Scanning Electron Microscopy
surface imaging from 1 to 5 nm in size.
See Also: Scanning Electron Microscopes, SEM
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Scanning Electron Microscopy
SEM
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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)
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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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Semiconductor
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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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Cross Sections and Metallography
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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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Analytical Services
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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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TEM Lamella Preparation And Volume Imaging Under Cryogenic Conditions
ZEISS Correlative Cryo Workflow
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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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Electronic Calibration Module (ECal), 67 GHz, 1.85 Mm, 2-Port
N4694D
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The Keysight N4694D microwave electronic calibration (ECal) module makes calibration of Keysight vector network analyzers fast, easy and accurate. The N4694D is a precision 2-port ECal module that supports 1.85 mm connectors up to 67 GHz. Select either female-female, male-male, or female-male connectors. The plastic storage case for the N4694D is included for securing your ECal module and accessories.
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Electronic Calibration Module (ECal), 26.5 GHz, 3.5 Mm, 2-port
N4691D
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The Keysight N4691D microwave electronic calibration (ECal) module makes calibration of Keysight vector network analyzers fast, easy and accurate. The N4691D is a precision 2-port ECal module that supports 3.5 mm connectors up to 26.5 GHz. Select either female-female, male-male, or female-male connectors. The plastic storage case for the N4691D is included for securing your ECal module and accessories.
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RF Electronic Calibration Module (ECal), DC/300 KHz To 9 GHz, Type-N, 2 Port
85092D
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The Keysight 85092D RF electronic calibration (ECal) module makes calibration of vector network analyzers fast, easy, and accurate. ECal is a precision, single-connection calibration technique for your vector network analyzer. Performing a full two-port calibration takes less than half the time and number of connections using ECal versus mechanical calibration kits. Furthermore, the accuracy of the calibration is comparable between electronic and mechanical methods. Traditional mechanical calibrations require intensive operator interaction, which is prone to errors. With ECal, the operator simply connects the ECal module to the network analyzer and the software controls the rest.
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RF Electronic Calibration Module (ECal), 300 KHz To 18 GHz, 4-ports
N4432D
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The Keysight N4432D is a precision 4-port ECal module that supports selection of Type-N and 3.5 mm connectors mixed up to 18 GHz. Select either female-female, male-male, or female-male connectors.
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Electronic Calibration Module, DC To 9 GHz, 2-Port
N7552A
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Reduce your calibration time by half with a smaller, lighter 2-port module that supports 3.5 mm or type-N 50 Ω connectors
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Electronic Calibration Module (ECal), 18 GHz, 7 Mm, 2-Port
N4696D
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The Keysight N4696D microwave electronic calibration (ECal) module makes calibration of Keysight vector network analyzers fast, easy, and accurate. The N4696D is a precision 2-port ECal module that supports 7-mm connectors up to 18 GHz. The plastic storage case for the N4696D is included for securing your ECal module and accessories.
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RF Electronic Calibration Module (ECal), DC To 13.5 GHz, 4-ports
N4431D
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The Keysight N4431D RF electronic calibration (ECal) module makes calibration of Keysight vector network analyzers fast, easy and accurate. The N4431D is a precision 4-ports ECal module that supports multiple selection of connectors like Type-N, 3.5 mm, 7-16 and 4.3-10 connectors and can be mixed up to 13.5 GHz. Select either female-female, male-male, or female-male connectors.
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Multiport Electronic Calibration Module (ECal), DC To 20, 6-ports
N7564A
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A series of multiport ECal that cascade-able up to 36-ports which makes it possible to calibrate a wide frequency range from DC up to 20 GHz without making numerous connections during calibration process. Ideal for multiport measurement application with VNA in such as high-volume PA/FEM, massive MIMO antenna or high-speed digital interconnect test applications
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Multiport Electronic Calibration Module (ECal), DC To 9 GHz, 6-ports
N7562A
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A series of multiport ECal that cascade-able up to 36-ports which makes it possible to calibrate a wide frequency range from DC up to 9 GHz without making numerous connections during calibration process. Ideal for multiport measurement application with VNA in such as high-volume PA/FEM, massive MIMO antenna or high-speed digital interconnect test applications
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Electronic Calibration Module (ECal), 40 GHz, 2.92 Mm, 2-port
N4692D
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The Keysight N4692D microwave electronic calibration (ECal) module makes calibration of Keysight vector network analyzers fast, easy and accurate. The N4692D is a precision 2-port ECal module that supports 2.92 mm connectors up to 40 GHz. Select either female-female, male-male, or female-male connectors. The plastic storage case for the N4692D is included for securing your ECal module and accessories.
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RF Electronic Calibration Module (ECal), DC/300 KHz To 7.5 GHz, 7-16, 2 Port
85098D
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The Keysight 85098D RF electronic calibration (ECal) module makes the calibration of vector network analyzers fast, easy, and accurate. ECal is a precision, single-connection calibration technique for your vector network analyzer. Performing a full two-port calibration takes less than half the time and a number of connections using ECal versus mechanical calibration kits. Furthermore, the accuracy of the calibration is comparable between electronic and mechanical methods. Traditional mechanical calibrations require intensive operator interaction, which is prone to errors. With ECal, the operator simply connects the ECal module to the network analyzer and the software controls the rest.
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RF Electronic Calibration Module (ECal), DC/300 KHz To 9 GHz, 7mm, 2 Port
85091D
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The Keysight 85091D RF electronic calibration (ECal) module makes the calibration of vector network analyzers fast, easy, and accurate. ECal is a precision, single-connection calibration technique for your vector network analyzer. Performing a full two-port calibration takes less than half the time and a number of connections using ECal versus mechanical calibration kits. Furthermore, the accuracy of the calibration is comparable between electronic and mechanical methods. Traditional mechanical calibrations require intensive operator interaction, which is prone to errors. With ECal, the operator simply connects the ECal module to the network analyzer and the software controls the rest.
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RF Electronic Calibration Module (ECal), DC/300 KHz To 9 GHz, 3.5 Mm, 2 Port
85093D
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The Keysight 85093D RF electronic calibration (ECal) module makes the calibration of vector network analyzers fast, easy, and accurate. ECal is a precision, single-connection calibration technique for your vector network analyzer. Performing a full two-port calibration takes less than half the time and a number of connections using ECal versus mechanical calibration kits. Furthermore, the accuracy of the calibration is comparable between electronic and mechanical methods. Traditional mechanical calibrations require intensive operator interaction, which is prone to errors. With ECal, the operator simply connects the ECal module to the network analyzer and the software controls the rest.
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Electronic Calibration Module (ECal), DC-4 GHz, 2-Port
N7550A
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The N7550A is part of Keysight’s family of value-line electronic calibration (ECal) modules that makes calibration of vector network analyzers fast, easy and accurate. Cut your calibration down to half the time it normally takes using a traditional mechanical cal kit. Simply connect it to your instrument and the firmware does the rest. For greater precision and higher accuracy measurements consider the N44xx and N469x family of ECal products.
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Electronic Calibration Module (ECal), 50 GHz, 2.4 Mm, 2-port
N4693D
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The Keysight N4693D microwave electronic calibration (ECal) module makes calibration of Keysight vector network analyzers fast, easy, and accurate. The N4693D is a precision 2-port ECal module that supports 2.4 mm connectors up to 50 GHz. Select either female-female, male-male, or female-male connectors. The plastic storage case for the N4693D is included for securing your ECal module and accessories.
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Cathodoluminescence Solutions for Electron Microscopy
CLUE Series
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HORIBA Scientific's Cathodoluminescence Universal Extension enhances any SEM’s analytical capabilities while maintaining its original functionality. Since the sample is able to remain in the same spot, CLUE can easily be combined with other microscopy applications, such as EDS and EBIC.
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Autonomous Driving AI Decision Making ECU
ADM-AL30
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ADM-AL30 is dedicated to Autonomous Driving Applications. Powered by Intel® 12th Gen Core i9/i7 CPU and the NVIDIA RTX 4000 SFF Ada GPU, this AI computing platform can process huge amounts of data and make crucial decisions for autonomous vehicles. Equipped with 2 x 10G Base-T and 8 x 1G Base-T1 automotive ethernet ports, as well as 8 x CAN FD and 4 x CAN 2.0 interfaces, it seamlessly integrates into any automotive ecosystem. Plus, its ISO 16750-2 and ISO 7637-2 ensure reliability and safety under the most demanding conditions.
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Microscopy
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Aurora is an award-winning Airy Beam Light Sheet imaging system designed for researchers working in fields such as neuroscience, developmental biology, cancer biology, regenerative medicine and other bioscience disciplines, including Plant Sciences and Marine Biology. Compact, affordable and customisable, Aurora is available as a single and multiphoton light sheet fluorescence microscope for rapid, large 3D volumetric imaging, high resolution, multicolour, time-lapse imaging and live cell imaging. Aurora uses ground-breaking Airy Beam Light Sheet imaging techniques to achieve outstanding results in the field. It is currently in use by many leading organisations delivering results previously not possible.
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Microscopy
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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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Microscopy
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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.
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Microscopy Software/Hardware
ZEISS Atlas 5
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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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RF Electronic Calibration Module (ECal), DC/300 KHz To 9 GHz, 4.3-10, 2 Port
85094D
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The Keysight 85094D RF electronic calibration (ECal) module makes the calibration of vector network analyzers fast, easy, and accurate. ECal is a precision, single-connection calibration technique for your vector network analyzer. Performing a full two-port calibration takes less than half the time and a number of connections using ECal versus mechanical calibration kits. Furthermore, the accuracy of the calibration is comparable between electronic and mechanical methods. Traditional mechanical calibrations require intensive operator interaction, which is prone to errors. With ECal, the operator simply connects the ECal module to the network analyzer and the software controls the rest.
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Scanning Electron Microscope
Verios G4 XHR SEM
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The Thermo Scientific™ Verios G4 scanning electron microscope (SEM) provides sub-nanometer resolution from 1 to 30 kV and enhanced contrast needed for precise measurements on materials in advanced semiconductor manufacturing and materials science applications, without compromising the high throughput, analytical capabilities, sample flexibility and ease of traditional Scanning Electron Microscope (SEM).
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Cryo-Correlative Microscopy Stage
CMS196
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Linkham Scientific Instruments
Electron microscopy (EM) provides structural information at very high resolution. However, it can give only restricted insight into biological and chemical processes due to limitations in staining and sample preparation processes. Fluorescence microscopy on the other hand is a very sensitive method to detect biological, chemical and genetic processes and events inside living cells. Cryo-CLEM brings it all together: it is a new and emerging technique to combine the individual advantages from both Fluorescence and EM by imaging the same sample location with both techniques and superimposing the complementing information.





























