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 XPROC0 = 'evselect table=xmm0502920101/products/events/fullrun_mos2_xmm050292&'CONTINUE '0101_pi10000-20000.evt:EVENTS filteredset=filtered.fits withfiltere&'CONTINUE 'dset=no keepfilteroutput=no flagcolumn=EVFLAG flagbit=-1 destruct=y&'CONTINUE 'es dssblock='''' expression=''TIME in gti(xmm0502920101/products//e&'CONTINUE 'vents/fullrun_mos2_xmm0502920101_pi10000-20000.gti)'' filtertype=ex&'CONTINUE 'pression cleandss=no updateexposure=yes filterexposure=yes writedss&'CONTINUE '=yes blockstocopy='''' attributestocopy='''' energycolumn=PHA zcolu&'CONTINUE 'mn=WEIGHT zerrorcolumn=EWEIGHT withzerrorcolumn=no withzcolumn=no i&'CONTINUE 'gnorelegallimits=no imageset=image.fits xcolumn=RAWX ycolumn=RAWY x&'CONTINUE 'imagebinsize=1 yimagebinsize=1 squarepixels=no ximagesize=600 yimag&'CONTINUE 'esize=600 imagebinning=imageSize ximagemin=1 ximagemax=640 withxran&'CONTINUE 'ges=no yimagemin=1 yimagemax=640 withyranges=no imagedatatype=Real6&'CONTINUE '4 withimagedatatype=no raimagecenter=0 decimagecenter=0 withcelesti&'CONTINUE 'alcenter=no withimageset=no spectrumset=spectrum.fits spectralbinsi&'CONTINUE 'ze=10 specchannelmin=0 specchannelmax=4095 withspecranges=no withsp&'CONTINUE 'ectrumset=no rateset=xmm0502920101/products//lightcurves/fullrun_mo&'CONTINUE 's2_xmm0502920101_pi10000-20000_hcl.lc timecolumn=TIME timebinsize=6&'CONTINUE '4 timemin=0 timemax=1000 withtimeranges=no maketimecolumn=yes maker&'CONTINUE 'atecolumn=yes withrateset=yes histogramset=histo.fits histogramcolu&'CONTINUE 'mn=TIME histogrambinsize=1 histogrammin=0 histogrammax=1000 withhis&'CONTINUE 'toranges=no withhistogramset=no # (evselect-3.61) [xmmsas_20110223_&'CONTINUE '1801-11.0.0]' XDAL0 = 'xmm0502920101/products//lightcurves/fullrun_mos2_xmm0502920101_pi10&'CONTINUE '000-20000_hcl.lc 2012-09-05T03:51:47.000 Create evselect (evselect-&'CONTINUE '3.61) [xmmsas_20110223_1801-11.0.0] High SAS_MEMORY_MODEL= SAS_ROWS&'CONTINUE '= SAS_ZERO_ROWS= SAS_COLUMN_WISE= ' CREATOR = 'evselect (evselect-3.61) [xmmsas_20110223_1801-11.0.0]' / name of codDATE = '2012-09-05T03:51:47.000' / creation date LONGSTRN= 'OGIP 1.0' DATAMODE= 'IMAGING ' / Instrument mode (IMAGING or TIMING) TELESCOP= 'XMM ' / XMM mission INSTRUME= 'EMOS2 ' / EPIC MOS Instrument OBS_ID = '0502920101' / Observation Identifier EXP_ID = '0502920101002' / Exposure Identifier DATE-OBS= '2007-11-09T22:17:16' / Start time of exposure DATE-END= '2007-11-10T09:41:02' / End time of exposure OBS_MODE= 'POINTING' / Observation mode (pointing or slew) REVOLUT = 1450 / Revolution number OBJECT = 'PSR B0919+06' / Name of observed object OBSERVER= 'Dr Vyacheslav Zavlin' / Name of observer RA_OBJ = 1.40558416500000E+02 / [deg] RA of target DEC_OBJ = 6.63980550000000E+00 / [deg] Dec of target RA_NOM = 1.40558416500000E+02 / [deg] RA of nominal boresight DEC_NOM = 6.63980550000000E+00 / [deg] Dec of nominal boresight EXPIDSTR= 'S002 ' / Exposure ID FILTER = 'Thin1 ' / Filter ID ATT_SRC = 'AHF ' / Source of attitude data (AHF|RAF|THF) ORB_RCNS= T / Reconstructed orbit data used? TFIT_RPD= F / Recalculated signal propagation delays? TFIT_DEG= 4 / Degree of OBT-MET fit polynomial TFIT_RMS= 1.11232090672339E-06 / RMS value of OBT-MET polynomial fit TFIT_PFR= 0.00000000000000E+00 / Fraction of disregarded TCS data points TFIT_IGH= T / Ignored GS handover in TC data? SUBMODE = 'PrimeFullWindow' / Guest Observer mode EQUINOX = 2.00000000000000E+03 / Equinox for sky coordinate x/y axes RADECSYS= 'FK5 ' / World coord. system for this file REFXCTYP= 'RA---TAN' / WCS Coord. type: RA tangent plane projection REFXCRPX= 25921 / WCS axis reference pixel of projected image REFXCRVL= 1.40550125000000E+02 / [deg] WCS coord. at X axis ref. pixel REFXCDLT= -1.38888888888889E-05 / [deg/pix] WCS X increment at ref. pixel REFXLMIN= 1 / WCS minimum legal QPOE projected image X axis vREFXLMAX= 51840 / WCS maximum legal QPOE projected image X axis vREFXDMIN= 6620 / WCS minimum projected image X axis data value REFXDMAX= 23154 / WCS maximum projected image X axis data value REFXCUNI= 'deg ' / WCS Physical units of X axis REFYCTYP= 'DEC--TAN' / WCS Coord. type: DEC tangent plane projection REFYCRPX= 25921 / WCS axis reference pixel of projected image REFYCRVL= 6.66722222222222E+00 / [deg] WCS coord. at Y axis ref. pixel REFYCDLT= 1.38888888888889E-05 / [deg/pix] WCS Y increment at ref. pixel REFYLMIN= 1 / WCS minimum legal QPOE projected image Y axis vREFYLMAX= 51840 / WCS maximum legal QPOE projected image Y axis vREFYDMIN= 26583 / WCS minimum projected image Y axis data value REFYDMAX= 43114 / WCS maximum projected image Y axis data value REFYCUNI= 'deg ' / WCS Physical units of Y axis AVRG_PNT= 'MEDIAN ' / Meaning of PNT values (mean or median) RA_PNT = 1.40550125000000E+02 / [deg] Actual (mean) pointing RA of the optical DEC_PNT = 6.66722222222222E+00 / [deg] Actual (mean) pointing Dec of the opticalPA_PNT = 1.07516998291016E+02 / [deg] Actual (mean) measured position angle of HISTORY Created by evselect (evselect-3.61) [xmmsas_20110223_1801-11.0.0] at 201HISTORY 2-09-05T03:51:47 END XTENSION= 'BINTABLE' / binary table extension BITPIX = 8 / 8-bit bytes NAXIS = 2 / 2-dimensional binary table NAXIS1 = 24 / width of table in bytes NAXIS2 = 641 / number of rows in table PCOUNT = 0 / size of special data area GCOUNT = 1 / one data group (required keyword) TFIELDS = 3 / number of fields in each row TTYPE1 = 'RATE ' / The name of this column TFORM1 = 'D ' / data format of field: 8-byte DOUBLE TUNIT1 = 'count/s ' / physical unit of field TTYPE2 = 'ERROR ' / The name of this column TFORM2 = 'D ' / data format of field: 8-byte DOUBLE TUNIT2 = 'count/s ' / physical unit of field TTYPE3 = 'TIME ' / The name of this column TFORM3 = 'D ' / data format of field: 8-byte DOUBLE TUNIT3 = 's ' / physical unit of field EXTNAME = 'RATE ' / The name of this table TELESCOP= 'XMM ' / XMM mission INSTRUME= 'EMOS2 ' / EPIC MOS Instrument SLCTEXPR= 'TIME in gti(xmm0502920101/products//events/fullrun_mos2_xmm05029201&'CONTINUE '01_pi10000-20000.gti)' / Filtering expression used by evselect FILTER = 'Thin1 ' / Filter ID TIMESYS = 'TT ' / XMM time will be TT (Terrestrial Time) TIMEUNIT= 's ' / All times in s unless specified otherwise TIMEREF = 'LOCAL ' / Reference location of photon arrival times TASSIGN = 'SATELLITE' / Location of time assignment CLOCKAPP= T / Clock correction applied MJDREF = 5.08140000000000E+04 / [d] 1998-01-01T00:00:00 (TT) expressed in MJD HDUCLASS= 'OGIP ' / Format conforms to OGIP/GSFC conventions HDUCLAS1= 'LIGHTCURVE' / File contains a spectrum HDUCLAS2= 'TOTAL ' / File contains gross rates HDUCLAS3= 'RATE ' / Light curve stored as rates HDUVERS1= '1.1.0 ' / Version of format TIMEDEL = 6.40000000000000E+01 / Light curve bin size TSTART = 3.11033896346918E+08 / Light curve start time TSTOP = 3.11074919621229E+08 / Light curve end time BACKAPP = F / Background correction applied? DEADAPP = F / Dead time correction applied? VIGNAPP = F / Vignetting correction applied? CHANMIN = 0.00000000000000E+00 / Minimum value of the energy column CHANMAX = 3.27670000000000E+04 / Maximum value of the energy column CHANTYPE= 'PHA ' / Name of energy column used DSTYP1 = 'CCDNR ' / data subspace descriptor: name DSTYP2 = 'FLAG ' / data subspace descriptor: name DSTYP3 = 'PATTERN ' / data subspace descriptor: name DSTYP4 = 'PI ' / data subspace descriptor: name DSUNI4 = 'CHAN ' / data subspace descriptor: units DSTYP5 = 'TIME ' / data subspace descriptor: name DSUNI5 = 's ' / data subspace descriptor: units DSVAL1 = '1 ' / data subspace descriptor: value DSVAL2 = '0 ' / data subspace descriptor: value DSVAL3 = ':12 ' / data subspace descriptor: value DSVAL4 = '10000:20000' / data subspace descriptor: value DSVAL5 = 'TABLE ' / data subspace descriptor: value DSREF5 = ':GTI00005' / data subspace descriptor: reference 2DSVAL1 = '2 ' / data subspace descriptor: value 2DSREF5 = ':GTI00105' / data subspace descriptor: reference 3DSVAL1 = '3 ' / data subspace descriptor: value 3DSREF5 = ':GTI00205' / data subspace descriptor: reference 4DSVAL1 = '4 ' / data subspace descriptor: value 4DSREF5 = ':GTI00305' / data subspace descriptor: reference 5DSVAL1 = '5 ' / data subspace descriptor: value 5DSREF5 = ':GTI00405' / data subspace descriptor: reference 6DSVAL1 = '6 ' / data subspace descriptor: value 6DSREF5 = ':GTI00505' / data subspace descriptor: reference 7DSVAL1 = '7 ' / data subspace descriptor: value 7DSREF5 = ':GTI00605' / data subspace descriptor: reference EXPOSURE= 4.04538340672921E+04 / Weighted live time of CCDs in the extraction reEND ??TAHXϞ??AXϞ??o4dMAXϞ??vlAXϞ??o4dMAHXϞ??TAXϞ??wAXϞ??~fAXϞ??vlAHXϞ??ro4AXϞ??AXϞ??AXϞ??*AHXϞ??vlAXϞ??.uwAXϞ??ޱONAXϞ??h?IAHXϞ??AXϞ??~fAXϞ??+DaYAXϞ??TAHXϞ??vlAXϞ??.uwAXϞ??vlAXϞ?? !.AHXϞ??vlAXϞ??ޱONAXϞ??ޱONAXϞ??h?IAHXϞ??~fAXϞ??o4dMAXϞ??YTVAXϞ??h?IAHXϞ??~fAXϞ??*AXϞ??~fA XϞ??A HXϞ??A XϞ??h?IA XϞ??~fA XϞ??+DaYA HXϞ??ro4A XϞ??~fA XϞ??*A XϞ??TA HXϞ??h?IA XϞ??YTVA XϞ??h?IA XϞ??~fA HXϞ??YTVA XϞ??h?IA XϞ??+DaYA XϞ??ޱONA HXϞ??+DaYA XϞ??h?IA XϞ??ޱONAXϞ?? !.AHXϞ??ޱONAXϞ??.uwAXϞ??AXϞ??~fAHXϞ??YTVAXϞ?? !.AXϞ?? !.AXϞ??ee_/AHXϞ??+DaYAXϞ??ro4AXϞ??vlAXϞ??.uwAHXϞ??AXϞ??+DaYAXϞ??vlAXϞ??~fAHXϞ??ޱONAXϞ?? !.AXϞ??~fAXϞ??+DaYAHXϞ??+DaYAXϞ??AXϞ??h?IAXϞ??wAHXϞ??TAXϞ??vlAXϞ??vlAXϞ??vlAHXϞ??vlAXϞ??ro4AXϞ??+DaYAXϞ??wAHXϞ??ޱONAXϞ??ޱONAXϞ??h?IAXϞ??ޱONAHXϞ??h?IAXϞ??ro4AXϞ??wAXϞ??o4dMAHXϞ??~fAXϞ??LX:[SAXϞ??zXLAXϞ??ޱONAHXϞ?? !.AXϞ??ޱONAXϞ??zXLAXϞ??h?IAHXϞ??~fAXϞ??zXLAXϞ??o4dMAXϞ??.uwAHXϞ??ro4AXϞ??h?IAXϞ??~fAXϞ??ޱONAHXϞ??h?IAXϞ??o4dMAXϞ??h?IAXϞ??AHXϞ??vlAXϞ??+DaYAXϞ??AXϞ?? !.AHXϞ?? !.AXϞ??~fAXϞ??zXLAXϞ??AHXϞ??o4dMAXϞ??AXϞ??o4dMA XϞ??A HXϞ??TA XϞ??h?IA XϞ??wA!XϞ??ro4A!HXϞ??.uwA!XϞ??h?IA!XϞ??TA"XϞ??A"HXϞ??ޱONA"XϞ??YTVA"XϞ??h?IA#XϞ??.uwA#HXϞ??zXLA#XϞ??TA#XϞ??+DaYA$XϞ??+DaYA$HXϞ??TA$XϞ??ޱONA$XϞ??A%XϞ??wA%HXϞ??o4dMA%XϞ??~fA%XϞ??wA&XϞ??o4dMA&HXϞ??zXLA&XϞ??wA&XϞ??TA'XϞ??A'HXϞ??o4dMA'XϞ?? !.A'XϞ??YTVA(XϞ?? !.A(HXϞ??zXLA(XϞ??wA(XϞ??YTVA)XϞ??+DaYA)HXϞ??zXLA)XϞ??zXLA)XϞ??~fA*XϞ?? !.A*HXϞ??.uwA*XϞ??A*XϞ??TA+XϞ??ޱONA+HXϞ??+DaYA+XϞ??A+XϞ??o4dMA,XϞ??h?IA,HXϞ??zXLA,XϞ??~fA,XϞ??h?IA-XϞ??~fA-HXϞ??o4dMA-XϞ??vlA-XϞ??~fA.XϞ??TA.HXϞ??wA.XϞ??vlA.XϞ??wA/XϞ??YTVA/HXϞ??vlA/XϞ??ޱONA/XϞ??A0XϞ??.uwA0HXϞ??ޱONA0XϞ??~fA0XϞ??+DaYA1XϞ??ro4A1HXϞ??~fA1XϞ??ro4A1XϞ??vlA2XϞ??6A2HXϞ??h?IA2XϞ?? !.A2XϞ??A3XϞ??vlA3HXϞ??TA3XϞ??*A3XϞ??o4dMA4XϞ??YTVA4HXϞ??nbA4XϞ??hA4XϞ??nbA5XϞ??A5HXϞ??YTVA5XϞ??.B9A5XϞ??ޱONA6XϞ??wA6HXϞ??A6XϞ??wA6XϞ??~fA7XϞ??wA7HXϞ??YTVA7XϞ??wA7XϞ??vlA8XϞ??.uwA8HXϞ??*A8XϞ?? !.A8XϞ??wA9XϞ??*A9HXϞ??A9XϞ??o4dMA9XϞ??LX:[SA:XϞ??ro4A:HXϞ??wA:XϞ??ޱONA:XϞ??~fA;XϞ??+DaYA;HXϞ??ro4A;XϞ??+DaYA;XϞ??vlA<XϞ??TAXϞ??vlA>HXϞ??ޱONA>XϞ??vlA>XϞ??YTVA?XϞ??~fA?HXϞ??ޱONA?XϞ??zXLA?XϞ?? !.A@XϞ??.B9A@HXϞ??o4dMA@XϞ??ee_/A@XϞ??zXLAAXϞ??ro4AAHXϞ??zXLAAXϞ??ޱONAAXϞ??vlABXϞ??o4dMABHXϞ??.uwABXϞ??vlABXϞ??+DaYACXϞ??wACHXϞ??.uwACXϞ??o4dMACXϞ??ޱONADXϞ??ro4ADHXϞ??h?IADXϞ??ee_/ADXϞ??YTVAEXϞ??o4dMAEHXϞ??*AEXϞ?? !.AEXϞ??o4dMAFXϞ??AFHXϞ??f;AFXϞ??o4dMAFXϞ??+DaYAGXϞ??AGHXϞ??~fAGXϞ??ޱONAGXϞ??LX:[SAHXϞ??AHHXϞ??h?IAHXϞ??ee_/AHXϞ??AIXϞ??AIHXϞ??zXLAIXϞ??ޱONAIXϞ??o4dMAJXϞ?? !.AJHXϞ??LX:[SAJXϞ??ޱONAJXϞ??~fAKXϞ??vlAKHXϞ??ro4AKXϞ??f;AKXϞ??ALXϞ??vlALHXϞ??wALXϞ??.uwALXϞ??vlAMXϞ??AMHXϞ??~fAMXϞ??+DaYAMXϞ??h?IANXϞ??o4dMANHXϞ??vlANXϞ??ANXϞ??YTVAOXϞ??ޱONAOHXϞ??o4dMAOXϞ??AOXϞ?? !.APXϞ??.B9APHXϞ??*APXϞ??TAPXϞ??TAQXϞ??.uwAQHXϞ??ee_/AQXϞ??.uwAQXϞ??YTVARXϞ??h?IARHXϞ??6ARXϞ??EdhARXϞ??ASXϞ??*ASHXϞ??ee_/ASXϞ??f;ASXϞ??hATXϞ??*ATHXϞ??ATXϞ??ѓ-ATXϞ??.B9AUXϞ??AUHXϞ??o4dMAUXϞ??6AUXϞ??nbAVXϞ??o4dMAVHXϞ??ee_/AVXϞ??AVXϞ?? !.AWXϞ??*AWHXϞ??ee_/AWXϞ??.B9AWXϞ??LX:[SAXXϞ??LX:[SAXHXϞ??*AXXϞ??AXXϞ??EdhAYXϞ??.uwAYHXϞ??.B9AYXϞ??AYXϞ??AZXϞ??o4dMAZHXϞ??YTVAZXϞ??TAZXϞ??.uwA[XϞ??.B9A[HXϞ??.uwA[XϞ??.uwA[XϞ??~fA\XϞ??~fA\HXϞ??YTVA\XϞ??Tc9A\XϞ??.uwA]XϞ??6A]HXϞ??hA]XϞ??f;A]XϞ??f;A^XϞ??YTVA^HXϞ??TA^XϞ??Tc9A^XϞ??*A_XϞ??f;A_HXϞ??GJ&dA_XϞ??\$YA_XϞ??EdhA`XϞ??YTVA`HXϞ??/A`XϞ??~E[A`XϞ??ro4AaXϞ??zXLAaHXϞ??~E[AaXϞ??~OAaXϞ??d AbXϞ??h?IAbHXϞ??~u_AbXϞ??k-pAbXϞ??YTVAcXϞ??̊TSAcHXϞ?@?Bx6AcXϞ??BۭAcXϞ??.B9AdXϞ?@?L#)AdHXϞ?@?Ţ sIwAdXϞ@ ?`AXϞ??Ø !.AXϞ??ė\vAHXϞXTENSION= 'BINTABLE' / binary table extension BITPIX = 8 / 8-bit bytes NAXIS = 2 / 2-dimensional binary table NAXIS1 = 16 / width of table in bytes NAXIS2 = 1 / number of rows in table PCOUNT = 0 / size of special data area GCOUNT = 1 / one data group (required keyword) TFIELDS = 2 / number of fields in each row TTYPE1 = 'START ' / lower GTI boundary TFORM1 = 'D ' / data format of field: 8-byte DOUBLE TUNIT1 = 's ' / physical unit of field TTYPE2 = 'STOP ' / upper GTI boundary TFORM2 = 'D ' / data format of field: 8-byte DOUBLE TUNIT2 = 's ' / physical unit of field EXTNAME = 'GTI00005' / The name of this table CCDID = 1 / CCD ID HDUCLASS= 'OGIP ' / format conforms to OGIP standard HDUCLAS1= 'GTI ' / table contains Good Time Intervals HDUCLAS2= 'STANDARD' / standard Good Time Interval table ONTIME = 4.10180467129946E+04 / [s] sum of all Good Time Intervals TSTART = 3.11033898946918E+08 / [s] Lower bound of first GTI TSTOP = 3.11074916993631E+08 / [s] Uppler bound of last GTI TIMEZERO= 0.00000000000000E+00 / [s] Clock correction (if not zero) END A*i?Ad^XTENSION= 'BINTABLE' / binary table extension BITPIX = 8 / 8-bit bytes NAXIS = 2 / 2-dimensional binary table NAXIS1 = 16 / width of table in bytes NAXIS2 = 2 / number of rows in table PCOUNT = 0 / size of special data area GCOUNT = 1 / one data group (required keyword) TFIELDS = 2 / number of fields in each row TTYPE1 = 'START ' / lower GTI boundary TFORM1 = 'D ' / data format of field: 8-byte DOUBLE TUNIT1 = 's ' / physical unit of field TTYPE2 = 'STOP ' / upper GTI boundary TFORM2 = 'D ' / data format of field: 8-byte DOUBLE TUNIT2 = 's ' / physical unit of field EXTNAME = 'GTI00105' / The name of this table CCDID = 2 / CCD ID HDUCLASS= 'OGIP ' / format conforms to OGIP standard HDUCLAS1= 'GTI ' / table contains Good Time Intervals HDUCLAS2= 'STANDARD' / standard Good Time Interval table ONTIME = 4.10024373776913E+04 / [s] sum of all Good Time Intervals TSTART = 3.11033898956076E+08 / [s] Lower bound of first GTI TSTOP = 3.11074916993631E+08 / [s] Uppler bound of last GTI TIMEZERO= 0.00000000000000E+00 / [s] Clock correction (if not zero) END A*jA#߻A$y`Ad^XTENSION= 'BINTABLE' / binary table extension BITPIX = 8 / 8-bit bytes NAXIS = 2 / 2-dimensional binary table NAXIS1 = 16 / width of table in bytes NAXIS2 = 5 / number of rows in table PCOUNT = 0 / size of special data area GCOUNT = 1 / one data group (required keyword) TFIELDS = 2 / number of fields in each row TTYPE1 = 'START ' / lower GTI boundary TFORM1 = 'D ' / data format of field: 8-byte DOUBLE TUNIT1 = 's ' / physical unit of field TTYPE2 = 'STOP ' / upper GTI boundary TFORM2 = 'D ' / data format of field: 8-byte DOUBLE TUNIT2 = 's ' / physical unit of field EXTNAME = 'GTI00205' / The name of this table CCDID = 3 / CCD ID HDUCLASS= 'OGIP ' / format conforms to OGIP standard HDUCLAS1= 'GTI ' / table contains Good Time Intervals HDUCLAS2= 'STANDARD' / standard Good Time Interval table ONTIME = 4.10024190621376E+04 / [s] sum of all Good Time Intervals TSTART = 3.11033898974472E+08 / [s] Lower bound of first GTI TSTOP = 3.11074916993631E+08 / [s] Uppler bound of last GTI TIMEZERO= 0.00000000000000E+00 / [s] Clock correction (if not zero) END A*vA5{AuA!A#]AkIz?AkLyA"Aɠ[Ad^XTENSION= 'BINTABLE' / binary table extension BITPIX = 8 / 8-bit bytes NAXIS = 2 / 2-dimensional binary table NAXIS1 = 16 / width of table in bytes NAXIS2 = 2 / number of rows in table PCOUNT = 0 / size of special data area GCOUNT = 1 / one data group (required keyword) TFIELDS = 2 / number of fields in each row TTYPE1 = 'START ' / lower GTI boundary TFORM1 = 'D ' / data format of field: 8-byte DOUBLE TUNIT1 = 's ' / physical unit of field TTYPE2 = 'STOP ' / upper GTI boundary TFORM2 = 'D ' / data format of field: 8-byte DOUBLE TUNIT2 = 's ' / physical unit of field EXTNAME = 'GTI00305' / The name of this table CCDID = 4 / CCD ID HDUCLASS= 'OGIP ' / format conforms to OGIP standard HDUCLAS1= 'GTI ' / table contains Good Time Intervals HDUCLAS2= 'STANDARD' / standard Good Time Interval table ONTIME = 4.10076340576410E+04 / [s] sum of all Good Time Intervals TSTART = 3.11033898965274E+08 / [s] Lower bound of first GTI TSTOP = 3.11074916993631E+08 / [s] Uppler bound of last GTI TIMEZERO= 0.00000000000000E+00 / [s] Clock correction (if not zero) END A*3Aȸ8A- Ad^XTENSION= 'BINTABLE' / binary table extension BITPIX = 8 / 8-bit bytes NAXIS = 2 / 2-dimensional binary table NAXIS1 = 16 / width of table in bytes NAXIS2 = 3 / number of rows in table PCOUNT = 0 / size of special data area GCOUNT = 1 / one data group (required keyword) TFIELDS = 2 / number of fields in each row TTYPE1 = 'START ' / lower GTI boundary TFORM1 = 'D ' / data format of field: 8-byte DOUBLE TUNIT1 = 's ' / physical unit of field TTYPE2 = 'STOP ' / upper GTI boundary TFORM2 = 'D ' / data format of field: 8-byte DOUBLE TUNIT2 = 's ' / physical unit of field EXTNAME = 'GTI00405' / The name of this table CCDID = 5 / CCD ID HDUCLASS= 'OGIP ' / format conforms to OGIP standard HDUCLAS1= 'GTI ' / table contains Good Time Intervals HDUCLAS2= 'STANDARD' / standard Good Time Interval table ONTIME = 4.09998373231292E+04 / [s] sum of all Good Time Intervals TSTART = 3.11033898956116E+08 / [s] Lower bound of first GTI TSTOP = 3.11074916993631E+08 / [s] Uppler bound of last GTI TIMEZERO= 0.00000000000000E+00 / [s] Clock correction (if not zero) END A* A#߻A#F+!A+RA#,Ad^XTENSION= 'BINTABLE' / binary table extension BITPIX = 8 / 8-bit bytes NAXIS = 2 / 2-dimensional binary table NAXIS1 = 16 / width of table in bytes NAXIS2 = 1 / number of rows in table PCOUNT = 0 / size of special data area GCOUNT = 1 / one data group (required keyword) TFIELDS = 2 / number of fields in each row TTYPE1 = 'START ' / lower GTI boundary TFORM1 = 'D ' / data format of field: 8-byte DOUBLE TUNIT1 = 's ' / physical unit of field TTYPE2 = 'STOP ' / upper GTI boundary TFORM2 = 'D ' / data format of field: 8-byte DOUBLE TUNIT2 = 's ' / physical unit of field EXTNAME = 'GTI00505' / The name of this table CCDID = 6 / CCD ID HDUCLASS= 'OGIP ' / format conforms to OGIP standard HDUCLAS1= 'GTI ' / table contains Good Time Intervals HDUCLAS2= 'STANDARD' / standard Good Time Interval table ONTIME = 4.10180191596150E+04 / [s] sum of all Good Time Intervals TSTART = 3.11033898974472E+08 / [s] Lower bound of first GTI TSTOP = 3.11074916993631E+08 / [s] Uppler bound of last GTI TIMEZERO= 0.00000000000000E+00 / [s] Clock correction (if not zero) END A*vAd^XTENSION= 'BINTABLE' / binary table extension BITPIX = 8 / 8-bit bytes NAXIS = 2 / 2-dimensional binary table NAXIS1 = 16 / width of table in bytes NAXIS2 = 3 / number of rows in table PCOUNT = 0 / size of special data area GCOUNT = 1 / one data group (required keyword) TFIELDS = 2 / number of fields in each row TTYPE1 = 'START ' / lower GTI boundary TFORM1 = 'D ' / data format of field: 8-byte DOUBLE TUNIT1 = 's ' / physical unit of field TTYPE2 = 'STOP ' / upper GTI boundary TFORM2 = 'D ' / data format of field: 8-byte DOUBLE TUNIT2 = 's ' / physical unit of field EXTNAME = 'GTI00605' / The name of this table CCDID = 7 / CCD ID HDUCLASS= 'OGIP ' / format conforms to OGIP standard HDUCLAS1= 'GTI ' / table contains Good Time Intervals HDUCLAS2= 'STANDARD' / standard Good Time Interval table ONTIME = 4.09998280552626E+04 / [s] sum of all Good Time Intervals TSTART = 3.11033898965314E+08 / [s] Lower bound of first GTI TSTOP = 3.11074916993631E+08 / [s] Uppler bound of last GTI TIMEZERO= 0.00000000000000E+00 / [s] Clock correction (if not zero) END A*A#sA${A8rSA8#xAd^