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Scanning Electron Microscopes
surface imaging from 1 to 5 nm in size.
See Also: Scanning Electron Microscopy, SEM
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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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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 Microscope Analyzer
QUANTAX Micro-XRF
Micro-X-ray Fluorescence (Micro- XRF) spectroscopy analysis is a complementary non-destructive analytical technique to traditional Energy Dispersive Spectroscopy (EDS) analysis using a Scanning Electron Microscope (SEM).
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Failure Analysis
A partial list of our state of the art test equipment, applicable to these testing disciplines, will include the following: Two Scanning Electron Microscopes with EDS (SEM/EDS) Three Differential Scanning Calorimeters (DSC) Three Thermogravimetric Analyzers (TGA) Three Thermo Mechanical Analyzers (TMA) One Dynamic Mechanical Analyzer (DMA) Two Real-Time Fluoroscopic X-ray Systems, including a Microfocus System One Fourier Transform Infrared Microscope (FTIR) (capable of identifying a single particle of an unknown material) Two Ion Chromatographs (IC) (capable of identifying ionic impurities in ppm)
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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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Segmented STEM Detector
Opal
In a drive to meet our customers’ needs, El-Mul developed a detection solution for Scanning Transmission Electron Microscopes (STEM) which can support multiple applications such as DPC, cryo tomography, imaging of strain, charge, light elements or Z-contrast.
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Metrology/SEM
Our SEM products use scanning electron microscope technology to measure and review tiny surface structures such as photomask etching and circuitry on wafers with high precision and stability.
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Magnetic Field Testing
Response Dynamics Vibration Engineering, Inc.
As magnetic field consultants, we have been working with magnetic field issues for sensitive tools for many decades from cutting edge development of scanning electron microscopes (SEMs) to active cancellation systems for MRI tools, to site surveys for specification compliance, debugging, and tool Magnetic Field Sensitivity Testing.
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Spectroscopic Platform
Allalin
The Allalin is a nanometer resolution spectroscopy instrument, based on a disruptive technology known as quantitative cathodoluminescence that integrates a light microscope and a scanning electron microscope (SEM) into one tool.
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Microscopy Software/Hardware
ZEISS Atlas 5
Atlas 5 is your powerful hardware and software package that extends the capacity of your ZEISS scanning electron microscopes (SEM) and ZEISS focused ion beam SEMs (FIB-SEM). Use its efficient navigation and correlation of images from any source, e.g. light- and X-ray microscopes. Take full advantage of high throughput and automated large area imaging. Unique workflows help you to gain a deeper understanding of your sample.
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Energy Dispersive X-Ray Spectroscopy (EDS)
Rocky Mountain Laboratories, Inc.
Energy Dispersive Spectroscopy (EDS Analysis) is used in conjunction with the Scanning Electron Microscope (SEM) providing chemical analysis in areas as small as 1 µm in diameter. EDS detects all elements except for H, He, Li, and Be. EDS can be performed exactly on any features or particles seen in the SEM images and can “MAP” elements on a surface. Unknown materials can be identified and quantitative analysis can be performed.
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E-Beam Power Supplies
Maximize image quality and repeatability. Designed for scanning electron microscope tools, Advanced Energy’s precision e-beam technologies deliver impressive performance, accuracy, and reliability.
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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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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 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 w/ EDX Laboratory
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 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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Ion Pumps & Controllers
Agilent Vacuum (formerly Varian) offers a complete portfolio of VacIon ion pumps that provide various pumping speeds (from 0.4 to 1000 L/s). Agilent also supplies smart combinations titanium sublimation pumps (Ion CombiTSP) and Non-Evaporable Getter (Ion CombiNEG) pumps for clean and vibration-free environments.Agilent ion pumps and controllers can be customized in a number of configurations to satisfy your vacuum requirements. They are the best choice for those applications where stable ultrahigh or extreme-high vacuum (UHV or XHV) conditions are essential, such as: laboratories, large research facilities, medical devices, scanning electron microscopes, and surface analysis tools.
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MultiBeam System
FIB
An easy-to-use, out-lens type scanning electron microscope (SEM) equipped with a Schottky electron gun, as well as a new FIB column capable of large current processing (maximum ion current 90nA) installed into one chamber. JIB-4610F enables high-resolution SEM observation after high-speed cross-section milling with FIB, and high-speed analysis with a variety of analytical instruments, such as energy dispersive X-ray spectroscopy (EDS) that takes advantage of the Schottky electron gun delivering a large probe current (200nA), electron back scatter diffraction (EBSD) to perform crystallographic characterization, and cathodoluminescence (CLD). In addition, the 3D analysis function Cut & See is included in the standard configuration, allowing cross-section milling to be executed automatically at fixed intervals, while acquiring SEM images for each cross section.
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FAST SDD and C2 Window
EDS (SEM) Applications
Amptek is pleased to offer our improved line of silicon drift detectors (SDDs) for energy dispersive spectroscopy (EDS) use within scanning electron microscopes (SEMs). Using our proprietary Patented “C-Series” silicon nitride (Si3N4) X-ray windows, the low-energy response of our FAST SDD® extends down to beryllium (Be). The FAST SDD® with its high intrinsic efficiency is ideal for EDS, which is also known as energy dispersive X-ray spectroscopy (EDX or XEDS) and energy dispersive X-ray analysis (EDXA) or energy dispersive X-ray microanalysis (EDXMA).
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Integrated AI-ADAS ECU And Cameras For Large Commercial Vehicle
ADM-TJ30
The integrated AI-ADAS ECU is connected to 8 cameras and powered by the vision-AI algorithm. It can detect and classify different kinds of vehicles/ pedestrians/ two-wheeler riders/ lane marking and other objects to perform multiple ADAS functions.
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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 Electro-chemical Microscope
920D
The scanning electrochemical microscope (SECM) was introduced in 19891 as an instrument that could examine chemistry at high resolution near interfaces. By detecting reactions that occur at a small electrode (the tip) as it is scanned in close proximity to a surface, the SECM can be employed to obtain chemical reactivity images of surfaces and quantitative measurements of reaction rates.
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Laser Scanning Microscopes
A confocal laser scanning microscope scans a sample sequentially point by point, or multiple points at once. The pixel information is assembled into an image. As a result you acquire optical sections with high contrast and high resolution in x, y and z .
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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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Electron Microscope Analyzer
QUANTAX WDS
The QUANTAX WDS (WDX) for SEM consists of the XSense wavelength dispersive spectrometer yielding the best resolution among all parallel-beam WDS systems.
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Scanning Probe Microscope
SPM-9700HT
Making the Unknown Visible Scanning probe microscope (SPM) is a generic term for microscopes that scan sample surfaces with an extremely sharp probe to observe their three-dimensional image or local properties at high magnifications. The SPM-9700HT takes high-throughput observations to the next level.
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Scanning Kelvin Probe Microscope
VS-SKP
The Kelvin Probe experiment uses a nondestructive method to determine the relative work function difference between the probe and the sample. Work function describes the energy required to liberate an electron from the surface of a conductor; electrochemists often interpret this as the difference from an electrode’s Fermi Level, average energy of electrons, and that of vacuum.
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Near-field Scanning Optical Microscope
NSOM
Near-field Scanning Optical Microscope (NSOM) is a versatile tool for nano-characterization and nanomanufacturing.Conventional microscopes have fundamentally limited resolution due to diffraction, but there is no such restriction for near-field interactions, that is why near-field microscopy is becoming one of the most important techniques for nano-science.





























