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evaluation Product List and Ranking from 111 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.

evaluation 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. null/null
  2. 一般財団法人材料科学技術振興財団 MST Tokyo//Testing, Analysis and Measurement
  3. アイテス Shiga//Electronic Components and Semiconductors
  4. 4 ユーロフィンFQL Kanagawa//Service Industry
  5. 5 null/null

evaluation 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. Eurofins FQL Co., Ltd. | Business Information ユーロフィンFQL
  2. Evaluation of transmittance and yellowness (yellow degree) using a color difference meter. アイテス
  3. Lithium-ion battery contract evaluation (charging and discharging tests / safety tests / post-test analysis)
  4. 4 Evaluation of dislocation density using EBSD/XRD 大同分析リサーチ
  5. 4 Free Seminar | Reliability Evaluation, Analysis, Quality Technology, Quality Assurance ユーロフィンFQL

evaluation Product List

256~270 item / All 338 items

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Evaluation of the printed layer on the metal surface

Conduct cross-sectional structural analysis and depth-direction analysis using TOF-SIMS! It is possible to confirm the distribution of components from the surface coating layer to the metal and the coloring components.

As an evaluation of the quality of the printed layer on the metal surface, the bonding state with the metal and the dispersion state of the coloring components can be observed through cross-sectional processing. Additionally, by conducting depth-direction analysis using TOF-SIMS with GCIB from the surface, the distribution of components from the surface coating layer to the metal and the coloring components can be confirmed. Please feel free to contact us when needed. 【GCIB Features】 ■ The energy per ion beam atom is low, making it suitable for depth-direction analysis of organic films and others. ■ High mass number fragments that reflect the molecular structure information of the film can be detected. *For more details, please download the PDF or feel free to contact us.

  • Other analysis and evaluation services

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Evaluation of impurity diffusion from the high concentration layer to the lower layer membrane.

Introducing backside SIMS analysis conducted from the substrate side!

In SIMS analysis, when evaluating the diffusion of impurities from a high-concentration layer to a lower layer film, the effects of surface roughness and sputter etching may influence the crater edge effect and knock-on effects from the high-concentration layer. A method of evaluation that is not affected by these influences is Backside SIMS, which conducts SIMS analysis from the substrate side. In the attached PDF document, we introduce the evaluation of the diffusion distribution of F from a SiO2 film (FSG film) to a lower SiO2 film using Backside SIMS, so please take a look. 【Principle of Backside SIMS】 - By polishing the backside of the Si substrate to thin it, we can approach from the backside. - It is possible to control the remaining thickness of the Si substrate to create a thin film, to thin specific areas of patterned samples, or to selectively stop the etching of Si layers such as SiO2. In cases where there are layers that can stop etching, it is also possible to completely remove the Si substrate portion by wet etching. *For more details, please download the PDF or feel free to contact us.

  • Other analysis and evaluation services

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Particle evaluation of DDS formulations using SAXS for polymer micelles.

It is possible to calculate the shape (such as spherical or elliptical) and size distribution of nanoparticles!

We would like to introduce our "Particle Evaluation of Polymer Micelles in DDS Formulations using SAXS." DDS (Drug Delivery System) is a drug transport system that selectively acts on the necessary areas within the body, and it is highly anticipated for its ability to reduce side effects. In DDS, polymer micelles are often used, and our company evaluates the particle shape and size distribution of these polymer micelles using SAXS (Small-Angle X-ray Scattering). 【Features】 ■ SAXS: An analytical method that uses X-ray scattering to analyze the structure of materials ■ Sample types: Applicable to both solids and liquids ■ Non-destructive analysis ■ Capable of calculating the shape (spherical, elliptical, etc.) and size distribution of nanoparticles *For more details, please download the PDF or feel free to contact us.

  • Other analysis and evaluation services

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Defect evaluation using synchrotron radiation topography

Non-destructive defect evaluation of large-diameter wafers from 4 inches to 6 inches with high resolution is possible!

We would like to introduce our "Defect Evaluation using Synchrotron Topography." In compound semiconductors such as SiC and GaN, there are many crystal defects that significantly affect device characteristics. With this evaluation, it is possible to non-destructively assess defects across the entire surface of large-diameter wafers ranging from 4 inches to 6 inches with high resolution. 【Features】 ■ Visualization of various crystal defects with a resolution of a few micrometers ■ Detection of threading edge dislocations (TED) that cannot be detected by laboratory equipment ■ Evaluation of the types and distribution of defects *For more details, please download the PDF or feel free to contact us.

  • Other analysis and evaluation services

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Hydrogen annealing evaluation by temperature-programmed desorption gas analysis (TDS)

You can check the gas components released from the Ta board and the desorption temperature of hydrogen!

As part of the widely used "hydrogen annealing evaluation" in semiconductor manufacturing, we present a case measured using TDS (Thermal Desorption Spectroscopy). By performing mass spectrometry while heating in a vacuum, we were able to confirm the desorbed gas components from the Ta plate and the desorption temperature of hydrogen. Additionally, by mass analyzing the desorbed gases, we can identify the types of gases and understand the desorption behavior of specific components. [Case Overview] - Heating desorption gas profile from the sample - Identification of desorbed gas species and comparison of desorbed gas amounts through mass spectrometry (m/z = 1 to 199) *For more details, please download the PDF or feel free to contact us.

  • Contract Analysis

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[DTEmpower] Strength Evaluation of Spaceship Wall Structure

The data used in this case consists of 500 sets of low fidelity and 100 sets of high fidelity.

Using the general-purpose data analysis and modeling software DTEmpower, we will conduct a data-driven strength evaluation of the reusable spacecraft wall structure. Reusable spacecraft are a crucial tool for enabling transportation between space and the ground, and the evaluation of the load-bearing capacity of wall structures, as typical load-bearing components, is significantly related to the overall safety performance of the spacecraft. However, traditional finite element methods often require over 100 minutes of computation time for a single buckling analysis of an enhanced cylindrical exterior, leading to high costs. *For more detailed information, please refer to the related links. For further inquiries, feel free to download the PDF or contact us.*

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  • Other analyses

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Safety assessment for humans

Final confirmation of the safety of products and raw materials. We conduct various safety assessments for humans.

■Recommended for those with the following development challenges: Want to label products such as cosmetics as "Patch Tested" Want to conduct patch tests for sensitive skin Want to proceed while consulting on what safety data should be obtained ■Features - Various safety evaluations for humans can be contracted - Regular testing conducted ■Examples of tests Patch test, sensitive skin patch test, cumulative skin irritation test, RIPT (cumulative irritation and sensitization), phototoxicity and sensitization tests, comedogenicity, stinging *Please check the testing schedule on our website. https://bit.ly/4dTgnIp

  • Contract Analysis

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Battery evaluation business

BEANSYOU Battery Evaluation ANSWERS YOU. I will answer your battery evaluation.

In recent years, as the performance of batteries evolves rapidly, measurements related to electrical performance, as well as environmental and safety assessments, have become essential. This evaluation will be conducted through the neutral perspective of a third party, assessing the overall performance and providing a report.

  • Other analyses
  • Lithium-ion battery
  • Charger

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Regarding the safety evaluation of QSES: "Flow of QSES Safety Investigation"

It is ideal for investigations based on S2 and S8 regarding the safety of the device.

Regarding the safety evaluation of QSES, the "QSES Safety Investigation Process" supports the submission of safety investigation reports when delivering equipment to semiconductor manufacturing plants. Safety investigations will be conducted based on S2 and S8. The investigation process after placing an order will be divided into phases from pre-design safety investigations to the creation of manuals/warning labels (Phases 0 to 4). In the final Phase 5, we will follow up on inquiries related to the report and the equipment in question. 【Features】 ■ Conduct safety investigations based on S2 and S8 regarding equipment safety ■ Safety evaluation services for manufacturing equipment (products) ■ The investigation process is divided into four phases ■ Total support for consultations on safety standards to be obtained, audits, report preparation, and application tasks ■ Consulting at various levels, including machinery, electrical, chemical, and electromagnetic compatibility *For more details, please download the catalog.

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Safety assessment of QSES: "SEMI Standards"

The safety guidelines regarding semiconductor manufacturing equipment design cover a wide range of areas.

Regarding the safety evaluation of QSES, the "SEMI Standards" were first released in 1978 as safety guidelines for the design of semiconductor manufacturing equipment, and they have been revised multiple times to the present day. The scope of the SEMI Standards covers a wide range of areas, including materials, hardware and software, equipment, gases, process chemicals, and environmental health & safety (EHS), primarily detailing each "specification, guideline, testing method, terminology, and implementation method." Among these, the guidelines required when shipping semiconductor manufacturing equipment are S2 and S8, while for liquid crystal manufacturing equipment, they are S26 and S8. **Features** - Safety guidelines for the design of semiconductor and liquid crystal manufacturing equipment - The current latest versions are S2 and S8, both from 2018 - The scope includes materials, hardware and software, equipment, gases, process chemicals, and environmental health & safety (EHS) - Specifications, guidelines, testing methods, terminology, and implementation methods are detailed - General guidelines required when shipping semiconductor and liquid crystal manufacturing equipment - Safety guidelines for warning labels and manuals *For more details, please download the catalog.*

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