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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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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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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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Miniature Dual-Stage Isolators
780nm And 852nm
AOSense offers dual-stage, free-space optical isolators at 780 nm and 852 nm for enhanced isolation. 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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Nuclear Power Radiation Monitoring Systems
From continuous area monitors, radiation detectors, process monitors and remote indicators and alarms, featuring industry-standard technology, Victoreen instruments are the trusted source for radiation monitoring systems and quality assurance for nuclear power professionals. With a wide range of solutions for maintaining Code of Federal Regulations-compliant facilities, Victoreen delivers the safety, reliability and quality needed to guarantee top performance for the global atomic energy community.
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GPS Clocks
The Excelitas Rubidium Atomic Frequency Standard ( RAFS) is an exceptionally high-performance and high-reliability space-qualified rubidium clock developed for global navigation satellite systems.
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Space Payloads
With our expertise in both space and quantum technology we are exploring space based quantum instruments. CASPA is Teledyne e2v’s satellite platform for developing and demonstrating quantum scientific sensors and precision atomic timing in space.
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Rubidium Oscillator
IQRB-2
The IQRB-2 low noise rubidium oscillator is a sub-miniature atomic oscillator combined with 'active noise filter' technology. This rubidium oscillator has 100 times less drift than OCXOs and with short term stability of 0.002ppb/s at 100s this rubidium oscillator provides significant improvements in performance over other rubidium components.
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Transmission Electron Microscope
TEM
Atomic Resolution Electron Microscope offering a maximum accelerating voltage of 300 kV, and equipped with JEOL’s own Cs Correctors. This instrument guarantees an unprecedented STEM-HAADF image resolution of 63 pm.
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Atomic Force Microscope
XE-PTR
Park Systems' PTR Series is a fully automatic industrial in-line AFM solution for, but not limited to, automatic Pole Tip Recession measurements on Rowbar-level, individual Slider-level, and HGA-level sliders. With sub-nano scale accuracy, repeatability, and throughput, the PTR Series is the metrology tool of choice for Slider manufacturers to improve their overall production yield.
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Timing And Sync
Precision timing is critical for defense and commercial industries and powering essential network operations. Safran offers secure time servers and solutions for accurate network synchronization, ensuring security, compliance, and adherence to best practices. Safran excels in delivering precision timing solutions, including NTPNTP, or Network Time Protocol, is a widely used networking protocol that enables computers and devices to synchronize their system clocks with a reference time source. It ensures accurate timekeeping in computer networks by allowing devices to obtain precise time information from NTP servers, which are typically synchronized to highly accurate atomic clocks. NTP is essential for various applications and services that rely on synchronized time, such as network security, authentication, and data logging. time server appliances and GPSGlobal Positioning System is a navigation satellite system. See also master clocks globally.
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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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Ozone Gas Generators
SEMOZON® Ozone gas generators and subsystems are the industry standard for compact, high concentration, ultra-clean ozone gas generation. Applications include Atomic Layer Deposition (ALD), Atomic Layer Etch (ALE), Chemical Vapor Deposition (CVD) and Wet Cleaning.
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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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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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Optical Lattice Clock
Our strontium lattice clock project aims to create the world’s first commercially available fully integrated optical frequency atomic clock. The clock will be compact, transportable, easy to use and based on optical lattice technology enabled by the SolsTiS. The strontium lattice clock will achieve frequency uncertainties below 10-17, a level unprecedented on the global market.
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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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Atomic Force Microscope
XE7
Park XE7 has all the state-of-the-art technology you've come to expect from Park Systems, at a price your lab can afford. Designed with the same attention to detail as our more advanced models, the XE7 allows you to do your research on time and within budget.
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R*evolution® Remote Plasma Source
The innovative R*evolution® Remote Plasma Source combines field-proven, low-field toroidal plasma technology with an actively cooled plasma chamber made of high purity quartz, significantly reducing oxygen, hydrogen and nitrogen atomic gas loss through wall recombination. Self-contained and compact, R*evolution delivers up to 10 slm of oxygen radicals from a 6kW power supply with true power accuracy of <1% resulting in a high density, extremely clean radical source for photoresist strip and an optimal clean rate greater than 12 microns/min-1. R*evolution can be used for other surface preparation applications.
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Clock Synchronization
Analog Devices Clock synchronizers are designed for wired networking applications, providing the clock redundancy functionality needed to maximize system uptime. Our technology supports clock synchronization with common standards, including 1 pulse per second (PPS) output signal from a GPS receiver. GPS signals are broadly available and utilize an extremely stable atomic clock as its time base, but they are often noisy. Systems rely on the IEEE1588 timing protocol to establish synchronous communications across the wired network, including synchronous Ethernet and synchronous digital hierarchy (SDH) to optical transport network (OTN) mapping/demapping. The IEEE1588 protocol has emerged as the preferred method for Clock synchronizing systems throughout both computer networks and local area networks (LAN).
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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 Absorption Spectrophotometer (Baseline Stability)
GT00WA00ZH
*Good basic line stability*High precision of measurement*Optical path of high energy*Long-life and anti-corrosive atomization system*Multi-functional analysis mode
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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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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 Force Microscope
FlexAFM
For success in research, scientists depend on professional tools that can readily provide the information needed, regardless of the tasks at hand.
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The Level AFM For Educational Purposes
"Eddy"
„Eddy“ is an Atomic Force Microscopy system for student's education. It bases on the approved Level AFM setup and includes a full sample set and a large cantilever set.
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Rubidium Oscillator
Rubidium oscillators are a type of atomic clock and are the most accurate time standards known and are used as time distribution services to control things such as telecommunications infrastructure, TV broadcasts and global navigation satellite systems (GPS).
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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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Erbium Fiber Frequency Comb
Detailed description of item: The AOSense frequency comb is a low noise, polarization maintaining (PM) device. Key features include a PM fiber architecture centered at 1550nm with turnkey modelocking; a free-running linewidth of the carrier-envelope offset frequency of <200 kHz; a temperature-insensitive all-fiber f-2f interferometer exhibiting fceo beatnotes with SNR > 45dB (300kHz RBW); and dual fast/slow cavity length actuators with a bandwidth of >300 kHz. The repetition rate of the comb is factory set and allows matching across multiple combs for dual comb applications. The optics package incorporates an optical heterodyne module designed for locking to the comb to an ITU-specified laser reference. The comb is capable of supporting an Allan deviation of < 5 x 10-18 at 1 second and ~10-20 after 105 seconds. Add-on features include all fiber extensions to visible wavelengths corresponding to several atomic transitions. An integrated comb electronics package is currently under development.
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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 Microscopy
Bruker’s industry-leading AFM microscopes provide the highest levels of performance, flexibility and productivity, and incorporate the very latest advances in atomic force microscopy techniques. Applications range from materials science to biology, from semiconductors to data storage devices, from polymers to optics with measurement of nanoscale topography, nano-mechanical, nano-electrical and nanoscale chemical mapping.