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Hybrid Microcircuit Technology Handbook James J. Licari (AvanTeco, Whittier, CA, USA)

Hybrid Microcircuit Technology Handbook By James J. Licari (AvanTeco, Whittier, CA, USA)

Hybrid Microcircuit Technology Handbook by James J. Licari (AvanTeco, Whittier, CA, USA)


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Summary

Integrates various technologies used in the design, fabrication, assembly, and testing of hybrid segments crucial to producing reliable circuits. This book covers technologies including: resistor trimming, cleaning, and moisture analysis. It also includes a chapter on design guidelines helpful to materials and process engineers, and chemists.

Hybrid Microcircuit Technology Handbook Summary

Hybrid Microcircuit Technology Handbook: Materials, Processes, Design, Testing and Production by James J. Licari (AvanTeco, Whittier, CA, USA)

The Hybrid Microcircuit Technology Handbook integrates the many diverse technologies used in the design, fabrication, assembly, and testing of hybrid segments crucial to the success of producing reliable circuits in high yields. Among these are: resistor trimming, wire bonding, die attachment, cleaning, hermetic sealing, and moisture analysis. In addition to thin films, thick films, and assembly processes, important chapters on substrate selections, handling (including electrostatic discharge), failure analysis, and documentation are included. A comprehensive chapter of design guidelines will be of value to materials and process engineers, chemists, and electrical engineers who design and test hybrid circuits.

About James J. Licari (AvanTeco, Whittier, CA, USA)

has his own consulting firm, AvanTeco, specializing in materials and processes for electronics. He holds a BS in Chemistry from Fordham University and a PhD in Chemistry from Princeton University, where he was a DuPont Senior Fellow. His areas of expertise include materials and processes for electronic applications, primarily for high reliability systems, hybrid microcircuits, printed wiring circuits, and other interconnect packaging technologies. He is an expert on polymeric materials including adhesives, coatings, encapsulants, insulation, reliability based on failure modes and mechanisms. Dr. Licari has had a forty-year career dedicated to the study and advancement of microelectronic materials and processes. Notable achievements throughout this career include conducting the first studies on the reliability and use of die-attach adhesives for microcircuits, which he did in the mid-1970s through the early 1980s, making industry and the government aware of the degrading effects of trace amounts of ionic contaminants in epoxy resins. He conducted early exploratory development on the use of non-noble metal (Cu) thick-film conductor pastes for thick-film ceramic circuits. He carried out the first studies on the use of Parylene as a dielectric and passivation coating for MOS devices and as a particle immobilizer for hybrid microcircuits. He developed the first photo-definable thick-film conductor and resistor pastes that were the forerunners of DuPonts Fodel process, for which he received a patent was granted in England. And he developed the first photocurable epoxy coating using cationic photoinitiation by employing a diazonium salt as the catalytic agent (U.S. 3205157) . The work was referenced as pioneering work in a review article by J.V. Crivello The Discovery ad Development of Onium Salt Cationic Photoinitiators, J. Polymer Chemistry (1999)

Table of Contents

IntroductionSubstratesThin Film ProcessesThick Film ProcessesResistor TrimmingParts SelectionAssembly ProcessesTestingHandling and Clean RoomsDesign GuidelinesDocumentation and SpecificationsFailure AnalysisMultichip Modules: A New Breed of Hybrid MicrocircuitsReferencesIndex

Additional information

NPB9780815514237
9780815514237
0815514239
Hybrid Microcircuit Technology Handbook: Materials, Processes, Design, Testing and Production by James J. Licari (AvanTeco, Whittier, CA, USA)
New
Hardback
William Andrew Publishing
1998-12-31
600
N/A
Book picture is for illustrative purposes only, actual binding, cover or edition may vary.
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