In a highly competitive and demanding microelectronics market, reliable non-destructive methods for quality control and failure analysis of electronic components are highly demanded. Any robust non-destructive method should be capable of dealing with the complexity of miniaturized assemblies such as chip-scale packages and 3D IC stacks. Scanning acoustic microscopy (SAM) is indeed one the best non-destructive tools for failure analysis purposes. It is also a useful technique for imaging the morphology, location and size distribution of defects in different microelectronics components. SAM can detect delaminations at sub-micron thicknesses. It is also one of the only available techniques capable of efficiently evaluating popcorning in PBGA's...
ABSTRACT. Recent pr?gr~ss on diagnosis and characterization of defects in hybrid microelectronic com...
Coating technologies are extensively used in various remanufacturing and repair purposes. However, t...
Since acoustic microscopy was first invented by Quate and Lemons,1 many workers in the field have bu...
In manufacturing of microelectronic components, non-destructive failure analysis methods are importa...
Ongoing trends in microelectronics aim at continuously increasing the integration rate and complexit...
New semiconductor chip technologies and technologies for 3D integration require information’s of pac...
La microscopie acoustique, une technique non destructive d'investigation des circuits microélectroni...
The ongoing trend in microelectronics aims at increasing functionality while reducing the devices fo...
The interest of the scanning acoustic microscope previously demonstrated in the biomedical field is ...
Recent progress on diagnosis and characterization of defects in hybrid microelectronic components us...
Abstract: Scanning Acoustic Microscopy (SAcM) has been widely used for non-destructive evaluation (N...
Industrial applications often require failure analysis methods working non-destructively, enabling e...
A non-destructive inspection system using 50MHz ultrasound has been developed. The system has been d...
The increasing demand on the complexity of microelectronic components will soon require architecture...
The current paper describes the application of acoustic GHz-microscopy in comparison to conventional...
ABSTRACT. Recent pr?gr~ss on diagnosis and characterization of defects in hybrid microelectronic com...
Coating technologies are extensively used in various remanufacturing and repair purposes. However, t...
Since acoustic microscopy was first invented by Quate and Lemons,1 many workers in the field have bu...
In manufacturing of microelectronic components, non-destructive failure analysis methods are importa...
Ongoing trends in microelectronics aim at continuously increasing the integration rate and complexit...
New semiconductor chip technologies and technologies for 3D integration require information’s of pac...
La microscopie acoustique, une technique non destructive d'investigation des circuits microélectroni...
The ongoing trend in microelectronics aims at increasing functionality while reducing the devices fo...
The interest of the scanning acoustic microscope previously demonstrated in the biomedical field is ...
Recent progress on diagnosis and characterization of defects in hybrid microelectronic components us...
Abstract: Scanning Acoustic Microscopy (SAcM) has been widely used for non-destructive evaluation (N...
Industrial applications often require failure analysis methods working non-destructively, enabling e...
A non-destructive inspection system using 50MHz ultrasound has been developed. The system has been d...
The increasing demand on the complexity of microelectronic components will soon require architecture...
The current paper describes the application of acoustic GHz-microscopy in comparison to conventional...
ABSTRACT. Recent pr?gr~ss on diagnosis and characterization of defects in hybrid microelectronic com...
Coating technologies are extensively used in various remanufacturing and repair purposes. However, t...
Since acoustic microscopy was first invented by Quate and Lemons,1 many workers in the field have bu...