Difference between revisions of "CDC transfer func attempt"
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− | Integrated value of | + | Input charge: 2 pF x 103 mV = 206 fC |
+ | Input current: divide by 12ns peaking time of preamp: 206 fC / 12 ns = 17.2 uA | ||
+ | |||
+ | Peak value of output data is 635 adc_units ~ 635 * 495 mV / 4096 = 76.7 mV | ||
+ | Convert to current using 50 Ohm resistance: 76.7 mV / 50 Ohm = 1.53 mA | ||
+ | |||
+ | Current gain is 1.53 mA / 17.2 uA = 89.0 | ||
+ | |||
+ | |||
+ | Integrated value of output data is 19.03 adc_units.us ~ 19.03 * 495 mV / 4096 = 2.30 mV.us | ||
+ | Convert to charge using 50 Ohm resistance: 2.3 mV.us / 50 Ohm = 0.046 mA.us = 0.046 nC = 46 pC | ||
+ | |||
+ | Charge gain is 46 pC / 206 fC = 223 |
Revision as of 11:38, 15 April 2014
Circuit
Actual component values used were... 51.1 Ohms, 908 Ohms and 2pF
Early results
Final results
Borrowed Phillips 5771 (no attenuators needed)
Fitted function
Beware typos in filenames, this was run #31941!
Input charge: 2 pF x 103 mV = 206 fC
Input current: divide by 12ns peaking time of preamp: 206 fC / 12 ns = 17.2 uA
Peak value of output data is 635 adc_units ~ 635 * 495 mV / 4096 = 76.7 mV Convert to current using 50 Ohm resistance: 76.7 mV / 50 Ohm = 1.53 mA
Current gain is 1.53 mA / 17.2 uA = 89.0
Integrated value of output data is 19.03 adc_units.us ~ 19.03 * 495 mV / 4096 = 2.30 mV.us
Convert to charge using 50 Ohm resistance: 2.3 mV.us / 50 Ohm = 0.046 mA.us = 0.046 nC = 46 pC
Charge gain is 46 pC / 206 fC = 223