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Last Updated: Aggregation Period:Sep 03, 2025~Sep 30, 2025
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Analysis Product List

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Case Study Analysis: "Scuttle Shake Analysis of Open Cars by OMA"

Scuttle shake analysis of open cars using OMA (Operational Modal Analysis).

We would like to introduce a case study by F-MA Consulting, a specialist in vibration noise analysis technology, titled "Scuttle Shake Analysis of Open Cars Using OMA (Operational Modal Analysis)." The definition of scuttle shake is: "a phenomenon commonly seen in open cars with low body rigidity," "which manifests as a 'shaking sensation' when driving in urban areas at speeds of 40 to 60 km/h," and "is generally said to be caused by low-frequency (10 to 20 Hz) twisting modes of the body." 【Experimental Analysis Using ModalVIEW】 - Collection of acceleration and deceleration data from actual vehicle runs at each measurement point - Pole extraction using SSI from time history data - Calculation of mode shapes at each point from the extracted modes - Display of vibration modes in the operational state For more details, please contact us or download the catalog.

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[Data] Real Number Mode Curve Fitting Method and Its Applications

Analyzing the white body of passenger cars and pickup trucks! A comparison of the real mode method and the complex mode method was conducted.

The theory of curve fitting in experimental modal analysis has a long history during which various methods have been developed, and it is even said that there are no further mathematical advancements to be made. In this document, we introduce a real-valued modal curve fitting method that advances the assumption of real modes by using only the imaginary part of the FRF (or the real part when the FRF is in terms of velocity/force). Additionally, we applied this method to the white body of a passenger car and a pickup truck, and we present a comparative analysis of the results obtained from the real mode method and the complex mode method. We invite you to read it. [Contents] ■ Preface ■ Real Mode Method ■ Case Study of Passenger Car White Body ■ Case Study of Pickup Truck ■ Conclusion *For more details, please refer to the PDF document or feel free to contact us.

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Practical Modal Analysis for Automobiles

We are publishing information about OMA (Operational Modal Analysis) and EMA (Experimental Modal Analysis)!

This document reports on cases of OMA (Operational Modal Analysis) using multi-point simultaneous measurements on SUV test vehicles, followed by cases of OMA and EMA (Experimental Modal Analysis) using multi-point non-simultaneous measurements on convertible car test vehicles. As a practical modal analysis for automobiles using a relatively small-scale system, OMA proposes a method to determine natural frequencies and damping ratios using SSI (Stochastic Subspace Identification), and to obtain mode shapes using ODS (Operational Deflection Shape). Additionally, EMA proposes a combination of sinusoidal excitation using a small electromagnetic shaker and the least squares complex frequency method. 【Contents】 ■ Preface ■ OMA (Operational Modal Analysis) ■ EMA (Experimental Modal Analysis) ■ Discussion ■ Conclusion *For more details, please refer to the PDF document or feel free to contact us.

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Failure analysis of power devices

We will identify and observe the defective areas of power devices such as diodes, MOS-FETs, and IGBTs.

We perform optimal preprocessing for power devices such as diodes, MOS FETs, and IGBTs of all sizes and shapes, and identify and observe defective areas through backside IR-OBIRCH analysis and backside emission analysis. ■ Preprocessing for analysis - Backside polishing - We accommodate various sample forms. Si chip size: 200um to 15mm square ■ Defective area identification - Backside IR-OBIRCH analysis and backside emission analysis - IR-OBIRCH analysis: Supports up to 100mA/10V and 100uA/25V Emission analysis: Supports up to 2kV * We address a wide range of defect characteristics such as low-resistance shorts, micro leaks, and high voltage breakdown failures. ■ Pinpoint cross-sectional observation of leak areas - SEM/TEM - We select SEM or TEM observation based on the predicted defects and can conduct physical observation and elemental analysis of leak defect areas with precision.

  • Contract Analysis
  • Transistor
  • Analytical Equipment and Devices

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SMART Analysis Service

With simple parameter settings, you can regularly obtain SMART information!

Our "SMART Analysis Service" analyzes the SMART information collected by SMART Logging (a tool that regularly logs SMART information within your system) and provides consulting based on the transition of storage conditions. Even in scenarios where errors occur infrequently in your environment, we can obtain SMART information under your conditions as a means of isolating the causes of failures related to the system, storage, and environment. 【Features of SMART Logging】 ■ Regularly collects SMART information and saves it in text format ■ Allows real-time monitoring of increases and decreases in specified SMART item values ■ The program can be executed without needing to be installed on the system ■ Designed to minimize system load during program execution ■ Changing the SMART acquisition interval requires the purchase of a paid version, etc. *For more details, please download the PDF or feel free to contact us.

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Analysis of live microbial community structure *Case study collection available

Introducing new amplicon analyses from next-generation sequencing! We present two approaches.

At Fasmac, we offer "Analysis of Live Microbial Community Structure." The "Community Structure Analysis using the Selective Membrane Permeable Dye EMA" utilizes the fact that EMA modifies DNA derived from dead bacteria, rendering the modified DNA unable to be amplified by PCR, allowing for the selective detection of DNA from live bacteria. Additionally, the "Community Structure Analysis using cDNA from Reverse Transcription of RNA" is a method for identifying actively functioning microorganisms by analyzing RNA in environmental samples. 【Features】 <Community Structure Analysis using Selective Membrane Permeable Dye EMA> ■ Utilizes the modification of dead bacterial DNA by EMA, which prevents PCR amplification of the modified DNA ■ Selectively detects DNA from live bacteria <Community Structure Analysis using cDNA from Reverse Transcription of RNA> ■ Analyzes RNA in environmental samples ■ Identifies actively functioning microorganisms *For more details, please refer to the PDF document or feel free to contact us.

  • Contract Analysis

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Countermeasures against spoofing emails! DMARC analysis service *Case studies available

Detect unauthorized use of your own domain! By understanding the existence and content of phishing emails, you can also prevent damage to customers and partners.

"DMARC/25" is a cloud-based DMARC analysis service that aggregates and visualizes authentication result information (DMARC reports) to provide easy-to-understand web-based reports. It allows you to check whether your domain is being misused and can quickly detect suspicious email sending that may involve impersonation. In the event that your domain is used for unauthorized sending, you can accurately grasp the existence and content of phishing emails, enabling you to warn customers and business partners who may receive your emails, thus helping to mitigate potential damage. [Service] ■ Visualization of DMARC reports - Email usage status - Impersonation status - Response status of sending hosts ■ Date and time alert settings ■ Regular diagnostic reports and consulting *For more details, please download the PDF or feel free to contact us.

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Report: Detailed Structural Analysis of Application Processor Logic

This is a detailed structural analysis of the Mediatek MT6592 octa-core (8-core).

This report is a detailed structural analysis of the Mediatek MT6592 octa-core (8-core) application processor. The MT6592 features an ARM Cortex-A7 processor and is marketed as a "true octa-core" SoC, equipped with a 4-core ARM MaliTM GPU, supporting Full HD displays, cameras up to 16 million pixels, multi-mode cellular modems, and dual-band 802.11n Wi-Fi, among other features. The MT6592 is manufactured using TSMC's HPM CMOS process with an 8-layer metal (7 Cu, 1 Al) structure, high-k metal gate (HKMG), and a gate length of 28nm. 【Features】 ○ Crystal orientation of the transistor channel <110> ○ Hafnium oxide (HfO2) material for the gate insulating film ○ Dual work function metal gate ○ nMOS (NiSi) and pMOS (NiSiGe) source/drain regions, and low-k interlayer insulating film For more details, please contact us or download the catalog.

  • Analysis Services

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[Structural Analysis Example] Impact Analysis of a Falling Weight on a Reinforced Concrete Beam

Accurately reproduce experimental results! The concrete constitutive laws use KCC, Winfrith, and CSCM!

We conducted an impact analysis of a reinforced concrete beam using three types of concrete constitutive laws and validated the simulation accuracy by comparing it with experimental results. The concrete constitutive laws used were KCC (MAT_072R3), Winfrith (MAT_084-085), and CSCM (MAT_159). The Winfrith model allows for the visualization of crack patterns, and the analysis results confirmed the direction of the cracks. Additionally, when examining the impact analysis at an impact velocity of 9 m/s using the KCC model, it was found that the typical impact damage behavior of the beam was well represented. 【Concrete Constitutive Laws Used】 ■KCC (MAT_072R3) ■Winfrith (MAT_084-085) ■CSCM (MAT_159) *For more details, please refer to the related links or feel free to contact us.

  • Structural Analysis

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General-purpose finite element method analysis Femap

Top-class FEA solution for Windows environment

Femap is a highly regarded, CAD-independent, Windows-native pre/post-processor for advanced engineering finite element analysis (FEA).

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Numerical analysis solution

We provide one-stop IT solutions for manufacturing.

We will comprehensively support your company's design, manufacturing, installation, operation, maintenance, and improvement through numerical analysis technologies such as structural analysis, fluid analysis, and heat transfer analysis that have supported the IHI Group's manufacturing.

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  • Structural Analysis
  • Thermo-fluid analysis

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[Research Material] The Global Market for Big Data and Machine Learning in Communications

Global Market for Big Data and Machine Learning in Communications: Descriptive Analysis, Predictive Analysis, Machine Learning, Feature Engineering, Processing, Storage, Analysis

This research report (Global Big Data & Machine Learning in Telecom Market) investigates and analyzes the current state and future outlook of the global market for big data and machine learning in telecommunications over the next five years. It includes information on the overview of the global big data and machine learning market in telecommunications, trends of major companies (sales, selling prices, market share), market size by segment, market size by major regions, and distribution channel analysis. The segments by type in the big data and machine learning market in telecommunications focus on descriptive analytics, predictive analytics, machine learning, and feature engineering, while the segments by application target processing, storage, and analysis. The regional segments are divided into North America, the United States, Europe, Asia-Pacific, Japan, China, India, South Korea, Southeast Asia, South America, the Middle East, and Africa to calculate the market size for big data and machine learning in telecommunications. It also includes the market share of major companies in big data and machine learning in telecommunications, product and business overviews, and sales performance.

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Materials Studio for Tribochemical Analysis

Simulation of tribochemical (lubrication) reactions: Initially, a material development simulation software that accommodates various types of materials.

"Materials Studio" A suite of molecular modeling/simulation tools for next-generation material development equipped with quantum mechanics (density functional theory), classical mechanics (molecular dynamics calculations), mesoscale (dissipative particle dynamics calculations, etc.), statistics, and analysis/crystallization tools. 【Features】 ■ Simulation software that streamlines material development Available for use by those engaged in research, development, design, and manufacturing across various industries and fields. ■ Supports various types of materials Predicts how the atomic and molecular structures relate to the physical properties and behaviors of materials in the fields of materials science and chemistry, effectively aiding in the understanding of physical phenomena. ■ Examples Tribochemical (lubrication) reactions Research and development of crystal growth, thin film formation, fuel cells, lubricants, etc. Catalysts, polymers and mixtures, metals and alloys, batteries and fuel cells, etc. ■ Enhanced visualization with "Materials Studio Visualizer" ■ All tasks, including crystal structure creation, calculation condition settings, and calculation result display, can be performed on a single GUI screen. *For more details, please feel free to contact us.

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  • Image analysis software

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