managed factories, where measures against foreign matter contamination and microbial contamination are important management issues. Packaging and containers utilize materials such as polymers, metals, and natural materials (like bamboo skin and leaves) that consider the characteristics of the food. Sterilization treatments, such as gamma irradiation, are performed as necessary to prevent microbial contamination. On the other hand, microorganisms adhering to food materials cannot be inspected visually and may proliferate after the product is filled. For more detailed information, please refer to the related catalog. [Contents (partial)] ■ Introduction ■ Overview and measurement principles of MALDI-TOF MS ■ Methods for identifying microorganisms using MALDI-TOF MS ■ Future challenges ■ Examples of applications in the food industry *For more details, please refer to the PDF document or feel free to contact us.

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  • Sterilizer

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[Analysis Case] Off-flavor Analysis from Food (SIFT-MS)

We will introduce a case where 2,4,6-trichloroanisole (TCA) was quantified using SIFT-MS.

【Sample Analysis】 Banana 1 bunch (5 pieces) 【Analysis Results】 A bunch of bananas and high-purity nitrogen gas were placed in a 10L Tedlar bag and left at room temperature for about 24 hours. After that, the TCA concentration inside the bag was measured for about 10 minutes using SIFT-MS. As a result, the average concentration of TCA inside the bag was 10 ppbv, allowing for quantification of trace amounts of TCA without complex pre-treatment such as concentration.

  • Contract measurement

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Introduction to the Technical Note of the Mass Spectrometry Device ASTON

We will introduce various technical documents using the mass spectrometry device ASTON.

We would like to introduce a technical note using the mass spectrometer ASTON. < List of Technical Notes > 1. ASTON Technical Note_vol.2_Measurement of Krypton in Air 2. ASTON Technical Note_vol.3_Measurement of Tungsten Etching 3. ASTON Technical Note_vol.4_Reproducibility *Technical notes will be added as needed.

  • Other inspection equipment and devices

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Precision mass spectrometry solutions for material release gases

Real-time precise mass analysis is possible.

By analyzing the behavior of gases that are released from materials when heated or generated through thermal decomposition, it is possible to understand the state of gas adsorption and chemical adsorption on the materials, as well as the thermal properties of the materials. Materials and products can emit gases when exposed to various conditions. These gases can, in some cases, affect the human body or cause defects in the quality and performance of products, potentially leading to issues even in trace amounts. Using the "infiTOF-UHV," it becomes possible to understand the behavior of desorbed gases in high-resolution mode. 【Features (infiTOF-UHV)】 ■ Multi-turn TOF analyzer ■ Real-time analysis with high resolution, resolution > 30,000 ■ Suitable for gas analysis, measurement range m/z 1 to 1,000 ■ Compact size for installation and measurement anywhere ■ Power supply operates at 100–230 VAC, 500W, ensuring energy efficiency without location constraints *For more details, please refer to the PDF document or feel free to contact us.

  • Analytical Equipment and Devices

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Application Data: Example of Nucleotide Measurement by TEA Removal

Using the desalting tube "Solnac Tube" for LC/MS! Reduces ionization suppression of nucleotides.

When analyzing highly polar nucleic acids and nucleotides using reversed-phase distribution chromatography, adding ionic species to the eluent can enhance retention by forming neutral ion pairs through ionic bonding. In the case of nucleic acid analysis, it is common to use triethylamine (TEA) as a basic mobile phase for ion pair formation; however, TEA is considered to cause ionization suppression when detecting positive ions due to its excessively high basicity. In this instance, adenylate (AMP) and other samples were used, and TEA in the eluent was removed using a solid-phase extraction tube for positive ion measurement. For details on conditions and analysis results, please download the catalog. 【LC Conditions (Partial)】 ■ Equipment: Waters UPLC H Class ■ Flow rate: 0.3 ml/min ■ Sample: Solutions of AMP, ADP, ATP at 50μM each ■ Injection volume: 10 μL *For more details, please refer to the PDF document or feel free to contact us.

  • Tubes and hoses

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Global market for genomics and proteomics reagents, research kits, and analytical instruments.

Global Market for Genomics and Proteomics Reagents, Research Kits, and Analytical Instruments: Sample Preparation, Electrophoresis, Biochips and Microarrays, ...

This research report (Global Genomics and Proteomics Reagents, Research Kits and Analytical Instruments Market) investigates and analyzes the current status and outlook for the global market of genomics and proteomics reagents, research kits, and analytical instruments over the next five years. It includes information on the overview of the global genomics and proteomics reagents, research kits, and analytical instruments market, trends of major companies (sales, selling prices, market share), market size by segment, market size by major regions, and distribution channel analysis. The market segments by type include sample preparation, electrophoresis, biochips/microarrays, chromatography, mass spectrometry, thermal cyclers, and next-generation sequencing, while the segments by application cover agriculture and livestock, drug discovery, forensics, proteogenomics research, disease identification, and diagnostic management. The regional segments include North America, the United States, Europe, Asia-Pacific, Japan, China, India, South Korea, Southeast Asia, South America, the Middle East, and...

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[Market Report] Global Market for Analytical Instruments

The global analytical instruments market is redefining accuracy and insights, predicting significant growth.

The global analytical instruments market reached a substantial size of 46.1 billion USD in 2022 and is poised to redefine accuracy and insights. With promising prospects for significant expansion, industry experts predict that this market will generate an impressive revenue of 83.9 billion USD by 2031. This surge forecast implies a remarkable compound annual growth rate (CAGR) of 6.89% during the forecast period from 2023 to 2031. Analytical instruments serve as the foundation for scientific discoveries, industrial innovations, and quality assurance across diverse fields such as pharmaceuticals, materials science, and environmental monitoring. These tools enable researchers, engineers, and professionals to unlock insights at the molecular level, enhancing the progress and accuracy of decision-making. You can check the application method by clicking the [PDF Download] button or apply directly through the related links.

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