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- Applied Rigaku Technologies, Inc
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NEX CG II Energy Dispersive X-ray Fluorescence Spectrometer
NEX CG II
Applied Rigaku Technologies, Inc
NEX CG II, a powerful second-generation energy dispersive X-ray fluorescence (EDXRF) spectrometer, delivers rapid qualitative and quantitative determination of major and minor atomic elements in a wide variety of sample types — from oils and liquids to solids, metals, polymers, powders, pastes, coatings, and thin films.
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Glow Discharge Atomic Emission Spectrometer
GDS900
LECO's Glow Discharge Spectrometer (GDS) offers you state-of-the-art technology designed specifically for routine elemental determination in most conductive ferrous and nonferrous materials. The GDS900 features improved performance, stability, accuracy, and precision in steel, iron (including as-cast), aluminum, copper, zinc, nickel, cobalt, tungsten, and titanium materials, while featuring our user-friendly Cornerstone® brand software to help streamline your analysis.
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Advanced Spectroscopy System
Nuclear Physics is the field of physics that studies atomic nuclei and their constituents and interactions. We offer Geiger-Mueller tube systems for investigating the statistics of radioactive decay, as well as scintillator based systems for gamma spectroscopy.
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Cold Vapor Atomic Fluorescence (CVAF) Mercury Analyzer
QuickTrace M‑8000
The QuickTrace® M-8000 Cold Vapor Atomic Fluorescence (CVAF) mercury analyzer is ideal for ultra-trace to sub-mg/L mercury quantitation. Due to the high sensitivity of the M-8000, it easily achieves the ultra-trace detection limit of <0.05 ng/L total mercury that is demanded by customers following EPA method 1631. The QuickTrace® M-8000 is also versatile enough to analyze samples >400 µg/L without dilution in a research or industrial setting.
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Mineral Insulated Cables
We have world-class manufacturing plant for producing wide range of Mineral insulated (MI Cable), metal-sheathed cable. The applications of MI Cable are many such as blast furnace, atomic research, nuclear reactors, Kilns and many more. We provide standard as well as custom-built cables as per the customer need/ application requirement. We have very flexible lines so always ready to meet the demand.
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Atomic Force Microscope (AFM)
CombiScope
The CombiScope Atomic Force Microscope (AFM) is an advanced research instrument that provides the entry path for researchers in biology, spectroscopy and photonics. If you work with transparent samples either in air or in liquid towards nano-scale structures and (near-field) nano-optical properties investigation, the CombiScope is the right solution for you. It perfectly combines inverted optical and atomic force microscopies and unleash all the power of both techniques providing the instrument adjustment and measurement automation, high resolution and high speed. Plus it can be easily upgraded to our Raman spectrometers.
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Ozone Gas Delivery Systems
MKS ozone gas delivery systems provide field-proven, high concentration, ultra-clean ozone generation for advanced thin film applications such as Atomic Layer Deposition (ALD), Chemical Vapor Deposition (CVD), Tetraethyl Orthosilicate (TEOS)/Ozone CVD (HDSACVD), contaminant removal and oxide growth. Gas delivery models have integrated ozone concentration monitoring, flow control, and power distribution. Additional system options include safety monitoring, status indicators and ozone destruction capability.
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Cold-Atom Frequency Standard
Rack-mount microwave atomic clock using laser-cooled 87Rb atoms. Production unit target specifications: Allan deviation 2×10-12 @ 1 s, 2×10-14 @ 104 s; flicker floor 1×10-14; absolute accuracy < 1×10-13.
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Scanning Probe Microscopy/Atomic Force Microscopy (SPM/AFM Analysis)
Rocky Mountain Laboratories, Inc.
Scanning probe microscopy (SPM) refers to a family of measurement techniques that utilize a scanning probe. The most common measurement is Atomic Force Microscopy (AFM Analysis), which measures surface topography. Imaged areas can be from the nm scale to as large as 100 µm X 100 µm. Heights and depths of features can be measuredand many surface roughness parameters, e.g Ra, can be calculated. 3-D images can also be produced for dramatic data presentation. Magnetic and electrical response can also be measured with SPM.
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Microwave Plasma Subsystems
AX2600 And AX2700
The AX2600 and AX2700 Microwave Plasma Delivery Subsystems are complete and highly reliable solutions for the cost-effective generation and safe delivery of atomic species to the wafer. Available in 3 kW, these highly reliable, field-proven plasma delivery subsystems deliver highly concentrated atomic species. Suitable for multiple chemistries, the high speed and precision of this plasma system’s automatic tuning guarantees immediate ignition and fast transition from plasma conditions for high productivity. Robust closed-loop control ensures high accuracy, precision, and optimal repeatability of the process from wafer to wafer and system to system.
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Atomic Spectroscopy
Agilent’s comprehensive atomic spectroscopy software portfolio leads the industry in the simple setup and productivity tools required by routine analytical laboratories, while also providing the flexibility needed for advanced method development in research and academia. Our advanced ICP-MS software, including the powerful ChemStation and MassHunter systems, are used in all of our mass-spec platforms, so you can benefit from a single solution and reduce staff training requirements. Our cutting edge ICP software also enables intuitive control in ICP-MS processes.
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Nano Tribometer
NT-30
NT-30 enables user to study interactions at atomic level. Easy to interchange modules with advanced high precision mechanical design allows it to unfold new hidden mysteries in nanotechnology.
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Deep Ultraviolet Spectrophotometer System
VUVAS-10X
A new ultraviolet spectrophotometer system for optical metrology just arrived at NASA Goddard! The VUVAS-10X spectrophotometer works best in the 90 to 160 nanometer wavelength range, also known as deep or vacuum ultraviolet (VUV) region. It uses a windowless hydrogen plasma light source and differential pump section to reach many wavelengths beyond those of conventional deuterium lamps. The source also works with other gases, or gas mixtures, for atomic spectral line emission from about 30 nanometers (double ionized Helium gas) up to the Visible light range. The new spectrophotometer system, McPherson VUVAS-10X, uses a one-meter focal length high-resolution monochromator with the special light source, scintillated detector and Model 121 goniometric sample chamber. The system is ideal for optical transmission, absorbance and specular reflectance at incident angles up to 60 degrees. This McPherson spectrophotometer system will help develop, inspect and qualify optical materials and coatings used for very high altitude and extraterrestrial space flight missions.
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High-Speed AFM
Is a type of atomic force microscopy (AFM) that, unlike conventional AFM, can take an image very quickly and with relatively low imaging force, therefore allowing for visualizing the dynamic behavior of biomolecules.
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Miniature Single-Stage Isolators – 780nm And 852nm
AOSense is excited to offer free-space optical isolators at 780 nm and 852 nm. The innovative, small package size enables integration into compact laser sources and amplifiers without sacrificing transmission efficiency. The low external magnetic field enables the isolator to tightly integrate into systems with high magnetic-field sensitivity such as atomic spectrometers, magnetometers, clocks, and cold-atom devices.
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Surface Analysis
Dimension AFP
The Dimension AFP is the world's only fab-based metrology tool specifically designed for both CMP profiling and etch depth metrology for current and advanced technology nodes. The system combines the superb resolution of an AFM with the long-scan capability of an atomic force profiler tomonitor etch depth and dishing and erosion on submicron features with unsurpassed repeatability.
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The Nanomotor®
The patented Nanomotor® is a piezo driven linear motor. It is a multifunctional basic part for many positioning and manipulation devices. It has a positioning stroke of up to more than a centimeter while operating with atomic resolution. The Nanomotor thus bridges eight orders of magnitude. The Nanomotor consists of a cylindrical housing and a slider with a free axial hole inside. It combines high resolution in the sub-nanometer range with a large positioning stroke. The Nanomotor utilizes a piezo tube for fine positioning and a shock wave produced by the same piezo tube for coarse movements. The small Nanomotor is half the size of a match stick. It can lift six times its own mass. Every point of its stroke can be reached with a speed of up to 1 mm/s. The Nanomotor also works in ultrahigh vacuum or even under water. It is driven by a PC card at a supply voltage of only ±15 volts.
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High-resolution Spectrometer
HR4000
Our next-generation high-resolution spectrometer is a novel combination of optics and electronics that is ideal for applications such as characterizing lasers, measuring gas absorbance, and determining atomic emission lines.
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Nuclear Safeguard Systems
Nuclear Safeguards are measures to verify that States comply with their international obligations not to use nuclear materials (plutonium, uranium and thorium) for nuclear explosives purposes. Global recognition of the need for such verification is reflected in the requirements of the Treaty on the Non-Proliferation of Nuclear Weapons (NPT) for the application of safeguards by the International Atomic Energy Agency (IAEA). Also, the Treaty Establishing the European Atomic Energy Community (the Euratom Treaty) includes requirements for the application of safeguards by the European Commission. Organizations such as the IAEA and EURATOM and others are tasked with ensuring declared amounts of material are indeed present in the facilities in which they are stored and that such material is not being diverted to other uses.
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Atomic Force Microscope for SEM/FIB
AFSEM® AFM Insert
AFSEM is an atomic force microscope (AFM), designed for integration in a SEM or Dualbeam (SEM/FIB) microscope. Its open access design allows you to simultaneously operate SEM and AFM inside the SEM vacuum chamber. The correlated image data of AFM and SEM enable unique characterization of your sample, and the combination of complementary techniques is a key success factor for gaining new insights into the micro and nano worlds. AFSEM enables you to easily combine two of the most powerful analysis techniques to greatly extend your correlative microscopy and analysis possibilities.
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Atomic Absorption Systems
Agilent leads the industry with innovative atomic absorption (AA) instruments. The entry-level SpectrAA 55B is ideal for labs in remote locations, while the 240FS and 280FS AA systems achieve the productivity of sequential ICP with Agilent’s Fast Sequential technology. The 240Z and 280Z AA systems provide superior performance and accurate background correction with transverse Zeeman technology. Our AA Duo systems feature unique simultaneous operation of both the flame and graphite furnace.
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CVAF – Cold Vapor Atomic Fluorescence
Cold Vapor Atomic Fluorescence (CVAF) is a powerful technique based on detecting fluorescence light emitted by the sample. Below the principle of the technique is explained in a nutshell.
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Atomic Force Microscope
3DM Serirs
Park Systems has introduced the revolutionary Park 3DM Series, the completely automated AFM system designed for overhang profiles, high-resolution sidewall imaging, and critical angle measurements. With the patented decoupled XY and Z scanning system with tilted Z-scanner, it overcomes the challenges of the normal and flare tip methods in accurate sidewall analysis. In utilizing our True Non-Contact Mode™, the Park 3DM Series enables non-destructive measurement of soft photoresist surfaces with high aspect ratio tips.
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Rubidium Instruments
Our range of atomic / rubidium disciplined time and frequency standards in a variety of enclosures and sizes to suit all appliations. These acurate time and frequency references are used in telecoms, aviation, nautical and precision test and measurement enviroments.
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NeaSNOM Microscope
Based on high-stability scanning-sample Atomic Force Microscope optimized for optical nanoscopyOptical focusing unit accepts visible, infrared and even terahertz illuminationTwo independent module bays allow imaging & spectroscopy at the same time
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High Power Microwave Plasma Source
The High Power Microwave Plasma Source can be combined with a 6kW microwave generator for a high concentration of radicals providing a high productivity manufacturing solution. The High Power Microwave Plasma source is capable of igniting in multiple process gases, over a wide operating range with performance benefits in current and emerging applications such as, high throughput photoresist removal, advanced surface cleaning and conditioning, as well as, advanced deposition applications at the atomic level.
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Chemical Downstream Plasma Source
The AX7610 is a microwave plasma source for remote plasma applications. With replaceable quartz or sapphire plasma tubes, the AX7610 downstream source offers configuration flexibility to meet the most demanding application process parameters. The quartz tube version is ideally suited for production of atomic oxygen, nitrogen or argon. The sapphire tube version is compatible with much more severe CF4 CHF3 and NF3 chemistries.
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AFM Atomic Force Microscope
FM-Nanoview 6800
Zhengzhou Nanbei Instrument Equipment Co. Ltd
All-in-one design, smart structure and shape.Scan head and sample stage are designed together, strong anti-vibration performance .Precision laser detection and probe alignment device make laser adjustment simple and easy.Adapt servomotor to drive the sample approaching tip manually or automatically, to realize precision scanning area positioning.
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Atomic Force Microscope
Flex-Mount
Flex-Mount is a unique AFM that can be configured to acquire high-resolution information on large, non-planar and demanding samples. The Flex-Mount solution combines the superior resolution and performance of the Nanosurf FlexAFM scan head with the integrability of the Nanosurf NaniteAFM.
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Nuclear Magnetic Resonance Spectrometer
NMR
NMR is an abbreviation for Nuclear Magnetic Resonance. An NMR instrument allows the molecular structure of a material to be analyzed by observing and measuring the interaction of nuclear spins when placed in a powerful magnetic field.For the analysis of molecular structure at the atomic level, electron microscopes and X-ray diffraction instruments can also be used, but the advantages of NMR are that sample measurements are non-destructive and there is less sample preparation required.Fields of application include bio, foods, and chemistry, as well as new fields such as battery films and organic EL, which are improving and developing at remarkable speed. NMR has become an indispensable analysis tool in cutting-edge science and technology fields.
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Quantum Accelerometer
A quantum accelerometer uses atom interferometry to measure accelerations along a horizontal axis. Quantum accelerometers are able to achieve a combination of sensitivity and stability by exploiting quantum interference. As such, they will be critical components of a quantum inertial navigation unit, which will offer satellite-free navigation with unparalleled long-term accuracy. A phase locked SolsTiS system underpins this setup and provides the extremely low phase noise required to make high sensitivity measurements and dynamic frequency tunability to address multiple atomic transitions.