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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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Electron Multipliers
Electron multipliers are mainly used as positive/negative ion detectors. They are also useful for detecting and measuring vacuum UV rays and soft X-rays. Hamamatsu electron multipliers have a high gain (multiplication factor) yet low dark current, allowingoperation in photon counting mode to detect and measure extremely small incoming particles and their energy. This means our Hamamatsu electron multipliers are ideal for electron spectroscopy and vacuum UV spectroscopy such as ESCA (electron spectroscopy for chemical analysis) and Auger electron spectroscopy as well as mass spectroscopy and field-ion microscopy.
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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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Electron Microscope Analyzer
QUANTAX FlatQUAD
QUANTAX FlatQUAD is the EDS microanalysis system based on the revolutionary XFlash® FlatQUAD. This annular four-channel silicon drift detector is inserted between SEM pole piece and sample, achieving maximum solid angle in EDS.
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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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Nanoscale Microscopy Standards
The nanoscale AFM-CD standard (CD, critical dimension) contains structures to calibrate line widths and periods of AFM (atomic force microscopy) devices.
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Electron Microscope Analyzer
QUANTAX EDS for TEM
Long standing expertise in EDS ensures the configuration of the best solution for your specific microscope (STEM, TEM or SEM) thanks to slim-line detector design and geometrical optimization for each microscope pole piece and EDS flange type
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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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Digital Transmission
The physical transfer of data (a digital bit stream or a digitized analog signal[1]) over a point-to-point or point-to-multipoint communication channel. Examples of such channels are copper wires, optical fibers, wireless communication channels, storage media and computer buses. The data are represented as an electromagnetic signal, such as an electrical voltage, radiowave, microwave, or infrared signal.
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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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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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Transmission Meters
Shenzhen Linshang Technology Co., Ltd.
As a leading window film transmission meter (window tint meter) manufacturer, Linshang Technology provides a variety of window film meters to measure transmission rate, rejection rate, SHGC for materials such as automotive film, thermal insulation film, architectural film, thermal insulation glass, etc. There are mainly portable solar film transmission meters LS160 series, LS162 series, LS163 series, desktop demonstration window tint meters LS101, LS180, LS181, L182, split transmission meters LS110A, LS110H. Whether you want to measure UV or IR rejection (940nm, 1400nm) or visible light transmittance, you can find a suitable window film meter here.
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Transmission Probes
Transmission dip probes are used for on-line and inline absorbance measurements in fluids. When dipping or permanently mounting the probe end into the fluid, absorbance can be measured. Discover our range of various transmission dip probes below
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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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Wireless Transmission
Wireless transmission is a form of unguided media. Wireless communication involves no physical link established between two or more devices, communicating wirelessly. Wireless signals are spread over in the air and are received and interpreted by appropriate antennas.
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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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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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Data Transmission
HighReach Measuring & Controlling System Co.,Ltd
Is sending and receiving digital or analog data between devices.
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FilmPro Infrared Transmission Gauge
Nordson Measurement & Control Solutions
High-Performance Basis Weight and Thickness Measurements for Film, Sheet and Coatings
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Electron Spin Resonance Spectrometer
ESR
Electron Spin Resonance (ESR) is a powerful analytical method to detect, analyze and determine thecharacteristics of unpaired electrons in a substance. It is clear that the state of electrons in a substance have a strong influence on its characteristics and functionality, so evaluation by ESR is becoming more and more important. Many types of substances, from electronic materials to catalysts, biological samples, can be studied regardless of whether they are solid, liquid, or gas. A wide range of ESR techniques are possible using suitable attachments together with the basic instrument.
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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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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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Linear Electron Accelerators Where Electrons Reach Energy Of Up To 10 MegaWatt
*Processing polymer materials and modifying their parameters*Processing semiconductor materials and devices*For treating food products for disinfection, eliminated bugs, pathogens, and micro-organisms, and increasing their shelf life*Processing diamonds, precious stones and semi-precious stones to change their color
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Telecom Transmission Tests
Networked Communication Solutions, LLC
Is designed to test across the full bands of T1-Lite® or E1-Lite® or test individual timeslots.
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Electron Spectrometers
SPECS Surface Nano Analysis GmbH
Nanotechnology is focused on the engineering and the physical properties of small structures. Therefore techniques that have sensitivities at a scale of 0.1 nm to 100 nm are required to study these structures. Different methods of electron spectroscopy (XPS, UPS and AES) have a sensitivity in this range and are therefore key techniques in nanoscience.Thanks to our high level of expertise in electron optics and electronics we can offer electron spectrometers with the highest resolution and transmission possible.