Alcator C-Mod Run 1020920 Information

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Miniproposals
Miniproposal:
Date Filed:
Title:
First Author:
Session Leader:Steve Wukitch (shots 1-30)

Operators
Session leader(s):Steve Wukitch
Physics operator(s):Earl Marmar
Engineering operator(s):Gary Dekow

Engineering Operator Run Comment
Boronization recovery and ICRF studies; SL: Wukitch; PO: Marmar; EO:Deko

Session Leader Plans

Physics Operators Plans

Session Leader Summaries
Entered: Jul 7 2004 03:49:30:553PM
Author: To Be Determined
Engineering setup for Friday 20 Sept 2002

Boronization recovery and ICRF studies

Session leader: S. Wukitch
Physics operator: E. Marmar

Do the usual post boronization ECDC (2 hours in D_2 at 2.0e-4)

Run begins at 09:00 and ends at 17:00.

Power systems the same as shot 1020829008 (0.8 MA, 5.3 T, lower single null
with preprogrammed gas puf)

Gas setup:
fill B-Top with 6 psi D2 Hybrid enabled (PG4)
fill B-side lower with 1 psi Ar Hybrid enabled (PG1)
fill B-side upper with 10 psi D2 Hybrid DISABLED (PG2) (for ECDC)
fill C-side with 30 psi D2 Hybrid enabled (PG3)
leave J-Bottom as is Hybrid DISABLED (PG5)

Enable the following gate valves, assuming no vacuum problems:
ECE, VUV, DNB

-------------------------------------------------------------------------------
RF Setup: transmitters 1 and 2 in run-on by 7:00 am
-------------------------------------------------------------------------------
Plan:
1. Start with an 800 kA "fiducial" shot, which includes preprogrammed gas to
assess the walls after boronization.

2. Scan BT to find central heating.

3. H-mode heating efficiency.

4. L-mode density scan - upper x-point discharges

5. vary H/D in L-mode
-------------------------------------------------------------------------------
Conditioned antennas to 39 kV prior to run.
FMIT#1 had a tube arc this morning
-------------------------------------------------------------------------------

missing shot numbers are either duds, fizzles, or tests

002 BT~5.15, density on preprogrammed, Ip~0.8 MA
D: 1.0 MW [0.6,1.5] sec
E: 1.0 MW [0.6,1.5] sec
result: plasma - BN tile in the divertor moved
L-mode, nl04~1
D: max faults
E: 1.0 MW max faults
003 BT~5.15, density on preprogrammed, Ip~0.8 MA
D: 1.0 MW [0.6,1.5] sec
E: 1.0 MW [0.7,1.5] sec
result: plasma, L-mode, nl04~1
D: 1.0 MW max faults
E: 1.0 MW max faults
005 BT~5.15, density on preprogrammed, Ip~0.8 MA
D: 1.0 MW [0.6,1.5] sec
E: 1.0 MW [0.7,1.5] sec
result: plasma, short H-mode, nl04~1
D: 1.0 MW max faults
E: 1.0 MW max faults
006 BT~5.15, density on preprogrammed, Ip~0.8 MA
D: 1.0 MW [0.6,1.5] sec
E: 1.0 MW [0.7,1.5] sec
result: plasma, longer H-mode, nl04~1
D: 1.0 MW max faults
E: 1.0 MW max faults
009 BT~5.2, density on preprogrammed, Ip~0.8 MA
D: 1.0 MW [0.6,1.5] sec
E: 1.0 MW [0.7,1.5] sec
result: plasma, longer H-mode, nl04~1
D: 1.0 MW max faults
E: 1.0 MW max faults
010 BT~5.2, Ip~0.8 MA
D: 1.0 MW [0.6,1.5] sec
E: 1.0 MW [0.7,1.5] sec
result: plasma, longer H-mode, nl04~1
D: 1.0 MW max faults
E: 1.0 MW max faults
011 BT~5.2, density on preprogrammed, Ip~0.8 MA
D: 0.8 MW [0.6,1.5] sec
E: 0.8 MW [0.7,1.5] sec
result: plasma, longer H-mode, nl04~1
D: 0.7 MW clean
E: 0.8 MW clean
012 BT~5.2, Ip~1.0 MA
D: 1.25 MW [0.6,1.0] sec
E: 1.0 MW [1.05,1.35] sec
result: plasma, H-modes, nl04~1
D: 1.0 MW clean - poor match
E: 1.0 MW clean
013 BT~5.2, nl04~1, Ip~1.0 MA
D: 1.5 MW [0.6,1.05] sec
E: 1.5 MW [1.05,1.35] sec
result: plasma, 2 H-modes
D: 1.6 MW clean
E: 1.35 MW clean
014 BT~5.2, nl04~1, Ip~1.0 MA
D: 1.7 MW [0.6,1.0] sec
E: 1.7 MW [1.05,1.35] sec
result: plasma, 2 H-modes
D: 1.7 MW clean
E: 1.55 MW 4 faults
DDC1 likely overestimates netpower at high power end (~1 MW)
016 BT~5.2, nl04~1, Ip~1.0 MA
D: 1.7 MW [0.6,1.35] sec
E: 1.7 MW ramp [1.05,1.35] sec
result: plasma, H-mode
D: 1.7 MW faulting with overlap
E: 1.55 MW failed at high end
017 BT~5.2, nl04~1, Ip~1.0 MA
D: 1.7 MW [0.6,1.35] sec
E: 1.7 MW ramp [0.6,1.35] sec
result: plasma, H-mode
D: 1.7 MW 5 faults
E: 1.55 MW failed at high end
018 BT~5.2, nl04~1, Ip~1.0 MA
D: 1.5 MW [0.6,1.35] sec
E: 1.3 MW ramp [0.6,1.35] sec
result: plasma, H-modes, big injection ~1 sec
D: 1.5 MW 1 fault
E: 1.2 MW 4 faults
019 BT~5.2, nl04~1, Ip~1.0 MA
D: 1.5 MW [0.6,1.35] sec
E: 1.3 MW [0.6,1.35] sec
result: plasma, H-modes
D: 1.5 MW 2 faults
E: 1.2 MW 8 faults
020 BT~5.2, nl04~1.1, Ip~1.0 MA
D: 1.5 MW [0.6,1.2] sec
E: 1.3 MW [0.6,1.2] sec
result: plasma, H-modes, nl04~1
D: 1.5 MW 1 fault
E: 1.2 MW 4 faults
021 BT~5.2, nl04~1.1, Ip~1.0 MA
D: 1.5 MW [0.6,1.2] sec
E: 1.3 MW [0.6,1.2] sec
result: plasma, H-modes, nl04~1
D: 1.5 MW 1 fault
E: 1.2 MW 4 faults
022 BT~5.25, Ip~1. MA
D: 1.5 MW [0.6,1.2] sec
E: 1.3 MW [0.6,1.2] sec
result: plasma, long H-mode, nl04~0.9
D: faulted out after 1.04 sec
E: clean.
023 BT~5.2, nl04~1.1, Ip~1.0 MA
D: 1.5 MW [0.6,1.2] sec
E: 1.3 MW [0.6,1.2] sec
result: plasma, H-mode
D: 1.5 MW 1 fault
E: 1.2 MW 4 faults
024 BT~5.25, Ip~1. MA
D: 1.5 MW [0.6,1.2] sec
E: 1.3 MW [0.6,1.2] sec
result: plasma, long H-mode, nl04~1.
D: faulted out
E: clean.
025 BT~5.2, nl04~1.0, Ip~1.0 MA
D: 1.5 MW [0.6,1.2] sec
E: 1.3 MW [0.6,1.2] sec
result: plasma, H-mode
D: 1.5 MW max faults - bad tune
E: 1.2 MW 1 fault
026 BT~5.2, nl04~1.0, Ip~1.0 MA
D: 1.5 MW ramp [0.6,1.2] sec
E: 1.3 MW [0.6,1.2] sec
result: plasma, H-mode
D: 1.5 MW max faults
E: 1.2 MW clean
027 BT~5.2 ->4.4T, nl04~1.0, Ip~1.0 MA
D: 1.1 MW ramp [0.6,1.2] sec
E: 1.3 MW [0.6,1.2] sec
result: plasma, H-modes
D: 1.1 MW 4 faults
E: 1.2 MW max faults
028 BT~5.2 ->4.4T, nl04~1.0, Ip~1.0 MA
D: 1.0 MW ramp [0.6,1.2] sec
E: 1.0 MW [0.6,1.2] sec
result: plasma, H-modes
D: 1.0 MW 4 faults
E: 1.0 MW 8 faults
029 BT~5.2 ->4.4T, nl04~1.0, Ip~1.0 MA
D: 1.0 MW ramp [0.6,1.2] sec
E: 1.0 MW [0.6,1.2] sec
result: plasma, H-modes
D: 1.0 MW 4 faults
E: 1.0 MW 8 faults

Summary:

Since plasma performance was improved compared to the rest of the
campaign, we modified the run plan to investigate H-mode performance
and related issues. Antenna operation was decent but there are a
number of issues to address. In particular, the D and E-port antennas
appear to operate to ~1.5 MW rather easily on their own but have
difficulty in operating >1 MW together. At high power levels, the
reported D-port DC1 power appeared high by 300 kW. We will check the
calibrations and reprocess the data Monday.

Physics Operator Summaries
Entered: Jul 7 2004 04:37:16:223PM
Author: To Be Determined
Physop Run Summary 1020920

Post boronization recovery and ICRF minority heating

PO Marmar
SL Wukitch

This run followed the boronization which was carried out the previous evening
(9/19/02).

Recovery from boronization was not difficult today. After 2 full length
plasmas, we had a dud, 2 more good shots, then a fizzle and a dud. After that,
we had 20 consecutive plasmas, and finished the day with a fizzle. The only
significant operator change made to the startup from the preboronization runs
of this week was to reduce the prefill puff, then tweak it up after the first
dud.

We pursued RF heating and confinement using D and E port. After some antenna
conditioning, and some filter changes in the cell to alleviate cross-talk
problems, we had several good discharges, with total RF power approaching
3 MW. The best shots for confinement analysis are probably 16, 17, 18, 19, 20,
21, 22 and 23, all at 1 MA and ~5.2 Tesla. On the best of these shots, the
confinement and stored energy were very respectable, but not in record territory
(~150 kJ, H_89~1.5). Several shots showed droops in stored energy after several
hundred msec, possibly due to increasing radiation. Examples are 22 and 23,
which may be useful for gauging the importance of radiation and/or the
calibrations of the various measures of radiated power.

Early in the run, the H/D ratio was around 2%, rising to ~7% by shot 19, after
which is remained fairly steady. We discharge cleaned for ~5 minutes before
shots 1, 16, and 18.

The last 3 plasmas of the day were devoted to ITB scoping, by ramping the TF
down to 4.4 Tesla during the H-mode phase. On shots 27 and 28, John Rice
reports seeing the core rotation slow, while the far off-axis rotation does
not.

There were some more ohmic H-modes today: examples are shots 20 and 23. These
are 5.3 tesla ohmic H-modes, near the end of current flattop. We have seen
several interesting ohmic H-modes at high fields since the BN tile fell into
the divertor.

The BN tile in the divertor shifted position during shot 2: it fell over and is
now leaning across the entire outer divertor slot. It did not seem to give us
any obvious problems.

Engineering:
Shot 1 was a no power cycle; the EFC cabinet had a relay problem.
The alternator operators thought they heard a funny noise on shot 14; shot 15
was a TF only test.


Scorecard:

Plasmas: 24
Fizzles: 2
Duds: 2
Tests/No power: 2

Total Cycles: 30

Session Leader Comments
Sep 20 2002 09:52:18:820AM1020920002Steve Wukitch002 BT~5.15, density on preprogrammed, Ip~0.8 MA
D: 1.0 MW [0.6,1.5] sec
E: 1.0 MW [0.6,1.5] sec
result: plasma - BN tile in the divertor moved
L-mode, nl04~1
D: max faults
E: 1.0 MW max faults
Sep 20 2002 09:51:53:867AM1020920003Steve Wukitch003 BT~5.15, density on preprogrammed, Ip~0.8 MA
D: 1.0 MW [0.6,1.5] sec
E: 1.0 MW [0.7,1.5] sec
result: plasma, L-mode, nl04~1
D: 1.0 MW max faults
E: 1.0 MW max faults
Sep 20 2002 10:33:04:883AM1020920005Steve Wukitch005 BT~5.15, density on preprogrammed, Ip~0.8 MA
D: 1.0 MW [0.6,1.5] sec
E: 1.0 MW [0.7,1.5] sec
result: plasma, short H-mode, nl04~1
D: 1.0 MW max faults
E: 1.0 MW max faults
Sep 20 2002 10:33:50:247AM1020920006Steve Wukitch006 BT~5.15, density on preprogrammed, Ip~0.8 MA
D: 1.0 MW [0.6,1.5] sec
E: 1.0 MW [0.7,1.5] sec
result: plasma, longer H-mode, nl04~1
Sep 20 2002 04:49:39:247PM1020920009Steve Wukitch009 BT~5.2, density on preprogrammed, Ip~0.8 MA
D: 1.0 MW [0.6,1.5] sec
E: 1.0 MW [0.7,1.5] sec
result: plasma, longer H-mode, nl04~1
D: 1.0 MW max faults
E: 1.0 MW max faults
Sep 20 2002 04:52:59:280PM1020920010Steve Wukitch010 BT~5.2, Ip~1.0 MA
D: 1.0 MW [0.6,1.5] sec
E: 1.0 MW [0.7,1.5] sec
result: plasma, longer H-mode, nl04~1
D: 1.0 MW max faults
E: 1.0 MW max faults
Sep 20 2002 04:54:40:563PM1020920011Steve Wukitch011 BT~5.2, Ip~0.8 MA
D: 0.8 MW [0.6,1.0] sec
E: 0.8 MW [1.05,1.5] sec
result: plasma, longer H-mode, nl04~1
D: 0.7 MW clean
E: 0.8 MW clean
Sep 20 2002 04:55:00:097PM1020920012Steve Wukitch012 BT~5.2, Ip~1.0 MA
D: 1.25 MW [0.6,1.0] sec
E: 1.0 MW [1.05,1.35] sec
result: plasma, H-modes, nl04~1
D: 1.0 MW clean - poor match
E: 1.0 MW clean
Sep 20 2002 04:55:15:283PM1020920013Steve Wukitch013 BT~5.2, nl04~1, Ip~1.0 MA
D: 1.5 MW [0.6,1.05] sec
E: 1.5 MW [1.05,1.35] sec
result: plasma, 2 H-modes
D: 1.6 MW clean
E: 1.35 MW clean
Sep 20 2002 04:55:31:270PM1020920014Steve Wukitch014 BT~5.2, nl04~1, Ip~1.0 MA
D: 1.7 MW [0.6,1.0] sec
E: 1.7 MW [1.05,1.35] sec
result: plasma, 2 H-modes
D: 1.7 MW clean
E: 1.55 MW 4 faults
DDC1 likely overestimates netpower at high power end (~1 MW)
Sep 20 2002 04:55:47:567PM1020920016Steve Wukitch016 BT~5.2, nl04~1, Ip~1.0 MA
D: 1.7 MW [0.6,1.35] sec
E: 1.7 MW ramp [1.05,1.35] sec
result: plasma, H-mode
D: 1.7 MW faulting with overlap
E: 1.55 MW failed at high end
Sep 20 2002 04:56:03:847PM1020920017Steve Wukitch017 BT~5.2, nl04~1, Ip~1.0 MA
D: 1.7 MW [0.6,1.35] sec
E: 1.7 MW ramp [0.6,1.35] sec
result: plasma, H-mode
D: 1.7 MW 5 faults
E: 1.55 MW failed at high end
Sep 20 2002 04:56:21:460PM1020920018Steve Wukitch018 BT~5.2, nl04~1, Ip~1.0 MA
D: 1.5 MW [0.6,1.35] sec
E: 1.3 MW ramp [0.6,1.35] sec
result: plasma, H-modes, big injection ~1 sec
D: 1.5 MW 1 fault
E: 1.2 MW 4 faults
Sep 20 2002 04:57:31:570PM1020920019Steve Wukitch019 BT~5.2, nl04~1, Ip~1.0 MA
D: 1.5 MW [0.6,1.35] sec
E: 1.3 MW [0.6,1.35] sec
result: plasma, H-modes
D: 1.5 MW 2 faults
E: 1.2 MW 8 faults
Sep 20 2002 04:05:23:287PM1020920023Steve Wukitch023
BT~5.25, Ip~1. MA
D: 1.5 MW [0.6,1.2] sec
E: 1.3 MW [0.6,1.2] sec
result: plasma, long H-mode, nl04~0.9

Sep 20 2002 04:31:41:700PM1020920025Steve Wukitch025 BT~5.2, nl04~1.0, Ip~1.0 MA
D: 1.5 MW [0.6,1.2] sec
E: 1.3 MW [0.6,1.2] sec
result: plasma, H-mode
D: 1.5 MW max faults - bad tune
E: 1.2 MW 1 fault
Sep 20 2002 04:19:16:713PM1020920026Steve Wukitch026 BT~5.2, nl04~1.0, Ip~1.0 MA
D: 1.5 MW ramp [0.6,1.2] sec
E: 1.3 MW [0.6,1.2] sec
result: plasma, H-mode
Sep 20 2002 04:27:23:710PM1020920027Steve Wukitch027 BT~5.2 ->4.4T, nl04~1.0, Ip~1.0 MA
D: 1.1 MW ramp [0.6,1.2] sec
E: 1.3 MW [0.6,1.2] sec
result: plasma, H-modes
D: 1.1 MW 4 faults
E: 1.2 MW max faults
Sep 20 2002 04:39:38:980PM1020920028Steve Wukitch028 BT~5.2 ->4.4T, nl04~1.0, Ip~1.0 MA
D: 1.0 MW ramp [0.6,1.2] sec
E: 1.0 MW [0.6,1.2] sec
result: plasma, H-modes
D: 1.0 MW 4 faults
E: 1.0 MW 8 faults

Physics Operator Comments
Sep 20 2002 09:10:07:477AMEarl MarmarEngineering setup for Friday 20 Sept 2002

Boronization recovery and ICRF studies

Session leader: S. Wukitch
Physics operator: E. Marmar

Do the usual post boronization ECDC (2 hours in D_2 at 2.0e-4)

Run begins at 09:00 and ends at 17:00.

Power systems the same as shot 1020829008 (0.8 MA, 5.3 T, lower single null
with preprogrammed gas puf)

Gas setup:
fill B-Top with 6 psi D2 Hybrid enabled (PG4)
fill B-side lower with 1 psi Ar Hybrid enabled (PG1)
fill B-side upper with 10 psi D2 Hybrid DISABLED (PG2) (for ECDC)
fill C-side with 30 psi D2 Hybrid enabled (PG3)
leave J-Bottom as is Hybrid DISABLED (PG5)

Enable the following gate valves, assuming no vacuum problems:
ECE, VUV, DNB

-------------------------------------------------------------------------------
RF Setup: transmitters 1 and 2 in run-on by 7:00 am

Plan:
Start with an 800 kA "fiducial" shot, which includes preprogrammed gas to
assess the walls after boronization. Use D&E port power to assess minority
heating.

coldstart done by engineers this morning (new protocol)
Sep 20 2002 09:07:38:800AM1020920001Earl Marmarload segment 2 from 1020829008
segment 1 from 1020919005

reduce prepuff (PG4) to 23 msec from 27 (post-boronization)

5 minutes of ECDC before the shot (D&E were vacuum conditioned before the run started)

no power cycle; problem with EFC cabinet
Sep 20 2002 09:36:47:140AM1020920002Earl Marmarreduce TF during flattop to 146 kA (btor=5.18T)

plasma

Tile in the divertor fell over during the shot; it's now leaning on the inner face of the divertor.
Sep 20 2002 09:51:00:273AM1020920003Earl Marmarno pcs changes

plasma

density is about the same (still on preprogrammed puff, 0 gains on nl04 feedback)
Sep 20 2002 09:58:55:067AM1020920004Earl Marmarno pcs changes

dud
Sep 20 2002 10:17:52:063AM1020920005Earl Marmaradd 2 msec to prefill puff (pg4)

plasma

some hesitation during intial current rise

brief H-mode; RF power reaches 1.8 MW for short time
Sep 20 2002 10:37:34:343AM1020920006Earl Marmarno pcs changes

plasma
Sep 20 2002 10:42:46:320AM1020920007Earl Marmaradd 10 msec to Ar puff

increase TF during flattop by 1% (147.5 kA)

fizzle
Sep 20 2002 10:55:16:480AM1020920008Earl Marmaradd 0.5 mT to B_R offset

dud
Sep 20 2002 11:13:22:057AM1020920009Earl Marmarreduce B_R offset by 0.2 mT (just to pretend I'm doing something)

plasma

hesitation during startup; some early hard x-rays

H-mode from .74 to 1.04 s; 1.9 MW, W=80 kJ
Sep 20 2002 11:33:20:320AM1020920010Earl Marmarno PCS changes

plasma
Sep 20 2002 11:54:54:823AM1020920011Earl Marmarincrease current to 1.0 MA

plasma

D&E ran separately, 0.8 MW each, no faults

2 H-Modes; good comparison of D and E. D makes more impurities, and maybe slightly more stored energy
Sep 20 2002 12:11:05:783PM1020920012Earl Marmarno pcs changes

plasma

D&E running separately at 1 MW each
Sep 20 2002 12:37:09:200PM1020920013Earl Marmarextend current flattop to 1.4 s (from 1.3)

plasma
Sep 20 2002 12:42:02:630PM1020920014Earl Marmarno pcs changes

plasma

D @1.8 MW
E @ 1.5 MW (with trips)
Sep 20 2002 01:21:09:300PM1020920015Earl Marmar100 kA TF only test (they thought they heard a noise at the alternator on shot 14).
Sep 20 2002 01:42:43:893PM1020920016Earl MarmarECDC for 6 minutes before this shot (H/D has been creeping up)

reduce prefill puff (pg4) by 1 msec

tweak the TF rampdown; 147.5 kA at 0.4 s instead of 0.3 s

plasma

close to 3 MW, 140 kJ
Sep 20 2002 02:09:18:013PM1020920017Earl Marmarno pcs changes

plasma

~3MW RF, W=150 kJ
Sep 20 2002 02:22:40:423PM1020920018Earl Marmarturn off preprogrammed gas puff at 0.5 s

ECDC for 6 minutes before this shot

plasma

150 kJ, 2.6MW
Sep 20 2002 02:33:38:347PM1020920019Earl Marmarturn on nl_04 feedback, 1.0e20

plasma

150 kJ, 2.5 MW RF
Sep 20 2002 02:49:18:497PM1020920020Earl Marmarnl_04 to 1.1e20

Start Ip rampdown at 1.3 s

plasma

nl_04 got to about 1.04e20 before the RF

150 kJ, 2.6MW RF
Sep 20 2002 03:04:11:300PM1020920021Earl Marmarnl_04 program to 1.2e20

plasma

got nl_04=1.18e20

138 kJ, 2.8MW RF

Sep 20 2002 03:22:56:657PM1020920022Earl Marmarnl_04 program to 0.9e20

plasma

145 kJ, 2.7 MW RF, but then it droops as radiated power increases


Sep 20 2002 03:31:05:840PM1020920023Earl Marmarno PCS changes

plasma

136 kJ, 2.7 MW RF
Sep 20 2002 03:43:55:330PM1020920024Earl Marmargo back to density program from shot 20 (nl_04=1.1e20)

plasma

D-port faulted almost from the start

80 kJ, 1.2 MW (E only)
Sep 20 2002 03:56:17:897PM1020920025Earl Marmarno pcs changes

plasma

D still having some problems
Sep 20 2002 04:16:18:397PM1020920026Earl Marmarno pcs changes

plasma

D tripping

Sep 20 2002 04:30:58:123PM1020920027Earl Marmarprogram TF to be 5 T at .6 s, 4.4 T at .9 s; try for ITB

plasma

H-mode, RF not steady, John Rice reports rotation in core slows, outside it does not

disruption on rampdown
Sep 20 2002 04:40:23:370PM1020920028Earl Marmarno PCS changes

plasma
Sep 20 2002 04:54:16:860PM1020920029Earl Marmarno pcs changes

plasma

E port alone, with some trips

H-mode; no obvious ITB
Sep 20 2002 05:00:53:857PM1020920030Earl Marmarramp the TF down sooner (4.4 T at ~0.7 s)

fizzle

Engineering Operator Comments
ShotTimeTypeStatusComment
109:02:52:450AMPlasmaBadEFC TMX Breaker Pulled during INIT
209:24:56:390AMPlasmaOk
309:40:19:520AMPlasmaOk
409:53:05:573AMPlasmaOk
510:11:01:427AMPlasmaOk
610:24:56:170AMPlasmaOk
710:39:27:770AMPlasmaOk
810:52:25:947AMPlasmaOk
911:05:22:543AMPlasmaOk
1011:18:40:877AMPlasmaOk
1111:34:30:057AMPlasmaOk
1212:02:05:083PMPlasmaOk
1312:15:40:667PMPlasmaOk
1412:28:53:483PMPlasmaOk
1501:18:54:420PMTestOkTF 100kA Test
1601:32:04:220PMPlasmaOk
1701:45:21:587PMPlasmaOk
1802:07:03:430PMPlasmaOk
1902:24:34:457PMPlasmaOk
2002:37:47:777PMPlasmaOk
2102:51:24:547PMPlasmaOk
2203:05:06:537PMPlasmaOk
2303:21:29:640PMPlasmaOk
2403:34:56:677PMPlasmaOk
2503:48:29:573PMPlasmaOk
2604:03:38:753PMPlasmaOk
2704:17:47:650PMPlasmaOk
2804:31:31:280PMPlasmaOk
2904:44:52:287PMPlasmaOk
3004:58:08:760PMPlasmaOk