Differences between revisions 48 and 149 (spanning 101 versions)
Revision 48 as of 2017-06-15 16:34:04
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Editor: MarkBarton
Comment:
Revision 149 as of 2017-09-25 08:14:23
Size: 3240
Editor: MarkBarton
Comment:
Deletions are marked like this. Additions are marked like this.
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= VIS Type B Near Term To-Do List = = VIS Type B BS Near Term To-Do List =
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[[../ToDoOld|Archived To-Do Items]] [[../ToDoOldBS|Archived BS To-Do Items]]
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[[../BSTestHangIssues|Issues to fix after BS Test Hang]] [[../ToDoSR|SR To-Do Items]]

[[#EveryWeek |Every Week]]

[[#ComingWeeks |Coming Weeks]]

<<Anchor(EveryWeek)>>
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 * Get stuff from [[../WishList]]
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== Longer Term == <<Anchor(ComingWeeks)>>
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=== Design/Purchasing ===
 * Do rough mass budget for SR2/SR3/SRM.
 * Design SR assembly frame.
 * Get another D-Sub breakout (Hirata).
 * Design final SF ballast masses (Fabian).
 * Finish/post assembly drawing for LBB and LBB damper ring (Hirata).
 * Try rearranging arc weights to make room for magic wand (3D CAD or actual weights; Fabian or Hirata).
 * If needed based on previous, order longer threaded rods for arc weights on PI (Hirata).
== 2017-09-25 ==
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=== Real-time and SUMCON models ===
 * --(Adjust OSEM ADC and DAC channel assignments to match cabling changes.)--
 * --(Check PI section of k1visbs model.)--
=== Main Assembly Sequence ===
 * Move in-air cabling and feedthroughs and reconnect in-vacuum cables (through Cu O-rings).
 * Fix #1 geophone adapter cable.
 * Fix broken pico adapter cable?
 * Debug all electronics, starting with IRM OSEMs.
 * Unlock IP; use jacks and FRs to center.
 * Check IP yaw.
 * Recheck centering of suspension in assembly frame.
 * Measure IP period; adjust ballast mass.
 * Calibrate IP LVDT sensing against IP LVDT actuation, IP FRs.
 * LBB stuff (see below).
 *

=== LBB Sequence
 * Unclamp LBB ring sandwich; fully suspend Cu ring.
 * Unscrew LBB from tank brackets.
 * Hook LBB.
 * Remove TBD amount of spacers from between LBB and tank brackets.
 * Set LBB blade stops to nominal height.
 * Extend foot screws on LBB to just barely support LBB.
 * Adjust height of LBB magnet ring to set proper gap (4 mm??).
 * Retract LBB foot screws.
 * Add temporary ballast to LBB until LBB blades just barely sink below stops.
 * Check distance from LBB to main beam height (or other suitable reference); adjust by screwing receptacles.
 * Set foot screws to give ≈5 mm (or TBD) movement range of LBB below nominal.
 * Set stop on LBB blades to give ≈3 mm (or TBD, less than Cu-magnet gap) of LBB above nominal.

=== In parallel, time permitting ===

<<Anchor(RealBSHang)>>
== Tasks Not To Forget ==
=== Major Tasks ===
 * Update BS Install Procedure with screenshots from new on-assembly-frame 3D CAD.
 * Finish assembly drawing for LBB and LBB damper ring and post on JGWDoc (Hirata-san).
 * Get pico drive screens fixed (Miyo-kun)
 * Figure out how to make PI yaw adjustment reliable.

=== Minor Tasks ===
==== Mechanical ====
 * Get clean bag laundered.
 * Put pointy-tipped screw in RM trolley for BS
 * Return/replace borrowed parts:
  * Lock washers for LBB dampers
  * Temporary ballast mass (dog clamps) in BF.
 * Swap in new F0-SF maraging rod (with 8-mm heads) and new receptacles to match.

==== Electrical ====
 * Decide final in-vacuum and in-air cable routing (Enzo).
 * Calibrate all LVDTs (Enzo, Mark). --(BF)--, --(SF)--, --(PI-GAS)--, PI-H1, PI-H2, PI-H3
 * Adjust yoke on PI to put top of secondary at TBD mm above top of baseplate (or to give ≈0 counts at nominal height).

==== Real-time and SUMCON models ====
 * Create SUMCON models for full BS and major installation milestones.
 * Create controls design description (cf [[https://dcc.ligo.org/LIGO-T1100378/public|LIGO-T1100378]]).
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 * Create a proper DAC Monitor MEDM screen.
 * Improve ADC Monitor MEDM screen.

== 2017-06-12 ==

=== Facilities ===

=== Main Assembly ===
 * Unlock BF keystone and try running BF fishing rod to fix sag problem.
 * --(Check pitch/roll of SF and adjust trim as required.)--
 * --(Prepare LBB.)--
  * --(Attach LBB outriggers and rod receptacles.)--
 * --(Prepare LBB Cu ring.)--
  * --(Remove from tank, fix incompletely threaded holes, reinstall in tank.)--
  * --(Lay down spacers to protect magnets (in next step).)--
 * --(Prepare LBB magnet ring.)--
  * --(Disassemble.)--
  * --(Pass pieces into tank.)--
  * --(Reassemble on top of Cu ring.)--
 * --(Install LBB damper.)--
  * --(Bind LBB damper rings together with slings.)--
  * --(Remove vacuum tank lid and ring.)--
  * --(Crane rings up to install height, hook LBB magnet ring and support LBB Cu ring by TBD method.)--
 * Crane suspension into tank.
 * Hook LBB Cu ring.
 * Hook LBB.
 * Crane vacuum tank lid+ring black on.
 * Remove vacuum tank lid (only).
 * Remove port covers where feedthroughs will go, move feedthroughs from assembly frame and install on vacuum tank ring.
 * Reconnect in-air cables.

=== Electronics ===
 * Cabling:
 * Calibrate PI vertical LVDT.
 * Set yoke on PI vertical LVDT (if necessary).
 * --(Cable and test PI yaw stepper.)--
 * --(Cable and test PI vertical stepper.)--
 * --(Cable and test PI horizontal steppers.)--
 * --(Cable and test PI horizontal LVDTs.)--
 * Calibrate PI horizontal LVDTs.
 * --(Finalize OSEM cable lengths and update D1503600, E1503091 and Sato-san's spreadsheet.)--
 * --(Recount cables in box and in test hang, and update Sato-san's spreadsheet.)--
 * --(Cable and test PI vertical LVDT.)--
 * --(Debug/fix PI vertical LVDTs #0 and #2.)--
 * --(Debug/fix geophone #1.)--
 * Calibrate PI vertical LVDT.
 * Set yoke on PI vertical LVDT (if necessary).
 * --(Cable and test PI horizontal LVDTs.)--
 * Calibrate PI horizontal LVDTs.

VIS Type B BS Near Term To-Do List

Archived BS To-Do Items

SR To-Do Items

Every Week

Coming Weeks

Every Week

Facilities

  • Vacuum and roll floor.
  • Wipe ladders.
  • Tidy tools, parts.
  • Get stuff from ../WishList

2017-09-25

Main Assembly Sequence

  • Move in-air cabling and feedthroughs and reconnect in-vacuum cables (through Cu O-rings).
  • Fix #1 geophone adapter cable.
  • Fix broken pico adapter cable?
  • Debug all electronics, starting with IRM OSEMs.
  • Unlock IP; use jacks and FRs to center.
  • Check IP yaw.
  • Recheck centering of suspension in assembly frame.
  • Measure IP period; adjust ballast mass.
  • Calibrate IP LVDT sensing against IP LVDT actuation, IP FRs.
  • LBB stuff (see below).

=== LBB Sequence

  • Unclamp LBB ring sandwich; fully suspend Cu ring.
  • Unscrew LBB from tank brackets.
  • Hook LBB.
  • Remove TBD amount of spacers from between LBB and tank brackets.
  • Set LBB blade stops to nominal height.
  • Extend foot screws on LBB to just barely support LBB.
  • Adjust height of LBB magnet ring to set proper gap (4 mm??).
  • Retract LBB foot screws.
  • Add temporary ballast to LBB until LBB blades just barely sink below stops.
  • Check distance from LBB to main beam height (or other suitable reference); adjust by screwing receptacles.
  • Set foot screws to give ≈5 mm (or TBD) movement range of LBB below nominal.
  • Set stop on LBB blades to give ≈3 mm (or TBD, less than Cu-magnet gap) of LBB above nominal.

In parallel, time permitting

Tasks Not To Forget

Major Tasks

  • Update BS Install Procedure with screenshots from new on-assembly-frame 3D CAD.
  • Finish assembly drawing for LBB and LBB damper ring and post on JGWDoc (Hirata-san).
  • Get pico drive screens fixed (Miyo-kun)
  • Figure out how to make PI yaw adjustment reliable.

Minor Tasks

Mechanical

  • Get clean bag laundered.
  • Put pointy-tipped screw in RM trolley for BS
  • Return/replace borrowed parts:
    • Lock washers for LBB dampers
    • Temporary ballast mass (dog clamps) in BF.
  • Swap in new F0-SF maraging rod (with 8-mm heads) and new receptacles to match.

Electrical

  • Decide final in-vacuum and in-air cable routing (Enzo).
  • Calibrate all LVDTs (Enzo, Mark). BF, SF, PI-GAS, PI-H1, PI-H2, PI-H3

  • Adjust yoke on PI to put top of secondary at TBD mm above top of baseplate (or to give ≈0 counts at nominal height).

Real-time and SUMCON models

  • Create SUMCON models for full BS and major installation milestones.
  • Create controls design description (cf LIGO-T1100378).

  • Make table of ADC/DAC assignments and check for consistency with D1503600 and k1visbs (Enzo, Mark)
  • Understand/document/debug Kokeyama-san's DIO stuff.
  • Measure LPCD and HPCD output filter response.
  • Design and install software compensation filters for LPCD and HPCD output filters.
  • Design and install GAS drift compensation filters.

KAGRA/Subgroups/VIS/TypeB/ToDoBS (last edited 2019-01-04 15:21:23 by MarkBarton)