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
  3. null/null
  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

706~720 item / All 1224 items

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Automatic Dispensing Machine Cabinet Mountable Type 'EDR-24LX'

There are a total of 7 types of channels! We support various cell culture processes using multi-dishes.

The "EDR-24LX" is a compact workstation that can be used for various applications such as automatic dispensing, automatic dilution, and sampling. The control software is entirely in Japanese, allowing for intuitive operation via a tablet PC. Additionally, it can be easily installed in clean benches and safety cabinets, and its compact size allows for easy removal when not needed. 【Features】 ■ Capable of various applications such as automatic dispensing, automatic dilution, and sampling ■ Supports various cell culture processes using multi-dishes ■ Lightweight and compact, easily installable in clean benches and cabinets ■ The head can be replaced with a single touch ■ Available in a total of 7 types with channel counts of 1ch, 6ch, 12ch, and 24ch *For more details, please refer to the PDF document or feel free to contact us.

  • Other physicochemical equipment

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Automatic Dispensing Device: High-Speed Continuous Dispensing and Dilution Processing Type 'EDR-96RX'

Introducing the compact design auto diluter and dropper that takes up no space.

The "EDR-96RX" is a continuous automatic dispensing and dilution device suitable for clinical testing, capable of handling reagent dispensing into 96-well microplates, specimen dispensing and transfer tasks, and creating dilution series with 8-channel/12-channel processing per row. The stacker section can hold 20 microplates and 5 tip racks. Additionally, the stage rotation mechanism allows for dispensing and dilution tasks in both vertical and horizontal directions of the plates. 【Features】 ■ Intuitive and user-friendly dedicated PC software available ■ Dispensing and dilution pattern settings using CSV files ■ Management of reagent remaining amounts, tip disposal limits, work status, etc. ■ Log management function suitable for traceability ■ Compact design that saves space *For more details, please refer to the PDF document or feel free to contact us.

  • Dispenser

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Desktop Space-Saving Automatic Dispensing Device 'EDR-384SX-6'

Supports 0.1μL dispensing! Even when connecting dedicated plate stackers on both sides, it takes up minimal space.

The "EDR-384SX-6" is a 6-stage workstation that has been introduced as a compact version of the popular 12-stage workstation "EDR-384SX." The dispensing unit can be easily replaced with a one-touch mechanism. It does not take up much space even when connecting dedicated plate stackers on both sides. Additionally, it is equipped with the control software "ICS," which has been thoroughly designed for ease of use with a simple start. 【Features】 ■ Compatible with 96/384/1536 well plates ■ Supports double-range heads ■ Compact version ■ Can accommodate up to 6 micro well plates and tip racks ■ Easily changeable channel numbers and dispensing ranges *For more details, please refer to the PDF document or feel free to contact us.

  • Other physicochemical equipment

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Automatic Dispensing Device - Compact 8-channel Variable Pitch Type 'EDR-8LZ'

Achieves space-saving with a compact design, and can also be installed in safety cabinets! It is a dual-function model that combines high-precision micro dispensing and large-volume dispensing!

The "EDR-8LZ" features 8 stages, allowing for a variety of stage layouts. It is compatible with a wide range of containers, from centrifuge tubes to 384-well plates. It can be used with any number of channels from 1ch to 8ch, enabling continuous operations such as dispensing rare reagents with 1ch and samples with 8ch. The newly adopted "double range mechanism" in the head section eliminates the need for head replacement. By using different syringes according to the volume, it allows for high-precision dispensing from small to large volumes. Being produced domestically ensures a stable supply of consumables. 【Features】 ■ Compact design ■ Abundant stages ■ Compatible with various containers ■ No need for head replacement & realization of high-precision micro-dispensing ■ Drip prevention shutter ■ Equipped with liquid level detection functions using various sensors *For more details, please refer to the PDF document or feel free to contact us.

  • Automatic Dispensing Device

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Automated Dispensing Device Workstation Type 'EDR-384GX'

Are you ready to break free from the tedious purification of antibodies and proteins and create new value?

We would like to introduce the 'EDR-384GX' that we handle. For high-throughput screening with a small number of samples, the combination of PhyTip and a 96-channel liquid handler is suitable. Purification can also be done with your preferred number of samples. Additionally, we offer the compact 8-channel type 'EDR-8LZ', which is suitable for automation of multiple samples. 【Features】 <EDR-384GX> ■ Automation of each process that requires processing time, such as low-speed pipetting ■ Achieves high throughput by improving chip exchange speed and increasing dispensing head speed ■ The device has a large opening, making it suitable for automation integration *For more details, please refer to the PDF document or feel free to contact us.

  • Automatic Dispensing Device

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SIMS (Secondary Ion Mass Spectrometry)

This is a method for qualitative and quantitative analysis of components contained in a sample by detecting secondary ions and measuring the detection amount at each mass.

When ions are incident on the sample surface, various particles such as electrons, neutral particles, and ions are emitted from the sample surface. SIMS is a technique that detects these ions and measures the detection quantity at each mass to perform qualitative and quantitative analysis of the components contained in the sample. - High sensitivity (ppb to ppm) - Analysis of all elements from H to U is possible - Wide detection concentration range (from major component elements to trace impurities) - Quantitative analysis using standard samples is possible - Depth direction analysis is possible - Evaluation with depth direction resolution of a few to several tens of nm is possible - Measurement of micro-regions up to a few micrometers in size is possible - Isotope analysis is possible - Destructive analysis

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[TOF-SIMS] Time-of-Flight Secondary Ion Mass Spectrometry

This is a method for structural analysis of the sample surface. Due to its sensitivity to the surface compared to other analytical devices, it is suitable for identifying organic contaminants on the very surface.

This is a method for structural analysis of sample surfaces. It is suitable for identifying organic contamination on the very surface due to its sensitivity compared to other analytical devices. Using a sputter ion source, it is possible to analyze the distribution of inorganic and organic materials in the depth direction. - Structural analysis and identification of organic and inorganic compounds are possible. - Coordination data from foreign substance inspection devices can be linked. - Qualitative analysis is possible from micron-order microforeign substances to several centimeters. - It is possible to analyze the very surface with high sensitivity. - Image analysis is possible. - Qualitative analysis of depth direction analysis is possible.

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Inductively Coupled Plasma Mass Spectrometry (ICP-MS)

This is a method for inorganic element analysis using inductively coupled plasma (ICP) as the excitation source.

ICP-MS allows for relatively easy preparation of standard samples that are difficult to produce for solid analysis, as it analyzes solutions. Therefore, it is frequently used for accurately quantifying trace inorganic elements in solutions. - It can detect the lowest concentrations (ppt or sub-ppt levels) due to its high sensitivity and low background, making it the most effective instrument for inorganic element analysis. (*: ppt: 10^-12 g/g) - It allows for flexible preparation of standard samples (standard solutions) that serve as a reference for quantitative analysis, resulting in lower uncertainty in the results. - It enables qualitative analysis by measuring many elements of the periodic table simultaneously. Additionally, it has a wide dynamic range, allowing for simultaneous analysis of major and trace components.

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[Analysis Case] Evaluation of the Depth Distribution of B near the Si Surface using SIMS

High-precision B profile analysis through sample cooling.

The concentration distribution of boron (B) in silicon (Si), which significantly affects the characteristics of device design, can be evaluated with high sensitivity and high depth resolution through SIMS analysis. However, it has been found that under general analysis conditions, distortions occur in the concentration distribution of B due to measurement-related factors. In MST, it has been confirmed that sample cooling is effective for correcting these distortions, enabling a more accurate evaluation of the concentration distribution.

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[Analysis Case] LC/MS Analysis of Ergothioneine

Evaluation of the yield and purification level of amino acids derived from natural sources.

Ergothioneine, an amino acid homologue found abundantly in edible mushrooms of the Pleurotaceae family, is gaining attention in the fields of food, medicine, and beauty as a natural substance with high antioxidant properties. Recently, chemical synthesis techniques have also been established, but there is still a need for the development of high-efficiency separation and purification techniques from natural food resources, and it is required to accurately measure the yield and evaluate the level of purification.

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[Analysis Case] Investigation of the Causes of Surface Stains and Water Repellency on Parts Using TOF-SIMS

Properly sampling and measuring surface contamination even on large parts that cannot be cut.

It was found that there are water-repellent stains on the surface of the aluminum material. The stained area was adhered to tape (transferred), and analysis was conducted using TOFSIMS. Fragments identical to those from the stained area on the aluminum surface were detected from the "tape surface where the stained area was transferred," suggesting that the substance causing the stain has been transferred to the tape. This method of transferring and collecting the causative substance onto tape is effective for parts that cannot be cut.

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[Analysis Case] Identification of Fluorine-based Lubricants and Polymers using TOF-SIMS

Identify the contaminating components and estimate the contamination occurrence process.

There are various types of fluorine-based compounds. During the investigation of contamination sources, performing qualitative analysis of the types of fluorine compounds allows us to examine the processes that caused the contamination. Therefore, we conducted an analysis using surface-sensitive TOF-SIMS to determine what is adhering to areas with good water repellency. By utilizing the fact that the fragment patterns of the fluorine-based oils used in each process differ by type, we performed a fingerprint matching and found that a substance corresponding to the oil from process B was adhering.

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[Analysis Case] Evaluation of Adhesive Tape Residue

We will identify the surface adsorbate components using TOF-SIMS.

Residue from adhesive tape can cause poor adhesion and peeling during the manufacturing process. When residue is suspected to be the cause of defects, TOF-SIMS, which can analyze the composition and distribution of surface contaminants, is effective. We will present a case where the surface of a silicon wafer was adhered with adhesive tape and measured with TOF-SIMS after peeling it off.

  • Contract Analysis

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[Analysis Case] Depth Direction Analysis of TFT Wiring Intersection Using SSDP-SIMS

Analysis using SSDP is also possible for microdomains and glass substrates.

An example is shown where secondary ion mass spectrometry (SIMS) was used to analyze the intersection (4μm×10μm) of the data signal wiring and gate electrode wiring of a commercially available TFT LCD from the substrate side (SSDP-SIMS). By measuring from the substrate side (SSDP-SIMS), it becomes possible to provide data free from the influence of high-concentration layers or metal films on the surface side.

  • Contract Analysis

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[Analysis Case] Depth Profile Analysis of Impurities in Organic EL Devices Using SIMS

Evaluate organic EL elements with good depth direction resolution.

To extend the lifespan of organic EL devices, it is essential to evaluate the degradation caused by electromigration, making it important to investigate the diffusion state of electrode metal components into the organic layer. However, whether analyzed directly from the cathode side or through the SSDP method from the anode side, the depth resolution decreases, making it difficult to assess the diffusion from the interface into the organic layer. (Note: SSDP method refers to analysis from the backside. For details on the analytical method, see section B0013.) Therefore, by using special processing to expose the cathode/organic layer interface and the organic layer/anode interface, it has become possible to evaluate the organic layer with high depth resolution.

  • Contract Analysis

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