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fb8j4y01j_jit.fits 11 KB
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SIMPLE = T / data conform to FITS standard BITPIX = 32 / bits per data value NAXIS = 0 / number of data axes EXTEND = T / File may contain standard extensions NEXTEND = 1 / Number of standard extensions GROUPS = F / image is in group format DATE = '2009-12-03' / date this file was written (yyyy-mm-dd) FILENAME= 'fb8j4y01j_jit.fits ' / name of file FILETYPE= 'JTB ' / type of data found in data file TELESCOP= 'HST' / telescope used to acquire data INSTRUME= 'FGS ' / identifier for instrument used to acquire data EQUINOX = 2000.0 / equinox of celestial coord. system OPUS_VER= 'OPUS 2009_3 ' / OPUS software system version number PDB_VER = 'CCS ' / Project Database version in use ROOTNAME= 'fb8j4y01j ' / rootname of the observation set TARGNAME= 'CD-33D4043 ' / proposer's target name PROC_TYP= 'NORMAL ' / type of pipeline processing CONFIG = 'FGS ' / proposed instrument configuration PROPOSID= 11901 / PEP proposal identifier PROGRMID= 'B8J' / program id (base 36) / ASSOCIATION KEYWORDS ASN_ID = 'NONE ' / unique identifier assigned to association ASN_TAB = 'NONE ' / name of the association table END XTENSION= 'BINTABLE' / extension type BITPIX = 8 / bits per data value NAXIS = 2 / number of data axes NAXIS1 = 114 / length of first data axis NAXIS2 = 0 / length of second data axis PCOUNT = 0 / number of group parameters GCOUNT = 1 / number of groups TFIELDS = 28 / number of fields in each table row INHERIT = T / inherit the primary header EXTNAME = 'jit ' / extension name EXTVER = 1 / extension version number ROOTNAME= 'fb8j4y01j ' / rootname of the observation setEXPNAME = 'fb8j4y01j ' / exposure identifier OBSET_ID= '4Y' / observation set id PROCTIME= '2009.337:15:12:33 ' / Date-Time When Observation Processed / JITTER TABLE COLUMNS TTYPE1 = 'Seconds ' / three second intervals from start TUNIT1 = 'seconds ' / units of field 1 TFORM1 = 'E ' / format in which field 1 is coded TTYPE2 = 'V2_dom ' / dominant FGS V2 coordinate TUNIT2 = 'arcsec ' / units of field 2 TFORM2 = 'E ' / format in which field 2 is coded TTYPE3 = 'V3_dom ' / dominant FGS V3 coordinate TUNIT3 = 'arcsec ' / units of field 3 TFORM3 = 'E ' / format in which field 3 is coded TTYPE4 = 'V2_roll ' / roll FGS V2 coordinate TUNIT4 = 'arcsec ' / units of field 4 TFORM4 = 'E ' / format in which field 4 is coded TTYPE5 = 'V3_roll ' / roll FGS V3 coordinate TUNIT5 = 'arcsec ' / units of field 5 TFORM5 = 'E ' / format in which field 5 is coded TTYPE6 = 'SI_V2_AVG ' / mean jitter in V2 over 3 seconds TUNIT6 = 'arcsec ' / units of field 6 TFORM6 = 'E ' / format in which field 6 is coded TTYPE7 = 'SI_V2_RMS ' / rms jitter in V2 over 3 seconds TUNIT7 = 'arcsec ' / units of field 7 TFORM7 = 'E ' / format in which field 7 is coded TTYPE8 = 'SI_V2_P2P ' / peak jitter in V2 over 3 seconds TUNIT8 = 'arcsec ' / units of field 8 TFORM8 = 'E ' / format in which field 8 is coded TTYPE9 = 'SI_V3_AVG ' / mean jitter in V3 over 3 seconds TUNIT9 = 'arcsec ' / units of field 9 TFORM9 = 'E ' / format in which field 9 is coded TTYPE10 = 'SI_V3_RMS ' / rms jitter in V3 over 3 seconds TUNIT10 = 'arcsec ' / units of field 10 TFORM10 = 'E ' / format in which field 10 is coded TTYPE11 = 'SI_V3_P2P ' / peak jitter in V3 over 3 seconds TUNIT11 = 'arcsec ' / units of field 11 TFORM11 = 'E ' / format in which field 11 is coded TTYPE12 = 'RA ' / Right Ascension of aperture reference TUNIT12 = 'degrees ' / units of field 12 TFORM12 = 'D ' / format in which field 12 is coded TTYPE13 = 'DEC ' / declination of aperture reference TUNIT13 = 'degrees ' / units of field 13 TFORM13 = 'D ' / format in which field 13 is coded TTYPE14 = 'Roll ' / position angle between north and +V3 TUNIT14 = 'degrees ' / units of field 14 TFORM14 = 'D ' / format in which field 14 is coded TTYPE15 = 'LimbAng ' / angle between V1 axis and Earth limb TUNIT15 = 'degrees ' / units of field 15 TFORM15 = 'E ' / format in which field 15 is coded TTYPE16 = 'TermAng ' / angle between V1 axis and terminator TUNIT16 = 'degrees ' / units of field 16 TFORM16 = 'E ' / format in which field 16 is coded TTYPE17 = 'LOS_Zenith' / angle between HST zenith and target TUNIT17 = 'degrees ' / units of field 17 TFORM17 = 'E ' / format in which field 17 is coded TTYPE18 = 'Latitude ' / HST subpoint latitude TUNIT18 = 'degrees ' / units of field 18 TFORM18 = 'E ' / format in which field 18 is coded TTYPE19 = 'Longitude ' / HST subpoint longitude TUNIT19 = 'degrees ' / units of field 19 TFORM19 = 'E ' / format in which field 19 is coded TTYPE20 = 'Mag_V1 ' / magnetic field along V1 TUNIT20 = 'Gauss ' / units of field 20 TFORM20 = 'E ' / format in which field 20 is coded TTYPE21 = 'Mag_V2 ' / magnetic field along V2 TUNIT21 = 'Gauss ' / units of field 21 TFORM21 = 'E ' / format in which field 21 is coded TTYPE22 = 'Mag_V3 ' / magnetic field along V3 TUNIT22 = 'Gauss ' / units of field 22 TFORM22 = 'E ' / format in which field 22 is coded TTYPE23 = 'BrightLimb' / Earth limb of LimbAng is bright (1 or 0) TUNIT23 = ' ' / units of field 23 TFORM23 = 'I ' / format in which field 23 is coded TTYPE24 = 'FGS_flags ' / FGS status flags TUNIT24 = ' ' / units of field 24 TFORM24 = 'E ' / format in which field 24 is coded TTYPE25 = 'DayNight ' / observation taken during day (1) or night (0) TUNIT25 = ' ' / units of field 25 TFORM25 = 'I ' / format in which field 25 is coded TTYPE26 = 'Recenter ' / recentering status flag, event in progress = 1 TUNIT26 = ' ' / units of field 26 TFORM26 = 'I ' / format in which field 26 is coded TTYPE27 = 'TakeData ' / vehicle guiding status, nominal GS tracking = 1TUNIT27 = ' ' / units of field 27 TFORM27 = 'I ' / format in which field 27 is coded TTYPE28 = 'SlewFlag ' / vehicle slewing status, slewing = 1 TUNIT28 = ' ' / units of field 28 TFORM28 = 'I ' / format in which field 28 is coded END
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