Processing Job Log for Sequence 96007000, version 003

This is the complete and detailed record of how this sequence was processed.

The following information is also available:



Processing started ( 08:42:43 )


Verifying telemetry, attitude and orbit files ( 08:42:45 )

-> Checking if column TIME in ft980120_0005.0600 is in order
-> Standard Output From FTOOL cktime:
 
Time column is TIME ORDERED
-> Determining observation start and end
-> Fetching leapsec.fits
-> Standard Output From FTOOL sec2time:
 Offset of   159408318.967400     from 1993-01-01   00:00:00
 is date and time (including leapseconds) = 1998-01-20   00:05:14.96740
 Modified Julian Day    =   50833.003645456017694
-> leapsec.fits already present in current directory
-> Standard Output From FTOOL sec2time:
 Offset of   159429646.900200     from 1993-01-01   00:00:00
 is date and time (including leapseconds) = 1998-01-20   06:00:42.90020
 Modified Julian Day    =   50833.250496530090459
-> Observation begins 159408318.9674 1998-01-20 00:05:14
-> Observation ends 159429646.9002 1998-01-20 06:00:42
-> Fetching the latest orbit file
-> Fetching frf.orbit.241

Determine nominal aspect point for the observation ( 08:43:21 )

-> Running attitude FTOOL on merged attitude file
-> Standard Output From FTOOL attitude:
ATTITUDE_V0.9j
 
   reading attitude file:./merged.tmp
   open asc  output file:out.tmp
 
 AVERAGE ASPECT AND OFFSET FOR THIS ATTITUDE FILE:
 
 Attitude file start and stop ascatime : 159408318.967100 159429658.900100
 Data     file start and stop ascatime : 159408318.967100 159429658.900100
 Aspecting run start and stop ascatime : 159408318.967210 159429658.900023
 
 Time interval averaged over (seconds) :     21339.932813
 Total pointing and manuver time (sec) :     12368.484375      8971.484375
 
 Mean boresight Euler angles :     35.764735      19.882146     174.610385
 
                                    RA             DEC         SUN ANGLE
 
 Mean solar position   (deg) :    300.96         -20.39
 Mean aberration    (arcsec) :      9.22          17.35
 
 Mean sat X-axis       (deg) :    210.035707      19.790567      97.60
 Mean sat Y-axis       (deg) :    300.694652       1.830545      22.23
 Mean sat Z-axis       (deg) :     35.764735      70.117855     110.76
 
                      RA            DEC            ROLL          OFFSET
                    (deg)          (deg)          (deg)         (arcmin)
 
 Average            34.995907      70.007973      85.330238       3.986506
 Minimum            34.231010      69.333374      84.779602       0.064787
 Maximum            35.684315      70.053154      86.452194      43.502239
 Sigma (RMS)         0.036814       0.004295       0.211956       3.628896
 
 Number of ASPECT records processed =      17103
 
 Aspecting to RA/DEC                   :      34.99590683      70.00797272
    closing output   file...
    closing attitude file...
-> Standard Output From STOOL checkatt:
  
 Opening file: ./out.tmp                                                       
  
  ***************** Observation Info ******************
  
  RA (J2000 deg):   34.996 DEC:   70.008
  
  START TIME: SC 159408318.9672 = UT 1998-01-20 00:05:18    
  
  ****** Definition of Attitude SENSOR Bit Flags ******
  
 Sensors used in the attitude determination and attitude control mode  
                                 1: USED,   0: NOT USED                
  
 B0:STT-A, B1:STT-B, B2:NSAS,  B3:GAS,    B4:SSAS-SA, B5:SSAS-SB,      
 B6:IRU-X, B7:IRU-Y, B8:IRU-Z, B9:IRU-S1, B10:IRU-S2,                  
 B11: Attitude control mode    1: coarse, 0: fine                      
 B12: Sun presence             1: day,    0: night                     
 B13: STT-A earth occultation  1: earth occultation, 0: no occultation 
 B14: STT-B earth occultation  1: earth occultation, 0: no occultation 
 B16,17,18: STT-A track stars no.1,2,3,     1: USED, 0: NOT USED       
 B19,20,21: STT-B track stars no.1,2,3,     1: USED, 0: NOT USED       
 B22,23: always 0                                                      
  
  ******** Attitude File Reconstruction Summary *******
  
                                    S S N G S S I I I I I A S S S S S
                                    T T S A S S R R R R R C U T T T T
                                    T T A S A A U U U U U M N T T T T
                                    - - S . A A - - - - - . . - - - -
                                    A B . . - - X Y Z S S . . A B A B
                                    . . . . S S . . . 1 2 . . O O S S
     offset_time separation sensor  . . . . A B . . . . . . . C C T T
        (sec)     (arcmin)          . . . . . . . . . . . . . C C R R
  
                             BIT:   0 1 2 3 4 5 6 7 8 9 A B C D E
  
       0.500127     14.731   8603   1 1 0 0 0 0 0 0 0 1 1 0 0 0 0 0 0
     120.499916     13.730   8603   1 1 0 0 0 0 0 0 0 1 1 0 0 0 0 0 0
    1435.995605     13.532 808883   1 1 0 0 0 0 0 1 0 0 0 1 0 0 0 0 0
    1534.495361     12.522   8803   1 1 0 0 0 0 0 0 0 0 0 1 0 0 0 0 0
    1567.995117     11.513   8803   1 1 0 0 0 0 0 0 0 0 0 1 0 0 0 0 0
    1590.995117     10.495   8803   1 1 0 0 0 0 0 0 0 0 0 1 0 0 0 0 0
    1611.994873      9.483   8803   1 1 0 0 0 0 0 0 0 0 0 1 0 0 0 0 0
    1635.494873      8.468   8803   1 1 0 0 0 0 0 0 0 0 0 1 0 0 0 0 0
    1661.494995      7.454   8803   1 1 0 0 0 0 0 0 0 0 0 1 0 0 0 0 0
    1685.494751      6.446   8803   1 1 0 0 0 0 0 0 0 0 0 1 0 0 0 0 0
    1709.994629      5.432   8803   1 1 0 0 0 0 0 0 0 0 0 1 0 0 0 0 0
    1738.994629      4.422   8803   1 1 0 0 0 0 0 0 0 0 0 1 0 0 0 0 0
    1770.494385      3.415   8803   1 1 0 0 0 0 0 0 0 0 0 1 0 0 0 0 0
    1806.494385      2.405   8803   1 1 0 0 0 0 0 0 0 0 0 1 0 0 0 0 0
    1845.994263      1.394   8803   1 1 0 0 0 0 0 0 0 0 0 1 0 0 0 0 0
    1899.494141      0.391   8803   1 1 0 0 0 0 0 0 0 0 0 1 0 0 0 0 0
    2035.493652      1.393   8803   1 1 0 0 0 0 0 0 0 0 0 1 0 0 0 0 0
    2142.993408      2.398   8803   1 1 0 0 0 0 0 0 0 0 0 1 0 0 0 0 0
    2263.492920      3.398   8803   1 1 0 0 0 0 0 0 0 0 0 1 0 0 0 0 0
    2573.491943      4.401   8803   1 1 0 0 0 0 0 0 0 0 0 1 0 0 0 0 0
    3195.989990      4.556 188443   1 1 0 0 0 0 1 0 0 0 1 0 0 0 0 0 3
    6729.978516      3.636   8A03   1 1 0 0 0 0 0 0 0 1 0 1 0 0 0 0 0
    8955.971680      2.742 188443   1 1 0 0 0 0 1 0 0 0 1 0 0 0 0 0 3
   12475.959961      1.915   8A03   1 1 0 0 0 0 0 0 0 1 0 1 0 0 0 0 0
   14683.953125      1.111   8403   1 1 0 0 0 0 0 0 0 0 1 0 0 0 0 0 0
   18209.943359      1.685   8A03   1 1 0 0 0 0 0 0 0 1 0 1 0 0 0 0 0
   20411.935547      2.529 108443   1 1 0 0 0 0 1 0 0 0 1 0 0 0 0 0 2
   21323.933594     24.490   9603   1 1 0 0 0 0 0 0 0 1 1 0 1 0 0 0 0
   21339.933594     43.502   9603   1 1 0 0 0 0 0 0 0 1 1 0 1 0 0 0 0
  
  Attitude  Records:   17103
  Attitude    Steps:   29
  
  Maneuver ACM time:     8971.50 sec
  Pointed  ACM time:     12368.5 sec
  
-> Calculating aspect point
-> Output from aspect:
0 131 count=1 sum1=35.446 sum2=20.274 sum3=175.16
13 88 count=413 sum1=14697.8 sum2=8193.84 sum3=72178.2
13 89 count=1284 sum1=45698.2 sum2=25483.8 sum3=224397
14 88 count=423 sum1=15057.3 sum2=8390.81 sum3=73922.4
14 89 count=1579 sum1=56201.4 sum2=31345.8 sum3=275950
14 90 count=1878 sum1=66852.1 sum2=37292.3 sum3=328197
15 88 count=171 sum1=6088.77 sum2=3392.49 sum3=29881.8
16 88 count=144 sum1=5128.68 sum2=2857.19 sum3=25162.4
17 88 count=43 sum1=1531.81 sum2=853.284 sum3=7513.47
17 89 count=69 sum1=2458.41 sum2=1369.35 sum3=12056.2
18 89 count=69 sum1=2458.99 sum2=1369.55 sum3=12055.6
18 90 count=24 sum1=855.303 sum2=476.566 sum3=4193.26
19 89 count=70 sum1=2495.31 sum2=1389.61 sum3=12229.7
19 90 count=266 sum1=9482.51 sum2=5282.14 sum3=46472.4
19 91 count=1 sum1=35.651 sum2=19.865 sum3=174.705
20 89 count=25 sum1=891.376 sum2=496.346 sum3=4367.56
20 90 count=65 sum1=2317.65 sum2=1290.65 sum3=11355.6
20 91 count=247 sum1=8807.49 sum2=4908.1 sum3=43151.1
20 92 count=3 sum1=106.983 sum2=59.625 sum3=524.093
21 90 count=68 sum1=2425.43 sum2=1350.35 sum3=11879
21 91 count=2 sum1=71.324 sum2=39.748 sum3=349.395
21 92 count=1401 sum1=49969.9 sum2=27850.2 sum3=244744
22 90 count=54 sum1=1926.62 sum2=1072.49 sum3=9432.77
22 92 count=103 sum1=3674.5 sum2=2048 sum3=17992.7
23 90 count=47 sum1=1677.3 sum2=933.582 sum3=8209.62
23 91 count=7 sum1=249.837 sum2=139.055 sum3=1222.69
23 92 count=17 sum1=606.68 sum2=338.019 sum3=2969.47
23 93 count=1 sum1=35.683 sum2=19.885 sum3=174.682
24 91 count=36 sum1=1285.04 sum2=715.176 sum3=6287.99
24 92 count=27 sum1=963.813 sum2=536.82 sum3=4715.93
25 91 count=57 sum1=2035.16 sum2=1132.48 sum3=9955.48
25 92 count=58 sum1=2071.05 sum2=1153.14 sum3=10129.9
25 93 count=5 sum1=178.555 sum2=99.43 sum3=873.256
26 91 count=46 sum1=1642.97 sum2=914.07 sum3=8033.67
26 92 count=114 sum1=4071.35 sum2=2266.66 sum3=19909.8
26 93 count=229 sum1=8178.51 sum2=4554.32 sum3=39994.1
27 91 count=44 sum1=1571.95 sum2=874.419 sum3=7684.01
27 93 count=14 sum1=500.114 sum2=278.512 sum3=2444.95
27 94 count=174 sum1=6216.74 sum2=3462.38 sum3=30386.3
28 91 count=3 sum1=107.196 sum2=59.622 sum3=523.896
28 92 count=42 sum1=1500.98 sum2=834.78 sum3=7334.32
28 94 count=540 sum1=19297 sum2=10747.9 sum3=94299
28 95 count=1080 sum1=38598.8 sum2=21498.6 sum3=188594
29 92 count=34 sum1=1215.41 sum2=675.841 sum3=5937.03
29 95 count=1435 sum1=51295.6 sum2=28570.1 sum3=250577
30 92 count=28 sum1=1001.16 sum2=556.628 sum3=4889.15
30 95 count=453 sum1=16196.9 sum2=9020.29 sum3=79098.4
31 92 count=41 sum1=1466.4 sum2=815.129 sum3=7158.67
31 95 count=316 sum1=11302.3 sum2=6292.34 sum3=55173.2
32 92 count=25 sum1=894.416 sum2=497.081 sum3=4364.85
32 95 count=661 sum1=23649.3 sum2=13161.8 sum3=115402
33 92 count=16 sum1=572.552 sum2=318.144 sum3=2793.34
33 93 count=14 sum1=501.03 sum2=278.392 sum3=2444.17
33 95 count=406 sum1=14528.2 sum2=8084.74 sum3=70880
33 96 count=83 sum1=2970.47 sum2=1653.12 sum3=14489.9
34 93 count=24 sum1=859.113 sum2=477.28 sum3=4189.86
34 96 count=53 sum1=1897.08 sum2=1055.87 sum3=9252.33
34 97 count=18 sum1=644.398 sum2=358.656 sum3=3142.2
35 93 count=27 sum1=966.815 sum2=536.992 sum3=4713.23
35 97 count=25 sum1=895.102 sum2=498.174 sum3=4364.07
36 93 count=16 sum1=573.064 sum2=318.243 sum3=2792.94
37 93 count=21 sum1=752.347 sum2=417.733 sum3=3665.57
38 93 count=16 sum1=573.383 sum2=318.298 sum3=2792.62
38 94 count=1 sum1=35.841 sum2=19.895 sum3=174.533
39 94 count=20 sum1=716.931 sum2=397.917 sum3=3490.62
40 94 count=17 sum1=609.573 sum2=338.258 sum3=2966.9
41 94 count=17 sum1=609.728 sum2=338.285 sum3=2966.76
42 94 count=19 sum1=681.666 sum2=378.11 sum3=3315.55
43 94 count=14 sum1=502.415 sum2=278.633 sum3=2442.93
44 94 count=14 sum1=502.548 sum2=278.654 sum3=2442.85
44 95 count=2 sum1=71.801 sum2=39.81 sum3=348.971
45 95 count=16 sum1=574.502 sum2=318.488 sum3=2791.69
46 95 count=14 sum1=502.838 sum2=278.693 sum3=2442.56
47 95 count=13 sum1=467.047 sum2=258.801 sum3=2267.95
48 95 count=15 sum1=539.048 sum2=298.646 sum3=2616.8
49 95 count=13 sum1=467.302 sum2=258.843 sum3=2267.8
50 95 count=13 sum1=467.431 sum2=258.856 sum3=2267.68
51 95 count=14 sum1=503.534 sum2=278.782 sum3=2441.95
52 95 count=11 sum1=395.726 sum2=219.052 sum3=1918.59
52 96 count=2 sum1=71.961 sum2=39.83 sum3=348.827
53 96 count=13 sum1=467.834 sum2=258.903 sum3=2267.3
54 96 count=10 sum1=359.969 sum2=199.168 sum3=1743.99
55 96 count=12 sum1=432.079 sum2=239.014 sum3=2092.7
56 96 count=10 sum1=360.165 sum2=199.193 sum3=1743.82
57 96 count=10 sum1=360.267 sum2=199.205 sum3=1743.73
58 96 count=10 sum1=360.37 sum2=199.218 sum3=1743.65
59 96 count=11 sum1=396.513 sum2=219.151 sum3=1917.92
60 96 count=12 sum1=432.684 sum2=239.085 sum3=2092.17
61 96 count=5 sum1=180.322 sum2=99.62 sum3=871.707
61 97 count=5 sum1=180.345 sum2=99.625 sum3=871.686
62 97 count=10 sum1=360.765 sum2=199.255 sum3=1743.31
63 97 count=8 sum1=288.692 sum2=159.412 sum3=1394.58
64 97 count=11 sum1=397.067 sum2=219.203 sum3=1917.45
65 97 count=10 sum1=361.071 sum2=199.286 sum3=1743.05
66 97 count=11 sum1=397.283 sum2=219.219 sum3=1917.26
67 97 count=12 sum1=433.524 sum2=239.155 sum3=2091.45
68 97 count=9 sum1=325.233 sum2=179.37 sum3=1568.51
69 97 count=9 sum1=325.316 sum2=179.373 sum3=1568.44
70 97 count=10 sum1=361.565 sum2=199.31 sum3=1742.63
71 97 count=10 sum1=361.666 sum2=199.314 sum3=1742.54
72 97 count=9 sum1=325.593 sum2=179.389 sum3=1568.21
73 97 count=10 sum1=361.865 sum2=199.33 sum3=1742.38
74 97 count=9 sum1=325.767 sum2=179.401 sum3=1568.06
75 97 count=7 sum1=253.438 sum2=139.538 sum3=1219.55
75 98 count=1 sum1=36.211 sum2=19.935 sum3=174.217
76 98 count=8 sum1=289.733 sum2=159.481 sum3=1393.7
77 98 count=7 sum1=253.587 sum2=139.552 sum3=1219.43
78 98 count=11 sum1=398.607 sum2=219.305 sum3=1916.14
79 98 count=9 sum1=326.223 sum2=179.433 sum3=1567.68
80 98 count=11 sum1=398.82 sum2=219.307 sum3=1915.96
81 98 count=11 sum1=398.927 sum2=219.316 sum3=1915.88
82 98 count=9 sum1=326.495 sum2=179.442 sum3=1567.45
83 98 count=6 sum1=217.724 sum2=119.633 sum3=1044.91
84 98 count=9 sum1=326.671 sum2=179.451 sum3=1567.3
85 98 count=14 sum1=508.302 sum2=279.146 sum3=2437.9
86 98 count=12 sum1=435.803 sum2=239.268 sum3=2089.53
87 98 count=14 sum1=508.567 sum2=279.146 sum3=2437.69
88 98 count=12 sum1=436.034 sum2=239.261 sum3=2089.35
89 98 count=12 sum1=436.165 sum2=239.256 sum3=2089.24
90 98 count=13 sum1=472.643 sum2=259.194 sum3=2263.24
91 98 count=17 sum1=618.238 sum2=338.952 sum3=2959.48
92 98 count=15 sum1=545.645 sum2=299.085 sum3=2611.2
93 98 count=7 sum1=254.706 sum2=139.573 sum3=1218.5
94 98 count=1055 sum1=38401.8 sum2=21033.2 sum3=183634
95 98 count=470 sum1=17110.3 sum2=9371.15 sum3=81808.9
96 98 count=147 sum1=5353.23 sum2=2931.45 sum3=25587.5
97 98 count=22 sum1=801.312 sum2=438.768 sum3=3829.41
97 99 count=72 sum1=2622.79 sum2=1436.09 sum3=12532.7
98 99 count=28 sum1=1020.17 sum2=558.561 sum3=4873.84
99 99 count=5 sum1=182.23 sum2=99.763 sum3=870.319
100 100 count=1 sum1=36.452 sum2=19.955 sum3=174.062
1 out of 17103 points outside bin structure
-> Euler angles: 35.5941, 19.8527, 174.761
-> RA=34.8250 Dec=70.0367 Roll=85.4841
-> Galactic coordinates Lii=130.349815 Bii=8.440580
-> Running fixatt on fa980120_0005.0600
-> Standard Output From STOOL fixatt:
Interpolating 43 records in time interval 159429610.9 - 159429642.9
Interpolating 32 records in time interval 159429642.9 - 159429658.9

Running frfread on telemetry files ( 08:43:48 )

-> Running frfread on ft980120_0005.0600
-> 0% of superframes in ft980120_0005.0600 corrupted
-> Standard Output From FTOOL frfread4:
Dropping SF 416 with synch code word 0 = 255 not 250
Dropping SF 861 with inconsistent datamode 0/31
GIS2 coordinate error time=159410942.8778 x=0 y=0 pha=384 rise=0
SIS1 coordinate error time=159410930.83385 x=0 y=0 pha[0]=384 chip=0
GIS2 coordinate error time=159410943.28014 x=12 y=0 pha=0 rise=0
Dropping SF 1011 with synch code word 1 = 51 not 243
607.998 second gap between superframes 2336 and 2337
4285 of 4288 super frames processed
-> Removing the following files with NEVENTS=0
ft980120_0005_0600G200370M.fits[0]
ft980120_0005_0600G200870M.fits[0]
ft980120_0005_0600G200970L.fits[0]
ft980120_0005_0600G201070L.fits[0]
ft980120_0005_0600G201970M.fits[0]
ft980120_0005_0600G202070L.fits[0]
ft980120_0005_0600G202170L.fits[0]
ft980120_0005_0600G202770M.fits[0]
ft980120_0005_0600G202870L.fits[0]
ft980120_0005_0600G202970M.fits[0]
ft980120_0005_0600G300370M.fits[0]
ft980120_0005_0600G300870M.fits[0]
ft980120_0005_0600G300970L.fits[0]
ft980120_0005_0600G301070L.fits[0]
ft980120_0005_0600G301970M.fits[0]
ft980120_0005_0600G302070L.fits[0]
ft980120_0005_0600G302170L.fits[0]
ft980120_0005_0600G302770M.fits[0]
ft980120_0005_0600G302870L.fits[0]
ft980120_0005_0600G302970M.fits[0]
ft980120_0005_0600S001502L.fits[0]
ft980120_0005_0600S001602L.fits[0]
ft980120_0005_0600S001702L.fits[0]
ft980120_0005_0600S002302L.fits[0]
ft980120_0005_0600S002402L.fits[0]
ft980120_0005_0600S002502M.fits[0]
ft980120_0005_0600S101202L.fits[0]
ft980120_0005_0600S101302L.fits[0]
ft980120_0005_0600S101802L.fits[0]
ft980120_0005_0600S101902M.fits[0]
-> Checking for empty GTI extensions
-> Appending ALLGTI extensions to housekeeping files
-> Merging GTIs from the following files:
ft980120_0005_0600S000101H.fits[2]
ft980120_0005_0600S000202M.fits[2]
ft980120_0005_0600S000302M.fits[2]
ft980120_0005_0600S000401H.fits[2]
ft980120_0005_0600S000501H.fits[2]
ft980120_0005_0600S000602M.fits[2]
ft980120_0005_0600S000702L.fits[2]
ft980120_0005_0600S000802L.fits[2]
ft980120_0005_0600S000902L.fits[2]
ft980120_0005_0600S001002L.fits[2]
ft980120_0005_0600S001102M.fits[2]
ft980120_0005_0600S001202M.fits[2]
ft980120_0005_0600S001301H.fits[2]
ft980120_0005_0600S001402M.fits[2]
ft980120_0005_0600S001802M.fits[2]
ft980120_0005_0600S001902M.fits[2]
ft980120_0005_0600S002001H.fits[2]
ft980120_0005_0600S002102M.fits[2]
ft980120_0005_0600S002202L.fits[2]
-> Merging GTIs from the following files:
ft980120_0005_0600S100101H.fits[2]
ft980120_0005_0600S100202M.fits[2]
ft980120_0005_0600S100301H.fits[2]
ft980120_0005_0600S100401M.fits[2]
ft980120_0005_0600S100502M.fits[2]
ft980120_0005_0600S100602L.fits[2]
ft980120_0005_0600S100702L.fits[2]
ft980120_0005_0600S100802L.fits[2]
ft980120_0005_0600S100902M.fits[2]
ft980120_0005_0600S101001H.fits[2]
ft980120_0005_0600S101102M.fits[2]
ft980120_0005_0600S101402M.fits[2]
ft980120_0005_0600S101501H.fits[2]
ft980120_0005_0600S101602M.fits[2]
ft980120_0005_0600S101702L.fits[2]
-> Merging GTIs from the following files:
ft980120_0005_0600G200170H.fits[2]
ft980120_0005_0600G200270M.fits[2]
ft980120_0005_0600G200470M.fits[2]
ft980120_0005_0600G200570M.fits[2]
ft980120_0005_0600G200670H.fits[2]
ft980120_0005_0600G200770M.fits[2]
ft980120_0005_0600G201170L.fits[2]
ft980120_0005_0600G201270L.fits[2]
ft980120_0005_0600G201370M.fits[2]
ft980120_0005_0600G201470M.fits[2]
ft980120_0005_0600G201570M.fits[2]
ft980120_0005_0600G201670M.fits[2]
ft980120_0005_0600G201770H.fits[2]
ft980120_0005_0600G201870M.fits[2]
ft980120_0005_0600G202270L.fits[2]
ft980120_0005_0600G202370L.fits[2]
ft980120_0005_0600G202470M.fits[2]
ft980120_0005_0600G202570H.fits[2]
ft980120_0005_0600G202670M.fits[2]
-> Merging GTIs from the following files:
ft980120_0005_0600G300170H.fits[2]
ft980120_0005_0600G300270M.fits[2]
ft980120_0005_0600G300470M.fits[2]
ft980120_0005_0600G300570M.fits[2]
ft980120_0005_0600G300670H.fits[2]
ft980120_0005_0600G300770M.fits[2]
ft980120_0005_0600G301170L.fits[2]
ft980120_0005_0600G301270L.fits[2]
ft980120_0005_0600G301370M.fits[2]
ft980120_0005_0600G301470M.fits[2]
ft980120_0005_0600G301570M.fits[2]
ft980120_0005_0600G301670M.fits[2]
ft980120_0005_0600G301770H.fits[2]
ft980120_0005_0600G301870M.fits[2]
ft980120_0005_0600G302270L.fits[2]
ft980120_0005_0600G302370L.fits[2]
ft980120_0005_0600G302470M.fits[2]
ft980120_0005_0600G302570H.fits[2]
ft980120_0005_0600G302670M.fits[2]

Merging event files from frfread ( 08:48:08 )

-> Collecting GIS2 event files by mode
-> Standard Error Output From STOOL gissortcode:
GISSORTCODE:LO:Start program
GISSORTCODE:LO:End program
-> Standard Error Output From STOOL gissortsplit:
GISSORTSPLIT:LO:Start program
GISSORTSPLIT:LO:g200170h.prelist merge count = 4 photon cnt = 5961
GISSORTSPLIT:LO:g200170l.prelist merge count = 2 photon cnt = 75
GISSORTSPLIT:LO:g200270l.prelist merge count = 2 photon cnt = 2012
GISSORTSPLIT:LO:g200170m.prelist merge count = 1 photon cnt = 21
GISSORTSPLIT:LO:g200270m.prelist merge count = 7 photon cnt = 4650
GISSORTSPLIT:LO:g200370m.prelist merge count = 1 photon cnt = 11
GISSORTSPLIT:LO:g200470m.prelist merge count = 1 photon cnt = 25
GISSORTSPLIT:LO:g200570m.prelist merge count = 1 photon cnt = 21
GISSORTSPLIT:LO:Total filenames split = 19
GISSORTSPLIT:LO:Total split file cnt = 8
GISSORTSPLIT:LO:End program
-> Creating ad96007000g200170h.unf
-> Standard Output From STOOL cmerge:
---- cmerge:  version 1.6 ----

A total of  4  fits files ...... 
Sorting files using KEY: TSTART ... 
Checking GTI overlap in input files ... 
Merging binary extension #: 1 
 1 -- ft980120_0005_0600G200170H.fits 
 2 -- ft980120_0005_0600G200670H.fits 
 3 -- ft980120_0005_0600G201770H.fits 
 4 -- ft980120_0005_0600G202570H.fits 
Merging binary extension #: 2 
 1 -- ft980120_0005_0600G200170H.fits 
 2 -- ft980120_0005_0600G200670H.fits 
 3 -- ft980120_0005_0600G201770H.fits 
 4 -- ft980120_0005_0600G202570H.fits 
Checking the output file ...
 Extention # 1 ...... OK
 Extention # 2 ...... OK
The program appears to have finished successfully! 
-> Creating ad96007000g200270m.unf
-> Standard Output From STOOL cmerge:
---- cmerge:  version 1.6 ----

A total of  7  fits files ...... 
Sorting files using KEY: TSTART ... 
Checking GTI overlap in input files ... 
Merging binary extension #: 1 
 1 -- ft980120_0005_0600G200270M.fits 
 2 -- ft980120_0005_0600G200570M.fits 
 3 -- ft980120_0005_0600G200770M.fits 
 4 -- ft980120_0005_0600G201670M.fits 
 5 -- ft980120_0005_0600G201870M.fits 
 6 -- ft980120_0005_0600G202470M.fits 
 7 -- ft980120_0005_0600G202670M.fits 
Merging binary extension #: 2 
 1 -- ft980120_0005_0600G200270M.fits 
 2 -- ft980120_0005_0600G200570M.fits 
 3 -- ft980120_0005_0600G200770M.fits 
 4 -- ft980120_0005_0600G201670M.fits 
 5 -- ft980120_0005_0600G201870M.fits 
 6 -- ft980120_0005_0600G202470M.fits 
 7 -- ft980120_0005_0600G202670M.fits 
Checking the output file ...
 Extention # 1 ...... OK
 Extention # 2 ...... OK
The program appears to have finished successfully! 
-> Creating ad96007000g200370l.unf
-> Standard Output From STOOL cmerge:
---- cmerge:  version 1.6 ----

A total of  2  fits files ...... 
Sorting files using KEY: TSTART ... 
Checking GTI overlap in input files ... 
Merging binary extension #: 1 
 1 -- ft980120_0005_0600G201270L.fits 
 2 -- ft980120_0005_0600G202370L.fits 
Merging binary extension #: 2 
 1 -- ft980120_0005_0600G201270L.fits 
 2 -- ft980120_0005_0600G202370L.fits 
Checking the output file ...
 Extention # 1 ...... OK
 Extention # 2 ...... OK
The program appears to have finished successfully! 
-> Ignoring the following files containing 000000075 events
ft980120_0005_0600G201170L.fits
ft980120_0005_0600G202270L.fits
-> Ignoring the following files containing 000000025 events
ft980120_0005_0600G201370M.fits
-> Ignoring the following files containing 000000021 events
ft980120_0005_0600G201470M.fits
-> Ignoring the following files containing 000000021 events
ft980120_0005_0600G200470M.fits
-> Ignoring the following files containing 000000011 events
ft980120_0005_0600G201570M.fits
-> Collecting GIS3 event files by mode
-> Standard Error Output From STOOL gissortcode:
GISSORTCODE:LO:Start program
GISSORTCODE:LO:End program
-> Standard Error Output From STOOL gissortsplit:
GISSORTSPLIT:LO:Start program
GISSORTSPLIT:LO:g300170h.prelist merge count = 4 photon cnt = 5610
GISSORTSPLIT:LO:g300170l.prelist merge count = 2 photon cnt = 95
GISSORTSPLIT:LO:g300270l.prelist merge count = 2 photon cnt = 2010
GISSORTSPLIT:LO:g300170m.prelist merge count = 1 photon cnt = 12
GISSORTSPLIT:LO:g300270m.prelist merge count = 7 photon cnt = 4232
GISSORTSPLIT:LO:g300370m.prelist merge count = 1 photon cnt = 12
GISSORTSPLIT:LO:g300470m.prelist merge count = 1 photon cnt = 21
GISSORTSPLIT:LO:g300570m.prelist merge count = 1 photon cnt = 26
GISSORTSPLIT:LO:Total filenames split = 19
GISSORTSPLIT:LO:Total split file cnt = 8
GISSORTSPLIT:LO:End program
-> Creating ad96007000g300170h.unf
-> Standard Output From STOOL cmerge:
---- cmerge:  version 1.6 ----

A total of  4  fits files ...... 
Sorting files using KEY: TSTART ... 
Checking GTI overlap in input files ... 
Merging binary extension #: 1 
 1 -- ft980120_0005_0600G300170H.fits 
 2 -- ft980120_0005_0600G300670H.fits 
 3 -- ft980120_0005_0600G301770H.fits 
 4 -- ft980120_0005_0600G302570H.fits 
Merging binary extension #: 2 
 1 -- ft980120_0005_0600G300170H.fits 
 2 -- ft980120_0005_0600G300670H.fits 
 3 -- ft980120_0005_0600G301770H.fits 
 4 -- ft980120_0005_0600G302570H.fits 
Checking the output file ...
 Extention # 1 ...... OK
 Extention # 2 ...... OK
The program appears to have finished successfully! 
-> Creating ad96007000g300270m.unf
-> Standard Output From STOOL cmerge:
---- cmerge:  version 1.6 ----

A total of  7  fits files ...... 
Sorting files using KEY: TSTART ... 
Checking GTI overlap in input files ... 
Merging binary extension #: 1 
 1 -- ft980120_0005_0600G300270M.fits 
 2 -- ft980120_0005_0600G300570M.fits 
 3 -- ft980120_0005_0600G300770M.fits 
 4 -- ft980120_0005_0600G301670M.fits 
 5 -- ft980120_0005_0600G301870M.fits 
 6 -- ft980120_0005_0600G302470M.fits 
 7 -- ft980120_0005_0600G302670M.fits 
Merging binary extension #: 2 
 1 -- ft980120_0005_0600G300270M.fits 
 2 -- ft980120_0005_0600G300570M.fits 
 3 -- ft980120_0005_0600G300770M.fits 
 4 -- ft980120_0005_0600G301670M.fits 
 5 -- ft980120_0005_0600G301870M.fits 
 6 -- ft980120_0005_0600G302470M.fits 
 7 -- ft980120_0005_0600G302670M.fits 
Checking the output file ...
 Extention # 1 ...... OK
 Extention # 2 ...... OK
The program appears to have finished successfully! 
-> Creating ad96007000g300370l.unf
-> Standard Output From STOOL cmerge:
---- cmerge:  version 1.6 ----

A total of  2  fits files ...... 
Sorting files using KEY: TSTART ... 
Checking GTI overlap in input files ... 
Merging binary extension #: 1 
 1 -- ft980120_0005_0600G301270L.fits 
 2 -- ft980120_0005_0600G302370L.fits 
Merging binary extension #: 2 
 1 -- ft980120_0005_0600G301270L.fits 
 2 -- ft980120_0005_0600G302370L.fits 
Checking the output file ...
 Extention # 1 ...... OK
 Extention # 2 ...... OK
The program appears to have finished successfully! 
-> Ignoring the following files containing 000000095 events
ft980120_0005_0600G301170L.fits
ft980120_0005_0600G302270L.fits
-> Ignoring the following files containing 000000026 events
ft980120_0005_0600G301470M.fits
-> Ignoring the following files containing 000000021 events
ft980120_0005_0600G301370M.fits
-> Ignoring the following files containing 000000012 events
ft980120_0005_0600G301570M.fits
-> Ignoring the following files containing 000000012 events
ft980120_0005_0600G300470M.fits
-> Collecting SIS0 event files by mode
-> Standard Error Output From STOOL sis0sortcode:
SIS0SORTCODE:LO:Start program
SIS0SORTCODE:LO:End program
-> Standard Error Output From STOOL sis0sortsplit:
SIS0SORTSPLIT:LO:Start program
SIS0SORTSPLIT:LO:s000101h.prelist merge count = 4 photon cnt = 25907
SIS0SORTSPLIT:LO:s000201h.prelist merge count = 1 photon cnt = 25217
SIS0SORTSPLIT:LO:s000302l.prelist merge count = 3 photon cnt = 2081
SIS0SORTSPLIT:LO:s000402l.prelist merge count = 1 photon cnt = 44
SIS0SORTSPLIT:LO:s000502l.prelist merge count = 1 photon cnt = 29
SIS0SORTSPLIT:LO:s000602m.prelist merge count = 6 photon cnt = 11761
SIS0SORTSPLIT:LO:s000702m.prelist merge count = 3 photon cnt = 1237
SIS0SORTSPLIT:LO:Total filenames split = 19
SIS0SORTSPLIT:LO:Total split file cnt = 7
SIS0SORTSPLIT:LO:End program
-> Creating ad96007000s000101h.unf
-> Standard Output From STOOL cmerge:
---- cmerge:  version 1.6 ----

A total of  4  fits files ...... 
Sorting files using KEY: TSTART ... 
Checking GTI overlap in input files ... 
Merging binary extension #: 1 
 1 -- ft980120_0005_0600S000101H.fits 
 2 -- ft980120_0005_0600S000501H.fits 
 3 -- ft980120_0005_0600S001301H.fits 
 4 -- ft980120_0005_0600S002001H.fits 
Merging binary extension #: 2 
 1 -- ft980120_0005_0600S000101H.fits 
 2 -- ft980120_0005_0600S000501H.fits 
 3 -- ft980120_0005_0600S001301H.fits 
 4 -- ft980120_0005_0600S002001H.fits 
Checking the output file ...
 Extention # 1 ...... OK
 Extention # 2 ...... OK
The program appears to have finished successfully! 
-> Checking ft980120_0005_0600S000401H.fits
-> Creating ad96007000s000201h.unf
-> Standard Output From STOOL cmerge:
---- cmerge:  version 1.6 ----

A total of  1  fits files ...... 
Sorting files using KEY: TSTART ... 
Checking GTI overlap in input files ... 
Merging binary extension #: 1 
 1 -- ft980120_0005_0600S000401H.fits 
Merging binary extension #: 2 
 1 -- ft980120_0005_0600S000401H.fits 
Checking the output file ...
 Extention # 1 ...... OK
 Extention # 2 ...... OK
The program appears to have finished successfully! 
-> Creating ad96007000s000302m.unf
-> Standard Output From STOOL cmerge:
---- cmerge:  version 1.6 ----

A total of  6  fits files ...... 
Sorting files using KEY: TSTART ... 
Checking GTI overlap in input files ... 
Merging binary extension #: 1 
 1 -- ft980120_0005_0600S000202M.fits 
 2 -- ft980120_0005_0600S000602M.fits 
 3 -- ft980120_0005_0600S001202M.fits 
 4 -- ft980120_0005_0600S001402M.fits 
 5 -- ft980120_0005_0600S001902M.fits 
 6 -- ft980120_0005_0600S002102M.fits 
Merging binary extension #: 2 
 1 -- ft980120_0005_0600S000202M.fits 
 2 -- ft980120_0005_0600S000602M.fits 
 3 -- ft980120_0005_0600S001202M.fits 
 4 -- ft980120_0005_0600S001402M.fits 
 5 -- ft980120_0005_0600S001902M.fits 
 6 -- ft980120_0005_0600S002102M.fits 
Checking the output file ...
 Extention # 1 ...... OK
 Extention # 2 ...... OK
The program appears to have finished successfully! 
-> Creating ad96007000s000402l.unf
-> Standard Output From STOOL cmerge:
---- cmerge:  version 1.6 ----

A total of  3  fits files ...... 
Sorting files using KEY: TSTART ... 
Checking GTI overlap in input files ... 
Merging binary extension #: 1 
 1 -- ft980120_0005_0600S000702L.fits 
 2 -- ft980120_0005_0600S000902L.fits 
 3 -- ft980120_0005_0600S002202L.fits 
Merging binary extension #: 2 
 1 -- ft980120_0005_0600S000702L.fits 
 2 -- ft980120_0005_0600S000902L.fits 
 3 -- ft980120_0005_0600S002202L.fits 
Checking the output file ...
 Extention # 1 ...... OK
 Extention # 2 ...... OK
The program appears to have finished successfully! 
-> Creating ad96007000s000502m.unf
-> Standard Output From STOOL cmerge:
---- cmerge:  version 1.6 ----

A total of  3  fits files ...... 
Sorting files using KEY: TSTART ... 
Checking GTI overlap in input files ... 
Merging binary extension #: 1 
 1 -- ft980120_0005_0600S000302M.fits 
 2 -- ft980120_0005_0600S001102M.fits 
 3 -- ft980120_0005_0600S001802M.fits 
Merging binary extension #: 2 
 1 -- ft980120_0005_0600S000302M.fits 
 2 -- ft980120_0005_0600S001102M.fits 
 3 -- ft980120_0005_0600S001802M.fits 
Checking the output file ...
 Extention # 1 ...... OK
 Extention # 2 ...... OK
The program appears to have finished successfully! 
-> Ignoring the following files containing 000000044 events
ft980120_0005_0600S001002L.fits
-> Ignoring the following files containing 000000029 events
ft980120_0005_0600S000802L.fits
-> Collecting SIS1 event files by mode
-> Standard Error Output From STOOL sis1sortcode:
SIS1SORTCODE:LO:Start program
SIS1SORTCODE:LO:End program
-> Standard Error Output From STOOL sis1sortsplit:
SIS1SORTSPLIT:LO:Start program
SIS1SORTSPLIT:LO:s100101h.prelist merge count = 4 photon cnt = 73305
SIS1SORTSPLIT:LO:s100201m.prelist merge count = 1 photon cnt = 20
SIS1SORTSPLIT:LO:s100302l.prelist merge count = 3 photon cnt = 5062
SIS1SORTSPLIT:LO:s100402l.prelist merge count = 1 photon cnt = 57
SIS1SORTSPLIT:LO:s100502m.prelist merge count = 6 photon cnt = 39340
SIS1SORTSPLIT:LO:Total filenames split = 15
SIS1SORTSPLIT:LO:Total split file cnt = 5
SIS1SORTSPLIT:LO:End program
-> Creating ad96007000s100101h.unf
-> Standard Output From STOOL cmerge:
---- cmerge:  version 1.6 ----

A total of  4  fits files ...... 
Sorting files using KEY: TSTART ... 
Checking GTI overlap in input files ... 
Merging binary extension #: 1 
 1 -- ft980120_0005_0600S100101H.fits 
 2 -- ft980120_0005_0600S100301H.fits 
 3 -- ft980120_0005_0600S101001H.fits 
 4 -- ft980120_0005_0600S101501H.fits 
Merging binary extension #: 2 
 1 -- ft980120_0005_0600S100101H.fits 
 2 -- ft980120_0005_0600S100301H.fits 
 3 -- ft980120_0005_0600S101001H.fits 
 4 -- ft980120_0005_0600S101501H.fits 
Checking the output file ...
 Extention # 1 ...... OK
 Extention # 2 ...... OK
The program appears to have finished successfully! 
-> Creating ad96007000s100202m.unf
-> Standard Output From STOOL cmerge:
---- cmerge:  version 1.6 ----

A total of  6  fits files ...... 
Sorting files using KEY: TSTART ... 
Checking GTI overlap in input files ... 
Merging binary extension #: 1 
 1 -- ft980120_0005_0600S100202M.fits 
 2 -- ft980120_0005_0600S100502M.fits 
 3 -- ft980120_0005_0600S100902M.fits 
 4 -- ft980120_0005_0600S101102M.fits 
 5 -- ft980120_0005_0600S101402M.fits 
 6 -- ft980120_0005_0600S101602M.fits 
Merging binary extension #: 2 
 1 -- ft980120_0005_0600S100202M.fits 
 2 -- ft980120_0005_0600S100502M.fits 
 3 -- ft980120_0005_0600S100902M.fits 
 4 -- ft980120_0005_0600S101102M.fits 
 5 -- ft980120_0005_0600S101402M.fits 
 6 -- ft980120_0005_0600S101602M.fits 
Checking the output file ...
 Extention # 1 ...... OK
 Extention # 2 ...... OK
The program appears to have finished successfully! 
-> Creating ad96007000s100302l.unf
-> Standard Output From STOOL cmerge:
---- cmerge:  version 1.6 ----

A total of  3  fits files ...... 
Sorting files using KEY: TSTART ... 
Checking GTI overlap in input files ... 
Merging binary extension #: 1 
 1 -- ft980120_0005_0600S100602L.fits 
 2 -- ft980120_0005_0600S100802L.fits 
 3 -- ft980120_0005_0600S101702L.fits 
Merging binary extension #: 2 
 1 -- ft980120_0005_0600S100602L.fits 
 2 -- ft980120_0005_0600S100802L.fits 
 3 -- ft980120_0005_0600S101702L.fits 
Checking the output file ...
 Extention # 1 ...... OK
 Extention # 2 ...... OK
The program appears to have finished successfully! 
-> Ignoring the following files containing 000000057 events
ft980120_0005_0600S100702L.fits
-> Ignoring the following files containing 000000020 events
ft980120_0005_0600S100401M.fits
-> Tar-ing together the leftover raw files
a ft980120_0005_0600G200470M.fits 31K
a ft980120_0005_0600G201170L.fits 31K
a ft980120_0005_0600G201370M.fits 31K
a ft980120_0005_0600G201470M.fits 31K
a ft980120_0005_0600G201570M.fits 31K
a ft980120_0005_0600G202270L.fits 31K
a ft980120_0005_0600G300470M.fits 31K
a ft980120_0005_0600G301170L.fits 31K
a ft980120_0005_0600G301370M.fits 31K
a ft980120_0005_0600G301470M.fits 31K
a ft980120_0005_0600G301570M.fits 31K
a ft980120_0005_0600G302270L.fits 31K
a ft980120_0005_0600S000802L.fits 29K
a ft980120_0005_0600S001002L.fits 29K
a ft980120_0005_0600S100401M.fits 29K
a ft980120_0005_0600S100702L.fits 29K
-> Checking OBJECT keywords in HK and event files

Converting FAINT mode files to BRIGHT and BRIGHT2 modes ( 08:51:11 )

-> Split threshold for SIS0=40, and SIS1=40
-> Fetching faintdfe.tbl
-> Calculating DFE values for ad96007000s000101h.unf with zerodef=1
-> Converting ad96007000s000101h.unf to ad96007000s000112h.unf
-> Calculating DFE values for ad96007000s000101h.unf with zerodef=2
-> Converting ad96007000s000101h.unf to ad96007000s000102h.unf
-> Calculating DFE values for ad96007000s000201h.unf with zerodef=1
-> Converting ad96007000s000201h.unf to ad96007000s000212h.unf
-> Removing ad96007000s000212h.unf since it only has 782 events
-> Calculating DFE values for ad96007000s000201h.unf with zerodef=2
-> Converting ad96007000s000201h.unf to ad96007000s000202h.unf
-> Removing ad96007000s000202h.unf since it only has 745 events
-> Calculating DFE values for ad96007000s100101h.unf with zerodef=1
-> Converting ad96007000s100101h.unf to ad96007000s100112h.unf
-> Calculating DFE values for ad96007000s100101h.unf with zerodef=2
-> Converting ad96007000s100101h.unf to ad96007000s100102h.unf

Creating GIS gain history file ( 08:52:47 )

-> Fetching gis_temp2gain.fits
-> leapsec.fits already present in current directory
-> Creating gain history file ft980120_0005_0600.ghf
-> Output from ISAS program temp2gain
temp2gain v4.3
'ft980120_0005.0600' is successfully opened
Data Start Time is 159408316.97 (19980120 000512)
Time Margin 2.0 sec included
Sync error detected in 415 th SF
Sync error detected in 1009 th SF
'ft980120_0005.0600' EOF detected, sf=4288
Data End Time is 159429648.90 (19980120 060044)
Gain History is written in ft980120_0005_0600.ghf
-> Stdout output from ISAS program temp2gain
leapsec FITS data was successfully read
-> Checking if column CAL_START in ft980120_0005_0600.ghf[1] is in order
-> Standard Output From FTOOL cktime:
 
Time column is TIME ORDERED
-> Checking if column CAL_STOP in ft980120_0005_0600.ghf[1] is in order
-> Standard Output From FTOOL cktime:
 
Time column is TIME ORDERED
-> Calculating attitude correction from ft980120_0005_0600CMHK.fits
-> Standard Output From FTOOL fstatistic:
 The sum of the selected column is                   14643.000
 The mean of the selected column is                  108.46667
 The standard deviation of the selected column is    2.7773068
 The minimum of selected column is                   103.00000
 The maximum of selected column is                   114.00000
 The number of points used in calculation is              135
-> Standard Output From FTOOL fstatistic:
 The sum of the selected column is                   14643.000
 The mean of the selected column is                  108.46667
 The standard deviation of the selected column is    2.7773068
 The minimum of selected column is                   103.00000
 The maximum of selected column is                   114.00000
 The number of points used in calculation is              135

Running ASCALIN on unfiltered event files ( 08:53:41 )

-> Checking if ad96007000g200170h.unf is covered by attitude file
-> Running ascalin on ad96007000g200170h.unf
-> Fetching gis2_ano_on_flf_180295.fits
-> Standard Output From FTOOL ascalin:
ASCALIN_V0.9u(mod)
-> Checking if ad96007000g200270m.unf is covered by attitude file
-> Running ascalin on ad96007000g200270m.unf
-> gis2_ano_on_flf_180295.fits already present in current directory
-> Standard Output From FTOOL ascalin:
ASCALIN_V0.9u(mod)
-> Checking if ad96007000g200370l.unf is covered by attitude file
-> Running ascalin on ad96007000g200370l.unf
-> gis2_ano_on_flf_180295.fits already present in current directory
-> Standard Output From FTOOL ascalin:
ASCALIN_V0.9u(mod)
-> Checking if ad96007000g300170h.unf is covered by attitude file
-> Running ascalin on ad96007000g300170h.unf
-> Fetching gis3_ano_on_flf_180295.fits
-> Standard Output From FTOOL ascalin:
ASCALIN_V0.9u(mod)
-> Checking if ad96007000g300270m.unf is covered by attitude file
-> Running ascalin on ad96007000g300270m.unf
-> gis3_ano_on_flf_180295.fits already present in current directory
-> Standard Output From FTOOL ascalin:
ASCALIN_V0.9u(mod)
-> Checking if ad96007000g300370l.unf is covered by attitude file
-> Running ascalin on ad96007000g300370l.unf
-> gis3_ano_on_flf_180295.fits already present in current directory
-> Standard Output From FTOOL ascalin:
ASCALIN_V0.9u(mod)
-> Checking if ad96007000s000101h.unf is covered by attitude file
-> Running ascalin on ad96007000s000101h.unf
-> Fetching sisph2pi_110397.fits
-> Fetching s0_teldef_ascalin.fits
-> Standard Output From FTOOL ascalin:
ASCALIN_V0.9u(mod)
-> Checking if ad96007000s000102h.unf is covered by attitude file
-> Running ascalin on ad96007000s000102h.unf
-> sisph2pi_110397.fits already present in current directory
-> s0_teldef_ascalin.fits already present in current directory
-> Standard Output From FTOOL ascalin:
ASCALIN_V0.9u(mod)
-> Checking if ad96007000s000112h.unf is covered by attitude file
-> Running ascalin on ad96007000s000112h.unf
-> sisph2pi_110397.fits already present in current directory
-> s0_teldef_ascalin.fits already present in current directory
-> Standard Output From FTOOL ascalin:
ASCALIN_V0.9u(mod)
-> Checking if ad96007000s000201h.unf is covered by attitude file
-> Running ascalin on ad96007000s000201h.unf
-> sisph2pi_110397.fits already present in current directory
-> s0_teldef_ascalin.fits already present in current directory
-> Standard Output From FTOOL ascalin:
ASCALIN_V0.9u(mod)
-> Checking if ad96007000s000302m.unf is covered by attitude file
-> Running ascalin on ad96007000s000302m.unf
-> sisph2pi_110397.fits already present in current directory
-> s0_teldef_ascalin.fits already present in current directory
-> Standard Output From FTOOL ascalin:
ASCALIN_V0.9u(mod)
-> Checking if ad96007000s000402l.unf is covered by attitude file
-> Running ascalin on ad96007000s000402l.unf
-> sisph2pi_110397.fits already present in current directory
-> s0_teldef_ascalin.fits already present in current directory
-> Standard Output From FTOOL ascalin:
ASCALIN_V0.9u(mod)
-> Checking if ad96007000s000502m.unf is covered by attitude file
-> Running ascalin on ad96007000s000502m.unf
-> sisph2pi_110397.fits already present in current directory
-> s0_teldef_ascalin.fits already present in current directory
-> Standard Output From FTOOL ascalin:
ASCALIN_V0.9u(mod)
-> Checking if ad96007000s100101h.unf is covered by attitude file
-> Running ascalin on ad96007000s100101h.unf
-> sisph2pi_110397.fits already present in current directory
-> Fetching s1_teldef_ascalin.fits
-> Standard Output From FTOOL ascalin:
ASCALIN_V0.9u(mod)
-> Checking if ad96007000s100102h.unf is covered by attitude file
-> Running ascalin on ad96007000s100102h.unf
-> sisph2pi_110397.fits already present in current directory
-> s1_teldef_ascalin.fits already present in current directory
-> Standard Output From FTOOL ascalin:
ASCALIN_V0.9u(mod)
-> Checking if ad96007000s100112h.unf is covered by attitude file
-> Running ascalin on ad96007000s100112h.unf
-> sisph2pi_110397.fits already present in current directory
-> s1_teldef_ascalin.fits already present in current directory
-> Standard Output From FTOOL ascalin:
ASCALIN_V0.9u(mod)
-> Checking if ad96007000s100202m.unf is covered by attitude file
-> Running ascalin on ad96007000s100202m.unf
-> sisph2pi_110397.fits already present in current directory
-> s1_teldef_ascalin.fits already present in current directory
-> Standard Output From FTOOL ascalin:
ASCALIN_V0.9u(mod)
-> Checking if ad96007000s100302l.unf is covered by attitude file
-> Running ascalin on ad96007000s100302l.unf
-> sisph2pi_110397.fits already present in current directory
-> s1_teldef_ascalin.fits already present in current directory
-> Standard Output From FTOOL ascalin:
ASCALIN_V0.9u(mod)

Creating filter files ( 09:00:56 )

-> Fetching rigidity.data.1.23
-> leapsec.fits already present in current directory
-> Making filter file ft980120_0005_0600.mkf
-> Standard Output From FTOOL mkfilter2:
 
S0-HK file: ft980120_0005_0600S0HK.fits

S1-HK file: ft980120_0005_0600S1HK.fits

G2-HK file: ft980120_0005_0600G2HK.fits

G3-HK file: ft980120_0005_0600G3HK.fits

Date and time are: 1998-01-20 00:05:10  mjd=50833.003599

Orbit file name is ./frf.orbit.241

Epoch of Orbital Elements: 1998-01-19 12:00:00

Rigidity Data File: ./rigidity.data.1.23

Attitude FRF: fa980120_0005.0600

output FITS File: ft980120_0005_0600.mkf

Total 667 Data bins were processed.

-> Checking if column TIME in ft980120_0005_0600.mkf is in order
-> Standard Output From FTOOL cktime:
 
Time column is TIME ORDERED
-> Calculating dead time values for filter file
-> Putting dark frame errors into filter files
-> Plotting quantities from ft980120_0005_0600.mkf

Cleaning and filtering the unfiltered event files ( 09:04:56 )

-> Skipping ad96007000s000101h.unf because of mode
-> Filtering ad96007000s000102h.unf into ad96007000s000102h.evt
-> Calculating statistics for S0_PIXL1
-> Standard Output From FTOOL fstatistic:
 The sum of the selected column is                   1046.8158
 The mean of the selected column is                  26.841431
 The standard deviation of the selected column is    13.029781
 The minimum of selected column is                   8.8750286
 The maximum of selected column is                   87.125275
 The number of points used in calculation is               39
-> Calculating statistics for S0_PIXL2
-> Standard Output From FTOOL fstatistic:
 The sum of the selected column is                   1049.7221
 The mean of the selected column is                  26.915951
 The standard deviation of the selected column is    10.136574
 The minimum of selected column is                   13.812545
 The maximum of selected column is                   53.156418
 The number of points used in calculation is               39
-> Using the following selection criteria:
(SAA==0)
&&(BR_EARTH>20)
&&(ELV>10)
&&(COR>6)
&&(ACS==0)
&&(ANG_DIST>0)&& (ANG_DIST<0.01)
&&(FOV==0)
&&
(
(S0_PIXL1>0 && S0_PIXL1<65.9 )&&
(S0_PIXL2>0 && S0_PIXL2<57.3 )  )
&&(  (S0_SATF1<1)
   ||(S0_SATF1>1))
&&(  (S0_SATF2<1)
   ||(S0_SATF2>1))
&&(  (S0_SATF1<1)
   ||(S0_SATF1>1))
&&(  (S0_SATF2<1)
   ||(S0_SATF2>1))
&&((T_DY_NT<0)||(T_DY_NT>32))
&&((T_SAA  <0)||(T_SAA  >32))
-> Filtering ad96007000s000112h.unf into ad96007000s000112h.evt
-> Calculating statistics for S0_PIXL1
-> Standard Output From FTOOL fstatistic:
 The sum of the selected column is                   1046.8158
 The mean of the selected column is                  26.841431
 The standard deviation of the selected column is    13.029781
 The minimum of selected column is                   8.8750286
 The maximum of selected column is                   87.125275
 The number of points used in calculation is               39
-> Calculating statistics for S0_PIXL2
-> Standard Output From FTOOL fstatistic:
 The sum of the selected column is                   1049.7221
 The mean of the selected column is                  26.915951
 The standard deviation of the selected column is    10.136574
 The minimum of selected column is                   13.812545
 The maximum of selected column is                   53.156418
 The number of points used in calculation is               39
-> Using the following selection criteria:
(SAA==0)
&&(BR_EARTH>20)
&&(ELV>10)
&&(COR>6)
&&(ACS==0)
&&(ANG_DIST>0)&& (ANG_DIST<0.01)
&&(FOV==0)
&&
(
(S0_PIXL1>0 && S0_PIXL1<65.9 )&&
(S0_PIXL2>0 && S0_PIXL2<57.3 )  )
&&(  (S0_SATF1<1)
   ||(S0_SATF1>1))
&&(  (S0_SATF2<1)
   ||(S0_SATF2>1))
&&(  (S0_SATF1<1)
   ||(S0_SATF1>1))
&&(  (S0_SATF2<1)
   ||(S0_SATF2>1))
&&((T_DY_NT<0)||(T_DY_NT>32))
&&((T_SAA  <0)||(T_SAA  >32))
-> Skipping ad96007000s000201h.unf because of mode
-> Filtering ad96007000s000302m.unf into ad96007000s000302m.evt
-> Using the following selection criteria:
(SAA==0)
&&(BR_EARTH>20)
&&(ELV>10)
&&(COR>6)
&&(ACS==0)
&&(ANG_DIST>0)&& (ANG_DIST<0.01)
&&(FOV==0)
&&
(
(S0_PIXL1>0)&&(S0_PIXL2>0)  )&&(  (S0_SATF1<1)
   ||(S0_SATF1>1))
&&(  (S0_SATF2<1)
   ||(S0_SATF2>1))
&&(  (S0_SATF1<1)
   ||(S0_SATF1>1))
&&(  (S0_SATF2<1)
   ||(S0_SATF2>1))
&&((T_DY_NT<0)||(T_DY_NT>32))
&&((T_SAA  <0)||(T_SAA  >32))
-> Deleting ad96007000s000302m.evt since it contains 0 events
-> Filtering ad96007000s000402l.unf into ad96007000s000402l.evt
-> Using the following selection criteria:
(SAA==0)
&&(BR_EARTH>20)
&&(ELV>10)
&&(COR>6)
&&(ACS==0)
&&(ANG_DIST>0)&& (ANG_DIST<0.01)
&&(FOV==0)
&&
(
(S0_PIXL1>0)&&(S0_PIXL2>0)  )&&(  (S0_SATF1<1)
   ||(S0_SATF1>1))
&&(  (S0_SATF2<1)
   ||(S0_SATF2>1))
&&(  (S0_SATF1<1)
   ||(S0_SATF1>1))
&&(  (S0_SATF2<1)
   ||(S0_SATF2>1))
&&((T_DY_NT<0)||(T_DY_NT>32))
&&((T_SAA  <0)||(T_SAA  >32))
-> Deleting ad96007000s000402l.evt since it contains 0 events
-> Filtering ad96007000s000502m.unf into ad96007000s000502m.evt
-> Using the following selection criteria:
(SAA==0)
&&(BR_EARTH>20)
&&(ELV>10)
&&(COR>6)
&&(ACS==0)
&&(ANG_DIST>0)&& (ANG_DIST<0.01)
&&(FOV==0)
&&
(
(S0_PIXL1>0)&&(S0_PIXL2>0)  )&&(  (S0_SATF1<1)
   ||(S0_SATF1>1))
&&(  (S0_SATF2<1)
   ||(S0_SATF2>1))
&&(  (S0_SATF1<1)
   ||(S0_SATF1>1))
&&(  (S0_SATF2<1)
   ||(S0_SATF2>1))
&&((T_DY_NT<0)||(T_DY_NT>32))
&&((T_SAA  <0)||(T_SAA  >32))
-> Deleting ad96007000s000502m.evt since it contains 0 events
-> Skipping ad96007000s100101h.unf because of mode
-> Filtering ad96007000s100102h.unf into ad96007000s100102h.evt
-> Calculating statistics for S1_PIXL0
-> Standard Output From FTOOL fstatistic:
 The sum of the selected column is                   1903.0998
 The mean of the selected column is                  45.311900
 The standard deviation of the selected column is    13.474614
 The minimum of selected column is                   30.468845
 The maximum of selected column is                   83.344017
 The number of points used in calculation is               42
-> Calculating statistics for S1_PIXL3
-> Standard Output From FTOOL fstatistic:
 The sum of the selected column is                   1752.4431
 The mean of the selected column is                  41.724835
 The standard deviation of the selected column is    15.825275
 The minimum of selected column is                   26.062582
 The maximum of selected column is                   96.187805
 The number of points used in calculation is               42
-> Using the following selection criteria:
(SAA==0)
&&(BR_EARTH>20)
&&(ELV>10)
&&(COR>6)
&&(ACS==0)
&&(ANG_DIST>0)&& (ANG_DIST<0.01)
&&(FOV==0)
&&
(
(S1_PIXL0>4.8 && S1_PIXL0<85.7 )&&
(S1_PIXL3>0 && S1_PIXL3<89.2 )  )
&&(  (S1_SATF3<1)
   ||(S1_SATF3>1))
&&(  (S1_SATF0<1)
   ||(S1_SATF0>1))
&&(  (S1_SATF3<1)
   ||(S1_SATF3>1))
&&(  (S1_SATF0<1)
   ||(S1_SATF0>1))
&&((T_DY_NT<0)||(T_DY_NT>32))
&&((T_SAA  <0)||(T_SAA  >32))
-> Filtering ad96007000s100112h.unf into ad96007000s100112h.evt
-> Calculating statistics for S1_PIXL0
-> Standard Output From FTOOL fstatistic:
 The sum of the selected column is                   1903.0998
 The mean of the selected column is                  45.311900
 The standard deviation of the selected column is    13.474614
 The minimum of selected column is                   30.468845
 The maximum of selected column is                   83.344017
 The number of points used in calculation is               42
-> Calculating statistics for S1_PIXL3
-> Standard Output From FTOOL fstatistic:
 The sum of the selected column is                   1752.4431
 The mean of the selected column is                  41.724835
 The standard deviation of the selected column is    15.825275
 The minimum of selected column is                   26.062582
 The maximum of selected column is                   96.187805
 The number of points used in calculation is               42
-> Using the following selection criteria:
(SAA==0)
&&(BR_EARTH>20)
&&(ELV>10)
&&(COR>6)
&&(ACS==0)
&&(ANG_DIST>0)&& (ANG_DIST<0.01)
&&(FOV==0)
&&
(
(S1_PIXL0>4.8 && S1_PIXL0<85.7 )&&
(S1_PIXL3>0 && S1_PIXL3<89.2 )  )
&&(  (S1_SATF3<1)
   ||(S1_SATF3>1))
&&(  (S1_SATF0<1)
   ||(S1_SATF0>1))
&&(  (S1_SATF3<1)
   ||(S1_SATF3>1))
&&(  (S1_SATF0<1)
   ||(S1_SATF0>1))
&&((T_DY_NT<0)||(T_DY_NT>32))
&&((T_SAA  <0)||(T_SAA  >32))
-> Filtering ad96007000s100202m.unf into ad96007000s100202m.evt
-> Using the following selection criteria:
(SAA==0)
&&(BR_EARTH>20)
&&(ELV>10)
&&(COR>6)
&&(ACS==0)
&&(ANG_DIST>0)&& (ANG_DIST<0.01)
&&(FOV==0)
&&
(
(S1_PIXL0>0)&&(S1_PIXL3>0)  )&&(  (S1_SATF3<1)
   ||(S1_SATF3>1))
&&(  (S1_SATF0<1)
   ||(S1_SATF0>1))
&&(  (S1_SATF3<1)
   ||(S1_SATF3>1))
&&(  (S1_SATF0<1)
   ||(S1_SATF0>1))
&&((T_DY_NT<0)||(T_DY_NT>32))
&&((T_SAA  <0)||(T_SAA  >32))
-> Deleting ad96007000s100202m.evt since it contains 0 events
-> Filtering ad96007000s100302l.unf into ad96007000s100302l.evt
-> Using the following selection criteria:
(SAA==0)
&&(BR_EARTH>20)
&&(ELV>10)
&&(COR>6)
&&(ACS==0)
&&(ANG_DIST>0)&& (ANG_DIST<0.01)
&&(FOV==0)
&&
(
(S1_PIXL0>0)&&(S1_PIXL3>0)  )&&(  (S1_SATF3<1)
   ||(S1_SATF3>1))
&&(  (S1_SATF0<1)
   ||(S1_SATF0>1))
&&(  (S1_SATF3<1)
   ||(S1_SATF3>1))
&&(  (S1_SATF0<1)
   ||(S1_SATF0>1))
&&((T_DY_NT<0)||(T_DY_NT>32))
&&((T_SAA  <0)||(T_SAA  >32))
-> Deleting ad96007000s100302l.evt since it contains 0 events
-> Filtering ad96007000g200170h.unf into ad96007000g200170h.evt
-> Fetching GIS2_REGION256.4
-> Using the following selection criteria:
(SAA==0)&&
(COR>4)&&
(G2_H0+G2_H2+G3_H0+G3_H2<45)&&
(G2_H0+G2_H2+G3_H0+G3_H2<0.45*COR**2-13*COR+125)&&
(RBM_CONT<100)&&
(ELV>5)&&
(ACS==0)&&
(ANG_DIST>0)&& (ANG_DIST<0.01)&&
(G2_L1>0)
-> Filtering ad96007000g200270m.unf into ad96007000g200270m.evt
-> GIS2_REGION256.4 already present in current directory
-> Using the following selection criteria:
(SAA==0)&&
(COR>4)&&
(G2_H0+G2_H2+G3_H0+G3_H2<45)&&
(G2_H0+G2_H2+G3_H0+G3_H2<0.45*COR**2-13*COR+125)&&
(RBM_CONT<100)&&
(ELV>5)&&
(ACS==0)&&
(ANG_DIST>0)&& (ANG_DIST<0.01)&&
(G2_L1>0)
-> Deleting ad96007000g200270m.evt since it contains 0 events
-> Filtering ad96007000g200370l.unf into ad96007000g200370l.evt
-> GIS2_REGION256.4 already present in current directory
-> Using the following selection criteria:
(SAA==0)&&
(COR>4)&&
(G2_H0+G2_H2+G3_H0+G3_H2<45)&&
(G2_H0+G2_H2+G3_H0+G3_H2<0.45*COR**2-13*COR+125)&&
(RBM_CONT<100)&&
(ELV>5)&&
(ACS==0)&&
(ANG_DIST>0)&& (ANG_DIST<0.01)&&
(G2_L1>0)
-> Deleting ad96007000g200370l.evt since it contains 0 events
-> Filtering ad96007000g300170h.unf into ad96007000g300170h.evt
-> Fetching GIS3_REGION256.4
-> Using the following selection criteria:
(SAA==0)&&
(COR>4)&&
(G2_H0+G2_H2+G3_H0+G3_H2<45)&&
(G2_H0+G2_H2+G3_H0+G3_H2<0.45*COR**2-13*COR+125)&&
(RBM_CONT<100)&&
(ELV>5)&&
(ACS==0)&&
(ANG_DIST>0)&& (ANG_DIST<0.01)&&
(G3_L1>0)
-> Filtering ad96007000g300270m.unf into ad96007000g300270m.evt
-> GIS3_REGION256.4 already present in current directory
-> Using the following selection criteria:
(SAA==0)&&
(COR>4)&&
(G2_H0+G2_H2+G3_H0+G3_H2<45)&&
(G2_H0+G2_H2+G3_H0+G3_H2<0.45*COR**2-13*COR+125)&&
(RBM_CONT<100)&&
(ELV>5)&&
(ACS==0)&&
(ANG_DIST>0)&& (ANG_DIST<0.01)&&
(G3_L1>0)
-> Deleting ad96007000g300270m.evt since it contains 0 events
-> Filtering ad96007000g300370l.unf into ad96007000g300370l.evt
-> GIS3_REGION256.4 already present in current directory
-> Using the following selection criteria:
(SAA==0)&&
(COR>4)&&
(G2_H0+G2_H2+G3_H0+G3_H2<45)&&
(G2_H0+G2_H2+G3_H0+G3_H2<0.45*COR**2-13*COR+125)&&
(RBM_CONT<100)&&
(ELV>5)&&
(ACS==0)&&
(ANG_DIST>0)&& (ANG_DIST<0.01)&&
(G3_L1>0)
-> Deleting ad96007000g300370l.evt since it contains 0 events

Generating images and exposure maps ( 09:12:51 )

-> Generating exposure map ad96007000g200170h.expo
-> GIS2_REGION256.4 already present in current directory
-> Standard Output From STOOL regionmap:
-ANNULUS(128.5,128.5,192,88)
-ELLIPSE(167.5,220,24.66,28.95,245.298)
-> gis2_ano_on_flf_180295.fits already present in current directory
-> Running ascaexpo for ad96007000g200170h.evt
-> Standard Output From FTOOL ascaexpo:
ASCAEXPO_V0.9b
 
    reading data file: ad96007000g200170h.evt
    reading   gti ext: STDGTI
    reading  cal file: gis2_ano_on_flf_180295.fits
    reading inst file: GIS2_REGION256.4_regionmap.tmp
 
    making an inst map...
 rebin gis:  1
     multiply inst map...
 
    reading att  file: ./fa980120_0005.0600
 
    making an exposure map...
 
 Aspect RA/DEC/ROLL :       34.8250      70.0367      85.3556
 Mean   RA/DEC/ROLL :       34.6846      70.0937      85.3556
 Pnt    RA/DEC/ROLL :       35.6571      69.9156      85.3556
 
 Image rebin factor :             1
 Attitude Records   :         17179
 GTI intervals      :             1
 Total GTI (secs)   :      1664.000
 
 Max attitude excursion (arcsecs) :         5.000
 
   0 Percent Complete: Total/live time:          0.00         0.00
  10 Percent Complete: Total/live time:        374.48       374.48
  20 Percent Complete: Total/live time:        374.48       374.48
  30 Percent Complete: Total/live time:        562.48       562.48
  40 Percent Complete: Total/live time:        721.98       721.98
  50 Percent Complete: Total/live time:        942.48       942.48
  60 Percent Complete: Total/live time:       1149.98      1149.98
  70 Percent Complete: Total/live time:       1362.98      1362.98
  80 Percent Complete: Total/live time:       1362.98      1362.98
  90 Percent Complete: Total/live time:       1576.48      1576.48
 100 Percent Complete: Total/live time:       1664.00      1664.00
 
 Number of attitude steps  used:           10
 Number of attitude steps avail:         3475
 Mean RA/DEC pixel offset:      -11.9069      -3.3947
 
    writing expo file: ad96007000g200170h.expo
    closing attitude file...
    closing data file...
-> Generating low and high energy images for ad96007000g200170h.evt
-> Generating exposure map ad96007000g300170h.expo
-> GIS3_REGION256.4 already present in current directory
-> Standard Output From STOOL regionmap:
-ANNULUS(128.5,128.5,192,88)
-ELLIPSE(217,95,21.56,25.92,169.216)
-> gis3_ano_on_flf_180295.fits already present in current directory
-> Running ascaexpo for ad96007000g300170h.evt
-> Standard Output From FTOOL ascaexpo:
ASCAEXPO_V0.9b
 
    reading data file: ad96007000g300170h.evt
    reading   gti ext: STDGTI
    reading  cal file: gis3_ano_on_flf_180295.fits
    reading inst file: GIS3_REGION256.4_regionmap.tmp
 
    making an inst map...
 rebin gis:  1
     multiply inst map...
 
    reading att  file: ./fa980120_0005.0600
 
    making an exposure map...
 
 Aspect RA/DEC/ROLL :       34.8250      70.0367      85.3434
 Mean   RA/DEC/ROLL :       34.6621      70.0689      85.3434
 Pnt    RA/DEC/ROLL :       35.6708      69.9400      85.3434
 
 Image rebin factor :             1
 Attitude Records   :         17179
 GTI intervals      :             1
 Total GTI (secs)   :      1664.000
 
 Max attitude excursion (arcsecs) :         5.000
 
   0 Percent Complete: Total/live time:          0.00         0.00
  10 Percent Complete: Total/live time:        374.48       374.48
  20 Percent Complete: Total/live time:        374.48       374.48
  30 Percent Complete: Total/live time:        562.48       562.48
  40 Percent Complete: Total/live time:        721.98       721.98
  50 Percent Complete: Total/live time:        942.48       942.48
  60 Percent Complete: Total/live time:       1149.98      1149.98
  70 Percent Complete: Total/live time:       1362.98      1362.98
  80 Percent Complete: Total/live time:       1362.98      1362.98
  90 Percent Complete: Total/live time:       1576.48      1576.48
 100 Percent Complete: Total/live time:       1664.00      1664.00
 
 Number of attitude steps  used:           10
 Number of attitude steps avail:         3475
 Mean RA/DEC pixel offset:       -1.0362      -2.3148
 
    writing expo file: ad96007000g300170h.expo
    closing attitude file...
    closing data file...
-> Generating low and high energy images for ad96007000g300170h.evt
-> Generating exposure map ad96007000s000102h.expo
-> s0_teldef_ascalin.fits already present in current directory
-> Running ascaexpo for ad96007000s000102h.evt
-> Standard Output From FTOOL ascaexpo:
ASCAEXPO_V0.9b
 
    reading data file: ad96007000s000102h.evt
    reading   gti ext: STDGTI
    reading    hp ext: HOT_PIXELS
    reading  cal file: s0_teldef_ascalin.fits
 
    making an inst map...
  
 SIS AREA DISC ENABL         OFF
  
              CHIP:            0           1           2           3
  
 CCD POWER  ON/OFF:          OFF          ON          ON         OFF
 AREA DISC  IN/OUT:          OUT         OUT          IN          IN
 AREA DISC H START:            6           6           6         316
 AREA DISC H  STOP:          425         425         200         425
 AREA DISC V START:            2           2           2           2
 AREA DISC V  STOP:          422         422         150         112
  
    reading att  file: ./fa980120_0005.0600
 
    making an exposure map...
 
 Aspect RA/DEC/ROLL :       34.8250      70.0367      85.3914
 Mean   RA/DEC/ROLL :       34.7062      70.0890      85.3914
 Pnt    RA/DEC/ROLL :       35.6196      69.9293      85.3914
 
 Image rebin factor :             4
 Attitude Records   :         17179
 Hot Pixels         :            26
 GTI intervals      :             2
 Total GTI (secs)   :      1218.142
 
 Max attitude excursion (arcsecs) :         5.000
 
   0 Percent Complete: Total/live time:          0.00         0.00
  10 Percent Complete: Total/live time:        184.12       184.12
  20 Percent Complete: Total/live time:        315.62       315.62
  30 Percent Complete: Total/live time:        560.62       560.62
  40 Percent Complete: Total/live time:        560.62       560.62
  50 Percent Complete: Total/live time:        758.12       758.12
  60 Percent Complete: Total/live time:        758.12       758.12
  70 Percent Complete: Total/live time:        941.62       941.62
  80 Percent Complete: Total/live time:       1154.62      1154.62
  90 Percent Complete: Total/live time:       1154.62      1154.62
 100 Percent Complete: Total/live time:       1218.14      1218.14
 
 Number of attitude steps  used:            8
 Number of attitude steps avail:         2648
 Mean RA/DEC pixel offset:      -63.6946     -84.6098
 
    writing expo file: ad96007000s000102h.expo
    closing attitude file...
    closing data file...
-> Generating low and high energy images for ad96007000s000102h.evt
-> Generating exposure map ad96007000s100102h.expo
-> s1_teldef_ascalin.fits already present in current directory
-> Running ascaexpo for ad96007000s100102h.evt
-> Standard Output From FTOOL ascaexpo:
ASCAEXPO_V0.9b
 
    reading data file: ad96007000s100102h.evt
    reading   gti ext: STDGTI
    reading    hp ext: HOT_PIXELS
    reading  cal file: s1_teldef_ascalin.fits
 
    making an inst map...
  
 SIS AREA DISC ENABL         OFF
  
              CHIP:            0           1           2           3
  
 CCD POWER  ON/OFF:           ON         OFF         OFF          ON
 AREA DISC  IN/OUT:          OUT         OUT         OUT         OUT
 AREA DISC H START:            6           6           6           6
 AREA DISC H  STOP:          425         425         425         425
 AREA DISC V START:            2           2           2           2
 AREA DISC V  STOP:          422         422         422         422
  
    reading att  file: ./fa980120_0005.0600
 
    making an exposure map...
 
 Aspect RA/DEC/ROLL :       34.8250      70.0367      85.3481
 Mean   RA/DEC/ROLL :       34.6759      70.0877      85.3481
 Pnt    RA/DEC/ROLL :       35.6654      69.9269      85.3481
 
 Image rebin factor :             4
 Attitude Records   :         17179
 Hot Pixels         :            68
 GTI intervals      :             2
 Total GTI (secs)   :      1312.000
 
 Max attitude excursion (arcsecs) :         5.000
 
   0 Percent Complete: Total/live time:          0.00         0.00
  10 Percent Complete: Total/live time:        203.98       203.98
  20 Percent Complete: Total/live time:        397.98       397.98
  30 Percent Complete: Total/live time:        600.48       600.48
  40 Percent Complete: Total/live time:        600.48       600.48
  50 Percent Complete: Total/live time:        804.48       804.48
  60 Percent Complete: Total/live time:        804.48       804.48
  70 Percent Complete: Total/live time:        992.00       992.00
  80 Percent Complete: Total/live time:       1198.98      1198.98
  90 Percent Complete: Total/live time:       1198.98      1198.98
 100 Percent Complete: Total/live time:       1312.00      1312.00
 
 Number of attitude steps  used:            8
 Number of attitude steps avail:         2817
 Mean RA/DEC pixel offset:      -66.0133     -22.1285
 
    writing expo file: ad96007000s100102h.expo
    closing attitude file...
    closing data file...
-> Generating low and high energy images for ad96007000s100102h.evt
-> Summing sis images
-> Summing the following images to produce ad96007000sis32002.totexpo
ad96007000s000102h.expo
ad96007000s100102h.expo
-> Summing the following images to produce ad96007000sis32002_all.totsky
ad96007000s000102h.img
ad96007000s100102h.img
-> Summing the following images to produce ad96007000sis32002_lo.totsky
ad96007000s000102h_lo.img
ad96007000s100102h_lo.img
-> Summing the following images to produce ad96007000sis32002_hi.totsky
ad96007000s000102h_hi.img
ad96007000s100102h_hi.img
-> Running XIMAGE to create ad96007000sis32002.gif
-> Standard Output From STOOL ximage:
 No of detectors read in:   20
![1]XIMAGE> read/fits ad96007000sis32002_all.totsky
 Reading an image
 Telescope ASCA SIS0
  Image display size =  320
 Done, closing file
  Largest, Smallest    2.00000  0.
  Bscale, Bzero from file     1.0000000000000  0.
After internal scaling
  Bscale and Bzero    1.0000000000000  0.
 Image level, max:  2 min:  0
![2]XIMAGE> read/exp_map ad96007000sis32002.totexpo
 Reading an image
 Telescope ASCA SIS0
  Image display size =  320
 Done, closing file
  Largest, Smallest    42.1690  0.
  Bscale, Bzero from file     1.0000000000000  0.
After internal scaling
  Bscale and Bzero    1.0000000000000  0.
 Image level, max:  42 min:  0
![3]XIMAGE> smooth
![4]XIMAGE> cpd /ppm
![5]XIMAGE> cey 2000
![6]XIMAGE> title "P_TEMP_TUTT_N1a"
![7]XIMAGE> title/lower "ASCA SIS0,SIS1 January 20, 1998 Exposure: 2530.1 s"
![8]XIMAGE> disp/correct/noframe
 Displaying image
 The image is exposure corrected
  Min =  0 max =   134
![9]XIMAGE> grid
![10]XIMAGE> scale
 scal_f, min_inten    1.00000  0.
 i,inten,mm,pp  1  0.  0  0
 i,inten,mm,pp  2    4.00000  40  -1
 i,inten,mm,pp  3    9.00000  90  -1
 i,inten,mm,pp  4    19.0000  19  0
![11]XIMAGE> exit
-> Summing gis images
-> Summing the following images to produce ad96007000gis25670.totexpo
ad96007000g200170h.expo
ad96007000g300170h.expo
-> Summing the following images to produce ad96007000gis25670_all.totsky
ad96007000g200170h.img
ad96007000g300170h.img
-> Summing the following images to produce ad96007000gis25670_lo.totsky
ad96007000g200170h_lo.img
ad96007000g300170h_lo.img
-> Summing the following images to produce ad96007000gis25670_hi.totsky
ad96007000g200170h_hi.img
ad96007000g300170h_hi.img
-> Running XIMAGE to create ad96007000gis25670.gif
-> Standard Output From STOOL ximage:
 No of detectors read in:   20
![1]XIMAGE> read/fits ad96007000gis25670_all.totsky
 Reading an image
 Telescope ASCA GIS2
  Image display size =  256
 Done, closing file
  Largest, Smallest    2.00000  0.
  Bscale, Bzero from file     1.0000000000000  0.
After internal scaling
  Bscale and Bzero    1.0000000000000  0.
 Image level, max:  2 min:  0
![2]XIMAGE> read/exp_map ad96007000gis25670.totexpo
 Reading an image
 Telescope ASCA GIS2
  Image display size =  256
 Done, closing file
  Largest, Smallest    55.4667  0.
  Bscale, Bzero from file     1.0000000000000  0.
After internal scaling
  Bscale and Bzero    1.0000000000000  0.
 Image level, max:  55 min:  0
![3]XIMAGE> smooth
![4]XIMAGE> cpd /ppm
![5]XIMAGE> cey 2000
![6]XIMAGE> title "P_TEMP_TUTT_N1a"
![7]XIMAGE> title/lower "ASCA GIS2,GIS3 January 20, 1998 Exposure: 3328 s"
![8]XIMAGE> disp/correct/noframe
 Displaying image
 The image is exposure corrected
  Min =  0 max =   6873
![9]XIMAGE> grid
![10]XIMAGE> scale
 scal_f, min_inten    1.00000  0.
 i,inten,mm,pp  1  0.  0  0
 i,inten,mm,pp  2    4.00000  40  -1
 i,inten,mm,pp  3    8.00000  80  -1
 i,inten,mm,pp  4    23.0000  23  0
![11]XIMAGE> exit

Detecting sources in summed images ( 09:17:35 )

-> Smoothing ad96007000gis25670_all.totsky with ad96007000gis25670.totexpo
-> Clipping exposures below 499.2 seconds
-> Detecting sources in ad96007000gis25670_all.smooth
-> Smoothing ad96007000gis25670_hi.totsky with ad96007000gis25670.totexpo
-> Clipping exposures below 499.2 seconds
-> Detecting sources in ad96007000gis25670_hi.smooth
-> Smoothing ad96007000gis25670_lo.totsky with ad96007000gis25670.totexpo
-> Clipping exposures below 499.2 seconds
-> Detecting sources in ad96007000gis25670_lo.smooth
-> Determining extraction radii
-> Eliminating redundant sources
-> Sources with radius >= 2

-> Standard Output From STOOL colorpic:
color plane 0
color plane 1
color plane 2
writing image
image written
-> Creating fits catalog of sources: ad96007000gis25670.src
-> Smoothing ad96007000sis32002_all.totsky with ad96007000sis32002.totexpo
-> Clipping exposures below 379.5213135 seconds
-> Detecting sources in ad96007000sis32002_all.smooth
-> Smoothing ad96007000sis32002_hi.totsky with ad96007000sis32002.totexpo
-> Clipping exposures below 379.5213135 seconds
-> Detecting sources in ad96007000sis32002_hi.smooth
-> Smoothing ad96007000sis32002_lo.totsky with ad96007000sis32002.totexpo
-> Clipping exposures below 379.5213135 seconds
-> Detecting sources in ad96007000sis32002_lo.smooth
-> Determining extraction radii
-> Eliminating redundant sources
-> Sources with radius >= 2

-> Standard Output From STOOL colorpic:
color plane 0
color plane 1
color plane 2
writing image
image written
-> Creating fits catalog of sources: ad96007000sis32002.src
-> Generating region files

Extracting spectra and generating response matrices ( 09:38:36 )

-> Fetching xrt_ea_v2_0.fits
-> Fetching xrt_psf_v2_0.fits
-> sisph2pi_110397.fits already present in current directory
-> Fetching sisechos_290296.fits
-> Fetching sisrddis_290296.fits
-> Standard Output From STOOL group_event_files:
1 ad96007000s000102h.evt 68
-> Standard Output From STOOL group_event_files:
1 ad96007000s000112h.evt 70
-> Standard Output From STOOL group_event_files:
1 ad96007000s100102h.evt 74
-> Standard Output From STOOL group_event_files:
1 ad96007000s100112h.evt 72
-> Standard Output From STOOL group_event_files:
1 ad96007000g200170h.evt 393
-> Standard Output From STOOL group_event_files:
1 ad96007000g300170h.evt 406

Extracting light curves ( 09:39:15 )

-> TIMEDEL=8.0000000000E+00 for ad96007000s000102h.evt
-> Minimum bin size is 8.0000000000E+00 seconds
-> Extracting events from region ad96007000s032002_0.reg
-> ... and files: ad96007000s000102h.evt
-> skipping ad96007000s000002_0.lc since it would have 68 events
-> TIMEDEL=8.0000000000E+00 for ad96007000s100102h.evt
-> Minimum bin size is 8.0000000000E+00 seconds
-> Extracting events from region ad96007000s132002_0.reg
-> ... and files: ad96007000s100102h.evt
-> skipping ad96007000s100002_0.lc since it would have 74 events
-> TIMEDEL=6.2500000000E-02 for ad96007000g200170h.evt
-> Minimum bin size is 6.2500000000E-02 seconds
-> Extracting events from region ad96007000g225670_0.reg
-> ... and files: ad96007000g200170h.evt
-> skipping ad96007000g200070_0.lc since it would have 393 events
-> TIMEDEL=6.2500000000E-02 for ad96007000g300170h.evt
-> Minimum bin size is 6.2500000000E-02 seconds
-> Extracting events from region ad96007000g325670_0.reg
-> ... and files: ad96007000g300170h.evt
-> skipping ad96007000g300070_0.lc since it would have 406 events
-> Merging GTIs from the following files:
ad96007000g200170h.evt[2]
-> Making L1 light curve of ft980120_0005_0600G2HK.fits with irate=HIGH
-> Standard Output From FTOOL ghkcurve:
ghkcurve: ALLGTI found in input HK file, will be applied to data.
ghkcurve:   2969 output records from    2971  good input G2_L1    records.
-> Making L1 light curve of ft980120_0005_0600G2HK.fits with irate=HI+MED
-> Standard Output From FTOOL ghkcurve:
ghkcurve: ALLGTI found in input HK file, will be applied to data.
ghkcurve:   1423 output records from    2971  good input G2_L1    records.
-> Merging GTIs from the following files:
ad96007000g300170h.evt[2]
-> Making L1 light curve of ft980120_0005_0600G3HK.fits with irate=HIGH
-> Standard Output From FTOOL ghkcurve:
ghkcurve: ALLGTI found in input HK file, will be applied to data.
ghkcurve:   2825 output records from    2826  good input G3_L1    records.
-> Making L1 light curve of ft980120_0005_0600G3HK.fits with irate=HI+MED
-> Standard Output From FTOOL ghkcurve:
ghkcurve: ALLGTI found in input HK file, will be applied to data.
ghkcurve:   1440 output records from    2826  good input G3_L1    records.

Extracting source event files ( 09:41:38 )

-> Extracting unbinned light curve ad96007000g200170h_0.ulc
-> Extracting unbinned light curve ad96007000g300170h_0.ulc
-> Extracting unbinned light curve ad96007000s000102h_0.ulc
-> Extracting unbinned light curve ad96007000s000112h_0.ulc
-> Extracting unbinned light curve ad96007000s100102h_0.ulc
-> Extracting unbinned light curve ad96007000s100112h_0.ulc

Extracting FRAME mode data ( 09:43:08 )

-> Extracting frame mode data from ft980120_0005.0600
-> Standard Output From STOOL tlmFrm:
 *** tlmFrm Version 1.1 (1997-08-25) *** 
total number of superframes: 4288

Total of 0 sets of frame data are extracted.
-> Extracting corner pixel GTIs with the following criteria:
SUNSHINE==0 &&
T_DY_NT>64 &&
T_SAA>64 &&
SAA==0 &&
COR>6 &&
(ELV>10 || ELV<10 )
-> Extracting GTIs from ft980120_0005_0600.mkf
-> Generating corner pixel histogram ad96007000s000101h_1.cnr
-> Generating corner pixel histogram ad96007000s000101h_2.cnr
-> Generating corner pixel histogram ad96007000s000201h_1.cnr
-> Generating corner pixel histogram ad96007000s000201h_2.cnr
-> Generating corner pixel histogram ad96007000s100101h_0.cnr
-> Generating corner pixel histogram ad96007000s100101h_3.cnr

Extracting GIS calibration source spectra ( 09:45:00 )

-> Standard Output From STOOL group_event_files:
1 ad96007000g200170h.unf 12623
1 ad96007000g200270m.unf 12623
1 ad96007000g200370l.unf 12623
-> Fetching GIS2_CALSRC256.2
-> Extracting ad96007000g220170.cal from ad96007000g200170h.unf ad96007000g200270m.unf ad96007000g200370l.unf
-> Fetching gis2v4_0.rmf
-> Plotting ad96007000g220170_cal.ps and finding peak
-> Standard Output From STOOL xspec:
 
               XSPEC 9.01 09:45:33 27-Dec-99
 
 Plot device not set, use "cpd" to set it
 
 Type "help" or "?" for further information
!XSPEC> query yes
Querying disabled - assuming answer is yes
!XSPEC> data ad96007000g220170.cal
 Net count rate (cts/s) for file   1  0.1532    +/-  3.3487E-03
   1 data set is in use
!XSPEC> ignore bad
!XSPEC> ignore **-4.0
!XSPEC> ignore 8.0-**
!XSPEC> model const/b + gauss/b + gauss/b
Background components must be from the additive model list
  mo = constant[1] ) + gaussian/b[2] + gaussian/b[3]
 Input parameter value, delta, min, bot, top, and max values for ...
 Mod parameter  1 of component  1 constant factor
    1.000      1.0000E-02      0.          0.      1.0000E+10  1.0000E+10
!
 Mod parameter  2 of component  2 gaussian LineE
    6.500      5.0000E-02      0.          0.      1.0000E+06  1.0000E+06
! 5.9
 Mod parameter  3 of component  2 gaussian Sigma
   0.1000      5.0000E-02      0.          0.       10.00       20.00
! 0.0
 Mod parameter  4 of component  2 gaussian norm
    1.000      1.0000E-02      0.          0.      1.0000E+24  1.0000E+24
!
 Mod parameter  5 of component  3 gaussian LineE
    6.500      5.0000E-02      0.          0.      1.0000E+06  1.0000E+06
! 6.5
 Mod parameter  6 of component  3 gaussian Sigma
   0.1000      5.0000E-02      0.          0.       10.00       20.00
! 0.0
 Mod parameter  7 of component  3 gaussian norm
    1.000      1.0000E-02      0.          0.      1.0000E+24  1.0000E+24
!
  ---------------------------------------------------------------------------
  ---------------------------------------------------------------------------
  mo = constant[1] ) + gaussian/b[2] + gaussian/b[3]
  Model Fit Model   Component     Parameter   Value
  par   par comp
    1    1    1       constant    factor     1.00000     +/-      0.
    2    2    2       gaussian/b  LineE      5.90000     +/-      0.
    3    3    2       gaussian/b  Sigma           0.     +/-      0.
    4    4    2       gaussian/b  norm       1.00000     +/-      0.
    5    5    3       gaussian/b  LineE      6.50000     +/-      0.
    6    6    3       gaussian/b  Sigma           0.     +/-      0.
    7    7    3       gaussian/b  norm       1.00000     +/-      0.
  ---------------------------------------------------------------------------
  ---------------------------------------------------------------------------
    7 variable fit parameters
 Chi-Squared =     6.1419E+05 using    84 PHA bins.
 Reduced chi-squared =      7976.
!XSPEC> newpar 5 = 2 1.101005
    6 variable fit parameters
 Chi-Squared =     6.1014E+05 using    84 PHA bins.
 Reduced chi-squared =      7822.
!XSPEC> newpar 6 = 3 1.049288
    5 variable fit parameters
 Chi-Squared =     6.1014E+05 using    84 PHA bins.
 Reduced chi-squared =      7723.
!XSPEC> renorm
 Chi-Squared =      486.4     using    84 PHA bins.
 Reduced chi-squared =      6.157
!XSPEC> fit
 Chi-Squared  Lvl  Fit param # 1     2           3           4
                 5
 Due to zero model norms
  fit parameter  1 is temporarily frozen
   386.01      0      1.000       5.894      0.1122      4.3376E-02
              3.9586E-02
 Due to zero model norms
  fit parameter  1 is temporarily frozen
   242.87      0      1.000       5.880      0.1608      5.7486E-02
              3.5824E-02
 Due to zero model norms
  fit parameter  1 is temporarily frozen
   148.91     -1      1.000       5.949      0.1839      7.8543E-02
              2.4764E-02
 Due to zero model norms
  fit parameter  1 is temporarily frozen
   127.80     -2      1.000       6.019      0.2136      9.4358E-02
              1.4100E-02
 Due to zero model norms
  fit parameter  1 is temporarily frozen
   125.64     -3      1.000       5.993      0.1921      9.0133E-02
              1.8155E-02
 Due to zero model norms
  fit parameter  1 is temporarily frozen
   125.28     -4      1.000       6.004      0.2000      9.2210E-02
              1.6052E-02
 Due to zero model norms
  fit parameter  1 is temporarily frozen
   125.15     -5      1.000       5.999      0.1959      9.1325E-02
              1.6914E-02
 Due to zero model norms
  fit parameter  1 is temporarily frozen
   125.15     -1      1.000       6.000      0.1969      9.1561E-02
              1.6671E-02
  ---------------------------------------------------------------------------
  ---------------------------------------------------------------------------
  mo = constant[1] ) + gaussian/b[2] + gaussian/b[3]
  Model Fit Model   Component     Parameter   Value
  par   par comp
    1    1    1       constant    factor     1.00000     +/- -1.0000
    2    2    2       gaussian/b  LineE      6.00042     +/- 0.14415E-01
    3    3    2       gaussian/b  Sigma     0.196882     +/- 0.14531E-01
    4    4    2       gaussian/b  norm      9.156147E-02 +/- 0.34330E-02
    5    2    3       gaussian/b  LineE      6.60649     = par   2 *  1.1010
    6    3    3       gaussian/b  Sigma     0.206586     = par   3 *  1.0493
    7    5    3       gaussian/b  norm      1.667091E-02 +/- 0.24830E-02
  ---------------------------------------------------------------------------
  ---------------------------------------------------------------------------
 Chi-Squared =      125.1     using    84 PHA bins.
 Reduced chi-squared =      1.584
!XSPEC> setplot energy
!XSPEC> iplot data
!PLT> label top GIS2 Calibration Source, should peak near 5.9 keV
!PLT> log x off
!PLT> rescale x 4 8
!PLT> hard /ps
!PLT> quit
!XSPEC> exit
!Do you really want to exit (y) y
 XSPEC: quit
-> Calibration source ad96007000g220170.cal peaks at 6.00042 +/- 0.014415 keV
-> Standard Output From STOOL group_event_files:
1 ad96007000g300170h.unf 11852
1 ad96007000g300270m.unf 11852
1 ad96007000g300370l.unf 11852
-> Fetching GIS3_CALSRC256.2
-> Extracting ad96007000g320170.cal from ad96007000g300170h.unf ad96007000g300270m.unf ad96007000g300370l.unf
-> Fetching gis3v4_0.rmf
-> Plotting ad96007000g320170_cal.ps and finding peak
-> Standard Output From STOOL xspec:
 
               XSPEC 9.01 09:46:13 27-Dec-99
 
 Plot device not set, use "cpd" to set it
 
 Type "help" or "?" for further information
!XSPEC> query yes
Querying disabled - assuming answer is yes
!XSPEC> data ad96007000g320170.cal
 Net count rate (cts/s) for file   1  0.1295    +/-  3.0997E-03
   1 data set is in use
!XSPEC> ignore bad
!XSPEC> ignore **-4.0
!XSPEC> ignore 8.0-**
!XSPEC> model const/b + gauss/b + gauss/b
Background components must be from the additive model list
  mo = constant[1] ) + gaussian/b[2] + gaussian/b[3]
 Input parameter value, delta, min, bot, top, and max values for ...
 Mod parameter  1 of component  1 constant factor
    1.000      1.0000E-02      0.          0.      1.0000E+10  1.0000E+10
!
 Mod parameter  2 of component  2 gaussian LineE
    6.500      5.0000E-02      0.          0.      1.0000E+06  1.0000E+06
! 5.9
 Mod parameter  3 of component  2 gaussian Sigma
   0.1000      5.0000E-02      0.          0.       10.00       20.00
! 0.0
 Mod parameter  4 of component  2 gaussian norm
    1.000      1.0000E-02      0.          0.      1.0000E+24  1.0000E+24
!
 Mod parameter  5 of component  3 gaussian LineE
    6.500      5.0000E-02      0.          0.      1.0000E+06  1.0000E+06
! 6.5
 Mod parameter  6 of component  3 gaussian Sigma
   0.1000      5.0000E-02      0.          0.       10.00       20.00
! 0.0
 Mod parameter  7 of component  3 gaussian norm
    1.000      1.0000E-02      0.          0.      1.0000E+24  1.0000E+24
!
  ---------------------------------------------------------------------------
  ---------------------------------------------------------------------------
  mo = constant[1] ) + gaussian/b[2] + gaussian/b[3]
  Model Fit Model   Component     Parameter   Value
  par   par comp
    1    1    1       constant    factor     1.00000     +/-      0.
    2    2    2       gaussian/b  LineE      5.90000     +/-      0.
    3    3    2       gaussian/b  Sigma           0.     +/-      0.
    4    4    2       gaussian/b  norm       1.00000     +/-      0.
    5    5    3       gaussian/b  LineE      6.50000     +/-      0.
    6    6    3       gaussian/b  Sigma           0.     +/-      0.
    7    7    3       gaussian/b  norm       1.00000     +/-      0.
  ---------------------------------------------------------------------------
  ---------------------------------------------------------------------------
    7 variable fit parameters
 Chi-Squared =     8.2470E+05 using    84 PHA bins.
 Reduced chi-squared =     1.0710E+04
!XSPEC> newpar 5 = 2 1.101005
    6 variable fit parameters
 Chi-Squared =     8.1835E+05 using    84 PHA bins.
 Reduced chi-squared =     1.0492E+04
!XSPEC> newpar 6 = 3 1.049288
    5 variable fit parameters
 Chi-Squared =     8.1835E+05 using    84 PHA bins.
 Reduced chi-squared =     1.0359E+04
!XSPEC> renorm
 Chi-Squared =      579.5     using    84 PHA bins.
 Reduced chi-squared =      7.336
!XSPEC> fit
 Chi-Squared  Lvl  Fit param # 1     2           3           4
                 5
 Due to zero model norms
  fit parameter  1 is temporarily frozen
   452.88      0      1.000       5.892      0.1182      3.4938E-02
              2.9928E-02
 Due to zero model norms
  fit parameter  1 is temporarily frozen
   217.89      0      1.000       5.871      0.1547      5.4929E-02
              2.5897E-02
 Due to zero model norms
  fit parameter  1 is temporarily frozen
   85.115     -1      1.000       5.951      0.1561      8.0924E-02
              1.4422E-02
 Due to zero model norms
  fit parameter  1 is temporarily frozen
   79.809     -2      1.000       5.954      0.1500      8.6321E-02
              1.2748E-02
 Due to zero model norms
  fit parameter  1 is temporarily frozen
   79.694     -3      1.000       5.951      0.1466      8.6057E-02
              1.3071E-02
 Due to zero model norms
  fit parameter  1 is temporarily frozen
   79.694     -1      1.000       5.952      0.1470      8.6148E-02
              1.2979E-02
  ---------------------------------------------------------------------------
  ---------------------------------------------------------------------------
  mo = constant[1] ) + gaussian/b[2] + gaussian/b[3]
  Model Fit Model   Component     Parameter   Value
  par   par comp
    1    1    1       constant    factor     1.00000     +/- -1.0000
    2    2    2       gaussian/b  LineE      5.95190     +/- 0.10881E-01
    3    3    2       gaussian/b  Sigma     0.146983     +/- 0.13597E-01
    4    4    2       gaussian/b  norm      8.614800E-02 +/- 0.28937E-02
    5    2    3       gaussian/b  LineE      6.55308     = par   2 *  1.1010
    6    3    3       gaussian/b  Sigma     0.154227     = par   3 *  1.0493
    7    5    3       gaussian/b  norm      1.297916E-02 +/- 0.17068E-02
  ---------------------------------------------------------------------------
  ---------------------------------------------------------------------------
 Chi-Squared =      79.69     using    84 PHA bins.
 Reduced chi-squared =      1.009
!XSPEC> setplot energy
!XSPEC> iplot data
!PLT> label top GIS3 Calibration Source, should peak near 5.9 keV
!PLT> log x off
!PLT> rescale x 4 8
!PLT> hard /ps
!PLT> quit
!XSPEC> exit
!Do you really want to exit (y) y
 XSPEC: quit
-> Calibration source ad96007000g320170.cal peaks at 5.95190 +/- 0.010881 keV

Extracting bright and dark Earth event files. ( 09:46:24 )

-> Extracting bright and dark Earth events from ad96007000s000102h.unf
-> Extracting ad96007000s000102h.drk
-> Deleting ad96007000s000102h.drk since it contains 0 events
-> Extracting bright and dark Earth events from ad96007000s000112h.unf
-> Extracting ad96007000s000112h.drk
-> Deleting ad96007000s000112h.drk since it contains 0 events
-> Extracting bright and dark Earth events from ad96007000s000302m.unf
-> Extracting ad96007000s000302m.drk
-> Cleaning hot pixels from ad96007000s000302m.unf
-> Standard Output From FTOOL cleansis:
CLEANSIS_V1.6
    allocating image arrays...
 
 PROGRAM TO MAKE AN SIS SCIENCE FILE CLEANED OF ANOMALOUS PIXELS.
 
 * Anomalous pixels may consist of at least two populations.
 
 1. Persistent HOT pixels are removed by comparing to the chip mean.
 
 2. Flickering WARM pixels are removed by comparing to the cell mean.
 
 3. In faint areas (zero bgd), flickering pixels are removed with a
    cutoff threshold.
 
 Hints:
 Choose cell size and thresholds based on the expected background and the PSF.
 Use the DIRTYSIS option to examine the anomalous pixel spectra.
 Try a multiple pass clean:
     Choose a PHA cut to optimize the S/N of the flickering pixels,
     then a broad band clean.
 Be suspicious of extended source cleans.
 For very bright sources you may need to turn off the iteration option.
 
 See the help page for further info (fhelp cleansis)
 
 Poisson clean cell size         :            5
 Poisson probability threshold   :    0.575E-05
 Zero Bgd Cutoff threshold (>)   :            3
 Iterate                         :            F
 Dirtysis                        :            F
 
 Minimum PHA value (inclusive)   :            0
 Maximum PHA value (inclusive)   :         4095
 
    open output  file: ad96007000s000302m.drk
    reading data file: event.tmp
    copying primary header to output file...
    making chip image...
 
 Total counts in chip images :         1262
 
    copy bad pix array...
cleaning chip # 0
cleaning chip # 1
 Hot pixels & counts                   :              11         698
cleaning chip # 2
 Hot pixels & counts                   :              11         496
 Flickering pixels iter, pixels & cnts :   1           4          19
cleaning chip # 3
 
 Number of pixels rejected           :           26
 Number of (internal) image counts   :         1262
 Number of image cts rejected (N, %) :         121396.12
 
         By chip   :             0            1            2            3
 
 Pixels rejected   :             0           11           15            0
 
 Image counts      :             0          724          538            0
 Image cts rejected:             0          698          515            0
 Image cts rej (%) :          0.00        96.41        95.72         0.00
 
    filtering data...
 
 Total counts      :             0          724          538            0
 Total cts rejected:             0          698          515            0
 Total cts rej (%) :          0.00        96.41        95.72         0.00
 
 Number of clean counts accepted  :           49
 
    writing history cards...
    copying extensions...
    writing out hot pixs...
 
 Number of rejected pixels        :           26
 
    updating NEVENTS keywords...
    closing data file...
    closing clean file...
-> Extracting bright and dark Earth events from ad96007000s000402l.unf
-> Extracting ad96007000s000402l.drk
-> Cleaning hot pixels from ad96007000s000402l.unf
-> Standard Output From FTOOL cleansis:
CLEANSIS_V1.6
    allocating image arrays...
 
 PROGRAM TO MAKE AN SIS SCIENCE FILE CLEANED OF ANOMALOUS PIXELS.
 
 * Anomalous pixels may consist of at least two populations.
 
 1. Persistent HOT pixels are removed by comparing to the chip mean.
 
 2. Flickering WARM pixels are removed by comparing to the cell mean.
 
 3. In faint areas (zero bgd), flickering pixels are removed with a
    cutoff threshold.
 
 Hints:
 Choose cell size and thresholds based on the expected background and the PSF.
 Use the DIRTYSIS option to examine the anomalous pixel spectra.
 Try a multiple pass clean:
     Choose a PHA cut to optimize the S/N of the flickering pixels,
     then a broad band clean.
 Be suspicious of extended source cleans.
 For very bright sources you may need to turn off the iteration option.
 
 See the help page for further info (fhelp cleansis)
 
 Poisson clean cell size         :            5
 Poisson probability threshold   :    0.575E-05
 Zero Bgd Cutoff threshold (>)   :            3
 Iterate                         :            F
 Dirtysis                        :            F
 
 Minimum PHA value (inclusive)   :            0
 Maximum PHA value (inclusive)   :         4095
 
    open output  file: ad96007000s000402l.drk
    reading data file: event.tmp
    copying primary header to output file...
    making chip image...
 
 Total counts in chip images :         1112
 
    copy bad pix array...
cleaning chip # 0
cleaning chip # 1
 Hot pixels & counts                   :              11         471
 Flickering pixels iter, pixels & cnts :   1           3          16
cleaning chip # 2
 Hot pixels & counts                   :              14         444
 Flickering pixels iter, pixels & cnts :   1           1           3
cleaning chip # 3
 
 Number of pixels rejected           :           29
 Number of (internal) image counts   :         1112
 Number of image cts rejected (N, %) :          93483.99
 
         By chip   :             0            1            2            3
 
 Pixels rejected   :             0           14           15            0
 
 Image counts      :             0          598          514            0
 Image cts rejected:             0          487          447            0
 Image cts rej (%) :          0.00        81.44        86.96         0.00
 
    filtering data...
 
 Total counts      :             0          598          514            0
 Total cts rejected:             0          487          447            0
 Total cts rej (%) :          0.00        81.44        86.96         0.00
 
 Number of clean counts accepted  :          178
 
    writing history cards...
    copying extensions...
    writing out hot pixs...
 
 Number of rejected pixels        :           29
 
    updating NEVENTS keywords...
    closing data file...
    closing clean file...
-> Extracting bright and dark Earth events from ad96007000s000502m.unf
-> Extracting ad96007000s000502m.drk
-> Cleaning hot pixels from ad96007000s000502m.unf
-> Standard Output From FTOOL cleansis:
CLEANSIS_V1.6
    allocating image arrays...
 
 PROGRAM TO MAKE AN SIS SCIENCE FILE CLEANED OF ANOMALOUS PIXELS.
 
 * Anomalous pixels may consist of at least two populations.
 
 1. Persistent HOT pixels are removed by comparing to the chip mean.
 
 2. Flickering WARM pixels are removed by comparing to the cell mean.
 
 3. In faint areas (zero bgd), flickering pixels are removed with a
    cutoff threshold.
 
 Hints:
 Choose cell size and thresholds based on the expected background and the PSF.
 Use the DIRTYSIS option to examine the anomalous pixel spectra.
 Try a multiple pass clean:
     Choose a PHA cut to optimize the S/N of the flickering pixels,
     then a broad band clean.
 Be suspicious of extended source cleans.
 For very bright sources you may need to turn off the iteration option.
 
 See the help page for further info (fhelp cleansis)
 
 Poisson clean cell size         :            5
 Poisson probability threshold   :    0.575E-05
 Zero Bgd Cutoff threshold (>)   :            3
 Iterate                         :            F
 Dirtysis                        :            F
 
 Minimum PHA value (inclusive)   :            0
 Maximum PHA value (inclusive)   :         4095
 
    open output  file: ad96007000s000502m.drk
    reading data file: event.tmp
    copying primary header to output file...
    making chip image...
 
 Total counts in chip images :           89
 
    copy bad pix array...
cleaning chip # 0
cleaning chip # 1
 Hot pixels & counts                   :               7          34
 Flickering pixels iter, pixels & cnts :   1           2           6
cleaning chip # 2
 Hot pixels & counts                   :               8          29
cleaning chip # 3
 
 Number of pixels rejected           :           17
 Number of (internal) image counts   :           89
 Number of image cts rejected (N, %) :           6977.53
 
         By chip   :             0            1            2            3
 
 Pixels rejected   :             0            9            8            0
 
 Image counts      :             0           48           41            0
 Image cts rejected:             0           40           29            0
 Image cts rej (%) :          0.00        83.33        70.73         0.00
 
    filtering data...
 
 Total counts      :             0           48           41            0
 Total cts rejected:             0           40           29            0
 Total cts rej (%) :          0.00        83.33        70.73         0.00
 
 Number of clean counts accepted  :           20
 
    writing history cards...
    copying extensions...
    writing out hot pixs...
 
 Number of rejected pixels        :           17
 
    updating NEVENTS keywords...
    closing data file...
    closing clean file...
-> Extracting bright and dark Earth events from ad96007000s100102h.unf
-> Extracting ad96007000s100102h.drk
-> Deleting ad96007000s100102h.drk since it contains 0 events
-> Extracting bright and dark Earth events from ad96007000s100112h.unf
-> Extracting ad96007000s100112h.drk
-> Deleting ad96007000s100112h.drk since it contains 0 events
-> Extracting bright and dark Earth events from ad96007000s100202m.unf
-> Extracting ad96007000s100202m.drk
-> Cleaning hot pixels from ad96007000s100202m.unf
-> Standard Output From FTOOL cleansis:
CLEANSIS_V1.6
    allocating image arrays...
 
 PROGRAM TO MAKE AN SIS SCIENCE FILE CLEANED OF ANOMALOUS PIXELS.
 
 * Anomalous pixels may consist of at least two populations.
 
 1. Persistent HOT pixels are removed by comparing to the chip mean.
 
 2. Flickering WARM pixels are removed by comparing to the cell mean.
 
 3. In faint areas (zero bgd), flickering pixels are removed with a
    cutoff threshold.
 
 Hints:
 Choose cell size and thresholds based on the expected background and the PSF.
 Use the DIRTYSIS option to examine the anomalous pixel spectra.
 Try a multiple pass clean:
     Choose a PHA cut to optimize the S/N of the flickering pixels,
     then a broad band clean.
 Be suspicious of extended source cleans.
 For very bright sources you may need to turn off the iteration option.
 
 See the help page for further info (fhelp cleansis)
 
 Poisson clean cell size         :            5
 Poisson probability threshold   :    0.575E-05
 Zero Bgd Cutoff threshold (>)   :            3
 Iterate                         :            F
 Dirtysis                        :            F
 
 Minimum PHA value (inclusive)   :            0
 Maximum PHA value (inclusive)   :         4095
 
    open output  file: ad96007000s100202m.drk
    reading data file: event.tmp
    copying primary header to output file...
    making chip image...
 
 Total counts in chip images :         3867
 
    copy bad pix array...
cleaning chip # 0
 Hot pixels & counts                   :              31        1950
 Flickering pixels iter, pixels & cnts :   1           9          62
cleaning chip # 1
cleaning chip # 2
cleaning chip # 3
 Hot pixels & counts                   :              29        1729
 Flickering pixels iter, pixels & cnts :   1           8          57
 
 Number of pixels rejected           :           77
 Number of (internal) image counts   :         3867
 Number of image cts rejected (N, %) :         379898.22
 
         By chip   :             0            1            2            3
 
 Pixels rejected   :            40            0            0           37
 
 Image counts      :          2054            0            0         1813
 Image cts rejected:          2012            0            0         1786
 Image cts rej (%) :         97.96         0.00         0.00        98.51
 
    filtering data...
 
 Total counts      :          2054            0            0         1813
 Total cts rejected:          2012            0            0         1786
 Total cts rej (%) :         97.96         0.00         0.00        98.51
 
 Number of clean counts accepted  :           69
 
    writing history cards...
    copying extensions...
    writing out hot pixs...
 
 Number of rejected pixels        :           77
 
    updating NEVENTS keywords...
    closing data file...
    closing clean file...
-> Extracting bright and dark Earth events from ad96007000s100302l.unf
-> Extracting ad96007000s100302l.drk
-> Cleaning hot pixels from ad96007000s100302l.unf
-> Standard Output From FTOOL cleansis:
CLEANSIS_V1.6
    allocating image arrays...
 
 PROGRAM TO MAKE AN SIS SCIENCE FILE CLEANED OF ANOMALOUS PIXELS.
 
 * Anomalous pixels may consist of at least two populations.
 
 1. Persistent HOT pixels are removed by comparing to the chip mean.
 
 2. Flickering WARM pixels are removed by comparing to the cell mean.
 
 3. In faint areas (zero bgd), flickering pixels are removed with a
    cutoff threshold.
 
 Hints:
 Choose cell size and thresholds based on the expected background and the PSF.
 Use the DIRTYSIS option to examine the anomalous pixel spectra.
 Try a multiple pass clean:
     Choose a PHA cut to optimize the S/N of the flickering pixels,
     then a broad band clean.
 Be suspicious of extended source cleans.
 For very bright sources you may need to turn off the iteration option.
 
 See the help page for further info (fhelp cleansis)
 
 Poisson clean cell size         :            5
 Poisson probability threshold   :    0.575E-05
 Zero Bgd Cutoff threshold (>)   :            3
 Iterate                         :            F
 Dirtysis                        :            F
 
 Minimum PHA value (inclusive)   :            0
 Maximum PHA value (inclusive)   :         4095
 
    open output  file: ad96007000s100302l.drk
    reading data file: event.tmp
    copying primary header to output file...
    making chip image...
 
 Total counts in chip images :         3014
 
    copy bad pix array...
cleaning chip # 0
 Hot pixels & counts                   :              36        1423
 Flickering pixels iter, pixels & cnts :   1          14          90
cleaning chip # 1
cleaning chip # 2
cleaning chip # 3
 Hot pixels & counts                   :              35        1309
 Flickering pixels iter, pixels & cnts :   1          11          51
 
 Number of pixels rejected           :           96
 Number of (internal) image counts   :         3014
 Number of image cts rejected (N, %) :         287395.32
 
         By chip   :             0            1            2            3
 
 Pixels rejected   :            50            0            0           46
 
 Image counts      :          1584            0            0         1430
 Image cts rejected:          1513            0            0         1360
 Image cts rej (%) :         95.52         0.00         0.00        95.10
 
    filtering data...
 
 Total counts      :          1584            0            0         1430
 Total cts rejected:          1513            0            0         1360
 Total cts rej (%) :         95.52         0.00         0.00        95.10
 
 Number of clean counts accepted  :          141
 
    writing history cards...
    copying extensions...
    writing out hot pixs...
 
 Number of rejected pixels        :           96
 
    updating NEVENTS keywords...
    closing data file...
    closing clean file...
-> Extracting bright and dark Earth events from ad96007000g200170h.unf
-> Extracting ad96007000g200170h.drk
-> Deleting ad96007000g200170h.drk since it contains 0 events
-> Extracting ad96007000g200170h.brt
-> Extracting bright and dark Earth events from ad96007000g200270m.unf
-> Extracting ad96007000g200270m.drk
-> Extracting ad96007000g200270m.brt
-> Extracting bright and dark Earth events from ad96007000g200370l.unf
-> Extracting ad96007000g200370l.drk
-> Deleting ad96007000g200370l.drk since it contains 0 events
-> Extracting ad96007000g200370l.brt
-> Extracting bright and dark Earth events from ad96007000g300170h.unf
-> Extracting ad96007000g300170h.drk
-> Deleting ad96007000g300170h.drk since it contains 0 events
-> Extracting ad96007000g300170h.brt
-> Extracting bright and dark Earth events from ad96007000g300270m.unf
-> Extracting ad96007000g300270m.drk
-> Extracting ad96007000g300270m.brt
-> Extracting bright and dark Earth events from ad96007000g300370l.unf
-> Extracting ad96007000g300370l.drk
-> Deleting ad96007000g300370l.drk since it contains 0 events
-> Extracting ad96007000g300370l.brt

Determining information about this observation ( 09:52:36 )

-> Calculating ISAS time for sis
-> Calculating ISAS time for gis
-> Recording dates of PI calibration files
-> leapsec.fits already present in current directory
-> Standard Output From FTOOL sec2time:
 Offset of   213408004.000000     from 1993-01-01   00:00:00
 is date and time (including leapseconds) = 1999-10-07   00:00:00.00000
 Modified Julian Day    =   51458.000000000000000
-> leapsec.fits already present in current directory
-> Standard Output From FTOOL sec2time:
 Offset of   197078404.000000     from 1993-01-01   00:00:00
 is date and time (including leapseconds) = 1999-04-01   00:00:00.00000
 Modified Julian Day    =   51269.000000000000000
-> leapsec.fits already present in current directory
-> Standard Output From FTOOL sec2time:
 Offset of   150000000.000000     from 1993-01-01   00:00:00
 is date and time (including leapseconds) = 1997-10-03   02:39:56.00000
 Modified Julian Day    =   50724.111064814816928

Generating event file information page ( 09:53:24 )

-> Summing time and events for s0 event files
-> listing ad96007000s000102h.unf
-> Standard Output From STOOL get_uniq_keys:
ad96007000s000302m.unf|S0_ARENA|0|S0 Area discrimination enable/disable
ad96007000s000502m.unf|S0_ARENA|1|S0 Area discrimination enable/disable
-> listing ad96007000s000302m.unf
-> listing ad96007000s000502m.unf
-> listing ad96007000s000402l.unf
-> listing ad96007000s000112h.unf
-> Standard Output From STOOL get_uniq_keys:
ad96007000s000101h.unf|S0_ARENA|0|S0 Area discrimination enable/disable
ad96007000s000201h.unf|S0_ARENA|1|S0 Area discrimination enable/disable
-> listing ad96007000s000101h.unf
-> listing ad96007000s000201h.unf
-> Summing time and events for s1 event files
-> listing ad96007000s100102h.unf
-> listing ad96007000s100202m.unf
-> listing ad96007000s100302l.unf
-> listing ad96007000s100112h.unf
-> listing ad96007000s100101h.unf
-> Summing time and events for g2 event files
-> listing ad96007000g200170h.unf
-> listing ad96007000g200270m.unf
-> listing ad96007000g200370l.unf
-> Summing time and events for g3 event files
-> listing ad96007000g300170h.unf
-> listing ad96007000g300270m.unf
-> listing ad96007000g300370l.unf

Creating sequence documentation ( 09:56:02 )

-> Standard Output From STOOL telemgap:
417 610
2337 610
1

Creating HTML source list ( 09:56:26 )


Listing the files for distribution ( 09:56:35 )

-> Saving job.par as ad96007000_003_job.par and process.par as ad96007000_003_process.par
-> Creating the FITS format file catalog ad96007000_tape.cat
-> Creating the trend product catalog
-> Creating the FITS format file catalog ad96007000_trend.cat
-> Creating ad96007000_003_file_info.html

Doing final wrap up of all files ( 10:00:08 )

-> Adding FITS keywords to all distributed FITS files
-> Running fverify on all distributed files
-> Calculating checksums for all FITS files
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Standard Output From FTOOL fchecksum:
Checksum keywords updated successfully.
-> Doing inventory of all files

Processing complete ( 10:08:19 )