Thin Film
layer of material ranging < a nanometer to > a micrometer in thickness.
See Also: Film, Ellipsometers
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50GHz Dense Wavelength Division Multiplexer
DWDM-0500
Hangzhou Huatai Optic Tech. Co., Ltd.
DWDM series is based on mature thin film filtering technology and adopt metal sealing technology to encapsulate. It has the feature of flat channel bandwidth, flexible channel configuration, low insert loss and high isolation. The flexibility of channel configuration and modularized design make it convenient for system upgrading and expanding. All the Huatai products have no epoxy glue in optical line and can be used in high power optical communication system.
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100GHz DWDM Module(4,8,16 Channel)
Flyin Optronics’ 100GHz dense wavelength division multiplexer (DWDM) utilizes thin film coating technology and proprietary design of non-flux metal bonding micro optics packaging to achieve optical add and drop at the ITU wavelengths. It provides ITU channel center wavelength, low insertion loss, high channel isolation, wide pass band, low temperature sensitivity and epoxy free optical path . It can be used for wavelength add/drop in telecommunication network system.
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3-Axis Non-Robotic Automated Testing System
AT3
The Instron AT3 is a space-efficient, highly adaptable 3-axis mechanical testing platform designed for automated execution of tensile, compression, flexural, and lap shear tests. Built to comply with a broad spectrum of ASTM and ISO standards, it’s well-suited for evaluating materials such as plastics, elastomers, thin films, foils, and metals. The system streamlines the entire testing workflow from specimen measurement and handling to strain measurement and specimen disposal—enabling users to load up to 160 samples and let the AT3 take care of the rest. Boost productivity, reduce manual intervention, and achieve consistent, dependable results with every test cycle.
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Low Voltage Holiday Detector
M1-AC
For use such as: Coatings, in-plant environments, rebar, pipelines, sheet materials coated with thin film under 20milsa,
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Surface Analysis
A UHV surface analysis system for thin film depth profilingMeasures the surface composition of the first few nanometers and/or micrometers depth of solid samples.
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ALD Advantages
Atomic Layer Deposition (ALD) stands out for one reason: control. The most significant advantages of thin film deposition via Atomic Later Deposition over other methods, are manifest in four distinct areas – film conformality, low temperature processing, stoichiometric control, and inherent film quality associated with the self-limiting, and self-assembled nature of the ALD mechanism ALD is exceptionally effective at coating surfaces that exhibit ultra high aspect ratio topographies, as well as surfaces requiring multilayer films with good quality interfaces technology. This thin-film process builds materials one atomic layer at a time, delivering unmatched uniformity and sub-nanometer precision, even on complex 3D structures. That level of accuracy makes ALD a critical technology for advanced semiconductor manufacturing, flexible electronics, and materials research.
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Metrology Solutions for Semiconductors
Bruker Semiconductor develops, manufactures, markets, and supports metrology solutions for thin films, which are based on novel, rapid, non-contacting and non-destructive X-ray technology. With Bruker’s acquisition of Jordan Valley Semiconductors, a name synonymous with unparalleled worldwide customer service and support, 75% of the world's top 25 semiconductor manufacturers rely on Bruker metrology tools for front-end and back-end applications, including development of their next-generation thin films. Bruker commitment to innovation and technology leadership drives the continued release of new advancements in metrology, and has garnered numerous awards and industry recognition.
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3 Ports FWDM(1310/1490/1550nm)
Flyin Optronics' Micro-Optical WDM utilizes thin film coating technology and proprietary design of non-flux metal bonding micro optics packaging. It provides low insertion loss, high channel isolation, low temperature sensitivity and epoxy free optical path.
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Proton Induced X-ray Emission (PIXE)
Elemental Analysis Incorporated, utilizing Proton Induced X-ray Emission (PIXE), provides a non-destructive, simultaneous analysis for the 72 inorganic elements from Sodium through Uranium on the Periodic Table for solid, liquid, and thin film (i.e. aerosol filter) samples. The PIXE technique offers the advantage of analysis, without the necessity for time consuming digestion, thereby minimizing the potential for error resulting from sample preparation.
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Gas and Vapor Delivery Systems
In thin film deposition, high-quality results start with how process gases are delivered, as they help create the stable environment needed for consistency by controlling flow, pressure and composition to support processes like ALD, CVD, and PVD. Advanced semiconductor devices developed for the most advanced computing processes, such as AI and edge computing, need the ultra-high-purity environments of our gas and vapor deposition delivery systems.
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GHW Series 13.56 MHz, 1.25, 2.5, And 5.0 KW High-Reliability RF Plasma Generators
The GHW Series RF power generators deliver maximum rated output powers of 1250, 2500 and 5000 Watts at a frequency of 13.56 MHz. The GHW generators offer field-proven reliability, exceptional stability, and unsurpassed repeatability for high uptime and process yield. They are ideally suited for Plasma Enhanced Chemical Vapor Deposition (PECVD), High Density Plasma CVD (HDPCVD), etching and other thin film applications during the manufacture of integrated circuits, flat panel displays, and data storage devices.
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Drying Time & Permeability
When developing a coating process, it is important to know the exact time it takes for the coating to dry or cure. For multicoat paint systems, having knowledge of the drying time enables the operator to know when any subsequent layers can be applied. There are many stages involved in the coating drying time. Once a coating has been applied, it levels off under gravity, and, as the coating begins to cure, a thin dry film appears on the surface. The coating then continues to dry until, finally, it is totally cured.
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Pure Boron Foils
MICROMATTER™ boron foils are also produced by laser plasma ablation; however, the deposition process is much more complex and time consuming than that for diamond-like carbon. Accordingly, only thin films, mainly designed for beam stripping of heavy ions in electrostatic accelerators, are available. All films are generally delivered on glass substrates coated with a release agent.
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Scatterometer with Thin Film Measurement Capabilities
OptiPrime-X Series
The n&k OptiPrime-X series are automated metrology systems used to fully characterize and monitor Thin Film and OCD applications for both current and next generation IC processes.
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PLD Systems
Pulsed Laser Deposition
Is a versatile thin film deposition technique. A pulsed laser (~20 ns pulse width) rapidly evaporates a target material forming a thin film that retains target composition. This unique ability of stoichiometeric transfer of target composition into the film was realized first by the research team led by Dr. Venkatesan at Bell Communications Research, NJ, USA, nearly 30 years ago while depositing high temperature superconducting (YBa2Cu3O7) thin films. Since then, PLD has become the preferred deposition technique where ever thin films of complex material compositions are considered. Another unique feature of PLD is its ability for rapid prototyping of materials. The energy source (pulsed laser) being outside the deposition chamber, facilitates a large dynamic range of operating pressures (10-10 Torr to 500 Torr) during material synthesis. By controlling the deposition pressure and substrate temperature and using relatively small target sizes, a variety of atomically controlled nano-structures and interfaces can be prepared with unique functionalities.
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C-Band 1510nm BWDM
WD1510
Hangzhou Huatai Optic Tech. Co., Ltd.
WD1510 WDM is based on mature thin film filtering tech, with wide bandwidth, flatness, low insertion loss and high isolation. It is mainly applied to WDM network to achieve the combination and separation of C-Band 1510nm (±10nm, monitor and control channel).
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Materials Metrology
Nova is a market leader for innovative thin film metrology and process control technologies. We develop highly sensitive in-line metrology solutions on high productivity platforms, thereby enabling critical metrology solutions to be closer to a semiconductor fab’s process and integration needs.Our technologies enable customers to accurately detect and quantify small variations in film composition and thickness, thereby influencing better device functionality, and improved manufacturing yield.
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Deposition Systems
When a thin film requires the most stringent structural or compositional properties consistently across every layer, Veeco’s Ion Beam Deposition (IBD) technology is often the answer. Using a focused beam of ions to sputter material from a target, this physical vapor deposition technique builds dense, uniform films with standout adhesion and stability.
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Resistance Temperature Detectors (RTD) Simulators
Simulation of resistance based temperature sensors such as positive or negative temperature coefficient thermistors. Resistance Temperature Detectors (RTDs) can be wire-wound or thin film. Our RTD simulator modules provide a cost-effective method of simulating both PT100 and PT1000 RTD sensor types that require fine setting resolution.
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PED Systems
Pulsed Electron Deposition
Is a process in which a pulsed (80-100 ns) high power electron beam (~1000 A, 15 kV) penetrates approximately 1 μm into the target resulting in a rapid evaporation of target material. The non-equilibrium heating of the target facilitates stoichiometric ablation of the target material. Under optimum conditions, the target stoichiometry is preserved in the deposited films. All solid state materials – metals, semiconductors and insulators, including those transparent to laser wavelengths in PLD – can be deposited as thin films with PED. By combining PLD and PED, the range of complex materials that can be prepared as thin films can be greatly enhanced.
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2 MHz RF Plasma Generators
NOVA® Series
The NOVA ; RF Plasma Generators are ideally suited for Plasma Enhanced Chemical Vapor Deposition (PECVD), High Density Plasma CVD (HDPCVD), etching and other thin film applications during the manufacture of integrated circuits, flat panel displays, and data storage devices.
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Benchtop Metrology Solution
FilmTek 2000 PAR-SE
Scientific Computing International
Our most advanced benchtop metrology solution, engineered to meet the needs of nearly any advanced thin film measurement application, from R&D to production. Combines spectroscopic ellipsometry and DUV multi-angle polarized reflectometry with a wide spectral range to deliver the highest accuracy, precision, and versatility in the industry. Patented parabolic mirror technology allows for a small spot size down to 50µm, ideal for direct measurement of product wafers and patterned films.
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DC Power Source Systems
Looking for a proven, precise DC power source? Advanced Energy offers standard DC and pulsed-DC power-delivery options. Thanks to vast feature sets and reliable performance, our DC power generators are used in nearly every manufacturing market — semiconductor, flat panel, glass, thin film, etc. And via our global, dedicated support staff, we make sure you get the right DC power product for your processes and applications.
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OhmegaPly®
For many years Teledyne Labtech has manufactured RF & Microwave PCB with integrated OhmegaPly® resistors. OhmegaPly® is a thin film resistor-conductor material. Using standard subtractive printed circuit technology, integral resistors are formed on circuit layers. These resistors can be buried within a Multilayer circuit board or used on the board surface. The resistors can also be used mounted on Metalbacked PCB.OhmegaPly® is available in 25 ohm per square, 50 ohm per square and 100 ohm per square sheet resistivity.
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80-CH 50G Athermal AWG
Athermal AWG(AAWG) have equivalent performance to standard Thermal AWG(TAWG) but require no electrical power for stabilization. They can be used as direct replacements for Thin Film Filters(Filter type DWDM module) for cases where no power is available, also suitable for outdoor applications over -30 to +70 degree in access networks. Flyin’s Athermal AWG(AAWG) provide excellent optical performance, high reliability, ease of fiber handling and power saving solution in a compact package. Different input and output fibers, such as SM fibers, MM fibers and PM fiber can be selected to meet different applications. We can just offer 19” 1U rackmount package for 50G AWG products.
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Multi-Test Resistivity Measurement System
Sheet resistance mapping of thin films with a collinear 4-point probe, Temperature co-efficient of resistance (TCR) of thin films with collinear 4-point probe, Precision temperature co-efficient of resistance (TCR) with 2-point Kelvin probes and precision surface temperature probe, resistor testing with 2-point Kelvin probes,Precision resistor testing with a Kelvin probe card, temperature co-efficient of resistance resistor test (TCR), and Standard TCR test of multiple resistors with Kelvin probes or a probe card.
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CWDM OADM Module(4,8,16,18-Channel)
Flyin Optronics' Coarse wavelength division multiplexer (CWDM Mux/Demux) utilizes thin film coating technology and proprietary design of non-flux metal bonding micro optics packaging. It provides low insertion loss, high channel isolation, wide pass band, low temperature sensitivity and epoxy free optical path.
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Deadweight Testers
AMETEK Sensors, Test & Calibration
We provide the world’s only ball-type deadweight testers, where the ball and weights float on a thin film of air, which is virtually frictionless. This design eliminates the necessity to rotate the weights during testing, and allows the user to concentrate on the instrument itself. Our testers are engineered to offer user-friendly, safe operation, in the field, or in a lab. Both pneumatic and hydraulic testers are available.
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Surface Quality Monitors
PET manufactures and markets non-destructive, non-contact surface contamination and thin film detection models and automated systems (surface quality monitoring system) capable of detecting thin layer contamination, thin films and coating down to the Angstrom level. These systems represent a major breakthrough by providing, for the first time, a quantitative measure of surface cleanliness. As surface cleanliness verification instruments, in a part cleaning environment, these products are capable of validating the cleaning quality of all the part cleaning equipment available in the market. Any of SQM model series is capable of verifying metal contamination; monitoring absence/presence of organic and/or inorganic on virtually on surfaces of all metals. They are, price/performance, the most sufficient product available for testing surface of metals for surface cleanliness. These systems operate in an ambient environment, require no sample preparation or deposit of any agents on the surface. In any parts cleaning environment where the quality and efficiency of part cleaning equipment for removal of surface contamination is highly desired, these systems provide a scientific solution by quantitatively measuring the surface cleanliness. The SQM series has the sensitivity and operational simplicity required to provide fast and cost effective surface evaluation for all metals.
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Spectroscopic Ellipsometers
M-2000
The M-2000 line of spectroscopic ellipsometers is engineered to meet the diverse demands of thin film characterization. An advanced optical design, wide spectral range, and fast data acquisition make it an extremely powerful and versatile tool.





























