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Atomic Force Microscope(測定) - List of Manufacturers, Suppliers, Companies and Products

Last Updated: Aggregation Period:Dec 31, 2025~Jan 27, 2026
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Atomic Force Microscope Product List

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[Analysis Case] Observation of Fine Surface Morphology of Three-Dimensional Cultured Human Skin

Visualization of nanoscale roughness on the skin surface using AFM.

In recent years, the development of alternative methods to animal testing for the efficacy and safety testing of pharmaceuticals and cosmetics has been progressing, with particular attention being paid to testing methods using three-dimensional cultured skin. In this case study, a percutaneous absorption test of a cosmetic (lotion) was conducted using three-dimensional cultured human skin, which was measured using AFM (Atomic Force Microscopy). This allows for a visual evaluation of the microstructure of the skin surface, and it is also possible to quantitatively assess the roughness of any specific area. By measuring under atmospheric conditions, it is possible to observe the samples while minimizing alterations that would occur under vacuum conditions.

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[Analysis Case] AFM Video Observation of Temporal Changes During Heating and Cooling Processes

Evaluate the shape change of the sample surface in situ.

Polymers can change shape depending on environmental factors such as temperature, humidity, and solvents, and by varying the environmental conditions during evaluation, we can deepen our understanding of their physical properties. In this study, we conducted heating and cooling experiments using polycaprolactone (PCL), which is known for its biodegradability. PCL has a melting point of approximately 60°C, and we continuously observed through video how it changes from a crystalline state to an amorphous state upon heating, and how it recrystallizes upon cooling. Measurement method: AFM Product fields: Biotechnology, Pharmaceuticals, Daily Goods, Food Analysis purpose: Shape evaluation For more details, please download the materials or contact us.

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Atomic Force Microscope (AFM) "Park NX10"

Atomic force microscope providing reliable data with the highest level of nanoscale resolution.

The "Park NX10" is an atomic force microscope (AFM) that can be easily operated at all stages, from sample setup to imaging, measurement, and analysis. With this product, users can focus more on innovative research based on better data and more time. 【Features】 ■ Accurate XY scanning without bowing due to crosstalk removal ■ Accurate AFM topography using a low-noise Z detector ■ Top-class chip lifespan, resolution, and sample protection with true non-contact (TM) mode ■ Nano-order surface analysis of various materials such as semiconductors, polymers, battery materials, and carbon-based materials (see image gallery) *For more details, please refer to the PDF document or feel free to contact us.

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Environmentally controlled, ultra-high performance AFM/SPM Cypher ES

A model of the Cypher S, which boasts exceptional performance, with fully equipped enhanced environmental control features. It easily achieves temperature control, gas and liquid measurement, and flow management.

The Cypher ES AFM/SPM (Atomic Force Microscope) from Asylum Research is a model that expands the fully equipped environmental control features on the outstanding Cypher S platform. It maintains the same high resolution, speed, and stability as the Cypher S, while allowing for easy operation in controlled gas or liquid environments and harsh chemical conditions within a temperature range of 0 to 250°C. The Cypher ES is the ultimate AFM designed to meet the most demanding experimental requirements, capable of measurements even in environments that could potentially damage other AFMs. For more details, please contact us or refer to the catalog.

  • Other measurement, recording and measuring instruments
  • Microscope
  • Atomic Force Microscope

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Atomic Force Microscope "Park NX-Wafer"

Automatic defect inspection function, low noise, high throughput! Introducing an accurate atomic force microscope!

The "Park NX-Wafer" is an atomic force microscope that performs defect imaging and analysis fully automatically, improving productivity in defect inspection by 1,000% through AFM measurement techniques. It is a low-noise atomic force profiler for accurate and high-throughput CMP profile measurements. It measures sub-Å surface roughness with extreme accuracy, minimizing variation between chips. 【Features】 ■ Fully automated AFM solution for defect imaging and analysis ■ Up to 1,000% increase in productivity for defect review ■ Achieves accurate and high-throughput CMP measurements with a low-noise atomic force profiler ■ Extremely accurate sub-Å surface roughness measurement, minimizing variation between chip-to-chip ■ Atomic force profiler *For more details, please refer to the PDF document or feel free to contact us.

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  • Electron microscope
  • Atomic Force Microscope

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AFM Data Collection

AFM: Atomic Force Microscopy Method

AFM is a method that scans the surface of a sample with a fine probe and measures nano-scale surface topography in three dimensions. It can measure a wide range of materials, not only for the evaluation of metals, semiconductors, and oxides, but also for soft materials such as hair and contact lenses. This document presents various AFM images of different materials.

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Atomic force microscope

Supports samples up to 100mm square in measurement modes such as C-AFM, KFM, and sMIM.

In addition to functions such as conductive AFM, Kelvin probe force microscopy (KFM), and scanning microwave impedance microscopy (sMIM), it supports samples up to 4 inches. ■ Sample size: Up to 100 mm square ■ Stage travel distance: 100 mm ■ XY scanning range: 100 μm (manufacturing dimensional tolerance +/- 10%) ■ Z scanning range: 9 μm (manufacturing dimensional tolerance +/- 10%) ■ XY scanning resolution: 24-bit control – 0.06 Angstroms ■ Z scanning resolution: 24-bit control – 0.006 Angstroms ■ Noise level: Typ: <0.01 mV RMS

  • Visual Inspection Equipment
  • Atomic Force Microscope

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[Application Example] Atomic Force Microscopy (AFM) Experiment

The 8-channel Spectrum DigitizerNETBOX provides the high precision necessary to drive the evolution of AFM. Comes with a comprehensive catalog.

I would like to introduce an application example of Atomic Force Microscopy (AFM) experiments at the Precision Mechatronics Laboratory of Newcastle University, UK. Atomic Force Microscopy is an important tool in materials science and is used for mechanical scanning of surfaces. The forces acting between the surface atoms and the tip of the nanoscale probe are measured and calculated, achieving a resolution on the order of a fraction of a nanometer. [Overview] ■ AFM Technology ■ High-precision Multi-channel Digitizer *For more details, please feel free to contact us.

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  • Atomic Force Microscope

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[Analysis Case] Observation of Shape Changes of Polymers on a Substrate Using Liquid AFM Measurements

Visualization of structural changes in samples in the atmosphere and in aqueous solutions.

Polymers are known to exhibit diverse functions by altering their composition and structure, and they are utilized in various products. In the evaluation of polymers, assessment in real environments is crucial. This time, we will introduce a case where the shape of polymers on a substrate was visualized in the atmosphere and in aqueous solution using an environmental control atomic force microscope (AFM). Additionally, by combining data analysis, we quantified the dispersion of polymer particles.

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Atomic Force Microscope 'LiteScope 2.0'

Correlation analysis combining SEM and AFM! A deeper understanding of material surfaces.

"LiteScope 2.0" is an atomic force microscope that can be easily integrated with scanning electron microscopes. It can be easily mounted on SEMs and is immediately usable, and it can also be used as a standalone AFM. It is compatible with FIB, GIS, EDS, and other common SEM accessories. 【Features】 ■ Extension of SEM functionality ■ Highly precise correlated imaging ■ Quick and easy alignment to areas of interest ■ Elimination of sample contamination risk ■ Extension of 2D SEM images to 3D *For more details, please refer to the PDF document or feel free to contact us.

  • Electron microscope
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  • Other inspection equipment and devices
  • Atomic Force Microscope

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[Analysis Case] Surface Shape Analysis of GaN Substrates

Visualization of step-terrace structures by AFM.

Gallium nitride (GaN), a wide bandgap semiconductor, is used in a wide range of fields such as power devices and communication/optical devices. When fabricating devices, the shape and roughness of the wafer surface significantly impact device performance. During the growth of GaN wafers, a step-terrace structure is formed on the surface due to stress effects from lattice mismatch with the supporting substrate. This document introduces a case where the step-terrace structure of the GaN substrate surface was visualized using AFM, and the terrace width, step height, surface roughness, and off-angle were evaluated. Measurement method: AFM Product fields: Power devices, electronic components, lighting Analysis purpose: Shape evaluation, structural evaluation For more details, please download the document or contact us.

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Atomic Force Microscopy (AFM) method

Three-dimensional measurement of nanoscale surface roughness.

AFM is a method that scans the surface of a sample with a fine probe and measures nanoscale surface topography in three dimensions. - It can measure a wide range of samples, from insulators to soft organic materials, including metals, semiconductors, and oxides. - By using tapping mode with low contact pressure, it is possible to minimize sample damage.

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Low-cost high-performance research AFM/SPM MFP-3D Origin

Achieve high performance and high quality at low cost! The most affordable atomic force microscope with Asylum quality in the low price range. It offers high performance and a wide range of features.

The MFP-3D Origin is a model that features high performance and quality unique to Asylum Research, while being competitively priced against existing low-cost AFM/SPM options. This model offers a balance of performance and price, providing "high-resolution imaging," "large sample handling," "various imaging modes," and "diverse accessories." It is the best entry-level model for starting to use AFM/SPM!

  • Microscope
  • Atomic Force Microscope

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Atomic Force Microscope (AFM) "Park NX20"

Fault analysis and nano-shape measurement tools for research and development in large samples.

The "Park NX20" is a large sample atomic force microscope (AFM) that artistically combines power, versatility, and ease of operation. This product is equipped with unique features to clarify the underlying causes of device failures and develop more creative solutions. Additionally, true non-contact (TM) mode scanning allows chips to be maintained sharper and longer, preventing unnecessary time and cost expenditures. [Solutions using large sample AFM in research and FA labs] ■ Surface roughness measurement for media and substrates ■ Defect inspection imaging and analysis ■ High-resolution electrical property measurement mode ■ Sidewall measurement in 3D structural analysis ■ Accurate AFM shape imaging with a low-noise Z detector *For more details, please download the PDF or feel free to contact us.

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Atomic Force Microscope (AFM) "Park NX-3DM"

Fully automated industrial AFM with NX technology implemented.

The "Park NX-3DM" is a fully automated AFM (Atomic Force Microscope) system designed for overhang profiling, high-resolution sidewall imaging, and critical angle measurement. With its patented separated XY and Z scanning system equipped with an inclined Z scanner, it overcomes the challenges of conventional and flare chip methods in accurate sidewall analysis. 【Essential Tool for Wafer Fabrication】 ■ Fully automated industrial AFM using advanced and precise Park NX technology ■ Tilt head design for undercut and overhang structures ■ Accurate sidewall roughness measurement without the need for sample pretreatment ■ High-quality images can be obtained without damaging the device or sample due to the fully non-contact mode (TM) *For more details, please download the PDF or feel free to contact us.

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