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ROBOX modification plans HF ECR follow up Nov 29,2010 Ianos Schmidt

ROBOX modification plans

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ROBOX modification plans. HF ECR follow up Nov 29,2010. Ianos Schmidt. Design plan. Slice test box. Sleeve material selection. Optical/mechanical mock up Test light guide coupling Test sleeve performance Test PMT shielding, support, grounding, noise…. Define cabling interfaces. - PowerPoint PPT Presentation

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Page 1: ROBOX modification plans

ROBOX modification plans

HF ECR follow up Nov 29,2010

Ianos Schmidt

Page 2: ROBOX modification plans

Design plan

Optical/mechanical mock up• Test light guide coupling• Test sleeve performance• Test PMT shielding, support, grounding, noise…

• Validate/update CAD of box components• Produce a new plate 2

Design parts for PPPTry 2?

Define cabling interfaces

Plate 3 design

Produce proto plate 3

Try 2?

Produce parts

Testing• Electrical• optical• Test beam?• Magnet field test

Plate 2 decisionModify / produce from scratch

P5 modification/assembly

Installation / commissioning

PPP

Sleeve material selection

Sleeve/opticalCoupling design

Slice test box

Make from scratch

Page 3: ROBOX modification plans

Slice test readout box

Existing “plate 2”

Existing PMT shieldsFor 16 standard HF PMT’s

Base board for new PMT’s:• Conventional resistive bases• provides“Reference” signals for QIE• Ground connections to shields• Safety ground

“Mini Plate 2”

New PMT shields

Replaces eight lowest eta PMT’s with Hamamatsu R7600U-200-M4 PMT’s

Page 4: ROBOX modification plans

Slice box assembly cross-section for R7600U PMT’s

PMT

Plate II

Base board

ShieldGround strap

“Iron” shield

Plate I

Kaptoninsulator

PMT to light guideOptical coupling(“sleeve”)

~17mm

Light guide assembly(part of wedge)

Light guidemirror

Page 5: ROBOX modification plans

R7600U PMT’s and base board

Page 6: ROBOX modification plans

Slice test box with new shields and base board

Page 7: ROBOX modification plans

Box tested in BAT904

TESTS:• Laser/LED• Channel mapping verification• HV mapping• Gain/single PE• CAEN HV supply test• HV cable adapter test• Pedestal and light tightness

Test setup:• Slice box• HF front end crate + Calibration Unit• HF LASER/LED light distribution fibers and CLI • HF front end cables• HF HV supply + CAEN supply• HV adapter cable, later installed in USC

HF ROB test unitSimulates calibration light distribution of HF wedge* Big thanks to Halil Saka for his work in 904

Page 8: ROBOX modification plans

Location of new PMT’s

IPHI 67

Covered PMT(IETA 29, short)

New PMT’s are located on HF+ at IPHI 67 and cover towers IETA 29 to IETA 32

Page 9: ROBOX modification plans

Slice box installed on HF+ IPHI 67

Page 10: ROBOX modification plans

HF+ IPHI 3 light guide mirrors replaced

BEFORE AFTER

Page 11: ROBOX modification plans

Sleeves in IPHI 3, IETA 29

IETA 29S

IETA 29L

TEFLON

TYVEKLight guide tube

Mirror

“Telescopic” Sleeve made of3M radiant mirror film (“HEM”).Non conductive.

In HF+ IPHI 3 all mirrors were replaced with standard “German Mylar”. HEM sleeves were installed everywhere except IETA 29S and IETA 29L which have Teflon and Tyvec sleeves respectively.

Page 12: ROBOX modification plans

Single PMT mock up.Mechanically and Optically identical to a single channel of a HF ROB.For study of PMT insulation, support, shielding, electrical and optical coupling.

Ianos Schmidt. Oct. 11,2010

Page 13: ROBOX modification plans

Single PMT mock up

HF “backplane”

Light guide

Mirror & sleeve

Plate 1

Shield

Plate 2

Three sets of components were produced.• One for Iowa lab for sleeve design and testing• One for Mechanical design evaluation• One for testing at CERN (Sources, testbeam …)

Page 14: ROBOX modification plans

Single PMT mockup

Page 15: ROBOX modification plans

Box design• Design of new box components started. Initial pass on mechanical features effecting base board design was provided to Sergey for prototype production.

• Some concerns about the strength of grade XX Garolite for plate 2’s. - No longet entertain possibility to modify existing plate 2’s.

Page 16: ROBOX modification plans

Work space estimates at CERN

Box assembly area ~12m^2 (P5)Box test area ~12m^2 (P5)Box storage area ~5m^2 (P5)Cable prep area ~14m^2 (at CERN)Cable storage ~5m^2 (P5)

Workspace needed at P5 24m^2Storage at needed at P5 10m^2Cable prep area (CERN) 14m^2TOTAL 48m^2