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  HEPHY logbook for testbeam at SPS June 2009, Page 2 of 6  Not logged in ELOG logo
New entries since:Thu Jan 1 01:00:00 1970
ID Date Author Project Subjectdown Run Number Events StartTime EndTime
  66   Sat Aug 22 12:12:34 2009 Christian IrmlerBELLEinternal calibration 40 MHz transparent mode (cooling?)cal007 22.08.2009 12:10:32 22.08.2009 12:49:09

Belle DUT, intcal
HV=80V, 40 MHz, beam off
1 sample, transparent mode
chiller set to 13 deg.

external 40 MHz clock

there was probably no water flow throught the pipe of the origami module during this run --> must be repeated

  52   Fri Aug 21 14:18:11 2009 Christian IrmlerBELLEinternal calibration 31.8 MHz transparent modecal004 21.08.2009 14:21:4021.08.2009 15:01:24

Belle DUT, intcal
HV=80V, 31.8 MHz, no beam
transparent mode

Origami p-side APV 2&3 with reverse readout order

  53   Fri Aug 21 15:27:08 2009 Christian IrmlerBELLEinternal calibration 31.8 MHz hit modecal005 21.08.2009 15:34:4321.08.2009 16:29:47

Belle DUT, intcal
HV=80V, 31.8 MHz, no beam
hit mode

Origami p-side APV 2&3 with reverse readout order

  70   Sat Aug 22 14:46:12 2009 Christian IrmlerBELLEinternal calibration 31.8 MHz transparent mode + coolingcal009 22.08.2009 14:43:5522.08.2009 15:22:37

Belle DUT, intcal
HV=80V, 31.8 MHz, beam off
1 sample, transparent mode
cooling
chiller set to 13 deg.

Since there was no (or to less) water flow through the small pipe of the origami module, all previous runs with cooling must be repeated.

Bypass removed to achieve better watter flow at the module!
Chiller pump is set to 2800 rpm

  68   Sat Aug 22 13:30:28 2009 Christian IrmlerBELLEinternal calibration 31.8 MHz transparent mode (cooling?)cal008 22.08.2009 12:50:4822.08.2009 13:29:25

Belle DUT, intcal
HV=80V, 31.8 MHz, beam off
1 sample, transparent mode
chiller set to 13 deg.

external 31.8 MHz clock

there was probably no water flow throught the pipe of the origami module during this run --> must be repeated

  16   Wed Aug 19 15:37:37 2009 Christian IrmlerITE128internal calibrationcal001 15:31:29 

8 modules, HV=70V, 40MHz, 1 sample
no beam

APV 4,5: inverter off, higher baseline = PAD modules

  23   Thu Aug 20 10:48:39 2009 Christian Irmleralignment_beaminternal calibrationcal002 20.08.2009 10:49:0720.08.2009 10:59:43

2 alignement modules

location in beam direction: h04-h03

HV=70V, 40MHz, 1 sample
no beam

module 1 (h03) is used w inverter off and higher base line

  83   Sun Aug 23 17:19:50 2009 Christian IrmlerPt_ITE512internal calibrationcal011 23.08.2009 16:30:4323.08.2009 17:02:14

Pt: 1 Grad, HV=200V, 0% RH, intcal, beam off
ITE512: HV=70V,
X-Y-Table: x=99.6, y=36

  14   Fri Aug 14 19:35:43 2009 Thomas BergauerPt_ITE512intcal    

HV=100V except h05-ITE-512 and h06-ITE-512 (runaway, HV off)

h01-Pt: 10uA

h02-Pt: 1.6uA

3 SiLC DUTs mit je ca. 38nA

h07-ITE-512: 3.77uA

h05-ITE-512: breakthrough

h06-ITE-512: breakthrough

  29   Thu Aug 20 12:50:59 2009 Christian Irmleralignment_beambottom right on sensor, point 4run6866846720.08.2009 12:51:0420.08.2009 13:05:01

2 alignement modules

location in beam direction: h04-h03

beam in center of sensor

HV=70V, 40MHz, 6 samples

beam on, 120 GeV

module 1 (h03) is used w inverter off and higher base line

XY coordinates: X:43 y:155 (bottom right on sensor in beam direction)

  30   Thu Aug 20 14:31:29 2009 Christian Irmleralignment_beambottom left on sensor, point 5run68681060020.08.2009 14:36:0020.08.2009 14:51:57

2 alignment modules

location in beam direction: h04-h03

beam in center of sensor

HV=70V, 40MHz, 6 samples

beam on, 120 GeV

module 1 (h03) is used w inverter off and higher base line

XY coordinates: X:57 y:155 (bottom left on sensor in beam direction)

  31   Thu Aug 20 15:15:33 2009 Christian Irmleralignment_beambottom center on sensor, point 6run6869615 (beam manipulation by students)20.08.2009 14:56:16 20.08.2009 15:14:11

2 alignment modules

location in beam direction: h04-h03

beam in center of sensor

HV=70V, 40MHz, 6 samples

beam on, 120 GeV

module 1 (h03) is used w inverter off and higher base line

XY coordinates: X:50 y:155 (bottom center on sensor in beam direction)

  65   Sat Aug 22 11:54:49 2009 Thomas Bergauercommonbeam profile    

beam shifted a bit in vertical direction downwards since 21. August 09 evening

Beam configuration:

Beam configuration file: H6b.802 (FM HAD (P0 off, H8=+180) PARLALLEL IN H6B SILC 2008

Attachment 1: 20090822_1150_beam_conditions.jpg
20090822_1150_beam_conditions.jpg
  71   Sat Aug 22 15:12:44 2009 Thomas Bergauercommonbeam profile    

playing with TRIM4 in vertical plane (setting to 20A current) shifted beamspot back to center position

Beam configuration:
Beam configuration file: H6b.802 (FM HAD (P0 off, H8=+180) PARLALLEL IN H6B SILC 2008

Rate: 3.35E5 particles/spill (measured with SCINT8 in beamline)

Particle Production Applet
Calculator applet

For +120 Gev/c beam:

Pi+ 55.67 %
p 38.95 %
K+ 5.38 %

Attachment 1: 20090822_1511_beam_conditions.jpg
20090822_1511_beam_conditions.jpg
  25   Thu Aug 20 11:23:04 2009 Christian Irmleralignment_beambeam in center of sensor w telescoperun004 (6860 telescope)1060020.08.2009 11:09:50 20.08.2009 11:25:16

2 alignement modules

location in beam direction: h04-h03

beam in center of sensor

HV=70V, 40MHz, 6 samples

beam on, 120 GeV

module 1 (h03) is used w inverter off and higher base line

XY coordinates: X:50 y:141.3 (center- center, point 1)

  94   Tue Aug 25 09:00:51 2009 Thomas Bergauer beam conditions    

manually changed TRIM3, TRIM4 and TRIM6

Attachment 1: magnet_settings_withH6B.802.jpg
magnet_settings_withH6B.802.jpg
Attachment 2: 20090825_0859_beam_conditions.jpg
20090825_0859_beam_conditions.jpg
  35   Thu Aug 20 19:12:23 2009 Manfred Valentanalignment_laserbackground mesurement with laser OFFlaser0021000020.08.2009 19:10:0920.08.2009 19:11:57
  39   Thu Aug 20 19:56:21 2009 Manfred Valentanalignment_laserbackground mesurement with laser OFFlaser00610k20.08.2009 19:54:0420.08.2009 19:55:38
  17   Wed Aug 19 15:41:17 2009 Wolfgang KiesenhoferSiLCangle scan templates    

Linie am rechten Seitenrand (in der Vorschau unten leider nicht gut zu sehen) sollte mit dem rechten Rand der Basisplatte abschließen (bezogen auf die Beam Richtung).

Attachment 1: angle_scan0.pdf
Attachment 2: angle_scan5.pdf
Attachment 3: angle_scan10.pdf
Attachment 4: angle_scan15.pdf
Attachment 5: angle_scan20.pdf
Attachment 6: angle_scan25.pdf
Attachment 7: angle_scan30.pdf
Attachment 8: angle_scan35.pdf
Attachment 9: angle_scan40.pdf
Attachment 10: angle_scan45.pdf
Attachment 11: angle_scan50.pdf
Attachment 12: angle_scan55.pdf
Attachment 13: angle_scan60.pdf
  10   Fri Jul 17 14:03:21 2009 Stephan Hänsel What to measure    

Origami

 

Testbeam08 Module

- Anglescan

 

Pt Modules (2Stück - je 2 Sensoren):

Anglescan

- einzelne module (auch als "stub" (fixer Abstand zwischen ihnen) ?)

wichtig: brauchen wir 2 Testbeam08 module um 90° verdreht für höheninformation??? (sensoren in den Pt-modulen sind nicht 100%ig parallel - MESSEN!)

 

Optical Modules:(DAUER ca 18 Stunden)

- tests in box mit laserbeam (laser auf anderer Höhe al beam?!? - sonst geht der beam durch den Laser)

 

ITE Modules:

- 8 ter stack: (2 Testbeam08 module quer + 2 x 1stmetal128 + 2 x 2nd metal 128 + 2 x normal128)

- 2ndmetal512 module 3 stück bauen und im beam versetzt einbauen parasitär bei den spanier-modulen)

 

zusätliche ideen:

- CMS-Tracker slice (2Pt + 2 optische + 3 2ndmetal512 hintereinander in unterschiedlichen winkeln um einen tracker-slice zu simulieren - CMS-layout !?!)

 

 

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