| ID |
Date |
Author |
Status |
Type |
Category |
Important |
Subject |
Icon |
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898
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Tue Aug 6 09:57:48 2024 |
Entered by Super Team from 134.158.195.142 on Tue Aug 6 09:57:28 2024 | | Linac | LI | RF D1 |
|
Commissioning section accélératrice | |
9h58 Démarrage Att sec 10dB 3us 25Hz HT = 1200V
On augmente progressivement la HT
10h03 HT = 1215V att sec 10dB
10h04 On descend progressivement de 10dB à 1dB
10h28 passage à 1 dB vide in section = 6.9e-9 vide out section = 1.5e-9
10h33 passage à 0.9 dB vide in section = 7.5e-9 vide out section = 2.6e-9
10h36 passage à 0.8 dB vide in section = 8e-9 vide out section = 3.8e-9
10h40 passage à 0.7 dB vide in section = 8e-9 vide out section = 4.8e-9
10h44 passage à 0.6 dB vide in section = 7.7e-9 vide out section = 5.2e-9
10h47 passage à 0.5 dB vide in section = 7.4e-9 vide out section = 5.5e-9
10h55 passage à 0.4 dB
13h50 interlock à 0.4dB
13h53 interlock à 0.4dB
13h56 interlock à 0.4dB
Pause
14h42 reprise à 0.4dB
15h42 Interlock machine
18:40 FIN
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897
|
Mon Aug 5 10:50:06 2024 |
Entered by Super Team from 134.158.195.141 on Mon Aug 5 10:49:42 2024 | | Linac | LI | RF D1 |
|
Suite conditionnement section | |
10h50 Mise en route à 10dB, HT = 1000V
11h04 HT = 1215V, Att sec 3 dB vide in section = 9.3e-9 vide out section = 1e-9
11h05 HT = 1215V, Att sec 2 dB vide in section = 9.4e-9 vide out section = 1e-9
11h06 HT = 1215V, Att sec 1 dB
Interlock à 1dB
11h06 HT = 1215V, Att sec 1 dB vide in section = 7.2e-9 vide out section = 1.2e-9
11h16 Att sec 0.9dB vide in section = 8.5e-9 vide out section = 2.5e-9
11h21 Att sec 0.8dB vide in section = e-9 vide out section = e-9
11h27 Att sec 0.7dB vide in section = 9.5e-9 vide out section = 6.8e-9
11h32 Att sec 0.6dB vide in section = 9.2e-9 vide out section = 7.9e-9
11h38 Att sec 0.5dB (Pis=22MW) vide in section = e-9 vide out section = e-9
12:39 : Interlock ? (scope Auto -> Norm to catch last signal)
12:51 : Interlock section
13:28 : Att sec 0.5dB (Pis=22MW)
14h03 Interlock à 0.5 dB
14h07 Att sec 0.4 dB vide in section = e-9 vide out section = e-9
14h50 interlock 0.4 dB
17h40 interlock 0.4 dB
18h55 fin
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|
896
|
Fri Aug 2 11:00:49 2024 |
VM, HG, RC, SC | Under Process | Shift summary | RF D1 |
|
RF conditionning : 2 aout | |
Start from 10 dB
decrease up to 1 dB : Vacuum is OK decrease up to 10â»8 mBar
11h10 : att.sec 0.7 dB ==> vide in section 1.1 10-8 mbar & vide out section 8 10-9 mbar
yesterday : att.sec 0.7 dB (Pis = 21 MW) ==> vide in section 1.1 10-8 mbar & vide out section 1.1 10-8 mbar
11h15 : att.sec 0.6 dB ==> vide in section 1.0 10-8 mbar & vide out section 1 10-8 mbar
yesterday : att.sec 0.6 dB (Pis = 21.5 MW) ==> vide in section 1.2 10-8 mbar & vide out section 1.3 10-8 mbar
11h22 : att.sec 0.5 dB ==> vide in section 1.0 10-8 mbar & vide out section 1 0-8 mbar
yesterday : in section à 1.1 10-8 mbar & vide out section 1.4 10-8 mbar
11h30 : att.sec 0.4 dB ==> vide in section 1.0 10-8 mbar & vide out section 1 1-8 mbar
yesterday : in section à 1 10-8 mbar & vide out section 1.4 10-8 mbar
11h38 : att.sec 0.3 dB ==> vide in section 1.0 10-8 mbar & vide out section 1 1-8 mbar
yesterday : in section à 1 10-8 mbar & vide out section 1.4 10-8 mbar
11h39 : Interlock section V4 jump
11h40 :Back to 0.4 dB
11h46 :Back to 0.3 dB : vacuum V4, V5 < 10^-8 mBar, V4 decrease
12h07 : Interlock machine with V4 jump
12h08 :Back to 0.4 dB
12h15 : Interlock machine
12h22 : Interlock machine
​12h25 : Interlock machine
12h28 :Back to 3.4 dB
​12h28 : Interlock machine
​12h28 : Start with lower voltage HT : 1205 V, Att 0.4 dB
12h32 :Back to 0.1 dB, HT 1205​
12h42 : Interlock machine, V5 increase
​12h58 : Interlock section no vacuum increase
​13h10 : restart after 10 minutes to relax the machine
​13h18 : HT --> 1208
​13h20 : Interlock section no vacuum increase
​13h30 : Att back to 3dB and decrease slowly : 0.9 dB now
​13h38 : Att 0.8 dB
13h44 : Att 0.7 dB ==> vide in section 9.9 10-9 mbar & vide out section 1.1 0-8 mbar
14h : Att 0.6 dB ==> vide in section 9.9 10-8 mbar & vide out section 1.2 0-8 mbar
14h15 : Att 0.5 dB ==> vide in section 9.2 10-8 mbar & vide out section 1.2 0-8 mbar
14h30 : Att 0.4 dB ==> vide in section 10-8 mbar & vide out section 1.2 0-8 mbar
14h34 : Att 0.3 dB
14h42 : Att 0.2 dB vide in section 8e-9 vide out section 1.1 e-8
Interlock 14h43 mais pas de réfléchi => passsage en mode persistence sur l'oscillo pour vérifier qu'il n'y a pas du tout de réfléchi
14h53 => on est revenu a Att. 0.2 dB => in section 8e-9 vide out section 1.1 e-8
15h00 => on est passé à Att. 0.1 dB => interlock encore mais on ne voit pas de réfléchi !
relance immédiate à Att. 0.1 dB => in section 7e-9 vide out section 9e-9
15h22 : att.sec 10 dB apres interlock reseau
15h23 : interlock sans reflechi visible sur oscillo
15h25 : interlock reseau
15h26 : att sec 10dB ==> vide in section 2.6 10-9 mbar & vide out section 8 10-9 mbar
15h29 passage à 15dB
15h32 : att sec 14 dB ==> vide in section 1.5 10-9 mbar & vide out section 2.4 10-9 mbar
15h33 : interlock reseau
15h35 : att sec
15h37 interface rf conditionning ne marche plus pour bouger attenuateur, rechargement de l'interface, semble ok maintenant
15h38 : att.sec 20 dB ==> vide in section 1.4 10-9 mbar & vide out section 2.3 10-9 mbar
15h40 : att sec 20 dB interlock sans réfléchi visible sur oscillo
15h40 relance à 20 dB
15h44 interlock sans reflechi klystron
15h45 : relance à 20dB
15h46 : interlock reseau
15h47 Pause de 10 minutes
16h00 reprise avec att sec 10dB ==> vide in section 2.7 10-9 mbar & vide out section 2.1 10-9 mbar
16h06 att sec 9dB ==> vide in section 2.9 10-9 mbar & vide out section 2 10-9 mbar
16h10 att sec 8dB ==> vide in section 3.3 10-9 mbar & vide out section 2 10-9 mbar
16h14 att sec 7dB ==> vide in section ? 10-9 mbar & vide out section ? 10-9 mbar
16h14 interlock
16h15 reprise att sec 7dB ==> vide in section 3.5 10-9 mbar & vide out section 2 10-9 mbar
16h22 att sec 6dB ==> vide in section 3.9 10-9 mbar & vide out section 1.9 10-9 mbar
16h27 att sec 5dB ==> vide in section 4.3 10-9 mbar & vide out section 1.9 10-9 mbar
16h31 att sec 4dB ==> vide in section 4.5 10-9 mbar & vide out section 1.9 10-9 mbar
16h35 att sec 3dB ==> vide in section 4.9 10-9 mbar & vide out section 2 10-9 mbar
16h39 att sec 2dB ==> vide in section 4.9 10-9 mbar & vide out section 2 10-9 mbar
16h43 att sec 1dB ==> vide in section 7.5 10-9 mbar & vide out section 2.8 10-9 mbar
16h47 att sec 0.9 dB ==> vide in section 8.7 10-9 mbar & vide out section 4.3 10-9 mbar
16h51 att sec 0.8 dB ==> vide in section 9.3 10-9 mbar & vide out section 6.4 10-9 mbar
16h55 att sec 0.7 dB ==> vide in section 9.5 10-9 mbar & vide out section 7.7 10-9 mbar
16h59 att sec 0.6 dB
17h interlock reseau
17h01 att sec 0.6 dB ==> vide in section 9.2 10-9 mbar & vide out section 8.7 10-9 mbar
17h05 att sec 0.5 dB ==> vide in section 9 10-9 mbar & vide out section 9 10-9 mbar
17h10 att sec 0.4 dB ==> vide in section 8.4 10-9 mbar & vide out section 1 10-8 mbar
17h42 interlock 0.4dB sans observation reflechi klystron
17h44 att sec 0.4 dB
17h46 att sec 0.3 dB ==> vide in section 7.8 10-9 mbar & vide out section 1 10-8 mbar
18h09 att sec 0.2 dB ==> interlock reflechi section
18h10 Fin de shift
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|
895
|
Thu Aug 1 08:43:29 2024 |
Iryna, Sophie, Viktor, Slava | | Shift summary | Linac Commissionning |
|
conditionnement de la section RF@ 3µs & 25 Hz | |
8h40 Warm-up the modulator
*** reprise de conditionnement @ 3µs & 25 Hz
9h43 Trig modulator
9h50 Problème avec la température du chiller qui n'est pas à la consigne, retour en standby modulateur, on/off chiller pour essayer de relancer
10h23 HT = 1215V, att = 10dB, 25Hz, pic de vide
10h31 : att. sec 9dB, légère augmentation du vide
10h40 : att.sec 8 dB ==> vide in section 4 10-9 mbar & vide out section 1.3 10-9 mbar
10h42 : att.sec 7 dB ==> vide in section 4.9 10-9 mbar & vide out section 1.3 10-9 mbar
10h44 : att.sec 6 dB ==> vide in section 6 10-9 mbar & vide out section 1.3 10-9 mbar
10h47 : att.sec 5 dB ==> vide in section 7 10-9 mbar & vide out section 1.4 10-9 mbar
10h50 : att.sec 4 dB ==> vide in section 7.5 10-9 mbar & vide out section 1.4 10-9 mbar
10h54 : att.sec 3 dB ==> vide in section 7.8 10-9 mbar & vide out section 1.6 10-9 mbar
11h01 : att.sec 2 dB ==> vide in section 7.7 10-9 mbar & vide out section 1.6 10-9 mbar
11h08 : att.sec 1 dB (Pis = 19.6 MW) ==> vide in section 8.6 10-9 mbar & vide out section 2.6 10-9 mbar
11h15 : Interlock
11h16 : retour à 5 dB
11h20 : att sec 1dB ==> vide in section 9 10-9 mbar & vide out section 3 10-9 mbar
11h34 : att.sec 0.9 dB (Pis = 20 MW) ==> vide in section 1.1 10-8 mbar & vide out section 7.1 10-9 mbar
11h46 : att.sec 0.8 dB (Pis = 20.6 MW) ==> vide in section 1.1 10-8 mbar & vide out section 1 10-8 mbar
12h00 : att.sec 0.7 dB (Pis = 21 MW) ==> vide in section 1.1 10-8 mbar & vide out section 1.1 10-8 mbar
12h15 : att.sec 0.6 dB (Pis = 21.5 MW) ==> vide in section 1.2 10-8 mbar & vide out section 1.3 10-8 mbar
12h19 : Interlock
12h23 HT = 1115V, att = 6.6dB, 25Hz,
12h27 HT = 1215V, att = 6.6dB, 25Hz
12h34 HT = 1215V, att = 0.7dB, Interlock
12h36 HT = 1115V, att = 5.7dB,
12h40 HT = 1215V, att = 1.7dB,
12h41 HT = 1215V, att = 0.7dB,
12h44 : att.sec 0.7 dB (Pis = 21 MW) ==> vide in section 1.1 10-8 mbar & vide out section 1.0 10-8 mbar
12h55 : att.sec 0.6 dB (Pis = 21.5 MW) ==> vide in section 1.2 10-8 mbar & vide out section 1.3 10-8 mbar
13h02 : Interlock
13h05 HT = 1115V, att = 0.6dB
13h07 : att.sec 0.6 dB (Pis = 21.5 MW) ==> vide in section 1.0 10-8 mbar & vide out section 1.1 10-8 mbar
13h10 : Interlock
13h12 HT = 1175V, att = 0.6dB
13h15 : att.sec 0.6 dB (Pis = 21.5 MW) ==> vide in section 1.2 10-8 mbar & vide out section 1.4 10-8 mbar
13h22 : Interlock
13h23 HT = 1175V, att = 0.6dB
13h25 : HT = 1275V, att = 0.6dB Interlock
13h26 HT = 1175V, att = 0.6dB
13h27 HT = 1215V, att = 0.6dB
13h28 : Interlock
13h30 HT = 1175V, att = 0.6dB
13h32 HT = 1215V, att = 0.6dB
13h34 : Interlock
13h44 : Interlock (Klystron)
13h50 : HV Standby (Chck SF6 2.5Bar)
13h58 HT = 1175V, att = 0.6dB
14h00 : Interlock
14h04 HT = 1215V, att = 0.6dB
14h06 : Interlock
14h12 HT = 1215V, att = 3.6dB
14h18 HT = 1215V, att = 1 dB
14h22 HT = 1215V, att = 0.9 dB
14h25 HT = 1215V, att = 0.8 dB (Pis=20.6 MW) ==> Vide démarre : in section à 1 10-8 mbar & vide out section 9.4 10-9 mbar
14h35 HT = 1215V, att = 0.7 dB ->0.6 dB ==> Vide démarre : in section à 1.1 10-8 mbar & vide out section 1.2-1.3 10-8 mbar
15h00 HT = 1215V, att = 0.5 dB ==> Vide démarre : in section à 1.1 10-8 mbar & vide out section 1.4 10-8 mbar
15h50 HT = 1215V, att = 0.5 dB 2 Breakdowns RF structure (screenshots)
15h59 : Interlock
16h05 HT = 1215V, att = 0.4 dB ==> Vide démarre : in section à 1 10-8 mbar & vide out section 1.4 10-8 mbar
16h10 HT = 1215V, att = 0.4 dB Breakdown klysron (screenshot)
16h20 HT = 1215V, att = 0.3 dB ==> Vide démarre : in section à 9.6 10-9 mbar & vide out section 1.3-1.4 10-8 mbar
16h22 : Interlock
16h36 HT = 1215V, att = 0.3 dB 1 Breakdown RF structure (screenshot)
16h38 : 1 Interlock
16h40 HT = 1215V, att = 0.2 dB ==> Vide démarre : in section à 9.3 10-9 mbar & vide out section 1.2-1.3 10-8 mbar
16h44 : 1 Interlock
16h51 : 1 Interlock
16h54 HT = 1215V, att = 0.2 dB Breakdown klysron (screenshot)
17h00 HT = 1215V, att = 0.1 dB ==> Vide démarre : in section à 8 10-9 mbar & vide out section 1.1 10-8 mbar
17h07 HT = 1215V, att = 0.1 dB 1 Breakdown RF structure (screenshot)
17h08 : 2 Interlock
17h12 : 1 Interlock
17h14 HT = 1215V, att = 0.1 dB 1 Breakdown RF structure
Vide : in section à 5.9 10-9 mbar & vide out section 9.5 10-8 mbar
17h18 : Stop of the shift
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| Attachment 1: Screenshot_from_2024-08-01_14-38-53.png
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| Attachment 2: breakdown_0.5dB_25Hz_3us_15h49.png
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| Attachment 3: vide_15h49_25Hz_3us_0.5dB.png
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| Attachment 4: breakdown_0.5dB_25Hz_3us_15h55.png
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| Attachment 5: vide_15h55_3us_25Hz_0.5dB.png
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| Attachment 6: breakdown_0.4dB_25Hz_3us_16h10.png
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| Attachment 7: vide_16h10_3us_25Hz_0.4dB.png
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| Attachment 8: breakdown_0.3dB_25Hz_3us_16h36.png
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| Attachment 9: vide_16h36_3us_25Hz_0.3dB.png
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| Attachment 10: breakdown_0.2dB_25Hz_3us_16h54.png
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| Attachment 11: vide_16h54_3us_25Hz_0.2dB.png
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| Attachment 12: breakdown_0.1dB_25Hz_3us_17h07.png
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| Attachment 13: vide_17h08_3us_25Hz_0.1dB.png
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| Attachment 14: vide_17h15_3us_25Hz_0.1dB.png
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894
|
Wed Jul 31 09:58:14 2024 |
M.O, M ELK, Slava , Iryna | Under Process | Linac | LI | TL | LE | Ring | Diag | Aimants | CC | Infra | Laser | Opt | RF D1 | RF Anneau | MECA | SY | Vide | Electronique | Linac Commissionning | Ring Commissioning |
|
Conditionnement section 31/07 | |
signaux RF mesurés :
avec Oscillo :
orange : reflechi section Prs
violet: incident section Pis
vert: refléchi Klystron Prk
jaune : incident Klystron Pik
avec la carte Redpitaya:
vert : puissance transmise dans la charge fin de section Pchargesection
rouge : puissance reflechi section Prs
blue: puissance incidente section Pis
Pression SF6 = 2.35 bar => JN a completer le remplissage pour réajuster la pression de SF6 pour la mettre à 2.5 bar
NB: vide sans HF @ 30 °C : in section 1.1 10-9 mbar & out section 1.2 10-9 mbar ==> vide milieu section devrait etre plus ( facteur 8 à 10) qu à l'entrée et sortie section
Suggestion: le splitter de puissance de la section est équipé en plus de deux ports de pompage additionnels DN40CF (voir image jointe ) ==> pour améliorer le pompage il va falloir rajouter au moins une pompe additionnelle à l'entrée de la section
**** reprise de conditionnement @ 3µs & 25 Hz
Mettre att. Sec à 10 dB et augmenter la HT progressivement et en douceur jusqu'à Alim 1215 V & HT=288 kV (Pik =33 MW)
Puis faire baisser att. sec en douceur
10h30 : att.sec 6 dB (Pis=6MW) ==> vide in section 5.5 10-9 mbar & vide out section 1.3 10-9 mbar
10h45: att. sec 5.5 dB (Pis=7 MW) ==> vide in section 5.5 10-9 mbar & vide out section 1.3 10-9 mbar
10h50: att. sec 5 dB (Pis=7.8 MW) ==> vide in section 5.5 10-9 mbar & vide out section 1.3 10-9 mbar
11h00: att. sec 4.5 dB (Pis=8.7 MW) ==> vide in section 5.5 10-9 mbar & vide out section 1.3 10-9 mbar
11h05: att. sec 4 dB (Pis=9.8 MW) ==> vide in section 5.6 10-9 mbar & vide out section 1.3 10-9 mbar
11h10: att. sec 3.5 dB (Pis=11 MW) ==> vide in section 5.7 10-9 mbar & vide out section 1.3 10-9 mbar
11h15: att. sec 3 dB (Pis=12.4 MW) ==> vide in section 7.4 10-9 mbar & vide out section 2.3 10-9 mbar
11h 25: att. sec 2.5 dB (Pis=13.9 MW) ==> vide in section 6.2 10-9 mbar & vide out section 1.8 10-9 mbar
11h 35: att. sec 2 dB (Pis=15.6 MW) ==> vide in section 6.2 10-9 mbar & vide out section 1.8 10-9 mbar
11h 45: att. sec 1.5 dB (Pis=17.5 MW) ==> vide in section 6 10-9 mbar & vide out section 1.5 10-9 mbar
11h 50: att. sec 1 dB (Pis=19.6 MW) : au début le vide monte ==> @ 13H15 vide in section 1.3 10-8 mbar & vide out section 1 10-8 mbar
13h20: coupure HF sans aucun reflechi visible sur le scope (interlock machine)
@ 14h00 vide in section 1.2 10-8 mbar & vide out section 9 10-9 mbar
* Faire durer le conditionnement entre att. sec 1 dB (Pis=19.6 MW) et 0.1 dB (Pis=24 MW) pour voir l'évolution du vide vs time
* faire baisser l'attenuation de 0.1 dB
14h00 : att. sec 0.9 dB (Pis=20 MW) ==> Vide démarre : in section à 1.3 10-8 mbar & vide out section à 1.3 10-8 mbar ==> @15h00: vide in section 1.3-1.4 10-8 mbar & vide out section 1.3 10-8 mbar
14h52 : att. sec 0.9 dB (Pis=20 MW) Breakdown in the section (screenshot)
15h07 : Interlock machine
15h10 : att. sec 0.8 dB (Pis=20.6 MW) ==> Vide démarre : in section à 1.3-1.4 10-8 mbar & vide out section 1.3 10-8 mbar ==> @16h10 : vide in section 1.4 10-8 mbar & vide out section 1.5 10-8 mbar
16h10 : att. sec 0.7 dB (Pis= 21MW) ==> Vide démarre : in section à 1.4 10-8 mbar & vide out section 1.6 10-8 mbar ==> @17h00 : vide in section 1.310-8 mbar mbar & vide out section 1.6 10-8 mbar
17h30 Stop the shift |
| Attachment 1: image_de_splitter_.png
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| Attachment 2: breakdown_25Hz_3us_09dB_14h52.png
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893
|
Tue Jul 30 10:17:06 2024 |
M.O, M ELK, Hayg, Slava | Under Process | Shift summary | LI | RF D1 |
|
Conditionnement section SC/ME/MO/VK/HG | |
signaux RF mesurés :
avec Oscillo :
orange : reflechi section Prs
violet: incident section Pis
vert: refléchi Klystron Prk
jaune : incident Klystron Pik
avec la carte Redpitaya:
vert : puissance transmise dans la charge fin de section Pchargesection
rouge : puissance reflechi section Prs
blue: puissance incidente section Pis
NB: Pression SF6 2.4 bar à reajuster
Le passage de 10Hz à 25 Hz => Puissance moyenne (25Hz) = puissance moyenne (10Hz) X 2.5
*** Passage à 25Hz & 1µs
Au Demmarage Mettre att. sec 10 dB et faire augmenter la HT en douceur de 1000 V jusqu'à (Alim 1215 V & 289 kV ==> Pik=33 MW)
Puis Faire baisser att. sec en douceur : ci-dessous quelques points de mesures
11h16 : att. sec 3 dB (Pis=12 MW) 1µs & 25 Hz ==> vide in sec 4 10-9 mbar out section 1.5 10-9 mbar
11h20 : att. sec 2.5 dB (Pis=14 MW) 1µs & 25 Hz ==> vide in sec 3.7 10-9 mbar out section 1.4 10-9 mbar
11h25 : att. sec 2 dB (Pis=15 MW) 1µs & 25 Hz ==> vide in sec 3.7 10-9 mbar out section 1.4 10-9 mbar
11h30 : att. sec 1.5 dB (Pis=17 MW) 1µs & 25 Hz ==> vide in sec 3.7 10-9 mbar out section 1.4 10-9 mbar
11h35 : att. sec 1 dB (Pis=19 MW) 1µs & 25 Hz ==> vide in sec 6.9 10-9 mbar--> ? ca ne baisse pas out section 2.7 10-9 mbar --> ? ca ne baisse pas
12h 04 : att. sec 0.9 dB (Pis=20 MW) 1µs & 25 Hz ==> vide in sec 7.910-9 mbar--> ? ca ne baisse pas out section 3.8 10-9 mbar --> ?ca ne baisse pas
NB: la pompe en amont de la section passe de 1.2 10-9 mbar à 3.5 10-9 mbar
12h 12: att. sec 0.8 dB (Pis=20.5 MW) 1µs & 25 Hz ==> vide in sec 7.910-9 mbar--> ? out section 4.3 10-9 mbar --> ?
12h 20: att. sec 0.7 dB (Pis=21MW) 1µs & 25 Hz ==> vide in sec 7.9 10-9 mbar--> ? ca ne baisse pas out section 5 10-9 mbar-->? ca ne baisse pas
12h 30: att. sec 0.6 dB (Pis=21.5MW) 1µs & 25 Hz ==> vide in sec 7.7 10-9 mbar--> ? /out section 5.110-9 mbar --> ?
12h 35 : att. sec 0.5 dB (Pis=22 MW) 1µs & 25 Hz ==> vide in sec 7.3 10-9 mbar--> ? /out section 6.2 10-9 mbar --> ?
12h45 : att. sec 0.4 dB (Pis=22.5 MW) 1µs & 25 Hz ==> vide in sec 6.9 10-9 mbar--> ? /out section 5.9 10-9 mbar --> ?
13h00: att. sec 0.3 dB (Pis=23 MW) 1µs & 25 Hz ==> vide in sec 6.6 10-9 mbar--> ? /out section 7.4 10-9 mbar --> ?
13h10: att. sec 0.2 dB (Pis=23.5 MW) 1µs & 25 Hz ==> vide in sec 6 10-9 mbar --> ? /out section 6.7 10-9 mbar --> ?
13h30: att. sec 0.1 dB (Pis=24 MW) 1µs & 25 Hz ==> vide in sec 5.4 10-9 mbar-->4.9 10-9 mbar ? /out section 6 10-9 mbar --> 5.6 10-9 mbar ?
** 14h00 : passage à 3 µs et 25 Hz
Mettre att. sec 6 dB et passer à 3 µs
14h20: att. sec 5.5 dB (Pis=5.5 MW) 3µs & 25 Hz ==> vide in sec V4 > V5 < 10⁻8
14h25: att. sec 5.0 dB (Pis=7.8 MW) 3µs & 25 Hz ==> vide in sec V4 > V5 < 10⁻8
14h35: att. sec 4.5 dB (Pis=8.8 MW) 3µs & 25 Hz ==> vide in sec V4 > V5 < 10⁻8
14h49: att. sec 4.0 dB (Pis=9.9 MW) 3µs & 25 Hz ==> vide in sec V4 > V5 < 10⁻8
14h55: att. sec 3.5 dB (Pis=11.6 MW) 3µs & 25 Hz ==> vide in sec V4 > V5 < 10⁻8
15h11: att. sec 3.0 dB (Pis=12.4 MW) 3µs & 25 Hz ==> vide in sec V4 > V5 < 10⁻8 (V5 jump)
15h37: att. sec 2.5 dB (Pis=13.9 MW) 3µs & 25 Hz ==> vide in sec V4 > V5 < 10⁻8 (V4, V5 decrease. Out MP ? )
15h44: att. sec 2.0 dB (Pis=15.6 MW) 3µs & 25 Hz ==> vide in sec V4 > V5 < 10⁻8 (V4, V5 small jump )
15h50: att. sec 1.5 dB (Pis=17.5 MW) 3µs & 25 Hz ==> vide in sec V4 > V5 < 10⁻8 (V5 jump, V4 nothing )
15h56: att. sec 1.0 dB (Pis=19.7 MW) 3µs & 25 Hz ==> vide in sec V4 >= V5 > 10⁻8 (V4, V5 strong jump )
16:30 : interlock section
16h34: att. sec 1.2 dB (Pis=18.9 MW) 3µs & 25 Hz ==> vide in sec V4 > V5 (V4, V5 strong jump )
16h37 : Standby --> Acces casemate JN/GM pour recuperer watmetre
16h48: att. sec 1.1 dB (Pis=18.9 MW) 3µs & 25 Hz ==> vide in sec V4 > V5 (V4, V5 strong jump )
16h52 : Interlock machine
16h55: att. sec 1.0 dB (Pis=18.9 MW) 3µs & 25 Hz ==> vide in sec V4 > V5 > 10⁻8 (V4, V5 mieux que 15h56 )
17h : Interlock reseau
17:02 att. sec 0.9 dB (Pis=18.9 MW) 3µs & 25 Hz ==> vide in sec V5>V4 (V4, V5 stable)
petits tests :
17:04 att. sec 0.8 dB (Pis=18.9 MW) 3µs & 25 Hz ==> vide in sec V5>V4 (V4 : activités, V5 jump puis stable)
17:06 att. sec 0.7 dB (Pis=18.9 MW) 3µs & 25 Hz ==> vide in sec V5>V4 (idem )
17h10 : End apres un interlock machine
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| Attachment 1: Vide_Screenshot_2024-07-30_17-13-24.png
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|
892
|
Mon Jul 29 09:34:57 2024 |
M ELK, Slava, Iryna, Hayg | Under Process | Linac | LI | TL | LE | Ring | Diag | Aimants | CC | Infra | Laser | Opt | RF D1 | RF Anneau | MECA | SY | Vide | Electronique | Linac Commissionning | Ring Commissioning |
|
Conditionnement section 29/07 | |
signaux RF mesurés :
avec Oscillo :
orange : reflechi section Prs
violet: incident section Pis
vert: refléchi Klystron Prk
jaune : incident Klystron Pik
avec la carte Redpitaya:
vert : puissance transmise dans la charge fin de section Pchargesection
rouge : puissance reflechi section Prs
blue: puissance incidente section Pis
Reprise de conditionnement à 3µs & 10Hz entre 1dB (Pis=19.6 MW ) et 0.1 dB (Pis=24 MW)
NB: intervention de groupe de vide : pour faire un test fermeture de la vanne de sortie par exemple . sa fermeture n'a aucun impact sur le pompage ==> on a décidé de laisser les vannes ouvertes.Selon Bruno il faut du temps pour le pompage
12h13: att sec 0.8 dB (20.5MW)
12h20: att sec 0.7 dB (21MW) ==> niveau de vide entrée 1.2 10-8 mbar, niveau de videsortie 1.3 10-8 mbar
12h 30: att sec 0.6 dB (21.5MW) ==> niveau de vide entrée section 1.1 10-8 mbar niveau vide sortie section 1.4 10-8 mbar
12h 37: att sec 0.6dB (21.5MW) claquage section (reflechi section signal orange) voir image saved
mettre att. sec à 1dB puis trig et faire baisser l'attenuation de 0.05dB (0.25 MW)
12h40: att. sec 0.6dB (21.5MW)
12h50: att. sec 0.55dB (21.8MW)
13h00: att. sec 0.5dB (22MW)
Due to the internet problem lost the information written between 13h and 15h. In summary, stable operation for 0.5 dB -> 0.3 dB
15:15 : 0.3 dB -> 0.2 dB idem
15:19 : 0.2 dB several breakdowns (see screenshot)
15:23 : 0.2 dB -> 0.5 dB
15:30 : Starting to decrease the attenuation towards 0.1 dB: -> 0.4 dB -> 0.3 dB-> 0.2 dB
15:35 : 0.2 dB 2 breakdowns (see screenshot) -> 0.3 dB
15:50 : 0.2 dB one breakdown
15:57 : 0.2 dB one breakdown
15:58 : 0.3 dB
16:08 : 0.3 dB two breakdowns
16:10 : 0.3 dB breakdown section
16:13 : several breakdowns section 0.3 dB: -> 1 dB
Waiting until vacuum will stabilize
NB: pb de pompage : pompage est lent. Le pompage le section RI n'est pas efficace à des niveaux de haute puissances.
17 h27 passage à 25Hz & 3us pour voir le dégasage
att. sec 4 dB (Pis=10MW)
|
| Attachment 1: Interlock_Sec_0.2dB_10Hz_3µs_15_19.png
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| Attachment 2: Interlock_Sec_0.2dB_10Hz_3µs_15_35.png
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|
891
|
Fri Jul 26 10:12:42 2024 |
M.O, M ELK , Iryna, Hayg | Not Fixed | Linac | LI | TL | LE | Ring | Diag | Aimants | CC | Infra | Laser | Opt | RF D1 | RF Anneau | MECA | SY | Vide | Electronique | Linac Commissionning | Ring Commissioning |
|
Conditionnement section 26/07 | |
signaux RF mesurés :
avec Oscillo :
orange : reflechi section Prs
violet: incident section Pis
vert: refléchi Klystron Prk
jaune : incident Klystron Pik
avec la carte Redpitaya:
vert : puissance transmise dans la charge fin de section Pchargesection
rouge : puissance reflechi section Prs
blue: puissance incidente section Pis
Reprise de conditionnement autour de att sec = 0.1 dB @ 3 µs et 10 Hz
* Mettre attenuation section @ 10 dB et faire augmenter la HT progressievement et en douceur jusqu à (alim 1215 V & HT 288 kV correspondant à Pik=33 MW)
pb de pompage probabalement volume trés grand (pompage outside section):
mise en standby 10h55 : intervention de groupe vide pour voir si on peut améliorer le pompage en faisant le réglage de paramètre de la pompe ou fermer les deux vannes entrée et sortie section.
MPS interdit la fermeture des deux vannes ===> contacter Noureddine par émail et téléphone ( télétravail) pour une intervention
11:05 redemarrage HF
att section 1dB ==> vide <1.2 10-8 mbar
11h33 att sec 0.8 dB (Pis=20.5 MW) ==>vide in section =1.3 10-8 mbar , vide out section 1.2 10-8 mbar
11h38 att sec 0.7 dB (Pis=21 MW) ==>11h41 : claquage section avec pic vide
11h45 att sec 0.5 dB (Pis=22 MW) ==> vide <1.3 10-8
11h51 att sec 0.4 dB (Pis=22.5 MW) ==> vide <1.4 10-8
11h56 att sec 0.3 dB (Pis=23 MW) ==> claquage section ==> pic vide @11h57 (image saved)
12h05 att sec 0.1 dB (Pis=24 MW) ==> claquage dans section à 3µs revenir à 1µs , 2µs pour att. sec 0.1 dB voir si ca tient
13h10 intervention groupe vide dans la casemate ==>standby
14:30 : Beaucoup d'interlock au démarrage
14:30 : 3µs --> 1 µs
14:40 : 1µs --> 2 µs interlocks
14:40 : 2µs --> 1 µs -
15:06 : 1µs --> 2 µs.==> vide < 8.10-9 mbar
15:32 :coupure HF sans aucun signal réfléchi visible sur le scope , vide OK,
15h33 : 2 µs
16h34 : breakdown screenshot
16h41 : breakdown screenshot
16h56 : coupure HF sans aucun signal réfléchi visible sur le scope
17h15 : breakdown screenshot
17h15 : Stop for today
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| Attachment 1: 0.1dB_2us_10Hz_16-41-51.png
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| Attachment 2: 0.1dB_2us_10Hz_16-34-07.pn
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| Attachment 3: 0.1dB_2us_10Hz_17-15.png
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 |
|
890
|
Thu Jul 25 09:15:25 2024 |
M ELK, SC, MO | Fixed | Linac | LI | TL | LE | Ring | Diag | Aimants | CC | Infra | Laser | Opt | RF Anneau | MECA | SY | Vide | Electronique | Linac Commissionning | Ring Commissioning |
|
Conditionnement section 25/07 | |
9h00 Mise en route modulateur
signaux RF mesurés :
avec Oscillo :
orange : reflechi section Prs
violet: incident section Pis
vert: refléchi Klystron Prk
jaune : incident Klystron Pik
avec la carte Redpitaya:
vert : puissance transmise dans la charge fin de section Pchargesection
rouge : puissance reflechi section Prs
blue: puissance incidente section Pis
*Reprise de conditionnement à 2 µs & 10 Hz autour de la puissance Pis=24 MW ( attenuation sect 0.1 dB)
- mettre attenuateur section @ 3 dB puis augmenter Pik progressivement et en douceur ( Alim de 1000V à 1215 V) pour atteindre Pik= 33 MW (Alim 1215V & HT 288 kV)
Faire baisser att sec de 3 dB à 0.1 dB
- 10h30 att sec 0.1 dB (Pis=24 MW) claquage dans sec @ 10h45 ==> pic vide
* Passage à 3 µs & 10 Hz @11H
-mettre att sec à 4 dB puis passer 3µs
- faire baisser att sec progressivement
- 11 h03 :att sec 3 dB ( Pis= 12 MW)
- 11h05: att sec 2.5 dB (Pis=14 MW ) ==> vide out sec 6.10-9 mbar & vide in sec 8.10-9 mbar
- 11h08 : att sec 2 dB (Pis=15.5MW ) ==> vide out sec 6.10-9 mbar & vide in sec 8.10-9 mbar
- 11h11 : att sec 1.5dB (Pis=17.5MW ) ==> vide out sec 6.10-9 mbar & vide in sec 8.10-9 mbar
- 11h15 : att sec 1 dB (Pis=19.5MW ) ==> vide 1.6 10-8 mbar
- 11h20 claquage in section à att sec 0.5 dB (Pis=22 MW)
- 11h 29 retour à att sec 1dB
- 11h45 att.sec 0.8 dB (Pis =20 MW) ==> vide <2.1 10-8 mbar
- 11h58 att.sec 0.7dB (Pis =21 MW) ==> vide <2.2 10-8 mbar
- 12h10 att.sec 0.6dB (Pis =21.5MW) ==> vide <2.2 10-8 mbar : claquage @12h11
- 12h32 att sec 0.7 dB (Pis=21 MW) ==> claquage et pic vide voir images saved
- 12h35 faire un sweep entre 1dB (Pis=19.5 MW) et 0.1 dB (Pis=24 MW) avec un pas de 0.05 dB ( automated conditionning) :
*claquage dans section @ 0.3 dB ==> pic vide
*claquage réseau HF @ 0.7 dB : reflechi Klystron uniquement voir image jointe
Arrêt à 13h23 pour vérifier SF6 ==> SF6 ok Pression 2.6 bar
14h00 att sec 0.6 dB claquage dans réseau (signal reflechi Klystron)
NB: Att sec 1.6 dB coupure HF modulateur se met en stand by ==>Intervention de Maher, message Klystron : defaut pompe ionique Klystron a entrainé le filament klystron à sa limite basse
Aprés redémarrage de klystron à 2 dB le filament est à la bonne valeur et ca recoupe HF toute de suite aprés ==>diagnostic: le courant de la pompe pompe ionique de klystron a passé à la limite haute (>4µA) . impossible de la redemarrer instantanément à la HT nominale (Alim 1215V & HT 288 kV).
En baissant la HT à 1000V le courant de la pompe baisse et faire augmenter HT progressivement jusquà la valeur nominale .
15h29 att sect 0.7 dB coupure HF sans aucun signal reflechi visisble sur le scope
15h30 redemarrage HF @ att sec 0.7 dB 15h42 coupure HF sans aucun signal reflechi visisble sur le scope
15h45 redémarrage HF ca coupe à 0.7 dB 15h48 sans aucun signal reflechi visisble sur le scope
15h50 redémarrage HF at 16h05 claquage dans section att. sec 0.3 dB (Pis= 23 MW) avec un pic de vide
16h07 redemarrage HF : att sec 0.4 dB ==> vide < 1.6 10-8 mbar
16h19 att sec 0.2 dB claquage section 16h21 avec pic vide
16h22 redémarrage HF claqauge @ att. sec 0.1 dB (Pis=24 MW) 16H30 avec pic vide
16h35 claquage dans réseau HF @ att . sec 0.3 dB (reflechi klystron uniquement "vert") voir image jointe
16h38 @ att . sec 1 dB ==> Klystron se met en off (aucun réflechi voir image jointe)
Arret de conditionnement 16h38
Intervention de Maher
L'interlock qui a mis off le modulateur c'est le courant filament klystron, limite basse, nous avons redémarré et nous avons eu interlock pompe ionique >4 uA
J'ai envoyé à SCANDINOVA pour prévenir ( 2 fois ) (Maher)
plusieurs claquage section, pb de pompage section ( il faut attendre un temps pour pouvoir remettre la HF ) conditionnement ( 3 us, 1200 V et att 0.1 dB ) |
| Attachment 1: 0.7_dB_3µs_10Hz__13h04__claquage_réseau_HF.png
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| Attachment 2: 0.3dB_3us_10Hz_16h35.png
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| Attachment 3: 1dB_3us_10Hz_16h38.png
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|
889
|
Tue Jul 23 17:43:23 2024 |
MJ | | Linac | LI |
|
Trends - conditionnement section 23 juillet | |
Je viens de sauvegarder les trends conditionnement d'aujourd hui dans data/shared du jour |
|
888
|
Tue Jul 23 11:55:42 2024 |
MO, MELK, MJ | Under Process | Linac | LI | TL | LE | Ring | Diag | Aimants | CC | Infra | Laser | Opt | RF D1 | RF Anneau | MECA | SY | Vide | Electronique | Linac Commissionning | Ring Commissioning |
|
Conditionnement section 23/07 | |
Reprise de conditionnement section 23/07 @ 10H30: largeur impulsion 0.5 µs @10 Hz ( voir images )
signaux RF mesurés :
avec Oscillo :
orange : reflechi section Prs
violet: incident section Pis
vert: refléchi Klystron Prk
jaune : incident Klystron Pik
avec la carte Redpitaya:
vert : puissance transmise dans la charge fin de section Pchargesection
rouge : puissance reflechi section Prs
blue: puissance incidente section Pis
* Mettre attenuation section 10 dB
* Augmenter Pik progressivement et en douceur jusqu'à sa valeur nominale Pik=33 MW ( Alim 1215 V & HT 288 kV)
* Puis faire baisser attenuation section de 10 dB progressivement et en douceur
*attenuation section 0.25 dB==> puissance incidente section Pis =23 MW ==> vide section <3.10-9 mbar
* attenuation 0.1 dB (24 MW)==> vide sortie section 2.5 .10-9 mbar et entrée section 4.6 10-9 mbar
12h00 : largeur 1µs @ 10 Hz
* augmenter attenuation section de 0.1 dB jusquà 10 dB progressivement puis on change la largeur de 0.5 à 1 µs ( Pik =33 MW)
* faire baisser attenuation section de 10 dB à 0.1 dB progressivement et en douceur
* 14h00 attenuation 0.1 dB (Pis= 24 MW)==> vide sortie section 7 .10-9 mbar et entrée section 6.10-9 mbar. A 14h03 ( 1 claquage dans la section ==>pic de vide ) voir image RF plots et Vide plots
* 14h13 attenuation 5 dB puis la faire baisser progressivement .
* 0.1 dB (Pis=24 MW) de 14h20 à 14h51 il ya un claquage dans la section aprés 30min==> pic vide entrée section (voir images) .
* 14H53 trig @ 0.1 dB . A 15H15 claquage dans la section (Pis=24 MW)==> pic de vide entrée section (voir images )
* Passage att sec @ 2 dB et trig à 15h16, Puis faire baisser l'atténuation progressivement jusquà 0.5 dB (Pis= 22 MW) 15H30.
* 16H att sec 0.25 dB (Pis=23 MW)
* 16H 22 att sec 0.1 dB (Pis=24 MW) jusqu à 16h 35 pas de claquage
NB: signal Pis anomale (amplitude et forme visualisé avec Oscillo ==> vers 16H15 changement de cable BNC défectueux => la forme et l'amplitude du signal Pis mesuré avec oscillo redevient correct et similaire à celui mesuré avec carte redpitaya (voir images jointes)
** Passage à la largeur d'impulsion 2µs_10Hz @16H35
*mettre attenuation à 10 dB puis passage à 2 µs & 10Hz
* faire baisser l'atténuation de 10 dB
* 16H45 att.sec 1.5 dB (Pis=17 MW)==>vide < 7.10-9 mbar
* 16h53 att. sec 1.3 dB (Pis=18 MW)==> vide < 8.10-9 mbar
* 17h00 att.sec 1 dB (Pis= 19.5 MW)===> vide entrée et sortie section monte à 1.4 10-8 mbar
*17h12 att.sec 0.8 dB ( Pis= 20.5 MW) ==> vide monte à (sortie sec à 1.6 10-8 mbar et entrée sec à 1.4 10-8 mbar )
* 17h17 att.sec 0.5 dB ( Pis= 22 MW) ==> vide monte à( sortie sec à 1.7 10-8 mbar et entrée sec à 1.3 10-8 mbar )
* 17h21 att.sec 0.3dB ( Pis= 23MW) ==> vide monte à (sortie sec à 1.6 10-8 mbar et entrée sec à 1.2 10-8 mbar)
* 17h 24 att.sec 0.1dB ( Pis= 24MW) ==> claquage dans la section à 17h28 ==> pic vide (voir images saved )
Arret de conditionnement à 17h30 et à reprendre jeudi
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| Attachment 1: signaux_rf_scope.png
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| Attachment 2: signaux_RF_redpitaya_.png
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|
887
|
Fri Jul 19 14:59:48 2024 |
Entered by Nicolas Delerue from 193.55.29.173 on Fri Jul 19 14:59:34 2024 | Fixed | Fix | Opt |
|
Passage a 25Hz IHM conditionnement | |
Le bouton pour passer le conditionnement à 25Hz a été ajouté sur l'IHM conditionnement. |
|
886
|
Fri Jul 19 11:11:48 2024 |
Entered by Vincent Chaumat from 134.158.76.115 on Fri Jul 19 11:11:33 2024 | Fixed | Problem | SY |
|
Syncho pB | |
La synchro a été testée ce matin:
Il y avait effectuvement un pB de faux contact qui empechait la synchro de fonctionner.
Pour ce qui est de l'interface Fréquence Synchro:
le choix des fréquences fonctione... il est un peu récalcitrant... il faut parfois valider (bien cliquer sur le choix dans le menu déroulant) plusieurs fois les fréquences de gauche à droite (de mémoire modulateur , linac, ring, diag,)
Les fréquences 25 10 5 hz sont dispo pour le linac
|
|
885
|
Thu Jul 18 19:39:09 2024 |
Jean-Noel, Marie | Fixed | Shift summary | LI | TL | LE | Ring | Diag | Aimants | CC | Infra | Laser | Opt | RF D1 | RF Anneau | MECA | SY | Vide | Electronique | Linac Commissionning | Ring Commissioning |
|
Test reseau RF: Tout est OK | |
Apres changement du dephaseur : debut des tests RF vers 17h30
** Le defaut est a 25 Hz, impossible de passer a 10 Hz,
ni avec l'IHM "Manual RF conditionning" en cliquand sur 10 Hz (cf screen shot)
ni avec l'IHM Reglage phase RF et taux de repetition" (cf screen shot : "Linac rep. rate" et "commands experts" n'ont strictement aucun effet)
--> on fait les tests a 25 Hz
** Le chassis Trigger bug regulierement : quand il bug, il faut aller appuyer sur un composant dans le chassis pour qu'il remarche (le 2eme composant en partant de la gauche)
** Test de la charge attenuateur :
- 25 Hz, 1 mu sec, atten 30 dB : Klystron de 1070 a 1215 V --> tout est OK
- Idem mais avec 2 mu sec --> OK
- Idem avec 3 mu sec --> OK
** Test du dephaseur a phi=50 degres sur l'IHM (courbe de calib NON rentree)
Conditions : 25 Hz, 3 mu sec, 1215 V et on bouge l'attenuateur de 30 dB a 0.1 db
On laisse une minute environ a chaque changement de valeur d'attenuateur.
Bilan : 1 claquage a 5 db, 1 claquage a 3 db, 1 claquage a 0.5 db. Claquage unique, le Klystron repart tout de suite. --> tout est ok
** Test dephaseur en mouvement
Conditions : 25 Hz, 3 mu sec, 1215 V, atten=0.1 dB et on bouge la phase de la limite max basse a la limite max haute avec l'ATK panel
Bilan : aucun claquage
** Screen shot typique en pj des signaux qu'on a eu pendant ces 2 heures (je n'ai pas reussi a faire fonctionner le trend ...)
Fin vers 19h30.
Tout est ok, merci JN et la meca !!!
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| Attachment 1: rep_freq_2024-07-18_19-17-18.png
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| Attachment 2: rep_fre_2024-07-18_19-16-42.png
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| Attachment 3: 2024-07-18_18-42-24_9db.png
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884
|
Tue Jul 16 13:04:50 2024 |
ND | Fixed | Info | SY |
|
Git pull | |
Un git pull a ete effectue dans le cadre de la mise a jour des codes de synchro. |
|
883
|
Fri Jul 12 15:17:39 2024 |
KD, ME | Under Process | Info | RF D1 | Linac Commissionning |
|
test déphaseur section | |
14h30: mise en chauffe
15h26: test déphaseur
* on commence à faible puissance 3us, 10Hz, 30dB, 1100V
* on augmente progressivement la puissance jusqu'à 1215V
15h30: Home du déphaseur et positionnement à 10deg
15h39: on monte la puissance injecté dans le déphaseur de -30dB à 3dB
15h46: à 3dB on fait de la dynamique 10 à 100 deg à 10 pas/s, on passe à 50pas/s
15h49: On passe à 300deg, claquage à 15h50, on passe à 25pas/s
15h54: on revient à 10deg et on repart à 320deg
15h59: on augmente la puissance, 2.5dB ==> ca claque, on repasse à 3dB
16h02: on redescend à 0deg, ca à claqué en dynamique
* 0deg, 100deg, 300deg ça claque (on ne peut pas remettre la puissance)
* balayage 100deg -> 250deg ça claque.
ça tiens à 3dB mais pas en dessous.
16h20 : arrêt machine
==> il faut changer le déphaseur.
|
| Attachment 1: oscilloscope_30dB_3us_10Hz.png
|
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| Attachment 2: trend_puissance.pdf
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| Attachment 3: trend_3us_1215V_PiK_final_dephaseur.dat
|
# DATASET= eval:a={er/dg/rac.06-osc.01/CH1_Waveform};a[15000:17000].sum()[0]
# SNAPSHOT_TIME= 2024-07-12_16:19:15.097536
2024-07-12_15:17:01.522455 -64.76259756088257
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... 36361 more lines ...
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882
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Tue Jul 9 14:43:10 2024 |
JNC, MO, KD | Under Process | Info | RF D1 | Linac Commissionning |
|
test nouveau atténuateur V3 MegaIndustry | |
ATTENTION : KLYSTRON BRIDE A 1215V, HT 288.7kV (32.5MW).
montage charge derrière l'atténuateur V3 MegaIndustry SN
On monte doucement la puissance atténuateur à 30dB (tout dans la charge) :
1us, 1100V() ==> 3us, 1215V (32MW)
par incrément de puissance puis par incrément de durée d'impulsion
Aucun claquage visible et notable (cf. trend)
14h48 : 3us, 1215V (32MW au powermeter), aucun claquage après 20min
on change l'atténuateur
15h09 : on passe à 1100V et changement d'atténuation à 10dB
15h11 : on monte la puissance du klystron jusqu'à 1215V, pas de claquage après 10 min
15h21: changement atténuation à 5dB
15h25: changement à 3dB
15h35: changement 2dB
16h05 : changement 0.1 dB
17h: mesures de la puissance à la charge sortie atténuateur ( on n'arrive pas à le faire !! :-( )
17h30: Arrêt ==> pas de claquage durant toute la période de test
|
| Attachment 1: trend_montee_puissance_attenuateur.pdf
|
| Attachment 2: trend_3us_1215V_30dB_PiK.dat
|
# DATASET= eval:a={er/dg/rac.06-osc.01/CH1_Waveform};a[15000:17000].sum()[0]
# SNAPSHOT_TIME= 2024-07-09_15:08:19.437819
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2024-07-09_14:33:01.873953 0.04072265361173777
2024-07-09_14:33:01.886667 0.04072265361173777
2024-07-09_14:33:01.893621 0.04072265361173777
2024-07-09_14:33:01.986752 0.04072265361173777
2024-07-09_14:33:02.085782 0.04072265361173777
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2024-07-09_14:33:03.070300 0.1301757786422968
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2024-07-09_14:33:03.293908 0.02158202802093001
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2024-07-09_14:33:04.857649 0.0499023409865913
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2024-07-09_14:33:05.057173 0.0499023409865913
2024-07-09_14:33:05.156424 0.0499023409865913
2024-07-09_14:33:05.381613 -0.07509765894792508
2024-07-09_14:33:05.456687 -0.07509765894792508
2024-07-09_14:33:05.476969 -0.07509765894792508
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2024-07-09_14:33:05.703991 0.10205077876889845
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2024-07-09_14:33:06.158535 -0.04843750247528078
2024-07-09_14:33:06.404139 0.05029296557768248
2024-07-09_14:33:06.548577 0.05029296557768248
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2024-07-09_14:33:06.654039 0.05029296557768248
2024-07-09_14:33:06.942951 0.08046874784486135
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2024-07-09_14:33:07.251419 0.08427734120050445
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2024-07-09_14:33:08.283702 -0.02285156539437594
2024-07-09_14:33:08.323442 -0.02285156539437594
2024-07-09_14:33:08.538473 0.01474609015713213
2024-07-09_14:33:08.566225 0.01474609015713213
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2024-07-09_14:33:09.751537 -0.06962890882277861
2024-07-09_14:33:09.852239 0.009277340985136107
2024-07-09_14:33:10.144610 -0.04931640905851964
2024-07-09_14:33:10.193596 -0.04931640905851964
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2024-07-09_14:33:11.254021 0.08603515293361852
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2024-07-09_14:33:12.029758 0.0018554658454377204
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2024-07-09_14:33:12.270268 -0.04375000273284968
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2024-07-09_14:33:12.613938 0.1207031214798917
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2024-07-09_14:33:13.654236 0.05185546549182618
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2024-07-09_14:33:13.854087 0.06982421624707058
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2024-07-09_14:33:14.054535 0.06982421624707058
2024-07-09_14:33:14.154564 0.04804687206342351
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2024-07-09_14:33:14.500066 0.028320309807895683
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2024-07-09_14:33:15.242795 0.12470702829887159
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2024-07-09_14:33:15.543373 -0.06025390881404746
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2024-07-09_14:33:15.843040 0.15058593453431968
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2024-07-09_14:33:16.421323 0.12363281029684003
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2024-07-09_14:33:16.720237 0.0719726543102297
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2024-07-09_14:33:18.043249 0.029394529017736204
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2024-07-09_14:33:18.368931 -0.0646484403332579
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2024-07-09_14:33:19.142310 0.0298828093073098
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2024-07-09_14:33:19.442977 0.11523437318828655
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2024-07-09_14:33:19.743358 0.00361327851715032
2024-07-09_14:33:19.842889 0.00361327851715032
2024-07-09_14:33:19.943340 0.09052734184660949
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2024-07-09_14:33:28.643356 0.15624999797728378
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2024-07-09_14:33:28.843108 0.1705078103550477
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2024-07-09_14:33:31.045505 0.05292968500725692
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2024-07-09_14:33:31.343133 0.06249999756983016
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... 20587 more lines ...
|
| Attachment 3: trend_3us_1215V_30dB_PrK.dat
|
# DATASET= eval:a={er/dg/rac.06-osc.01/CH2_Waveform};a[15000:17000].sum()[0]
# SNAPSHOT_TIME= 2024-07-09_15:08:19.437819
2024-07-09_14:33:01.079580 -0.1317871080354962
2024-07-09_14:33:01.299886 -0.04311523242631665
2024-07-09_14:33:01.434930 -0.04311523242631665
2024-07-09_14:33:01.523228 -0.15375976410996373
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2024-07-09_14:33:01.731930 -0.15375976410996373
2024-07-09_14:33:01.882779 -0.20434570147335762
2024-07-09_14:33:01.890309 -0.20434570147335762
2024-07-09_14:33:01.982402 -0.20434570147335762
2024-07-09_14:33:02.082226 -0.20434570147335762
2024-07-09_14:33:02.182720 -0.1094726545516096
2024-07-09_14:33:02.282503 -0.1094726545516096
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2024-07-09_14:33:03.101945 -0.1602050766477987
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| Attachment 4: trend_3us_1215V_10dB.pdf
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| Attachment 5: oscilloscope_3us_1215V_30dB.png
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881
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Fri Jun 28 14:37:19 2024 |
Entered by Super Team from 134.158.195.141 on Fri Jun 28 14:37:07 2024 | | Linac | LI | RF D1 |
|
Tests reseau RF : branche attenuateur | |
charge en position après atténuateur, 10Hz, 3us, 1220V
Ca claque à 15dB et 10dB, mais pas à 0.2dB
on essaye de monter la puissance de 0.2dB à 15dB pour voir ou ça claque.
14h33 : <1dB ça ne claque pas
14h38 : 1dB
14h41 : 1.250dB
14h47 1.9 dB
14h48 2.2 dB
14h50 3dB
14h51 6dB claquage à 6dB
14h59 6dB
15h01 0.2dB
15h01 6dB
15h03 8dB
15h08 8.5dB
15h08 passage à 1200V 0.2dB
15h10 5dB
15h11 0.2dB
15h11 passage à 1220V
15h13 8dB
15h17 8.2dB
15h25 toujours 8.2dB
15h26 8.4dB
15h26 8.6dB
15h28 passage à 1200V (8.6 dB)
15h45 0.4dB signaux instables (pompage)
15h54 Arret
Nombreux claquages à 8.6 dB à 1220V et 1220V
Il semble que la partie mobile de l'atténuateur a un problème
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| Attachment 1: test_sur_charge_config.2.pptx
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880
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Thu Jun 27 16:14:38 2024 |
Entered by Super Team from 134.158.195.141 on Thu Jun 27 16:14:24 2024 | | Linac | LI | RF D1 |
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Tests reseau RF | |
Charge en sortie diviseur cote section
HT = 1220V (35MW), 10Hz , 3us
Attenuateur cote canon 30 dB
Enregistrement RF_integral_trends_Oscillo.py , début autour de 16h
Pas de claquages
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| Attachment 1: test_sur_charge_config.1.pptx
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879
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Tue Jun 11 08:44:30 2024 |
M EK, ND | Under Process | Linac | LI | TL | LE | Ring | Diag | Aimants | CC | Infra | Laser | Opt | RF D1 | RF Anneau | MECA | SY | Vide | Electronique | Linac Commissionning | Ring Commissioning |
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claquage et test micros | |
8:30 impossible de mettre en chauffe modulateur
Pompe ThomX HS
Dalkia a été contacté par email pour une intervention pour mettre en marche la pompe
11:00 Fin chauffage
Acces pour deplacer les micros sur la branche canon:
- Vert sur le coude apres le diviseur
- Jaune a l 'entree de l'attenuateur canon
11:15 Demarrage
Ca claque mais peu de signature audio cote canon (cf screenshot a 11h27). Exception: cf screenshot a 11h25.
11:40 Micros sur diviseur (jaune) et bride en sortie de tunnel (vert)
Jaune: beaucoup de bruit meme hors RF
La plupart des claquages semblent loin (hors temps par rapport a la RF)
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| Attachment 1: RF_network.png
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| Attachment 2: Screenshot_from_2024-06-11_11-25-49.png
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| Attachment 3: Screenshot_from_2024-06-11_11-25-38.png
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| Attachment 4: Screenshot_from_2024-06-11_11-27-49.png
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| Attachment 5: Screenshot_from_2024-06-11_11-42-56.png
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| Attachment 6: Screenshot_from_2024-06-11_11-43-45.png
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