AIDA GELINA BRIKEN nToF CRIB ISOLDE CIRCE nTOFCapture DESPEC DTAS EDI_PSA 179Ta CARME StellarModelling DCF K40
  DESPEC, Page 31 of 35  ELOG logo
ID Date Author Subjectdown
  425   Sun May 8 17:43:57 2022 NHAIDA FEE64 Layout
AIDA FEE64 layout with respect to the beam.
Attachment 1: AIDA_Adapter_Configuration(1).png
AIDA_Adapter_Configuration(1).png
  532   Sun Mar 10 17:08:12 2024 NHAIDA FEE Layout + Cabling Plan for S100
Proposed FEE numbering and wiring plan for upcoming experiment S100 (2x Wide DSSSDs)

Image designed in draw.io, source attached 

FEE numbering is as S450, minimises cable movement from S505/Narrow AIDA
But means merger is not working with 1 DSSD (until all FEEs installed)

Wiring of adapter boards as from noise tests and what should work for DSSD bias
LK3 on middle bottom adapter to ground DSSD
LK1 on one n+n adapter to ground n+n side bias 
p+n has -ve voltage (w.r.t. ground) bias applied via lower adapter boards
ground loop grounds all adapter boards, except 2 p+n adapter boards which are grounded by the bias lemo shield instead

MACB layout also included, with expected NIM logic signals for the aida scalers:

1: Pulser/Sync clock (send to all subsystems, "trigger 3")0

3/4: Time Machine 
5/6: SC41L/R 

All other FEEs have their scaler available
(Scaler should be in left LEMO on MACB, right is output (AIDA->NIM/unused), bottom 4 are triggers from AIDA (unused)

Test circuit will not be used in experiment due to noise, but can be temporarily set up for pulser walkthrough

Revision 2 correct as of 27 March 2023
Attachment 1: AIDA_S100_WiringPlan.drawio.png
AIDA_S100_WiringPlan.drawio.png
Attachment 2: AIDA_S100_WiringPlan.drawio
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Attachment 3: AIDA_S100_WiringPlan(1).drawio
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Attachment 4: AIDA_S100_WiringPlan.drawio.png
AIDA_S100_WiringPlan.drawio.png
  509   Wed Jun 29 10:48:26 2022 NH, OHAIDA Dismounted
All detectors removed from single and triple AIDA snouts

Empty snouts *and* DSSDs (in boxes) stored in NH office 
  334   Wed May 19 20:02:27 2021 NHAIDA Dead Time Analysis
Some plots of AIDA dead time (From PAUSE/RESUME data items) against time.

The histograms are binned in intervals of 100 ms, with the blue bars corresponding to dead time in the FEE - the y-value is the percent of the 100ms interval the card was dead.

Beam spills are indicated by the red bars (1 = on spill)

Dead time is mostly dominant in the n+n FEES: fee2, fee4, fee6, fee8 and a 30 second snapshot is shown
Can see deadtime largely seems to occur at the end of a spill - this suggests buffers/queues filling up from the high on-spill rates .

The much quieter p+n strips show a similar pattern but much less frequently.

Deadtime does not always sync up between FEE64s it seems.

IN all case the pause/resume interval seems to only last for less than 100 ms.
Attachment 1: dt_fee2.png
dt_fee2.png
Attachment 2: dt_fee4.png
dt_fee4.png
Attachment 3: dt_fee6.png
dt_fee6.png
Attachment 4: dt_fee8.png
dt_fee8.png
Attachment 5: dt_fee9.png
dt_fee9.png
Attachment 6: dt_fee9_lr.png
dt_fee9_lr.png
  373   Tue Jun 22 13:01:19 2021 NHAIDA Data on lustre
The following runs are now copied to lustre
If necessary they can be removed from AIDA HDDs for space.
There are also spare HDDs that can (and should) be swapped for the current ones

/lustre/gamma/DESPEC_S452_FILES/AIDA
S452
R1
R2
R3
R4
R5
R6
R7
R9
R11
R13
R14
R15
R16
R17
R20
R21
R22
R23
R25
R27
R28
R29
R30
R33
R34
R35
R36
R38
R39
R40
R42
R43
R46
R50
R56
R57
R58

/lustre/gamma/DESPEC_S460_FILES/AIDA
S460
R1
R2
R4
R5
R7
R9
R11
R13
R14
R16
R20
R21
R23
R24
R25
R26
R27
R30
R31
R32
R33
R34
R35
R36
R38
R40
R45
R46
R48
R50
R51
R52

/lustre/gamma/DESPEC_S496_FILES/AIDA
S496
R1
R2
R3
R4
R5
R6
R7
R9
R11
R13
R14
R15
R16
R17
R20
R21
R22
R23
R25
R27
R28
R29
R30
R33
R34
R35
R36
R38
R39
R40
R42
R43
R46
R50
R56
R57
R58
  225   Fri Apr 16 00:47:36 2021 OH-MLAIDA DAQ Reset

1:18 (CET) No rate in AIDA 07.

Oscar did a AIDA DAQ reset and a quick wide check.

(Power cycle

All back to normal.

  270   Sat Apr 24 03:13:05 2021 MLAIDA DAQ Reset

AIDA PC crashe completely at ~3:30am CET.

Tom was called and he Restarted the AIDA system at ~4am with Run 52.

Not sure what cause the crash but AnyDesk remote connection was suddenly lost and once reconnected all Terminal sessions were gone.

 

  393   Tue Feb 1 15:00:28 2022 NHAIDA CentOS 7 Startup
Starting up AIDA on CentOS 7 to confirm things work (based on some CARME experience)

NFS settings:
/etc/exports copied over from old disk
line to old /MIDAS_130718 export removed (commented) to see if necessary to copy over
nfsv2 enabled in nfs.conf
NFS service enabled and started (systemctl enable nfs-server ; systemctl start nfs-server)

DHCP setting:
DHCP was disabled, enabled and started (systemctl enable dhcpd ; systemctl start dhcpd)
Raspberry Pis pick up IP and become responsive again

Firwall setting:
Interface p4p1 (AIDA switch #1) is changed to zone 'trusted' so that FEEs can connect to NFS
(panicked before unable to get RPC port)

See FEEs starting to boot!
Getting both / and /MIDAS successfully (note confirming that old /MIDAS_130718 is not needed)

FEEs 4 and 9 take longer to boot others (observed before, seems to be PSU slots 4/5 in first take a while to provide voltage)
FEE9 seems to panic after mounting root, waiting to see if it reboots itself (no serial)
... Nope but power cycle fixes it

All FEEs online and Reset/Setup completed... Temps OK

Note 1: CentOS 7 uses systemd, monitoring log is best done as
`journalctl -f` as root.
npg not in sudoers (should be done)

Note 2: System used as graphical terminal for Edinburgh double-alpha experiment until Feb. 11
AIDA operated in background and using port forwarding to access MIDAS/Web mostly
UI has weird workspace configuration by default needs changing to better cope with AIDA windows

Note 3:
Only 4 FEEs are producing serial data to the Pi_Monitor
Probably 2 of the USB hubs were knocked lose (from the USB extender cables) when the Fatima/HPGe cables were removed last year
S4 access is limited but will try to reconnect ASAP

Note 4:
AIDA setup unfortunately quite limited in functionality due to other running experiments:
WR is unavailable as VETAR VME crate was powered off
Not all FEEs are connected to pulser or grounded. Some cables were removed during testing last year.
Some ground cables removed and pulser inverter removed as needed at CARME and S4 access is now limited for WASA tests
  67   Mon Oct 28 17:02:11 2019 TDAIDA @ DESPEC cable length estimates
AIDA snout length 37cm (from end of AIDA snout support assembly)

downstream scintillator (assembly depth 1cm)   36cm

downstream dsssd (#1)                          35.2cm

                 (#2)                          34.3cm

                 (#3)                          33.4cm

upstream dsssd   (#4)                          32.5cm

upstream scintillator (assembly depth 1cm)     31.7cm

Cable lengths required are therefore

downstream dsssd (#1)           35.2 - 10.5 + 2.15 + 5 + 22.5 = 54.35cm 21.4"

                 (#2)           34.3 - 10.5 + 2.15 + 5 + 16.5 = 47.45cm 18.7"

                 (#3)           33.4 - 10.5 + 2.15 + 5 + 10.5 = 40.55cm 16.0"

upstream dsssd   (#4)           32.5 - 10.5 + 2.15 + 5 + 4.5 = 33.65cm 13.2"

length of RH Kapton PCB coupler = 10.5cm (Carlo can you check please?)

turning the corner at the base of the AIDA snout support assembly 2.15+5=7.15cm
(see Peter's drawing)

distances to FEE64s 4.5, 10.5, 16.5 and 22.5cm
(see Peter's drawing)

f we use 3x DSSSDs then the cable lengths required will be as follows:

downstream dsssd (#1)           35.2 - 10.5 + 2.15 + 5 + 16.5 = 48.35cm 19.0"

                 (#2)           34.3 - 10.5 + 2.15 + 5 + 10.5 = 41.45cm 16.3"

upstream dsssd   (#3)           33.4 - 10.5 + 2.15 + 5 + 4.5 = 34.55cm 13.6"
  420   Wed May 4 16:50:04 2022 NHAIDA 4th May
bPlas has been mostly cabled in now

Reseat LAN cable (AIDA Switch -> AIDA-3) and reachieve 1 gbit/s speed as needed.

CHeck DAQ with MBS, working well (16 MB/s). Performance seems better than before on MBS side too

Note implant counts in aida05, observable in rate spectra (fig 1)
Also a few early channels in aida10 seem empty

ASIC check-loads didn't fix
Try powercycle... also didn't fix

Tomorrow will inspect adapter board and ribbon cable, perhaps it is loose.

Absolute rates otherwise seem OK (fig 2) aida01 and aida07 are both very hot.
aida01 is usually quieter but aida07 has always been observed running fast
Attachment 1: Screenshot_20220504_174929.png
Screenshot_20220504_174929.png
Attachment 2: Screenshot_20220504_175201.png
Screenshot_20220504_175201.png
  415   Wed Apr 27 15:47:46 2022 NH, HA, SA, CJAIDA 27 Apr 22
Remount snout in S4 (photos to come) 
Alignment with DEGAS OK but a bit short...  DEGAS platform will be brought 31 mm closer to AIDA by rail adjustment

Can mount bPlas booster boards on old ITEM frames and also partly on AIDA snout (isolated)

-

Reconnect all adapter boards and grounds, bias AIDA...

HV OK. We still have a light leak at the snout endcap. "Fixed" with sheet for now

HV leakage currents figure 1

Start AIDA DAQ and check rates.. all seem OK. aida07 is very noisy other p+n good
Notice some issues in aida04, check and ribbon cable slightly loose on one side of adapter
No change to other FEEs.
Aida07 was inspected but nothing obviously wrong

Rates figure 2
Rate spectra figure 3
Wavesform figures 4 (p+n), 5 (n+n)
Pulser peak withs
 p+n figure 6, width ~  70 channels (50 keV)
 n+n figure 7, width ~ 570 channels (400 keV)

n.b. double peak in aida14 is an artifact from an uncleared histogram

DSSDs debiased to allow work on bPlas cabling without tripping DSSDs
Attachment 1: 2022-04-27_16-42-37_HV.png
2022-04-27_16-42-37_HV.png
Attachment 2: 022-04-27_16-39-58_Rates.png
022-04-27_16-39-58_Rates.png
Attachment 3: 2022-04-27_16-40-23_RatesSpectra.png
2022-04-27_16-40-23_RatesSpectra.png
Attachment 4: 2022-04-27_16-41-46_pnwaves.png
2022-04-27_16-41-46_pnwaves.png
Attachment 5: 2022-04-27_16-42-20_nn_waves.png
2022-04-27_16-42-20_nn_waves.png
Attachment 6: 2022-04-27_16-43-30_pn_pulser_70ch.png
2022-04-27_16-43-30_pn_pulser_70ch.png
Attachment 7: 2022-04-27_16-44-18._nn_pulser_568ch.png
2022-04-27_16-44-18._nn_pulser_568ch.png
  289   Sat May 1 08:45:19 2021 TDAIDA 24cm x 8cm DSSSD + triPlast assembly for S496
Photos provided by Nic Hubbard and Helena Albers from the assembly of 2x triPlast
plus 2x MSL type BB18(DS)-1000 24cm x 8cm detector assembly - attachments 1-3.

Spacers installed between MSL type BB18(DS)-1000 24cm x 8cm PCBs - attachment 4.

AIDA support stand in 24cm x 8cm DSSSD mode ready for installation of snout assembly - attachments 5 & 6

AIDA 24cm x 8cm DSSSD plus 2x TriPlast installed in S4 - view downstream towards upstream window 
of AIDA detctor assembly - attachment 7

AIDA 24cm x 8cm DSSSD plus 2x TriPlast snout assembly installed at S4 - attachment 8

Side view of AIDA + triPLast + FATIMA + DEGAS - attachment 9
Attachment 1: MicrosoftTeams-image.png
MicrosoftTeams-image.png
Attachment 2: IMG_7649.JPG
IMG_7649.JPG
Attachment 3: IMG_7650.JPG
IMG_7650.JPG
Attachment 4: MicrosoftTeams-image_(1).png
MicrosoftTeams-image_(1).png
Attachment 5: image-7becce0a-c5bb-431b-8af9-597e2b8d3829.jpg
image-7becce0a-c5bb-431b-8af9-597e2b8d3829.jpg
Attachment 6: image-3ba4cdee-a8f4-48e4-b087-03ddf07504e5.jpg
image-3ba4cdee-a8f4-48e4-b087-03ddf07504e5.jpg
Attachment 7: image-beb082d4-a965-453f-8804-394ce65a2f70.jpg
image-beb082d4-a965-453f-8804-394ce65a2f70.jpg
Attachment 8: IMG_7697.JPG
IMG_7697.JPG
Attachment 9: IMG_7708.JPG
IMG_7708.JPG
Attachment 10: IMG_7682.JPG
IMG_7682.JPG
Attachment 11: IMG_7681.JPG
IMG_7681.JPG
Attachment 12: FATIMA_Triple_AIDA.png
FATIMA_Triple_AIDA.png
  107   Mon Dec 16 14:48:02 2019 NH TDAIDA 16.12.19
DSSD Snout was reassembled to install the second bPlast (downstream) 
 (fig 1)

Ribbon cable for aida10 was replaced (DSSD3 upper)

All DSSDs bias again (see fig 2)

Alpha run in progress - channels OK with 2 exceptions  (fig 3)

- aida10 still recording minimal to no counts

- channel 55 aida08 reading lots of data even with comparator 0x64 - corresponds to DSSD1 strip 0 (bottom strip)
  possible ground/cable issue? will check when access possible (fig 4)

Unusual MIDAS error noticed (fig 5) - restart of HTTPd fixed it
Attachment 1: 20191213_103710.jpg
20191213_103710.jpg
Attachment 2: 161219_aida_DSSDs.png
161219_aida_DSSDs.png
Attachment 3: 161219_rates.png
161219_rates.png
Attachment 4: 161219_aida0855.png
161219_aida0855.png
Attachment 5: midasmessage131219.png
midasmessage131219.png
  60   Tue Aug 13 09:17:02 2019 NHAIDA 12/08/2019

The other 6 FEEs were powered on one at a time to check no issues. None found.
All 12 FEEs plugged back into the PSU.

Note: The FEE temperatures reported on Friday were before a Reset/Setup of the DAQ, which means the ASICs run very fast and the hence run hotter.
Reset/Setup shows more sustainable temps (attached)

These temps are similar to those observed in Sep 2018 but warmer by ~4 C than those observed Dec-Jan and April.

Attachment 1: AIDATemps-1208191457.png
AIDATemps-1208191457.png
  55   Mon Jul 1 09:42:16 2019 NHAIDA - 01/07/2019

Water is still off.

Checked dewpoint sensor still flashing red light (indicating an error). Pipes warmed. Not what I expected. Possible fault?

I checked S4's ambient temp/humidity with a home-brought sensor: Reports 27 C/50% RH (Dew Point = 16 C)
Water temperature is set to exactly 20 C (there's a second dial showing ~18 C but I am unsure if that's the same water supply, I will ask)

Checking the dewpoint PSU with a multimeter shows a voltage of 16 V.
The PSU itself is rated for 12 V output, and the humidity sensor expects 24 V.
Regardless of which voltage 16 V seems incorrect. Might be causing issues.

Humidity is a bit lower now (4pm) the sensor has been in all day, 28 C/35% RH (Dew Point = 11 C) which isn't an issue.

Water is still off until I am sure what to do, or until the dewpoint sensor stops complaining.

 

  653   Tue Jun 11 20:20:36 2024 TDADC data rates from 09.00 11.6.24
Per NH

"From ELOG (assuming times accurateish)

10:00 Source in (AIDA removed from DESPEC DAQ)
11:30: Source out (?)
11:45: Background Runs
13:00: bPlast thresholds changed
15:45: Beam Returned"
-
                  ADC data item rate
EOF time  file    LEC        HEC
09.02    R4_538   0.906M     1.7k
10.02      _551   0.927M     1.7k
11.00      _564   0.875M     1.7k
11.19      _568   0.872M     1.7k
12.18    R6_7     1.121M     1.9k
13.03     6_19    1.134M     1.9k
14.02     6_35    1.197M     2.0k
15.00     6_52    1.232M     2.0k
15.10     6_54    1.225M     2.0k
15.36     6_56    1.467M     2.0k
16.00     6_65    1.630M     3.0k
17.01     6_89    1.778M     3.7k
21.43     6_207   1.759M     2.7k
12.6.24
00.09     6_274   2.258M     3.8k
03.12     6_372   2.295M     4.4k
07.13     6_506   2.284M     4.5k
11.12     6_611   1.853M     3.6k
14.55     7_16    1.877M     4.7k
13.6.24
07.01     7_457   1.788M     4.3k
12.34     7_610   2.000M     4.7k
14.00     7_649   1.756M     2.5k
14.12     7_654   1.817M     2.5k
15.33     7_693   1.907M     3.5k
14.6.24
07.23     8_35    1.677M     3.7k
10.54     8_122   1.880M     4.7k
14.38     8_213   1.935M     3.6k
15.6.24
01.25     9_27    0.951k     1.6k  (beam off from c. 18.15 14.6.24)
08.56     9_152   1.215M     2.1k  gamma source in use?
15.27     9_275   1.520M     2.3k  370kBq 152Eu source in use
16.6.24
15.06     9_747   1.667M     2.3k

15.06 analysis data file R9_747 - attachment 18
       max dead time 4.3% aida08, all other FEE64s < 2%
       ADC data rate 1.667M, HEC data rate 2.3k 
  33   Fri Mar 22 14:31:24 2019 NHA few more setup notes I forgot

Extra FEE information:

HV braid (0 V) goes into FEE10 (beam left) with LK1 jumper
HV core (-160 V) goes into FEE09 (top)

Could be related to noise in FEE09?
Both these FEEs have higher rates too

Other setup information:
According to the switch in S4, the AIDA workstation is only connected via 100Mbps rather than 1Gbps. (Fig 1)

Plastic is inside the snout, but is not yet connected to the electronics yet
Figures 2-4 Show the DSSD & Plastic in the Snout. Plastic is far upstream solely to ensure plenty of ribbon cable

Attachment 1: 20190322_132528s.jpg
20190322_132528s.jpg
Attachment 2: 20190319_131821s.jpg
20190319_131821s.jpg
Attachment 3: 20190313_161102s.jpg
20190313_161102s.jpg
Attachment 4: 20190313_155418s.jpg
20190313_155418s.jpg
  105   Sat Dec 7 02:39:02 2019 DK, NH et al.34Si Fragments PID
See attached

Tentative PID (DK) as attachment #3

DESPEC LISE++ file as attachment #4
Attachment 1: 2019-12-07-PID.png
2019-12-07-PID.png
Attachment 2: 59_AM.png
59_AM.png
Attachment 3: pid.png
pid.png
Attachment 4: Ar-300_S4_updated_matter_DEPSEC_34Si.lpp
Version 11.0.88

{============================= Main Part ======================================}
[general]
                    File = C:\Users\Nic\Documents\Ar-300_S4_updated matter_DEPSEC 34Si.lpp
                    Date = 06-12-2019
                    Time = 23:05:23
           Configuration = GSI\FRS-TA2-S4_2014.lcn
             Optionsfile = GSI_FRS_2012.lopt
                   Title = GSI FRS - TA2 -2014
          BlockStructure = MMMDSWMDMSAMMMMMMWMMDMSDMMMMMMMMMMMMMMMMMMSMMMWMMMMMMMMMMMMMMMMMM

[settings]
                   A,Z,Q = 40Ar18+                               ; Mass ElementName Charge+ Beam
                  Energy = 300                  MeV/u            
               Intensity = 1e+7                 pps              ; enA,pna,pps,kW
            RF frequency = 20                   MHz              
            Bunch length = 1                    ns               
         Settings on A,Z = 34Si                                  ; Mass ElementName Charge+ Beam

[OpticsBeam]
                      BX = 1                    (±)mm            ; one-half the horisontal beam extent (x)
                      BT = 5                    (±)mrad          ; one-half the horisontal beam divergence(x')
                      BY = 1.5                  (±)mm            ; one-half the vertical beam extent (y)
                      BF = 3.33                 (±)mrad          ; one-half the vertical beam divergence (y')
                      BL = 0                    (±)mm            
                      BD = 0.05                 (±)%             ; one-half of the momentum spread (dp/p)
                  ShiftX = 0                    mm               ; beam respect to the spectrometer axis
                  AngleX = 0                    mrad             ; beam respect to the spectrometer axis
                  ShiftY = 0                    mm               ; beam respect to the spectrometer axis
                  AngleY = 0                    mrad             ; beam respect to the spectrometer axis
            Scheme Angle = 0                    degrees          
                  ShapeX = 1
                  ShapeT = 1
                  ShapeY = 1
                  ShapeF = 1
                  ShapeL = 1
                  ShapeD = 1
               OptBeam_X = 1                    (±)mm            
               OptBeam_T = 30                   (±)mrad          
               OptBeam_Y = 1                    (±)mm            
               OptBeam_F = 30                   (±)mrad          
               OptBeam_L = 0                    (±)mm            
               OptBeam_D = 1.5                  (±)%             

[options]
               NP simple = 32                                    ; Number of points in distribution
        NP charge states = 32                                    ; Number of points in distribution
                NP wedge = 32                                    ; Number of points in distribution
           Charge states = No                                    ; No  & Yes
           CutEdgeEffect = 1                                     ; 1-Yes. Default, 0-no - for extended configurations
       Prim.beam scatter = 0                                     ; 0-without, 1-with
              Delta peak = 0                                     ; 0-without, 1-with
             BrhoMeanMax = 1                                     ; 0-Max, 1-Mean
            BrhoMeMaLeRi = 3                                     ; 0-Max, 1-Mean, 2-Left, 3-Right /for fission/

[target]
         Target contents = 0,4,1,9.012                           ; Nomer,Z,Atoms,Mass
        Target thickness = 1,2500.7,1.848,0,0,0                  ; State,Thickness,density,angle,SolidGas,..
  Target fusion compound = 0
   Targ use for Q-states = 1
           Target Defect = 1,0                                   ; [0] choice - % or micron at 0 degree,  [1]=value; 
       Degrader contents = 0,22,1,47.9                           ; Nomer,Z,Atoms,Mass
      Degrader thickness = 0,35,4.519,0,0,0                      ; State,Thickness,density,angle,SolidGas,..
  Degra use for Q-states = 1
         Degrader Defect = 1,0                                   ; [0] choice - % or micron at 0 degree,  [1]=value; 

[mechanism]
                Reaction = 0                                     ; 0 - fragm, 1 - fusion-resid, 2 - fusion-fission
               CalcOther = 1                                     ; calculate other reactions
           V calculation = 5                                     ; 0 - constant, 1 - Borrel, 2 - Rami, 3-convolution, 4-two body reaction
             V_opt/Vbeam = 1                                     ; default 1
         Velocity_exceed = 1                                     ; 0 - without, 1-with - two-body recations velocity corrections
Binding Energy for Vf/Vp = 8                    MeV              ; Binding energy for Borrel's expression
    Shift for Vf/Vp calc = 0     
        Prefragment_Rami = 1                                     ; 1-Yes, 0-No
                  Sigma0 = 90                   MeV/c            ; default 90
                  SigmaD = 0                    MeV/c            ; default 200
                  SigmaM = 87                   MeV/c            ; default 87
               Asymmetry = 0                    %                ; default 0
          Method v-sigma = 0                                     ; 0 - Goldhaber, 1-Morrissey,2-Friedman,3-Convolution
               G_Surface = 0.95                 MeV/fm^2         
 Symmetry around half_Ab = 1                                     ; 1 - yes, 0-no
 Pfaff pickup correction = 0                                     ; 1 - yes, 0-no
     ChargeExchangePfaff = 0                                     ; 1 - exclude, 0-forget
            Sigma corr 0 = 0                                     ; Coulomb energy
            Sigma corr 1 = 0                                     ; Projectile mass
           Friedman mode = 2                                     ; 0-Qgg, 1-Surface, 2-Qgg+Surface
         Prefragment_Fri = 1                                     ; 1-Yes, 0-No
        Coulomb_Friedman = 1                                     ; 1-Yes, 0-No
                  K_Morr = 8                    MeV/A            ; E/A=8MeV/A default; D.Morrissey coef.
               K_MorHalf = 8                    MeV/A            ; E/A=8MeV/A default at Afrag=Aproj/2; D.Morrissey coef.
                 AA_fast = 0                                     ; 1-Yes, 0-No
            BarrierShape = 1                                     ; 0-classical, 1-quantum mech.
                 H_omega = 5                    MeV              ; default 3
           Probabilty_CN = 0                                     ; 0/1 use Prbabilty for CN formation
            UseVanishing = 1                                     ; 1-Yes, 0-No
              VanishMode = 0                                     ; 0-Sierk, 1-Cohen
           NuclPotential = 1                                     ; 0-Bass, 1-WS
                   WS_V0 = 105                  MeV              
                   WS_R0 = 1.12                 fm               
                    WS_a = 0.75                 fm               
          FusDiffuseness = 1    
              Width Coef = 1                                     ; default 1; for Leon's charge state distribution
          gZt Correction = 1                                     ; default 1;      Leon's C.S.D.
           PowerCoefLeon = 0.477                                 ; default 0.477; Leon's C.S.D.
           Cross section = File                                  ; Fit  & File
           Charge method = 3                                     ; charge calculations method  0-5
      EPAX Cross Section = 4                                     ; cross section calculations method 0-4
        SR Cross Section = 2                                     ; EPAX for SR  0-2
             Energy Loss = 2                                     ; energy loss calculation method 0-3
     Anglular straggling = 1                                     ; 0-LISE, 1-ATIMA
         StragglingCoef1 = 0.217
         StragglingCoef2 = 1.12 
       Energy straggling = 1                                     ; 0-LISE, 1-ATIMA
       EnergyStragMethod = 0                                     ; 0-integrate, 1-table
        EnergyStragShape = 0                                     ; 0-Gauss, 1-Landau-Vavilov
          EquilThickness = 1                                     ; 0-Charge, 1-Global
              MassMethod = 0                                     ; 0-DB+calcul, 1 + just calcul
            MassDataBase = 0                                     ; 0-A&W, 1-User ME
            Mass formula = 2                                     ; 0-LDM, 1-Myerer, 2: 1+corrections
      UseChargeForEnergy = 2                                     ; 0-No, 1-Yes, 2-Auto
         EnergyValueAuto = 30                                    ; default value 30 MeV/u
         EquilibriumMode = 1                                     ; 0-Equil, 1-NonEquil
               UB_Global = 70                                    ; default 70 MeV/u
             MinZ_Global = 2                                     ; default Z>=29
        ChargeStateOptim = 1                                     ; 0-No, 1-Yes
         ZmQ_AfterReactn = 0                                     ; default 0 (full stripped)
             EPAX_p_Norm = 1
               EPAX_p_Un = 1.65
              EPAX_p_Up0 = 1.79
              EPAX_p_Up1 = 0.00472
              EPAX_p_Up2 = -1.3e-5 
                EPAX_p_H = 1

[fission]
         FisAngDistShape = 0                                     ; 0-isotropic; 1-anisotropic
     FisMomCutForAngDist = 2                                     ; 0-dont use;  1-use just MatrixKinematics; 2-use for all; (default 2)
      OddEvenCorrections = 1                                     ; 0-dont use;  1-use
 PostScissionEvaporation = 1                                     ; 0-dont use;  1-use
   DeexcitFunctionPoints = 0                                     ; 0- average deexcitation energy;  1- 3 points; 2 - manually
           FisEXmanually = 20                                    ; Excitation energy manually
           FisCSmanually = 1000                                  ; Cross section manually
            FisTXEmethod = 1                                     ; 0-from Edissipated, 1 from Q-value
                   Fis_f = 0.0045                                ; default 0.0045
              FisEXsigma = 5.5                  MeV              ; default 5.5
            FisCS_Global = 1e-11    
               FisCS_TKE = 1e-8     
                FisBeta1 = 0.625                                 ; deformation of light fragment
                FisBeta2 = 0.625                                 ; deformation of heavy fragment
                FisTKE_d = 2                    fm               ; d-param in Wilkins formula
              FisBetaFit = 1                                     ; 0-manual, 1-fit
                      N0 = 83                                    ; default 82
                     dU0 = -2.65                                 ; default -2.5
                      C0 = 0.7                                   ; default 1.4
                   cpol0 = 0.65                                  ; default 0.65
                  width0 = 0.63                                  ; default 0.63
                      N1 = 90                                    ; default 90
                     dU1 = -3.8                                  ; default -5.5
                      C1 = 0.15                                  ; default 0.16
                   cpol1 = 0.55                                  ; default 0.55
                  width1 = 0.97                                  ; default 0.97

[charge_suppression]
                 FragInd = 1e-3     
               FragTotal = 1e-5     
                 BeamInd = 1e-20    
               BeamTotal = 1e-20    

[convolution]
        Convolution mode = 1                                     ; 0-Qgg, 1-Surface, 2-Qgg+Surface
               SigmaConv = 91.5                 MeV/c            ; default 90 for Convolution
              CoefConv_0 = 3.344 
              CoefConv_1 = 3     
              CoefConv_2 = 2.936 
             ShiftConv_0 = 0.158 
             ShiftConv_1 = 0.149 
             ShiftConv_2 = 0.153 

[evaporation]
          NP evaporation = 32                                    ; Number of points in distribution
              EvapMethod = 2
        StateDensityMode = 2                                     ; 0, 1+pairing, 2+shell
      EvapUnstableNuclei = 1                                     ; 0 - only stable,1 +unstable
              Tunnelling = 1                                     ; 1-Yes, 0-No
          AvoidUnboundCS = 1                                     ; 1-Yes, 0-No
       ProtectedChannels = 1                                     ; 1-Yes, 0-No
           R_Evaporation = 5.7                  fm               ; correction for the effective Coulomb barrier
         Mode_Apf_manual = 0                                     ; 1-manual, 0-auto
             Energy_in_T = 2                                     ; default 2
     EvaporationVelocity = 0                                     ; 0 - quality, 1 -fast
        DeltaOddEvenEvap = 12    
     DeltaOddEvenFission = 14    
   BreakupTemperature250 = 4.7  
   BreakupTemperature150 = 5.9  
   BreakupTemperature050 = 8    
      BreakupDiffuseness = 0.05 
      DissipationKramers = 0                                     ; 0 - no, 1 - use
 DissipationStepFunction = 1                                     ; 0 - no, 1 - use
         DissipationBeta = 1                                     ; default 2.0
                 mode_1n = 1                                     ; 1-Yes, 0-No
                 mode_2n = 0                                     ; 1-Yes, 0-No
                 mode_1p = 1                                     ; 1-Yes, 0-No
                 mode_2p = 0                                     ; 1-Yes, 0-No
                  mode_a = 1                                     ; 1-Yes, 0-No
                  mode_d = 0                                     ; 1-Yes, 0-No
                  mode_t = 0                                     ; 1-Yes, 0-No
                mode_3he = 0                                     ; 1-Yes, 0-No
                mode_fis = 1                                     ; 1-Yes, 0-No
             mode_brk_up = 1                                     ; 1-Yes, 0-No
              mode_gamma = 0                                     ; 1-Yes, 0-No

[fission_barrier]
    FissionBarrierFactor = 1    
      FissionBarrierMode = 1                                     ; #0-4
      OddEvenCorrections = 1                                     ; 1-Yes, 0-No
        ShellCorrections = 1                                     ; 1-Yes, 0-No
             FB_InOutMax = 2                                     ; #0-2 - in/out/max
             ModeForUser = 1                                     ; #0-2
           NdeltaOddEven = 2.5  
           ZdeltaOddEven = 9    

[excitation_energy]
       GeomAA_Correction = 1                                     ; 0 - don't use,1 - use -default
          Thermalization = 0                                     ; 1-Yes, 0-No
          ThermaTimeCoef = 3e+0                                  ; 2.1e-22 MeV *s/e(t)
                Friction = 0                                     ; 0 - off,1 - on
          Ev_A_SigmaCoef = 9.6  
         G_FrictionCoef1 = 6.5  
         G_FrictionCoef2 = 0    
           G_FactorCoef1 = 1.5  
           G_FactorCoef2 = 2.5  
               DepthHole = 40    
          EnergyCoef_CB0 = 0       
          EnergyCoef_CB1 = 13.3     
          EnergyCoef_CB2 = 0       
           SigmaCoef_CB0 = 0       
           SigmaCoef_CB1 = 9.6     
           SigmaCoef_CB2 = 0       
              D_MeanTemp = 13       
               AA_factor = 1       
          ApplyLimitTemp = 0                                     ; 1-Yes, 0-No

[evapauto]
                  tun_a0 = -0.61392
                  tun_a1 = 0.44559
                  tun_a2 = 0.12008
                 A_Bound = 300                                   ; mass
               A_Pairing =  70                                   ; mass

[plot]
            Start target = Detector                              ; Detector & RF      
            Start of TOF = M7
            Stop  of TOF = M34
         dE-detector-1st = M28
         dE-detector-2nd = M7
            TKE-detector = M41
                PlotBrho = D1
               PlotWedge = S4
              X-detector = M19
              Y-detector = M19
                 Tilting = M1
                 Stopper = W1
                RO_Wedge = n
          ConditionBlock = A10
          Plot threshold = 1e-10                pps              ; minimal value for plot scale
     Shift of TOF for RF = 0                    ns               ; for dE-TOF plot with RF
  Fraction of RF trigger = 2
            UseCondition = 0
         TKE_calibration = 1,1,0,MeV                             ; Input PV(0) or CH(1), A, B, dimension

[cs_file]
              UserDiffCS = 0                                     ; Number of User Diff CS saved in this file
         AppendOverwrite = 1
          AttachedInside = 1
            ShowCSinPlot = 1
                    Chi2 = 1
              CSfilename = 

[sec_reactions]
        NP sec.reactions = 16                                    ; Number of points in distribution
     Secondary reactions = 0                                     ; 0/1 - use secondary reactions in calculations
         fiss_FilterUse0 = 1
         fiss_FilterUse1 = 1
         fiss_FilterUse2 = 1
            fiss_ellipse = 5
          fiss_NdeltaTop = 0
          fiss_ZdeltaTop = 0
          fiss_NdeltaBot = 25
          fiss_ZdeltaBot = 20
         frag_FilterUse0 = 3
         frag_FilterUse1 = 3
         frag_FilterUse2 = 3
            frag_ellipse = 4
          frag_NdeltaTop = 5
          frag_ZdeltaTop = 5
          frag_NdeltaBot = 6
          frag_ZdeltaBot = 6

[abrasion_fission]
... 2087 more lines ...
  477   Wed Jun 1 08:00:18 2022 TD2xDSSSDs spectra layouts
Spectra layouts for 2x DSSSDs can be found in directory ~/LayOut/2xDSSSDs
  436   Fri May 13 00:50:16 2022 ML2h-Shift Checks

All seems ok  (apart for my virgin network connection usually quite reliable but not so tonight !?!).

Statistics seems ok.

Temperatures appears stable

Leakage current ok.

System Wide Checks:

Clock check: Passed= 14: - Failed=: 0

ADC calibration check:

FEE64 module aida01 failed
FEE64 module aida04 failed
FEE64 module aida06 failed
FEE64 module aida13 failed
Calibration test result: Passed=10 ; Failed= 4

If any modules fail calibration , check the clock status and open the FADC Align and Control browser page to rerun calibration for that module -> DID THAT BUT NO CHANGES

White rabbit decode status: Passed=14 ; Failed=0

FPGA timestamp check: Passed=14 ; Failed=0

Memory information: Page loading failed with the error message below:

Got the error Server Internal Error
while trying to obtain /AIDA/Check/Check.tml.
could not read "/Embedded/XilinxLinux/ppc_4xx/rfs/aida01/tmp/mybuddy.txt": no such file or directory while executing "file size $mybuddy " (procedure "do_collect_info" line 16) invoked from within "do_collect_info " ("COLLECTINFO" arm line 1) invoked from within "switch -glob $w { RESET {set started 0} CLEAR {EmptyLog} ELOG {PrintLog} ..." (procedure "do_click" line 23) invoked from within "do_click" invoked from within "if {$started != 0} { variable JS "" variable LogFlag if {$LogFlag == 1} {InsertLog "Last Updated: [clock format [clock seconds] -form..." (file "Check.tcl" line 8) invoked from within "source Check.tcl" (in namespace eval "::Check" script line 6) invoked from within "namespace eval Check { global env source [file join $env(MIDASBASE) TclHttpd tcl Common common.tcl] source [file join $env(MIDASB..." invoked from within "subst { [Doc_Dynamic] <! [global Httpd; upvar #0 Httpd[set Httpd(currentSocket)] data; set ClientIPAddress $data(ipaddr); set MyInfo $data(self)] >..." ("uplevel" body line 1) invoked from within "uplevel #0 [list subst $script]" (procedure "SubstFile" line 12) invoked from within "SubstFile /home/npg/MIDAS_Releases/23Jan19/MIDAS_200119/TclHttpd/Html/AIDA/Check/Check.tml {}" ("uplevel" body line 1) invoked from within "uplevel 1 [list SubstFile $path $interp]" (procedure "Subst_File" line 7) invoked from within "Subst_File $template $interp" invoked from within "TemplateInstantiate $sock $path {} $suffix {} $Template(templateInterp)" (procedure "Doc_application/x-tcl-template" line 9) invoked from within "$cmd $path $suffix $sock" (procedure "Doc_Handle" line 20) invoked from within "Doc_Handle $prefix $path $suffix $sock" (procedure "DocDomain" line 44) invoked from within "DocDomain / /MIDAS/TclHttpd/Html sock8 AIDA/Check/Check.tml" ("eval" body line 1) invoked from within "eval $Url(command,$prefix) [list $sock $suffix]"

Attachment 1: Stats_Screenshot_from_2022-05-13_01-45-56.png
Stats_Screenshot_from_2022-05-13_01-45-56.png
Attachment 2: Temp_Screenshot_from_2022-05-13_01-47-31.png
Temp_Screenshot_from_2022-05-13_01-47-31.png
Attachment 3: HV_LC_Screenshot_from_2022-05-13_01-48-21.png
HV_LC_Screenshot_from_2022-05-13_01-48-21.png
ELOG V3.1.4-unknown