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Scanning Electron Microscopy
surface imaging from 1 to 5 nm in size.
See Also: Scanning Electron Microscopes, SEM
- Kreon Technologies
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X-Ray Photoelectron Spectrometer
AXIS Supra
AXIS SupraTM is an X-ray photoelectron spectrometer (XPS) with unrivalled automation and ease of use for materials surface characterisation. The patented AXIS technology ensures high electron collection efficiency in spectroscopy mode and low aberrations at high magnifications in parallel imaging mode. XPS spectroscopy and imaging results can be complemented by additional surface analysis techniques such as: ultraviolet photoemission spectroscopy (UPS); Schottky field emission scanning Auger microscopy (SAM) and secondary electron microscopy (SEM) and ion scattering spectroscopy (ISS). The AXIS Supra replaces the AXIS Ultra DLD as Kratos' flagship x-ray photoelectron spectrometer.
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Sputter Coater & Freeze Fracture Solutions
To obtain high-quality images of samples with scanning (SEM) or transmission electron microscopy (TEM), your samples need to be conductive to avoid charging. If a sample does not have a high enough conductivity, then you can quickly cover it with a conductive layer using the method of sputter coating. Also, a carbon or e-beam evaporator coating can be used. Such coatings protect the sample, allow enhancing of the EM image contrast, or can act as a TEM-grid support film for small scale samples.
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Scanning Electron Microscopy
SEM
Materials Evaluation and Engineering
JEOL JSM-6610 LV LaboratoryScanning electron microscopy (SEM) uses electrons for imaging to obtain higher magnifications and greater depth of field than light microscopes. The instruments at MEE are capable of variable-pressure, or low vacuum, SEM (VPSEM), as well as traditional high-vacuum conditions for sample observation. VPSEM is a specialized method using a variable-pressure sample chamber that allows direct evaluation of samples that are not readily examined with a traditional high-vacuum SEM. Nonconductive or vacuum sensitive samples that would typically require additional sample preparation can be directly analyzed in VPSEM without the need for additional sample preparation, such as carbon or metallic conductive coatings. This reduces both sample preparation time and distractions in microanalysis. Our laboratory also has a field emission SEM (FESEM) for critical high-magnification work and low-voltage (LVSEM) applications. Each instrument has a spacious sample chamber that can accommodate large and irregularly-shaped specimens and accessories for feature dimensional analysis and chemical microanalysis.
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Scanning Electron Microscopy (SEM Analysis)
Rocky Mountain Laboratories, Inc.
Scanning Electron Microscopy (SEM Analysis) can produce images of almost any sample at magnifications of 15-300,000X. The SEM has tremendous depth of field allowing for imaging that cannot be accomplished using optical microscopy. Conductive and nonconductive samples can be imaged. When operated in the backscatter (BSE) detection mode, differences in material composition can be observed. Elemental analysis can be performed on any feature observed with an integrated Energy Dispersive Spectroscopy (EDS) detector.
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Cross Sections and Metallography
Rocky Mountain Laboratories, Inc.
Cross sections are prepared by mounting samples in epoxy and then grinding and polishing the mount for imaging in the optical microscope or Scanning Electron Microscopy (SEM). Valuable information from cross sectioning can include: film thicknesses, inclusions, corrosion thickness, dimensional verification, and subsurface defects. Metallographic cross sections are typically etched to reveal the microstructure. Microstructural analysis can provide information about heat treatment history, corrosion susceptibility, as well as undesirable microconstituents.
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Metallurgy Analysis
The metallurgical group is well equipped and staffed (9 full-time metallurgists and technicians) to evaluate materials ranging from cast iron to superalloys to composites. They are experienced in classical metallographic techniques, as well as the latest preparation methods. Advanced analytical tools such as image analysis and scanning electron microscopy (SEM) are used in their evaluations.
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TEM Lamella Preparation And Volume Imaging Under Cryogenic Conditions
ZEISS Correlative Cryo Workflow
ZEISS Correlative Cryo Workflow connects widefield, laser scanning, and focused ion beam scanning electron microscopy in a seamless and easy-to-use procedure. The solution provides hardware and software optimized for the needs of correlative cryogenic workflows, from localization of fluorescent macromolecules to high-contrast volume imaging and on-grid lamella thinning for cryo electron tomography.
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Analytical Services
IGC: Inverse Gas Chromatography; Understand surface energies, polarities, acid/base properties and nanomorphology on powders and fibers. ToF-SIMS: Time-of-Flight Secondary Ion Mass Spectrometry. Localize your molecules at the first nanos! 2D imaging with resolution up to 200 nm. Highest sensitivity up to 10 ppm. CM: Quarz Crystal Microbalance In-situ observation of thickness and stiffness of any films in liquid environmentSEM: Scanning Electron Microscopy Images say more than words, especially with an artistic eye XPS/ESCA: X-ray Photoelectron Spectroscopy/Electron Spectroscopy for Chemical Analysis.
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Microscopy
Microscopy is the technical field of using microscopes to view objects and areas of objects that cannot be seen with the naked eye. There are three well-known branches of microscopy: optical, electron, and scanning probe microscopy, along with the emerging field of X-ray microscopy.
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Scanning Electron Microscopes
SEM
Scanning Electron Microscopes (SEM) scan a sample with a focused electron beam and obtain images with information about the samples’ topography and composition.
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Scanning Electron Microscopes
Our Scanning Electron Microscopes (SEMs) resolve features from the optical regime down to the sub-nanometer length scale.
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Scanning Probe Microscopy
SPECS Surface Nano Analysis GmbH
As Scanning Probe Microscopy (SPM) is a key tool for nanotechnology, SPECS offers dedicated solutions for highly demanding requirements.In UHV, strong emphasis lies on spectroscopic methods such as scanning tunneling spectroscopy and inelastic tunneling spectroscopy as well as single atom and molecule manipulation. With the invention of a Joule-Thomson cryostat by Prof. Wulf Wulfhekel, SPECS now offers the JT-STM , operating sample and sensors in thermal equilibrium below 1K with optional high magnetic field.
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Scanning Electron Microscope
JSM-IT510
Scanning electron microscopes (SEMs) are indispensable tools not only for research but also for quality assurance and manufacturing sites.At those scenes, the same observation processes need to be performed repeatedly and there has been a need to improve the efficiency of the process.
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Scanning Electron Microscope (SEM)
Prisma E
Prisma E scanning electron microscope (SEM) combines a wide array of imaging and analytical modalities with new advanced automation to offer the most complete solution of any instrument in its class. It is ideal for industrial R&D, quality control, and failure analysis applications that require high resolution, sample flexibility and an easy-to-use operator interface. Prisma E succeeds the highly successful Quanta SEM.
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General Microscopy
Nano-scale precision motion and stability are cornerstones of research grade microscopes for high resolution imaging. Mad City Labs provides nanopositioning systems, micropositoining systems, and stabilization systems that assist users with developing and adapting instrumentation for their own application requirements. Contact our sales and engineering team to discuss the right products for your application.
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Light Microscopy
Materials Evaluation and Engineering
MEE has a variety of light microscopes with magnifications ranging from 5X to 2400X. Each microscope is connected to a camera with digital image capture for subsequent measurements and/or additional image analyses.
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Focused Ion Beam Scanning Electron Microscopes
FIB-SEMs
Combine imaging and analytical performance of a high resolution field emission scanning electron microscope (FE-SEM) with the processing ability of a next-generation focused ion beam (FIB).
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Electron Diffraction System
Modern physics is the post-Newtonian conception of physics. It implies that classical descriptions of phenomena are lacking, and that an accurate, " Modern", description of nature requires theories to incorporate elements of quantum mechanics or relativity, or both. This section includes many of the most important experiments in physics, including e/m tubes, the Franck-Hertz experiment, and nuclear magnetic resonance (NMR)
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Microscopy and Nanotechnology Labs
Integrated Dynamics Engineering
IDE, with the most vibration isolation and EMI cancellation systems in use today, is no stranger to nanotechnology. For over twenty years, IDE has been addressing the special needs of research environments with advanced isolation solutions. IDE’s influence and global reach can be seen in the most cutting edge labs pushing physical boundaries to extremes in advanced materials, surface science, microbiology and more.
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Collaborative Correlative Microscopy
nanoGPS navYX
Correlative microscopy is the combination of multiple modalities performed on the same sample. The results produced emphasize the strengths of each modality while offsetting their individual limitations.nanoGPS navYX™ is an open solution which makes SEM-Raman correlative microscopy seamless regardless of the electron and optical microscopes used. Simply stick the Coordinates Transfer System to the sample!
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Scanning Acoustic Microscope
Pulse2
This industry-leading scanning acoustic microscope provides a universal inspection tool for packaged semiconductor development, production and failure analysis. With the ability to detect air defects as thin 0.05 micron and spatially resolve defects down to 10 microns, the ECHO is perfect for bump detection, stacked die (3D packaging) inspection, complex flip chip inspection and more traditional plastic packages.
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Scanning X-Ray Detectors
Shad-o-Scan
Shad-o-Scan is a family of scanning X-ray detectors specifically designed for the challenging requirements of high-performance industrial and scientific X-ray applications. Industry-leading TDI CCD performance enables the ultimate sensitivity and highest resolution in the industry, and ensures long detector lifetime in even the harshest radiation environments.
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Long Range Scanning
Our contract measurement services include a variety of short-range (< 20 feet) and long-range (20 to 900 feet) high definition technologies, which use both contact and non-contact processes. With over a decade of experience in long range scanner technologies, we have the experience to determine the most affordable approach to your project and the expertise to do the job right. Our tools for long range scanner services include portable CMMs (PCMM) – both touch probes and laser trackers – and 3D laser mapping scanners.
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Otolaryngology (ENT) Microscopy Solutions
Otolaryngology (ENT) microsurgery requires top-class imaging quality and visualization. Microscopes for otolaryngology allow specialists to carry out complex and minimally invasive ENT surgical procedures with a high level of precision to enable the best possible clinical outcomes.
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Fluorescence Microscopy Solutions
Bruker’s suite of fluorescence microscopy systems provides a full range of solutions for life science researchers. Our multiphoton imaging systems provide the imaging depth, speed and resolution required for intravital imaging applications in neuroscience, oncology and immunology.
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Laser Raman Microscopy System
RAMANforce/RAMANtouch
Nanophoton is the pioneer of confocal laser scanning microscopy and spectroscopic analysis. To celebrate, we relaunch our fastest and highest resolution confocal Raman microscope RAMANtouch/RAMANforce. With a newly designed spectrograph and the latest optical technologies, RAMANtouch/RAMANforce’s spatial resolution and sensitivity have been highly improved, making it the optimal solution for all applications.
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Radiation Scanning Equipment
The spectrometer is designed for radiation scanning of territories and objects. The functions of the spectrometer are measurement of the energy distribution of gamma radiation, measurement of the ambient dose equivalent rate of gamma radiation, search and identification of gamma-emitting radionuclides, detection of neutron radiation sources.
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Differential Scanning Calorimeters
Differential Scanning Calorimeters (DSC) measure temperatures and heat flows associated with thermal transitions in a material. Common usage includes investigation, selection, comparison and end-use performance evaluation of materials in research, quality control and production applications. Properties measured by TA Instruments’ DSC techniques include glass transitions, “cold” crystallization, phase changes, melting, crystallization, product stability, cure / cure kinetics, and oxidative stability.
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Semiconductor
Aerotech has a long history of engineering and manufacturing motion systems and components for high precision wafer processing, scanning electron microscopy (SEM), wafer bumping, 450 mm wafer manufacturing, lithography equipment and advanced laser micromachining. We also specialize in systems and components for vacuum applications, such as EUV lithography. So whether you need off-the-shelf wafer bumping components or a custom-engineered SEM system manufactured and tested to exacting specifications, Aerotech can provide the optimal solution for your application.