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Last Updated: Aggregation Period:Oct 15, 2025~Nov 11, 2025
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analysis Product List

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[Handbook Presentation] Analysis and Evaluation

In "Evaluation and Analysis of Li-ion Batteries," a series of evaluations including prototyping, testing, battery disassembly, and non-atmospheric exposure analysis is possible.

Our company supports trouble resolution with advanced technology and cutting-edge equipment cultivated in the electronics field. This document includes "areas of support" such as "MSEC's analysis and evaluation support areas," "analysis case studies" like "comprehensive analysis of Li-ion batteries," and "introduction of analytical equipment." Please feel free to download and take a look. 【Contents (partial)】 <Areas of Support> ■ MSEC's analysis and evaluation support areas ■ Comprehensive analysis system for power devices and modules <Analysis Case Studies> ■ Front-end analysis ■ Power device package defect analysis *For more details, please refer to the PDF document or feel free to contact us.

  • Analytical Equipment and Devices

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[Analysis Case] Evaluation of Si Anode in Lithium-Ion Secondary Batteries

It is possible to evaluate the structure of the Si anode after charging through sample cooling.

Si is one of the candidates for high-capacity negative electrode active materials, but it is said to suffer from severe cycle degradation due to very large volume changes during charge and discharge. In this study, to confirm the state of the Si negative electrode after charging, we disassembled it under a controlled atmosphere environment and performed cooling FIB processing, followed by observing the cross-sectional shape using SEM. When observing the cross-section at room temperature, significant damage such as film contraction, roughness of the observation surface, and pore formation was observed. In contrast, by conducting the observation while cooling, we were able to suppress the alteration of the Si negative electrode and evaluate the original shape of the sample.

  • 冷却FIB加工_室温SEM観察.png
  • 充電曲線およびSi負極の形態観察.png
  • 充電後の形状観察結果_Si膜の変質_Cu箔の露出.png
  • 電池図.png
  • Contract Analysis
  • Contract measurement

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Affordable implementation! Shape analysis system ShapeAnalyzer

Complex shape analysis completed in just 2 simple steps in a matter of seconds! Easy, speedy, and low-cost! Moreover, it's accurate.

Analyze specific shapes from images such as scanning electron microscope (SEM) images and display histograms and statistical values. 1. Drag the image into the software, and 2. Click once on the keyboard. With just two simple steps, a tedious task that researchers used to take hours to complete can be done in just a few seconds. ■ Almost fully automated analysis! There is no variability in analysis due to individual differences. ■ Low-cost implementation possible! Since it is not dependent on specific equipment, it can be implemented immediately as long as there is an environment capable of capturing high-resolution, clear images. ■ Customization according to the analysis target is possible! We can flexibly accommodate customization. Not only the analysis methods but also signals and report outputs can be widely utilized in research and production lines. If the images are clear, analysis can be performed that is almost close to human perception. Additionally, manual fine-tuning can be done after analysis, ensuring satisfactory results. By quantifying shapes, the reliability of the data is dramatically improved.

  • Company:クレブ
  • Price:1 million yen-5 million yen
  • Electron microscope
  • Image analysis software

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Air quality measurement device Air Monitor Pure with German design

Visualizing the invisible air environment. Sophisticated German design.

Invisible air environment. Visualizing the values of CO2 (carbon dioxide), PM2.5, VOCs (volatile organic compounds), temperature, humidity, and other factors in living environments such as homes, offices, tutoring centers, and accommodations, and adjusting them for a comfortable environment is a very important aspect of daily life. The Laserliner air monitor series is designed to visualize the values of air quality, enabling appropriate actions such as ventilation, the use of air purifiers, and adjustments to heating and cooling.

  • AirMonitor_pure-image.jpg
  • Thermo-hygrometer

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RoHS・ELV

We conduct high-precision preprocessing and measurements! We will undertake rapid analysis.

The RoHS Directive is a regulation enacted by the European Union (EU) on February 13, 2003, and came into effect on July 1, 2006, which restricts the use of certain hazardous substances in electrical and electronic products. The use of six substances contained in electrical and electronic products is restricted: lead, mercury, cadmium, hexavalent chromium, PBB (polybrominated biphenyl), and PBDE (polybrominated diphenyl ether). Additionally, the amended RoHS has added four types of phthalate esters (DEHP, DBP, BBP, DIBP), bringing the total to ten regulated substances. Our company offers precise pretreatment and measurement, providing rapid analysis. [Types of samples for measurement and chemical pretreatment] ■ Polymers: Microwave acid decomposition, acid decomposition, dry ashing, solvent extraction ■ Metals: Microwave acid decomposition, acid decomposition ■ Electronic components: Microwave acid decomposition, acid decomposition, solvent extraction *For more details, please refer to the related links or feel free to contact us.

  • Contract Analysis

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Comprehensive characterization for the development and manufacturing of safe and highly effective vaccines.

Efficient evaluation of potency, safety, and stability using light scattering detectors and LC-MS.

To quickly deliver safe and highly effective vaccines to the market, thorough characterization analysis is necessary. By using light scattering detectors, a wealth of information can be obtained regarding the vaccine's size, aggregation, stability, interactions, composition, and conformation. By combining MALS (Multi-Angle Light Scattering) and DLS (Dynamic Light Scattering), information about the conformation (shape and structure) of molecules can be derived from the ratio of Rh (hydrodynamic radius) to Rg (radius of gyration). Furthermore, by combining separation techniques such as SEC (Size Exclusion Chromatography) and FFF (Field Flow Fractionation), high-resolution size and molecular weight distribution measurements can be achieved. In LC-MS, peptide mapping allows for the confirmation of primary sequences and monitoring of post-translational modifications. By clicking [Submit], you are deemed to have agreed that Waters will use and process the information provided on this site in accordance with Waters' Terms of Use and Privacy Notice. Terms of Use and Privacy Notice www.waters.com/legalandprivacy

  • Other separation and analysis equipment
  • High Performance Liquid Chromatograph
  • Chromatography Consumables

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Brookfield Texture Analyzer CTX

The higher model of CT3 has been newly released! High performance, high functionality, and a wide range of options. It is a texture analyzer suitable for product development and quality control.

The new Brookfield-made Texture Analyzer CTX is a high-performance, high-functionality texture analyzer. - It quantifies the texture of food. Additionally, it can be utilized for various applications such as cosmetics, pharmaceuticals, and various materials. - Equipped with a touch panel display, it allows for the measurement graphs to be viewed on the display even in standalone mode. - It features a data saving function to a USB memory. By connecting a USB memory, measurement data (in CSV format) can be saved and read. - It offers eight types of interchangeable load cells (with maximum load capacities ranging from 100g to 100kg). The time required to change the load cell is only 2 to 3 minutes. - It has nine measurement modes, including compression, tension, fracture, TPA, load holding, stop load, bloom, paste, tack + load, and position calibration. - It can move at a speed of 40mm/s, allowing for high-speed movement. - It can acquire up to 500 data points per second. - A variety of options (probes, fixtures, etc.) are available. - Using the operation/analysis software enables detailed testing and analysis. - It complies with the U.S. FDA (Food and Drug Administration) "21 CFR Part 11" for the pharmaceutical industry.

  • Food Testing/Analysis/Measuring Equipment

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Lock-in infrared heating analysis device

Achieving overwhelming low prices that are industry No. 1 while maintaining high performance.

Features ● Industry No.1 pricing ● Wide field of view, ideal for large samples ● Abundant lens options ● Operates like a digital camera

  • Defect Inspection Equipment

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Data DL available: FIB - Nano-level high-precision processing by FIB

The FIB device allows for high-precision processing at the desired position on a Si substrate without a mask at the nano level.

The FIB (Focused Ion Beam) system allows for maskless etching processing to create arbitrary shapes. In this case, we introduce the fabrication of pillars at 50nm steps with the following sizes: - Circular: φ5μm - Pillar height: 700nm/650nm/600nm - Pillar diameter: φ500nm Please take a moment to read the PDF materials. Additionally, our company specializes in wiring modifications aimed at circuit corrections for ICs and LSIs using FIB. Specifically, we offer the following services: - Cutting of wiring - Connecting of wiring - Fabrication of test pads for characteristic evaluation We perform these services with a short turnaround time to assist in your IC and LSI development. We would be happy to discuss this further, so please feel free to reach out. *If you need more details, please do not hesitate to contact us. Seiko Future Creation Official Website https://www.seiko-sfc.co.jp/

  • Processing Contract
  • Contract Analysis
  • Other semiconductors

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CMOSH-4E Schottky Diode

Central Semiconductor Schottky Diode CMOSH-4E

The following four products from Centra Semiconductor are optimal devices for the "LiDAR" in autonomous driving systems and have been adopted by overseas LiDAR manufacturers.

  • diode

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Data Download Available: DSC Analysis of Curing Characteristics of Epoxy Resin

It is possible to estimate the curing time of epoxy resin from the DSC measurement results. We will simulate using the Kamal model.

In semiconductor packaging, it is important to understand the curing time of epoxy resin. The Kamal model is widely used as the reaction rate equation for the curing of epoxy resin. The coefficients of the Kamal model can be determined from the non-isothermal curing behavior measured by DSC (Differential Scanning Calorimetry). In this case, we will introduce "Analysis of Curing Characteristics of Epoxy Resin by Thermal Analysis using DSC." Please take a moment to read the PDF materials. In addition to DSC, our company also specializes in various thermal analyses such as TG/DTA and TMA. ● DSC: It can be used for analyzing sample melting, glass transition, thermal history, crystallization, curing, Curie point, and measuring specific heat. ● TG/DTA: It can be used for analyzing moisture content, ash content, decomposition, oxidation, and evaluating thermal resistance. ● TMA: It can be used for measuring sample expansion rate, glass transition, and softening point. Please see the following for various examples of thermal analysis: https://www.seiko-sfc.co.jp/case/index.html *Other materials are also available. If you request through the inquiry button, we will send them to you.

  • Contract Analysis
  • Contract measurement
  • Other polymer materials

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Introduction to Product Chemical Substance Management [For Beginners]

Why is chemical substance management necessary? How should small and medium-sized enterprises address this?

What is the necessity of chemical substance management? Due to the increasing international regulations on chemical substances contained in products (such as the REACH regulation and RoHS directive), it has become essential to properly manage the chemical substances contained in products at each stage of raw material procurement, production, and shipping. ~Program (for reference)~ 1. What is chemical substance management in products? 2. Overview of regulations related to chemical substances in products 3. Building a framework for chemical substance management in products 【Venue】 Aijec Co., Ltd. Headquarters Presentation Room 46th Floor, Shinjuku Center Building, 1-25-1 Nishi-Shinjuku, Shinjuku-ku, Tokyo Aijec Co., Ltd. Seminar Room 14th Floor, Granfront Osaka Tower B, 3-1 Ofukucho, Kita-ku, Osaka *The venues for each seminar are listed in the reservation calendar. For more details, visit https://www.career-p.co.jp/event-seminar/seminar3/#top-img *Online seminars are currently being held.

  • Management consultant/Small business consultant

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[DL Available/Thermal Analysis] DSC Measurement of Chocolate 1 (Estimation of Crystal Type)

DSC measurement allows for the understanding of the melting behavior of cocoa butter, the main component of chocolate. Please use it for texture discrimination and quality control of chocolate.

Differential Scanning Calorimetry (DSC) can be used for the analysis of sample melting, glass transition, thermal history, crystallization, curing, Curie point, and the measurement of specific heat. In this case, we introduce an analysis of chocolate, which is familiar to everyone, through "DSC Measurement of Chocolate 1 (Estimation of Crystal Type)." It is useful for distinguishing the texture (melt-in-mouth) of chocolate and for quality control, so please take a moment to read the PDF materials. In addition to DSC, our company also specializes in various thermal analyses such as TG/DTA and TMA. ● TG/DTA: Can be used for analyzing moisture content, ash content, decomposition, oxidation, and heat resistance evaluation. ● TMA: Can be used for measuring sample expansion rate, glass transition, and softening point. We also have a track record with other food products, so please feel free to consult us regarding thermal analysis. Case introduction https://www.seiko-sfc.co.jp/case/index.html *Other materials are also available. If you request through the inquiry button, we will send them to you.

  • Contract Analysis
  • Fats and oils
  • Organic Natural Materials

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[DL Available/Thermal Analysis] DSC Measurement of Chocolate 2 (Comparison Between Products)

By thoroughly scientifically analyzing chocolate, we can compare products from various companies.

Differential Scanning Calorimetry (DSC) can be used for analyzing the melting, glass transition, thermal history, crystallization, curing, Curie point, and measuring specific heat of samples. In this case, we introduce an analysis of familiar chocolate using DSC in "DSC Measurement of Chocolate 2 (Comparison Between Products)." This is the second installment. It is also useful for product comparison in determining the texture (melting) of chocolate, so please take a moment to read the PDF materials. In addition to DSC, our company specializes in various thermal analyses such as TG/DTA and TMA. ● TG/DTA: Can be used for analyzing moisture content, ash content, decomposition, oxidation, and evaluating heat resistance. ● TMA: Can be used for measuring expansion rate, glass transition, and softening point of samples. We also have experience with other food products, so please feel free to consult us regarding thermal analysis. Case Introduction https://www.seiko-sfc.co.jp/case/index.html *Other materials are also available. If you request through the inquiry button, we will send them to you.

  • Contract measurement
  • Food Testing/Analysis/Measuring Equipment
  • Organic Natural Materials

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Introduction to Temperature Modulated DSC Method (Evaluation of Polymer Materials)

Temperature-modulated DSC allows for specific heat measurements using the IS method, providing a wealth of information in high-temperature regions where specific heat measurements have been considered difficult, which cannot be obtained with conventional DSC.

Temperature-modulated DSC provides a wealth of information that cannot be obtained with conventional DSC, enabling the following: - Distinction of thermal history, etc., through comparison of reversible and irreversible components as mentioned above. - Measurement of specific heat in high-temperature regions above around 1000°C, which is considered difficult with the JIS method. - Measurement of specific heat in low-temperature regions below room temperature. Additionally, it is expected to be useful for analyzing relaxation phenomena. In this case, as an example of that technology, we introduce "a case study evaluating PET." For more details, please refer to the PDF materials. Furthermore, in addition to DSC, our company also specializes in various thermal analyses such as TG-DTA and TMA. ● DSC (Differential Scanning Calorimetry): Can be used for analysis of sample melting, glass transition, thermal history, crystallization, curing, Curie point, etc., and for measuring specific heat. ● TG-DTA (Thermogravimetric and Differential Thermal Analysis): Can be used for analysis of sample moisture content, ash content, decomposition, oxidation, and heat resistance evaluation. ● TMA (Thermomechanical Analysis): Can be used for measuring sample expansion rate, glass transition, softening point, etc. For more information, visit here: https://www.seiko-sfc.co.jp/analysis-service/thermal-analysis.html

  • Other polymer materials
  • Contract Analysis
  • plastic

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