SVD Cables & Pipes Markus Friedl (HEPHY Vienna) B2GM, 24 July 2012.

Slides:



Advertisements
Similar presentations
LST Mechanical Design Review Utility Routing, Cableways & Crate Locations Peter Kim October 21, 2003.
Advertisements

The Belle II Silicon Vertex Detector Markus Friedl (HEPHY Vienna) for the Belle II SVD Group VCI, 13 February 2013.
A Low Mass On-chip Readout Scheme for Double-sided Silicon Strip Detectors 13th February 2013 C. Irmler, T. Bergauer, A. Frankenberger, M. Friedl, I. Gfall,
DCS meeting, CERN, 17 June 2002Børge Svane Nielsen, NBI1 Forward Detectors DCS Forward Detectors (FWD): T0- quartz Cherenkov V0 - plastic scintillator.
DC/DC Converters Markus Friedl (HEPHY Vienna) B2GM, 14 March 2012.
M.PEGORARO Grounding Workshop 24th Jan 08 DT GROUNDING & SHIELDING Presented by A. BENVENUTI.
Electrical QA Markus Friedl (HEPHY Vienna) IPMU, 19 March 2012.
Milestones and Schedule of SVD Construction Markus Friedl (HEPHY Vienna) on behalf of the Belle II SVD Collaboration BPAC October 2012.
The Belle II Silicon Vertex Detector Readout Chain Markus Friedl (HEPHY Vienna) TWEPP2012, 19 September 2012.
21 Sept 2009 Markus Friedl Electronics 1 Electronics 2 Machine Shop HEPHY Scientific Advisory Board Meeting.
Performance of the DZero Layer 0 Detector Marvin Johnson For the DZero Silicon Group.
DC/DC Converter Update Markus Friedl (HEPHY Vienna) B2GM, 22 July 2012.
19 November 2009 Christian Irmler (HEPHY Vienna) APV25 and Origami Scheme 4 th Open Meeting of the Belle II Collaboration.
SVX4 chip 4 SVX4 chips hybrid 4 chips hybridSilicon sensors Front side Back side Hybrid data with calibration charge injection for some channels IEEE Nuclear.
Electrical Quality Assurance Markus Friedl HEPHY Site Qualification, 6 August 2015.
Preparation of SPD Cabling Calo comissioning meeting – 19th July 2006 – CERN I.Status of cables II.Cable reels III.Labelling IV.Cabling inside a VFE box.
18-Jan-021W. Karpinski System Test Design verification of petals and interconnect boards and control links without detectors a)mechanics b)electrical.
SVD Mechanics 21th B2GM Florian Buchsteiner (HEPHY Vienna)
26 April 2013 Immanuel Gfall (HEPHY Vienna) Belle II SVD Overview.
1 Module and stave interconnect Rev. sept. 29/08.
7 th B2GM SVD Summary 19 November 2010 Markus Friedl (HEPHY Vienna)
ALICE DCS Workshop 28/29 May 2001 Vito Manzari, INFN Bari SSD (Silicon Strip Detector) SDD (Silicon Drift Detector) SPD (Silicon Pixel Detector) Detector.
RPC (Barrel) Cabling summary. Signal cable specifications Signal Cables (two possibilities): –Loose pair round and twisted pairs (with flat zone for crimping.
Status of SVD Readout Electronics Markus Friedl (HEPHY Vienna) on behalf of the Belle II SVD Collaboration BPAC October 2012.
WP9.4 baseline deliverable summary 10 December 2014 Thomas Bergauer (HEPHY Vienna)
1 PreFPIX2 Inner board and test beam triggering Gabriele Chiodini Fermilab - Jan 07, 02.
11 SSD Power and Cooling on the Cone STAR Integration Workshop Howard Matis May 16, 2008 STAR Integration Workshop Howard Matis May 16, 2008.
W. Karpinski, Nov CMS Electronics week CMS Microstrip Tracker grounding & shielding of the CMS Tracker R. Hammarstrom (CERN EP/CMT) & W. Karpinski.
The Belle II Silicon Vertex Detector Florian Buchsteiner (HEPHY Vienna)
29-Jun-09H. Henschel DESY (Zeuthen) 1 Frontend Interface Summarize.
The Mechanical Structure for the SVD Upgrade
SVD Mechanics Markus Friedl (HEPHY Vienna) BPAC, 26 October 2015.
11 June 2015 Thomas Bergauer (HEPHY Vienna) Belle II SVD beam Test SPS 2015 SPS users meeting.
1 VELO integration INTEGRATION, december 05 OUTLOOK : - PARTS - 3D MODEL - LV & HV CABINETS INTEGRATION - LV CABLING - RPT CABLING.
9/18/2003Safety Review Electronics Electronics design LV, HV power supply Fusing Heat.
10 September 2010 Immanuel Gfall (HEPHY Vienna) Belle II SVD Upgrade, Mechanics and Cooling OEPG/FAKT Meeting 2010.
Origami and PA design 6 February 2012 Christian Irmler (HEPHY Vienna) 1 Common SVD-PXD Meeting.
Overview SVD 21 Jan C. Irmler (HEPHY Vienna) 7 th Belle II VXD Workshop, Prague.
SVD DAQ 25 Jan 2011 Belle2 DAQ T. Tsuboyama (KEK)
APVDAQ Status Markus Friedl 22 January M.Friedl: APVDAQ Status2 Introduction What APVDAQ Can Do What APVDAQ Cannot Yet Do What APVDAQ Cannot Do.
SVD DAQ Status Koji Hara (KEK) 2012/7/19 DAQ workshop1.
PXD EVO Hans-Günther Moser MPI für Physik Meeting on Services and Power Supplies Aim: define the services chain form module to external racks.
27/01/2012Mauro Citterio - SVT TDR Meeting - Pisa1 Pheripheral Electronics Mauro Citterio INFN Milano.
Status of the SVD DAQ Koji Hara (KEK) 2012/1/16 TRG/DAQ meeting1.
Location of SVD Temperature and Humidity Monitors L.Vitale & L.Lanceri INFN & Univ. Trieste 6 th VXD Workshop, 02/10/2014 SVD parallel for discussion Sep.
7. Feb 2012 Thomas Bergauer (HEPHY Vienna) WP9.4 Status AIDA WP9.4 meeting.
7 February 2012 Annekathrin Frankenberger (HEPHY Vienna) Open CO 2 Cooling System at the beam test Belle II SVD-PXD Meeting.
The new SVD Power Supplies o General requirements o Power supplies structure o Tender process o Test system 2/10/2014SVD Power Supplies1 F.Forti, INFN.
SVD Status Markus Friedl (HEPHY Vienna) SVD-PXD Göttingen, 25 September 2012.
The Data Handling Hybrid Igor Konorov TUM Physics Department E18.
2 March 2012Mauro Citterio - SVT Phone meeting1 Peripheral Electronics Some updates Mauro Citterio INFN Milano.
SVD FADC Status Markus Friedl (HEPHY Vienna) Wetzlar SVD-PXD Meeting, 5 February 2013.
SVD Docks Markus Friedl (HEPHY Vienna) B2GM, 23 July 2012.
SVD Slow Control Markus Friedl (HEPHY Vienna) DAQ/SC Kickoff Meeting, 8 November 2012.
FADC/Hybrid cable production 21 Jan 2015 T. Tsuboyama.
De Remigis The test has been accomplished with an SLVS signal, since that was chosen for the serial communication between the readout and the optical converter.
9 September 2015 VXD Mechanics Summary Markus Friedl (HEPHY Vienna)
SVD FADC SVD-PXD Göttingen, 25 September 2012
SVD Electronics Constraints
SVD Introduction Wetzlar SVD-PXD Meeting, 4 February 2013
Markus Friedl (HEPHY Vienna)
Preliminary thoughts on SVT services
Christoph Schwanda (HEPHY Vienna) For the Belle II SVD group
- STT LAYOUT - SECTOR F SECTOR A SECTOR B SECTOR E SECTOR D SECTOR C
Cooling pipes and Space for Services
Meeting on Services and Power Supplies
Misc. Topics Markus Friedl (HEPHY Vienna) 22 January 2015.
EVLA MONITOR & CONTROL CDR
Comments to the SVD4 structure
BPAC, 17 October 2017 VXD GND/EMC Markus Friedl (HEPHY Vienna)
Presentation transcript:

SVD Cables & Pipes Markus Friedl (HEPHY Vienna) B2GM, 24 July 2012

Readout Chain Overview  2 legs of cables:  Front-end to DOCK  DOCK to FADC / Power Supply 24 July 2012M.Friedl (HEPHY Vienna): SVD Cables & Pipes APV25 chips Front-end hybrids Rad-hard DC/DC converters Analog level translation, data sparsification and hit time reconstruction Unified Belle II DAQ system ~2m copper cable Junction box ~10m copper cable FADC+PROC Unified optical data link (>20m) Finesse Transmitter Board (FTB) COPPER

DOCK Arrangement  SVD: 5 DOCKs in backward, 3 DOCKs in forward side 24 July 2012M.Friedl (HEPHY Vienna): SVD Cables & Pipes3 BackwardForward SVD PXD

Cables between Front-End and DOCK  To DOCK boxes:  1 flat cable (50 cond.; 32 x 1 mm 2 ) per hybrid = sensor side Length ~2m  A few fibers (~1mm diameter)  A few cables for temp & radiation monitoring (~1mm diameter) 24 July 2012M.Friedl (HEPHY Vienna): SVD Cables & Pipes4 LayerLaddersBW cablesFW cables L L L L3714 Sum

Cables between Front-End and DOCK  Flat cable specs  3M P-270A (available from CERN Stores, SCEM code )  Halogen-free twisted pairs flat cable for IDC - Pitch mm  2 x 25 wires of 30 AWG  DC Resistance:  /m  Insulation: Polyolefine  Rated voltage: 150V DC  Differential impedance: 120  (measured)  Operating temperature: -20 to +90°C  (see CERN Stores Catalogue for more (unimportant) details) 24 July 2012M.Friedl (HEPHY Vienna): SVD Cables & Pipes5

Pipes between Front-End and DOCK  Not fully defined yet (e.g. connection points unknown)  To DOCK area (precisely: junctions outside of the actual boxes):  Option A: Big pipe with 3 smaller pipes inside (cooling + nitrogen)  Option B: Big pipe with 2 concentric pipes inside + additional pipe for nitrogen  In any case: outer diameter of the big pipe ~12mm, additional pipe <10mm (?) 24 July 2012M.Friedl (HEPHY Vienna): SVD Cables & Pipes6 BW big pipesFW big pipes Option A8 (6)2 (4) Option B+ few nitrogen Total is 10; splitting undefined

Cables between DOCK and FADC  To FADC boxes:  1 flat cable (68 cond.; 44 x 1 mm 2 ) per 2 hybrids = sensor Length ~10m  To Electronics Hut (?):  A few fibers (~1mm diameter)  A few cables for temp & radiation monitoring (~1mm diameter) 24 July 2012M.Friedl (HEPHY Vienna): SVD Cables & Pipes7 BW cablesFW cables Sum11161

Cables between DOCK and Kenwood PS  To Kenwood Power Supplies:  6 round LV power cables (D=12.5mm) per DOCK box  1 round HV cable (D~10mm) per DOCK box  Length ~18m (?)  To Electronics Hut (?):  A few fibers & cables for monitoring (see page 4)  To Cooling Plant (on top of Electronics Hut):  10 (+few) pipes for coolant and nitrogen (see page 6) 24 July 2012M.Friedl (HEPHY Vienna): SVD Cables & Pipes8 BW cablesFW cables Sum

Cables between DOCK and Kenwood PS  LV power cable specs  Leoni LEHC  Halogen-free FieldLink MC cable  4 x x (2 x 0.75) mm 2, outer diameter 12.5 mm  DC Resistance:  /m (power) /  /m (signal)  Insulation: TPE, TPU  Rated voltage: 1kV (power) / 24V (signal)  Minimum bending radius: 75 mm  Operating temperature: -50 to +80°C  Mass: kg/m  (see datasheet for more (unimportant) details)datasheet 24 July 2012M.Friedl (HEPHY Vienna): SVD Cables & Pipes9