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Wafer Failure Analysis
Defines the failure mode and then through additional testing determine it's cause.
See Also: Wafer, Wafer Thickness, Wafer Edge, Wafer Resistivity, Wafer Mapping, Wafer Probes, Wafer Probers, Wafer Inspection
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Failure Analysis
MicroINSPECT 300FA
The MicroINSPECT 300FA is an automated wafer inspection tool used for semiconductor wafer failure analysis. Its small footprint, high speed, and low cost relative to its rich features yield a superb cost of ownership and makes this an ideal tool for your fab or failure analysis lab. The MicroINSPECT 300FA combines advanced robotics, wafer sorting, an intelligent wafer inspection microscope together with SiteVIEW Software to produce an integrated failure analysis tool.
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Failure Analysis
Failure Analysis (FA) plays a crucial role in the production of semiconductors. It provides process and design feedback to determine the root cause of any failures. Time-to-data for the FA Engineer is a critical measurement and SemiProbe’s Probe System for Life ® (PS4L) is ideally suited to excel in this application. All key components are interchangeable, making it easy to switch between individual die, wafers, and packaged parts.
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Electronics Failure Analysis System
Sentris
Due to the continued decrease in integrated circuit feature size and supply voltages, detecting and locating the miniscule amount of heat generated by failure sites has become increasingly difficult. Sentris pinpoints low-level infrared thermal emissions from IC faults such as short circuits and leakage current.
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Failure Analysis
A partial list of our state of the art test equipment, applicable to these testing disciplines, will include the following: Two Scanning Electron Microscopes with EDS (SEM/EDS) Three Differential Scanning Calorimeters (DSC) Three Thermogravimetric Analyzers (TGA) Three Thermo Mechanical Analyzers (TMA) One Dynamic Mechanical Analyzer (DMA) Two Real-Time Fluoroscopic X-ray Systems, including a Microfocus System One Fourier Transform Infrared Microscope (FTIR) (capable of identifying a single particle of an unknown material) Two Ion Chromatographs (IC) (capable of identifying ionic impurities in ppm)
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Failure Analysis And Magnetic Imaging Services
Micro Magnetics offers failure analysis services on a contractual basis. We maintain two current density metrology systems at our headquarters in Fall River and can produce maps of current flow in a wide variety of ICs and packages, usually with initial results delivered within 48 hours. Our engineers will work closely with you to understand and interpret the results in order to determine the root cause of the failure.
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Failure Analysis Services
Innovative Circuits Engineering, inc
Innovative circuits engineerin's failure analysis group performs root cause analysis on a wide variety of integrated circuit devices.
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Failure Analysis – Materials
Failure analysis – materials is the investigation into the background or history of a sample, or an event, to determine why a particular failure occurred. A product failure may include premature breakage, discoloration or even an unexpected odor. It is useful to know if this failure is a new, unique occurrence or if it has been an ongoing issue. The investigation can involve analyzing the sample as it currently exists and extrapolating from that data what may have caused the failure. A sample of the “good” vs. “bad” product may also be useful for comparison purposes.
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Failure Analysis Services
BMP Testing and Calibration Services Inc.
Failure analysis plays a crucial role in product development that enables industries to prevent future product failures and improve them for the end-user. It’s a multi-faceted approach to finding how and why a product failed and involves an in-depth investigation of the circumstances surrounding the failure and discovery of relevant background information, including but not limited to the type of application, environmental factors, service life, and pertinent design information.
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Destructive Physical Analysis & Failure Analysis
DPACI's component analysis laboratory performs major analytical functions, such as destructive physical analysis, failure analysis, counterfeit analysis, and material analysis on components & devices. Our destructive physical analysis techniques are performed in accordance with standards and methods used in most military and space program requirements. Solutions for difficult production problems are resolved through our failure analysis procedures.
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Wafer Analysis Systems
Tropel®
Corning Specialty Materials has a long heritage of providing solutions to semiconductor equipment manufacturers. The Tropel line of wafer analysis equipment enables measurement of wafer substrates from 2” to 450mm regardless of material type and surface finish.
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Benchmark, Competitive and Failure Analysis
Helping you determine the root cause of product failures and evaluate products against industry competition and standards.We provide third-party verification and support for claims related to performance versus competition, root product failure cause, and benchmark industry performance. As an independent laboratory with over 60 years of product testing experience, our expertise helps you evaluate products for a variety of performance related characteristics. Additionally, we can provide expert witness legal testimony for insurance claims, CPSC filings, and civil/criminal court cases through our testing results and data.
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Root Cause Failure Analysis
Maintenance Reliability Group, LLC
Root Cause Analysis of Grease Lubricated Components: Root cause analysis includes a complete root-cause failure report and recommendations for further monitoring and corrective actions. MRG will test for grease consistency, oxidation, product contamination and wear metals utilizing Grease Thief® Analyzer die extrusion test, FTIR, RULER and RDE Spectroscopy. Testing includes Analytical Ferrography and Rheometer testing. Testing can include the submission of a failed component for extraction of grease from failed component and visual inspection for Root Cause Analysis.Root Cause Analysis of Grease Lubricated Components: Root cause analysis includes a complete root-cause failure report and recommendations for further monitoring and corrective actions. MRG will test for grease consistency, oxidation, product contamination and wear metals utilizing Grease Thief® Analyzer die extrusion test, FTIR, RULER and RDE Spectroscopy. Testing includes Analytical Ferrography and Rheometer testing. Testing can include the submission of a failed component for extraction of grease from failed component and visual inspection for Root Cause Analysis.
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Failure Analysis
Failure analysis on electronic components is a continuous challenging task. The smaller transistor dimensions, increasing functional complexity and changing device packaging styles requires new tools and skills for sample preparation, fault localization techniques, high resolution imaging and analysis.
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Failure and Technology Analysis
Failure analyses in order to clarify the failure cause soonest possible.From single device to the whole system - and from highly complex IC up to printed circuit board (PCB), mounting & interconnection technology and printed board assembly (PBA).
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Wafer Inspection Products
Sonix provides manual and automated wafer inspection and metrology systems for wafers ranging from 100mm to 300mm, with extensive analysis capabilities at both the wafer and device level. These industry-leading automated wafer inspection systems are used by the world’s top manufacturers to ensure quality from development through production.
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Wafer Inspection System
INSPECTRA® Series
INSPECTRA® series meet the requests of 100% automatic inspection with high speed and high specifications from front-end to back-end of semiconductor processing. INSPECTRA® series are wafer inspection systems with high speed and high sensitivity. Our original "Die-to-Statistical-Image" comparison method achieves the target defects detection controlling process variation and overkill.
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Wafer Bonding Systems
ith over 15 years experience in designing and manufacturing precision wafer bonding equipment, EVG wafer bonding systems are well recognized in setting industry standards for the MEMS production industry. Besides supporting wafer level and advanced packaging, 3D interconnects and MEMS fabrication, the EVG500 series wafer bonding systems can be configured for R&D, pilot-line or volume production. They accommodate the most demanding applications by bonding under high vacuum, precisely controlled fine vacuum, temperature or high pressure conditions. Multiple bonding methods including anodic, thermo compression, glass-frit, epoxy, UV and fusion bonding are covered. Based on a unique modular bond chamber design the EVG500 series allow for an easy technology transfer from R&D to high volume production.
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Failure Analyziz and Quality Assurance
NX20
There's no room for error in the data provided by your instruments. Park NX20, with its reputation as the world's most accurate large sample AFM, is rated so highly in the semiconductor and hard disk industry for its data accuracy.
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Inline Wafer Testing
IL-800
Pre-process elimination of low-quality wafers using measured lifetime, trapping, and resistivity. Process control and optimization at dopant diffusion and nitride deposition steps.
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Wafer Prober
Precio octo
200mm wafer prober. The system adapts ultra-high speed indexing and high-speed wafer exchange functions to reduce test cost and improve overall equipment effectiveness (OEE) markedly enhancing productivity.
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TFProbe Wafer Measurement Tools
Angstrom Sun Technologies, Inc.
Angstrom Sun Technologies Inc offers optical measurement and inspection systems for semiconductor and related industries. Its core products include wafer measurement systems, spectroscopic ellipsometers, thin film reflectometers, and microspectrophotometers.
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Wafer Internal Inspection System
INSPECTRA® IR Series
An infrared internal defect inspection system has been added to the INSPECTRA® series.It is now possible to inspection with both infrared and visual light in one system.
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Contactless Wafer Geometry Gauge
MX 20x series
The E+H geometry gauges are based on two heavy plates mounted parallel to each other. Embedded in the plate are a set of capacitive distance sensors. The wafer will be moved manual or automatically between the plates and measured without any movement.
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Ultrasonic Wafer Scanner
AutoWafer
Installed in more wafer applications than all other automatic ultrasonic testing tools combined, AutoWafer provides a complete, production-ready wafer scanner for wafers from 100mm to 200mm, including multiple sizes in a single batch.
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Wafer Tester
Tokyo Electronics Trading Co., Ltd.
A vital step in the Semiconductor Value Stream, focusing on electrical screening and consumption of Known Good Die (KGD).
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Wafer and Cells PL System
HS-PL
Photoluminescence (PL) Imaging is a unique non-invasive inspection tool as it can be used in-line at many different steps of the cell manufacturing process. This facilitates the direct comparison of data obtained at one process step to data obtained at another. Additionally, PL imaging can be compared to electroluminescence (EL) imaging on finished cells using comparable equipment.
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CS/ONH-Analysis
G4 PHOENIX DH
The highly sensitive thermal conductivity detector allows analysis down to a sub-ppm range, while the optional mass spectrometer allows detection limits in the low ng/g range.
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Gas Analysis
Accurate measurement of gases and their concentrations is critical in many applications, and often poses a major challenge. Sensors' experience with different measurement principles, including NDIR, NDUV, and thermal conductivity, along with the ability to provide special combinations of these techniques within our products, enables us to tackle these challenges. In addition, our experience goes into every detail of our gas analyzers, ensuring reliable results, even under harsh conditions. Our skilled team of experts is happy to assist you in finding the optimized solution for your measurement requirements, with either off-the-shelf components or a customized solution.
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Signal Analysis
CPB (Constant Percentage Bandwidth) Analysis
The program is used for transfer fractional octave (1/1, 1/3, 1/12, and 1/24 octave) spectral analysis of signals coming from the input channels of FFT spectrum analyzers (in real time or recorded time realization view mode), as well as for viewing various spectral characteristics of signals.





























