SIMPLE = T / file does conform to FITS standard BITPIX = 8 / 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 TELESCOP= 'SWIFT ' / Telescope (mission) name INSTRUME= 'BAT ' / Instrument name OBS_ID = '01104692000' / Observation ID TARG_ID = '1104692 ' / Target ID SEG_NUM = '0 ' / Segment number TIMESYS = 'TT ' / Time system MJDREFI = 51910. / Reference MJD Integer part MJDREFF = 0.00074287037 / Reference MJD fractional TIMEUNIT= 's ' / Time unit for the time header keywords TIERRELA= 1.0E-08 / [s/s] Estimated relative clock rate error TIERABSO= 1. / [s] Estimated absolute clock offset error TSTART = 673019129.6 / Start time DATE-OBS= '2022-04-30T13:45:29.6' / Start Date TSTOP = 673019811.52 / Stop time DATE-END= '2022-04-30T13:56:51.5' / Stop Date CLOCKAPP= F / If clock correction are applied (F/T) ORIGIN = 'GSFC ' / Source of FITS file CREATOR = 'TDRSS2FITS V3.21' / Program that created this FITS file TLM2FITS= 'V3.21 ' / Telemetry converter version number DATE = '2022-04-30T13:58:16' / file creation date (YYYY-MM-DDThh:mm:ss UT) UTCFINIT= -29.05492 / UTCF at TSTART CHECKSUM= '2SpX3SmW2SmW2SmW' / HDU checksum updated 2022-04-30T13:58:51 DATASUM = ' 0' / data unit checksum updated 2022-04-30T13:58:16 END XTENSION= 'BINTABLE' / binary table extension BITPIX = 8 / 8-bit bytes NAXIS = 2 / 2-dimensional binary table NAXIS1 = 84 / width of table in bytes NAXIS2 = 212 / number of rows in table PCOUNT = 0 / size of special data area GCOUNT = 1 / one data group (required keyword) TFIELDS = 9 / number of fields in each row TTYPE1 = 'TIME ' / label for field 1 TFORM1 = '1D ' / data format of field: 8-byte DOUBLE TUNIT1 = 's ' / physical unit of field TTYPE2 = 'RELTIME ' / label for field 2 TFORM2 = '1D ' / data format of field: 8-byte DOUBLE TUNIT2 = 's ' / physical unit of field TTYPE3 = 'TIMEDEL ' / label for field 3 TFORM3 = '1D ' / data format of field: 8-byte DOUBLE TUNIT3 = 's ' / physical unit of field TTYPE4 = 'RAW_COUNTS' / label for field 4 TFORM4 = '4J ' / data format of field: 4-byte INTEGER TUNIT4 = 'count ' / physical unit of field TTYPE5 = 'RATE ' / label for field 5 TFORM5 = '4E ' / data format of field: 4-byte REAL TUNIT5 = 'count/s ' / physical unit of field TTYPE6 = 'ERROR ' / label for field 6 TFORM6 = '4E ' / data format of field: 4-byte REAL TUNIT6 = 'count/s ' / physical unit of field TTYPE7 = 'TOT_COUNTS' / label for field 7 TFORM7 = '1J ' / data format of field: 4-byte INTEGER TUNIT7 = 'count ' / physical unit of field TTYPE8 = 'TOT_RATE' / label for field 8 TFORM8 = '1E ' / data format of field: 4-byte REAL TUNIT8 = 'count/s ' / physical unit of field TTYPE9 = 'TOT_RATE_ERR' / label for field 9 TFORM9 = '1E ' / data format of field: 4-byte REAL TUNIT9 = 'count/s ' / physical unit of field EXTNAME = 'TDRSS_LC' / name of this binary table extension TNULL4 = -1 / data null value TNULL7 = -1 / data null value TELESCOP= 'SWIFT ' / Telescope (mission) name INSTRUME= 'BAT ' / Instrument name OBS_ID = '01104692000' / Observation ID TARG_ID = '1104692 ' / Target ID SEG_NUM = '0 ' / Segment number CREATOR = 'TDRSS2FITS V3.21' / Program that created this FITS file ORIGIN = 'GSFC ' / Source of FITS file TLM2FITS= 'V3.21 ' / Telemetry converter version number EQUINOX = 2000 / Equinox RADECSYS= 'FK5 ' / Coordinates system TIMESYS = 'TT ' / Time system MJDREFI = 51910. / Reference MJD Integer part MJDREFF = 0.00074287037 / Reference MJD fractional TIMEUNIT= 's ' / Time unit for the time header keywords TIERRELA= 1.0E-08 / [s/s] Estimated relative clock rate error TIERABSO= 1. / [s] Estimated absolute clock offset error CLOCKAPP= F / If clock correction are applied (F/T) TIMEREF = 'LOCAL ' / Time reference (barycenter/local) TASSIGN = 'SATELLITE' / Time assigned by clock DATE = '2022-04-30T13:58:16' / file creation date (YYYY-MM-DDThh:mm:ss UT) TSTART = 673019601.6 / Start time DATE-OBS= '2022-04-30T13:53:21.6' / Start Date TSTOP = 673019811.52 / Stop time DATE-END= '2022-04-30T13:56:51.5' / Stop Date UTCFINIT= 0. / UTCF at TSTART MESGNAME= 'BAT_LIGHTCURVE' / Name of the message DATAMISS= T / Expect missing data HDUCLASS= 'OGIP ' / Format conforms to OGIP standards HDUCLAS1= 'LIGHTCURVE' / Time ordered data HDUCLAS2= 'TOTAL ' / Source + background HDUCLAS3= 'RATE ' / Data provided as rate DATAMODE= 'Rates_Arr_TDRSS' / Instrument operating mode TRIGGER = 1104692 / Trigger Number TRIGSEC = 673019625 / Trigger time in seconds TRIGSUBS= 1200 / [2*10**(-5) s] TRIGger SUBSeconds TRIGTIME= 673019625.024 / [s] MET TRIGger Time = TRIGSEC+TRIGSUBS*2e-5 DATETRIG= '2022-04-30T13:53:16.0' / UTC date of the trigger TZDELTA = 57 / Trigger delta time in 10e-3 seconds units TRIGSATF= 155 / Trigger table index. Highest signif. satisfied BRA_OBJ = 97.6105079123594 / [deg] BAT GRB Object RA location BDEC_OBJ= 9.51011902952678 / [deg] BAT GRB Object DEC location1 BATTHETA= 1.40060007572174 / [deg] BAT GRB Object Theta on detector BATPHI = -55.2165260314941 / [deg] BAT GRB Object PHI on detector APID = 387 / Application Process Identifier PKT1REV = 1 / No.of revisions for PKT #1 PKT2REV = 1 / No.of revisions for PKT #2 PKT3REV = 1 / No.of revisions for PKT #3 PKT4REV = 0 / No.of revisions for PKT #4 PKT5REV = 0 / No.of revisions for PKT #5 PKT6REV = 0 / No.of revisions for PKT #6 PKT7REV = 0 / No.of revisions for PKT #7 PKT8REV = 0 / No.of revisions for PKT #8 PKT9REV = 0 / No.of revisions for PKT #9 PKT10REV= 0 / No.of revisions for PKT #10 PKT11REV= 0 / No.of revisions for PKT #11 PKT12REV= 0 / No.of revisions for PKT #12 PKT13REV= 0 / No.of revisions for PKT #13 PACKET1 = T / Data from packet #1 present PACKET2 = T / Data from packet #2 present PACKET3 = T / Data from packet #3 present PACKET4 = F / Data from packet #4 present PACKET5 = F / Data from packet #5 present PACKET6 = F / Data from packet #6 present PACKET7 = F / Data from packet #7 present PACKET8 = F / Data from packet #8 present PACKET9 = F / Data from packet #9 present PACKET10= F / Data from packet #10 present PACKET11= F / Data from packet #11 present PACKET12= F / Data from packet #12 present PACKET13= F / Data from packet #13 present P1UTCC = -29.05492 / [s] Packet #1 UTC Correction time P1UTCCS = -30 / Packet #1 UTC Correction Seconds P1UTCCSS= 47254 / [2*10**(-5) s] Packet #1 UTC Corr SubSeconds PKT1TIME= 673019642.07904 / [s] ccsds PacKeT #1 Time= PKTSEC+PKTSUBS*2e-5 PKT1SEC = 673019642 / ccsds PacKeT #1 SEConds PKT1SUBS= 3952 / [2*10**(-5) s] ccsds PacKeT #1 SUBSeconds PKT1SEQ = 89 / Packet#1 CCSDS sequence number TIMEPIXR= 0. / Bin time beginning=0.0 middle=0.5 end=1. TELAPSE = 209.919999957085 / TSTOP - TSTART ONTIME = 209.919999957085 / Time on target LIVETIME= 209.919999957085 / Ontime multiplied by DEADC EXPOSURE= 209.919999957085 / Total exposure, with all known correction DEADC = 1. / dead time correction KEYMISS = T / Expect missing keywords CHECKSUM= 'KjAbMh8ZKhAbKh7Z' / HDU checksum updated 2022-04-30T13:58:51 DATASUM = '3095867925' / data unit checksum updated 2022-04-30T13:58:51 P2UTCC = -29.05492 / [s] Packet #2 UTC Correction time P2UTCCS = -30 / Packet #2 UTC Correction Seconds P2UTCCSS= 47254 / [2*10**(-5) s] Packet #2 UTC Corr SubSeconds PKT2TIME= 673019829.4877 / [s] ccsds PacKeT #2 Time=PKTSEC+PKTSUBS*2e-5 PKT2SEC = 673019829 / ccsds PacKeT #2 SEConds PKT2SUBS= 24385 / [2*10**(-5) s] ccsds PacKeT #2 SUBSeconds PKT2SEQ = 90 / Packet#2 CCSDS sequence number P3UTCC = -29.05492 / [s] Packet #3 UTC Correction time P3UTCCS = -30 / Packet #3 UTC Correction Seconds P3UTCCSS= 47254 / [2*10**(-5) s] Packet #3 UTC Corr SubSeconds PKT3TIME= 673019877.78 / [s] ccsds PacKeT #3 Time=PKTSEC+PKTSUBS*2e-5 PKT3SEC = 673019877 / ccsds PacKeT #3 SEConds PKT3SUBS= 39000 / [2*10**(-5) s] ccsds PacKeT #3 SUBSeconds PKT3SEQ = 91 / Packet#3 CCSDS sequence number END Ah7lC?*DD\DmDNAeA݇^A¾QAtEDBMAi5l?D<DDnDFHABAAÃAy$EBLAjfff49XbM?DDxDlDF A7An[AŒA -EBL+Ak3332vȴ9?D D|Dk(DJAMA+AA+EBLYAl1$/?|-B[BJGFEBApj~"?zG{4DD,DpDUHBtBB[_BNEHB/AqR"`A?zG{h DDDDQ`B~V^BZBm+BLBE=B2AqG"`A?zG{ D<DDDaB$B -Bv8BT!E?BƮAqptj~?zG{{[D DDlDBsYZBABzBhe EBAqKƧ?zG{ED8DXDHD}BB+B(BaXkEsBVLAq\tj?zG{KDTDxDDLB~BVB~V^BcjTE4BAqj~#?zG{AD DPDLDzBw|BBxnB_EBArztj~?zG{0D@DPDDmBzBB BY6EFB7Ar=p-V?zG{(DpDôDDg@BBB{?4BWmEB}Arfff`A7L?zG{8DdDDDsBodBKBzOB\E}E5BAr\);dZ?zG{$DLDD@Dd BxnBBBUVEfBArQ 1&x?zG{*DDDDhBNBBBWȑJE:BǰArG 1&?zG{,DLD|DDj`BBBsBX[EBAs =pO;dZ?zG{9DDDDtBABBͅB]%YEBAs333E?zG{)DDDDhB{7B}BfBWkE B%As\(nO;?zG{AD4DDDzBZAB[BB_EICVAsvȴ9X?zG{ZD`DtD0D(B||BXBMBhqEB.BAs{vȴ9?zG{YDD DpDBBvBBh-]E6C>As =$/?zG{IDD\DDB4DB B1uBbECAtbM?bMDDDDB6BmBB1ECPAtbN1&x?bMiDDJDnDMBB݅B0BErCGAt ětj~?bMDDDzDB˹BѡBB1EDB==BEʣCaqAw =@vȴ9?bMDnDDDB0B:BzBԅ>EʣCaqAwl@"`A?bMDDDިDvBѡB BB+EC^| Aw@S?bMDD6DD BѡBBB +EC^| Ax1'@(\)?bMD.DDDB|BBZBγEC[bAxt@1&x?bMDDݮDD^B`2BjBKB‡EC[Ax(@/v?bMDDHDD(B ZBBBMELCcAx9X@-V?bMD.DިDxDLB|BB *Bg8ECZAxI^@5?|h?bMDzDDD4BBBHFB߰EC[AxZ@Q?bMDPDDBD4BBڅBB߰?ECa6$Axj~@;dZ?bMDDDZDjB==BBBEDEC\AxzG@vȴ9X?bMDDިDfDBԅBBBѡ@E CaXAxC@ ěT?bMDDD~DVBBuBBjfEgCfoAx@ bM?bMDbDrD DBNB8BB؁pECgAx1@ =p?bMD>DDܴDBޟ:B B/BUE@Cd,TAxj@ `A7L?bMDDDDBBBBγECkpAx@!&x?bMrDDD0DBBWmBBFEMC"JAxh@!lC?bMDEDDƻB*BBB{/E|C'AyV@"-V?bM8zDnDTE DBHBB1BrE+C&uAy/@" ě?bMtzDDDDBBB'BrE@C$K{AyO;@#333333?bM"/D>EMEyDBjBIB]BJhErC*Ayp@#E?bM ;DDE gDB}GBB6BmE@C*PuAyhr@$9XbM?bM:vDE )ED7BBXBB@FC3Ay-@$j~#?bMD7E4E7D*BB߰B==BW -F_ C=R|Ay@%?|hr?bMtDTE&EWE&BBRBHFB F CFsAyE@%\(?bMDE*EbExBwDB΍7BBi F* @CN.Azz@&E?bM68gE /EI,Ez>E%B݂BBB>Bc F8CWpAz5?}@&ȴ9Xb?bM#\jEEQEEBBCOyBƑ oFBF`C\bAzV@'KƧ?bMZwEEXEwE#рB`BBƼB_V fFAC\DAzvȴ@'+?bM!EE]E @EBbxBABB F9ʀCWuAzP@(QR?bM5UE EP@EnHEBuB,TBB yF3BCSAzQ@(E?bME&E6E]1D~BBի-B'B^ ]F! 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