Title :
High performance, crystal oscillators for space applications
Author :
Morris, S.E. ; McClemont, F.S. ; Byrne, A.J. ; Haston, A.L. ; McGovern, M.G.
Author_Institution :
GEC-Marconi Mater. Technol. Ltd., Borehamwood, UK
Abstract :
A family of space qualified, high performance, oven compensated, crystal oscillators have been developed employing stress compensated (SC-cut) resonators. The oscillators use rugged oven designs, robust enough to withstand launch vibration while reducing thermal losses to ensure low power operation. Electronic circuits are implemented using thick film hybrid technology, with interconnections via film wire flexible circuits, to achieve minimum size, weight and high reliability. Typical frequency stabilities of ± few pp108 over -40°C to +75°C, coupled with ageing rates of less than ±1pp1010/day have been achieved with power consumptions of less than 450 mW. Phase noise at 1 kHz offset is -153 dBc/Hz. Environmental testing includes vibration, thermal vacuum and radiation
Keywords :
crystal oscillators; -40 to 75 degC; environmental testing; film wire flexible circuits; launch vibration; low power operation; radiation testing; space qualified high performance oven compensated crystal oscillators; stress compensated resonators; thermal losses; thermal vacuum testing; thick film hybrid technology; vibration testing;
Conference_Titel :
European Frequency and Time Forum, 1996. EFTF 96., Tenth (IEE Conf. Publ. 418)
Conference_Location :
Brighton
Print_ISBN :
0-85296-661-X
DOI :
10.1049/cp:19960043