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  3. アイ・ティー・エス・ジャパン
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Testing, Analysis and Measurement
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アイ・ティー・エス・ジャパン

EstablishmentFebruary 2, 1982
capital1080Ten thousand
number of employees10
addressChiba/Funabashi-shi/Misaki 7-22-7
phone047-449-2961
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last updated:Oct 27, 2025
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アイ・ティー・エス・ジャパン List of Products and Services

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Measuring instruments and testing machines Measuring instruments and testing machines
Others Others
Specimen preparation machine Specimen preparation machine
Environmental testing machine Environmental testing machine
Packaging material testing machine Packaging material testing machine
Hot press molding machine Hot press molding machine
High-pressure gas valve / high-performance valve / LNG-related products High-pressure gas valve / high-performance valve / LNG-related products
Co-rotating twin-screw extruder simulation software Co-rotating twin-screw extruder simulation software
Production rationalization equipment Production rationalization equipment
Rubber measurement-related equipment Rubber measurement-related equipment
Dynamic viscoelastic device Dynamic viscoelastic device
Drop weight impact testing machine Drop weight impact testing machine
Moisture meter for polymers Moisture meter for polymers
Dehumidifying dryer for polymers Dehumidifying dryer for polymers
Material mixing machine Material mixing machine
Molding cycle shortening equipment Molding cycle shortening equipment
Melt property material development equipment Melt property material development equipment
Extrusion molding flow analysis software Extrusion molding flow analysis software
Vacuum forming and blow molding analysis software Vacuum forming and blow molding analysis software
High-performance ball valves, valves with actuators, and various other types of valves. High-performance ball valves, valves with actuators, and various other types of valves.
Measuring

Measuring instruments and testing machines

◎Drop Weight Impact Testing Machine ◎Dynamic Viscoelasticity Measurement Device ◎Stress Relaxation Measurement Device ◎Plastic Micro Moisture Measurement Device ◎Flow Analysis Software ◎Melt Property Measurement Device ◎Molding Analysis Software

Real Nano 3D Measurement Device for the Optical Industry

Achieving nanoscale measurements with optical methods. For evaluating reflection characteristics.

In the optical industry, accurately evaluating the surface reflection characteristics is essential for product quality control. Particularly for products that utilize light reflection, such as optical lenses and anti-reflective coatings, the fine surface shapes and roughness significantly affect performance. Inadequate surface conditions can lead to light scattering and loss, potentially resulting in decreased product performance. Our Real Nano 3D measurement system enables measurements at the nanoscale, addressing challenges in reflection characteristic evaluation. 【Application Scenarios】 - Measurement of surface roughness of optical lenses - Evaluation of film thickness and shape of anti-reflective coatings - Measurement of end face shape of optical fibers - Surface evaluation of displays 【Benefits of Implementation】 - Improved quality through high-precision surface shape measurement - Reduction of defective products and cost savings - Rapid feedback in product development - Enhanced reliability from customers

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Real Nano 3D Measurement Device for Materials Science

Optical methods enable the measurement of nanoscale fine structures.

In the field of materials science, accurate measurement of microstructures is essential for the development of new materials and the performance evaluation of existing materials. In particular, it is required to evaluate the surface roughness and shape that influence the strength, durability, and functionality of materials at the nano level. Traditional measurement methods have faced challenges such as long measurement times, the need for sample preparation, and limitations in measurement environments. The Real Nano 3D measurement system addresses these issues and accelerates the analysis of material microstructures. 【Application Scenarios】 - Evaluation of surface properties in new material development - Measurement of coating material thickness and surface roughness evaluation - Microstructure analysis of semiconductor devices - Evaluation of surface characteristics of medical device materials - Surface inspection of aerospace materials 【Benefits of Implementation】 - High-precision surface shape measurement at the nano level - Reduction in measurement time through high-speed scanning - Minimization of impact on samples through non-contact measurement - Acquisition of actual measurement data without stitching - Simplification of sample preparation

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Real Nano 3D Measurement Device for the Energy Industry

Enabling nanoscale "actual measurements" with optical "vertical focus."

In the field of surface modification in the energy industry, it is important to accurately evaluate the fine structures and properties of surfaces to enhance the durability and performance of materials. Particularly in areas such as solar power panels and fuel cells, the roughness and shape of the surface significantly impact performance, necessitating precise measurements. The Real Nano 3D measurement device becomes a crucial tool for accurately measuring the fine shapes of surfaces and assessing the effects of surface modification. 【Application Scenarios】 - Surface evaluation of solar power panels - Surface evaluation of fuel cell electrodes - Surface evaluation of coating films 【Effects of Implementation】 - Optimization of surface modification processes - Improvement of product quality - Increased efficiency in research and development

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Real Nano 3D Measuring Machine for Watch Decoration Processing

Enables nanoscale "actual measurement" with optical "vertical focus."

In the watch industry, precise evaluation of the fine shapes and roughness of surfaces is required to balance the aesthetics and quality of products. Particularly for parts that have delicate engravings or polishing, even slight irregularities or scratches can diminish the overall value of the product. The Real Nano 3D measuring machine provides high-precision surface property evaluations to address these challenges. 【Application Scenarios】 - Measurement of surface roughness of watch components - Shape evaluation after decorative processing - Coating thickness measurement - Quality control of polishing processes 【Benefits of Implementation】 - Achievement of high-quality decorative processing - Reduction of defective products - Improvement of product reliability

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Real Nano 3D Measurement Device for Smartphones

Enabling nanoscale "actual measurement" with optical "vertical focus."

In the smartphone display industry, precise evaluation of the surface's fine shapes and roughness is required to pursue high-quality display performance. In particular, slight irregularities and scratches on the surface that affect the visibility and durability of the display are critical factors that determine product quality. The Real Nano 3D measurement system contributes to quality control and performance improvement of displays by measuring surface shapes at the nano level. 【Usage Scenarios】 - Measurement of display surface roughness - Evaluation of touch panel surface shapes - Quality assessment of protective films 【Effects of Implementation】 - Improvement of display quality - Reduction of defective products - Streamlining of product development

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[For Research Institutions] Real Nano 3D Measurement Device

Achieving nanoscale "actual measurement" with optical "vertical focus."

In research institutions, it is required to accurately measure the fine structures of surfaces and evaluate the properties of materials. In particular, shape measurement at the nanoscale plays an important role in the development of new materials and the research of surface treatment technologies. Traditional measurement methods have faced challenges such as long measurement times and limitations in measurement accuracy. Our Real Nano 3D measurement system enables actual measurements at the nanoscale through high-speed continuous scanning and vertical focus technology, contributing to the efficiency of research. 【Application Scenarios】 - Surface roughness and shape measurement in materials science research - Quality evaluation of semiconductor devices - Research and development of coating technologies - Surface property evaluation of medical devices 【Effects of Implementation】 - Acquisition of high-precision surface shape data - Reduction of research time - Improvement of research outcomes - Compatibility with diverse materials

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Nano/Micro Indenter for Semiconductors

A system that makes everything possible with just one device.

In the semiconductor industry, accurately measuring the mechanical properties of thin films is essential for ensuring product quality and reliability. In particular, properties such as hardness, elastic modulus, and adhesion of thin films directly impact device performance, necessitating precise evaluation. NanoBia's nano/micro indenter accurately measures the micro to nano mechanical properties of thin films, addressing these challenges. 【Application Scenarios】 - Measurement of thin film hardness and elastic modulus - Adhesion evaluation through scratch testing - Stress-strain analysis 【Benefits of Implementation】 - Improved quality control of thin films - Enhanced reliability of devices - Increased efficiency in research and development

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Nano/Micro Indenter for Materials Science

A system that makes everything possible with just one device.

In the field of materials science, hardness measurement is an important factor in the evaluation of material properties. Particularly in areas such as thin films, coatings, ceramics, and composites, accurately measuring hardness and elastic modulus in small regions of materials is essential for material development and quality control. Nano/micro indenters have been developed to meet these needs. [Application Scenarios] - Hardness measurement of thin films, coatings, ceramics, and composites - Hardness measurement of polymers and biomaterials [Effects of Implementation] - Accurate measurement of micro to nano mechanical properties of a wide range of materials - Unmatched precision and the highest reproducibility available in the market

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Nano/Micro Indenter for Medical Devices

Measuring the nano-mechanical properties of biomaterials with a single device.

In the medical device industry, the durability and safety of biomaterials such as implants and artificial joints are crucial. The fine characterization of materials is essential to ensure product quality and patient safety. Biomaterials possess complex structures and diverse properties, necessitating accurate measurements. Nano/micro indenters accurately measure the micro to nano mechanical properties of biomaterials, supporting product development and quality control. 【Application Scenarios】 - Hardness measurement of implant materials - Friction property evaluation of artificial joints - Scratch testing of biomaterials - Adhesion evaluation of coating materials - Characterization of tissue engineering materials 【Benefits of Implementation】 - Detailed analysis of mechanical properties of materials - Improvement of product durability and safety - Increased efficiency in research and development - Enhanced accuracy in quality control - Increased reliability of products

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Nano/Micro Indenter for Aerospace Applications

A system that makes it possible to evaluate coatings in the aerospace field all with one machine.

In the aerospace industry, quality control of coatings is crucial for maintaining the safety and performance of aircraft. In particular, properties such as wear resistance, corrosion resistance, and adhesion significantly affect the durability of aircraft in harsh environments. Coating defects can shorten the lifespan of aircraft and potentially lead to serious accidents. Nanovia's nano/micro indenter supports quality control by accurately measuring the nano-mechanical properties of these coatings. 【Application Scenarios】 - Coating evaluation of aircraft components - Coating evaluation of spacecraft exteriors - Evaluation of wear resistance, corrosion resistance, and adhesion 【Benefits of Implementation】 - Improved coating quality - Enhanced aircraft safety - Reduced product development time - Cost savings

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Automotive Nano/Micro Indenter

A system that makes everything possible with just one device.

In the automotive industry's surface treatment, characteristics such as wear resistance, corrosion resistance, and adhesion are important. These characteristics are directly linked to the durability and reliability of the products, influencing quality. Accurately measuring the nano-mechanical properties of materials is essential for evaluating surface treatments. Nano/micro indenters are the optimal solution for assessing these properties. 【Application Scenarios】 - Performance evaluation of coatings - Optimization of surface modification processes - Quality control of materials 【Effects of Implementation】 - Improvement of surface treatment quality - Enhancement of product durability - Increased efficiency in research and development

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Nano/Micro Indenter for Batteries

A system that makes everything possible with just one device.

In the battery industry, it is important to accurately measure the mechanical properties of materials to evaluate the performance and durability of products. In particular, the characterization of thin films and coatings, such as electrode materials and separators, affects the lifespan and safety of batteries. Nano/microindenters accurately measure the nano-mechanical properties of these materials, supporting product development and quality control. 【Application Scenarios】 - Evaluation of hardness, elastic modulus, and friction properties of battery materials - Assessment of adhesion and wear resistance of thin films and coatings - Analysis of material degradation during battery charge and discharge cycles 【Effects of Implementation】 - Detailed understanding of the mechanical properties of materials contributes to improved product performance - Increased accuracy in quality control helps reduce defective products - Streamlining research and development and promoting the development of higher-performance batteries

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Nano/Micro Indenter for Electronics

A system that makes everything possible with just one device.

In the electronics industry, the evaluation of the mechanical properties of joints is crucial to ensure the reliability and durability of products. This is especially true for electronic devices that are becoming increasingly miniaturized, where the assessment of the properties of joining materials at the micro level is essential. Improper bonding can lead to performance degradation or failure of the product. NanoVia's nano/micro indenter accurately measures the micro to nano mechanical properties of a wide range of materials, including thin films, coatings, ceramics, and composites, contributing to the quality assessment of joints. 【Application Scenarios】 - Evaluation of bonding strength in electronic components - Reliability assessment of semiconductor packages - Property evaluation of joints between dissimilar materials 【Benefits of Implementation】 - Accurate measurement of the mechanical properties of joints, contributing to product quality improvement - Support for the development of miniaturized devices through micro-level property evaluation - Compatibility with a wide range of materials and various bonding technologies

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Nano/Micro Indenter for Optical Lenses

A system that makes everything possible with just one device.

In the optical lens industry, it is essential to accurately measure surface hardness, scratch resistance, and friction characteristics to evaluate the durability and performance of lenses. Particularly, the coatings and surface treatments of lenses significantly influence their performance, making it important to capture even minute changes. Nano/micro indenters measure these properties at the nanoscale, supporting quality control and development of lenses. 【Application Scenarios】 - Measurement of lens surface hardness - Evaluation of coating adhesion - Scratch resistance assessment through scratch tests - Durability evaluation through friction coefficient measurement 【Benefits of Implementation】 - Improvement in lens quality - Increased efficiency in product development - Reduction of defective products - Enhanced customer satisfaction

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Nano/Micro Indenter for Biotechnology

A system for measuring cell characteristics at the nanoscale.

In the field of biotechnology, accurately assessing the mechanical properties of cells is essential for advancing research and developing new technologies. In particular, characteristics such as cell stiffness, elasticity, and viscosity serve as important indicators for understanding cell function and pathology. Traditional measurement methods have faced challenges in precisely capturing the fine structures and properties of cells. Nano/micro-indentation resolves these issues by precisely measuring the nano-mechanical properties of cells. 【Application Scenarios】 - Cell culture, evaluation of mechanical properties of cells - Analysis of the relationship between cell structure and function - Assessment of cellular responses in drug discovery research - Evaluation of interactions between biomaterials and cells 【Effects of Implementation】 - Accurate measurement of mechanical properties of cells enhances research quality - Acquisition of new insights regarding cell function and pathology - Promotion of applications in drug discovery and regenerative medicine - Support for evaluating cell compatibility in biomaterial development

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Nano/Micro Indenter for Pharmaceuticals

A system that makes everything possible with just one device.

In the pharmaceutical industry, it is essential to accurately measure the mechanical properties of materials to evaluate the efficacy and safety of drugs. Particularly for materials such as drug delivery systems and coatings, characterization at the nano level is crucial. Inadequate measurements can lead to incorrect assessments of a drug's effectiveness and safety. NanoBIA's nano/micro indenter accurately measures the micro to nano mechanical properties of a wide range of materials, supporting material evaluation in drug development. 【Application Scenarios】 - Evaluation of drug delivery systems - Characterization of coatings - Hardness measurement of tablets - Assessment of biomaterials - Evaluation of pharmaceutical packaging materials 【Benefits of Implementation】 - Improvement of drug efficacy and safety - Reduction of development time - Streamlining of quality control - Acceleration of research and development - Cost reduction

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Nano/Micro Indenter for Food Packaging

A system that makes everything possible with one device.

In the food packaging industry, ensuring product quality and safety is the top priority. The strength, abrasion resistance, and sealing properties of packaging materials affect the shelf life and flavor of food, as well as consumer safety. Accurate measurement of material properties at the nano level is essential for evaluating the performance of packaging materials. Nano/micro indenters solve these challenges by precisely measuring the nano-mechanical properties of packaging materials. 【Application Scenarios】 - Strength evaluation of food packaging films - Abrasion resistance evaluation of containers - Sealing property evaluation of packaging materials - Performance evaluation of coating materials 【Benefits of Implementation】 - Improvement in packaging material quality - Enhancement of product safety - Cost reduction - Increased customer satisfaction

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Nano/Micro Indenter for Cosmetics

A system that allows for the evaluation of cosmetic textures all in one device.

In the cosmetics industry, the evaluation of texture, which influences product quality, is crucial. Textures such as skin feel, spreadability, and adhesion are directly linked to consumer experience and significantly affect purchasing intent. However, traditional evaluation methods have relied on subjective assessments, making it challenging to develop products based on objective data. Nanovia's nano/micro indenter accurately measures the micro to nano mechanical properties of cosmetics through "scratch," "indentation," "abrasion," and "friction tests." This enables product development based on objective data, allowing for the provision of higher quality cosmetics. [Application Scenarios] - Texture evaluation of creams, lotions, foundations, etc. - Evaluation of texture properties in new material development - Quality control of products [Effects of Implementation] - Product development based on objective data - Solutions to texture-related issues - Improvement in product quality - Increased customer satisfaction

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【For Paint Quality Control】Shear Viscosity and Extensional Viscosity Measurement R6000

Supports quality control of paints with corrected accurate shear viscosity measurements.

In the paint industry, the fluidity of paint is a very important factor in quality control. The applicability and uniformity of the finish are greatly influenced by viscosity characteristics. However, traditional viscosity measurements can differ from actual application conditions, making accurate quality assessment challenging. The R6000 measures shear viscosity with high reproducibility and provides a new indicator for material design. 【Usage Scenarios】 * Paint formulation management * Quality inspection * Research and development 【Benefits of Implementation】 * Stabilization of quality * Reduction of defective products * Shortening of development time

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【For Cosmetics】Shear Viscosity and Extensional Viscosity Measurement R6000

Evaluation of cosmetic texture using corrected accurate shear viscosity measurements.

In the cosmetics industry, the texture of a product is a crucial factor that influences customer satisfaction. Characteristics such as smoothness, ease of spread, and compatibility with the skin significantly affect the appeal of a product. However, due to the "non-linear" nature of polymer flow, it has been challenging to accurately predict texture using traditional metrics alone. The more complex flow known as elongational viscosity is particularly difficult to predict accurately, and reliable data can only be obtained by measuring in the speed range encountered during actual use. Our R6000 shear viscosity and elongational viscosity measurement system provides highly reproducible viscosity data to support texture design. [Application Scenarios] * Texture evaluation of creams, lotions, foundations, etc. * Optimization of texture in new product development * Evaluation of texture stability in quality control [Benefits of Implementation] * Development of textures that better meet customer needs * Reduction of quality variability, ensuring stable product supply * Enhanced brand strength through differentiation from competing products

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Shear viscosity and elongation viscosity measurement for food R6000

Evaluating texture scientifically. Providing new indicators for material design.

In the food industry, texture is a crucial factor that significantly influences product quality. Accurately understanding the rheological properties of materials is essential for evaluating texture, which affects consumer preferences. However, conventional viscosity measurements often yield results that have low correlation with actual texture. The R6000 shear viscosity and elongational viscosity measurement provides highly reproducible viscosity data, scientifically supporting the evaluation of food texture. 【Application Scenarios】 * Texture evaluation of food products * Optimization of texture in new product development * Control of texture variability in quality management 【Benefits of Implementation】 * Improvement of product quality through objective texture evaluation * Increased efficiency in new product development * Cost reduction through optimization of manufacturing processes

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【For Pharmaceuticals】Shear Viscosity and Extensional Viscosity Measurement R6000

Evaluation of pharmaceutical stability using corrected accurate shear viscosity measurements.

In the pharmaceutical industry, the stability of formulation components is crucial to ensure product quality and efficacy. In particular, changes in viscosity due to temperature fluctuations and long-term storage conditions can affect the efficacy and quality of formulations. The shear viscosity and elongational viscosity measurement R6000 accurately measures the flowability of materials in the pharmaceutical manufacturing process, contributing to the evaluation of product stability. 【Application Scenarios】 - Pharmaceutical formulation design - Long-term storage testing - Quality control 【Benefits of Implementation】 - Optimization of formulation design - Improvement of product quality - Enhancement of stability

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