We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Spectroscopic Analysis Equipment.
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Spectroscopic Analysis Equipment Product List and Ranking from 41 Manufacturers, Suppliers and Companies

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

Spectroscopic Analysis Equipment Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Dec 03, 2025~Dec 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. PerkinElmer Japan Kanagawa//Testing, Analysis and Measurement
  3. アナリティクイエナジャパン Kanagawa//Testing, Analysis and Measurement
  4. アジレント・テクノロジー株式会社 Tokyo//Testing, Analysis and Measurement
  5. 5 ブルカージャパン オプティクス事業部 Kanagawa//Testing, Analysis and Measurement

Spectroscopic Analysis Equipment Product ranking

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

  1. iCAP PRO Series ICP Emission 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.
  2. ARL iSpark Plus Solid Emission Spectroscopy Analyzer (OES) 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. Inductively Coupled Plasma Optical Emission Spectrometer (ICP-OES) アナリティクイエナジャパン
  4. 4 『Frontier FT IR/NIR/MIR/FIR』 PerkinElmer Japan
  5. 5 Agilent 5800 ICP-OES アジレント・テクノロジー株式会社

Spectroscopic Analysis Equipment Product List

16~30 item / All 95 items

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Foreign substance analysis and component analysis: Comparison of micro-Raman and FTIR.

Spectroscopic analysis is suitable for component analysis and qualitative analysis of foreign substances.

We will introduce the comparison between Raman spectroscopy analysis by Aites Co., Ltd. and FTIR. Spectroscopic analysis is suitable for component analysis of foreign substances and qualitative analysis. Both Raman and FT-IR can obtain spectra based on the structure of the analysis target. However, since each has its strengths and weaknesses, it is necessary to choose between the two depending on the analysis target. 【Features】 ■ Measurement in the order of several micrometers, which is difficult to analyze with IR, is possible. ■ No sampling is required. *For more details, please refer to the PDF materials or feel free to contact us.

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  • Testing Equipment and Devices

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[O-PTIR] PTIR detection method submicron infrared spectroscopy

Infrared spectroscopy is a method for obtaining information about molecular structure by measuring the infrared absorption due to molecular vibrations.

O-PTIR has the following features: - It allows for spectral and image measurements in small areas due to its spatial resolution (maximum spatial resolution: less than 1μm). - No need for thin sectioning (effective for samples that are difficult to thin section, such as foreign materials). - Measurements can generally be performed non-destructively. - Similar analyses can be performed using the FT-IR library.

  • Contract measurement
  • Contract Analysis

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[Analysis Case] Evaluation of Curing Degree of UV-Cured Resin by FT-IR

By capturing changes in functional groups, it is possible to evaluate the curing degree of UV-curable resins.

Resins that excel in chemical resistance and electrical insulation are used as insulators, coatings, and adhesives for various electronic components. FT-IR (Fourier Transform Infrared Spectroscopy) can investigate the causes of defects such as the degree of curing of resins, making it effective for product development. As an example, we will introduce a case where the degree of curing of UV-curable resins was evaluated. It is effective for examining the UV exposure time in adhesives and assessing the curing state when delamination occurs in products.

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  • Contract Analysis
  • Contract measurement

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Technical Data: Polymer Manufacturing Process Monitoring Using FT-NIR

Including monitoring examples and equipment configurations! Free materials are currently available!

This document is a technical material that discusses process monitoring in polymer manufacturing using "FT-NIR." It introduces real-time monitoring of density (red) and MFI (blue), as well as the equipment configuration. [Contents] ■ Examples of monitoring using FT-NIR ■ Real-time monitoring of density (red) and MFI (blue) ■ Equipment configuration ■ Applications of polymers *For more details, please refer to the PDF document or feel free to contact us.

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What are the reasons for using FT-NIR?

Explaining the advantages of FT-NIR technology! Free materials available!

This document presents the FT-NIR technology, which has many advantages compared to traditional wet chemical analysis and chromatography. It introduces the superiority of NIR spectroscopy, examples of monitoring, and various applications. [Contents] - Superiority of NIR spectroscopy - Applications - Raw material verification tests - Quantitative analysis of multiple items - Inline process control - Summary: Low-cost, rapid, and simple analysis, among others *For more details, please refer to the PDF document or feel free to contact us.

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Technical Data: Case Studies on Microplastic Analysis

Case studies using micro FT-IR and micro Raman analysis are published! Free materials are available!

Interest in microplastic pollution has been increasing in recent years, with current research focusing on ubiquitous causes and future prospects. Microplastic particles (Micro-Plastics Particles; MPP) refer to tiny plastic particles with a diameter of less than 5mm that have dispersed into the environment, particularly in marine settings. By analyzing MPP in detail, efforts are being made to draw conclusions about both the origins and formation of MPP, as well as to assess the extent of pollution. This document introduces the analysis of microplastics using microscopic FT-IR and microscopic Raman, along with case studies and measurement examples. [Contents] ■ Analysis of microplastics using FT-IR spectroscopy ■ Case study: Automatic analysis of filter-fractionated MPP ■ Case study: False detection of MPP ■ Measurement example: Identification of viscose rayon and cellulose ■ Analysis of MPP using Raman spectroscopy ■ Summary *For more details, please refer to the PDF document or feel free to contact us.

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Analysis of micro samples using the integrated FT-IR microscope LUMOS.

[Free Gift] Excellent operability that anyone can use. Technical documentation for FT-IR microscopes.

Identifying foreign substances and contaminants is very important in pinpointing the causes of defects in various industrial products. Additionally, in the field of chemical investigation, the analysis results of fragments such as fibers and paints left at the scene of accidents or incidents can serve as crucial evidence. Our new micro FT-IR "LUMOS" combines excellent operability that anyone can use with high spectral performance that satisfies users, providing accurate analysis results in a short time. This document provides detailed information on the main specifications of "LUMOS" as well as application examples. [Contents] ■ Introduction ■ Equipment ■ Application Examples - Identification of contaminants on SMD chokes - Transmission mapping measurement of varnish coatings - ATR measurement of paint fragments - Infrared spectral mapping of biological samples ■ Conclusion *For more details, please refer to the PDF document or feel free to contact us.

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Technical Data: Surface Analysis of Gear Wheels Using FTIR

An example of analysis using ALPHA II to check the surface cleanliness is presented.

The Bruker FTIR system "ALPHA II" features a very compact and robust design, making it portable and allowing you to choose the measurement location freely. By attaching the upward reflection measurement module to this product, it is possible to quickly detect and identify contaminants adhered to the surfaces of various metal workpieces. It is also very easy to handle, making it an ideal analytical tool suitable for routine quality control analysis. [Contents] ■ Surface analysis of gear wheels using FTIR ■ Surface analysis ■ Summary *For more details, please refer to the PDF document or feel free to contact us.

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Technical Data: Evaluation of Powdered Beverages Using Macro ATR Imaging

Introducing new applications for macro ATR imaging devices!

This document introduces the application of a new accessory for FT-IR microscopy, the "Macro ATR Imaging Device," in QA/QC for beverage manufacturing. FT-IR imaging measurements can qualitatively identify the main components contained in products and visually capture the distribution of each component. Here, we present the imaging measurement method for powdered beverages and the analysis results of composition distribution. Please take a look. [Contents] ■ Utilization of FT-IR microscopy for analyzing instant beverages ■ Introduction of the Macro ATR Imaging Device ■ Composition analysis of instant cocoa *For more details, please refer to the PDF document or feel free to contact us.

  • Food Testing/Analysis/Measuring Equipment

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[Technical Data] Online Monitoring of FT-NIR Fermentation Process

Monitoring of fermentation/cultivation processes using FT-NIR (near-infrared) spectroscopy is possible.

In the pharmaceutical industry, continuous control of fermentation processes has become a crucial element of the manufacturing process due to strict regulatory requirements. Bruker has been working for many years on the measurement of challenging fermentation processes. With the transmission-reflection probe developed by Bruker, it is possible to measure slurries and emulsions, enabling the monitoring of fermentation/culture processes using FT-NIR (near-infrared) spectroscopy. We can provide various flanges specified by our customers through welding. High-temperature types are also available.

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Technical Data: Analysis of Various Polymer Materials by Infrared Spectroscopy

Qualitative analysis of a wide range of polymer materials and their additives is, of course, also applicable to quantitative analysis!

Fourier Transform Infrared Spectroscopy (FT-IR) is a very rapid and highly reliable analytical method. It allows for the verification of product quality in less than one minute, and it is also possible to determine whether the product is within specification limits. This document includes topics such as "Qualitative Analysis of Polymers Using the FT-IR Spectrometer ALPHA II" and "Analysis of Defective Products Using the FT-IR Microscope LUMOS II." We invite you to read it. 【Contents (partial)】 ■ Introduction ■ Qualitative Analysis of Polymers Using the FT-IR Spectrometer ALPHA II ■ Application Example: Identification of Polymers ■ Application Example: Identification and Quantification of Fillers ■ Analysis of Defective Products Using the FT-IR Microscope LUMOS II *For more details, please refer to the PDF document or feel free to contact us.

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Technical Data: Analysis of Biological Tissues Using Infrared Laser/QCL Imaging

By utilizing the high energy density, it is possible to obtain high-quality spectral data in a very short time!

Infrared laser imaging is a suitable tool in the fields of life sciences and medicine, particularly for the analysis of tissues. With HYPERION II, we provide an unrestricted comprehensive solution that advances imaging analysis of biological tissues to a higher level by combining FT-IR functionality. This document includes topics such as "Applications of Infrared Laser Imaging" and "Innovations in Laser Imaging." We encourage you to read it. [Contents] ■ Infrared Laser Imaging: A New Analytical Tool ■ Applications of Infrared Laser Imaging ■ FT-IR vs. Infrared Laser Imaging: Biological Tissue Samples ■ Innovations in Laser Imaging: Spatial Coherence Reduction Mechanism ■ Summary: Achieving Ultra-Fast High-Quality Chemical Imaging *For more details, please refer to the PDF document or feel free to contact us.

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Investigation of discoloration on material surfaces (nickel plating) using XPS.

X-ray photoelectron spectroscopy (XPS) is effective for analyzing surface contamination and discoloration, as well as evaluating surface treatments. In addition to identifying elements, it also allows for the analysis of the bonding states of those elements.

X-ray photoelectron spectroscopy (XPS) can obtain elemental information from the very surface of a sample (a few nm), making it effective for evaluating surface treatments and analyzing surface contamination and discoloration. It is capable not only of identifying elements but also of analyzing the bonding states of those elements. In this case, we will introduce the "investigation of discoloration on a material surface (nickel plating) using XPS." We explored the reasons for discoloration, which is a defect in nickel plating, through surface analysis with XPS. Please take a moment to read the PDF materials. Additionally, our company conducts various surface analyses, including GD-OES and Auger spectroscopy, in addition to XPS. We would be happy to assist you, so please feel free to reach out. Seiko Future Creation Official Website https://www.seiko-sfc.co.jp/ *Other materials are also available. If you request them through the inquiry button, we will send them to you.

  • Contract Analysis
  • Surface treatment contract service
  • Plating Equipment

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ICP emission spectrometry device "Agilent 5800 ICP-OES"

Dedicated CCD detector for ICP-OES! Supports data analysis with statistical and testing functions for measurement values.

The "Agilent 5800 ICP-OES" is an ICP optical emission spectrometer that achieves high matrix tolerance through its vertical torch and unique high-frequency technology. Equipped with a CCD detector dedicated to ICP-OES, it reduces total running costs through rapid measurements. It automatically calculates the detection limit from the calibration curve. Additionally, it continuously monitors the nebulizer gas pressure and notifies when maintenance is required. 【Features】 ■ High matrix tolerance achieved through vertical torch and unique high-frequency technology ■ High-speed scanning across all wavelengths (Intelli Quant 2.0) - Measurements for all samples - Displays spectral interference information from other elements for each sample ■ Automatic calculation of detection limits from the calibration curve (QC function) *For more details, please refer to the PDF document or feel free to contact us.

  • Analytical Equipment and Devices

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