We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Analytical Equipment.
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Analytical Equipment Product List and Ranking from 266 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Oct 22, 2025~Nov 18, 2025
This ranking is based on the number of page views on our site.

Analytical Equipment Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Oct 22, 2025~Nov 18, 2025
This ranking is based on the number of page views on our site.

  1. 一般財団法人材料科学技術振興財団 MST Tokyo//Testing, Analysis and Measurement
  2. ライフィクスアナリティカル Osaka//Pharmaceuticals and Biotechnology
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  4. 4 ビーエルテック Tokyo//Testing, Analysis and Measurement
  5. 5 サーモフィッシャーサイエンティフィック株式会社/Thermo Fisher Scientific K.K. Tokyo//Testing, Analysis and Measurement

Analytical Equipment Product ranking

Last Updated: Aggregation Period:Oct 22, 2025~Nov 18, 2025
This ranking is based on the number of page views on our site.

  1. Nanoparticle analysis device "TaylorSizer" ライフィクスアナリティカル
  2. iCAP PRO Series ICP Emission Spectrometer サーモフィッシャーサイエンティフィック株式会社/Thermo Fisher Scientific K.K.
  3. Alcohol analysis device for sake Alcolyzer3001 SAKE
  4. 4 Sake FT-IR component analysis device "OenoFoss2"
  5. 5 Trace Sulfur Analysis Device (Old Type) 日東精工アナリテック

Analytical Equipment Product List

676~690 item / All 1224 items

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Environmental Analysis Solutions

Applications and devices for environmental analysis

**Water and Environmental Water Analysis** With practical measurement procedures and high sensitivity, reliable and precise analytical results can be obtained. It is easy to monitor drinking water, groundwater, environmental water, pool water, etc., and effects that meet or exceed general standards and regulations can be expected. **Wastewater Analysis** For urban wastewater, industrial wastewater, landfill leachate, etc., the effort required for sample pretreatment and particle processing is significantly reduced, shortening the measurement time for samples. **Soil, Waste, and Sludge Analysis** Our solid analysis solutions expedite sample preparation and enhance the accuracy of analytical results. Our analytical equipment is ideal for analyzing household and industrial waste containing hazardous and toxic substances, such as soil from excavation and farmland, and sediments and sludge from wastewater treatment plants. **Air Analysis** Analytik Jena's elemental and biological analysis solutions provide streamlined processes and reliable data for pollution prevention. Our analytical equipment is particularly useful for monitoring industrial processes in thermal power plants and evaporative cooling systems.

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  • Analytical Equipment and Devices

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Total Organic Carbon Analyzer (TOC) "multi N/C Series"

For TOC measurement of environmental water, drinking water, and wastewater! Reduces time and costs with high quality and ease of use.

The "multi N/C x300 series" is an analytical device that is easy to use and capable of providing highly reliable measurements across various fields. With intuitive user guidance and a robust design, it is well-suited for routine measurements. It also excels in durability due to high-quality materials and durable components. Thanks to the versatility of the modules, it can accommodate various applications, from surface water and wastewater in the environmental sector to ultrapure water measurements in semiconductors and power plants. 【Features】 ■ The beam focus NDIR detector has a high radiation light density, offering high sensitivity and precision. ■ Guarantees stable measurements over long periods. ■ Easy creation of calibration curves from a single standard. ■ Fewer consumable parts, making replacements simple. *For more details, please feel free to contact us.

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  • Analytical Equipment and Devices

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Sulfur and Nitrogen Analysis Device 'compEAct'

Make lab life easier and safer! It has a low detection limit and complies with various standards and regulations.

The 『compEAct』 is a device that provides rapid and cost-effective measurement of sulfur and nitrogen in liquid, gas, and LPG samples for refineries, QC, and contract laboratories. Despite its small size, it delivers high performance, contributing to cost reduction and increased productivity through high throughput, fast analysis times, and user-friendly software. By saving time and simplifying workflows, it meets the requirements of the oil and gas industry, which is facing increased regulations and skill shortages. It is also suitable for quality control in chemicals and polymers. 【Features】 ■ Economical and efficient ■ User-friendly and functional ■ Safety and compliance ■ Accurate and highly sensitive *For more details, please refer to the PDF document or feel free to contact us.

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  • Other measurement, recording and measuring instruments

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High-throughput automatic dispensing device CyBio Well vario

A high-precision liquid handling system designed for high-throughput applications.

The CyBio Well vario is an automatic pipetting machine that uses interchangeable multi-channel pipetting heads to perform various dispensing operations with high precision on 96, 384, and 1536 plates. It enables reliable and highly accurate dispensing, from dispensing into microplates to micro-spotting on MALDI-MS plates. Features: - Bulk dispensing using interchangeable 96/384/1536 channel heads - High precision across all volume ranges achieved through unique chip sealing technology - Maximum flexibility with interchangeable pipetting heads and accessories - Reduction in reagent costs through accurate micro-dispensing - Compatibility for integration into automation systems Pipetting tips: Disposable / Fixed (Stainless Steel/Ceramic) / Capillary Plate formats: 96, 384, 1536 Number of plate positions: 3, 4, 5, 10 positions

  • Dispenser

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Total Organic Carbon Analyzer (TOC) multi N/C 3300

A versatile model that supports a wide range of applications.

The multi N/C 3300 is an all-around model optimized for a wide range of applications to achieve the highest throughput. It features high throughput in NPOC measurements through parallel purging, flow injection without carryover, and a wide-range NDIR detector with a long-term warranty, among various other functions. With a rich array of accessories and intuitive software, operational efficiency is enhanced, yielding results suitable for various applications. 【Features】 ■ High-efficiency and reliable sample oxidation ■ High productivity ■ Beam focus NDIR ■ Signal optimization (VITA technology - combining gas retention time and integration in TOC analysis) ■ Self-check system (SCS)

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  • Analytical Equipment and Devices

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Total Organic Carbon Analyzer (TOC) multiN/C 4300 UV

It is an organic carbon analysis device (TOC analyzer) that boasts outstanding sensitivity using a wet ultraviolet oxidation method.

This is a high-sensitivity TOC meter for detecting ultra-trace levels of TOC values. With a high-output UV reactor and a high-sensitivity wide-range NDIR, it can rapidly and completely decompose all carbon compounds even in challenging matrices such as electroplating baths. 【Features】 ■ Efficient and reliable sample oxidation ■ High productivity ■ Beam focus - NDIR detector ■ Signal optimization (VITA technology - combination of gas retention time and integration in TOC analysis) ■ High-temperature combustion (HTC) for solid TOC analysis ■ Self-check system (SCS) ■ FDA-compliant software

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  • Analytical Equipment and Devices

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Total Organic Carbon Analyzer (TOC) multi N/C 2300

A specialist for TOC/TNb analysis of samples with a high particle count and small volume.

The multi N/C 2300 is a space-saving TOC/TNb analysis device that particularly demonstrates its strengths in the field of environmental analysis. Equipped with VITA, a beam focus NDIR detector, and a catalytic high-temperature combustion function up to 950°C, the multi N/C 2300 employs an ideal injection technique suitable for samples containing particles. With direct syringe injection, the path the sample travels is short, making it a device that is less prone to carryover. Additionally, the injection volume starts from 10µL, allowing for measurements even when only small amounts of sample are available, making it specialized for cases with high levels of suspended matter or limited sample quantities. 【Features】 ■ Septum-free direct injection technology ■ Optimal for small sample sizes ■ Particle handling capability and effective cleaning ■ Space-saving design that allows integration of an auto-sampler ■ Optional double furnace enables analysis of both liquid and solid samples with a single unit

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  • Analytical Equipment and Devices

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Inductively Coupled Plasma Optical Emission Spectrometer (ICP-OES)

Compact Size. Peak Performance.

Thanks to its unique instrument design and stable plasma flame, the PlasmaQuant 9200 series offers not only the highest resolution and best detection limits for any sample type, but also the smallest instrument footprint. In combination with unmatched reliability and easy handling, Analytik Jena's new ICP-OES instrument will be the key for your successful labwork. 【Features】 - Unmatched resolution, best detection limits, long-term stability, and a wide spectral range - Flexible plasma view and up to 1,700W plasma output - Reduces laboratory space by over 40% compared to conventional ICP-OES - Device startup time is within 10 minutes An optical emission spectrophotometer that is designed for those who expect nothing less than the highest precision, reliability and sensitivity. Whether it is cutting edge research, finding every trace in quality control, or anything in between. The PlasmaQuant 9200 series is at your side. ●Analytical Excellence The PlasmaQuant 9200 series combines market-leading resolution with unsurpassed matrix tolerance – that way, your results meet the highest analytical standards. - With unparalleled resolution of 2 pm @ 200 nm, the peak is always in plain sight - Best detection limits with long-term stability for reliable results - Adapt to any challenge with the most extensive spectral range available – 160 to 900 nm for ultimate versatility ●Space-Saving Powerhouse Quick instrument start-up, robust plasma and the smallest footprint on the market – with the PlasmaQuant 9200 series you not only save time and money, but also valuable lab space. - We reduced the instrument size by more than 40 percent, making the PlasmaQuant 9200 the smallest instrument in its class, with only 60 cm width - Master any matrix with up to 1,700 Watt of plasma power - Save time and resources with quick boot-up time of less than 10 minutes ●Simply Reliable Effortless handling, easy consumable replacement, and long-term reliability. The PlasmaQuant 9200 series ensures carefree use, application safety, and full flexibility. - Mix and match your torch – Depending on your samples, use the material that fits best, with our completely modular solution - The Dual View PLUS allows to measure each sample with the optimum plasma observation modes to avoid repetitive sample measurements - With a tailor-made service contract, you are always on the safe side, be it for regular maintenance for more sustainability or quick help when you need it

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  • Spectroscopic Analysis Equipment
  • Analytical Equipment and Devices

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TMA (Thermomechanical Analysis)

Information on thermal expansion, thermal contraction, and glass transition temperature can be obtained in multiple measurement modes!

TMA (Thermomechanical Analysis) is a method that measures the dimensional changes of a sample while applying a constant load and varying the sample temperature. It provides information on thermal expansion, thermal contraction, glass transition temperature, and more. The temperature range is from -150 to 1000°C, with a maximum size of Φ10×25mm (compression mode, needle insertion mode) and a maximum size of 0.7mm×5mm×20mm (tensile mode) as measurable conditions. This document includes case studies of TMA analysis for semiconductor encapsulants. 【Features】 ■ Thermomechanical measurement ■ Applying a constant load to the sample while varying the sample temperature ■ Measuring the dimensional changes of the sample ■ Obtaining information on thermal expansion, thermal contraction, glass transition temperature, etc. ■ Multiple measurement modes *For more details, please refer to the PDF document or feel free to contact us.

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State analysis using EPMA

Estimate bonding states by comparing with standard spectra! Introducing state analysis using EPMA.

In the state analysis using EPMA, changes (shifts and shapes) in the characteristic X-ray peak wavelengths due to differences in the chemical bonding states (ionic valence, crystal structure, coordination number) of oxides and silicates are utilized to estimate the bonding states by comparing with standard spectra. In the identification of two types of copper oxides, when distinguishing between black CuO and red Cu2O by color is difficult, especially for microscopic objects that require an electron microscope, it is possible to grasp the oxidation state using EPMA. Additionally, while XPS is effective for measuring thin oxide layers on aluminum surfaces, EPMA can be used to understand the oxidation state of small foreign particles, bulk materials, and composites. 【Device Specifications】 ■ Manufacturer: JEOL Ltd. Jeol-8200 ■ Analysis Method: Wavelength Dispersive X-ray Analysis (WDX) ■ Analyzable Elements: B to U ■ Energy Resolution: 20 eV (EDX is approximately 130 eV) ■ Detection Limit: 0.01% and above ■ Maximum Sample Size: 100x100 mm *For more details, please refer to the PDF document or feel free to contact us.

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  • Analysis Services
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EPMA analysis

Supports 100×100mm size! The movable stage allows for extensive mapping.

EPMA analysis has good energy resolution and detection sensitivity, and is particularly excellent for quantitative analysis of trace components and map analysis. It can accommodate sizes of 100×100mm, allowing for extensive mapping. In the example of foreign substance analysis on indium-tin oxide thin films, it showed better energy resolution, detection limits, and PB ratio compared to SEM-EDX. Additionally, it enables the detection of trace elements and analyses that are difficult to perform with SEM-EDX. 【Features】 ■ Good energy resolution and detection sensitivity ■ Particularly excellent for quantitative analysis of trace components and map analysis ■ Wide-range mapping possible with movable stage ■ Compatible with sizes of 100×100mm *For more details, please refer to the PDF document or feel free to contact us.

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Data: Outgassing analysis using headspace GC-MS analysis method.

Publication of headspace GC-MS analysis method and case study of outgassing component analysis of liquid crystal panel polarizers!

If solvents, low molecular organic substances, or unreacted materials remain in the constituent materials, packaging materials, or cushioning materials of a product, they may outgas, diffuse, or permeate into the constituent materials, potentially affecting the product's lifespan, characteristics, and the environment or human health. The headspace method of GCMS is effective for qualitative and quantitative analysis of trace residual substances. This document presents a case study of the qualitative analysis of outgassing components from polarizers used in liquid crystal panels. We encourage you to read it. [Contents] ■ Headspace GC-MS analysis method ■ Analysis of outgassing components from polarizers in liquid crystal panels *For more details, please refer to the PDF document or feel free to contact us.

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Detection sensitivity due to differences in acceleration voltage during SEM-EDX analysis.

Appropriate acceleration conditions for accurate analysis results! The detection depth of EDX changes with differences in acceleration voltage!

This presentation introduces the detection sensitivity related to differences in acceleration voltage during SEM-EDX analysis. When analyzing the gold-plated surface of a typical printed circuit board (PCB), there are instances where the underlying nickel is detected even though it is not exposed. This is related to the scattering depth of the electron beam, and it is essential to set appropriate acceleration conditions to obtain accurate analysis results. In this study, we conducted an examination of the EDX detection depth based on differences in acceleration voltage using Monte Carlo simulations. This is just one example, but it is important to consider how electrons scatter while setting the acceleration voltage to achieve accurate analysis results. [Test Board Overview] - The sample used is a gold-plated pad from a typical printed circuit board (PCB). - The layer structure consists of nickel plating and gold plating on copper wiring. - The thickness of the gold plating, as observed in cross-section, is 212 nm. *For more details, please refer to the PDF document or feel free to contact us.*

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Analysis of Polymer Structural Changes

Evaluate higher-order structures using analytical methods! Raman analysis is also effective for analyzing polymer structures.

I would like to introduce "Analysis of Polymer Structural Changes." This document includes "Evaluation of Polymer Higher-Order Structures by Raman Spectroscopy" and "Structural Changes of Polymer Chains." The molecular structure of polymers affects their properties, influencing the physical characteristics of polymer products. We evaluated the higher-order structures formed by the aggregation of polymer chains using analytical methods. Please take a moment to read it. [Contents] ■ Evaluation of Polymer Higher-Order Structures by Raman Spectroscopy ■ Structural Changes of Polymer Chains *For more details, please refer to the PDF document or feel free to contact us.

  • Other polymer materials

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[Data] ICP Emission Spectroscopy Analysis (ICP-AES)

We will detect and analyze the atomic emission that occurs when an atom returns from an excited state to its ground state!

In ICP emission spectroscopic analysis, it is possible to detect multiple metal elements contained in a sample simultaneously. This document introduces examples of the analysis of trace metal elements contained in liquid crystals. It includes the principles and overview of ICP-AES analysis as well as measurement examples. Please feel free to contact us regarding the sample state or the elements to be analyzed. [Contents] ■ Principles and Overview of ICP-AES Analysis ■ Measurement Example: Qualitative Analysis of Metal Elements in Liquid Crystal Panels *For more details, please refer to the PDF document or feel free to contact us.

  • Contract Analysis

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