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  HEPHY logbook for testbeam at SPS October 2012 and Irradiation Mol, Page 1 of 4  Not logged in ELOG logo
New entries since:Thu Jan 1 01:00:00 1970
Entry  Wed Oct 31 15:54:59 2012, Christian Irmler, common, Ethernetkabel zu H6A, , , , , Unknown 2012-10-31_15.47.42.jpg2012-10-31_12.28.32.jpg

Ethernetkabel HNA447 -> H6A:

Das obere Ende im Counting Hut liegt im Zwischenboden unterhalb der orangenen Steckdose beim Eingang mit dem elektronischen Zahlenschloß.

Das untere Ende in der Zone hängt aufgerollt an einem Pfeiler der Kabeltasse, unweit der Stelle an der das Kabel von oben hinunter gelassen wurden. Das ist ewta dort wo die Stiege zu PPE146 endet.

siehe Fotos :)

Entry  Tue Oct 30 22:15:41 2012, Markus Friedl, MicronOrigami_gross, run, run041, 100k, 30.10.2012 22:09:13, , Unknown temperatures_run041.jpg

Cooling for 2DSSD established after some struggle.

2DSSD fully read out with cooling
HV= +40 V -40 V    I =  1.84 uA

Beam position: 
Origami ce:
   p-side:  APV #10  (= pos 4)
   n-side:  APV #19  (= pos 3)

Positions of thermal sensors:

11   Kapillare Anfang

12   Kapillare Ende

13   ---

14   unmittelbar nach Kapillare

15   Origami in

16   Origami out

17   Origami -z

18   Origami CE

 

Strip order:

n-Seite: rechts (Salev) nach links (Jura)

p-Seite: oben nach unten

 

APV chips with lower noise:

                          -z                                   ce
p-side             #5                                #10 (= pos 4)
n-side             #13 (= pos1)             #19 (= pos 3)

 

 

 

Entry  Tue Oct 30 18:35:51 2012, Christian Irmler, MicronOrigami_gross, run, run040, 100k, 30.10.2012 18:23:21, 30.10.2012 21:55:53 , Unknown temperatures_run040.jpg

Cooling for 2DSSD established after some struggle.

2DSSD fully read out with cooling
HV= +40 V -40 V    I = 2.1 uA

Beam position:
  Origami -z 
  p-side: APV #5 
  n-side: APV #13 (= pos.1 of -z)

 

Positions of thermal sensors:

11   Kapillare Anfang

12   Kapillare Ende

13   ---

14   unmittelbar nach Kapillare

15   Origami in

16   Origami out

17   Origami -z

18   Origami CE

 

Strip order:

n-Seite: rechts (Salev) nach links (Jura)

p-Seite: oben nach unten

 

APV chips with lower noise:

                          -z                                   ce
p-side             #5                                #10 (= pos 4)
n-side             #13 (= pos1)             #19 (= pos 3)

Entry  Tue Oct 30 17:24:01 2012, Markus Friedl, MicronOrigami_gross, cal, cal040, 83800, 30.10.2012 17:20:28 , 30.10.2012 17:54:09, Unknown 

Cooling for 2DSSD established after some struggle.

2DSSD fully read out with cooling
HV= +40 V -40 V    I = 2 uA
Beam position: none

 

Positions of thermal sensors:

11   Kapillare Anfang

12   Kapillare Ende

13   ---

14   unmittelbar nach Kapillare

15   Origami in

16   Origami out

17   Origami -z

18   Origami CE

 

Strip order:

n-Seite: rechts (Salev) nach links (Jura)

p-Seite: oben nach unten

 

APV chips with lower noise:

                          -z                                   ce
p-side             #5                                #10 (= pos 4)
n-side             #13 (= pos1)             #19 (= pos 3)

Entry  Tue Oct 30 11:05:32 2012, Markus Friedl, HPK_baby, run, run039, 150k, 30.10.2012 11:03:19, 30.10.2012 14:57:57, Unknown 

HPK baby stack after irradiation - no cooling
I =  420A and growing (warming up)
positioned centered on p and n
 

Entry  Tue Oct 30 10:37:19 2012, Markus Friedl, HPK_baby, cal, cal039, 83800, 30.10.2012 10:35:35 , 30.10.2012 11:02:06 , Good 

Turned off cooling, now taking warm data

 

HPK baby stack after irradiation - no cooling
I =  200A and growing (warming up)
positioned centered on p and n
 

 

Entry  Mon Oct 29 23:13:52 2012, Markus Friedl, HPK_baby, run, run038, 476500, 29.10.2012 23:13:05, 30.10.2012 10:22:54, Unknown 

HPK baby stack after irradiation with partial cooling (HPK neutron & HPK neutron/gamma)
HV = +75 V  -75V
I =  176A
positioned centered on p and n
 

Temp sensors configuration:

11   HPK Neutron n in

12   HPK Neutron n -> p

13   ----

14   HPK Neutron p -> Gamma p

15   Gamma p -> n

16   Neutron Gamma n out

 

Perfect cooling curve :-)

Entry  Mon Oct 29 22:36:52 2012, Markus Friedl, HPK_baby, cal, cal038, 83800, 29.10.2012 22:17:34, 29.10.2012 22:47:47, Good 

HPK baby stack after irradiation with partial cooling (HPK neutron & HPK neutron/gamma)
HV = +75 Vm  -75V
I =  226A
 

 

Temp sensors configuration:

11   HPK Neutron n in

12   HPK Neutron n -> p

13   ----

14   HPK Neutron p -> Gamma p

15   Gamma p -> n

16   Neutron Gamma n out

Entry  Mon Oct 29 12:24:41 2012, Markus Friedl, Infineon, run, run037, 301382, 29.10.2012 12:22:22, 29.10.2012 21:05:57, Good 

Infineon stack Version 2 after irradiation
HV = +300 V
I = 162 A
 

hitting upper part of strixels and baby, vertically ~centered

Entry  Mon Oct 29 11:36:40 2012, Markus Friedl, Infineon, cal, cal037, 83800, 29.10.2012 11:35:12, 29.10.2012 11:58:02 , Good 

Infineon stack Version 2 after irradiation
HV = +300 V
I = 137 A
 

Entry  Mon Oct 29 04:02:16 2012, Manfred Valentan, MicronBaby, run, run036, 296294, 29.10.2012 03:53:33, 29.10.2012 11:05:35, Unknown 

Micron Baby stack 2 after irradiation (intermediate strips)
HV = -100 V
I = 36 uA
 

DESY table shifted by 2.5mm (beam down) after beam profile was changed (to get higher intensity)

beam hitting higher APVs

 

Stopped when long beam off period was announced

Entry  Sun Oct 28 20:07:28 2012, Markus Friedl, MicronBaby, run, run035, 304110, 28.10.2012 20:01:48, 29.10.2012 03:50:44, Good 

Micron Baby stack 2 after irradiation (intermediate strips)
HV = -100 V
I = 39 uA
 

DESY table shifted by 2.5mm (beam down) after beam profile was changed (to get higher intensity)

beam hitting lower APVs

Entry  Sun Oct 28 16:22:35 2012, Christian Irmler, MicronBaby, run, run034, 101864, 28.10.2012 16:12:24 , 28.10.2012 18:34:24, Good 

Micron Baby stack 2 after irradiation (intermediate strips)
HV = -100 V
I = 36.3 uA

Position APV0 of all sensors

X-Y Table coordinates:
X=0 / Y=-1  (afterwards: nulled)

PC power cut after ~100k events

Entry  Sun Oct 28 15:46:07 2012, Markus Friedl, MicronBaby, cal, cal034, 83800, 28.10.2012 15:19:10, 28.10.2012 15:40:47, Good 

Micron Baby stack 2 after irradiation (intermediate strips)
HV = -100 V
I = 33 uA

Entry  Sun Oct 28 08:37:53 2012, Christian Irmler, MicronOrigami_gross, run, run033, 66937, 28.10.2012 08:33:42, 28.10.2012 14:10:43 , Unknown temp_run33.JPGtemp_run33_2.JPG

Belle stack 2 after gamma irradiation

HV = +50V -50V

I = 101 uA

CO2 cooling

hitting APV2 (n side) = center of wedge sensor

 

Temperatur sensors:

  • T11: Origami #4 in
  • T12: Origami #4 out
  • T13: Origami #3 in (still wrong values!)
  • T14: Origami #3 out
  • T15: Wedge new 1 out
  • T16: Wedge old out
  • T17: Wedge new 1 cooling block
  • T18: Wedge old cooling block
Entry  Sun Oct 28 02:51:49 2012, Markus Friedl, MicronOrigami_gross, run, run032, 150k, 28.10.2012 02:47:24, 28.10.2012 08:31:19 , Good 

Belle stack 2 after gamma irradiation

HV = +50V -50V

I = 101 uA

Bias currents absolutely stable during the whole run.

CO2 cooling

hitting APV3 (n side) = wide side of wedge sensor

Entry  Sat Oct 27 21:49:08 2012, Markus Friedl, MicronOrigami_gross, run, run031, 150k, 27.10.2012 21:42:46, 28.10.2012 02:35:55 (+1h due to winter time), Good 

Belle stack 2 after gamma irrdiation
HV = +50V -50 V
I = 102 uA
CO2 cooling

 

Entry  Sat Oct 27 19:36:24 2012, Markus Friedl, MicronOrigami_gross, cal, cal031, 83800, 27.10.2012 19:59:50, 27.10.2012 20:44:38, Good 

Belle stack 2 after irradiation

HV = +50V -50V

I = 112 µA

CO2 cooling

Entry  Sat Oct 27 07:51:49 2012, Manfred Valentan, MicronBaby, run, run030, 376678, 27.10.2012 07:49:09, 27.10.2012 17:32:07, Good 

After irradiation

xy-table: x=319.4, y=87.6
beam hits APV1

Micron baby stack after gamma irrdiation
HV = -100 V
I = -58 uA

Entry  Sat Oct 27 01:13:47 2012, Christian Irmler, MicronBaby, run, run029, 307k, 27.10.2012 01:02:49, 27.10.2012 07:36:34, Good 

After irradiation

xy-table: x=319.4, y=74.6
beam hits APV0

Micron baby stack after gamma irrdiation
HV = -100 V
I = -58 uA

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