Difference between revisions of "Appendix of HFI DPC paper"

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{| border="1" cellpadding="3" cellspacing="0" align="center" style="text-align:left" width=800px
 
{| border="1" cellpadding="3" cellspacing="0" align="center" style="text-align:left" width=800px
|+ '''ADCNL induced gain time variation as a function of ring numbers. Blue line shows the solved gain variation for the data and grey ones show 10 realizations drawn within the uncertainties of the ADC model. '''
+
|+ '''[Complementary of Fig. 38:] ADCNL induced gain time variation as a function of ring numbers. Blue line shows the solved gain variation for the data and grey ones show 10 realizations drawn within the uncertainties of the ADC model. '''
 
|- bgcolor="ffdead"   
 
|- bgcolor="ffdead"   
 
! 100 GHz bolometers || 143 GHz bolometers || 217 GHz bolometers || 353 GHz bolometers  
 
! 100 GHz bolometers || 143 GHz bolometers || 217 GHz bolometers || 353 GHz bolometers  

Revision as of 09:39, 9 May 2017

This page is intented to gather figures that are not inserted in the 2017 DPC paper for readability reasons. The page is written and maintained by Laurent, thanks not to modify its content.

DIFFGL mask43 newfiducial spice withoutnoise withelectronicnoise test.pdf

DIFFGL mask43 newfiducial spice withoutnoise withelectronicnoise test2.pdf

Caption

DIFFGL mask43 newfiducial spice withoutnoise withelectronicnoise.pdf


[Complementary of Fig. 38:] ADCNL induced gain time variation as a function of ring numbers. Blue line shows the solved gain variation for the data and grey ones show 10 realizations drawn within the uncertainties of the ADC model.
100 GHz bolometers 143 GHz bolometers 217 GHz bolometers 353 GHz bolometers
DEC16v1 gains 100ghz JG INL.pdf DEC16v1 gains 143ghz JG INL.pdf DEC16v1 gains 217ghz JG INL.pdf DEC16v1 gains 353ghz JG INL.pdf

Data Processing Center

analog to digital converter