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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 Product Lineup

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136~180 item / All 237 items

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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

Dynamic Viscoelasticity Measurement Device for Electronic Components: "Iplexer Series"

Equipped with two motors! Contributing to the reliability evaluation of electronic components.

In the electronic components industry, evaluating the properties of materials is crucial to ensure product reliability. In particular, to assess durability under environmental conditions such as temperature changes and vibrations, it is necessary to accurately measure the viscoelastic properties of materials. Inappropriate material selection or evaluation can lead to performance degradation or failure of the product. The dynamic viscoelastic measurement device "Iplexer Series" accurately captures viscoelastic data of various materials, strongly supporting the reliability evaluation of electronic components. 【Application Scenarios】 - Material selection for electronic components - Product durability evaluation - Quality control - Research and development 【Effects of Implementation】 - Improved product reliability - Reduction of defective products - Shortened development time - Cost reduction

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Automotive Drop Weight Impact Testing Machine 'IM Series'

Evaluation of compression impact and shock absorption! Testing machine to enhance automotive safety.

In the automotive industry, safety during collisions is the most important issue. It is essential to protect occupants from the impact during a collision. Evaluating the impact resistance of products and ensuring safety is indispensable for automobile manufacturers. The drop-weight impact testing machine "IM Series" contributes to the evaluation of the impact absorption properties of automotive parts. 【Usage Scenarios】 * Collision testing of automotive parts * Evaluation of shock-absorbing materials * Safety performance evaluation 【Benefits of Implementation】 * Objective evaluation of product safety * Acquisition of data useful for design improvements * Increased reliability

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Aerospace Drop Weight Impact Testing Machine "IM Series"

Shock test for the aerospace field! Instrumented impact testing machine with a speed of 20 m/s.

In the aerospace industry, impact resistance evaluation is essential to ensure product safety and reliability. In particular, aircraft components and structural materials must withstand collisions and impacts, making accurate performance assessment crucial. Insufficient impact resistance can lead to serious accidents. The drop weight impact testing machine "IM Series" is designed to evaluate the impact resistance of products in the aerospace field and enhance safety. 【Application Scenarios】 * Impact testing of aircraft components * Impact testing of spacecraft structural materials * Impact testing of composite materials 【Benefits of Implementation】 * Improved product safety * Strengthened quality control * Enhanced reliability

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Drop Weight Impact Testing Machine 'IM Series' for Electronic Devices

Drop testing for electronic devices! Evaluating product impact resistance.

In the electronics industry, durability against impact during falls is crucial to ensure product reliability. Failures due to product drops can lead to customer complaints and a decline in brand image. The IM series accurately measures the impact when a product falls and assesses the product's safety. This helps in improving product design and quality management. 【Usage Scenarios】 - Drop testing for smartphones, tablets, PCs, etc. - Impact testing for electronic components - Durability evaluation of products 【Benefits of Implementation】 - Improved product reliability - Enhanced efficiency in quality management - Increased customer satisfaction

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Drop Weight Impact Testing Machine 'IM Series' for the Packaging Industry

Evaluate the impact resistance of packaging materials! Visualize the performance that protects the product.

In the packaging industry, the impact resistance of packaging materials is crucial for protecting products during transportation. To prevent product damage and ensure safe delivery to customers, it is necessary to accurately assess how much external impact packaging materials can withstand. The drop weight impact tester "IM Series" objectively evaluates the protective performance of packaging materials through the assessment of compressive impact and shock absorption, ensuring product safety. 【Usage Scenarios】 * Cardboard boxes * Cushioning materials * Packaging materials * Products during transportation 【Benefits of Implementation】 * Reduces the risk of product damage * Increases customer satisfaction * Lowers transportation costs * Optimizes packaging materials

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Drop Weight Impact Testing Machine 'IM Series' for Sports Equipment

Evaluate the durability of sports equipment! Ensure product safety through impact testing.

In the sports equipment industry, the safety and durability of products are highly valued. Particularly for products exposed to impacts and external forces, their shock resistance performance significantly affects product quality. Damage to products or deterioration in performance not only threatens consumer safety but can also undermine corporate trust. The drop weight impact testing machine "IM Series" analyzes the behavior of products when subjected to impacts in detail, evaluating their safety. 【Usage Scenarios】 * Impact testing of sports equipment * Evaluation of product durability * Quality control in product development 【Benefits of Implementation】 * Improvement in product safety * Enhancement of product quality * Gaining trust from customers

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Impact Testing Machine for Medical Devices - "IM Series"

Evaluate the safety of medical devices! High-speed 20m/s instrumentation impact testing machine.

In the medical device industry, product safety is the top priority. To protect patient safety, medical devices must withstand various shocks and loads. Product failures not only threaten patient health but can also undermine corporate trust. The drop impact testing machine 'IM Series' is essential for evaluating the shock resistance of medical devices and ensuring product safety. 【Usage Scenarios】 - Drop testing of medical devices - Evaluation of damage due to impact - Assessment of product durability 【Benefits of Implementation】 - Improvement of product safety - Strengthening of quality control - Enhancement of corporate reliability

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Impact Testing Machine for Railways - "IM Series"

Vibration and shock measures for railway vehicles! A testing machine specialized in shock absorption evaluation.

In the railway industry, evaluating the vibrations and impacts that vehicle components endure is essential to ensure safety and durability. In particular, selecting parts that can withstand long-distance operations and harsh environments requires accurate testing data. Insufficient impact resistance can lead to early deterioration of components and accidents. Our drop-weight impact testing machine, the 'IM Series,' provides data to enhance the safety of railway vehicles through evaluations of compressive impact, shock absorption, and Charpy tests. 【Application Scenarios】 * Impact testing of railway vehicle components * Vibration testing * Evaluation of shock-absorbing materials 【Benefits of Implementation】 * Improved product reliability * Enhanced safety * Reduced product development time

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IM Series Drop Weight Impact Testing Machine for Defense Applications

Protect products from shock caused by explosions! Shock testing machine.

In the defense industry, it is extremely important to maintain product performance against the impact of explosions. Since the durability evaluation of products is related to human life, highly reliable testing is required. The IM series conducts tests assuming impacts from explosions to evaluate product safety. 【Application Scenarios】 * Impact testing of explosives and protective clothing * Durability evaluation of defense-related products * Impact resistance evaluation during the product design phase 【Benefits of Implementation】 * Improved product reliability * Ensured safety * Product design enhancements

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Impact Testing Machine for Infrastructure - "IM Series"

For evaluating compression impact and impact absorption properties, as well as for Charpy tests! Instrumented impact testing machine with a high speed of 20 m/s.

In the infrastructure industry, evaluating the strength of materials is essential to ensure the safety and durability of structures. Particularly for structures exposed to earthquakes and impacts, the impact resistance of materials becomes a crucial factor. Insufficient impact resistance can lead to damage or collapse of structures. The drop weight impact testing machine 'IM Series' verifies the safety of infrastructure structures in a visible manner by applying impact to products and assessing their impact resistance. 【Application Scenes】 * Bridges * Tunnels * Dams * Roads * Building structures 【Benefits of Implementation】 * Improved safety of structures * Enhanced reliability of materials * Optimization of design * Reduced risk of accidents

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Drop Weight Impact Testing Machine 'IM Series' for the Energy Industry

For evaluating compression impact and impact absorption properties, as well as for Charpy tests! Instrumented impact testing machine with a high speed of 20 m/s.

In the energy industry, the reliability of insulating materials is crucial for ensuring the stability and safety of power supply. Insulating materials must withstand external shocks and environmental changes while maintaining their performance over long periods. Insulation failures can lead to accidents or outages in power systems, potentially causing significant economic losses. The drop weight impact testing machine "IM Series" evaluates the impact resistance of insulating materials and visibly demonstrates the safety of the products. [Application Scenarios] - Impact testing of insulating materials - Impact testing of electrical cables - Impact testing of insulators [Benefits of Implementation] - Improved reliability of insulating materials - Enhanced safety of products - Reduced risk of accidents

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Drop Weight Impact Testing Machine 'IM Series' for Marine Structures

Evaluate the impact of corrosion in the marine environment! Verify the durability of the product through impact testing.

In the marine structures industry, measures against deterioration due to corrosion are essential to ensure the long-term reliability of products. Particularly for structures exposed to harsh marine environments, corrosion can lead to a decrease in strength, potentially resulting in serious accidents. The drop-weight impact testing machine 'IM Series' helps evaluate the resistance of products to impacts in a corroded state, ensuring safety. 【Application Scenarios】 - Corrosion testing of marine structures - Performance evaluation of products with anti-corrosion treatments - Impact durability assessment under corrosive environments 【Benefits of Implementation】 - Improved product safety - Long-term product lifespan prediction - Feedback for product design - Gaining customer trust

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Drop Hammer Impact Testing Machine 'IM Series' for Appliance Transportation

Protect products from shocks during transportation of home appliances! Shock testing machine.

In the home appliance industry, it is essential to protect products from shocks that occur during transportation. In particular, drops and vibrations during transport can lead to product damage or performance degradation. Our drop impact testing machine, the 'IM Series,' is necessary to evaluate whether products can withstand shocks during transportation. 【Usage Scenarios】 - Drop testing of home appliances - Evaluation of packaging material's shock absorption - Vibration testing during transportation 【Benefits of Implementation】 - Reduced risk of product damage - Improved quality control - Increased customer satisfaction

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Tribometer Technical Documentation: Arc Reciprocating Wear Test at High Temperatures PDF

This is a PDF document of the "Arc Reversal Wear Test at High Temperatures." Please download it for more details.

Wear is the process by which material from a surface is removed by another material as a result of mechanical action. Wear is influenced by various factors, such as temperature, speed, load, and whether the load is in reciprocating motion. Among these, temperature has a significant impact on the extent of wear damage. Wear of material surfaces at high temperatures has a complex nature, involving various wear mechanisms such as adhesive wear, so-called abrasive wear, surface fatigue, and oxidative wear.

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Tribometer Technical Documentation: Evaluation of Coating Damage and Wear Resistance

This is a PDF document on "Evaluation of Coating Damage and Wear Resistance." Please download it for details.

Acrylic urethane paint is a type of fast-drying protective paint that is widely used in various industrial applications, such as floor paint and automotive paint. When used as floor paint, it can be applied in high-traffic areas such as sidewalks, curbs, and parking lots, where there is a lot of pedestrian activity or frequent passage of rubber-wheeled vehicles.

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Tribometer Technical Document: 1000°C Brinell Hardness Test

This is a PDF document on the "1000℃ Brinell hardness test." Please download it for more details.

Material properties such as reactivity and strength can change significantly at high temperatures. Therefore, material selection is crucial not only for industrial products like jet engines and high-temperature manufacturing chambers but also for high-temperature applications such as cooking utensils. Understanding material behavior under various temperature conditions is essential for material selection. This study presents an example of measuring the Brinell hardness of steel samples using a NanoBIA T2000 tribometer over a temperature range of 25°C to 925°C.

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3D Profilometer Technical Documentation: Measurement of Transparent Films on Transparent Substrates

This is a PDF document on 'Measurement of Transparent Films on Transparent Substrates.' Please download it for details.

If both the "thickness" and "surface roughness" of a transparent thin film material coated on a transparent substrate can be measured with a single device, it would be very convenient for both development and quality control. It is clear that this is difficult because conventional stylus-based contact surface profilometers find it challenging to accurately measure soft films. On the other hand, other optical technologies also struggle to measure transparent thin films on transparent substrates. While there are other devices that can measure the thickness of this thin film, they do not have the capability to measure roughness.

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3D Profilometer Technical Document: Measurement of 500nm Step on Glass

This is a PDF document on the measurement of a 500nm step processed in glass. Please download it for details.

Understanding surface characteristics is a very active area of research. The importance of a product's surface lies in its physical and chemical contact points with the environment. Therefore, for scientists, observing detailed information about surfaces and achieving high-precision imaging is a demand for very high-quality data. Common imaging data for surfaces includes shape, smoothness, horizontal dimensions, and vertical dimensions. The applications of the data obtained from surface imaging will likely involve assessing surface load-bearing capacity, gaps in manufactured microstructures, height of steps, and surface defects. However, not all surface measurement techniques can obtain the same data.

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3D Profilometer Technical Document: Recovery of Rubber After Compressive Permanent Deformation

This is a PDF document on the recovery of rubber samples after compressive permanent deformation. Please download it for details.

The compressive permanent deformation of materials, as defined in ASTM D395i, is the permanent change in shape that remains when the previously applied compressive load is removed. Rubber is subjected to significant compressive stress in a wide range of applications, such as mounting to machinery, vibration dampers, valves, faucets, and bearings, in media such as air or liquids. The ability to retain elastic properties after prolonged compressive stress is crucial for the quality and functionality of the service. For example, a compression faucet relies on a rubber washer to seal the valve seat. The elasticity of the rubber sealing washer ensures the proper functioning of the faucet. Leaks occur when the rubber washer, seal, or gasket in the valve assembly wears out and loses elasticity. Therefore, it is important to evaluate the compressive permanent deformation of rubber after prolonged compressive stress.

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3D Profilometer Technical Document: Wear Test of Polymer Coating and Glass

This is a PDF document on the "Nano-level Wear Test of Polymer Coating and Glass." Please download it for more details.

Due to new advancements in technology, the size of components and their surface characteristics are continuously evolving towards greater delicacy across virtually all industries. This is particularly evident in the components of biomedical and microelectronics, as well as in understanding their surface interactions. For industries that require precision in delicate surface structures, it is extremely important to understand changes in material surfaces and to provide the intended surface interactions. The delicacy of component surfaces and their sizes has made traditional tribological (friction-related) research challenging, creating a need for new and appropriate wear/friction results, not only for research but also for quality control purposes. Therefore, there is an increasing necessity to accurately measure surface interactions due to wear/friction under smaller loads and in smaller applications.

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3D Profilometer Technical Documentation: Verification of CAD Models and Processed Products

This is a PDF document for "Verification and Validation of CAD Models and Processed Products." Please download it for details.

The demand for precision machining to create shaped components with complex geometries has dramatically increased across various industries. For example, in aerospace, medical, automotive, technology parts, as well as machinery and instruments, the constant demand for innovation and precision is driving the evolution of new technologies. As a result, the establishment of advanced quality inspection techniques to rigorously examine processed products and ensure they meet design specifications has become essential.

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3D Profilometer Technical Document: Verification of Tooth Wear

This is a PDF document on 'Verification of Tooth Wear.' Please download it for details.

Tooth wear refers to the loss of dental material that occurs throughout life due to causes other than cavities or acute trauma, and it is a normal process in all adults. The outermost layer of the tooth is enamel, which is the hardest substance in the human body and does not regenerate naturally. Enamel can be worn away due to contact between teeth, between teeth and foreign objects, between teeth and crowns, or exposure to acidic environments. Accurately measuring the rate of wear, volume reduction, and shape changes of teeth and crowns is essential for effectively slowing down tooth wear. All these calculations can be performed using surface subtraction analysis. Surface subtraction analysis can examine shape changes in relatively small areas across the entire sample, making it extremely important for various applications. This method allows for the effective quantification of surface wear or corrosion, as well as the similarity between two components or molds. Precisely measuring the surface area and volume loss in the area of interest is crucial for the proper design of wear-resistant and corrosion-resistant coatings, films, and substrates.

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3D Profilometer Technical Document: Actual Measurement of Micro-sized "Spherical Particles"

This is a PDF document of the actual measurement of micro-sized 'spherical particles.' Please download it for details.

The term "micro-sphere" (micro-spherical particle) is widely used in various fields such as materials science and pharmacology, referring to spherical particles made from various natural and synthetic materials with diameters in the micrometer range (1μm to 1000μm (1mm)). Micro-spheres are produced in solid and hollow forms and are developed using diverse materials such as plastics and glass. Hollow micro-spheres are often used as additives to reduce the density of materials. Solid micro-spheres have numerous applications depending on their constituent materials and sizes. Micro-spheres are a type of fine particle.

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Surface Inspection Technical Document: Various Properties of Polycarbonate Lenses

This is a PDF document on the various properties of polycarbonate lenses. Please download it for more details.

Polycarbonate lenses are widely used in many optical applications. Their advantages, such as high impact resistance, lightweight, and low cost during mass production, make them more practical than traditional glass for various uses. Among these applications, there are standards that require safety (e.g., safety glasses), complexity (e.g., Fresnel lenses), and durability (e.g., traffic signal lenses), which can be difficult to meet without using plastic. The ability to meet many requirements at a low cost while maintaining sufficient optical properties distinguishes plastic lenses in this field. However, polycarbonate lenses also have limitations. The main concern for consumers is their susceptibility to scratches. To compensate for this, additional processing is done to apply scratch-resistant coatings. Nanobear utilizes our three measurement devices (profilometer, tribometer, indenter) to verify the important characteristics of polycarbonate lenses.

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Nano Indenter Technical Documentation: Evaluation of Scratch Resistance of Multilayer Thin Films

This is a PDF document on "Evaluation of Scratch Resistance of Multilayer Thin Films." Please download it for more details.

Coatings are widely used in various industrial fields for purposes such as protecting underlying layers, manufacturing electronic devices, and enhancing the surface properties of materials. Due to their diverse applications, coatings are extensively researched, but understanding their mechanical properties can sometimes be challenging. Coating failure can occur at the micro/nanometer level due to interactions between the surface and the atmosphere, cohesive failure, or poor adhesion at the interface with the substrate. One method for consistently testing coating failure is the scratch test. By gradually increasing the load, it becomes possible to quantitatively compare cohesive failure of the coating (e.g., cracking) and adhesive failure (e.g., peeling).

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Nanoindenter Technical Documentation: Micro Scratch Test

This is a PDF document on the micro-scratch test for silicon wafer coating agents. Please download it for details.

Polymer coatings are widely used in various industrial fields such as semiconductors, solar energy, optics, and biomedicine to enhance the mechanical properties, abrasion resistance, optical properties, and chemical properties of various substrates. The inherent quality of the coating and the compatibility at the interface of the coating/substrate system determine the durability and lifespan of the polymer coating. Scratch tests and micro-scratch tests have developed into one of the most widely applied methods for evaluating the cohesive strength and adhesive strength of coatings. The critical load at which a specific type of coating failure occurs as the applied load gradually increases is widely recognized as a reliable means to determine and compare the adhesive and cohesive properties of the coating. The most commonly used indenter in scratch tests is a conical Rockwell diamond indenter. However, when conducting scratch tests on soft polymer coatings deposited on brittle substrates like silicon wafers, the conical indenter tends to form grooves that scrape through the coating rather than causing cracks or delamination.

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Nano Indenter Technical Document: Friction Evaluation of Self-Cleaning Glass Coating

This is a PDF document on the friction evaluation of self-cleaning glass coatings. Please download it for more details.

Self-cleaning glass coating has low surface energy that repels both water and oil. This coating forms an easy-to-maintain, non-stick glass surface on the substrate, protecting it from dirt and stains. This simple cleaning coating significantly reduces the amount of water and energy used in glass cleaning. Since it does not require harsh, harmful chemical cleaners, it is an environmentally friendly option for a wide range of applications, including mirrors, shower glass, windows, and windshields, for both residential and commercial use.

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Nano Indenter Technical Document: Properties of Silicon Carbide Wafer Metal Coating Agents

This is a PDF document on the mechanical properties of silicon carbide wafers and metal coating agents. Please download it for more details.

Single crystal silicon carbide (c-SiC) wafers are widely used in the manufacturing of microelectronics devices such as integrated circuits (ICs) and photovoltaic (PV) cells. Most wafers are formed from high-purity single crystals and come in various sizes ranging from 25.4mm to 300mm. These wafers serve as substrates for the microdevices formed on their interior and surface. Doping, ion implantation, photolithography patterning, deposition of various materials, and etching are examples of the numerous microfabrication processes that wafers undergo.

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Aqua Track V for Polymer Manufacturing

Specialized in measuring the moisture content of polymers! Contributing to quality control in the manufacturing process.

In the polymer manufacturing industry, the moisture content of products is a very important factor. Even slight variations in moisture content can significantly affect the strength and durability of the products. Accurate moisture measurement is essential to prevent the occurrence of defective products and maintain stable quality. The AquaTrack V measures the moisture content of polymers with high precision equivalent to the Karl Fischer method, providing strong support for quality control. 【Usage Scenarios】 - Quality control in the polymer manufacturing process - Measurement of moisture content in recycled plastics - Moisture checks upon material receipt 【Benefits of Implementation】 - Improvement in product quality - Reduction in defect rates - Decrease in manufacturing costs

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Stability evaluation of pharmaceuticals using Aquatrack V.

Protecting the quality of pharmaceuticals! Ensuring stability with high-precision moisture measurement.

In the pharmaceutical industry, strict management in the manufacturing process is required to ensure the quality and efficacy of products. In particular, the stability of pharmaceuticals is crucial in preventing quality degradation due to storage conditions and the passage of time. Moisture can lead to the decomposition and deterioration of pharmaceuticals, potentially compromising their efficacy and safety. The AquaTrack V measures the moisture content in pharmaceuticals with high precision equivalent to the Karl Fischer method, contributing to the evaluation of product stability. 【Use Cases】 - Quality control of pharmaceuticals - Stability testing - Moisture management in the manufacturing process 【Benefits of Implementation】 - Improved quality control through high-precision moisture measurement - Enhanced accuracy in product stability evaluation - Cost reduction through optimization of the manufacturing process

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Aqua Track V for Food Packaging

Contributing to the improvement of moisture resistance in food packaging! Measuring the moisture content of polymers.

In the food packaging industry, the moisture resistance of packaging materials is crucial for maintaining product quality. In particular, to prevent food deterioration due to humidity, it is necessary to accurately manage the moisture content of the packaging materials. Inadequate moisture management can lead to a decline in food quality and a shortening of the shelf life. AquaTrack V supports quality control of packaging materials by accurately measuring the moisture content of polymers. 【Usage Scenarios】 - Manufacturing process of food packaging materials - Moisture measurement in quality control departments - Utilization of recycled plastics 【Benefits of Implementation】 - Improved moisture resistance of packaging materials - Preservation of food quality - Increased efficiency in the manufacturing process

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Aqua Track V for Paint Formulation

Moisture management for paint formulation! Supporting quality improvement with high-precision measurement.

In the paint industry, managing the moisture content of raw materials is crucial for stabilizing the quality of formulations. In particular, the moisture content of pigments and additives significantly affects the viscosity, drying properties, and finish of the paint. Insufficient moisture management can lead to variations in quality and the occurrence of defective products. AquaTrack V contributes to stabilizing quality by accurately measuring moisture levels during formulation. 【Usage Scenarios】 - Paint formulation process - Incoming inspection of raw materials - Quality control department 【Benefits of Implementation】 - Stabilization of formulation quality - Reduction of defective products - Cost reduction

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Improving adhesive performance with Aquatrack V for adhesives.

Measure the moisture content of the adhesive to manage quality and performance!

In the adhesive industry, precise management of materials is essential to maintain product quality and performance. In particular, moisture content has a significant impact on adhesive strength and durability, making proper moisture management crucial. Inadequate moisture management can lead to poor adhesion and performance degradation. AquaTrack V accurately measures the moisture content of adhesives, supporting quality control. 【Application Scenarios】 - Quality control in the adhesive manufacturing process - Incoming inspection of materials - Product performance evaluation 【Benefits of Implementation】 - Stabilization of adhesive quality - Reduction of defective products - Increased reliability from customers

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Aqua Track V for the Textile Industry

For moisture management of textile products! Improve quality with a high-precision moisture meter.

In the textile industry, managing moisture levels in raw materials and manufacturing processes is crucial for maintaining product quality. Particularly in fiber products, where moisture absorption significantly affects performance, appropriate moisture management is essential. Excess or insufficient moisture can lead to reduced product strength, deformation, and mold growth. AquaTrack V supports quality control of fiber products through high-precision moisture measurement. 【Usage Scenarios】 - Moisture measurement of textile raw materials - Moisture management in the manufacturing process - Quality inspection of products 【Benefits of Implementation】 - Improved product quality - Reduction of defective products - Cost savings

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Aqua Track V for Electronic Components

Measuring the moisture content of polymers that affects insulation properties!

In the electronic components industry, moisture management of polymer materials is crucial to ensure product insulation. Moisture can reduce insulation properties and negatively impact product performance and lifespan. AquaTrack V enhances quality control by accurately measuring the moisture content of polymer materials, thereby suppressing the occurrence of defective products. 【Application Scenarios】 - Quality control of insulating materials - Moisture management in the manufacturing process - Quality control of recycled plastics 【Benefits of Implementation】 - Reduction of product issues due to insulation failures - Improvement in quality control - Cost reduction

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Aqua Track V for Cosmetics

Contributing to the preservation of cosmetic quality! Accurately measuring moisture content.

In the cosmetics industry, the stability of ingredients is crucial for maintaining product quality. In particular, moisture content significantly affects product degradation and microbial growth, necessitating strict management. Imbalances in moisture levels can lead to product deterioration and a reduction in shelf life. AquaTrack V accurately measures the moisture content of cosmetic ingredients and products, supporting quality control. 【Usage Scenarios】 * Quality control of cosmetic ingredients * Measurement of moisture content during the manufacturing process * Shelf life testing of products 【Benefits of Implementation】 * Stabilization of product quality * Optimization of shelf life * Reduction in complaint rates

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AquaTrack V for the Ink Industry

For ink quality control! Improve printability with a high-precision moisture meter.

In the ink industry, managing the moisture content of ink, which affects the quality of printed materials, is crucial. The moisture level of the ink significantly influences the finish of the print, the drying speed of the ink, and its shelf life. If the moisture content is not appropriate, it can lead to ink clogging, color unevenness, and printing defects, potentially resulting in a decline in the quality of the final product. AquaTrack V addresses these issues by accurately measuring the moisture content of the ink, ensuring stable quality in printed materials. 【Usage Scenarios】 - Quality control in the ink manufacturing process - Ink adjustment in printing environments - Checking the storage conditions of ink 【Benefits of Implementation】 - Improvement in print quality - Optimization of ink usage - Reduction of defective products

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AquaTrack V: High-Precision Moisture Meter for Fertilizer Management

Accurately measure the moisture content of fertilizers to support quality control and efficiency!

In the field of fertilizer management, accurately understanding moisture content is crucial for maintaining consistent fertilizer quality. Fluctuations in moisture levels can lead to quality degradation of the fertilizer and solidification during storage. The AquaTrack V improves quality management and reduces waste by accurately measuring the moisture content of fertilizers. 【Usage Scenarios】 - Moisture measurement in the fertilizer manufacturing process - Moisture management during fertilizer storage - Quality inspection of fertilizers 【Benefits of Implementation】 - Stabilization of fertilizer quality - Prevention of quality degradation during storage - Increased efficiency in the manufacturing process

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AquaTrack V for Recycling - Moisture Meter for Polymers

Quality control of recycled plastics! Supporting reuse with high-precision moisture measurement.

In the recycling industry, accurate measurement of moisture content is essential to maintain the quality of recycled plastics. Variations in moisture levels can lead to molding defects and reduced product strength, potentially compromising the quality of recycled materials. The AquaTrack V measures the moisture content of polymers with high precision equivalent to the Karl Fischer method, supporting quality control of recycled products. It can be used on-site with a 100V power supply, and handling of reagents is easy. 【Usage Scenarios】 - Manufacturing processes of recycled plastics - Quality control of recycled pellets - Prevention of quality degradation due to foreign matter contamination 【Benefits of Implementation】 - Improved quality through high-precision moisture measurement - Reduction of defective products and cost savings - Stable product supply - Enhanced traceability through data management

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Improving Polymer Durability with Aqua Track V for the Automotive Industry

Contributing to the improvement of automotive parts quality! Thorough moisture management of polymers.

In the automotive industry, the durability of components greatly influences the reliability of products. Particularly for polymer materials used in harsh environments, moisture content has a significant impact on durability, making accurate moisture management essential. Excess moisture can accelerate the degradation of polymers, potentially leading to cracking and deformation. The AquaTrack V serves as a crucial tool for accurately measuring the moisture content of polymers, helping to prevent these issues and enhance product quality and durability. 【Application Scenarios】 - Quality control of polymer materials at automotive parts manufacturers - Manufacturing processes for parts using recycled plastics - Material evaluation in research and development departments 【Benefits of Implementation】 - Improved product quality - Reduction of defective products - Cost savings - Gaining customer trust

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Virtual Extrusion Lab Series for the Automotive Industry

Pre- and post-integrated analysis software that achieves optimal design and stable molding.

In the automotive industry, weight reduction has become a crucial issue for improving fuel efficiency and reducing environmental impact. Extrusion molding technology can contribute to the manufacturing of lightweight and high-strength components, but trial and error during the design phase and molding defects can lead to increased costs. The "Virtual Extrusion Lab Series" simulates the extrusion molding process with easy operation, supporting optimal design and stable molding. This enables the efficient production of high-quality, lightweight automotive parts. 【Usage Scenarios】 - Shape optimization during the design phase of automotive parts - Early detection and countermeasures for molding defects - Streamlining material selection 【Benefits of Implementation】 - Shortened design period - Reduction in material costs - Decrease in waste due to molding defects

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Virtual Extrusion Lab Series for the Wire and Cable Industry

A pre-post integrated simulation software that achieves optimal design and stable molding.

In the wire industry, insulation performance is a crucial factor that affects the safety and reliability of products. Insulation failure can lead to leakage currents or short circuits, potentially resulting in serious accidents. In wire manufacturing, the uniformity of materials, temperature management, and die design during the extrusion molding process are key elements that influence insulation performance. The Virtual Extrusion Lab series addresses these challenges by enabling optimal design and stable molding, contributing to the reduction of defective products. 【Application Scenarios】 - Extrusion molding of insulation materials in wire manufacturing - Optimization of die design - Optimization of molding conditions - Identification and countermeasures for defect causes 【Effects of Implementation】 - Reduction of insulation failures - Reduction of material costs - Shortening of molding time - Improvement of product quality

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Virtual Extrusion Lab Series for Pipe Manufacturing

A pre-post integrated simulation software that achieves optimal design and stable molding.

In the pipe manufacturing industry, there is a constant demand for improvements in product quality and production efficiency. In particular, optimizing the flow rate of pipes is a crucial factor that affects product performance. Inadequate flow rate optimization can lead to insufficient pipe strength and molding defects, potentially resulting in increased costs. The Virtual Extrusion Lab Series enables easy operation for flow rate optimization and supports the resolution of challenges in the extrusion molding field. 【Usage Scenarios】 - Adjusting pipe flow rates - Improving molding defects - Reducing costs 【Benefits of Implementation】 - Improved product quality through optimal design - Cost reduction by decreasing molding defects - Time and cost savings through simulation

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Virtual Extrusion Lab Series for Building Materials

Pre- and post-integrated simulation software that achieves optimal design and stable molding.

In the building materials industry, the strength design of extruded products is crucial to ensure product durability and safety. Particularly for building materials exposed to climate change and external factors, a decrease in strength due to molding defects can lead to product quality deterioration and accidents. The "Virtual Extrusion Lab Series" solves challenges in extrusion molding with easy operation, supporting optimal design and stable molding. 【Usage Scenarios】 - Strength design of extruded products such as window frames and sashes - Quality control of extruded products such as exterior and interior materials - Cost reduction in the extrusion molding of various building materials 【Benefits of Implementation】 - Cost reduction through the reduction of molding defects - Quality improvement through optimization of product strength - Early detection of issues during the design phase

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Virtual Extrusion Lab Series for the Food Industry

Food shape molding simulation software that achieves optimal design and stable molding.

In the food industry, the shape of products is a crucial factor that influences consumer purchasing intent. In particular, the appearance and texture of food are essential in determining quality and brand image. However, designing food shapes through extrusion molding is a complex process that presents challenges such as increased time and costs due to trial and error, as well as the occurrence of defective products. The Virtual Extrusion Lab series simulates food shape design with easy operation, addressing these challenges. 【Application Scenarios】 - Food shape design - Optimization of the extrusion molding process - New product development 【Benefits of Implementation】 - Increased efficiency in shape design - Reduced defect rates - Cost savings

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