We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Elemental Analysis Equipment.
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Elemental Analysis Equipment Product List and Ranking from 28 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Jul 22, 2026~Aug 18, 2026
This ranking is based on the number of page views on our site.

Elemental Analysis Equipment Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Jul 22, 2026~Aug 18, 2026
This ranking is based on the number of page views on our site.

  1. アイテス Shiga//Electronic Components and Semiconductors
  2. 日東精工アナリテック Kanagawa//Industrial Machinery
  3. テカンジャパン Kanagawa//Pharmaceuticals and Biotechnology
  4. 4 一般財団法人材料科学技術振興財団 MST Tokyo//Testing, Analysis and Measurement
  5. 5 アナリティクイエナジャパン Kanagawa//Testing, Analysis and Measurement

Elemental Analysis Equipment Product ranking

Last Updated: Aggregation Period:Jul 22, 2026~Aug 18, 2026
This ranking is based on the number of page views on our site.

  1. Examples of cross-sectional observation of wire bonding with various compositions. アイテス
  2. The latest automatic dispenser Fluent from Tekan. テカンジャパン
  3. Automatic Sample Combustion Device 'AQF-5000H' 日東精工アナリテック
  4. 4 High-precision, high-functionality, low-resistance meter 'Lorestor GXII MCP-T710' 日東精工アナリテック
  5. 4 Automated Liquid Handling Device CyBio FeliX Series アナリティクイエナジャパン

Elemental Analysis Equipment Product List

31~60 item / All 146 items

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Analysis case: Composition distribution analysis of CIGS thin films

It is possible to evaluate the composition quantification, in-plane distribution, and depth distribution of thin films.

In the development aimed at enhancing the performance of CIGS thin-film solar cells, the optimization of the film formation process conditions for the light-absorbing layer is necessary, and controlling the compositional distribution of the CIGS composition has become important. This document presents cases where the composition of the deposited CIGS thin film was quantitatively analyzed with high precision using ICP-MS, evaluated for depth concentration distribution using SIMS, and assessed for in-plane concentration distribution on the substrate using XRF. Measurement methods: SIMS, ICP-MS, XRF, etching Product field: Solar cells Analysis objectives: Composition evaluation, identification, compositional distribution assessment, film thickness evaluation, product investigation For more details, please download the materials or contact us.

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[Analysis Case] Evaluation of Surface Metal Contamination in Plastic Containers

Evaluation of the composition and distribution of impurities in polymer materials using XRF.

XRF is an analytical method used to evaluate the composition and distribution of constituent elements. A notable feature is that it does not require any special pretreatment for measurements, and it can be performed non-destructively over a wide range from 1.2 mm to several centimeters. As an example of elemental analysis using XRF, we will introduce a case where measurements were conducted focusing on the metal components contained in polymer materials of chemical storage containers, investigating metal contamination that adhered to the container surface during the storage period.

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[Analysis Case] Composite Evaluation of Zn-based Buffer Layer Using X-rays

Evaluation of composition, bonding state, structure, and density is possible.

In the pursuit of improving the efficiency of CIGS thin-film solar cells, various buffer layer materials have been investigated for controlling the band structure and crystallinity from the light absorption layer to the transparent electrode. This presents a case study of various evaluations conducted using X-rays on Zn-based buffer layers deposited on a flattened substrate. Comparisons can be made between different levels based on deposition conditions and various processes after deposition.

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[Analysis Case] Investigation of Alkyl Chain Length Distribution of LAS

Analysis of LAS in powder detergents, liquid detergents, and household wastewater is possible.

Linear alkylbenzene sulfonic acid and its salts (LAS) are considered substances of concern due to their potential impact on living organisms. Therefore, they have been added to the environmental standards related to the conservation of aquatic organisms within the environmental standards concerning the preservation of living environments affected by water pollution, and a standard value has been established (March 27, 2013). Since approximately 90% of the usage of LAS is for household detergents, measurements were conducted on existing household detergents and household wastewater, and a comparison of the distribution of LAS alkyl chain lengths (C10 to C14) was performed.

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[Analysis Case] Evaluation of the Surface Silanol Groups

Quantitative evaluation of silanol groups is possible with TOF-SIMS.

The presence of silanol groups (Si-OH) on the surfaces of glass and wafers affects properties such as hydrophobicity and hydrophilicity. Therefore, it is likely to influence subsequent surface treatments, necessitating control. We will introduce a case where the quantification of silanol groups was performed using TOF-SIMS. To conduct the evaluation, calibration curves were created using several types of samples with different concentrations. In the measurement examples, the silanol groups on the surfaces of samples with different materials and conditions were compared. Measurement method: TOF-SIMS Product fields: LSI, memory, electronic components Analysis purpose: Composition evaluation and identification For more details, please download the materials or contact us.

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[Analysis Case] Analysis of the Binding State of Li in Lithium-Ion Secondary Batteries

By analyzing the waveform of other elements, it is possible to calculate the existence ratio of Li based on its bonding states.

In lithium-ion secondary batteries, the SEI layer (solid electrolyte interface) is a significant factor affecting the battery's lifespan, and it is important to understand the chemical species of Li contained within it. Li itself has a small chemical shift, making direct evaluation difficult; however, by performing waveform analysis to separate the states of the bonding partner elements (C, O, F, P), it is possible to calculate the presence ratio of Li in different bonding states. An evaluation of the state of Li before and after cycle testing revealed that after the test, the presence ratios of Li2CO3 and Li-POxFy increased compared to before the test.

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Analysis of components in conductive paint.

Evaluation of the shape, composition, and dispersion state of additives in the paint due to sample cooling.

Conductive paints are used to impart conductivity to insulating materials. Additives are included in the paint to give conductivity to the originally insulating paint itself. This document evaluates two types of conductive paints with different conductivities, focusing on the shape and composition of the additives in the paint, as well as the dispersion state of the additives.

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[Analysis Case] Component Analysis of Aluminum Foil Surface

Evaluate the difference between glossy surfaces and matte surfaces.

Aluminum foil is produced by rolling two sheets together, where the outer side in contact with the rollers has a glossy surface, while the inner side, where the aluminum sheets touch each other, has a matte surface. We compared the components present on the extreme surfaces of each side. Common organic secondary pollutants such as PDMS (polydimethylsiloxane), BHT (antioxidant), DOP (plasticizer), amines (m/z 182, 242), amides (m/z 256, 284), and carboxylic acids (m/z 255, 283) were not observed. There was a slight tendency for Fe and organic materials (such as hydrocarbons) to be stronger on the glossy side, while substances like SO4 showed a slightly stronger tendency on the matte side.

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[Analysis Case] Evaluation of Organic EL Device Degradation

Suppressing changes due to processing through cutting under atmosphere control.

A comparison was made between commercially available digital audio players equipped with organic EL, one that had undergone electrical power and experienced brightness degradation and one that had not. As a result, no differences were observed in the TOF-SIMS spectra between the samples.

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[Analysis Case] Evaluation of Cu Surface Discoloration Using AES and SEM-EDX

It is possible to perform elemental analysis with a shallow detection depth while conducting SEM observation.

SEM-EDX analysis and AES analysis are suitable for simple investigations of discoloration and foreign substances on metal surfaces. However, when the discoloration or foreign substances are thin or small, AES analysis, which provides information from very shallow areas of the surface (about 4-5 nm), is effective. The AES equipment owned by MST can acquire SEM images, allowing AES analysis to be conducted while confirming the areas of interest using SEM images. In this case study, we will present data comparing the evaluation of discoloration on the Cu surface using AES analysis and SEM-EDX analysis. Additionally, we will also present the results of AES depth direction analysis.

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[Analysis Case] Analysis of Dehydroascorbic Acid

It is possible to analyze dehydroascorbic acid in beverages.

In recent years, the market size for soft drinks has been expanding, and various studies are being conducted to further enhance their flavor. One report suggests that including an appropriate amount of dehydroascorbic acid in soft drinks can improve their taste. Dehydroascorbic acid is also produced by the oxidation of L-ascorbic acid, which is used as an antioxidant in beverages, so prompt analysis after opening the sample is necessary to obtain accurate values. This document measures the amount of dehydroascorbic acid over time after the sample has been opened.

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[Analysis Case] Valence Evaluation of Trace Metals in Ceramic Materials

It is possible to evaluate trace metals in ppm orders.

When designing and controlling the properties of various materials, it is very important to clarify the types and amounts of elements present in trace amounts in the base material, as well as their states of existence. The types and amounts of elements can be evaluated using methods such as SIMS (Secondary Ion Mass Spectrometry) and ICP-MS (Inductively Coupled Plasma Mass Spectrometry), but the evaluation of states of existence, such as valence and chemical bonding states, is effectively conducted using XAFS (X-ray Absorption Fine Structure) measurements with synchrotron radiation. This document introduces a case study where the valence of trace amounts of Ce in ceramic materials was evaluated as a measurement example.

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  • Ceramics
  • Wafer
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Technical Data: Evaluation of Element Distribution and Chemical State of SEI Film on Secondary Battery Anode

Composite approach to the cross-sectional structure and surface shape of the negative electrode, as well as elemental mapping images of the active material cross-section!

One of the causes of capacity degradation at the negative electrode of lithium-ion secondary batteries is the formation of a film called SEI (Solid Electrolyte Interphase), which is created by interfacial reactions between the active material and the electrolyte, resulting in various lithium salt compounds complexing on the surface of the active material. To improve battery performance, control over the composition, thickness, and chemical bonding state of the SEI film is required. This document presents examples of evaluations of the SEI film formed on the surface of carbon-based negative electrode active materials for automotive batteries using SEM, TEM, TEM-EELS, TOF-SIMS, and XPS. *For more details, please refer to the PDF document or feel free to contact us.*

  • Secondary Cells/Batteries
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Structural exploration of new organic semiconductor materials using MI.

It is possible to efficiently propose candidates for new materials using a data-driven approach.

Even when limited to organic materials, the combinations of possible compound structures are vast, and many new materials that exceed conventional properties remain in an unknown state. The exploration of new materials with effective properties from such a vast array of combinations is well-suited to approaches using machine learning. This document introduces examples of utilizing informatics from the setting of challenges to their achievement. By customizing compound datasets and the desired properties to fit the customer's challenges, it is possible to conduct compound exploration using informatics with a similar approach.

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[Analysis Case] Simulation of Bending Deformation of Carbon Nanotubes

It is possible to evaluate the shape change and strain energy when external forces are applied to nanomaterials.

Carbon nanotubes are lightweight nanomaterials with high strength and flexibility, and their excellent properties are expected to lead to applications in various fields. On the other hand, changes in physical properties associated with shape changes are also known, and evaluations of deformation and strain in response to external forces are required. This document introduces a case study of bending deformation simulations of single-walled carbon nanotubes using molecular dynamics calculations. By conducting simulations, it is possible to observe shape changes at the atomic level, which are difficult to evaluate from actual measurements, and to calculate strain energy.

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  • Secondary Cells/Batteries
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Promotion of data-driven research and development (MI)

We will achieve efficiency in research and development through materials informatics (MI).

MI refers to an approach that utilizes information science and technology in the field of materials research and development. It can be adopted by any company or organization involved in manufacturing and other industries. By leveraging existing data, it aims to achieve efficient experimental processes and acquire new insights that cannot be obtained solely through human knowledge and experience.

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Case studies related to EV (Electric Vehicle) analysis

Analyze the EVolution of EV development!

We provide suitable analysis menus for essential components of EVs, including onboard batteries and devices.

  • Contract measurement
  • Elemental Analysis Equipment

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[Analysis Case] Evaluation of Two-Dimensional Electron Gas Layer in Normally Off GaN HEMT

We can offer a one-stop solution for comprehensive analysis of product research.

GaN-based high electron mobility transistors, known as GaN HEMTs (High Electron Mobility Transistors), utilize an AlGaN/GaN heterostructure to achieve a two-dimensional electron gas layer (2DEG), resulting in high electron mobility. They are used in applications such as fast chargers, leveraging these characteristics. This document presents the disassembly and evaluation of normally-off GaN HEMT devices. We will introduce a case study that employs a combination of analytical methods to gather comprehensive insights about the samples. Measurement methods: SIMS, TEM, SCM, SMM. Product field: Power devices. Analysis objectives: Trace concentration measurement, shape evaluation, film thickness evaluation, structural evaluation, product investigation. For more details, please download the document or contact us.

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What can be understood from first-principles calculations.

We will introduce the target of analysis, the physical property information obtained, and examples of analysis.

Analysis targets (Information such as composition and crystal structure is required for calculations) ? The main analysis targets are systems with periodicity, such as crystals. ? Calculations for systems with amorphous structures, surfaces, and interfaces are also possible. Obtained physical property information ? Crystal structure parameters (lattice constants, atomic arrangements, etc.) ? Electronic structure and spin states (charge distribution, band structure, Fermi surface, magnetic moments, etc.) ? Chemical bonding states such as covalent bonds and ionic bonds ? Stable structures and defect formation energies when lattice defects such as atomic substitutions and vacancies are present ? Formation energies and atomic arrangements of surfaces and interfaces ? Information related to chemical reactions, such as activation energies and structures of intermediates ? Electronic response characteristics such as dielectric functions, electrical resistivity, and Seebeck coefficients ? Thermodynamic quantities of solids, such as specific heat ? Various spectroscopic spectra (XPS, XAFS, etc.)

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[Analysis Case] Wide-area Quantitative Mapping using XPS

It is possible to evaluate the composition distribution in an area of up to 70×70mm.

This is an example of wide-area quantitative mapping using XPS. We evaluated organic residue on silicon wafers using the following procedure. To graph the amount (atomic concentration) rather than peak intensity, it is less affected by sample roughness and allows for data acquisition over a wide area. It is suitable for investigating organic and inorganic contamination, discoloration, surface treatments, etc., as it enables an overview assessment of the compositional distribution on the sample surface.

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Notice of Website Renewal

To a more user-friendly and easier-to-read homepage.

We have completely renewed our homepage. In this renewal, we have revamped the design and structure to make it more user-friendly and comfortable for everyone, while enhancing the information provided. ◆ Key Points of the Renewal - Improved accessibility to information We have reviewed the common navigation across all pages and improved the menu structure to make it easier to understand. The structure allows for intuitive access to the necessary information. - Comfortable viewing in all environments In addition to PCs, we have made the site compatible with various viewing environments, including smartphones and tablets. You can enjoy a comfortable experience regardless of location or device. - Enhanced visual design for better visibility We have reviewed the overall color scheme and layout of the site, refreshing it to a more understandable and sophisticated design. ▼ You can view it here https://www.mst.or.jp/ We would be grateful if you could take a look. We will continue to strive for further enhancement of our content, and we appreciate your continued support.

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Shibasaki Manufacturing Co., Ltd. Business Introduction

We are working on the development of custom dispensing machines that reflect our customers' needs!

Shibasaki Manufacturing Co., Ltd. is engaged in the design, development, manufacturing, and sales of various automation devices, primarily in the medical and bio-research fields, to realize the product specifications planned by our customers and provide products that satisfy them. We are committed to a consistent system that handles everything from planning to design, parts manufacturing, assembly and adjustment, software production, and inspection almost 100% in-house. Our company offers a range of best-selling dispensing devices, including the ultra-compact and ultra-light dispensing device "SGBLD-10," as well as "MP-200" and "PTD-700." If you need custom dispensing machines that reflect customer needs or the development of next-generation dispensing machines, please leave it to us. 【Business Activities】 ■ Design and manufacturing of clinical testing equipment, various measuring instruments, and manufacturing and sales of various machine parts. *For more details, please refer to our catalog or feel free to contact us.

  • Other dispensing equipment
  • Other analytical and testing equipment
  • Other Physics and Chemistry Equipment
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Argon gas compatible model Organic element analyzer

Smart organic element analysis of carbon, hydrogen, nitrogen, and sulfur! Organic element analysis device UNICUBE.

UNICUBE is an organic element analysis device for trace samples that combines high scalability and robustness. Its high gas separation performance, based on our proprietary temperature-programmed desorption technology (Direct TPD), provides reliable measurement results. It is capable of measuring samples with an elemental ratio of up to 12,000:1 (C:N ratio / C:S ratio). <Features> ● From high-purity chemicals of 0.1 mg to heterogeneous soils of 1 g ● Capable of measuring up to 6 elements (C, H, N, S, O, Cl: O and Cl are optional) ● Maintenance without tools ● Standard equipped with an auto-sampler (for 120 samples) ● Blank-free ball valve (patented technology) ● Multi-language support, including Japanese display

  • Analytical Equipment and Devices
  • Elemental Analysis Equipment

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Universal organic element analysis device capable of measuring all samples.

Gold standard for C H N S/O analysis compatible with argon gas.

Organic Elemental Analyzer vario EL cube A versatile type capable of measuring from trace to semi-macro samples. Unmatched performance condensed from over 125 years of experience and expertise. This device can measure all types of samples, from trace high-purity chemicals to 1g soil samples, with just one unit. Selective adsorption: The APT method uses three types of adsorption-desorption columns that selectively adsorb CO2 from carbon, H2O from hydrogen, and SO2 from sulfur. Nitrogen detection: Nitrogen-derived NOx is reduced to N2 gas and is detected first without being adsorbed by the column. High adsorption capacity: The adsorption-desorption columns can achieve up to 250 times the adsorption capacity of typical GC columns, allowing for the analysis of samples containing up to 500mg of carbon. Sharp detection peaks: Rapid heating of the column results in sharp detection peaks, achieving an excellent S/N ratio. Complete peak separation: Each component's heating and desorption can be fully controlled, allowing for complete peak separation regardless of elemental content or ratios. The C/N and C/S ratios can be accurately separated and analyzed up to a maximum of 12,000:1.

  • Analytical Equipment and Devices
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Highly rated in sample measurements containing salt - Nitrogen and protein analysis equipment.

A combustion method device (Dumas method) with low running costs, easy operation, and simple maintenance, compatible with argon gas.

The rapid MAX N exceed is a groundbreaking combustion-type protein and nitrogen analysis device that employs the improved Dumas method along with EAS REGAINER and crucible technology. It significantly reduces running costs and allows for continuous unmanned operation regardless of the type or amount of samples, enabling efficient use. Additionally, the use of a large-capacity crucible allows for measurement data to be obtained with high precision and sensitivity, regardless of the sample type. <Features of the combustion method device> ● Large-capacity samples up to 5 mL for liquids and 5 g for solids ● User-friendly operation ● Auto-sampler standard equipped with 90 samples ● Easy sampling (solid, liquid, paste, low concentration, high salt concentration) ● Low running costs ● Carrier gas is inexpensive argon gas (helium models and argon-helium compatible models available) ● Rapid speed (5 minutes per measurement) ● Capable of measuring nitrogen not only in food but also in chemical products ● Multi-language support including Japanese display

  • Analytical Equipment and Devices
  • Elemental Analysis Equipment

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Polymer material "Fluorine product rod"

Rod material with excellent resistance to chemical corrosion, flame retardancy, and insulation! For gaskets, joints, etc.!

The polymer material "Fluorine Product Rod" has a glossy surface and is a flat rod. There are no bubbles, delamination, mechanical damage, or obvious impurities. The product size is uniform and has stable physical and chemical properties. At room temperature, it excels in chemical corrosion resistance, flame retardancy, and insulation, with low water absorption and friction coefficient. It can be directly lathed to manufacture products such as gaskets and joints. It can be applied in a wide range of industries including petroleum, chemical engineering, pharmaceuticals, textiles, dyeing, electroplating, metallurgy, machinery, aviation, ceramics, and bridge construction. 【Features】 ■ Chemical corrosion resistance ■ Flame retardancy ■ Insulation *For more details, please refer to the PDF document or feel free to contact us.

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Polymer Material "Fluorine Material Pipe"

Excellent flame resistance and insulation! Capable of directly machining products such as gaskets and joints!

The polymer material "Fluorine Material Pipe" is a pipe material with a glossy surface. It is free from bubbles, delamination, mechanical damage, and obvious impurities. It has a wide temperature range, excellent chemical corrosion resistance, flame retardancy, and insulation properties, with low water absorption and friction coefficient. It can be applied in a wide range of industries such as petroleum, chemical, pharmaceuticals, textiles, dyeing, electroplating, metallurgy, machinery, aviation, ceramics, and bridge construction. 【Features】 ■ Glossy surface ■ No bubbles, delamination, mechanical damage, or impurities ■ Wide temperature range ■ Low water absorption and friction coefficient ■ Capable of directly machining products such as gaskets and joints *For more details, please refer to the PDF document or feel free to contact us.

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Polymer material "Fluorine material film"

Applicable to a wide range of industries such as petroleum, electroplating, machinery, aviation, ceramics, and bridge construction!

Our company handles polymer materials, specifically "fluoropolymer films." We can manufacture products such as piston rings and ball valve washers by machining or cutting fluoropolymer components. These materials have a wide temperature range, excellent chemical corrosion resistance, flame retardancy, and insulation properties, with low water absorption and friction coefficients. Specifically, they possess characteristics such as corrosion resistance (excluding dissolved alkali metals, high temperatures, and high-pressure fluorine) and resistance to degradation. [Product Examples] ■ PTFE lathe film ■ Filled PTFE lathe film ■ PTFE color-oriented film ■ PFA film ■ ETFE film *For more details, please refer to the PDF materials or feel free to contact us.

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Polymer material "Fluorine material gasket"

Enhancement of hardness, reduction of friction, extension of service life, and expansion of temperature and environmental adaptability are possible!

Our company handles polymer materials, specifically "fluoropolymer gaskets." We can machine or cut fluoropolymer components to manufacture products such as flat gaskets, V-shaped gaskets, piston rings, and ball valve washers. These materials have a wide temperature range, excellent chemical corrosion resistance, flame retardancy, and insulation properties, with low water absorption and friction coefficients. Specifically, they possess characteristics such as corrosion resistance (excluding dissolved alkali metals, high temperatures, and high-pressure fluorine) and resistance to degradation. The modified "PTFE gaskets" can enhance hardness, reduce friction, extend service life, and expand the range of temperature and environmental adaptability. [Product Examples] ■ PTFE Gaskets ■ Filled PTFE Gaskets ■ PTFE Diaphragms ■ PTFE Valve Seal Gaskets *For more details, please refer to the PDF document or feel free to contact us.

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