Acceptance checkout equipment for spacecraft - ACE-S/C.
Acceptance checkout equipment spacecraft for centralized control and LEM and CSM systems testing
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Acceptance checkout equipment spacecraft for centralized control and LEM and CSM systems testing
Apollo program automatic checkout equipment, examining computer controlled checkout concept for Apollo spacecraft
Carry-on, facility and ground station equipment, remote-control acceptance checkout equipment and monitoring system
The acceptance checkout equipment for the Apollo spacecraft is described, and the history of the major equipment modifications that were required to meet the Apollo Program checkout requirements is traced. Some major problem areas are outlined, and a discussion of future checkout methods is included. The concept of the future checkout methods presented provides for an increase in test equipment standardization among NASA programs and among all testing phases within a program. The capability for increased automation and reduction in the test equipment inventory is provided in the proposed concept.
Acceptance Checkout Equipment Spacecraft System to checkout independent and integrated Lunar Excursion Module and Command Module systems
Acceptance checkout equipment and spacecraft testing
Schematic and flow diagrams showing uplink and downlink of Apollo spacecraft automatic checkout equipment
Passive instrumentation and stimuli generation for Saturn IB equipment checkout - nondestructive testing
Passive instrumentation and stimuli generation for Saturn IB equipment checkout - nondestructive testing
Passive instrumentation and stimuli generation for Saturn IB equipment checkout - laboratory data
Passive instrumentation and stimuli generation for Saturn IB equipment checkout - instrument unit data sheets
Design requirements and development of acceptance checkout equipment for spacecraft
This paper addresses the requirements for testing and characterizing spaceborne laser altimeter systems. The Bench Checkout Equipment (BCE) system, test requirements, and flow-down traceability from the instrument system's functional requirements will also be presented. Mars Observer Laser Altimeter (MOLA) and the MOLA BCE are presented as representative of a 'typical' laser altimeter and its corresponding test system. The testing requirements of other or future laser altimeter systems may vary slightly due to the specific spacecraft interface and project requirements. MOLA, the first solid-state interplanetary laser altimeter, was designed to be operational in Mars orbit for two Earth years. MOLA transmits a 7.5 ns pulse at a wavelength of 1.064 microns with a 0.25 mr beam divergence and a pulse repetition rate of 10 Hz. The output energy is specified at 45 mj at the beginning of mapping orbit and 30 mj at the end of one Martian year. MOLA will measure the laser pulse transit time from the spacecraft to the Mars surface and return to a resolution of 1.5 meters.
Applicability of Saturn/Apollo checkout system and support equipment to Voyager project
Brief description of a computer ground checkout and launch control system
Operational computerized system for automatic surveillance of reliability and maintainability of spacecraft hardware
Portable equipment for validating C band launch pad antennas and transmission lines used for spacecraft checkout
NASA organizational structure, discussing manned space flight section and Apollo mission