// THIS SECTION IS IN PHP. // ENTER CAID AND TITLE W/IN QUOTES IN THE FOLLOWING 2 LINES ... $caid="126"; // Don't mess w/ $file. $file = "mips-".$caid.".cookbook.php"; // END PHP. ?>
Principal: dmkellyif (file_exists("cookbook_header.php")) { include ("cookbook_header.php");} ?>
Deputy: kgordon
Data Monkey(s): No thank you
Priority: Necessary
Downlink Priority: Normal
Analysis Time: 4h
Last Updated: if (file_exists($file)) {echo date("D M d Y, H:i:s", filemtime($file) ) ;} ?>
mips_mobs_phot CESCANPOS '102,"MIPS"' CEGESTIM '"AUTO",63,"BOTHOFF","BOTHOFF","BOTHOFF",10,10,"MIPS"' CEGERSTCON '10,127,4,"MIPS"' CESCANCON '"CHOP","REV",0,2048,2048,0,511,"MIPS"' # Voffset1=0xCA, Voffset2=0xC8 CEMIPSUR '0x0,0x0,0,"NO_COADD",2,5,"MIPS"' CELDHTGIF '1,0xC0,"MIPS"' CELDHTGIF '2,0xBE,"MIPS"' CEMIPSUR '0x0,0x0,1,"NO_COADD",2,5,"MIPS"' CELDHTGIF '1,0xD4,"MIPS"' CELDHTGIF '2,0xD2,"MIPS"' CEMIPSUR '0x0,0x0,2,"NO_COADD",2,5,"MIPS"' CESCANPOS '103,"MIPS"' CEMIPSUR '0x0,0x0,3,"NO_COADD",2,5,"MIPS"' CELDHTGIF '1,0xC0,"MIPS"' CELDHTGIF '2,0xBE,"MIPS"' CEMIPSUR '0x0,0x0,4,"NO_COADD",2,5,"MIPS"' CELDHTGIF '1,0xCA,"MIPS"' CELDHTGIF '2,0xC8,"MIPS"' CEMIPSUR '0x0,0x0,5,"NO_COADD",2,5,"MIPS"' mips_backto_mobs
Array Data Desired:
All Arrays
Data Reformatting Option:
Special Instructions:
Each set of 5 DCEs should go in a separate file.
Step by step analysis: 1) Create a file list. Use imstat in IRAF or some other tool to determine median and minimum values for the first sample in each of the 30 DCEs. 2) Compare these numbers with the values listed below from ground testing. Make sure that the minimum starting ramp is greater than 2000 DN in all cases. Check the stability of the median and minimum ramp starting points and see how they compare to the ground data. 3) Determine the relationship between offset voltage and DAC count. Ground tests indicate a gain of 130 DN/DAC count. 4) If necessary, determine a new offset voltage. Changing the offset voltage could invalidate the IOC linearity measurement, so the case for changing the offset voltage needs to be strong. A change of smaller than 4 DAC counts (520 DN) is inadvisable.
Additional Notes: Summary of offset voltage data from ground testing: 1 DAC count = 20 mV = 130 DN. Voffset1=0xCA=4.02V, Voffset2=0xC8=3.98V Date T_Ge CE Itime median minimum Environment/notes 02-108 1.83K 2 3 2680+/-20 1925+/-20 ATLO 02-108 1.83K 2 10 2680+/-15 1925+/-15 ATLO 01-302 1.83K 2 3 2650+/-10 1880+/-10 Brutus 01-227 1.53K 1 3 2595+/-10 1785+/-15 Brutus 01-220 1.62K 1 3 2745+/-10 2040+/-20 Brutus 01-131 1.83K 1 3 2670+/-15 1810+/-20 CTA 01-129 1.79K 2 3 2700+/-20 1915+/-20 CTA 00-353 1.73K 1 3 2655+/-15 1780+/-15 CTA 00-353 1.73K 1 10 2660+/-10 1780+/-15 CTA 00-124 1.25K 2 3 2565+/-15 1700+/-35 LBTC 00-124 1.25K 2 10 2560+/-15 1710+/-30 LBTC The stability is not perfect, but it is pretty good. The variation during Brutus testing could indicate a dependence of ramp starting point on CE temperature. Integration time, CE, and array temperature have minimal impact on the ramp starting points. The expected values for IOC are thus: median=2670+/-80, minimum=1910+/-130 The starting points for the data ramps should be greater than or equal to 2000 DN to prevent hitting the bottom rail of the A/D converter during negative crosstalk spikes (up to 2000 DN) and post-saturation recovery (up to 1000 DN). Based on this, it is worth considering an increase in the offset DAC by about 2 DAC counts to 0xCC and 0xCA. This decision should be made after the ramp starting points are measured during IOC.