A microcircuit integrator for a digital differential analyzer
Microcircuit integrator design for digital differential analyzer
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Microcircuit integrator design for digital differential analyzer
Prototype respiration analyzer and environmental testing with humans
Respiration analyzer for in-flight monitoring of human respiratory functions
Characteristics, selection, and operation of residual gas analyzers
Circuit design modification of converter and readout system by addition of charge amplifiers at inputs and by addition of fourth D channel- four-parameter pulse height analyzer
Design equations of swept frequency spectrum analyzers for in-flight vibration analysis
Comparison of three partial-pressure gas analyzers used in ultrahigh vacuum range
Criteria for selecting residual gas analyzers using mass spectrometer principle
Low-power multichannel pulse height analyzer for solar neutron detection aboard balloon or rocket
Random access memory core for space-borne pulse height analyzer
Switched amplifier, mode control circuit for ASTRAC II iterative differential analyzer
Miniaturizing automatic amino acid analyzer for Apollo and Voyager missions
Miniaturizing n automatic amino acid analyzer for use on Apollo mission and Mars Voyager mission
Digital to analog pulser system for integral and differential testing pulse height analyzers
The Science Opportunity Analyzer, SOA, now in its third year of development, is intended to meet the need of adaptability to the various mission types at JPL and portability for the user community.
In the past Science Planning for space missions has been comprised of using ad-hoc software toolscollected or reconstructed from previous missions, tools used by other groups who often speak a different 'technical' language or even 'the backs of envelopes'. In addition to the tools being rough, the work done with these tools often has had to be redone or at least re-entered when it came time to determine actual observations. Science Opportunity Analyzer (SOA), a Java-based application, has been built for scientists to enable them to identify/analyze observation opportunities and then, to create corresponding observation designs.
The design, fabrication techniques and first test results of a new type of micromachined energy analyzer for charged particles are presented.