Atomic Force Microscopes
Nanometer size probe which scans for surface deflections.
See Also: AFM, Microscopes
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NanoLattice Pitch Standard for Mask Handling Tools (NLSM)
The NanoLattice™ (NLSM) 100 nm pitch standard utilizes gratings with near perfect periodicity to calibrate magnification and scan linearity of CD-SEM and Atomic Force Microscopes (AFM). Make the grade, with the only pitch standard of its kind available below the 130 nm node.
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NeaSNOM Microscope
Based on high-stability scanning-sample Atomic Force Microscope optimized for optical nanoscopyOptical focusing unit accepts visible, infrared and even terahertz illuminationTwo independent module bays allow imaging & spectroscopy at the same time
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Level AFM
Is a flexible Atomic Force Microscope for scientists. It offers a wide range of modes, sophisticated spectroscopy options and the programming of user defined experiments. Besides standard options found in Anfatec's other AFMs, the level AFM allows to add Anfatec's full range of AFM options, such as KPFM, closed loop operation, automated sample motion, acoustic enclosure, humidity and temperature control ... Each instrument is adapted to the user's specific needs.
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Atomic Force Microscope
HDM Series
The task of identifying nanoscale defects is a very time consuming process for engineers working with media and flat substrates. Park NX-HDM is an atomic force microscopy system that speeds up the defect review process by an order of magnitude through automated defect identification, scanning and analysis. Park NX-HDM links directly with a wide range of optical inspection tools, thus significantly increasing the automatic defect review throughput. In addition, Park NX-HDM provides accurate sub-angstrom surface roughness measurements, scan after scan. Park NX-HDM, together with its industry's lowest noise floor, and its unique True Non-Contact™ technology, it is the most accurate AFM for surface roughness measurement in the market.
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Nanolattice Standards for Analytical Instruments
The NanoLattice™ (NLSM) 100 nm pitch standard utilizes gratings with near perfect periodicity to calibrate magnification and scan linearity of Electron and Atomic Force Microscopes (AFM). Make the grade, with the highest quality pitch standard of its kind available.
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Atomic Force Microscope
DriveAFM
The DriveAFM is Nanosurf’s novel flagship AFM platform: a tip-scanning atomic force microscope (AFM) that combines, for the first time, several capabilities in one instrument to enable novel measurements in materials and life sciences.
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Atomic Force Microscope (AFM)
CombiScope
The CombiScope Atomic Force Microscope (AFM) is an advanced research instrument that provides the entry path for researchers in biology, spectroscopy and photonics. If you work with transparent samples either in air or in liquid towards nano-scale structures and (near-field) nano-optical properties investigation, the CombiScope is the right solution for you. It perfectly combines inverted optical and atomic force microscopies and unleash all the power of both techniques providing the instrument adjustment and measurement automation, high resolution and high speed. Plus it can be easily upgraded to our Raman spectrometers.
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Atomic Force Microscope for SEM/FIB
AFSEM® AFM Insert
AFSEM is an atomic force microscope (AFM), designed for integration in a SEM or Dualbeam (SEM/FIB) microscope. Its open access design allows you to simultaneously operate SEM and AFM inside the SEM vacuum chamber. The correlated image data of AFM and SEM enable unique characterization of your sample, and the combination of complementary techniques is a key success factor for gaining new insights into the micro and nano worlds. AFSEM enables you to easily combine two of the most powerful analysis techniques to greatly extend your correlative microscopy and analysis possibilities.
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Atomic Force Microscope
AFM Heron
New, fully motorized AFM HERON (HERO of Nanotechnology) which allows to perfectly align a cantilever, laser and photodiode by just one click on a command button. The scanning settings and landing parameters are also automated that allows to avoid any time consuming adjustment operations, thus leaving more time to researcher for designing the experiment and performing more accurate measurements.
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Atomic Force Microscope
Flex-Mount
Flex-Mount is a unique AFM that can be configured to acquire high-resolution information on large, non-planar and demanding samples. The Flex-Mount solution combines the superior resolution and performance of the Nanosurf FlexAFM scan head with the integrability of the Nanosurf NaniteAFM.
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Atomic Force Microscope
FlexAFM
For success in research, scientists depend on professional tools that can readily provide the information needed, regardless of the tasks at hand.
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Atomic Force Microscope
LensAFM
The Nanosurf LensAFM is an atomic force microscope that continues where optical microscopes and profilometers reach their resolution limits. It is mounted like a normal objective lens, thus extending the resolution and measuring capabilities of these instruments.
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Atomic Force Microscope
XE7
Park XE7 has all the state-of-the-art technology you've come to expect from Park Systems, at a price your lab can afford. Designed with the same attention to detail as our more advanced models, the XE7 allows you to do your research on time and within budget.
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NanoLattice Pitch Standard (NLSM)
The NanoLattice™ (NLSM) 100 nm pitch standard utilizes gratings with near perfect periodicity to calibrate magnification and scan linearity of CD-SEM and Atomic Force Microscopes (AFM). Make the grade, with the only pitch standard of its kind available below the 130 nm node.
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AFM (Atomic Force Microscope) Optical Platform
The AFM platform allows fully-integrated use of confocal Raman microscopy and AFM for Tip-Enhanced Optical Spectroscopies (such as Tip-Enhanced Raman Spectroscopy (TERS) and Tip-Enhanced PhotoLuminescence (TEPL)), but also for truly co-localized AFM-Raman measurements.The myriad of AFM (Atomic Force Microscope) techniques that allow study of topographical, electrical and mechanical properties can be performed with any laser source available in Raman spectrometer, or with other external illumination (e.g., solar simulator or other tunable or continuum source). TERS and TEPL can provide nanoscale chemical and structural information, making the AFM-Raman platform a two-way road; where complimentary techniques provide novel and unique imaging capabilities to each other.
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Atomic Force Microscope
NX10
Park NX10 produces data you can trust, replicate, and publish at the highest nano resolution. From sample setting to full scan imaging, measurement, and analysis, Park NX10 saves you time every step of the way. With more time and better data, you can focus on doing more innovative research.
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AFM Atomic Force Microscope
FM-Nanoview 6800
Zhengzhou Nanbei Instrument Equipment Co. Ltd
All-in-one design, smart structure and shape.Scan head and sample stage are designed together, strong anti-vibration performance .Precision laser detection and probe alignment device make laser adjustment simple and easy.Adapt servomotor to drive the sample approaching tip manually or automatically, to realize precision scanning area positioning.
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Surface Analysis
Dimension FastScan Bio
The Dimension FastScan Bio Atomic Force Microscope (AFM) breaks longstanding barriers to provide routine high-resolution research of biological dynamics, with temporal resolution up to 3 frames per second for live sample observations. Furthermore, it does this while making the AFM easier to use than ever before.
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Atomic Force Microscope
3DM Serirs
Park Systems has introduced the revolutionary Park 3DM Series, the completely automated AFM system designed for overhang profiles, high-resolution sidewall imaging, and critical angle measurements. With the patented decoupled XY and Z scanning system with tilted Z-scanner, it overcomes the challenges of the normal and flare tip methods in accurate sidewall analysis. In utilizing our True Non-Contact Mode™, the Park 3DM Series enables non-destructive measurement of soft photoresist surfaces with high aspect ratio tips.
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Atomic Force Microscope
NX-Hivac
Park NX-Hivac allows failure analysis engineers to improve the sensitivity of their measurements through high vacuum Scanning Spreading Resistance Microscopy (SSRM). Because high vacuum scanning offers greater accuracy, better repeatability, and less tip and sample damage than ambient or dry N2 conditions, users can measure a wide range of dope concentration and signal response in failure analysis applications.
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Atomic Force Microscope
XE-PTR
Park Systems' PTR Series is a fully automatic industrial in-line AFM solution for, but not limited to, automatic Pole Tip Recession measurements on Rowbar-level, individual Slider-level, and HGA-level sliders. With sub-nano scale accuracy, repeatability, and throughput, the PTR Series is the metrology tool of choice for Slider manufacturers to improve their overall production yield.
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Atomic Force Microscope
AFM
Atomic Force Microscopes are the most widely used SPM microscopes. They can be applied in fields that span from surface science, semiconductor technology, magnetic media, polymer science, optics to biology, chemistry and medicine.Absolute positioning with an accuracy of 2 nm.
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Atomic Force Microscope
NaioAFM
The NaioAFM is the ideal atomic force microscope for nanoeducation and basic research on small samples. This all-in-one AFM system provides solid performance and easy handling, with a price tag and footprint that fit anyone and any place.
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Atomic Resolution Analytical Electron Microscope
NeoARM JEM-ARM200F
"NEOARM" comes with JEOL’s unique cold field emission gun (Cold-FEG) and a new Cs corrector (ASCOR) that compensates for higher order aberrations. The combination of a Cold-FEG and ASCOR enables atomic-resolution imaging at not only 200 kV accelerating voltage, but also a low voltage of 30 kV."NEOARM" is also equipped with an automated aberration correction system that incorporates JEOL’s new aberration correction algorithm for automatic fast and precise aberration correction. This system enables higher-throughput atomic-resolution imaging even at low accelerating voltages. Furthermore, a new STEM detector that provides enhanced contrast of light elements is incorporated as a standard unit.
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Force Tensiometers
Sigma 702ET
The Sigma 702ET Transformer Oil Analyzer has been specifically designed to guide the user through the measurement of interfacial tension of transformer oil according to relevant standards.
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Force Tensiometers
Sigma 703D
Sigma 703D is a simple and robust digital force tensiometer for accurate measurement of surface and interfacial tension (Platinum Du Noüy ring, Platinum Wilhelmy Plate), and density. Manual measurement of Critical Micelle Concentration (CMC) can also be conducted.
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Microscope Spectrophotometer
508 PV
The 508 PV™ Microscope Spectrophotometer is designed to add spectroscopy, color imaging, thin film thickness measurement and colorimetry capabilities to your optical microscope or probe station. It can also be used to upgrade an older microspectrometer with cutting edge optics, electronics and software.
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Atomic Oven
Atomic oven with collimated output for ultra-high vacuum systems, loaded with Sr, Yb or Ca. The oven provides superior heat isolation while achieving high atomic flux. Its low power consumption results in exceptionally low pressures during normal operation for temperatures up to 650 °C. The chamber is shipped in an ultra-high vacuum storage chamber supplied by AOSense. Customers can provide AOSense with a previously purchased storage chamber for repeat orders. Please contact us for more information.
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Digital Microscopes
Zarbeco Digital Microscopes include Video toolbox PC software for taking still and moving images, measurement, labelling, draw-on features. They will have the best image quality at an affordable price with magnification options, digital camera options, and software options to meet your imaging needs.
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STM Microscope
NaioSTM
The first scanning tunneling microscope (STM) was developed in 1981 by Gerd Binnig and Heinrich Rohrer at the IBM Research Laboratory in Rüschlikon, Switzerland, for the first time making individual atoms directly visible to a small group of specialists. They were awarded the Nobel Prize in physics in 1986. In 1997, Nanosurf went one step further and brought single atoms to the classroom!





























