Microelectronics program at Marshall Space Flight Center
Microelectronics program to convert electronic equipment of Saturn launch vehicle
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Microelectronics program to convert electronic equipment of Saturn launch vehicle
Proceedings of second NASA microelectronics symposium
Goddard Space Flight Center microelectronics program - integrated circuit block and semiconductor process development
Langley Research Center microelectronics program - systems, circuits and devices, and materials and components development
Marshall Space Flight Center microelectronics program implementation, hardware development, and research and development
Metallurgical methods for detection and analysis of failure mechanisms in microelectronic devices
Microelectronic analog data and digital command control system for transonic dynamic wind tunnel tests of research aircraft models
Fast scan infrared microscope for measuring thermal and electromechanical parameters affecting reliability of microelectronic devices
Fabrication, packaging, and testing of microelectronic equipment for Applications Technology Satellite /ATS/ scientific experimental package
Microelectronics for air bearing gyro and accelerometer servo loops
Hybrid assembly processes for packaging of thin film and semiconductor microelectronic devices
Ninety-eight-channel microelectronic PCM MULTIPLEXER-ENCODER design and development qualified to Apollo spacecraft environments
NASA program for microelectronic circuit and space vehicle reliability
IR techniques for reliability enhancement of microelectronics
Implant telemetry techniques and associated problems and potential of microelectronics
The Roadmap begins with an assessment of needs from the microelectronics for aerospace applications viewpoint. Needs Assessment is divided into materials, packaging components, and radiation characterization of packaging.
Advances in microelectronics technologies over the past several decades have truely revolutionized modern society in almost every aspect of human endeavor.
Future small satellite systems for both Earth observation as well as deep-space exploration are greatly enabled by the technological advances in deep sub-micron microelectronics technologies.