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Analytical Equipment Product List and Ranking from 266 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Oct 22, 2025~Nov 18, 2025
This ranking is based on the number of page views on our site.

Analytical Equipment Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Oct 22, 2025~Nov 18, 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. ライフィクスアナリティカル Osaka//Pharmaceuticals and Biotechnology
  3. null/null
  4. 4 ビーエルテック Tokyo//Testing, Analysis and Measurement
  5. 5 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

Analytical Equipment Product ranking

Last Updated: Aggregation Period:Oct 22, 2025~Nov 18, 2025
This ranking is based on the number of page views on our site.

  1. Nanoparticle analysis device "TaylorSizer" ライフィクスアナリティカル
  2. 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.
  3. Alcohol analysis device for sake Alcolyzer3001 SAKE
  4. 4 Sake FT-IR component analysis device "OenoFoss2"
  5. 5 Trace Sulfur Analysis Device (Old Type) 日東精工アナリテック

Analytical Equipment Product List

766~780 item / All 1224 items

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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] Image Analysis of Micro Beer

It is possible to evaluate the distribution of micro-regions.

With the miniaturization of circuits, the design and development of micro vias for interlayer connections require an understanding of the quality of filling. TOF-SIMS is an effective method for evaluating the results, as it can simultaneously perform elemental analysis and analyze molecular information of organic and inorganic substances, as well as enable image analysis. This document presents a case study analyzing a sample with Cu filled in vias of approximately 0.5μm in diameter on a Si substrate. The analysis of positive ion results confirmed the distribution of Cu and Si. Measurement method: TOF-SIMS Product fields: LSI, memory, electronic components Analysis objectives: Composition distribution evaluation, failure analysis, defect analysis For more details, please download the document or contact us.

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[Analysis Case] Thermal Desorption Gas Analysis of Metal (Sn)

TDS analysis of low melting point metals

Sn is used as the main raw material for solder, which is also used in semiconductor manufacturing. The gases in the solder can cause void formation, so it is important to control the amount of encapsulated gas in the solder and its main raw material, Sn. The results of investigating the gases released by heating Sn to a temperature above its melting point using TDS analysis are shown below. By heating the sample above its melting point, it is possible to evaluate the surface-adsorbed components and the components of the encapsulated gas in the sample.

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[Analysis Case] Evaluation of "Water" in Quartz and Glass Using SIMS

Depth-direction analysis of hydrogen using 'heavy water (D2O) treatment'

We will introduce a case where the permeability of water (H2O) in glass materials was evaluated by measuring the distribution of deuterium (D). When hydrogen (H) is already present, it is difficult to distinguish whether the hydrogen is due to the influence of water. Therefore, treatment with heavy water (D2O) was performed, and the distribution of the stable isotope deuterium was measured in depth using SIMS. By examining the depth distribution of deuterium, it is possible to estimate how deep the water has penetrated.

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[Analysis Case] Degassing Evaluation of Plating Samples

Thermal Desorption Gas Analysis of Ni/Au Plating (TDS)

If the plating film contains gas, it may cause defects such as peeling, blistering, and bubbles within the film. To investigate the gas contained in the plating film, TDS, which can measure the gas released by heating the sample in a high vacuum, is effective. The results of TDS analysis on a sample with Ni/Au plating on SUS material are presented. The release of H2, HCN, H2S, and HCl from the plating film was confirmed. Additionally, quantitative values were calculated.

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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] De-gassing Analysis of Hydrogen Terminal Wafers

The hydrogen in the outermost single atomic layer can be evaluated using TDS.

TDS is a method that heats the sample, ionizes the released gases, and performs mass analysis. It can analyze the mass-to-charge ratio (m/z) from 2 to 199 in high vacuum (1E-7 Pa). In this case, we will introduce an example of TDS analysis conducted on a Si chip treated with hydrogen termination. The TDS was able to capture the desorption of hydrogen from the hydrogen-terminated surface.

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[Analysis Case] Elemental Analysis of Wire Bonding Interface

By using a combination of processing, elemental analysis of the interface is possible.

AES analysis is a method for obtaining compositional information and elemental distribution at the very surface (to a depth of a few nanometers). By combining it with cross-sectional processing, similar information can also be obtained within layered structures and at structural interfaces. This allows for the evaluation of alloy layers, elemental diffusion, and segregation, making it effective for failure analysis and defect investigation of devices. Below, we present a case where a cross-section was prepared using IP processing to evaluate the state near the bonding interface of wire bonding, followed by assessment through AES analysis.

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[Analysis Case] Evaluation of Material Structure of Organic EL (OLED)

It is possible to identify components for each layer, pixel by pixel.

To improve the reliability of organic EL, which is expected to expand in demand in the future, detailed structural analysis, state analysis, and identification of degradation causes will become increasingly important. We will introduce examples of evaluating layer structures and materials using TOF-SIMS and LC/MS. With TOF-SIMS, we were able to evaluate the layer structure and the component information of each layer. We conducted analyses of the components revealed by TOF-SIMS using LC/MS and a fluorescence detector, allowing us to assess the emission wavelength and understand the structure of the components. Thus, the combination of TOF-SIMS and LC/MS enables detailed evaluations.

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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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[Analysis Case] Evaluation of the Thermal Treatment Temperature Dependence of Organic Films by TDS

You can confirm the changes in degassing due to differences in the baking temperature of the sample using TDS.

TDS can evaluate the temperature dependence of the desorption of inorganic and organic gases that are released with increasing temperature. Therefore, it is effective for assessing the degassing of samples based on the baking temperature. The results of TDS analysis after baking the resist film at 50°C and 200°C are shown. It was confirmed that the degassing peaks detected up to 200°C after "baking at 50°C" were not detected after "baking at 200°C."

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[Analysis Case] Secondary Battery

Evaluation of the components distributed on the surface of a single particle of powder is possible.

We will introduce a case where a sheet coated with graphite negative electrode particles used in lithium-ion secondary batteries was analyzed using TOF-SIMS. It was confirmed that graphite and PVDF are distributed on the surface of a single powder particle. Time-of-flight secondary ion mass spectrometry (TOF-SIMS) is a method suitable for qualitative analysis and imaging of organic and inorganic substances on surfaces from the mass spectrum of secondary ions. It is effective for evaluating the distribution of minute foreign substances and stains due to its high resolution. Measurement method: TOF-SIMS Product field: Secondary batteries Analysis purpose: Composition distribution evaluation For more details, please download the materials or contact us.

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[Analysis Case] LC/MS/MS Analysis of Catechin Metabolites in Urine

Qualitative analysis of catechin metabolites in urine, as well as investigation of temporal changes and individual differences.

By using high-sensitivity LC-MS (Q-TOF type), qualitative analysis of low-concentration components such as metabolites in biological samples is possible. It allows for the search for components that have undergone metabolism such as addition or conjugation in the body, as well as inter-sample comparisons aimed at investigating temporal changes and individual differences. After consuming a high-concentration catechin beverage and collecting urine, both unchanged catechin and the metabolite catechin-glucuronide conjugate were confirmed. The amounts of catechin and metabolites in the urine of eight individuals were plotted for excretion over 0.5 to 8 hours post-consumption, and comparisons were made.

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[Analysis Case] De-gassing Evaluation During Temperature Holding by TDS

You can investigate the changes in degassing intensity while maintaining the temperature.

TDS is a method for real-time detection of desorbed gases while heating the sample in high vacuum or maintaining a constant temperature. An example is shown where a SiN film on a Si substrate was held at 350°C to investigate the amount of H2 desorption. In simple heating, a desorption peak was observed around 500°C, but during the temperature hold at 350°C, the detection intensity of H2 decreased, and a desorption peak was observed upon re-heating.

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Evaluation methods for organic compounds in clean rooms

GC/MS: Gas Chromatography-Mass Spectrometry

In clean rooms where the manufacturing of semiconductors and liquid crystals takes place, it is important to monitor not only particles but also molecular-level chemical contamination (molecular contamination). Floating molecular contaminants include acidic and basic gases, cohesive organic substances, dopants, and metals, and the analysis methods vary depending on the components. Here, we will introduce details about cohesive organic substances and the representative collection methods, "adsorbent collection" and "wafer exposure collection."

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