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evaluation - メーカー・企業115社の製品一覧とランキング | イプロスものづくり

更新日: 集計期間:Jan 14, 2026~Feb 10, 2026
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evaluationのメーカー・企業ランキング

更新日: 集計期間:Jan 14, 2026~Feb 10, 2026
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  1. null/null
  2. アイテス Shiga//Electronic Components and Semiconductors
  3. ユーロフィンFQL Kanagawa//Service Industry
  4. 4 一般財団法人材料科学技術振興財団 MST Tokyo//Testing, Analysis and Measurement
  5. 5 大同分析リサーチ Aichi//Service Industry

evaluationの製品ランキング

更新日: 集計期間:Jan 14, 2026~Feb 10, 2026
※当サイトの各ページの閲覧回数を元に算出したランキングです。

  1. Evaluation of the rebound and vibration absorption properties of rubber materials アイテス
  2. Evaluation of Various Materials Using the No. 9 T-Plot Method (Basic Edition)
  3. Evaluation of pore structure of activated carbon fibers using the GCMC method.
  4. 4 Eurofins FQL Co., Ltd. | Business Information ユーロフィンFQL
  5. 5 Rapid response in the Kanto and metropolitan area! Temperature and humidity evaluation of 3D printed products using a constant temperature chamber. DENGYOアドバンス

evaluationの製品一覧

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LCD Panel Simulator - Evaluating Monitor Drive ICs with Images -

Evaluate the drive IC with images! LCD panel simulator

Judging the differences in image quality, which was difficult with conventional waveform evaluation, is a breeze with this product! ■□■Features■□■ ■A groundbreaking method that allows evaluation through images even without a panel ■Registration of multiple panel models is possible ■Simultaneous waveform display of up to 128 pins ■Images and waveform signals can be saved to a PC, enabling highly reproducible evaluations

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IEC 60601-1 Third Edition, JIST 0601-1:2012 Evaluation

Evaluation based on IEC60601-1 Third Edition and JIST0601-1:2012 (based on IEC60601-1 Third Edition) is possible.

The EN60601-1 Third Edition became mandatory on June 1, 2012. The JIST0601-1 Third Edition was published on June 1, 2012! Safety evaluations and testing can be conducted according to IEC60601-1:2005 Third Edition and JIST0601-1:2012 (based on IEC60601-1 Third Edition). NEMKO, as a National Certification Body (NCB) under the IECEE-CB scheme (an international mutual recognition scheme for test results), is also capable of compliance with IEC60601-1 Third Edition as a CB testing laboratory (CBTL). While the requirements for medical devices in various countries generally refer to IEC60601-1 Second Edition A1/A2, the transition to IEC60601-1 Third Edition is also progressing.

  • Contract Inspection
  • Contract measurement
  • evaluation

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Evaluation of the validity of cleaning standards based on engineering capability index.

[Application Note] A Method for Evaluating the Validity of Cleaning Standards Using Process Capability Indices

The evaluation of the cleaning process is a very important issue in manufacturing. In particular, to ensure product quality, it is necessary to confirm that the cleaning standards are appropriate. Here, we will introduce a method to evaluate the validity of cleaning standards using the process capability index.

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  • Analytical Equipment and Devices
  • evaluation

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Material evaluation of products for hydrogen-compatible valves [Testing in progress]

Material evaluation of products for hydrogen-compatible valves.

To achieve a sustainable society, the promotion of hydrogen energy is underway. Our company is advancing the verification of our solenoid valves for hydrogen compatibility to supply safe and reliable valve products for hydrogen use. As part of this effort, we conducted material tests to confirm how much the constituent materials of the valve products are affected by hydrogen. In the tests, we used material test specimens made of metals and resins to evaluate the impact on material strength in a hydrogen gas environment. The results showed that there is no impact on material strength in environments with hydrogen pressure below 1 MPa. Target materials: SUS304, SUS316, SUS316L, SUS430, K-M31, A6061-T6, A2017, SK-5, PEEK, PPS, PTFE, SUS304-WPB, EPDM, FKM.

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Exploration and evaluation of Olink neurobiomarkers.

Multiplex Approach to Multifactorial Diseases: A New Era in Neurodegenerative Biomarker Research

Olink's neurobiomarker analysis is a proteomics method that allows for the highly sensitive and specific simultaneous measurement of neurodegenerative disease-related proteins from limited samples such as plasma, serum, and cerebrospinal fluid, using Proximity Extension Assay (PEA) technology. Olink Target 48 Neurodegeneration enables the absolute quantification of markers important in neurodegenerative disease research, such as Aß40, Aß42, pTau217, NfL, and GFAP, making it useful for longitudinal studies and inter-facility comparisons. Furthermore, by using Olink Explore HT and Target 96 Neurology, a broad protein profiling analysis including neuroinflammation and synaptic function becomes possible, supporting the identification of novel biomarkers and elucidation of pathological mechanisms. **Effects of Implementation** - Promotion of understanding disease mechanisms through comprehensive analysis of neuroinflammation-related proteins. - Increased efficiency in biomarker discovery and contribution to drug development research. - Ability to measure numerous proteins from a small amount of sample, allowing for effective use of valuable samples.

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Evaluation of titanium materials using EBSD measurement

Titanium materials were considered difficult to prepare for EBSD, but we perform EBSD analysis on a wide variety of titanium materials using our unique preparation method.

Our company uses EBSD measurements to obtain crystallographic information that cannot be discerned through microstructural observation alone, providing valuable insights for material development. Additionally, while titanium materials have been considered difficult to prepare for EBSD analysis (polishing techniques) compared to conventional steel materials, our unique preparation method has made it possible to conduct EBSD analysis on a wide variety of titanium materials.

  • Contract Analysis
  • evaluation

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Evaluation of the orientation of anisotropic neodymium magnets

From the pole figure measurement results of X-ray diffraction of anisotropic magnets represented by neodymium magnets, it has become possible to calculate the crystallographic orientation degree in relation to the residual magnetic flux density.

From the results of pole figure measurements of X-ray diffraction before magnetization of anisotropic magnets represented by neodymium magnets, it has become possible to calculate the crystallographic orientation degree with respect to the residual magnetic flux density. Since anisotropic magnets have a higher residual magnetic flux density after magnetization when the crystallographic orientation degree of the magnetization easy axis is high, understanding the crystallographic orientation degree before magnetization is beneficial for the development of anisotropic magnets and quality control in production lines.

  • Contract Analysis
  • evaluation

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Evaluation of the orientation degree of magnets and the easy magnetization axis using X-ray diffraction.

One of the important properties of anisotropic magnets is the residual magnetic flux density! Calculation of crystallographic orientation and magnetization easy axis.

Our company evaluates the orientation degree of magnets and the easy magnetization axis using X-ray diffraction. Understanding the crystal orientation before magnetization is extremely important for the development of anisotropic magnets and quality control in production lines. Typically, values calculated from magnetic measurements after magnetization are derived from the results of pole figure measurements of X-ray diffraction before magnetization, allowing for the calculation of the crystallographic orientation corresponding to the residual magnetic flux density, and additionally, the angle of the easy magnetization axis can also be calculated. [Research Method] ■ Sample preparation ■ Magnetic measurement ■ Calculation of crystallographic orientation and easy magnetization axis *For more details, please refer to the related links or feel free to contact us.

  • Contract measurement
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The influence of annealing temperature on the magnetic coercivity of soft magnetic powder cores: Evaluation using EBSD.

Using EBSD, it becomes possible to analyze the causes of the degradation of magnetic properties in compacted soft magnetic metal powders!

The pressed powder magnetic core is a magnetic core manufactured by compressing soft magnetic powder with an insulating coating. Due to its high operating magnetic flux density and high operating frequency, its application in high-speed motors and automotive reactors is being advanced. Generally, magnetic properties are influenced by factors such as crystal grains, strain, inclusions, and precipitates. However, since the pressed powder magnetic core undergoes annealing after compression molding during manufacturing, an investigation was conducted on the relationship between the factors that change due to annealing and the coercivity. As a result, a tendency was observed where the KAM value decreased and coercivity declined with an increase in annealing temperature. [Investigation Method] (1) Soft magnetic powder: Fe-Si powder, average particle diameter D50 = 27.2 μm (2) Sample preparation method: Coating the powder with silicone resin ⇒ compression molding (3) Evaluation method: Annealing of samples (500, 700, 750°C) ⇒ coercivity measurement - DC BH analyzer EBSD analysis - Crystal orientation (IPF) - Plastic strain (KAM) - Crystal grain size measurement *For more details, please refer to the related links or feel free to contact us.

  • Analytical Equipment and Devices
  • evaluation

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Orientation evaluation of ferrite magnets using EBSD.

It is possible to evaluate the orientation of ferrite magnets using EBSD.

One of the important characteristics of anisotropic magnets is the residual magnetic flux density. The more aligned the direction of the easy magnetization axis is, that is, the higher the crystal orientation, the greater the residual magnetic flux density. Therefore, understanding the orientation of the easy magnetization axis is extremely important for the development of anisotropic magnets and the motors that use them. The orientation of ferrite magnets can be evaluated using EBSD.

  • Contract Analysis
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