SIMPLE = T / file does conform to FITS standard BITPIX = 16 / number of bits per data pixel NAXIS = 0 / number of data axes EXTEND = T / FITS dataset may contain extensions COMMENT FITS (Flexible Image Transport System) format is defined in 'AstronomyCOMMENT and Astrophysics', volume 376, page 359; bibcode: 2001A&A...376..359H DATE-OBS= '2016-01-19T02:50:48' DATE-END= '2016-01-19T12:49:54' PROCVER = '3.17.01 ' / Processing script version SOFTVER = 'Hea_27Jul2015_V6.17_Swift_Rel4.5(Bld34)_27Jul2015_SDCpatch_0' CALDBVER= 'b20090130_u20111031_x20150721_m20151105' / CALDB index versions used TIMESYS = 'TT ' / time system MJDREFI = 51910 / MJD reference day 01 Jan 2001 00:00:00 MJDREFF = 0.00074287037 / MJD reference (fraction of day) 01 Jan 2001 00:CLOCKAPP= F / If clock correction are applied (F/T) TIMEUNIT= 's ' / Time unit for timing header keywords OBS_ID = '00671014000' / Observation ID SEQPNUM = 9 / Number of times the dataset processed TARG_ID = 671014 / Target ID SEG_NUM = 0 / Segment number OBJECT = 'GRB160119a' / Object name RA_OBJ = 211.9213750 / [deg] R.A. Object DEC_OBJ = 20.4617778 / [deg] Dec Object RA_PNT = 211.893298175878 / [deg] RA pointing DEC_PNT = 20.4692040749154 / [deg] Dec pointing PA_PNT = 109.678540599141 / [deg] Position angle (roll) TRIGTIME= 474865584. / [s] MET TRIGger Time for Automatic Target UTCFINIT= -15.7178400000000 / [s] UTCF at TSTART CHECKSUM= 'XeqiZZniXdniXZni' / HDU checksum updated 2016-01-29T09:23:32 DATASUM = ' 0' / data unit checksum updated 2016-01-29T09:23:32 END XTENSION= 'BINTABLE' / binary table extension BITPIX = 8 / 8-bit bytes NAXIS = 2 / 2-dimensional binary table NAXIS1 = 294 / width of table in bytes NAXIS2 = 33354 / number of rows in table PCOUNT = 0 / size of special data area GCOUNT = 1 / one data group (required keyword) TFIELDS = 79 / number of fields in each row TTYPE1 = 'TIME ' / Time at which a value changed TFORM1 = '1D ' / data format of field: 8-byte DOUBLE TUNIT1 = 's ' / physical unit of field TTYPE2 = 'ELV ' / angle between Z axis and earth limb TFORM2 = '1E ' / data format of field: 4-byte REAL TUNIT2 = 'deg ' / physical unit of field TTYPE3 = 'BR_EARTH' / Angular distance from the sunlit earth TFORM3 = '1E ' / data format of field: 4-byte REAL TUNIT3 = 'deg ' / physical unit of field TTYPE4 = 'FOV_FLAG' / 0=sky; 1=dark earth; 2=bright earth TFORM4 = '1I ' / data format of field: 2-byte INTEGER TTYPE5 = 'SUNSHINE' / is the sun shining on the satelite? TFORM5 = '1I ' / data format of field: 2-byte INTEGER TTYPE6 = 'ANG_DIST' / degrees from nominal pointing TFORM6 = '1E ' / data format of field: 4-byte REAL TUNIT6 = 'deg ' / physical unit of field TTYPE7 = 'RA ' / Right Ascension of satelite pointing TFORM7 = '1E ' / data format of field: 4-byte REAL TUNIT7 = 'deg ' / physical unit of field TTYPE8 = 'DEC ' / Declination of satelite pointing TFORM8 = '1E ' / data format of field: 4-byte REAL TUNIT8 = 'deg ' / physical unit of field TTYPE9 = 'ROLL ' / Roll angle of satelite pointing TFORM9 = '1E ' / data format of field: 4-byte REAL TUNIT9 = 'deg ' / physical unit of field TTYPE10 = 'SAA ' / SAA derived from the orbit data TFORM10 = '1I ' / data format of field: 2-byte INTEGER TTYPE11 = 'SAA_TIME' / SAA time derived from the orbit data TFORM11 = '1E ' / data format of field: 4-byte REAL TUNIT11 = 's ' / physical unit of field TTYPE12 = 'COR_SAX ' / cutoff rigidity calculated as for the SAX TFORM12 = '1E ' / data format of field: 4-byte REAL TUNIT12 = 'GeV/c ' / physical unit of field TTYPE13 = 'MCILWAIN_L' / McIlwain L parameter for Earth's magnetic fieldTFORM13 = '1E ' / data format of field: 4-byte REAL TTYPE14 = 'SUN_ANGLE' / Angle between sun and pointing direction TFORM14 = '1E ' / data format of field: 4-byte REAL TUNIT14 = 'deg ' / physical unit of field TTYPE15 = 'MOON_ANGLE' / Angle between moon and pointing direction TFORM15 = '1E ' / data format of field: 4-byte REAL TUNIT15 = 'deg ' / physical unit of field TTYPE16 = 'RAM_ANGLE' / Angle between satelite motion and pointing TFORM16 = '1E ' / data format of field: 4-byte REAL TUNIT16 = 'deg ' / physical unit of field TTYPE17 = 'FWHEEL ' / Filter wheel position 200 units/filter TFORM17 = '1I ' / data format of field: 2-byte INTEGER TTYPE18 = 'iHVCathode' / Cathode high voltage TFORM18 = '1I ' / data format of field: 2-byte INTEGER TTYPE19 = 'iHVmcp1 ' / High voltage TFORM19 = '1I ' / data format of field: 2-byte INTEGER TTYPE20 = 'iHVmcp23' / High voltage TFORM20 = '1I ' / data format of field: 2-byte INTEGER TTYPE21 = 'BDIHKGRBFOLLOW' / Data Ingest time offset TFORM21 = '1B ' / data format of field: BYTE TTYPE22 = 'BDIHKLAG' / How far BAT DI is lagging TFORM22 = '1I ' / data format of field: 2-byte INTEGER TTYPE23 = 'BDIHKTIMELAG' / How far BAT DI is lagging, seconds TFORM23 = '1I ' / data format of field: 2-byte INTEGER TUNIT23 = 's ' / physical unit of field TTYPE24 = 'BDIHKNGOODDETS' / Number of good dets functioning TFORM24 = '1I ' / data format of field: 2-byte INTEGER TTYPE25 = 'BCAHKDOINGBLK' / Which block is getting cal pulser TFORM25 = '1I ' / data format of field: 2-byte INTEGER TTYPE26 = 'BDICFTIME' / Time is non-consecutive? TFORM26 = '1I ' / data format of field: 2-byte INTEGER TTYPE27 = 'BDIHKDATAMET' / Data processing MET vs real time MET TFORM27 = '1J ' / data format of field: 4-byte INTEGER TUNIT27 = 's ' / physical unit of field TTYPE28 = 'BDIHKSLEWING' / Is BAT DI slewing? TFORM28 = '1B ' / data format of field: BYTE TTYPE29 = 'BDIHKSAA' / Is BAT DI in SAA? TFORM29 = '1B ' / data format of field: BYTE TTYPE30 = 'BTGHKDITGCPU' / CPU Usage by DI+TG TFORM30 = '1I ' / data format of field: 2-byte INTEGER TTYPE31 = 'BBRHKTRIGNUM' / BR HK trigger number TFORM31 = '1J ' / data format of field: 4-byte INTEGER TTYPE32 = 'BBRHKTRYINGTRIG' / BR HK triggers tried since TFORM32 = '1J ' / data format of field: 4-byte INTEGER TTYPE33 = 'BDICMDBLSNCURTR' / Next trigger number to be used TFORM33 = '1J ' / data format of field: 4-byte INTEGER TTYPE34 = 'BDIHKVALID' / Is DI producing valid data? TFORM34 = '1B ' / data format of field: BYTE TTYPE35 = 'SAC_ADERR' / Estimated attitude determination error TFORM35 = '1E ' / data format of field: 4-byte REAL TTYPE36 = 'SAC_MODESTAT' / Star tracker status bits TFORM36 = '1B ' / data format of field: BYTE TTYPE37 = 'SACSTNUMSTARS' / Number of star tracker stars TFORM37 = '1I ' / data format of field: 2-byte INTEGER TTYPE38 = 'STAST_LOSSFCN' / Star tracker solution loss function TFORM38 = '1I ' / data format of field: 2-byte INTEGER TTYPE39 = 'PixGtULD' / label for field 45 TFORM39 = '1J ' / data format of field: 4-byte INTEGER TTYPE40 = 'Vrd1 ' / reference voltage for amp 1 TFORM40 = '1D ' / data format of field: 8-byte DOUBLE TUNIT40 = 'V ' / physical unit of field TTYPE41 = 'Baselin2' / Baseline voltage for Signal Chain B TFORM41 = '1D ' / data format of field: 8-byte DOUBLE TUNIT41 = 'V ' / physical unit of field TTYPE42 = 'CCDTemp ' / CCD Temperature TFORM42 = '1E ' / data format of field: 4-byte REAL TTYPE43 = 'Baselin1' / Baseline voltage for Signal Chain A TFORM43 = '1D ' / data format of field: 8-byte DOUBLE TUNIT43 = 'V ' / physical unit of field TTYPE44 = 'Vsub ' / substrate bias voltage TFORM44 = '1D ' / data format of field: 8-byte DOUBLE TUNIT44 = 'V ' / physical unit of field TTYPE45 = 'Vod2 ' / output drain voltage for left amp 2 TFORM45 = '1D ' / data format of field: 8-byte DOUBLE TUNIT45 = 'V ' / physical unit of field TTYPE46 = 'ENDTIME ' / label for field 52 TFORM46 = '1D ' / data format of field: 8-byte DOUBLE TUNIT46 = 's ' / physical unit of field TTYPE47 = 'Vrd2 ' / reference voltage for amp 2 TFORM47 = '1D ' / data format of field: 8-byte DOUBLE TUNIT47 = 'V ' / physical unit of field TTYPE48 = 'Vbackjun' / back junction bias voltage TFORM48 = '1D ' / data format of field: 8-byte DOUBLE TUNIT48 = 'V ' / physical unit of field TTYPE49 = 'Vod1 ' / output drain voltage for left amp 1 TFORM49 = '1D ' / data format of field: 8-byte DOUBLE TUNIT49 = 'V ' / physical unit of field TTYPE50 = 'DM_Cnts_Evt_MIN' / BAT Event Count TFORM50 = '1J ' / data format of field: 4-byte INTEGER TTYPE51 = 'DM_Cnts_Evt_MAX' / BAT Event Count TFORM51 = '1J ' / data format of field: 4-byte INTEGER TTYPE52 = 'DM_Cnts_Evt_MEDIAN' / BAT Event Count TFORM52 = '1J ' / data format of field: 4-byte INTEGER TTYPE53 = 'DM_HK_Temp_MIN' / BAT DM Side temperatures TFORM53 = '1J ' / data format of field: 4-byte INTEGER TTYPE54 = 'DM_HK_Temp_MAX' / BAT DM Side temperatures TFORM54 = '1J ' / data format of field: 4-byte INTEGER TTYPE55 = 'DM_HK_Temp_MEDIAN' / BAT DM Side temperatures TFORM55 = '1J ' / data format of field: 4-byte INTEGER TTYPE56 = 'BHVMon_Level_MIN' / BAT High Voltage Monitor Levels TFORM56 = '1J ' / data format of field: 4-byte INTEGER TTYPE57 = 'BHVMon_Level_MAX' / BAT High Voltage Monitor Levels TFORM57 = '1J ' / data format of field: 4-byte INTEGER TTYPE58 = 'BHVMon_Level_MEDIAN' / BAT High Voltage Monitor Levels TFORM58 = '1J ' / data format of field: 4-byte INTEGER TTYPE59 = 'BHVCtrl_Level_MIN' / BAT High Voltage Control Levels TFORM59 = '1J ' / data format of field: 4-byte INTEGER TTYPE60 = 'BHVCtrl_Level_MAX' / BAT High Voltage Control Levels TFORM60 = '1J ' / data format of field: 4-byte INTEGER TTYPE61 = 'BHVCtrl_Level_MEDIAN' / BAT High Voltage Control Levels TFORM61 = '1J ' / data format of field: 4-byte INTEGER TTYPE62 = 'DM_HK_HVLkCurr_MIN' / BAT High Voltage Leakage Current TFORM62 = '1J ' / data format of field: 4-byte INTEGER TTYPE63 = 'DM_HK_HVLkCurr_MAX' / BAT High Voltage Leakage Current TFORM63 = '1J ' / data format of field: 4-byte INTEGER TTYPE64 = 'DM_HK_HVLkCurr_MEDIAN' / BAT High Voltage Leakage Current TFORM64 = '1J ' / data format of field: 4-byte INTEGER TTYPE65 = 'DM_Cnts_MLD_MIN' / BAT Multi channel hit Count TFORM65 = '1J ' / data format of field: 4-byte INTEGER TTYPE66 = 'DM_Cnts_MLD_MAX' / BAT Multi channel hit Count TFORM66 = '1J ' / data format of field: 4-byte INTEGER TTYPE67 = 'DM_Cnts_MLD_MEDIAN' / BAT Multi channel hit Count TFORM67 = '1J ' / data format of field: 4-byte INTEGER TTYPE68 = 'DM_Cnts_LLD_MIN' / BAT LLD Count TFORM68 = '1J ' / data format of field: 4-byte INTEGER TTYPE69 = 'DM_Cnts_LLD_MAX' / BAT LLD Count TFORM69 = '1J ' / data format of field: 4-byte INTEGER TTYPE70 = 'DM_Cnts_LLD_MEDIAN' / BAT LLD Count TFORM70 = '1J ' / data format of field: 4-byte INTEGER TTYPE71 = 'DM_HK_Vthr_MIN' / BAT XA1 Discriminator Threshold Voltage TFORM71 = '1J ' / data format of field: 4-byte INTEGER TTYPE72 = 'DM_HK_Vthr_MAX' / BAT XA1 Discriminator Threshold Voltage TFORM72 = '1J ' / data format of field: 4-byte INTEGER TTYPE73 = 'DM_HK_Vthr_MEDIAN' / BAT XA1 Discriminator Threshold Voltage TFORM73 = '1J ' / data format of field: 4-byte INTEGER TTYPE74 = 'TEN_ARCMIN' / ACS reports within 10 arcmin of target TFORM74 = '1B ' / data format of field: BYTE TTYPE75 = 'SETTLED ' / ACS reports settled on target TFORM75 = '1B ' / data format of field: BYTE TTYPE76 = 'ACS_SAA ' / ACS reports in SAA TFORM76 = '1B ' / data format of field: BYTE TTYPE77 = 'SAFEHOLD' / ACS reports in SAFE TFORM77 = '1B ' / data format of field: BYTE EXTNAME = 'FILTER ' / name of this binary table extension TZERO2 = 0. / data offset TSCAL2 = 1. / data scaling TZERO3 = 0. / data offset TSCAL3 = 1. / data scaling TNULL4 = -999 TZERO4 = 0. / data offset TSCAL4 = 1. / data scaling TNULL5 = 32767 TZERO5 = 0. / data offset TSCAL5 = 1. / data scaling TZERO6 = 0. / data offset TSCAL6 = 1. / data scaling TZERO7 = 0. / data offset TSCAL7 = 1. / data scaling TZERO8 = 0. / data offset TSCAL8 = 1. / data scaling TZERO9 = 0. / data offset TSCAL9 = 1. / data scaling TNULL10 = 32767 TZERO10 = 0. / data offset TSCAL10 = 1. / data scaling TZERO11 = 0. / data offset TSCAL11 = 1. / data scaling TZERO12 = 0. / data offset TSCAL12 = 1. / data scaling TZERO13 = 0. / data offset TSCAL13 = 1. / data scaling TZERO14 = 0. / data offset TSCAL14 = 1. / data scaling TZERO15 = 0. / data offset TSCAL15 = 1. / data scaling TZERO16 = 0. / data offset TSCAL16 = 1. / data scaling TNULL17 = 32767 TZERO17 = 32768. / data offset TSCAL17 = 1. / data scaling TNULL18 = 32767 TZERO18 = 15974.4 / data offset TSCAL18 = 0.4875 / data scaling TNULL19 = 32767 TZERO19 = 79036.416 / data offset TSCAL19 = 2.412 / data scaling TNULL20 = 32767 TZERO20 = 305397.76 / data offset TSCAL20 = 9.32 / data scaling TNULL21 = 255 TZERO21 = 0. / data offset TSCAL21 = 1. / data scaling TNULL22 = 32767 TZERO22 = 32768. / data offset TSCAL22 = 1. / data scaling TNULL23 = 32767 TZERO23 = 32768. / data offset TSCAL23 = 1. / data scaling TNULL24 = 32767 TZERO24 = 32768. / data offset TSCAL24 = 1. / data scaling TNULL25 = 32767 TZERO25 = 0. / data offset TSCAL25 = 1. / data scaling TNULL26 = 32767 TZERO26 = 32768. / data offset TSCAL26 = 1. / data scaling TNULL27 = 2147483647 TZERO27 = 0. / data offset TSCAL27 = 1. / data scaling TNULL28 = 255 TZERO28 = 0. / data offset TSCAL28 = 1. / data scaling TNULL29 = 255 TZERO29 = 0. / data offset TSCAL29 = 1. / data scaling TNULL30 = 32767 TZERO30 = 327.68 / data offset TSCAL30 = 0.01 / data scaling TNULL31 = 2147483647 TZERO31 = 2147483648. / data offset TSCAL31 = 1. / data scaling TNULL32 = 2147483647 TZERO32 = 2147483648. / data offset TSCAL32 = 1. / data scaling TNULL33 = 2147483647 TZERO33 = 2147483648. / data offset TSCAL33 = 1. / data scaling TNULL34 = 255 TZERO34 = 0. / data offset TSCAL34 = 1. / data scaling TZERO35 = 0. / data offset TSCAL35 = 1. / data scaling TNULL36 = 255 TZERO36 = 0. / data offset TSCAL36 = 1. / data scaling TNULL37 = 32767 TZERO37 = 32768. / data offset TSCAL37 = 1. / data scaling TNULL38 = 32767 TZERO38 = 3.2768E-08 / data offset TSCAL38 = 1.0E-12 / data scaling TNULL39 = 2147483647 TZERO39 = 2147483648. / data offset TSCAL39 = 1. / data scaling TZERO40 = 0. / data offset TSCAL40 = 0.00600431 / data scaling TZERO41 = 2. / data offset TSCAL41 = -0.0009768 / data scaling TZERO42 = 0. / data offset TSCAL42 = 1. / data scaling TZERO43 = 2. / data offset TSCAL43 = -0.0009768 / data scaling TZERO44 = 0. / data offset TSCAL44 = 0.00297029 / data scaling TZERO45 = 0. / data offset TSCAL45 = 0.00810376 / data scaling TZERO46 = 0. / data offset TSCAL46 = 1. / data scaling TZERO47 = 0. / data offset TSCAL47 = 0.00600431 / data scaling TZERO48 = 0. / data offset TSCAL48 = 0.00600431 / data scaling TZERO49 = 0. / data offset TSCAL49 = 0.00810376 / data scaling TNULL50 = -2147483648 TZERO50 = 0. / data offset TSCAL50 = 1. / data scaling TNULL51 = -2147483648 TZERO51 = 0. / data offset TSCAL51 = 1. / data scaling TNULL52 = -2147483648 TZERO52 = 0. / data offset TSCAL52 = 1. / data scaling TNULL53 = -2147483648 TZERO53 = 0. / data offset TSCAL53 = 1. / data scaling TNULL54 = -2147483648 TZERO54 = 0. / data offset TSCAL54 = 1. / data scaling TNULL55 = -2147483648 TZERO55 = 0. / data offset TSCAL55 = 1. / data scaling TNULL56 = -2147483648 TZERO56 = 0. / data offset TSCAL56 = 1. / data scaling TNULL57 = -2147483648 TZERO57 = 0. / data offset TSCAL57 = 1. / data scaling TNULL58 = -2147483648 TZERO58 = 0. / data offset TSCAL58 = 1. / data scaling TNULL59 = -2147483648 TZERO59 = 0. / data offset TSCAL59 = 1. / data scaling TNULL60 = -2147483648 TZERO60 = 0. / data offset TSCAL60 = 1. / data scaling TNULL61 = -2147483648 TZERO61 = 0. / data offset TSCAL61 = 1. / data scaling TNULL62 = -2147483648 TZERO62 = 0. / data offset TSCAL62 = 1. / data scaling TNULL63 = -2147483648 TZERO63 = 0. / data offset TSCAL63 = 1. / data scaling TNULL64 = -2147483648 TZERO64 = 0. / data offset TSCAL64 = 1. / data scaling TNULL65 = -2147483648 TZERO65 = 0. / data offset TSCAL65 = 1. / data scaling TNULL66 = -2147483648 TZERO66 = 0. / data offset TSCAL66 = 1. / data scaling TNULL67 = -2147483648 TZERO67 = 0. / data offset TSCAL67 = 1. / data scaling TNULL68 = -2147483648 TZERO68 = 0. / data offset TSCAL68 = 1. / data scaling TNULL69 = -2147483648 TZERO69 = 0. / data offset TSCAL69 = 1. / data scaling TNULL70 = -2147483648 TZERO70 = 0. / data offset TSCAL70 = 1. / data scaling TNULL71 = -2147483648 TZERO71 = 0. / data offset TSCAL71 = 1. / data scaling TNULL72 = -2147483648 TZERO72 = 0. / data offset TSCAL72 = 1. / data scaling TNULL73 = -2147483648 TZERO73 = 0. / data offset TSCAL73 = 1. / data scaling TNULL74 = 255 TZERO74 = 0. / data offset TSCAL74 = 1. / data scaling TNULL75 = 255 TZERO75 = 0. / data offset TSCAL75 = 1. / data scaling TNULL76 = 255 TZERO76 = 0. / data offset TSCAL76 = 1. / data scaling TNULL77 = 255 TZERO77 = 0. / data offset TSCAL77 = 1. / data scaling TIMEZERO= 0. TELESCOP= 'SWIFT ' / Mission name PREFR = 0.0E+00 / For maketime - no time before a row POSTFR = 1.0E+00 / For maketime - all time after a row DATE = '2016-01-29T08:46:47' / file creation date (YYYY-MM-DDThh:mm:ss UT) HISTORY HISTORY START PARAMETER list for makefilter_2.0 at 2016-01-29T08:46:47 HISTORY HISTORY P1 configure = makefilter_config.tmp HISTORY P2 infileroot = HISTORY P3 outfile = sw00671014000s.mkf HISTORY P4 mission = SWIFT HISTORY P5 clobber = yes HISTORY P6 chatter = 1 HISTORY P7 history = yes HISTORY P8 mode = hl HISTORY END PARAMETER list for makefilter_2.0 HISTORY TSTART = 474864652.8006 TSTOP = 474900598.8006 CHECKSUM= 'ieIojZ9nibGniZ9n' / HDU checksum updated 2016-01-29T09:23:32 DATASUM = '1399012692' / data unit checksum updated 2016-01-29T09:23:32 TTYPE78 = 'STLOCKFL' / Star Tracker locked flag TFORM78 = '1B ' / format of field TNULL78 = 255 / Null value TTYPE79 = 'STLOCKST' / Number of currently valid Star Tracker stars TFORM79 = '1I ' / format of field TNULL79 = -32768 / Null value HISTORY CFITSIO used the following filtering expression to create this table: HISTORY sw00671014000s.mkf[1][gtifilter("sw00671014000sss.gti")] PROCVER = '3.17.01 ' / Processing script version SOFTVER = 'Hea_27Jul2015_V6.17_Swift_Rel4.5(Bld34)_27Jul2015_SDCpatch_0' CALDBVER= 'b20090130_u20111031_x20150721_m20151105' / CALDB index versions used TIERRELA= 1.0E-8 / [s/s] relative errors expressed as rate TIERABSO= 1.0 / [s] timing precision in seconds OBS_ID = '00671014000' / Observation ID SEQPNUM = 9 / Number of times the dataset processed TARG_ID = 671014 / Target ID SEG_NUM = 0 / Segment number OBJECT = 'GRB160119a' / Object name RA_OBJ = 211.9213750 / [deg] R.A. Object DEC_OBJ = 20.4617778 / [deg] Dec Object RA_PNT = 211.893298175878 / [deg] RA pointing DEC_PNT = 20.4692040749154 / [deg] Dec pointing PA_PNT = 109.678540599141 / [deg] Position angle (roll) TRIGTIME= 474865584. / [s] MET TRIGger Time for Automatic Target UTCFINIT= -15.7178400000000 / [s] UTCF at TSTART END AM,iBByCH BCcx%C y AH?{BþB]B̐J