Difference: Minutes2016-04-11 (1 vs. 3)

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07 Jun 2016 - Main.ThomasHeld
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Minutes of the forward endcap EMC SeeVogh meeting, 11th of April 2016, 14:00-15:30:

Presence:

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  • What regulation volume is needed? Gain (M) variation about 8%/V at M=200, radiation damage at full Panda dose in the order of a few volts maximum at -25 degrees C
  • Suggestion by Christoph: 70 mV/step (8 bit chip), resulting in -12.5 V regulation volume
  • As a consequence of integration of those regulators to the backplate PCBs the hole in the middle of the PCBs for cable feedthrough is shrinking
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  • Communication to HV regulation via I2C: How many physical bus lines needed (number of addresses)? Sub-busses hidable behing addresses?
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  • Communication to HV regulation via I2C: How many physical bus lines needed (number of addresses)? Sub-busses hidable behind addresses?
 

-- ThomasHeld - 18 Apr 2016
Revision 2
19 Apr 2016 - Main.ThomasHeld
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META TOPICPARENT name="ForwardEndcapMeetings"
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Minutes of the forward endcap EMC SeeVogh meeting, 11th of April 2016, 14:00-15:30:

Presence:

  • Basel: Werner
  • Bochum: Cathrina, Claudius, Fritz-Herbert, Matthias, Malte, Mario, Miriam, Patrick, Tobias H., Tom
  • Bonn: Christoph
  • Groningen: Myroslav
  • Uppsala: Pawel
  • Stockholm: Karoly, Markus
  • GSI: -

VPTT subunit assembly:

  • Delivery of all VPTT preamp boards (modified to three different gain-versions) by Basel end of May
  • Transport of components (alveoles, cables, aluminum mechanics) from Bonn to Bochum next week (i.e. this week...)
  • It is foressen to build the VPTT subunits in the same way as the 'final' VPTT subunit version currently in the test stand in Bonn as the 'reflecting foil problem' hardly affects VPTT crystals
  • Malte presented a way to introduce blue, DC operated LEDs to the subunits (one per crystal) for radiation damage recovery

Readout/TRBs:

  • Malte with the help of Peter Schakel (KVI) finally managed to get the Bochum TRB operating
  • Markus managed to extract data with the Stockholm TRB, remaining problems are on the electonics side (grounding, noise) of the LaBr /VPTT setup

HV regulator board:

  • Christoph is going to develop a channel-wise HV shunt regulator board in order to fine tune gain settings of APDs on the same HV supply channel
  • Definition of 'channel': can we regulate every single APD (very much appreciated) or just two paired APDs on one (better: different) crystal(s)?
  • Development in close contact with Hans-Georg, who develops this kind of circuit for the barrel: selection of parts, tests of radiation hardness of components
  • What regulation volume is needed? Gain (M) variation about 8%/V at M=200, radiation damage at full Panda dose in the order of a few volts maximum at -25 degrees C
  • Suggestion by Christoph: 70 mV/step (8 bit chip), resulting in -12.5 V regulation volume
  • As a consequence of integration of those regulators to the backplate PCBs the hole in the middle of the PCBs for cable feedthrough is shrinking
  • Communication to HV regulation via I2C: How many physical bus lines needed (number of addresses)? Sub-busses hidable behing addresses?

 

-- ThomasHeld - 18 Apr 2016
 
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