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Scanning Electron Microscopy
surface imaging from 1 to 5 nm in size.
See Also: Scanning Electron Microscopes, SEM
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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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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.
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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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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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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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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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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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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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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 Microscopes
Our Scanning Electron Microscopes (SEMs) resolve features from the optical regime down to the sub-nanometer length scale.
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Scanning Electron Microscope
SEM
Delivers the world's best resolution with the incorporation of the newly-developed, super-high resolution Gentle Beam (GBSH). In addition, the maximum probe current of the In-lens Schottky Plus gun has been increased from 200 nA to 500 nA.
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Scanning Electron Microscope
E5620
The E5620 is a MASK DR-SEM(∗) product for reviewing and classifying ultra-small defects in photomasks and mask blanks. It implements Advantest’s highly stable image capture technology to easily import defect location data from mask inspection systems and automatically image the locations. Compared to the E5610, our predecessor DR-SEM system, the E5620 features a number of improvements designed specifically to target mask requirements for extreme ultraviolet (EUV) lithography.
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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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Optical Microscopy
Rocky Mountain Laboratories, Inc.
Optical microscopy from 1X to 1000X is achieved with a variety of microscopes. Images can be formed in bright field, dark field, and differential interference contrast (DIC or ‘Nomarski’) modes. Optical microscopy anlaysis is often used before any other techniques to document samples. Color and morphology are important clues in materials identification.
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Electron Sources
SPECS Surface Nano Analysis GmbH
To our customers in research and industry we offer a variety of sources for deposition, excitation and charge neutralization as well as analyzers and monochromators. Most of our sources originate from product lines which we have taken over from Leybold AG, Cologne, and from VSI GmbH. The X-ray monochromator Focus 500 and the UV monochromator TMM 302 are original developments by SPECS.Compliance with industry standards, a good price-performance ratio, stability, and longevity are the guidelines for our product development. We focus on standardized easy handling, user-friendliness, standardized software interfaces and safety.
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Fluorescence Multiphoton Microscopy
Ultima Investigator™
As the most streamlined model of Bruker''s Ultima family of multiphoton microscopes, Ultima Investigator™ features a base system specifically optimized for in vivo studies and is designed for add-on flexibility with a host of specialized options. Ultima Investigator''s high-resolution, high-speed, high-sensitivity deep imaging provides the ultimate value for smaller labs and additional imaging bandwidth in larger labs.
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Electron Microscope Sample Preparation
Excellent sample preparation is the prerequisite for first-class electron microscopy. Be prepared – for great results in EM Sample Preparation! Perfect preparation makes the difference between trying and achieving, between failure and success, between results and excellent results. So be prepared for great results with Leica Microsystems!
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Microscopy and Automation Solutions
Opto already offers automated multifluorescence microscopes for cell analysis, inverted autofocus microscopes for motion analysis of growth processes, and high- throughput fluorescence microscopes for DNA and RNA sequencing.
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Ion & Electron Detection
Photonis is the global leader in the development and manufacturing of detectors and optical components to detect ions and electrons. These detectors and components have been designed for a wide range of scientific instruments used in space and research projects but also in cells and material analysis in lifescience or non destructive testing.
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Scanning Probe Workstations
BioLogic has over 25 years of experience producing scanning probe electrochemistry instruments. Initially this included a number of single technique instruments, with the first modular scanning electrochemical workstation, the M370, introduced in 2006, under the Uniscan name.Scanning probe electrochemistry has found use in academic and commercial research settings. It is applicable in any field in which bulk electrochemical measurements have been used. Scanning probe electrochemistry has found widespread use in: Corrosion and coatings, Biology, including biosensors and biotechnology, Batteries, fuel cells and photovoltaics, Materials, Catalysis
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Electron Probe Microanalyzer
EPMA-1720
Both hardware and software incorporate the latest technologies to create the next generation of EPMA. New functions that offer simple and easy-to-understand operation have been added to the superb basic EPMA performance that Shimadzu has fostered over many years – high sensitivity, high accuracy, and high resolution – to allow the EPMA's capabilities to be exploited to the fullest. While easy enough for even novices to use, it also supports sophisticated analysis by experienced users.
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Scanning XPS/HAXPES Microprobe
PHI Quantes
The PHI Quantes is the only commercially available automated, high-throughput lab-based HAXPES spectrometer. It is a unique scanning X-ray photoelectron microprobe that combines a high energy (HAXPES) monochromatic X-ray source (Chromium Kα) with a conventional monochromatic soft X-ray source (Aluminum Kα). Both sources are high flux focused X-ray beams that can be scanned across the sample surface and can be used to define analysis points, areas, lines, and maps with 100% confidence.
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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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Real-Time X-Ray Imaging and Variable Pressure Scanning Electron Microscope
Trialon has the equipment and experienced staff to operate this highly technical piece of laboratory equipment. Our state-of-the-art materials analysis lab located in Auburn Hills, MI is managed by a Ph.D with over 20 years of hands-on experience in root cause failure analysis of design, material and process for current and future products.
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Scanning Auger Nanoprobe
PHI 710
The PHI 710 Scanning Auger Nanoprobe is a unique, high performance Auger Electron Spectroscopy AES instrument that provides elemental and chemical state information from sample surfaces and nano-scale features, thin films, and interfaces. Designed as a high performance Auger, the PHI 710 provides the superior Auger imaging performance, spatial resolution, sensitivity, and the spectral energy resolution needed to address your most demanding AES applications.
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3D Scanning Software
Software is a comprehensive component to any advanced metrology system. Combined with laptops and portable equipment, 3D scanning and measurement is now possible virtually anywhere. 3D scanner software plays a critical role in every stage from the creation of a concept design to the manufacturing and inspection of prototypes. Below is a look at some of the Laser Scanner Software and 3D Scanner Software providers and platforms we represent and handle.
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Microscopy
Our microscopy systems business is focused on providing best-in-class performance within a modular architecture. We design and manufacture Andor products to integrate with our own and third-party software, and all leading microscopes, we also support high quality products from other manufacturers.