Instrument: WIDEFIELD/PLANETARY CAMERA Revised: 27-MAR-96 File Type: STANDARD HEADER PACKET SIMPLE = F data conforms to the fits standard L1 BITPIX = 16 bits per data value I2 DATATYPE= UNSIGNED*2 datatype of the group array C10 NAXIS = 1 number of data axes I2 NAXIS1 = 965 length of first 1st data axis I2 GROUPS = T data has groups L1
GCOUNT = 1 number of groups I2
PCOUNT = 3 number of parameters I2
PSIZE = 128 bits in the parameter block I2
/ GROUP PARAMETERS: OSS
PTYPE1 = FILLCNT number of segments containing fill C08
PDTYPE1 = INTEGER*4 C18
PSIZE1 = 32 I2
PTYPE2 = ERRCNT number of segments containing errors C08
PDTYPE2 = INTEGER*4 C18
PSIZE2 = 32 I2
PTYPE3 = PKTTIME time from the packet ancillary data C08
PDTYPE3 = REAL*8 (Modified Julian Date) C18
PSIZE3 = 64 I2
/ WFPC DATA DESCRIPTOR KEYWORDS
INSTRUME= WFPC instrument in use C04
ROOTNAME= rootname of the observation set C12 shp
FILETYPE= SHP shp, ext, edq, sdq, sci C03
CTYPE1 = UNITLESS unitless, line, pixel, channel, sample, time C08
DEFAULTS= F default values used in reformatting these data L4 master
/ STATISTICAL KEYWORDS
DATE = date this file was written (dd/mm/yy) C08
DCFOBSN = DCF observation number in SHP I4 shp
PROC_TYP= NORMAL level of reprocessing (NORMAL, MINOR, MAJOR) C06 obs
/ TIME CONVERSION KEYWORDS
CLKDRFTR= spacecraft clock drift rate R8 shp
CLKRATE = spacecraft clock rate R8 shp
SPCLINCN= spacecraft clock at UTC0 I4 shp
UTCO1 = bytes 5-8 of UTC0 I4 shp
UTCO2 = bytes 1-4 of UTC0 I4 shp
UTC0 = Coordinated Universal Time (Mod Julian Date) R8 shp
/ CDBS KEYWORDS
WBA1LGCT= bay 1 A1 temperature (deg C) R4 master
WBA2EDTM= bay 2 A1 temperature (deg C) R4 master
WBA3PCTM= bay 3 A1 temperature (deg C) R4 master
WBA4WFTM= bay 4 A1 temperature (deg C) R4 master
WBA5TEMP= bay 5 A1 temperature (deg C) R4 master WCANLTIM= time of cancel operation command I4 master WCH1HJTM= camera head hot junction 1 temperature (deg C) R4 master WCH7HJTM= hot junction 7 temperature (deg C) R4 master WCHVLTS = camera head voltage (volts) R4 master WEXPTMHI= maj frame pulse time preceding exp start (cnts) I4 master WEXPOTIM= maj frame pulse time preceding exp start (cnts) I4 master WEXPOCMD= expose command image I4 master WEXPODUR= commanded duration of exposure (sec) I4 master WFCSTAT = control/status word for exposure I4 master
WFOCTM01= time of first close B shutter I4 master WFOCTM02= slot for second open B shutter time I4 master WFOCTM03= slot for second close B shutter time I4 master WFOCTM04= slot for third open B shutter time I4 master WFOCTM05= slot for third close B shutter time I4 master WFOCTM06= slot for fourth open B shutter time I4 master WFOCTM07= slot for fourth close B shutter time I4 master WFOCTM08= slot for fifth open B shutter time I4 master WFOCTM09= slot for fifth close B shutter time I4 master WFOCTM10= slot for sixth open B shutter time I4 master
WFOCTM11= slot for sixth close B shutter time I4 master WFOCTM12= slot for seventh open B shutter time I4 master WFOCTM13= slot for seventh close B shutter time I4 master WFOCTM14= slot for eighth open B shutter time I4 master WFOCTM15= slot for eighth close B shutter time I4 master WFOSPOSV= relative focus position voltage (counts) I4 master WHOLDHTR= replacement heater on (ON, OFF) C03 master WHTPIHTR= heat pipe heater on (ON, OFF) C03 master WMECHPWR= mechanism power off (ON, OFF) C03 master WMECIFAT= mechanical interface A temperature (deg C) R4 master
WMECIFBT= mechanical interface B temperature (deg C) R4 master WMECIFCT= mechanical interface C temperature (deg C) R4 master WMECVOLT= mechanism supply voltage (volts) R4 master WN15VADC= - 15 v adc supply (counts) I4 master WN15VANA= - 15 v analog supply (counts) I4 master WP5VADC = + 5 volts ADC supply (volts) R4 master WP5VLGC = + 5 volts logic supply (volts) R4 master WP10VLGC= +10 volts logic supply (volts) R4 master WP15VADC= +15 volts ADC supply (volts) R4 master WP15VANA= +15 volts analog supply (volts) R4 master
WPCTECA = OLDTEC current (mA) R4 master WPCTECV = OLDTEC supply voltage (volts) R4 master WPTECPWR= OLDTEC power off (ON, OFF) C03 master WPWRONF = power off (ON, OFF) C03 master WPYRMDTM= optical bench pyramid bulkhead temperature (deg R4 master WRADATMP= OLDRadiator +V2HP 3/4/7/8 temperature (deg C) R4 master WRIUATEM= RIU A temperature (deg C) R4 master WRIUBTEM= RIU B temperature (deg C) R4 master WSTRCTEM= SOFA/shutter mounting plate temperature (deg C) R4 master WTIMEXPO= time of 110 msec expose command I4 master
WUVMTEMP= OLDRadiator -V2HP 1/2/5/6 temperature (deg C) R4 master
WWCANCM = cancel operation command bit I4 master
WWLOGOF = log overflow bit I4 master
WWSCAP = shutter control application processor bit I4 master
WBLDASNR= Blade A sensor: 0:closed, 1:open I4 master
WBLDBSNR= Blade B sensor: 0:closed, 1:open I4 master
/ SUPPORT SCHEDULE: PROGRAMMATIC DATA
PROGRMID= program id (base 36) C03 shp PR_INV_L= last name of principal investigator C18 shp PR_INV_F= first name of principal investigator C18 shp PR_INV_M= middle initial of principal investigator C01 shp AFFILIAT= proposal class (eg: GO, IDT, OS) C03 shp ACCPDATE= proposal acceptance date (yyyyddd) C07 shp OBSET_ID= observation set id C02 shp CALIBRAT= Y calibrate data flag C01 shp OBSERVTN= observation number (base 36) C02 shp EXPACKET= expected number of source packets I4 shp
PRODTYPE= output product medium type C18 shp
OPFORMAT= output product format specification C18 shp
CALIBTYP= calibration type : E, I or Blank C01 shp
CDBSDATA= cdbs notification flag: 'CAL' or 'FALSE' C05 shp
/ SUPPORT SCHEDULE: FLAGS AND INDICATORS
SS_MODE = instr. mode: FULL (full res.), AREA (area int.) C04
SS_CAMRA= camera in use: WF (wide-field), PC (planetary) C02
SS_FILT1= first filter number (0-48) I2
SS_FILT2= second filter number (0-48) I2
RTAMATCH= above f&i match RTA (TRUE,FALSE,NO RTA F&I AVL) C18 shp
SS_PFTIM= Predicted preflash time in seconds R4
SS_PFIL1= Preflash Filter 1 number (0-48) I2
SS_PFIL2= Preflash Filter 2 number (0-48) I2
TARGTYPE= qesiparm target type C18 master
/ SUPPORT SCHEDULE: DATA GROUP II DATA
WRD11_14= word 11/14 (0-255) I2 shp
PSTRTIME= predicted obs. start time (yyyy.ddd:hh:mm:ss) C18 shp
PSTPTIME= predicted obs. stop time (yyyy.ddd:hh:mm:ss) C18 shp
APEROBJ = si object aperture id C10 shp
APERSKY = si sky aperture id C10 shp
TARG_ID = SPSS target ID from proposal+target no. C15 shp
APERTYPE= aperture type (SICS, SIAS, SIDS) C18 shp
RA_V1 = 0.0 right ascension of v1 axis of st (deg) R8 exp DEC_V1 = 0.0 declination of v1 axis of st (deg) R8 exp PA_V3 = 0.0 position angle of v3 axis of st (deg) R4 exp APEROFFX= 0.0 x comp of object offset in aperture (arcsec) R4 shp APEROFFY= 0.0 y comp of object offset in aperture (arcsec) R4 shp ANGLESEP= 0.0 ang separation of target from ref obj (arcsec) R4 shp DGESTAR = FGS ID(F1,F2,F3) concat. w/ dom. gd. star id C12 shp SGESTAR = FGS ID(F1,F2,F3) concat. w/ subdom. gd. star id C12 shp PA_APER = 0.0 position ang of aperture used with target (deg) R4 shp PA_REF = 0.0 position ang of target from ref. object (deg) R4 shp
SAAAVOID= SAA model for SAA Avoidance (range 02-99) C02 shp TARAQMOD= target acquisition mode (values 00, 01, 02, 03) C02 shp POSTNSTX= 0.0 position of space telescope x axis (km) R8 shp POSTNSTY= 0.0 position of space telescope y axis (km) R8 shp POSTNSTZ= 0.0 position of space telescope z axis (km) R8 shp VELOCSTX= 0.0 vel of space telescope along x axis (km/sec) R8 shp VELOCSTY= 0.0 vel of space telescope along y axis (km/sec) R8 shp VELOCSTZ= 0.0 vel of space telescope along z axis (km/sec) R8 shp RA_SUN = 0.0 right ascension of the sun (deg) R8 shp DEC_SUN = 0.0 declination of the sun (deg) R8 shp
RA_MOON = 0.0 right ascension of the moon (deg) R8 shp DEC_MOON= 0.0 declination of the moon (deg) R8 shp VELABBRA= 0.0 aberration in position of the target R4 shp ANNPARRA= 0.0 par. shift in position, non-solar sys target R4 shp V2APERCE= 0.0 V2 offset of target from aper. center (arcsec) R4 shp V3APERCE= 0.0 V3 offset of target from aper. center (arcsec) R4 shp EQRADTRG= 0.0 equatorial radius of target (km) R4 shp FLATNTRG= 0.0 flattening of target R4 shp NPDECTRG= 0.0 north pole declination of target (deg) R4 exp NPRATRG = 0.0 north pole right ascension of target (deg) R4 exp
ROTRTTRG= 0.0 rotation rate of target R4 shp LONGPMER= 0.0 longitude of prime meridian (deg) R4 shp EPLONGPM= 0.0 epoch of longitude of prime meridian (sec) R4 shp SURFLATD= 0.0 surface feature latitude (deg) R4 exp SURFLONG= 0.0 surface feature longitude (deg) R4 exp SURFALTD= 0.0 surface feature altitude (km) R4 exp MTFLAG = moving target flag; T if it is a moving target C01 exp S0INVMAG= 0.0 S0 inverse magnitude R8 shp S0XDIR = 0.0 S0 X direction R8 shp S0YDIR = 0.0 S0 Y direction R8 shp
S0ZDIR = 0.0 S0 Z direction R8 shp TRK_TYPE= track 48 or track 51 commanding used (T48, T51, C03 shp T51_RATE= 0.0 rate of motion commanded (arcsecs/sec) R4 shp T51_ANGL= 0.0 position angle of motion of aperture (deg) R4 shp TARGDIST= distance to target from Earth's center (km) R8 shp PAR_CORR= parallax correction used (T or F) C01 shp RA_REF = 0.0 right ascension of reference object (deg) R8 shp DEC_REF = 0.0 declination of reference object (deg) R8 shp
/ ONBOARD EPHEMERIS MODEL PARAMETERS
EPCHTIME= 0.0 epoch time of parameters (secs since 1/1/85) R8 shp
SDMEANAN= 0.0 2nd deriv coef for mean anomaly (revs/sec/sec) R8 shp
SDMA3SQ = 0.0 3 * (SDMEANAN**2) radians/second**2. R8 shp
HSTHORB = 0.0 half the duration of the ST orbit (seconds) R8 shp
CIRVELOC= 0.0 circular orbit linear velocity (meters/second) R8 shp
COSINCLI= 0.0 cosine of inclination R8 shp
ECCENTRY= 0.0 eccentricity R8 shp
ECCENTX2= 0.0 eccentricity times 2 R8 shp
ECBDX4D3= 0.0 eccentricity cubed times 4/3 R8 shp ESQDX5D2= 0.0 eccentricity squared times 5/2 R8 shp ECBDX3 = 0.0 eccentricity cubed times 3 R8 shp FDMEANAN= 0.0 1st derivative coef for mean anomly (revs/sec) R8 shp RCASCNRD= 0.0 rt chge right ascension ascend node (rads/sec) R8 shp RCASCNRV= 0.0 rt chge right ascension ascend node (revs/sec) R8 shp ARGPERIG= 0.0 argument of perigee (revolutions) R8 shp MEANANOM= 0.0 mean anomaly (radians) R8 shp RCARGPER= 0.0 rate change of argument of perigee (revs/sec) R8 shp RASCASCN= 0.0 right ascension of ascending node (revolutions) R8 shp
SINEINCL= 0.0 sine of inclination R8 shp
SEMILREC= 0.0 semi-latus rectum (meters) R8 shp
TIMEFFEC= 0.0 time parameters took effect (secs since 1/1/85) R8 shp
OBSSTRTT= 0.0 predicted obs. start time (secs since 1/1/85) R8 shp
/ PROPOSAL INFO: Instrument Configuration
CONFIG = proposed instrument configuration C15 obs
OPMODE = proposed operation mode C15 obs
SPEC_1 = spectral element C20 obs SPEC_2 = spectral element C20 obs SPEC_3 = spectral element C20 obs SPEC_4 = spectral element C20 obs APER_1 = instrument aperture C15 obs APER_2 = instrument aperture C15 obs APER_3 = instrument aperture C15 obs APER_4 = instrument aperture C15 obs
/ PROPOSAL INFO: Target Description
TAR_TYPE= target type C15 obs
TARDESCR= target description C68 obs
TARDESC2= target description (cont.) C68 obs
TARGCAT = first target category C24 obs
TARKEY1 = target key description for targcat C24 obs
TARKEY2 = target key description for targcat C24 obs
TARKEY3 = target key description for targcat C24 obs
TARKEY4 = target key description for targcat C24 obs
TARKEY5 = target key description for targcat C24 obs TARGCAT2= second target category C24 obs TARKEY6 = target key description for targcat2 C24 obs TARKEY7 = target key description for targcat2 C24 obs TARKEY8 = target key description for targcat2 C24 obs TARKEY9 = target key description for targcat2 C24 obs TARKEY10= target key description for targcat2 C24 obs ALIAS1 = synonym for target name C68 obs ALIAS2 = synonym for target name C68 obs
/ PROPOSAL INFO: Flux Information
MAG_V = expected V Magnitude R4 obs
SURF_V = expected V surface brightness R4 obs
MAG_B = expected B Magnitude R4 obs
SURF_B = expected B surface brightness R4 obs
MAG_U = expected U Magnitude R4 obs
SURF_U = expected U surface brightness R4 obs
MAG_R = expected R Magnitude R4 obs
SURF_R = expected R surface brightness R4 obs
COL_B_V = expected B-V color R4 obs
COL_U_B = expected U-B color R4 obs
COL_V_R = expected V-R color R4 obs
E_B_V = E(B-V) R4 obs
EXTNCT_V= extinction in V R4 obs
/ PROPOSAL INFO: Exposure Information
CMD_EXP = commanded time per exposure (from TRANS) R4 obs
/ PROPOSAL INFO: Moving Target Information
MT_LV1_1= moving target information C68 obs
MT_LV1_2= moving target information C68 obs
MT_LV1_3= moving target information C68 obs
MT_LV1_4= moving target information C68 obs
MT_LV1_5= moving target information C68 obs
MT_LV2_1= moving target information C68 obs MT_LV2_2= moving target information C68 obs MT_LV2_3= moving target information C68 obs MT_LV2_4= moving target information C68 obs MT_LV2_5= moving target information C68 obs MT_LV3_1= moving target information C68 obs MT_LV3_2= moving target information C68 obs MT_LV3_3= moving target information C68 obs MT_LV3_4= moving target information C68 obs MT_LV3_5= moving target information C68 obs
/ PROPOSAL INFO: Target Properties
REDSHIFT= target redshift from proposal R8 obs
PARALLAX= target parallax from proposal R8 obs
RA_PROP = target right ascension from proposal (degrees) R8 obs
DEC_PROP= target declination from proposal (degrees) R8 obs
PEQUINOX= equinox of coordinate system from proposal C07 obs
MU_RA = target proper motion from proposal (degrees RA) R8 obs
MU_DEC = target proper motion from proposal (degrees DEC) R8 obs
MU_EPOCH= epoch of proper motion from proposal C07 obs
SP_TYPE = target spectral type from proposal C15 obs
RAD_VEL = target radial velocity from proposal (km/sec) R8 obs
/ PROPOSAL INFO: Spatial Scan Info
SCAN_TYP= C:bostrophidon; D:'C'with dwell; N:not applicabl C18 obs
SCAN_WID= scan width (arcsec) R8 obs
ANG_SIDE= angle between sides of parallelogram (deg) R8 obs DWELL_LN= dwell pts/line for scan pointing (1-99,0 if NA) I4 obs DWELL_TM= wait time (duration) at each dwell point (sec) R8 obs SCAN_ANG= position angle of scan line (deg) R8 obs SCAN_RAT= commanded rate of the line scan (arcsec/sec) R8 obs NO_LINES= number of lines per scan (1-99,0 if NA) I4 obs SCAN_LEN= scan length (arcsec) R8 obs SCAN_COR= scan coordinate frame of ref: celestial,vehicle C18 obs
/ PROPOSAL INFO: Auxiliary
PARENTID= PEP proposal identifier of the parent proposal I4 obs
PROPTTL1= proposal title C68
PROPTTL2= proposal title (cont) C68
PROP_TYPE proposal type C10
/ TARGET & PROPOSAL ID
TARGNAME= proposer's target name C30 exp
RA_TARG = right ascension of the target (deg) (J2000) R8 exp
DEC_TARG= declination of the target (deg) (J2000) R8 exp
PROPOSID= PEP proposal identifier I4 all
PEP_EXPO= PEP exposure identifier including sequence C15 all
LINENUM = PEP proposal line number C15 exp
SEQLINE = PEP line number of defined sequence C15 exp
SEQNAME = PEP define/use sequence name C15 exp
END
Updated: 05/29/96 04:42
