Changes between Version 27 and Version 28 of docs/CommissioningPlan/P1.6
- Timestamp:
- 04/22/22 17:30:13 (3 years ago)
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docs/CommissioningPlan/P1.6
v27 v28 1 == P1.6 Cryostat cool down==1 == P1.6 SCICAM refocussing == 2 2 3 3 - **Phase** : 1 … … 5 5 - **Category** : Unpack, Assemble, and Verification (C1) 6 6 - **Recurrence** : once 7 - **Duration** : 0.5 day7 - **Duration** : 1.5 day 8 8 9 9 **Description** 10 - Cooldown the cryostat.10 - The SCICAM of the SHARK-NIR is believed to be not in-focus position. The detector team at Steward Observatory will have the cryostat at an early stage (prior to SHARK-NIR arriving at LBT) to look into several aspects including the focussing issue. Depending on the outcome of this intervention, refocussing of the cryostat is anticipated. 11 11 12 12 **Prerequisites** 13 - SHARK-NIR connected toLBT network.13 - SHARK-NIR is connected to the LBT network. 14 14 - Electronics cabinets on. 15 - Needs vacuum pumping at the beginning (vacuum pressure of 10e-5 Torr is good (see the cryostat manual SHARK-NIR_SO-MAN-001)). 15 - Steward Observatory Detector Team has completed the work and the information is passed on to the SHARK-NIR team. 16 - Cryostat cooled down. 17 16 18 17 19 **Procedure** 18 - Start the cryostat cooling down sequence (see the cryostat manual SHARK-NIR_SO-MAN-001). 19 - Check how the system performance every 30 minutes. 20 - Mount the cryostat to the SHARK-NIR optical bench. 21 - Use several shims one after the other to take images at the detector. 22 - Using the through-focus images, find the right shim to have the detector at the focus position. 23 - Make the shim of the right dimensions. 24 - Use this shim, and mount the cryostat to the SHARK-NIR optical bench. 25 - Verify that the final configuration produces focused images. 20 26 21 27 **Templates** 22 28 23 29 **Success criteria** 24 - Cryostat cooled down without any issues. 25 - The temperature at the detector is stable at ~78K. 30 - SCICAM is focused. 26 31 27 32 **Notes** 28 - This activity can run in parallel with other cleanroom activities (which do not need a cold detector). 29 - Vacuum Pump details, usage and LN2 fill/refill: First, we need to pump a guard vacuum on a dewar. This requires a pump capable of pressures below 1 mTorr. Although a diffusion pump is capable of providing a high vacuum, a turbo pump would be preferable. A pressure gauge capable of reading below the 1 mTorr range is also essential for determining the extent of high vacuum achieved. When we reach the guard vacuum on the dewar, we need to valve the dewar onto a turbo pump. If a turbo pump is not available, a diffusion pump is acceptable. If a diffusion pump is used, make sure that the pump's cold trap is filled with liquid nitrogen. Yes, the cryostat shall be pumped off from the day before LN2 refilling, and be on UPS (so if the power goes off the pump is still working, otherwise we risk losing the vacuum in the cryostat). The dewar to the pump interface is a KF-25 vacuum flange. Regarding the LN2, for the first fill, we would require 40L. For every refill in 48 hours, we would require about 15-18L of LN2. 30 - The cryostat is equipped with a small amount of charcoal getter, which will become effective below 120K. For this reason, it is best to leave the dewar on the pump while filling with nitrogen, and until the charcoal itself has cooled. Since the pump will maintain the vacuum while the charcoal is cooling, the charcoal can then absorb what outgassing occurs once the dewar has been taken off the pump. No getter is required on turbo pump. The cryostat has to be vacuum pumped also after its installation at the telescope (still, no getter required). 33 31 34 32 35 **LBTO support** 33 - Liquid Nitrogen refill is required in the cleanroom. For the first fill, 40L of LN2 is required. For refill, every 48 hours, 15-18L of LN2 is required (see Notes section above for more details). 34 - Vacuum pump and support for cooling down the cryostat. We do not yet have the dimensions of the vacuum pump (available from LBTO) and how the LN2 refill will take place. If they will be done using long hoses then both vacuum pump and LN2 tank can stay outside the clean tent (see Notes section above for more details). 35 - We will require UPS connected to the turbo pump when pumping vacuum in the cryostat. UPS which can hold the power for 15 minutes would be sufficient. In case of a power outage, within 15 minutes, one of the SHARK-NIR team members can go to the pump and close the valve preserving the vacuum within the cryostat. 36 - Support to use of the workshop at LBT. 36 37 37 38 **Date performed and by whom**