SFOF digital television hardcopy equipment
SFOF digital television hardcopy equipment, consisting of system control unit, 12 copy request units, display image buffer, and 12 hardcopy printers
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SFOF digital television hardcopy equipment, consisting of system control unit, 12 copy request units, display image buffer, and 12 hardcopy printers
In-space imaging of the surface of celestial bodies can be carried out by both television and photographic equipment. Television equipment of various types has the important property of being capable of transmitting imagery in real time. Frequently this is not possible because of the nature of information transmission over the spacecraft-ground communication line. The inadequate energy handling capacity of the communication lines usually requires storage of the video information aboard the spacecraft for subsequent transmission at a definite time and rate. For this purpose, the television camera can be connected with a magnetic memory, or the television imagery may be stored on photographic film. The television/photographic film system has been termed phototelevision. The choice of a system of one type or the other is dictated by several considerations, the most important of which are the size and weight characteristics, other conditions being the same (power consumption, reliability, etc.). The advantages and disadvantages of the two systems are discussed and examples are given of types of satellites on which the two types have been employed.
The self radiation of the surface being viewed is used for image synthesis in IR thermovision equipment. The installation of such equipment aboard weather satellites makes it possible to obtain cloud cover pictures of the earth's surface in a complete orbit, regardless of the illumination conditions, and also provides quantitative information on the underlying surface temperature and cloud top height. Such equipment is used successfully aboard the Soviet satellites of the Meteor system, and experimentally on the American satellites of the Nimbus series. With regard to surface resolution, the present-day IR weather satellite equipment is inferior to the television equipment. This is due primarily to the comparatively low detectivity of the IR detectors used. While IR equipment has several fundamental advantages in comparison with the conventional television equipment, the problem arises of determining the possibility for future development of weather satellite IR thermovision equipment. Criteria are examined for evaluating the quality of IR.
Television equipment on Zond III for transmitting photographs of far side of moon - U.S.S.R.
Description of a video differential photometer which is the result of an attempt to adapt television technology to the task of producing an electronic equivalent of the photographic subtraction technique. Advantages of electronic subtraction are potentially greater field sensitivity, immediate availability of the subtracted magnetograms (virtually in real time), and greater versatility in combining and comparing image data. Commercial television equipment was used in construction of the apparatus. All video subtraction, averaging, and other processing is done in analog form. The final magnetogram is displayed on an ordinary television monitor.
Surveyor 6 spacecraft flight performance characteristics, including data on television equipment, alpha scattering experiment, and powered flight translation
Systems analysis of agricultural and water management information systems utilizing satellite borne multispectral band scanner, radar, and television equipment
The development of the television system used for Apollo 15 mission is discussed. Data cover identification of factors contributing to the high quality of pictures generated on the lunar surface and exploration of several possible present and future uses of the television equipment developed.
Batch/interactive system can be used to analyze any remotely sensed Earth resources data. Configuration requirements are: 300K bytes of main storage, 200K bytes of storage for IMS, 600K bytes of storage for LCS, five 2314 disk drives, seven 9-track tape drives, and one cluster of digital television equipment.
Performance evaluation of Ranger VIII Flight Model III-3 television subsystem
Closed circuit television system for spacecraft navigation
Television system - evaluation of transmitting and receiving equipment
Slow-scan television film recorder designed for Mariner Mars 1964 noting scope phosphors, film types and processing
Magnetic tape recording and playback equipment converts television pictures, both black and white and color, from one scan rate to another. The equipment indexes color picture frames for retrieval electronically and can be used as a document storage and retrieval medium that is compatible with hard-copy printout machines.
Electronic and optical equipment of Mariner IV TELEVISION system
Surveyor Lunar Roving Vehicle /SLRV/ control system with television and photographic equipment in earth-based control
Tracking, television, and infrared radiometer sub- systems of tiros satellites
Apollo Logistics Support Systems report on television systems for lunar mobile laboratory /Molab/