SIMPLE = T /this file conforms to the FITS standar BITPIX = 16 / it consists of 16 -bit 2s complement NAXIS = 2 / the data is an image(two-dimensional) NAXIS1 = 765 / width of the image in pixels NAXIS2 = 1000 / height of the image in pixels BZERO = 32768.00000 / pixel_value=BZERO+BSCALE*array_value BSCALE = 1.00 / pixel_value=BZERO+BSCALE*array_value OBJECT = 'Object' /subject of this image DATE = '2002-02-09' DATE-OBS= '2002-02-09T23:00:54.42' / UT date of integration TIME-OBS= '23:00:54.42' / UT time COMMENT ,The Time and Date in UT the first line of the image file COMMENT , was read out form the active image area of the CCD INSTRUME= 'SBIG ST-7' / Camera Type TELESCOP= 'Telescope' / telescope used to take this ima OBSERVER= 'Observers_name' / name of the observer ORIGIN = 'WinScan2.01' / software to take this image EXPTIME = 84.249064117639577 / effective exposure time EXPOSURE= 84.249064117639577 / effective exposure time COMMENT SHIFTIME * CCDHEIGH, time to shift all lines from the CCD EACHSNAP= 84.24000 / each exposure PIXWIDTH= 0.00900 / in mm PIXHEIGH= 0.00900 / in mm CCD-TEMP= 26.23000 / temperature of the CCD in Celsius GAIN = 2.300 / e-gain FOCALLEN= 29.567000 / in inch APERTURE= 99.99000 /in square_inch FILTER = 'None' / filter used BACKGRND= 200 / to display the image RANGE = 1000 / to display the image HISTORY R DATAMAX = 65535 / max value in the data DRIFTSCN= '+Y' / SHIFTIME increases in +Y direct SHIFTIME= 0.1651942433679200 / interval to read out one line DECLINAT= 5.82250700 / center of the image RIGHTACE= 145.71719080000 / center of the image CTYPE1 = 'RA---CAR' / RA - plate carree projection CTYPE2 = 'DEC--CAR' / DEC - plate carree projection CRVAL1 = 145.71719080000 / RA in decimal degrees. CRVAL2 = 5.82250700 / DEC in decimal degrees. CRPIX1 = 382.50000 / X pixel reference point CRPIX2 = 500.000 / Y pixel reference point CDELT1 = 0.0006866338421691 / Y degrees per pixel CDELT2 = -0.000686632196636 / X degrees per pixel CROTA1 = 90.00 / rotation of the axis CROTA2 = 90.00 / rotation of the axis EQUINOX = 2000.0000 COMMENT CROTA1=90.0,CROTA2=90.0 so that axis 2 in physical space COMMENT corresponds to axis 1 in pixel space and vice versa. COMMENT The most rapidly varying axis is axis 1 (in pixel space), COMMENT described by the values of NAXIS1 and CRPIX1. COMMENT The corresponding physical axis is the one (y) COMMENT described by CTYPE2, CRVAL2, and CDELT2. KINDIMG = 'DriftScan' / kind of image:standard, drift s CCDHEIGH= 510 / number of lines on the CCD RAMPSTAR= 510 / ramping, lines at the start of the im RAMPEND = 0 / ramping, lines at the end of the imag COMMENT Sekunden je Reihe 0.165194243367921 COMMENT WinScan2.01 COMMENT - COMMENT - COMMENT Y2KYear=2002 COMMENT Comment COMMENT ANote END