The objective of the Solar Array Module Plasma Interaction Experiment (SAMPIE) is to investigate, by means of a shuttle-based flight experiment and relevant ground-based testing, the arcing and current collection behavior of materials and geometries likely to be exposed to the LEO plasma on high-voltage space power systems, in order to minimize adverse environmental interactions. An overview of the SAMPIE program is presented in outline and graphical form
The possible interactions that could exist between a high voltage system and the space plasma enviro...
As part of the SAMPIE (The Solar Array Module Plasma Interaction Experiment) program, the Langmuir p...
Thesis (M.S.)--Massachusetts Institute of Technology, Dept. of Aeronautics and Astronautics, 1995.In...
The Solar Array Module Plasma Interactions Experiment (SAMPIE) is an approved NASA Space Shuttle spa...
The SAMPIE flight experiment, tentatively scheduled to fly on a shuttle mission in mid 1992, will in...
The Solar Array Module Plasma Interactions Experiment (SAMPIE) is a flight experiment that flew on t...
The Solar Array Module Plasma Interactions Experiment (SAMPIE) is a shuttle based flight experiment ...
SAMPIE, the Solar Array Module Plasma Interactions Experiment, flew in the Space Shuttle Columbia pa...
Two programmable, high voltage DC power supplies were developed as part of the flight electronics fo...
In March of 1994, STS-62 carried the NASA Lewis Research Center's Solar Array Module Plasma Interact...
The electrostatic charging of the Space Shuttle Orbiter during the operation of the Solar Array Modu...
Among the solar cell technologies to be tested in space as part of the Solar Array Module Plasma Int...
Photovoltaic arrays interact with the low earth orbit (LEO) space plasma in two fundamentally differ...
The Solar Array Module Plasma Interaction Experiment (SAMPIE) has two key instruments at the heart o...
Among the solar cell technologies to be tested in space as part of the Solar Array Module Plasma Int...
The possible interactions that could exist between a high voltage system and the space plasma enviro...
As part of the SAMPIE (The Solar Array Module Plasma Interaction Experiment) program, the Langmuir p...
Thesis (M.S.)--Massachusetts Institute of Technology, Dept. of Aeronautics and Astronautics, 1995.In...
The Solar Array Module Plasma Interactions Experiment (SAMPIE) is an approved NASA Space Shuttle spa...
The SAMPIE flight experiment, tentatively scheduled to fly on a shuttle mission in mid 1992, will in...
The Solar Array Module Plasma Interactions Experiment (SAMPIE) is a flight experiment that flew on t...
The Solar Array Module Plasma Interactions Experiment (SAMPIE) is a shuttle based flight experiment ...
SAMPIE, the Solar Array Module Plasma Interactions Experiment, flew in the Space Shuttle Columbia pa...
Two programmable, high voltage DC power supplies were developed as part of the flight electronics fo...
In March of 1994, STS-62 carried the NASA Lewis Research Center's Solar Array Module Plasma Interact...
The electrostatic charging of the Space Shuttle Orbiter during the operation of the Solar Array Modu...
Among the solar cell technologies to be tested in space as part of the Solar Array Module Plasma Int...
Photovoltaic arrays interact with the low earth orbit (LEO) space plasma in two fundamentally differ...
The Solar Array Module Plasma Interaction Experiment (SAMPIE) has two key instruments at the heart o...
Among the solar cell technologies to be tested in space as part of the Solar Array Module Plasma Int...
The possible interactions that could exist between a high voltage system and the space plasma enviro...
As part of the SAMPIE (The Solar Array Module Plasma Interaction Experiment) program, the Langmuir p...
Thesis (M.S.)--Massachusetts Institute of Technology, Dept. of Aeronautics and Astronautics, 1995.In...