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kSA ACE
The kSA Atomic Control for Epitaxy (ACE) metrology tool is a highly sensitive instrument that measures the in situ flux rate of atomic species using the principle of atomic absorption spectroscopy.
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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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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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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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Atomic Spectroscopy
For the past 40 years, we have provided products to the Atomic Spectroscopy industry that solve laboratory problems and improve the success of our OEM partners. These products include unique sample delivery solutions, sample preparation tools, autosamplers, and solutions to improve sample throughput and detection limitations, among others. In short, we strive to understand the markets our OEM partners serve in order to deliver products that meet their needs.
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Atomic Force Microscope
AFM
Atomic Force Microscopes are the most widely used SPM microscopes. They can be applied in fields that span from surface science, semiconductor technology, magnetic media, polymer science, optics to biology, chemistry and medicine.Absolute positioning with an accuracy of 2 nm.
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Atomic Force Microscope
NX-Hivac
Park NX-Hivac allows failure analysis engineers to improve the sensitivity of their measurements through high vacuum Scanning Spreading Resistance Microscopy (SSRM). Because high vacuum scanning offers greater accuracy, better repeatability, and less tip and sample damage than ambient or dry N2 conditions, users can measure a wide range of dope concentration and signal response in failure analysis applications.
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Analytical Services
Atomic Force Microscopy (AFM) allows for sub nanometer resolution imaging of surface topography and is able to quantify surface roughness at the angstrom scale. Our team can give you highly accurate measurements such as surface topography, dopant distribution, magnetic domain features, and a wide variety of other sample properties to give you the information you need to do great work.Park can provide measurements in the following areas:● Topography (surface roughness, grain size, step height, etc.)● Mechanical Properties (stiffness, etc.)● Electrical properties (capacitance, conductivity, etc.)● Thermal properties ● Magnetic properties These properties can be measured in air or liquid, depending on your needs.
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Atomic Force Microscope
AFM Heron
New, fully motorized AFM HERON (HERO of Nanotechnology) which allows to perfectly align a cantilever, laser and photodiode by just one click on a command button. The scanning settings and landing parameters are also automated that allows to avoid any time consuming adjustment operations, thus leaving more time to researcher for designing the experiment and performing more accurate measurements.
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Desktop Spectrometer
Electro-Technic Products, Inc.
The RSpec Explorer is an educational tool which makes it possible for an entire class or lecture hall to study atomic emission spectra. This is a great device for hands-on student learning including having students identify the gas in an unknown spectrum tube. Your students will find the software (included) is easy to use right out of the box. Until now, it’s been nearly impossible to teach about light and color using traditional tools like diffraction gratings because you can’t determine if all your students are even seeing the same results of their experiments. But with the RSpec-Explorer’s camera and software system, you will be confident knowing that every student is seeing the same thing.
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Atomic Absorption Spectroscopy Consumables
Since the atomic absorption spectrophotometer was first launched in 1968, Shimadzu Corporation has remained at the forefront of the world inorganic analysis industry. Shimadzu still maintains an overwhelming market share with highly-regarded products that are selected as the market standard throughout the world. The extensive product range incorporates fully automatic general-purpose systems, a simple and low-cost AA instrument, and a dedicated soil and plant analyzer. They all share great ease-of-use, high functionality, and excellent reliability. Choose Shimadzu to dramatically enhance the productivity and reliability of your laboratory. Shimadzu products will meet all your demands.
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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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Ozone Generators & Systems
MKS offers a wide range of ozone generators and modular delivery systems which produce ultra-pure, reliable ozone gas. In the clean semiconductor environment, Ozone reacts with a wide range of precursor gases resulting in the creation of Al2O3, ZrO2, HfO2, and La2O3 metal oxides to enable thin film deposition processes like Atomic Layer Deposition (ALD) and Etch (ALE). MKS’ generator uses Grade 6 gas, enabling the creation of higher film density improving product yield. Photovoltaic and Display manufacturing leverage semiconductor best practices and utilize ozone to create enhanced thin film barriers, improving product performance and reliability.
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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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Atomic Spectroscopy
Tens of thousands of installations worldwide rely on PerkinElmer spectrometers to obtain accurate results from inorganic elemental analyses quickly, efficiently, effortlessly. No matter what your field, application or sample type, we have the tools and expertise to help -- all based on more than 50 years at the forefront of atomic spectroscopy technology. Take advantage of our complete array of solutions for unparalleled performance, accuracy, and confidence.
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Atomic Force Microscope
LensAFM
The Nanosurf LensAFM is an atomic force microscope that continues where optical microscopes and profilometers reach their resolution limits. It is mounted like a normal objective lens, thus extending the resolution and measuring capabilities of these instruments.
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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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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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Atomic Force Microscope
NaioAFM
The NaioAFM is the ideal atomic force microscope for nanoeducation and basic research on small samples. This all-in-one AFM system provides solid performance and easy handling, with a price tag and footprint that fit anyone and any place.
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Atomic Clocks
Society has become dependent on atomic time. Atomic clocks underpin our financial transactions, communications services and broadcast services, but they are expensive to produce and maintain.Quantum technology brings a new generation of clocks which are smaller, more accurate and cost effective, and as a result this is driving an evolution of new time-critical products and services.
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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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Nanolattice Standards for Analytical Instruments
The NanoLattice™ (NLSM) 100 nm pitch standard utilizes gratings with near perfect periodicity to calibrate magnification and scan linearity of Electron and Atomic Force Microscopes (AFM). Make the grade, with the highest quality pitch standard of its kind available.
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Optical Emission Spectrometers
Optical emission spectrometers (OES) and the measuring principle of the atomic emission are the ideal method and provide the perfect instrumentation for metal analysis in all different industrial businesses and environments.
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Optical Emission Spectrometers
Optical emission spectrometers (OES) and the measuring principle of the atomic emission are the ideal method and provide the perfect instrumentation for metal analysis in all different industrial businesses and environments.
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Atomic Oven
Atomic oven with collimated output for ultra-high vacuum systems, loaded with Sr, Yb or Ca. The oven provides superior heat isolation while achieving high atomic flux. Its low power consumption results in exceptionally low pressures during normal operation for temperatures up to 650 °C. The chamber is shipped in an ultra-high vacuum storage chamber supplied by AOSense. Customers can provide AOSense with a previously purchased storage chamber for repeat orders. Please contact us for more information.
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Atomic Force Microscope
NX10
Park NX10 produces data you can trust, replicate, and publish at the highest nano resolution. From sample setting to full scan imaging, measurement, and analysis, Park NX10 saves you time every step of the way. With more time and better data, you can focus on doing more innovative research.
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Atomic Force Microscope
DriveAFM
The DriveAFM is Nanosurf’s novel flagship AFM platform: a tip-scanning atomic force microscope (AFM) that combines, for the first time, several capabilities in one instrument to enable novel measurements in materials and life sciences.
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Microscope Photoluminescence Spectrometer
Flex One
Photoluminescence (PL) is the light emission from a material under the excitation by ultraviolet, visible or near infrared radiation. In semiconductor luminescent property measurements, the sample (e.g. GaN, ZnO, GaAs etc.) was usually excited by a laser (with a wavelength of 325 nm, 532 nm, 785 nm etc.), and its PL spectrum is measured to analyze the optical physical properties, such as the band gap width etc.. Photoluminescence is a high sensitivity, non-destructive analysis method, which can provide the information about the structure, composition and surrounding atomic arrangement of materials. Therefore, it is widely used in physics, materials science, chemistry and molecular biology and other related fields.
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Atomic Absorption Spectrophotometer
Atomic Absorption Spectrophotometer (AAS) is a kind of instrument for the inorganic analysis. It is widely used in environmental protection, medicine, sanitation, metallurgy, geology and petrochemical industry fields for micro and trace analysis. Atomic Absorption Spectrophotometer can analyze more than seventy kinds of elements. With the development of instrument accessories and analyzing technology, more objects, from element to morphology and from nonmetallic anion to gas-phase molecule, could be analyzed directly or indirectly.
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XPS/ESCA Service
X-ray Photoelectron Spectroscopy (XPS Analysis), also known as Electron Spectroscopy for Chemical Analysis (ESCA), is used to determine quantitative atomic composition and chemistry. It is a surface analysis technique with a sampling volume that extends from the surface to a depth of approximately 50-70 Angstroms. Alternatively, XPS analysis can be utilized for X-ray Photoelectron Spectroscopy (XPS) or Electron Spectroscopy for Chemical Analysis (ESCA) from Evans Analytical Group (EAG).sputter depth profiling to characterize thin films by quantifying matrix-level elements as a function of depth.