International Space Station Complex Operations

Transcription

International Space Station Complex Operations
JSC-48512-E1
International Space Station
Complex Operations
Emergency Procedures
All Expedition Flights
Mission Operations Directorate
Operations Division
August 16, 2000
National Aeronautics and
Space Administration
Lyndon B. Johnson Space Center
Houston, Texas
United States
Systems Operations Data File
JSC-48512-E1
INTERNATIONAL SPACE STATION
COMPLEX OPERATIONS
EMERGENCY PROCEDURES
ALL EXPEDTION FLIGHTS
August 16, 2000
APPROVED BY:
___________________________________________
Paul Wester
Book Manager
___________________________________________
Michael T. Hurt
Supervisor, Procedures and Portable Computing Section
___________________________________________
Jeffery L. Wilson
SODF Coordinator
ACCEPTED BY:
___________________________________________
Michael T. Hurt
SODF Manager
This document is under the configuration control of the Systems Operations Data
File Control Board (SODFCB).
United States
Systems Operations Data File
CR: EmergencyU12
EmergencyU16
EmergencyU19
16 AUG 00
JSC-48512-E1
Incorporates the following:
EmergencyU21
EmergencyU24
ii
Emer
INTERNATIONAL SPACE STATION
COMPLEX OPERATIONS
EMERGENCY PROCEDURES
ALL EXPEDITION FLIGHTS
LIST OF EFFECTIVE PAGES
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EMER
CONTENTS
EMERGENCY PROCEDURES .............................................................................
1
WARNING PROCEDURES ...................................................................................
NCS WARNING TABLE PROCEDURES
2.101 NCS WARNING TABLE - WARN ...........................................................
3
5
CCS WARNING TABLE PROCEDURES
2.201 CCS WARNING TABLE - WARN ...........................................................
15
CDG PROCEDURES
2.301 INT MDM RETRY FAILURE - WARN.....................................................
33
CTG PROCEDURES
2.401 LOSS OF BOTH IACS WITH LOSS OF C&W ANNUNCIATION WARN.............................................................................................................
37
ECG PROCEDURES
2.501 AR RACK EMERGENCY STOP - WARN...............................................
2.502 CCAA EMERGENCY STOP - WARN.....................................................
2.503 ISS CABIN PRESS HIGH - WARN ........................................................
2.504 ISS CABIN PRESS LOW - WARN .........................................................
2.505 LAB1P6 CCAA INOPERATIVE - WARN ................................................
2.506 LAB1S6 CCAA INOPERATIVE - WARN ................................................
2.507 NODE 1 CABIN FAN SAFING - WARN..................................................
2.508 POSITIVE PRESSURE RELIEF FAILURE RECOVERY - WARN ..........
2.509 PPCH4 HIGH - WARN ...........................................................................
2.510 PPC02 HIGH - WARN............................................................................
2.511 PPH2 HIGH - WARN..............................................................................
2.512 PPO2 HIGH/LOW - WARN ....................................................................
2.513 VACUUM SYSTEM SAFING - WARN....................................................
2.514 WATER CONDENSATE TANK HIGH WARNING SAFING - WARN ......
2.515 WATER CONDENSATE TANK LOW WARNING SAFING - WARN.......
2.516 WATER VENT EMERGENCY STOP - WARN .......................................
39
41
43
45
47
49
51
53
55
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59
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63
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67
69
EPG PROCEDURES
2.601 BATT 4BXX(2BXX) SAFING CHECKLIST - P6 - WARN........................
2.603 BCDU 4BX(2BX) LOSS OF COMM SAFING FAILED - P6 - WARN.......
2.604 BCDU 4B X(2BX) OVERTEMP SAFING FAILED - P6 - WARN .............
2.605 BGA 4B(2B) MOTOR SAFING - P6 - WARN..........................................
2.606 DCSU 4B(2B) RBI 6 OVERCURRENT SAFING FAILED - P6
(POST CCS) - WARN .....................................................................................
2.608 DCSU 4B(2B) TRIP - P6 (PRE-CCS) - WARN .......................................
2.613 ECU/BGA 4B(2B) SAFING - P6 - WARN ...............................................
2.614 PVTCS PFCS 4B(2B) DEADHEAD FAILURE CONDITION - P6 WARN.............................................................................................................
2.615 PVTCS PFCS 4B(2B) DEADHEAD SAFING FAILED - P6 - WARN .......
2.619 PVTCS PFCS 4B(2B) FLUID LEAK - P6 - WARN..................................
2.620 PVTCS PFCS 4B(2B) LOSS OF COMM - P6 - WARN...........................
16 AUG 00
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EMER
2.621 PVTCS PFCS 4B(2B) MAXIMUM OUTLET TEMP SAFING FAILED P6 - WARN .....................................................................................................
2.622 PVTCS PFCS 4B(2B) MAXIMUM OUTLET TEMP VIOLATION - P6 WARN.............................................................................................................
2.623 PVTCS PFCS 4B(2B) MINIMUM INLET TEMP SAFING FAILED P6 - WARN .....................................................................................................
2.624 PVTCS PFCS 4B(2B) MINIMUM INLET TEMP VIOLATION - P6 WARN.............................................................................................................
2.625 PVTCS PFCS 4B(2B) PUMP SWITCHOVER FAILED - P6 - WARN......
2.626 PVTCS PFCS 4B(2B) SAFING CHECKLIST - WARN............................
2.627 SSU 4B(2B) OVERTEMP SAFING FAILED - P6 - WARN......................
2.628 SSU 4B(2B) TRIP - P6 OR SSU 4B(2B) OVERTEMP CONDITION P6 - WARN .....................................................................................................
2.629 DCSU 4B(2B) RBI 6 OVERCURRENT SAFING FAILED - P6
(PRE-CCS) - WARN .......................................................................................
93
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101
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105
107
109
MCG PROCEDURES
2.701 CMG AUTO SAFE FAILED - WARN ...................................................... 111
2.702 LOSS OF CMG ATTITUDE CONTROL - WARN.................................... 113
2.703 PRIMARY GNC MDM FAIL - WARN...................................................... 115
TCG PROCEDURES
2.801 EETCS LOOP A(B) PUMP SWITCHOVER FAILED CHECKLIST WARN.............................................................................................................
2.802 EETCS LOOP A(B) SAFING CHECKLIST - WARN ...............................
2.803 LAB IATCS LEAK AUTO ISOLATION INHIBITED - WARN....................
2.804 LAB IATCS LEAK ISOLATION FAILED - WARN....................................
2.805 LAB IATCS MODE UNKNOWN - WARN ...............................................
2.806 LAB LTL(MTL) IFHX NH3 UNDERTEMP RESPONSE FAILED WARN.............................................................................................................
2.807 LAB LTL(MTL) LEAK SHUTDOWN INHIBITED - WARN .......................
2.808 THERMAL SAFING LTL(MTL) IFHX NH3 LEAK DETECTED - WARN ..
16 AUG 00
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EMER
EMERGENCY
PROCEDURES
EMERGENCY PROCEDURES
11 AUG 00
1
EMERGENCY
PROCEDURES
This Page Intentionally Blank
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2
WARNING
PROCEDURES
WARNING PROCEDURES
11 AUG 00
3
WARNING
PROCEDURES
This Page Intentionally Blank
11 AUG 00
4
2.101 NCS WARNING TABLE - WARN
(EMER/2R - 5A/FIN)
Page 1 of 10 pages
System
Message Text
Crew Response
Event
Page
Code Number
!
" !
# !
#
$%&
ECLSS Cabin Fan Fail-Node 1
ECLSS Cabin Press High-Node 1
ECLSS Cabin Press Low-Node 1
{2.507 NODE 1 CABIN FAN SAFING 34
WARN} (SODF: EMER: WARNING
PROCEDURES: ECG)
{2.503 ISS CABIN PRESS HIGH - WARN}
103
(SODF: EMER: WARNING
PROCEDURES: ECG)
{1.601 RAPID DEPRESS - EMER} (SODF:
104
TBD)
ECLSS FGB Smoke-RS
Action: Verify SD condition. computer will indicate one sensor in alarm.
MCC will test the sensor to verify function.
Fire Isolation Failure of Node 1 by
MDM N1-1
Fire Isolation Failure of Node 1 by
ECLSS
MDM N1-2
Action: None. Fire Isolation is checked
275
as part of the Fire/Smoke cue cards.
Action: None. Fire Isolation is checked as
276
part of the Fire/Smoke cue cards.
ECLSS
ECLSS
' ( ) ECLSS SM BMP1 Fire Hazard-RS
ECLSS SM BMP2 Fire Hazard-RS
ECLSS SM Cabin Pressure High-RS
ECLSS SM Cabin Pressure Low-RS
ECLSS SM Carbon Dioxide High-RS
ECLSS
SM Crew Transfer Vehicle Instr
Compartment Pressure Low-RS
( (* !
+
# ,#
51
43
472
-./0
Action: Verify and notify MCC.
9207
Action: Verify and notify MCC.
9208
Action: Crew should verify via telemetry
and vacuum meter the actual Cabin
Pressure and report to MCC. Decision to
open KSD pressure relief valve will be
471
made by MCC post analysis. If pressure
relief valve is to be opened, the crew
should go to Soyuz and wait until KSD
valve is re-closed.
Action: Crew will verify actual pressure
reading via telemetry and vacuum meter.
643
No Further crew action is required without
MCC direction.
Action: Monitor Vozdukh status. LIOH
cartridges or CDRA may be activated after 642
MCC conference.
Action: Crew will verify via telemetry the
current status: temp/press and calculate
the rate of decay. May actually have to
undock/land depending upon the situation.
Instrument Compartment normal pressure
is 780 mmHg. If pressure falls below 450
mmHg, Soyuz avionics may not function.
647
5
14 AUG 00
692.xls
2.101 NCS WARNING TABLE - WARN
(EMER/2R - 5A/FIN)
Page 2 of 10 pages
System
Message Text
Crew Response
ECLSS
SM ELECTRON Catastrophic FailureRS
ECLSS
SM Fire Detection System Power OffRS
ECLSS SM Hydrogen High-RS
ECLSS SM Oxygen Partial Pressure High-RS
ECLSS SM Oxygen Partial Pressure Low-RS
ECLSS SM Smoke-RS
Action: Verify PP02 levels. May want
crew to activate TGK after conference with
MCC.
Action: Verify via telemetry which
component failed within the primary
channel. Report to MCC.
Action: Verify Elektron is off. If still active,
shut off the system.
Action: Verify PPO2 value via telemetry
and report results to MCC.
Action: Verify PPO2 level and report to
MCC.
Action: Verify SD condition. computer
will indicate one sensor in alarm. MCC will
test the sensor to verify function.
Event
Page
Code Number
648
628
646
645
644
641
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692.xls
2.101 NCS WARNING TABLE - WARN
(EMER/2R - 5A/FIN)
Page 3 of 10 pages
System
Message Text
Crew Response
Event
Page
Code Number
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692.xls
2.101 NCS WARNING TABLE - WARN
(EMER/2R - 5A/FIN)
Page 4 of 10 pages
System
Message Text
Crew Response
Event
Page
Code Number
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14 AUG 00
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2.101 NCS WARNING TABLE - WARN
(EMER/2R - 5A/FIN)
Page 5 of 10 pages
System
Message Text
Crew Response
Event
Page
Code Number
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83
77
83
83
83
83
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83
83
83
109
9
14 AUG 00
692.xls
2.101 NCS WARNING TABLE - WARN
(EMER/2R - 5A/FIN)
Page 6 of 10 pages
System
Message Text
1 ?A . !4
6 4 1 ?A
3"4
1 ?A 6 !4
1 ??A . ! "
4
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4
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1 ??A B2$ ! !B2
1 ??A B2$ !B2
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1 ??A
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1 ??A B26 !B2
1 ??A B26 "
B2
B26 !! !
1 ??A
B2
1 1A . ! 3"4
1 1A 6 ! 3"4
Crew Response
5.#4/& ?A 68.9 4 81
9 =':> 8?3@ 11@
='::; 1?A1@ 1;9
5.#4.- ?A 68.9 4
1A1: '3:; 3'1? 4
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9 =':> 8?3@ 11@
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5.#4/- ??A 68.9 11
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5.#422 ??A 68.9 1';1
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5.#422 ??A 68.9 1';1
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Event
Page
Code Number
&.%
81
2.02
109
&.4
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10
14 AUG 00
692.xls
2.101 NCS WARNING TABLE - WARN
(EMER/2R - 5A/FIN)
Page 7 of 10 pages
System
Message Text
. 3 ! 1 3"4
6 3 ! 1 3"4
Crew Response
:
# +"#
:
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5.#426 3 68.9 ?1'?)1'?
3
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Page
Code Number
220&
2200
2$.0
85
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103
22&2
2/02
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89
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91
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93
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103
11
14 AUG 00
692.xls
2.101 NCS WARNING TABLE - WARN
(EMER/2R - 5A/FIN)
Page 8 of 10 pages
System
Message Text
Crew Response
5.#4./ 3 68.9 3
4 =':> 8?3@ 11@
='::; 1?A1@ 1;9
5.#4.2 3 68.9 '7A
3 6 C A1 1 '3:; 3'1? 4 ! 3"4
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Page
Code Number
1 3 6 4
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91
1
2.40
93
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95
2.42
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124
124
124
12
14 AUG 00
692.xls
2.101 NCS WARNING TABLE - WARN
(EMER/2R - 5A/FIN)
Page 9 of 10 pages
System
Message Text
Crew Response
11 '89 '3:;
! ' 3 A 3 5.#&/.
11'
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4
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11' ! ' 3 5.#&/. 11 '89 '3:;
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Page
Code Number
%%2
124
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124
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136
2$2&
124
2.0&
118
2.%/
124
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124
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136
13
14 AUG 00
692.xls
2.101 NCS WARNING TABLE - WARN
(EMER/2R - 5A/FIN)
Page 10 of 10 pages
System
Message Text
Crew Response
5.#&/4 ' 89 3)7 :)$
A:?11 1:1 3'1? +
"
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3)7
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Event
Page
Code Number
202
136
14
14 AUG 00
692.xls
2.201 CCS WARNING TABLE - WARN
(EMER/5A - ALL/FIN)
Page 1 of 17 pages
System
Message Text
Crew Response
Command and Data Handling Group
# (3 ' '
'0 '5 63 '5 # 7
$"%& ! '() # ( *+ ,-./ / *(#
'.0-/ #1
$"%! (3 3) (0 *+ ,-./ / *(#
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$"%& ! '() # ( *+ ,-./ / *(#
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Event
Code
Page
Number
!"
"2
115
!!
33
2!
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115
43
43
43
43
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51
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B&B
B!B2
B!"
15
14 AUG 00
8661.xls
2.201 CCS WARNING TABLE - WARN
(EMER/5A - ALL/FIN)
Page 2 of 17 pages
System
Message Text
-- # -5<
-- .
;
-- 0
;
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5
;
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;
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5
-- 'B (
-- -B (
-- . -9; ----
Crew Response
@
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$"% *3 .-3 38
(# *(# -(# *+
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$"% 'B (.'3(@ *+ ,-./ / *(#
'.0-/ #1
$"% B -B (.'3(@ *+ ,-./ / *(#
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Event
Code
&"
B&"
B!"
B2
B "
65
B !
67
B&!
39
B!"B
39
B2"
39
B& 47
B& "
49
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B2"
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B!B
B!A
B!2
B!&
B!2
B!&
B!BB
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Page
Number
BB A
16
14 AUG 00
8661.xls
2.201 CCS WARNING TABLE - WARN
(EMER/5A - ALL/FIN)
Page 3 of 17 pages
System
-------
Message Text
' ." (
' :> *:
' ." (
' ? *:
' ." (
' ? *:
' ." ( 9
*:
' ." ( 9
*:
';
' = 9
Crew Response
Event
Code
Page
Number
B!!
53
-- :> , 1 *:
$"% 2 '.-(3(@ '--0 (
(0 *+ ,-./ /
*(# '.0-/ #1
$"% A '' (# *+ ,-./
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BBA
55
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$"% ''." (# *+ ,-./
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57
-- " :> , 1 *:
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55
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Action: Verify and notify MCC.
Action: Verify and notify MCC.
Action: Crew should verify via telemetry
and vacuum meter the actual Cabin
Pressure and report to MCC. Decision to
open KSD pressure relief valve will be
made by MCC post analysis. If pressure
relief valve is to be opened, the crew
should go to Soyuz and wait until KSD
valve is re-closed.
B!B
B!B
B!B!
B!
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59
61
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A" 2
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Action: Crew will verify via telemetry the
current status: temp/press and calculate
the rate of decay. May actually have to
undock/land depending upon the situation.
Instrument Compartment normal pressure
is 780 mmHg. If pressure falls below 450
mmHg, Soyuz avionics may not function.
B&
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17
14 AUG 00
8661.xls
2.201 CCS WARNING TABLE - WARN
(EMER/5A - ALL/FIN)
Page 4 of 17 pages
System
Message Text
Crew Response
@
= 5
?>>
-;
5 '?
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5
=
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5
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% %
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Verify PPO2 level and report to
-- - .:
' '
;;9
?- Action:
MCC.
-- - -5<
-- @- :
<
Action: Verify SD condition. computer
will indicate one sensor in alarm. MCC will
test the sensor to verify function.
$"%! @00 -)-3 -(# *+ ,-./ / *(#
'.0-/ #1
$"%! @00 -)-3 -(# *+ ,-./ / *(#
'.0-/ #1
$"%! @00 -)-3 -(# *+ ,-./ / *(#
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Event
Code
Page
Number
B"2
BB
B
B
B
B 2
B!
BBA
B!
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63
33 66,"661 -(#
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71
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71
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-- @- ';;7
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18
14 AUG 00
8661.xls
2.201 CCS WARNING TABLE - WARN
(EMER/5A - ALL/FIN)
Page 5 of 17 pages
System
Message Text
Crew Response
Event
Code
Page
Number
33 66,"661 -(#
""" 0
:
-=: $"%B
'- 8(-3
'B *+ ,-./
"!B
'B
/ *(# '.0-/ '#1
71
33 66,"661 -(#
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5 .9 .= :
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/ *(# '.0-/ '#1
71
33 66,"661 -(#
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71
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71
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3
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/ *(# '.0-/ '#1
71
33 66,"661 -(#
0
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/ *(# '.0-/ '#1
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$"%B 33 66,"661 -(#
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/ *(# '.0-/ '#1
71
33 66,"661 -(#
"" 3
5 .9 .= :
-=: $"%B
'- 8(-3
'B *+ ,-./
"2
'B
/ *(# '.0-/ '#1
71
33 66,"661 -(#
"" 0
:
-=: $"%B
'- 8(-3
'B *+ ,-./
"!
'B
/ *(# '.0-/ '#1
71
19
14 AUG 00
8661.xls
2.201 CCS WARNING TABLE - WARN
(EMER/5A - ALL/FIN)
Page 6 of 17 pages
System
Message Text
Crew Response
Event
Code
Page
Number
33 66,"661 -(#
! 3
5 .9 .= :
-=: $"%B
'- 8(-3
'B *+ ,-./
"A
'B
/ *(# '.0-/ '#1
71
33 66,"661 -(#
! 0
:
-=: $"%B
'- 8(-3
'B *+ ,-./
"!
'B
/ *(# '.0-/ '#1
71
33 66,"661 -(#
!" 3
5 .9 .= :
-=: $"%B
'- 8(-3
'B *+ ,-./
""
'B
/ *(# '.0-/ '#1
71
33 66,"661 -(#
!" 0
:
-=: $"%B
'- 8(-3
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'B
/ *(# '.0-/ '#1
71
$"%B ! 0 6,"61 .-- . .
-(# ( 'B *+ ,-./
""
/ *(# '.0-/ '#1
73
$"%B 0 6,"61 .@3'
'- 0 " .
5 -=: 'B -(# ( 'B *+ ,-./
""
/ *(# '.0-/ '#1
75
$"%B ! 0 6,"61 .-- . .
-(# ( 'B *+ ,-./
"!
/ *(# '.0-/ '#1
73
$"%B 0 6,"61 .@3'
'- 0 "" .
5 -=: 'B -(# ( 'B *+ ,-./
"!
/ *(# '.0-/ '#1
75
$"%B ! 0 6,"61 .-- . .
-(# ( 'B *+ ,-./
"
/ *(# '.0-/ '#1
73
$"%B 0 6,"61 .@3'
'- 0 "! .
5 -=: 'B -(# ( 'B *+ ,-./
"
/ *(# '.0-/ '#1
75
$"%B ! 0 6,"61 .-- . .
-(# ( 'B *+ ,-./
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/ *(# '.0-/ '#1
73
$"%B 0 6,"61 .@3'
'- 0 .
5 -=: 'B -(# ( 'B *+ ,-./
" A
/ *(# '.0-/ '#1
75
" ;; = 55 -=:
'- 0
'B
"" ;; = 55 -=:
'- 0
'B
"! ;; = 55 -=:
'- 0
'B
;; = 55 -=:
'- 0
'B
" ;; = 55 -=:
'- 0
'B
$"%B ! 0 6,"61 .-- . .
-(# ( 'B *+ ,-./
"
/ *(# '.0-/ '#1
73
20
14 AUG 00
8661.xls
2.201 CCS WARNING TABLE - WARN
(EMER/5A - ALL/FIN)
Page 7 of 17 pages
System
Message Text
Crew Response
Event
Code
$"%B 0 6,"61 .@3'
'- 0 " .
5 -=: 'B -(# ( 'B *+ ,-./
"
/ *(# '.0-/ '#1
! ;; = 55 -=:
'- 0
'B
$"%B ! 0 6,"61 .-- . .
-(# ( 'B *+ ,-./
"
/ *(# '.0-/ '#1
$"%B 0 6,"61 .@3'
'- 0 ! .
5 -=: 'B -(# ( 'B *+ ,-./
/ *(# '.0-/ '#1
$"%B! 0# ,"1 -(# 'B " '
;;
9
'- #
*+ ,-./ / *(#
-=: 'B
'.0-/ '#1
$"%B # ,"1 .3. -(# 'B
'- # " - -=: 'B *+ ,-./ / *(#
'.0-/ '#1
$"%B!
0# ,"1 -(# 'B " @
5 -=:
'- #
*+
,-./ / *(#
'B
'.0-/ '#1
$"%B! 0# ,"1 -(# 'B '- # " .
5 'B
*+ ,-./ / *(#
'.0-/ '#1
$"%B!
0# ,"1 -(# 'B '
;;
9
'- #
*+
,-./ / *(#
-=: 'B
'.0-/ '#1
$"%B # ,"1 .3. -(# 'B
'- # - -=: 'B *+ ,-./ / *(#
'.0-/ '#1
$"%B!
0# ,"1 -(# 'B @
5 -=:
'- #
*+
,-./ / *(#
'B
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$"%B! 0# ,"1 -(# 'B '- # .
5 'B
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'.0-/ '#1
>
'?
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@
'- ->
(
-
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->
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'
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'B
>
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(
-
>
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(
-B
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->
(
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'- >
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'B
Page
Number
75
73
"
75
"B
83
"
77
"2
83
83
"
83
"A
77
"&
83
83
B!
B
B
BB
B&
B2
BA
&
21
14 AUG 00
8661.xls
2.201 CCS WARNING TABLE - WARN
(EMER/5A - ALL/FIN)
Page 8 of 17 pages
System
Message Text
" ( B .
9
-=:
'- -0
'B
'- -0 " 3'B
( B .
9
-=:
'- -0
'B
'- -0 3'B
'- 0 " .
5 'B
'- 0 " .
5 -=: 'B
'- 0 " .
:
'B
" .
:
-=: '- 0
'B
'- 0 .
5 'B
'- 0 .
5 -=: 'B
Crew Response
$"%B B -0 ,"1 ( B
.@03 -(# ( 'B
,'.-3 -1 *+ ,-./ /
*(# '.0-/ '#1
$"%B & -0 ,"1 3(' 'B ,'.-3
-1 *+ ,-./ / *(#
'.0-/ '#1
$"%B B -0 ,"1 ( B
.@03 -(# ( 'B
,'.-3 -1 *+ ,-./ /
*(# '.0-/ '#1
$"%B & -0 ,"1 3(' 'B ,'.-3
-1 *+ ,-./ / *(#
'.0-/ '#1
$"%B A 0 ,"1 .@3'
.(3(. 'B+ ,-./ 31
$"%B 0 ,"1 .@3'
-(# ( 'B+ ,-./ 31
$"%B 0 ,"1 .@@.3#
.(3(. 'B+ ,-./ 31
$"%B" 0 ,"1 .@@.3#
-(# ( 'B+ ,-./ 31
$"%B A 0 ,"1 .@3'
.(3(. 'B+ ,-./ 31
$"%B 0 ,"1 .@3'
-(# ( 'B+ ,-./ 31
$"%B 0 ,"1 .@@.3#
.(3(. 'B+ ,-./ 31
$"%B" 0 ,"1 .@@.3#
-(# ( 'B+ ,-./ 31
'- 0 .
:
'B
.
:
-=: '- 0
'B
'- 0 " .
5 7
" .
5 -=: '- 0
" .
:
'- 0
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:
-=: '- 0
'- 0 .
5 7 .
5 -=: '- 0
.
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0 .
:
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5 >
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.
5 -=: >
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'- 0
.
:
>
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'- 0
.
:
-=: >
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'- 0 " .
5 >
< ?> %
Event
Code
Page
Number
""
79
2"&
81
"
79
2"B
81
AA&
"
AAA
"B
AAB
"!
AA2
"
2B
A!"
2A
A!
2B&
A!
2BB
A!!
2"
!&
!2
!A
"!
22
14 AUG 00
8661.xls
2.201 CCS WARNING TABLE - WARN
(EMER/5A - ALL/FIN)
Page 9 of 17 pages
System
Message Text
Crew Response
" .
5 -=: >
< ?> %
'- 0
" .
:
>
< ?> %
'- 0
" .
:
-=: >
< ?> %
'- 0
'- 0 ! .
5 >
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! .
5 -=: >
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'- 0
! .
:
>
< ?> %
'- 0
0
'- ! .
:
-=: >
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'- 0 .
5 >
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.
5 -=: >
< ?> %
'- 0
.
:
>
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'- 0
.
:
-=: >
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'- 0
"" .
5 '- 0
"
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5 -=: '- 0
"
"" .
:
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"
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:
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"
"" .
5 '- 0
"
"" .
5 -=: '- 0
"
"" .
:
'- 0
"
"" .
:
-=: '- 0
" .
5 '- 0
"
" .
5 -=: '- 0
"
" .
:
'- 0
"
" .
:
-=: '- 0
"
" .
5 '- 0
"
" .
5 -=: '- 0
"
" .
:
'- 0
"
" .
:
-=: '- 0
"
Event
Code
Page
Number
"
"
"B
!
!
!"
!!
2!
!
2 "
AB
2 A
2!"
A"
2!
A"!
2"
A""
2"
A"
2!
A!
2"
A"A
23
14 AUG 00
8661.xls
2.201 CCS WARNING TABLE - WARN
(EMER/5A - ALL/FIN)
Page 10 of 17 pages
System
Message Text
Crew Response
" .
5 '- 0
"
" .
5 -=: '- 0
"
" .
:
'- 0
"
" .
:
-=:
'- 0
"
".! .
5 '- 0
"
".! .
5 -=: '- 0
"
".! .
:
'- 0
"
".! .
:
-=:
'- 0
"
"'! .
5 '- 0
"
"'! .
5 -=: '- 0
"
"'! .
:
'- 0
"
"'! .
:
-=:
'- 0
"
"- .
5 '- 0
"
"- .
5 -=: '- 0
"
"- .
:
'- 0
"
"- .
:
-=:
'- 0
"
'- 0 '! .
5 ' '! .
5 -=: '- 0
'
'- 0 '! .
:
' '! .
:
-=: '- 0
'
'! 3
5 -=:
'- 0
9
'
'- 0 - .
5 0
.
5
-=:
'- '- 0 - .
:
- - .
:
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- 3
5 -=:
'- 0
9
'- 0 - " .
5 0
"
.
5
-=:
'- '- 0 - " .
:
- Event
Code
Page
Number
2B
A"2
2
A"&
2!A
A"B
2!2
A"
2 A
A2
2 2
A&
22
A"
2&
AA
2&
A
"
2&!
B
&
2
A
2&"
B!
B
24
14 AUG 00
8661.xls
2.201 CCS WARNING TABLE - WARN
(EMER/5A - ALL/FIN)
Page 11 of 17 pages
System
Message Text
Crew Response
- " .
:
-=: '- 0
- " 3
5 -=:
'- 0
9
'- 0 - ! .
5 0
!
.
5
-=:
'- '- 0 - ! .
:
- - ! .
:
-=: '- 0
- ! 3
5 -=:
'- 0
9
'- 0 - .
5 0
.
5
-=:
'- '- 0 - .
:
- - .
:
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- 3
5 -=:
'- 0
9
'- 0 - .
5 - - .
5 -=: '- 0
-
'- 0 - .
:
- - .
:
-=: '- 0
-
- 3
5 -=:
'- 0
9
-
0 G!,G1 .@3'
'- 0 G! ;
.
5G $!%!
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0 G!,G1 .@3'
'- 0 G! .
5G $!%!
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$!%! 0 G!,G1
'- 0 G! .
:
G .@@.3# .(3(. +
,-./ 31
0
G!
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$!%!
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'- G
.(3(. + ,-./ 31
0 G!,G1 .@3'
'- 0 G ;
.
5G $!%!
.(3(. + ,-./ 31
0 G!,G1 .@3'
'- 0 G .
5G $!%!
.(3(. + ,-./ 31
$!%! 0 G!,G1
'- 0 G .
:
G .@@.3# .(3(. +
,-./ 31
0
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'?
-9
.
5
$!%!
0 G!,G1 .@3'
'- G
.(3(. + ,-./ 31
$"%B! 0# ,"1 -(# 'B '- 0 " .
5 -=: 'B *+ ,-./ / *(#
'.0-/ '#1
$"%B! 0# ,"1 -(# 'B '- 0 .
5 -=: 'B *+ ,-./ / *(#
'.0-/ '#1
Event
Code
Page
Number
B
BB
2&
&
&
&"
&!
2&
&&
&2
&A
2
2&
2
2
2B
2&
""
"
"!
"B
2B
2A
2&
A
"&
83
"&!
83
25
14 AUG 00
8661.xls
2.201 CCS WARNING TABLE - WARN
(EMER/5A - ALL/FIN)
Page 12 of 17 pages
System
Message Text
3
5 -=: 9
'- -0
" 3
5 -=: 9
'- -0
! 3
5 -=: 9
'- -0
3
5 -=: 9
'- -0
'- 'H'H(
H:>H3
5
'
Crew Response
Event
Code
B B B A
B!
2
'- '0 -=: 9
= '@0 >
< ?> %
B2
'- '0 -=: 9
= '@0 >
< ?> %
B""
'- '0 -=: 9
= '@0 " B"B
'- '0 -=: 9
= '@0 " B!
'- '0 -=: 9
= '@0 ! B!
'- '0 -=: 9
= '@0 ! B!2
'- '0 -=: 9
= '@0 B"
'- '0 -=: 9
= '@0 " @ .
5 -=:
'- '@3
'B
@ .
5 -=:
'- '@3
'B
BB
'- " >
9
'- '@3'B
'- " >
-=:
'- '@39
'B
'- " @ 7
'- '@3-=: 'B
'- " ? @
'- '@39
3
5 :>'B
'- '@3- '- " 9 <'B
'- '@3- '- " ;; = 55'B
'- " 595 .9
'- '@33
5 -=: 'B
% ?5 ;
>7
%
% ?5 ;
>7
%
$"%B '@3- '- ,"1 (0 .(3(. 'B *+
,-./ / *(#
'.0-/ '#1
$"%B"B '@3- '- ,"1 -(#
8(-3 *+ ,-./ /
*(# '.0-/ '#1
% ?5 ;
>7
%
% ?5 ;
>7
%
$"%BA '@3- '- ,"1 0( 8 'B *+ ,-./ / *(#
'.0-/ '#1
$"%B" '@3- '- ,"1 .-- .
. 'B *+ ,-./ /
*(# '.0-/ '#1
$"%B" '@3- '- ,"1 6(0
.033 3' -(# ( 'B *+ ,-./ / *(#
'.0-/ '#1
Page
Number
2
!"
85
!&
103
2
&2&
89
2
91
"B&
93
26
14 AUG 00
8661.xls
2.201 CCS WARNING TABLE - WARN
(EMER/5A - ALL/FIN)
Page 13 of 17 pages
Event
Code
Page
Number
'- " 595 .9
'- '@33
5 @'B
2A
95
'-
"B!
97
2&
99
"A
103
!"
85
!B
103
System
'''''''''''''''-
Message Text
Crew Response
$"%B"" '@3- '- ,"1 6(0
.033 3' @(.3(. 'B *+ ,-./ / *(#
'.0-/ '#1
$"%B"! '@3- '- ,"1 ((0
'@3- '- " 595 .9
(3 3' -(# ( 'B 3
5 -=: 'B
*+ ,-./ / *(#
'.0-/ '#1
$"%B" '@3- '- ,"1 ((0
'@3- '- " 595 .9
(3 3' @(.3(. 'B *+
3
5 @'B
,-./ / *(#
'.0-/ '#1
'@3- '- " '95 -?>
$"%B"B '@3- '- ,"1 -(#
'B
8(-3 *+ ,-./ 31
$"%B '@3- '- ,"1 '@3- '- >
9
(0 .(3(. 'B *+
'B
,-./ / *(#
'.0-/ '#1
'@3- '- >
-=: $"%B"B '@3- '- ,"1 -(#
9
'B
8(-3 *+ ,-./ 31
'@3- '- @ 7 % ?5 ;
-=: 'B
>7
%
'@3- '- ? @
% ?5 ;
9
3
5 :>'B
>7
%
$"%B"B
'@3- '- ,"1 -(#
'@3- '- 9 <'B
8(-3 *+ ,-./ 31
$"%B" '@3- '- ,"1 .-- .
'@3- '- ;; = 55'B . 'B *+ ,-./ /
*(# '.0-/ '#1
$"%B" '@3- '- ,"1 6(0
'@3- '- 595 .9
.033 3' -(# ( 'B 3
5 -=: 'B
*+ ,-./ / *(#
'.0-/ '#1
$"%B"" '@3- '- ,"1 6(0
'@3- '- 595 .9
.033 3' @(.3(. 'B 3
5 @'B
*+ ,-./ / *(#
'.0-/ '#1
$"%B"! '@3- '- ,"1 ((0
'@3- '- 595 .9
(3 3' -(# ( 'B 3
5 -=: 'B
*+ ,-./ / *(#
'.0-/ '#1
$"%B" '@3- '- ,"1 ((0
'@3- '- 595 .9
(3 3' @(.3(. 'B *+
3
5 @'B
,-./ / *(#
'.0-/ '#1
'@3- '- '95 -?>
$"%B"B '@3- '- ,"1 -(#
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'@3- @
>
'?
'B >
< ?> %
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>
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>
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'B
&A
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&2
103
2!2
91
"B
93
22
95
"B
97
2B
99
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103
B
27
14 AUG 00
8661.xls
2.201 CCS WARNING TABLE - WARN
(EMER/5A - ALL/FIN)
Page 14 of 17 pages
System
Message Text
Crew Response
>
< ?> % 3
'- ' 'BH ;; = 55 '
9
%
>
< ?> % 3
'- ' 'BH 3
'
9
%
>
< ?> % 3
'- ' -B"H ;; = 55 '
9
%
>
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'- ' -B"H 3
'
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%
;;
'- - '?
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F95
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@
= 5
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'- - -' 55 9; '?
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=
?> >
5
>
% %
@
= @ 5
?>> '- - -0 0 '?
.==5>: 9 =
% %
Event
Code
Page
Number
B
A"A
B A!
B"
!2
!B
'- --0 " .
5 -=: 'B
$"%B"& --0 ,"1 .@3' -(#
( 'B *+ ,-./ /
"&B
*(# '.0-/ '#1
105
'- --0 .
5 -=: 'B
$"%B"& --0 ,"1 .@3' -(#
( 'B *+ ,-./ /
"&
*(# '.0-/ '#1
105
- 3; (
- 9
':
;;
-9 3; (
- 9
':
;;
- ;; .= # 9
- - 9 - - -0 9
'
'
'
'
'
'
'
'
'
'
'
'
' *: '(-' ' *: '(-' "
' *: '(-'
' *: '(-'"
' *: '(-'!
' *: '(-'
' *: '(-'
' *: '(-'"
' *: '(-'!
' *: '(-'
' *: ''-!
' *: ''-!"
14 AUG 00
'- 3;
-9% I- -9;I
@
= 0- - -9
@
= - - -9
$"%& " .-- . # 33(30
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*(# '.0-/ #1
$"%& " .-- . # 33(30
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/ *(# '.0-/ #1
@
= - ;9 5
%
28
2&
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113
&
113
2
B&&
B2
BB
BB2
B&
B&
B!
BB
BA
BB"
B "
B 8661.xls
2.201 CCS WARNING TABLE - WARN
(EMER/5A - ALL/FIN)
Page 15 of 17 pages
System
'
'
'
'
'
'
'
'
'
'
'
'
'
'
'
'
'
'
'
'
'
'
'
'
'
'
'
Message Text
Crew Response
' *: ''-!!
' *: ''-!
' *: (-'
' *: (-'"
' *: (-'!
' *: (-'
' *: (-'
' *: (-'!
' *: (-''
' *: (-''"
' *: (-''
' *: (-'-
' *: (-'-"
' *: (-'-!
' *: (-'-
' *: J(-'
' *: J(-'"
' *: J(-'!
' *: J(-'
' *: J(-'
' *: J(-'
' *: J(-'"
' *: J(-'!
' *: J(-'
' *: J(-'B
' *: 0'!
' *: 0'!"
- -=: 9
- -=:9
>
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>
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$"%2 " 3- ..' ,1 -(#
8(-3 *+ ,-./ /
*(# '.0-/ 3#1
$"%2 " 3- ..' ,1 -(#
3- '- ;; = 55 8(-3 *+C ;
; " ! 'B
,-./ / *(#
'.0-/ 3#1%
$"%2 " 3- ..' ,1 -(#
3- '- 595
8(-3 *+ ,-./ /
.9
3
5 -=: 'B
*(# '.0-/ 3#1
" 3- ..' ,1 -(#
3- '- .0 9
$"%2
8(-3
*+ ,-./ /
'B
*(# '.0-/ 3#1
" 3- ..' ,1 -(#
3- '- .9
$"%2
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3
5( -=: 'B
*(# '.0-/ 3#1
$"%2 B 3,31 (6 !
3- '- .9
3
5 03' -'.- ( ? -=: 'B
*+ ,-./ / *(#
'.0-/ 3#1
Event
Code
B 2
B AA
B
B"!
B"B
B"A
B!"
B
B AB
B
B!
B!2
B
B
B&
BA2
B" B" B" &
B"
B2!
B2B
B2A
BA"
BA
B"
B&
Page
Number
B"
&"
'- ( 3- 3-=: 'B
"BA
124
3-
2!A
124
"BB
124
&&
124
!
124
"&
136
3333-
29
14 AUG 00
8661.xls
2.201 CCS WARNING TABLE - WARN
(EMER/5A - ALL/FIN)
Page 16 of 17 pages
Event
Code
Page
Number
'- '95
3- 3
>
-=: 9
'B
!2
124
3-
"2
118
"&
124
2
124
"B2
124
&&!
124
!"
124
"&"
136
!A
124
"B
118
System
333333333333333-
Message Text
Crew Response
$"%2 " 3- ..' ,1 -(#
8(-3 *+ ,-./ /
*(# '.0-/ 3#1
$"%2 3- ..' ,1 '0'
3- '95 -?>
-*(3.@ ( 8(-3 'B
*+ ,-./ / *(#
'.0-/ 3#1
" 3- ..' ,1 -(#
3- '- ( $"%2
8(-3
*+ ,-./ /
-=: 'B
*(# '.0-/ 3#1
$"%2 " 3- ..' ,1 -(#
3- '- ;; = 55 8(-3 *+C ;
; " ! 'B
,-./ / *(#
'.0-/ 3#1%
$"%2 " 3- ..' ,1 -(#
3- '- 595
8(-3 *+ ,-./ /
.9
3
5 -=: 'B
*(# '.0-/ 3#1
" 3- ..' ,1 -(#
3- '- .0 9
$"%2
8(-3
*+ ,-./ /
'B
*(# '.0-/ 3#1
" 3- ..' ,1 -(#
3- '- .9
$"%2
8(-3 *+ ,-./ /
3
5( -=: 'B
*(# '.0-/ 3#1
$"%2 B 3,31 (6 !
3- '- .9
3
5 03' -'.- ( ? -=: 'B
*+ ,-./ / *(#
'.0-/ 3#1
$"%2 " 3- ..' ,1 -(#
3- '- '95
8(-3 *+ ,-./ /
>
-=: 9
'B
*(# '.0-/ 3#1
$"%2 3- ..' ,1 '0'
3- '95 -?>
-*(3.@ ( 8(-3 'B
*+ ,-./ / *(#
'.0-/ 3#1
3- @
>
'?
3- @
>
'?
(3- @
>
'?
(3- @
>
'?
>
< ?> % 9
=9
7 (3- 9
?> ( ;
% (= ( ; >7
>7
;;
=9
9
? 7
9<
(3- =9%
$"%2 (3- 8 (-.3(.
7 (3- < (; ( *+ ,-./ /
5 *(# '.0-/ 3#1
$"%2 (3- . 08.* 7 (3- 0<?
*+ ,-./ 31
2
!
B& 2
A!
130
BBAA
132
30
14 AUG 00
8661.xls
2.201 CCS WARNING TABLE - WARN
(EMER/5A - ALL/FIN)
Page 17 of 17 pages
System
Message Text
(3- '95 9
?> (
3- 7
>7
Crew Response
>
< ?> % 9
=9
;
% (= ( ; >7
;;
=9
9
? 7
9<
(3- =9%
! (3- 8 03.
(3- -;
5 9 (; < $"%2
3- 7
(-.3(.
(((3 *+ ,-./
5 (>7
/ *(# '.0-/ 3#1
$"%2 B 3,31 (6 !
3 (6 ! ( 3
5 ?
03' -'.- ( 3- 7
;; *+ ,-./ / *(#
'.0-/ 3#1
$"%2 & 3,31 8 -03.*
3- 7 3 < ->9? (>7
(((3 *+ ,-./ /
*(# '.0-/ 3#1
$"%2 B 3,31 (6 !
7
3
(6
!
(
3
5
?
03' -'.- ( 3- ;; *+ ,-./ / *(#
'.0-/ 3#1
$"%2 & 3,31 8 -03.*
3- 7 3 < ->9? (>7
(((3 *+ ,-./ /
*(# '.0-/ 3#1
*
'95 '<:
9
3- '
'
$"%2 2 3 -(# 3,31
3>
5
-=:
3
(6
(6 ! 8 33 *+
3- ;;(; (>7
,-./ / *(#
'.0-/ 3#1
$"%2 2 3 -(# 3,31
-=: 3 (6 ! < (6 ! 8 33 *+
3- 3>
5
,-./ / *(#
'.0-/ 3#1
$"%2 2 3 -(# 3,31
3>
5
-=:
3
(6
(6 ! 8 33 *+
3- ;;(; (>7
,-./ / *(#
'.0-/ 3#1
$"%2 2 3 -(# 3,31
3>
5
-=:
3
(6
!
<
(6 ! 8 33 *+
3- ,-./ / *(#
'.0-/ 3#1
Event
Code
Page
Number
B& &
B!
128
B!
136
B "2
140
136
B "A
140
2"
A
142
2A
142
A"
142
A
142
31
14 AUG 00
8661.xls
This Page Intentionally Blank
11 AUG 00
32
2.301 INT MDM RETRY FAILURE - WARN
(EMER/5A - ALL/FIN)
Page 1 of 3 pages
NOTE
1. This procedure will be executed for C&W message
‘INT MDM Retry Fail - LAB’ - Warning - Event Code
5033.
2. In the event of a failure of the Primary INT MDM, the
‘Primary INT Fail - LAB’ Caution will appear. The
CCS Redundancy Management application will attempt
to Recover the Backup INT MDM.
3. If this should fail after two attempts, the ‘INT MDM
Recovery Fail - LAB’ Caution will be annunciated.
The CCS will then attempt a power cycle of the original
failed INT MDM.
4. If this should fail, then the ‘INT MDM Retry Fail - LAB’
message will appear. At this point, the following
messages should also be in alarm:
‘Primary INT MDM Fail - LAB’ - Caution - Event
Code 5013
‘Backup INT MDM Fail - LAB’ - Caution - Event
Code 5019
‘INT MDM Recovery Fail - LAB’ - Caution - Event
Code 5027
Both MDMs have been power cycled once in this
process.
5. If the failure was specific to the INT MDMs (i.e., not a
LAB wide power failure), the LA and AL MDM will
continue to operate in Minimal Operations in their last
commanded state. Although operating, the LA MDM
data, and data obtained through the LA MDMs will all
appear static on displays.
PCS
1. CHECKING STATUS OF RECOVERY/RETRY
C&DH Summary: Primary C&C MDM
Primary CCS MDM
‘Software Control’
sel Recovery Retry
Primary CCS Recovery Retry
sel ‘INT MDM’
INT_Recovery_Retry
Verify INT Recovery/Retry in progress − <blank> (Not in progress)
03 AUG 00
33
6165.doc
2.301 INT MDM RETRY FAILURE - WARN
(EMER/5A - ALL/FIN)
Page 2 of 3 pages
NOTE
1. Nominally, Recovery and Retry would never be inhibited;
therefore, it should not be Enabled without MCC
concurrence.
2. If an extended loss of communication is anticipated,
allowing these functions should not damage equipment
and might be considered a last resort.
Verify Recovery Status – Ena
If Recovery Status – Inh
cmd Recovery Enable – Enable Execute
Verify Recovery Status – Ena
cmd Recovery Reset – Reset Execute
Verify INT Recovery/Retry in progress – Yes
Wait up to 10 minutes for Recovery to complete.
PCS
CW Summ
Caution & Warning Summary
Verify ‘Primary INT MDM Fail - LAB’ – Return to normal (Cleared)
If C&W message Return To Normal >>
Verify Retry Status – Ena
If Retry Status – Inh
cmd Retry Enable – Enable Execute
Verify Retry Status – Ena
cmd Retry Reset – Reset Execute
Verify INT Recovery/Retry in progress – Yes
Wait up to 10 minutes for Retry to complete.
PCS
CW Summ
Caution & Warning Summary
Verify ‘Primary INT MDM Fail - LAB’ – Return to normal (Cleared)
If C&W message Return To Normal >>
03 AUG 00
34
6165.doc
2.301 INT MDM RETRY FAILURE - WARN
(EMER/5A - ALL/FIN)
Page 3 of 3 pages
2. MONITORING C&C MDM TEMPERATURE
NOTE
The Primary C&C MDM will fail when the
temperature exceeds 125 °C.
PCS
C&DH Summary: Primary C&C MDM
Primary CCS MDM
Record and monitor temperature °C and continue to step 3.
3. SYSTEM STATUS
Go to {3.706 C&DH SSR-6 INT MDM FAILURE} (SODF: C&DH:
MALFUNCTION: SSR).
03 AUG 00
35
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11 AUG 00
36
2.401 LOSS OF BOTH IACS WITH LOSS OF C&W ANNUNCIATION - WARN
(EMER/5A - ALL/FIN)
Page 1 of 1 page
WARNING
‘AUDIO LOSS OF BOTH IACS’
NOTE
With the loss of both IACs, there is no capability
to annunciate C&W tones from the USOS.
PCS
1. VERIFY LOSS OF BOTH IACS ON C&W SUMMARY
‘C&W Toolbar’
Verify Loss of Both IACs with loss of C&W Annunciation.
************************************************************************
With the Loss of Both IACs, there is no S/G Voice via S-Band.
Contact MCC-H via alternate communication path (Early
Comm OCA or Russian Segment).
************************************************************************
15 JUL 00
37
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11 AUG 00
38
2.501 AR RACK EMERGENCY STOP − WARN
(EMER/5A - ALL/FIN)
PCS
Page 1 of 2 pages
1. CDRA STOP
LAB: ECLSS: AR Rack
LAB AR Rack Overview
‘CDRA’
‘Stop’
cmd Arm
cmd Stop
√CDRA Status – Stop Complete
PCS
2. TCCS SHUTDOWN
LAB: ECLSS: AR Rack
LAB AR Rack Overview
‘TCCS’
‘Shutdown’
cmd Arm
cmd Shutdown
√TCCS Status – Shutdown Complete
PCS
3. MCA STOP
LAB: ECLSS: AR Rack
LAB AR Rack Overview
‘MCA’
‘Stop’
cmd Arm
cmd Stop
Wait 1 minute.
√MCA Status – Stop Complete
sel LB Sys LAB 2 RT 14
LB SYS LAB 2 RT Status
‘14 MCA – RT FDIR Status’
cmd Inhibit FDIR Execute
√RT FDIR Status – Inh
‘14 MCA – RT Status’
cmd Inhibit Execute
√RT Status – Inh
06 JUL 00
39
2315.doc
2.501 AR RACK EMERGENCY STOP − WARN
(EMER/5A - ALL/FIN)
Page 2 of 2 pages
LAB AR Rack Overview
‘MCA’
sel RPCM LAD62B A RPC 04
cmd RPC Position – Open (Verify – Op)
PCS
4. AAA SHUTDOWN
LAB: ECLSS: AR Rack
LAB AR Rack Overview
‘AAA’
‘Shutdown’
CAUTION
If the AAA is shutdown and the MCA RPC was not previously
opened, the MCA Power Supply and the Data and Control
Assy ORUs will overheat within approximately one minute.
cmd Arm
cmd Shutdown
√AAA Status – Not Operational
PCS
5. SD INHIBIT
LAB: ECLSS: AR Rack
Lab AR Rack Overview
‘SD’
‘Inhibit’
cmd Inhibit
√SD Status − Inhibited
06 JUL 00
40
2315.doc
2.502 CCAA EMERGENCY STOP - WARN
(EMER/5A - ALL/FIN)
PCS
Page 1 of 2 pages
1. STOPPING CCAA
LAB: ECLSS: LAB1P6(LAB1S6) CCAA: CCAA Commands
LAB1P6 (LAB1S6) CCAA Commands
cmd STOP
√State → EIB Off
2. UNPOWERING CCAA
sel RPCM LAP61B (LAS62B) A RPC 01
cmd RPC Position - Open (Verify – Op)
sel RPCM LAP61B (LAS62B) A RPC 02
cmd RPC Position – Open (Verify – Op)
sel RPCM LAP61B (LAS62B) A RPC 03
cmd RPC Position – Open (Verify – Op)
sel RPCM LAP61B (LAS62B) A RPC 17
cmd RPC Position – Open (Verify – Op)
3. OPENING LTL SFCS MODULATING VALVE
CAUTION
The SFCSA Modulating Valve must be commanded
open to prevent dP sensor damage when rapidly
changing LTL flow rates, as below when the LTL
MFCV is closed.
‘Mod Vlv’
Enter Direct Vlv drive voltage: -5 volts
duration: 17 seconds
cmd Direct Vlv − Set
Lab: IATCS Overview
‘SFCA’
Verify LTL Mod Vlv dP: 0 ± 7 kPa
4. CLOSING MANUAL FLOW CONTROL VALVE (MFCV)
LAB1P6
Open rack Fwd door.
(LAB1S6)
LAB1P6
(LAB1S6)
Ovhd Fwd
LAB1P6
(LAB1S6)
11 JUL 00
Rotate LTL MFCV 9014 (9016)
closed using 3/8" Ratchet.
Close rack Fwd door.
41
2316.doc
2.502 CCAA EMERGENCY STOP - WARN
(EMER/5A - ALL/FIN)
PCS
Page 2 of 2 pages
5. RE-ENABLING LTL SFCA CLC
LAB: TCS: LTL SFCA
LTL SFCA Commands
cmd CLC − Ena
√CLC − Ena
11 JUL 00
42
2316.doc
2.503 ISS CABIN PRESS HIGH - WARN
(EMER/2R - 5A.1/FIN/MULTI)
Page 1 of 1 page
Progress 1. Gaseous O2(N2,Air) Supply valves – CL
2. Gaseous O2(N2,Air) Isolation valves – CL
Node 1
Port
(Stbd)
Hatch
3. Uncap PPRV (one)
4. Go to {3.201 ISS CABIN PRESSURE HIGH/LOW TROUBLESHOOTING}
(SODF: ECLSS: MALFUNCTION: ACS).
29 JUL 00
43
6995.doc
This Page Intentionally Blank
11 AUG 00
44
2.504 ISS CABIN PRESS LOW - WARN
(EMER/2R - 5A.1/FIN/MULTI)
Page 1 of 1 page
Node 1
1. Cap PPRVs (two)
Port, Stbd
Hatches
SM: ECLSS: Depressurization
If reserve time left < 12:00:00
SM Pnl
338(FGB
Pnl 429,
Russian
Laptop)
pb ∆P/∆t - press
Go to {1.601 ISS RAPID DEPRESS} (SODF: EMER: EMERGENCY
PROCEDURES: RAPID DEPRESS) >>
2. Go to {3.201 ISS CABIN PRESSURE HIGH/LOW TROUBLESHOOTING}
(SODF: ECLSS: MALFUNCTION: ACS).
06 JUL 00
45
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11 AUG 00
46
2.505 LAB1P6 CCAA INOPERATIVE - WARN
(EMER/5A - ALL/FIN)
PCS
Page 1 of 2 pages
1. UNPOWERING CCAA
LAB: ECLSS: LAB1P6 CCAA: CCAA Commands
LAB1P6 CCAA Commands
sel RPCM LAP61B A RPC 01
cmd RPC Position − Open (Verify – Op)
sel RPCM LAP61B A RPC 02
cmd RPC Position – Open (Verify – Op)
sel RPCM LAP61B A RPC 03
cmd RPC Position – Open (Verify – Op)
sel RPCM LAP61B A RPC 17
cmd RPC Position – Open (Verify – Op)
2. OPENING LTL SFCA MODULATING VALVE
CAUTION
The SFCA Modulating Valve must be commanded
open to prevent dP sensor damage when rapidly
changing LTL flow rates, as below when the LTL
MFCV is closed.
‘Mod Vlv’
Enter: Direct Vlv drive voltage: -5 volts
duration: 17 seconds
cmd Direct Vlv - Set
Lab: IATCS Overview
‘SFCA’
Verify LTL Mod Vlv dP: 0 ± 7 kPa
LAB1P6
3. CLOSING MANUAL FLOW CONTROL VALVE (MFCV)
Open rack fwd door
LAB1P6
Ovhd Fwd
Rotate LTL MFCV 9014
LAB1P6
Close rack fwd door.
PCS
closed using 3/8” Ratchet
4. RE-ENABLING LTL SFCA CLC
LAB:TCS:LTL SFCA
LTL SFCA Commands
cmd CLC - Ena
√CLC - Ena
15 JUL 00
47
2304.doc
2.505 LAB1P6 CCAA INOPERATIVE - WARN
(EMER/5A - ALL/FIN)
Page 2 of 2 pages
5. LAB1S6 CCAA ACTIVATION
Activate LAB1S6 CCAA, perform {1.501 CCAA ACTIVATION}
(SODF: ECLSS: ACTIVATION AND CHECKOUT: THC).
6. LAB1P6 CCAA RECOVERY
When time permits, troubleshoot LAB1P6, go to {3.503 CCAA
TROUBLESHOOTING} (SODF: ECLSS: MALFUNCTION: THC).
15 JUL 00
48
2304.doc
2.506 LAB1S6 CCAA INOPERATIVE - WARN
(EMER/5A - ALL/FIN)
PCS
Page 1 of 2 pages
1. UNPOWERING CCAA
LAB: ECLSS: LAB1S6 CCAA: CCAA Commands
LAB1S6 CCAA Commands
sel RPCM LAS62B A RPC 01
cmd RPC Position − Open (Verify – Op)
sel RPCM LAS62B A RPC 02
cmd RPC Position – Open (Verify – Op)
sel RPCM LAPS2B A RPC 03
cmd RPC Position – Open (Verify – Op)
sel RPCM LAPS2B A RPC 17
cmd RPC Position – Open (Verify – Op)
2. OPENING LTL SFCA MODULATING VALVE
CAUTION
The SFCA Modulating Valve must be commanded
open to prevent dP sensor damage when rapidly
changing LTL flow rates, as below when the LTL
MFCV is closed.
‘Mod Vlv’
Enter: Direct Vlv drive voltage: -5 volts
duration: 17 seconds
cmd Direct Vlv - Set
Lab: IATCS Overview
‘SFCA’
Verify LTL Mod Vlv dP: 0 ± 7 kPa
3. CLOSING MANUAL FLOW CONTROL VALVE (MFCV)
LAB1S6
Open rack fwd door
LAB1S6
Ovhd Fwd
Rotate LTL MFCV (9016)
LAB1S6
Close rack fwd door
PCS
closed using 3/8” Ratchet
4. REENABLING LTL SFCA CLC
LAB: TCS: LTL SFCA
LTL SFCA Commands
cmd CLC - Ena
√CLC - Ena
03 AUG 00
49
2281.doc
2.506 LAB1S6 CCAA INOPERATIVE - WARN
(EMER/5A - ALL/FIN)
Page 2 of 2 pages
5. ACTIVATING LAB1P6 CCAA
To activate LAB1P6 CCAA, perform {1.501 CCAA ACTIVATION}
(SODF: ECLSS: ACTIVATION AND CHECKOUT: THC).
6. LAB1S6 CCAA RECOVERY
When time permits, troubleshoot LAB1S6, go to {3.503 CCAA
TROUBLESHOOTING} (SODF: ECLSS: MALFUNCTION: THC).
03 AUG 00
50
2281.doc
2.507 NODE 1 CABIN FAN SAFING - WARN
(EMER/2R - 5A.1/FIN/MULTI)
Page 1 of 1 page
1. Perform {1.505 NODE 1 CABIN FAN ACTIVATION/DEACTIVATION},
step 3.2 (SODF: ECLSS: ACTIVATION AND CHECKOUT: THC).
Remove power from Node 1 Cabin Fan.
NOTE
Loss of Node 1 Cabin Fan is loss of active smoke detection
in Node 1. Crew presence in Node 1 is necessary to provide
a means of smoke detection or required deactivation of all
air-cooled equipment in Node 1.
2. If crew continued presence in Node 1 not required, perform {1.506
NODE 1 IMV FAN ACTIVATION/DEACTIVATION PRE CCS}, step 3
(SODF: ECLSS: ACTIVATION AND CHECKOUT: THC).
Deactivate and remove power from Node 1 IMV Aft Port Fan.
3. Perform {1.402 SMOKE DETECTOR DEACTIVATION}, step 1 (SODF:
ECLSS: ACTIVATION AND CHECKOUT: FDS).
Inhibit monitoring Node 1 SD1 and SD2.
4. Start timer and record time of failure: ____/_______:_______GMT.
5. Evacuate Node 1 if any of the following conditions are met:
Indications of condensation within the Node 1/PMA 1
Crew discomfort
Maximum stay time of 3.5 hours
MCC-H
(ISS)
29 JUL 00
6. When time allows, perform {3.506 NODE 1 CABIN FAN FAILURE}
(SODF: ECLSS: MALFUNCTION: THC).
51
8529.doc
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11 AUG 00
52
2.508 POSITIVE PRESSURE RELIEF FAILURE RECOVERY - WARN
(EMER/5A - ALL/FIN)
PCS
Page 1 of 1 page
1. LAB: ECLSS: PCA
LAB ACS
‘LAB PCA’
If State = Monitor and PPR State = Inhibited
sel PCA Commands
LAB PCA Commands
'Positive Pressure Relief'
'Enable'
cmd Enable
√State − Enabled
LAB ACS
‘LAB PCA’
Node Stbd
Hatch
If Cab Press, mmHg > 780
PPRV → Uncapped
Stow PPRV Cap
2. Notify MCC-H of actions taken.
3. On MCC-H GO, perform {3.203 PCA FAILURE}, all (SODF: ECLSS:
MALFUNCTION: ACS) >>
27 JUL 00
53
8792.doc
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11 AUG 00
54
2.509 PPCH4 HIGH - WARN
(EMER/5A - ALL/FIN)
PCS
Page 1 of 1 page
1. VERIFY MCA IS OPERATIONAL
LAB: ECLSS: AR Rack
Lab AR Rack Overview
‘MCA’
Verify State – Operate
sel MCA
LAB MCA
Record MCA PPCH4 _______mmHg
Record MCA CH4________ %
If State does not equal Operate, or CH4% < 3%, √MCC-H >>
NOTE
The Russian Segment Gas Analyzers do not monitor CH4
and the ‘PPCH4 High (LAB MCA) Warning’ C&W can
only legitimately be enunciated when the MCA is in the
Operate state.
2. VERIFY TCCS IS OPERATIONAL
‘TCCS’
Verify State – Full Up (Warm Up)
If State ≠ Full Up (Warm Up)
‘SD’
√Monitoring Status – Enabled
‘AAA’
√Status – Operational
‘TCCS’
‘RPCM LAD62B A RPC 05’
√RPC Position − Closed
‘Startup’
cmd Startup
√MCC-H for further actions
11 JUL 00
55
2292.doc
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11 AUG 00
56
2.510 PPCO2 HIGH - WARN
(EMER/5A - ALL/FIN/MULTI)
PCS
Page 1 of 2 pages
1. RECORDING SM (FGB) GAS ANALYZER READING
SM (FGB): ECLSS: ATMOS
SM (FGB) Atmosphere
‘Gas Analyzer’
Record SM (FGB) PPCO2 ________ mmHg.
LAB: ECLSS: AR Rack
Lab AR Rack Overview
‘MCA’
Verify State – Operate
If SM (FGB) PPCO2 > 15 mmHg and MCA State ≠ Operate
Perform {3.7 CO2 ABSORBER ACTIVATION}, steps 1 --- 3
(RODF: SM: LIFE SUPPORT SYSTEM), then:
2. RECORDING MCA READING
If MCA State ≠ Operate
To activate MCA, perform {1.301 ATMOSPHERE REVITALIZATION
RACK ACTIVATION}, steps 6, 7, 9 (SODF: ECLSS: ACTIVATION
AND CHECKOUT: ARS), then:
NOTE
Crew exposure to CO2 is limited to 8 hours in a module where
the PPCO2 is between 10 and 15 mmHg. Once PPCO2 has
been validated to be above 10 mmHg, atmospheric scrubbing
for CO2 will be required immediately.
sel MCA
Record MCA PPCO2 _______mmHg.
3. VALIDATING PPCO2 READINGS
If SM (FGB) PPCO2 or MCA PPCO2 > 10 mmHg, and
I SM (FGB) PPCO2 – MCA PPCO2 I < 2.5 mmHg
Perform {3.7 CO2 ABSORBER ACTIVATION}, steps 1 --- 3
(RODF: SM: LIFE SUPPORT SYSTEM), then:
Go to step 4.
If SM (FGB) PPCO2 or MCA PPCO2 > 10 mmHg, but
I SM (FGB) PPCO2 – MCA PPCO2 I > 2.5 mmHg
√MCC-H, sensor error probable >>
25 JUL 00
57
2301.doc
2.510 PPCO2 HIGH - WARN
(EMER/5A - ALL/FIN/MULTI)
PCS
Page 2 of 2 pages
4. VERIFYING CDRA IS OPERATIONAL
LAB: ECLSS: AR RACK
LAB AR Rack Overview
‘CDRA’
If State – Off and CDRA is functional
Perform {1.301 ATMOSPHERE REVITALIZATION RACK
ACTIVATION}, step 10 (SODF: ECLSS: ACTIVATION &
CHECKOUT: ARS), then:
PCS
5. VERIFYING VOZDUKH IS OPERATIONAL
SM: ECLSS: AR:
SM Atmosphere Revitalization
‘Vozdukh’
If Vozdukh is unpowered and is functional
To activate and operate Vozuduk in Mode 5 (maximum performance),
go to {3.5.6 VOZDUKH SYSTEMS ACTIVATION AFTER
INTERRUPT IN OPERATION} and {3.5.7 MODE SYSTEM
ACTIVATION 1(3, 5)} (RODF: SM: LIFE SUPPORT SYSTEM).
25 JUL 00
58
2301.doc
2.511 PPH2 HIGH - WARN
(EMER/5A - ALL/FIN/MULTI)
PCS
Page 1 of 2 pages
1. RECORDING SM GAS ANALYZER READING
SM: ECLSS: ATMOS
SM Atmosphere
‘Gas Analyzer’
Record SM PPH2 ________ mmHg.
LAB: ECLSS: AR Rack
Lab AR Rack Overview
‘MCA’
Verify State – Operate
If SM PPH2 ≥ 1 mmHg and MCA State ≠ Operate
SM: ECLSS: AR
SM Atmosphere Revitalization
‘Elektron’
Verify State – Off
If State ≠ Off
Perform {3.4.3 NOMINAL SYSTEM SHUTDOWN MODE}, all
(RODF: SM: LIFE SUPPORT SYSTEM), then:
Go to step 3.
2. RECORDING MCA READING
If MCA State ≠ Operate
To activate MCA, perform {1.301 ATMOSPHERE REVITALIZATION
RACK ACTIVATION}, steps 6, 7, 9 (SODF: ECLSS: ACTIVATION
AND CHECKOUT: ARS), then:
sel MCA
Record MCA PPH2 _______mmHg.
If SM PPH2 and MCA PPH2 are both > 1 mmHg, and
I SM PPH2 − MCA PPH2 I < 5 mmHg
SM: ECLSS: AR
SM Atmosphere Revitalization
‘Elektron’
Verify State – Off
25 JUL 00
59
2293.doc
2.511 PPH2 HIGH - WARN
(EMER/5A - ALL/FIN/MULTI)
Page 2 of 2 pages
If State ≠ Off
Perform {3.4.3 NOMINAL SYSTEM SHUTDOWN MODE}, all
(RODF: SM: LIFE SUPPORT SYSTEM), then:
Go to step 3.
If I SM PPH2 – MCA PPH2 I > 5 mmHg
√MCC-H, sensor error probable >>
PCS
3. VERIFYING TCCS IS OPERATIONAL
LAB: ECLSS: AR Rack
Lab AR Rack Overview
‘TCCS’
Verify State – Full Up (Warm Up)
If State ≠ Full Up (Warm Up)
‘SD’
√Monitoring Status – Enabled
‘AAA’
√Status – Operational
‘TCCS’
‘RPCM LAD62B A RPC 05’
√RPC Position − Closed
‘Startup’
cmd Startup
25 JUL 00
60
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2.512 PPO2 HIGH/LOW - WARN
(EMER/5A - ALL/FIN/MULTI)
PCS
Page 1 of 2 pages
1. RECORDING SM (FGB) GAS ANALYZER READING
SM (FGB): ECLSS: ATMOS
SM (FGB) Atmosphere
‘Gas Analyzer’
Record SM (FGB) PPO2 ________ mmHg.
LAB: ECLSS: AR Rack
Lab AR Rack Overview
‘MCA’
Verify State – Operate
If SM (FGB) PPO2 > 180 mmHg and MCA State ≠ Operate
Go to step 4.
If SM (FGB) PPO2 < 130 mmHg and MCA State ≠ Operate
SM: ECLSS: AR
SM Atmosphere Revitalization
‘Elektron’
Verify State – On
If State ≠ On, but is functional
To activate the Elektron and maximize O2 output, perform
{3.4.1 ELEKTRON-VM SYSTEM ACTIVATION}, steps 1 --- 3
(RODF: SM: LIFE SUPPORT SYSTEM), then:
√MCC-H for further steps >>
2. VERIFYING MCA IS OPERATIONAL
If MCA State ≠ Operate
To activate MCA, perform {1.301 ATMOSPHERE REVITALIZATION
RACK ACTIVATION}, steps 6, 7, 9 (SODF: ECLSS: ACTIVATION
AND CHECKOUT: ARS), then:
sel MCA
‘(ORU02) Mass Spectrometer Assembly’
Record MCA PPO2 ________mmHg.
Record MCA O2________%.
3. VALIDATING PPO2 READINGS
If MCA O2 % > 24.1 % and I MCA PPO2 – SM (FGB) PPO2 I
<18 mmHg, High O2 Concentration verified
Go to step 4.
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2.512 PPO2 HIGH/LOW - WARN
(EMER/5A - ALL/FIN/MULTI)
Page 2 of 2 pages
If MCA PPO2 and SM (FGB) PPO2 < 130 mmHg and I MCA PPO2 – SM
(FGB) PPO2 I < 18 mmHg, Low O2 Partial Pressure Reading verified
Go to step 5.
If I MCA PPO2 – SM (FGB) PPO2 I > 18 mmHg
√MCC-H, sensor error probable >>
PCS
4. HIGH OXYGEN LEVEL ACTIONS
SM: ECLSS: AR
SM Atmosphere Revitalization
‘Elektron’
Verify State – Off
If State ≠ Off
Perform {3.4.3 NOMINAL SYSTEM SHUTDOWN MODE}, all
(RODF: SM: LIFE SUPPORT SYSTEM), then:
Progress
If Progress docked
√Air Intro Vlv 1,2 – Closed
Eliminate all other known O2 sources that may be in use (PBA).
√MCC-H for further steps >>
5. LOW OXYGEN LEVEL ACTIONS
SM: ECLSS: AR
SM Atmosphere Revitalization
‘Elektron’
Verify State – On
If State ≠ On, but is functional
To activate the Elektron and maximize O2 output, perform
{3.4.1 ELEKTRON-VM SYSTEM ACTIVATION}, steps 1 --- 3
(RODF: SM: LIFE SUPPORT SYSTEM), then:
If MCA PPO2 or SM (FGB) PPO2 < 120 mmHg
Don nearest PBA or If Elektron is not functional
Perform (SOLID OXYGEN GENERATOR) SETUP}, all and
ACTIVATION}, steps 1 --- 2 (RODF: SM: LIFE SUPPORT
SYSTEMS), then:
√MCC-H for further steps >>
25 JUL 00
62
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2.513 VACUUM SYSTEM SAFING - WARN
(EMER/5A/FIN)
Page 1 of 1 page
CAUTION
All RIVs should be in the Closed position before the VES Vent Valve will
close, except in the Override Mode. For a VES Possible Leak – LAB1
Warning message, if in the VES State – Safe Enable Mode, only the
RIVs will close and the Leak Detection will remain Active.
PCS
1. VERIFYING AUTO SAFING
LAB: ECLSS: VES (VRS)
Vacuum System
√All Vacuum System Valve Positions – Closed
If any Vacuum System Valve Positions – Open
sel VS Valve [x]
Verify State – Enable
‘Close’
cmd Close
wait 20 seconds (Verify Position – Close)
Repeat for each open valve
Vacuum System
Verify VES State
Verify VES Leak Detection
Verify VRS State
Verify VRS Leak Detection
– Disabled
– Disabled
– Disabled
– Disabled
2. PAYLOAD SAFING
√MCC–H for payload specific safing actions
03 AUG 00
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11 AUG 00
64
2.514 WATER CONDENSATE TANK HIGH WARNING SAFING - WARN
(EMER/5A/FIN)
PCS
Page 1 of 1 page
1. RECORDING QUANTITY READINGS
Lab: ECLSS: H2O Vent
Lab Water Vent
‘Condensate Tank’
Qty 1 = _______ kg
Qty 2 = _______ kg
2. CONTINGENCY WATER CONTAINER (CWC) FILL OPERATIONS
If Contingency Water Container fill not in progress
Perform {2.701 USOS TO RS WATER OPS} (SODF: ECLSS:
NOMINAL: WRM).
PCS
Lab: ECLSS: H2O Vent
Lab Water Vent
‘Condensate Tank’
If Qty 1,2 not decreasing
Perform {3.702 WATER CONDENSATE TANK BLOCKAGE/
HIGH} (SODF: ECLSS: MALFUNCTION: WRM) >>
If Contingency Water Container fill in progress, √MCC-H
25 JUL 00
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11 AUG 00
66
2.515 WATER CONDENSATE TANK LOW WARNING SAFING - WARN
(EMER/5A - ALL/FIN)
Page 1 of 1 page
1. DISCONNECTING CONTINGENCY WATER CONTAINER (CWC)
If Contingency Water Container fill in progress, perform {2.701 USOS TO
RS WATER OPS}, steps 2.5, 2.6 (SODF: ECLSS: NOMINAL: WRM).
PCS
Lab: ECLSS: H2O Vent
Lab Water Vent
‘Condensate Tank’
Verify Qty 1, 2 ≥ 2.3 kg
If Qty 1, 2 decreasing, perform {3.703 WATER CONDENSATE TANK
LEAK/LOW} (SODF: ECLSS: MALFUNCTION: WRM), then:
If Qty 1, 2 not decreasing >>
PCS
2. VERIFYING NO WATER VENT IN PROGRESS
Lab: ECLSS: H2O Vent
If Port Status, Stbd Status – Venting
sel System Commands
Water Vent System Commands
‘Commands − Shutdown’
cmd Arm
cmd Shutdown
Verify System Status – Idle
3. CONDENSATE TANK QUANTITY DECREASING
If Qty 1, 2 decreasing, perform {3.703 WATER CONDENSATE TANK
LEAK/LOW} (SODF: ECLSS: MALFUNCTION: WRM) >>
CAUTION
Condensate Tank Low Quantity trouble-shooting
procedure should be performed within 30 minutes.
06 JUL 00
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11 AUG 00
68
2.516 WATER VENT EMERGENCY STOP - WARN
(EMER/5A - ALL/FIN)
PCS
Page 1 of 1 page
LAB: ECLSS: H2O Vent: System Commands
Water Vent System Commands
‘Commands'
'Stop'
CAUTION
This command may cause severe damage to
the waste water vent assemblies because a
post-heat process to bake-out residual water
in the lines will not be performed.
cmd
cmd
Arm
Stop
Verify System Status – Idle
sel Effector Commands
Water Vent Effector Commands
‘Port Isolation Valves’
Verify Bulkhead, Inboard Position (two) – Closed
‘Starboard Isolation Valves’
Verify Inboard, Bulkhead Position (two) – Closed
‘Port Heaters’
Verify Nozzle, Line Status (two) – Off
‘Starboard Heaters’
Verify Line, Nozzle Status (two) – Off
11 JUL 00
69
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11 AUG 00
70
2.601 BATT 4BXX(2BXX) SAFING CHECKLIST - P6 - WARN
(EMER/4A - ALL/FIN)
PCS
Page 1 of 1 page
1. OPENING BCDU RBI
P6:EPS:Energy Storage 4B(2B)
Energy Storage 4B(2B)
sel DCSU 4B(2B) RBI Y where Y = 2 3 4
Y = 2 for BCDU 1
Y = 3 for BCDU 2
Y = 4 for BCDU 3
NOTE
SPN #620, PR 16334 – The Hot Switch
Open commands are reversed; therefore,
the Inhibit command must be sent in order
to change the Hot Switch Open telemetry
status from Inh to Ena.
cmd Hot Switch Open – Inhibit Arm
cmd Hot Switch Open – Inhibit
√Hot Switch Open – Ena
‘Cmd Stat’
cmd – Open (Verify – Op) (Single step cmd, Arm not required)
2. OPENING CONTROL POWER RBI FOR OPPOSITE POWER CHANNEL
P6:EPS:Energy Storage 4B(2B)
Energy Storage 4B(2B)
‘BCDU 4BX(2BX)’ where X = 1 2 3
X = 1 for BCDU 1
X = 2 for BCDU 2
X = 3 for BCDU 3
sel CP RBI
BCDU 4B(2B) CP RBIs
cmd 4BX(2BX) CP RBI – Open Arm
cmd 4BX(2BX) CP RBI – Open
√4BX(2BX) CP RBI – Op
If warning message is ‘Batt 4BXX(2BXX) Undervoltage Safing Failed –
P6’, or ‘Batt 4BXX(2BXX) Temp Out of Range Safing Failed – P6’
Go to {BATT 4B(2B) TRIP - P6} (SODF: TBD) >>
03 AUG 00
71
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11 AUG 00
72
2.603 BCDU 4BX(2BX) LOSS OF COMM SAFING FAILED P6 - WARN
(EMER/4A - ALL/FIN)
PCS
Page 1 of 1 page
1. DCSU RBI OPEN
P6: EPS: Energy Storage 4B(2B)
Energy Storage 4B(2B)
sel DCSU 4B(2B) RBI Y where Y = 2 3 4
Y = 2 for BCDU 1
Y = 3 for BCDU 2
Y = 4 for BCDU 3
NOTE
SPN #620, PR 16334 − The Hot Switch Open commands
are reversed, therefore the Inhibit command must be sent
in order to change the Hot Switch Open telemetry status
from Inh to Ena.
cmd Hot Switch Open − Inhibit Arm
cmd Hot Switch Open − Inhibit
√Hot Switch Open − Ena
‘Cmd Stat’
cmd − Open (Verify − Op) (Single step cmd, Arm not required)
If cmd was successful
Go to {3.105 BCDU 4BX(2BX) LOSS OF COMM} (SODF: EPS:
MALFUNCTION: PRIMARY POWER SYSTEM) >>
If cmd was not successful
Go to {3.119 DCSU 4B(2B) OBSERVED VS. LAST COMMANDED
STATE DISCREPANCY} (SODF: EPS: MALFUNCTION: PRIMARY
POWER SYSTEM) >>
18 JUL 00
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11 AUG 00
74
2.604 BCDU 4BX(2BX) OVERTEMP SAFING FAILED - P6 - WARN
(EMER/4A - ALL/FIN)
PCS
Page 1 of 1 page
1. COMMANDING FAULT ISOLATOR OPEN
P6: EPS: Energy Storage 4B(2B)
Energy Storage 4B(2B)
sel BCDU 4BX(2BX) Conv where X = 1
2
3
cmd Fault Isolator - Open (Verify - Op) (single step cmd, Arm not
required)
If Fault Isolator cmd is successful
Go to {BCDU 4BX(2BX) OVERTEMP CONDITION} (SODF: TBD) >>
2. DCSU RBI OPEN
P6: EPS: Energy Storage 4B(2B)
Energy Storage 4B(2B)
sel DCSU 4B(2B) RBI Y where Y = 2 3 4
Y = 2 for BCDU 1
Y = 3 for BCDU 2
Y = 4 for BCDU 3
NOTE
SPN #620, PR 16334 – The Hot Switch Open commands are
reversed; therefore, the Inhibit command must be sent in order
to change the Hot Switch Open telemetry status from Inh to Ena.
cmd Hot Switch Open – Inhibit Arm
cmd Hot Switch Open – Inhibit
√Hot Switch Open – Ena
‘Cmd Stat’
cmd – Open (Verify – Op) (Single step cmd, Arm not required)
3. Go to {BCDU 4BX(2BX) OVERTEMP CONDITION} (SODF: TBD) >>
11 AUG 00
75
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11 AUG 00
76
2.605 BGA 4B(2B) MOTOR SAFING - P6 - WARN
(EMER/4A - ALL/FIN)
Page 1 of 1 page
1. P6: EPS: BGA 4B(2B): Motor
BGA 4B(2B) Motor
cmd Motor − Off Arm
cmd Motor – Off
If motor current ≤ 0.1 A, go to step 4.
2. BGA 4B(2B): RPCM 4B(2B) A RPC 1
RPCM 4B(2B) A RPC 1
cmd RPC Position − Open (Verify − Op)
3. BGA 4B(2B): RPCM 2B(4B) A RPC 2
RPCM 2B(4B) A RPC 2
cmd RPC Position − Open (Verify − Op)
4. BGA Motor has been safed. Go to {3.112 BGA 4B(2B) MOTOR TRIP},
block TBD (SODF: EPS: MALFUNCTION: PRIMARY POWER
SYSTEM).
18 JUL 00
77
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11 AUG 00
78
2.606 DCSU 4B(2B) RBI 6 OVERCURRENT SAFING FAILED - P6
(POST CCS) - WARN
(EMER/4A - ALL/FIN)
Page 1 of 2 pages
1. P6:EPS:DCSU 4B(2B)
DCSU 4B(2B)
Record current values for RBIs 1 --- 6 in Table 1 (retain negative signs).
RBI #
1
2
3
4
5
6
Table 1.
Current, Amps (IRBI)
Add up all current values in Table 1.
If | IRBI1 + IRBI2 + IRBI3 + IRBI4 + IRBI5 + IRBI6 | > 13 Amps
RBI 6 Current data is invalid.
Go to step 2.
If RBI 6 Current, A ≤ -96.7 (more negative)
sel RBI 6
√Open Cmd – Ena
√Hot Switch Open – Ena
cmd Cmded Position – Open
√Current, A
If Current, A: -7.5 --- 7.5 Amps
RBI 6 has been opened.
Go to step 2.
If Current, A < -7.5 (more negative),
Shut down channel to isolate the short.
P6:Energy Storage 4B(2B)
‘BCDU 4B(2B) X’ where X=
1
2
3
sel
Conv
cmd Fault Isolator – Open (Verify – Op) (single step cmd, ARM not
required)
cmd Converter – Off (Verify – Off) (single step cmd, ARM not
required)
Repeat
11 JUL 00
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2.606 DCSU 4B(2B) RBI 6 OVERCURRENT SAFING FAILED - P6
(POST CCS) - WARN
(EMER/4A - ALL/FIN)
Page 2 of 2 pages
P6:SSU 4B(2B)
SSU 4B(2B)
sel
PVCE
cmd All PVCEs Off Arm
cmd All PVCEs Off
Verify all PVCE Error Voltages < 0.6 V
2. Go to {3.122 DCSU 4B(2B) TRIP} (SODF: EPS: MALFUNCTION:
PRIMARY POWER SYSTEM).
11 JUL 00
80
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2.608 DCSU 4B(2B) TRIP - P6 (PRE CCS) - WARN
(EMER/4A - 5A/FIN)
Page 1 of 2 pages
1. P6: EPS: DCSU 4B(2B)
DCSU 4B(2B)
Determine which RBI has an attention symbol indicating a trip.
If RBI 1 has an attention symbol,
No power from Channel 4B(2B) solar arrays.
Channel will be safed using battery power.
NOTE
Expect the following NCS C&W message:
‘Power Utilization Violation - Load Shed
Initiated - NOD1.’
FGB: EPS
FGB: EPS
sel FGB Load Shed
FGB Load Shed
cmd NCS Load Shed – Activate Execute
If RBI 2, 3, or 4 has an attention symbol,
sel Energy Storage 4B(2B)
‘BCDU 4B(2B) X’ where X = 1 for RBI 2
X = 2 for RBI 3
X = 3 for RBI 4
sel Conv
cmd Fault Isolator – Open (Verify – Op)
cmd Converter – Off (Verify – Off)
√MCC-H
If RBI 5 has an attention symbol,
No cooling to channel due to loss of power to PVTCS.
NOTE
Expect the following NCS C&W message:
‘Power Utilization Violation - Load Shed
Initiated - NOD1.’
FGB: EPS
FGB: EPS
sel FGB Load Shed
FGB Load Shed
cmd NCS Load Shed – Activate Execute
11 JUL 00
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2.608 DCSU 4B(2B) TRIP - P6 (PRE CCS) - WARN
(EMER/4A - 5A/FIN)
Page 2 of 2 pages
If RBI 6 has an attention symbol,
ISS loads downstream of RBI 6 not receiving power.
Continue using DCSU to power DDCU 4B(2B), RPCM 4B(2B) A, and
RPCM 4B(2B) B loads.
2. Go to {3.122 DCSU 4B(2B) TRIP} (SODF: EPS: MALFUNCTION:
PRIMARY POWER SYSTEM).
11 JUL 00
82
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2.613 ECU/BGA 4B(2B) SAFING - P6 - WARN
(EMER/4A - ALL/FIN)
Page 1 of 1 page
1. P6: EPS: BGA 4B(2B): RPCM 4B(2B) A RPC 1
RPCM 4B(2B) A RPC 1
cmd RPC Position − Open (Verify − Op)
2. BGA 4B(2B): RPCM 2B(4B) A RPC 2
RPCM 2B(4B) A RPC 2
cmd RPC Position − Open (Verify − Op)
3. ECU/BGA has been safed. Go to {3.116 BGA 4B(2B) TRIP}, block TBD
(SODF: EPS: MALFUNCTION: PRIMARY POWER SYSTEM).
18 JUL 00
83
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11 AUG 00
84
2.614 PVTCS PFCS 4B(2B) DEADHEAD FAILURE CONDITION - P6 - WARN
(EMER/4A - ALL/FIN)
Page 1 of 1 page
1. P6: EPS: PVTCS 4B(2B)
PVTCS 4B(2B)
‘PFCS 4B(2B)’
If Integration Counter not incrementing, go to {2.620 PVTCS PFCS
4B(2B) LOSS OF COMM - P6 - WARN}, all (SODF: EMER: WARNING
PROCEDURES: EPG).
2. If Pump Delta Press < 41 mmHg and Pump Speed < 12000 RPM
Go to {3.141 PVTCS PFCS 4B(2B) PUMP DEADHEAD CONDITION},
all (SODF: EPS: MALFUNCTION: PRIMARY POWER SYSTEM).
26 JUL 00
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11 AUG 00
86
2.615 PVTCS PFCS 4B(2B) DEADHEAD SAFING FAILED - P6 - WARN
(EMER/4A - ALL/FIN)
Page 1 of 1 page
1. P6: EPS: PVTCS 4B(2B)
PVTCS 4B(2B)
‘PFCS 4B(2B)’
If Integration Counter not incrementing go to {2.620 PVTCS 4B(2B)
LOSS OF COMM - P6 - WARN} (SODF: EMER: WARNING
PROCEDURES: EPG).
2. If Pump Delta Press < 41 mmHg and Pump Speed > 12000 RPM
PVTCS 4B(2B)
sel RPCM 4B(2B) A RPC 03
RPCM 4B(2B) A RPC 03
√Open cmd − Enable
cmd RPC Position – Open (Verify – Op)
Wait 10 seconds then:
cmd RPC Position – Close (Verify –Cl)
√Integration Counter − Incrementing
√Pump A(B) Speed <1000 RPM
3. Go to {PVTCS PFCS 4B(2B) PUMP DEADHEAD VIOLATION - P6}
(SODF: TBD).
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11 AUG 00
88
2.619 PVTCS PFCS 4B(2B) FLUID LEAK - P6 - WARN
(EMER/4A - ALL/FIN)
Page 1 of 1 page
1. P6: EPS: PVTCS 4B(2B)
PVTCS 4B(2B)
‘PFCS 4B(2B)’
If Integration Counter not incrementing, go to {2.620 PVTCS PFCS
4B(2B) LOSS OF COMM - P6 - WARN} (SODF: EMER: WARNING
PROCEDURES: EPG).
2. If PVTCS PFCS 4B(2B) Accum Sensors 1,2 and PVR P6 Accum Qty
Sensors (three out of four) < 4 % and Pump Speed > 12000 RPM
PVTCS 4B(2B)
sel RPCM 4B(2B) A RPC 03
RPCM 4B(2B) A RPC 03
√Open cmd − Enable
cmd RPC Position – Open (Verify – Op)
Wait 10 seconds then:
cmd RPC Position – Close (Verify – Cl)
PVTCS 4B(2B)
√Integration Counter − Incrementing
√Pump A(B) Speed < 1000 RPM
Go to {3.132 P6 CH 2B LOSS} or {3.133 P6 CH 4B LOSS} (SODF:
EPS: MALFUNCTION: PRIMARY POWER SYSTEM) >>
3. If PVTCS PFCS 4B(2B) Accum Sensors 1, 2 and PVR P6 Accum Qty
Sensors 1,2 (three out of four) < 10 %
Go to {PVTCS PFCS 4B(2B) FLUID LEAK - P6}, Troubleshooting
(SODF: TBD).
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11 AUG 00
90
2.620 PVTCS PFCS 4B(2B) LOSS OF COMM – P6 - WARN
(EMER/4A - ALL/FIN)
PCS
Page 1 of 1 page
1. CHECKING INTEGRATION COUNTER
P6:EPS:PVTCS 4B(2B)
PVTCS 4B(2B)
‘PFCS 4B(2B)’
If Integration Counter incrementing
Go to {3.136 PVTCS PFCS 4B(2B) LOSS OF COMM} (SODF: EPS:
MALFUNCTION: PRIMARY POWER SYSTEM) >>
2. CHECKING RPC 03 STATUS
PVTCS 4B(2B)
sel RPC 03
RPCM 4B(2B) A RPC 3
If RPCM 4B(2B) A RPC 03 Open
If RPCM 4B(2B) RPC 03 Tripped
cmd Open Cmd – Enabled (Verify – Ena)
cmd RPC Position – Open (Verify – Op)
cmd RPC Position – Close (Verify – Cl)
If RPCM 4B(2B) A RPC 03 Closed
Go to {3.136 PVTCS PFCS 4B(2B) LOSS OF COMM}
(SODF: EPS: MALFUNCTION: PRIMARY POWER
SYSTEM) >>
If RPCM 4B(2B) A RPC 03 not Closed
Go to {P6 CH 4B(2B) LOSS} (SODF: TBD) >>
If RPCM 4B(2B) RPC 03 Not Tripped
√Close Cmd - Enabled
cmd RPC Position – Close (Verify – Cl)
If RPCM 4B(2B) A RPC 03 Closed
Go to {3.136 PVTCS PFCS 4B(2B) LOSS OF COMM}
(SODF: EPS: MALFUNCTION: PRIMARY POWER
SYSTEM) >>
If RPCM 4B(2B) A RPC 03 not Closed
Go to {P6 CH 4B(2B) LOSS} (SODF: TBD) >>
If RPCM 4B(2B) A RPC 03 Closed
Go to {PVTCS PFCS 4B(2B) LOSS OF COMM} (SODF: TBD) >>
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11 AUG 00
92
2.621 PVTCS PFCS 4B(2B) MAXIMUM OUTLET TEMP SAFING FAILED - P6 WARN
(EMER/4A - ALL/FIN)
Page 1 of 1 page
1. P6: EPS: PVTCS 4B(2B)
PVTCS 4B(2B)
‘PFCS 4B(2B)’
If Integration Counter not incrementing, go to {2.620 PVTCS 4B(2B)
LOSS OF COMM - P6 - WARN} (SODF: EMER: WARNING
PROCEDURES: EPG).
2. If Outlet Temp 1 and 2 > 10° C and Pump Speed > 12000 RPM
PVTCS 4B(2B)
sel RPCM 4B(2B) A RPC 03
RPCM 4B(2B) A RPC 03
√Open cmd − Enable
cmd RPC Position – Open (Verify – Op)
Wait 10 seconds then:
cmd RPC Position – Close (Verify – Cl)
PVTCS 4B(2B)
√Integration Counter − Incrementing
√Pump A(B) Speed < 1000 RPM
2. Go to {3.138 PVTCS PFCS 4B(2B) MAX OUTLET TEMP VIOLATION}
(SODF: TBD).
27 JUL 00
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11 AUG 00
94
2.622 PVTCS PFCS 4B(2B) MAXIMUM OUTLET TEMP VIOLATION - P6 WARN
(EMER/4A - ALL/FIN)
Page 1 of 1 page
1. P6: EPS: PVTCS 4B(2B)
PVTCS 4B(2B)
‘PFCS 4B(2B)’
If Integration Counter not incrementing, go to {2.620 PVTCS 4B(2B)
LOSS OF COMM - P6 - WARN} (SODF: EMER: WARNING
PROCEDURES: EPG).
2. If any Outlet Temp 1 or 2 sensors ≥ 10 °C and Pump A(B) < 12000 RPM
Go to {3.138 PVTCS PFCS 4B(2B) MAX OUTLET TEMP VIOLATION}
(SODF: TBD).
12 JUL 00
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11 AUG 00
96
2.623 PVTCS PFCS 4B(2B) MINIMUM INLET TEMP SAFING FAILED - P6 WARN
(EMER/4A - ALL/FIN)
Page 1 of 1 page
1. P6: EPS: PVTCS 4B(2B)
PVTCS 4B(2B)
‘PFCS 4B(2B)’
If Integration Counter not incrementing go to {2.620 PVTCS 4B(2B)
LOSS OF COMM - P6 - WARN} (SODF: EMER : WARNING
PROCEDURES: EPG).
2. If Outlet Temp 1 and 2 < -42.7° C and Pump Speed > 12000 RPM
PVTCS 4B(2B)
sel RPCM 4B(2B) A RPC 03
RPCM 4B(2B) A RPC 03
√Open cmd – Enable
cmd RPC Position – Open (Verify – Op)
Wait 10 seconds, then:
cmd RPC Position – Close (Verify – Cl)
PVTCS 4B(2B)
√Integration Counter − Incrementing
√Pump A(B) Speed < 1000 RPM
3. Go to {3.139 PVTCS PFCS 4B(2B) MINIMUM INLET TEMP VIOLATION}
(SODF: TBD).
27 JUL 00
97
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11 AUG 00
98
2.624 PVTCS PFCS 4B(2B) MINIMUM INLET TEMP VIOLATION - P6 - WARN
(EMER/4A - ALL/FIN)
Page 1 of 1 page
1. P6: EPS: PVTCS 4B(2B)
PVTCS 4B(2B)
‘PFCS 4B(2B)’
If Integration Counter not incrementing, go to {2.620 PVTCS 4B(2B)
LOSS OF COMM - P6 - WARN} (SODF: EMER: WARNING
PROCEDURES: EPG).
2. If any Outlet Temp 1 or 2 sensors ≤ -42.7 °C and Pump A(B) Speed
< 12000 RPM
Go to {3.139 PVTCS PFCS 4B(2B) MINIMUM INLET TEMP
VIOLATION}, (SODF: TBD).
11 JUL 00
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11 AUG 00
100
2.625 PVTCS PFCS 4B(2B) PUMP SWITCHOVER FAILED - P6 - WARN
(EMER/4A - ALL/FIN)
Page 1 of 1 page
1. P6: EPS: PVTCS 4B(2B)
PVTCS 4B(2B)
‘PFCS 4B(2B)’
If Integration Counter not incrementing, go to {2.620 PVTCS PFCS
4B(2B) LOSS OF COMM - P6 - WARN} (SODF: EMER: WARNING
PROCEDURES: EPG).
2. If Pump Delta Press < 33 mmHg and Pump A(B) Speed < 12000 RPM
and failed Pump A(B) Speed < 1000 RPM and redundant Pump B(A)
Speed < 1000 RPM, go to step 5.
3. If Pump Delta Press > 33 mmHg and Pump A(B) Speed > 12000 RPM
and failed Pump A(B) Speed >1000 RPM and redundant Pump B(A)
Speed >12000 RPM
PVTCS 4B(2B)
sel RPCM 4B(2B) A RPC 03
RPCM 4B(2B) A RPC 03
√Open Cmd − Enable
cmd RPC Position – Open (Verify – Op)
Wait 10 seconds, then:
cmd RPC Position – Close (Verify – Cl)
PVTCS 4B(2B)
√Integration Counter − Incrementing
√Pump A, B Speed < 1000 RPM
Go to step 5.
4. If Pump Delta Press > 33 mmHg and Pump A(B) Speed < 12000 RPM
and failed Pump A(B) Speed < 1000 RPM and redundant Pump B(A)
Speed < 12000 RPM, go to step 5.
5. Go to {3.139 PVTCS PFCS 4B(2B) PUMP SWITCHOVER FAILED}
(SODF: TBD).
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11 AUG 00
102
2.626 PVTCS PFCS 4B(2B) SAFING CHECKLIST - WARN
(EMER/4A - ALL/FIN)
Page 1 of 2 pages
1. REMOVING POWER FROM PVTCS PFCS 4B(2B)
NOTE
Expect a Warning message ‘PVTCS
PFCS 4B (2B) Loss of Comm-P6’ when
RPCM 4B(2B) A RPC 03 is opened.
PCS
P6:EPS:PVTCS 4B(2B)
PVTCS 4B(2B)
sel RPCM 4B(2B) A RPC 03
RPCM 4B(2B) A RPC 03
cmd Open cmd – Enable (Verify - Ena)
cmd RPC Position – Open (Verify - Op)
2. REMOVING POWER FROM BATTERY HEATERS
P6:EPS:Energy Storage 4B(2B)
Energy Storage 4B(2B)
‘BCDU 4BX(2BX) where X = 1
2
3
sel Htr Sw (Either Icon)
BCDU 4BX(2BX) Htr Switches
cmd Htr Switch A, B – Off Arm
cmd Htr Switch A, B – Off
√Htr Switch A – Off
√Htr Switch B – Off
Repeat
3. SELECTING THE PROPER GO TO PROCEDURE
If warning message is ‘PVTCS PFCS 4B(2B) Pump Deadhead Safing
Failed-P6’
Go to {3.141 PVTCS PFCS 4B(2B) PUMP DEADHEAD CONDITION}
(SODF:EPS: MALFUNCTION: PRIMARY POWER SYSTEM).
If warning message is ‘PVTCS PFCS 4B(2B) Maximum Outlet Temp
Safing Failed-P6’
Go to {3.138 PVTCS PFCS 4B(2B) MAX OUTLET TEMP
VIOLATION} (SODF:EPS: MALFUNCTION: PRIMARY POWER
SYSTEM).
15 JUL 00
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2.626 PVTCS PFCS 4B(2B) SAFING CHECKLIST - WARN
(EMER/4A - ALL/FIN)
Page 2 of 2 pages
If warning message is ‘PVTCS PFCS 4B(2B) Minimum Inlet Temp
Safing Failed-P6’
Go to {3.139 PVTCS PFCS 4B(2B) MINIMUM INLET TEMP
VIOLATION} (SODF:EPS: MALFUNCTION: PRIMARY POWER
SYSTEM).
If warning message is ‘PVTCS PFCS 4B(2B) Pump Switchover FailedP6’
Go to {PVTCS PFCS 4B(2B) PUMP A(B) FAILURE-P6} (SODF: TBD).
15 JUL 00
104
8870.doc
2.627 SSU 4B(2B) OVERTEMP SAFING FAILED - P6 - WARN
(EMER/4A - ALL/FIN)
Page 1 of 2 pages
1. VERIFYING CDH COMMUNICATION
P6:EPS:SSU XX
SSU XX
√Integration Counter – <Incr>
**********************************************************
If not incrementing
Go to {3.143 SSU 4B(2B) LOSS OF COMM –
P6} (SODF: EPS: MALFUNCTION:
PRIMARY POWER SYSTEM)
**********************************************************
2. VERIFYING VALID OVERTEMP CONDITION
P6:EPS:SSU XX
SSU XX
‘Sidewall Temp’
If Right and Left < 82°C, then Transient C&W message >>
3. VERIFYING SSU TRIP
P6:EPS:SSU XX
SSU XX
‘PVCE’
If two of three PVCE error voltages < 4.5
Go to {2.628 SSU 4B(2B) TRIP – P6 OR SSU 4B(2B) OVERTEMP
CONDITION – P6 - WARN} (SODF: EMER: WARNING
PROCEDURES: EPG)
NOTE
The SSU has experienced a valid Overtemp Condition
and has not been safed (Full Shunt).
4. MANUALLY SHUNTING SSU
P6:EPS:SSU XX
SSU XX
sel PVCE
SSU_XX_PVCE
cmd All PVCEs Off Arm
cmd All PVCEs Off
15 JUL 00
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2.627 SSU 4B(2B) OVERTEMP SAFING FAILED - P6 - WARN
(EMER/4A - ALL/FIN)
Page 2 of 2 pages
If all three PVCE Error Voltages are < 4.5
Go to {2.628 SSU 4B(2B) TRIP – P6 OR SSU 4B(2B) OVERTEMP
CONDITION – P6 - WARN} (SODF: EMER: WARNING
PROCEDURES: EPG)
SSU safing commands are not functioning properly.
MCC-H will trouble-shoot if communication is available.
5. ISOLATING SSU
P6:EPS:SSU XX
SSU XX
‘DCSU XX’
sel RBI-1
cmd Open Arm
cmd Open (Verify Op)
SSU has been Isolated and is no longer regulating the DCSU bus voltage
during Insolation.
For the affected channel to minimize battery drain until MCC-H can
troubleshoot, go to {4.265 NODE 1/Z1 POWERDOWN AND
RECOVERY}, steps 1 --- 7 (SODF: EPS: CORRECTIVE: SECONDARY
POWER SYSTEM).
15 JUL 00
106
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2.628 SSU 4B(2B) TRIP - P6 OR SSU 4B(2B) OVERTEMP CONDITION - P6 WARN
(EMER/4A - ALL/FIN)
Page 1 of 2 pages
1. If you have received the ‘SSU 4B(2B) Overtemp Safing Failed - P6’
C&W Go to {2.626 SSU 4B(2B) OVERTEMP SAFING FAILED - P6 WARN} (SODF: EMER: WARNING PROCEDURES: EPG).
2. VERIFYING VALID OVERTEMP CONDITION
P6: EPS: SSU XX
SSU XX
Sidewall Temp
√Right or Left > 82° C (If Yes, go to step 7)
3. VERIFYING SSU TRIP
P6: EPS: SSU XX
SSU XX
‘PVCE’
Do at least two of the three PVCEs have an error voltage < 4.5 (If Yes, go
to step 5)
4. The SSU Overtemp Condition was a transient message.
The SSU is still below its maximum sidewall temperature and is still
functioning nominally. >>
5. The SSU Overtemp Condition has cleared or was invalid. However, the
SSU did Trip.
After the max sidewall temperature < 71° C then reactivate the SSU with
step 6.
6. ACTIVATING SSU VOLTAGE REGULATION
P6: EPS: SSU XX
SSU XX
sel PVCE
SSU_XX_PVCE
cmd All PVCEs On Arm
cmd All PVCEs On (Verify all three PVCE Error Voltages are > 4.5)
Notify MCC-H when available >>
7. VERIFYING VALID SSU TRIP
P6: EPS: SSU XX
SSU XX
‘PVCE’
8. Do at least two of the three PVCEs have an error voltage < 4.5 (If No, go
to the {2.626 SSU 4B(2B) OVERTEMP SAFING FAILED - P6 - WARN}
(SODF: EMER: WARNING PROCEDURES: EPG).
29 JUL 00
107
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2.628 SSU 4B(2B) TRIP - P6 OR SSU 4B(2B) OVERTEMP CONDITION - P6 WARN
(EMER/4A - ALL/FIN)
Page 2 of 2 pages
9. The SSU has experienced a valid Overtemp Trip and is no longer
regulating the DCSU bus voltage during Insolation.
Perform steps 1 --- 7 of the {4.262 NODE 1/Z1 POWERDOWN AND
RECOVERY} (SODF: EPS: CORRECTIVE: SECONDARY POWER
SYSTEM) for the affected channel to minimize battery drain until MCC-H
can troubleshoot.
Return to this procedure and perform step 9.
10. If MCC-H will not be available within the next orbit start the {3.144 SSU
4B(2B) TRIP} (SODF: EPS: MALFUNCTION: PRIMARY POWER
SYSTEM) >>
29 JUL 00
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2.629 DCSU 4B(2B) RBI 6 OVERCURRENT SAFING FAILED - P6 (PRE-CCS) WARN
(EMER/2R - 5A/FIN)
Page 1 of 2 pages
1. P6: EPS: DCSU 4B(2B)
DCSU 4B(2B)
Record current values for RBIs 1 --- 6 in the following table
(retain negative signs):
RBI #
1
2
3
4
5
6
Current, Amps (IRBI)
Add up all current values in the above table.
If | IRBI1 + IRBI2 + IRBI3 + IRBI4 + IRBI5 + IRBI6 | > 13 Amps
RBI 6 Current data is invalid. Go to step 2.
If RBI 6 Current, A ≤ -50.5A (more negative)
sel RBI 6
√Open Cmd – Ena
√Hot Switch Open – Ena
cmd Cmded Position – Open
√Current, A
If Current, A: -7.5 --- 7.5 Amps
RBI 6 has been opened.
Go to step 2.
If Current, A < -7.5 (more negative), shut down channel to isolate the
short.
P6: Energy Storage 4B(2B)
‘BCDU 4B(2B) X’ where X = 1, 2, 3
sel
Conv
cmd Fault Isolator – Open (Verify – Op)
cmd Converter – Off (Verify – Off)
Repeat
11 JUL 00
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2.629 DCSU 4B(2B) RBI 6 OVERCURRENT SAFING FAILED - P6 (PRE-CCS) WARN
(EMER/2R - 5A/FIN)
Page 2 of 2 pages
P6: SSU 4B(2B)
SSU 4B(2B)
sel
PVCE
cmd All PVCEs Off Arm
cmd All PVCEs Off
‘PVCE X Error Voltage’ where X = 1, 2, 3
Verify Error Voltage < 0.6 V
Repeat
2. Go to {3.112 DCSU 4B(2B) TRIP} (SODF: EPS: MALFUNCTION:
PRIMARY POWER SYSTEM).
11 JUL 00
110
9030.doc
2.701 CMG AUTO SAFE FAILED - WARN
(EMER/5A - ALL/PRE)
Page 1 of 1 page
WARNING
‘CMG AUTO SAFE FAILED-Z1.’
1. PREPARING RS FOR THRUSTER ASSIST
MCS: MCS Configuration
MCS Configuration
‘GNC Moding’
sel CMG TA
CMG TA
If Thrusters Available for CMG Desat is No
cmd RS Prepare Thrusters for CMG Desat
NOTE
The following signal may take up to 4 minutes to occur.
Verify Thrusters Available for CMG Desat − Yes
2. REMOVING INHIBITS TO ENABLE MODING
CMG TA
If Mode Transition is Inh
cmd Mode Transition Enable (Verify − Ena)
If Attitude Maneuver is Inh
cmd Attitude Maneuver Enable (Verify − Ena)
If Desat Request Enable is Inh
cmd Desat Request Enable (Verify − Ena)
3. MODING FROM CMG ONLY TO CMG TA
CMG TA
‘Mode to CMG TA’
Enter CCDB Slot: 1
cmd Set
Verify Active CCDB Source Slot: 1
Verify US GNC Mode − CMG TA
Verify RS GNC Mode − CMG TA
25 JUL 00
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11 AUG 00
112
MCS
Warning
Red Light
2.702 LOSS OF CMG ATTITUDE CONTROL - WARN
(EMER/5A - ALL/FIN/MULTI)
Page 1 of 2 pages
1
‘Loss of CMG
Attitude
Control’
{2.703 PRIMARY
GNC MDM
FAIL − WARN}
(SODF: EMER:
WARNING
PROCEDURES:
MCG), step 1
Caution
Yellow Light
‘RS Auto
Recovery −
Initiated’
1
1
All displays in this
procedure are on
the PCS.
Automatic Handover
MCS
MCS SUMMARY
‘MCS Status’
Is RS GNC Mode −
Thrusters?
No
2
Yes
10
2
Attempt to handover
may take up to three
tries at 205 sec per
cycle. RS Auto
Recovery Initiated
message in alarm
indicates that
handover is being
attempted.
Automatic ACS Safing
MCS Safing
MCS Safing
‘Station Configuration’
Is Auto Att Control Handover Yes
9
to RS failed − Yes?
No
3
Safing in Progress
MCS Safing
‘Auto Att Cntl Handover’
Is Recovery to RS GNC
Warning Ind − True?
No
2
Yes 4
RS GNC Dynamic
Mode Check
MCS
‘MCS Status’
• Wait up to 11 minutes for
the following indication.
Is RS GNC Mode –
Thrusters?
Yes
10
No
5
Check for
SRMS/SSRMS
Operations
Are SRMS/ISS RMS
Operations in progress?
No
7
Yes 6
Auto Handover to RS
Inhibited
•√MCC-H
Check orbiter
Availability
Is orbiter available for
attitude control?
No
9
03 AUG 00
9
Yes 8
Auto Handover to RS
Inhibited
•√MCC-H to perform
handover to orbiter
control
113
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MCS
2.702 LOSS OF CMG ATTITUDE CONTROL - WARN
(EMER/5A - ALL/FIN/MULTI)
2
4
Page 2 of 2 pages
7
1
Warning: ‘RS
Auto
Recovery −Fail’
9
4
RS Commanding
• Placeholder for RS steps Yes 10 Verify USGNC Pointing
to cmd RS Take Control
and Support Data
Available
No
11 No ISS attitude
control.
{2.632 5A LOSS OF
ATTITUDE CONTROL (LOAC)
POWERDOWN − WARN}
(SODF: EMER: WARNING
PROCEDURE: EPG)
MCS
MCS Summary
Verify the following:
‘MCS Status’
• US GNC Mode − UDG
(CMG TA)(CMG Only)
‘US GNC MDMs’
• Attitude, Rate, and State
Vector Data US Quality −
Valid RS (Degraded)
• Primary frame count <incrementing>
Are all three conditions
met?
Yes 12 Handover Complete
No
•√MCC-H
13 USOS Loss of
Pointing.
{2.402 ALTERNATE VOICE
SETUP − WARN} (SODF: EMER:
WARNING PROCEDURES: CTG)
03 AUG 00
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2.703 PRIMARY GNC MDM FAIL - WARN
(EMER/5A - ALL/FIN)
PCS
Page 1 of 1 page
1. VERIFYING ATTITUDE CONTROL FUNCTIONALITY
MCS
MCS Summary
‘MCS Status’
Verify RS GNC Mode − Thrusters (Indicator)
NOTE
RS GNC Mode should be Thrusters except under
two conditions:
1. Orbiter is controlling attitude for the mated
stack, or
2. SRMS or SSRMS operations are in progress.
**********************************************************
If RS GNC Mode is not Thrusters and the
preceeding note does not apply perform {2.702
LOSS OF CMG ATTITUDE CONTROL WARN}, all (SODF: EMERGENCY: WARNING
PROCEDURES: MCG).
**********************************************************
2. VERIFYING COMMUNICATIONS WITH MCC-H
NOTE
1. If USOS is currently configured to use S-band HDR (Ku-band),
communication with MCC-H will likely be interrupted upon
failure of the Primary GNC MDM.
2. If ‘Primary GNC MDM Fail-LAB’ returns to normal, the backup
GNC MDM has been brought up as Primary, and S-band HDR
(Ku-band) should work on TDRS-East (41).
Perform {2.402 ALTERNATE VOICE SETUP - WARN}, all (SODF:
EMER: WARNING PROCEDURES: CTG).
27 JUL 00
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11 AUG 00
116
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11 AUG 00
117
2.801 EETCS LOOP A(B) PUMP SWITCHOVER FAILED CHECKLIST WARN
(EMER/4A - ALL/FIN)
Page 1 of 3 pages
1. VERIFYING NEW PRIMARY PUMP SPEED
When executing this procedure, PumpX [X = A or B] is the pump that
generated the original pump failure message. PumpY [Y = B or A] is the
pump that the software attempted to start as part of the Pump Switch
FDIR algorithm.
If executing this procedure prior to Lab Activation, do not perform the
commands or telemetry checks associated with Lab components.
PCS
P6: TCS
P6: EETCS Overview
‘EETCS PFCS LoopA(B)’
If PumpY Spd > 1000 rpm
Go to step 2.
Expect the following message:
Caution – ‘EEATCS LoopA(B) PFCS Pump Y Failure – P6’
PCS
Lab: TCS: Thermal Load Reduction
Thermal Load Reduction
‘Auto Thermal Load Shed’
cmd Inhibit – Arm
cmd Inhibit – Inh
√Auto Thermal Load Shed Inhibit – Inh
PCS
P6: TCS: Loop A(B) PFCS
LoopA(B)PFCS Nominal Commands
‘EETCS LoopA(B) PFCS’
‘PumpY’
cmd – On
√PumpY – On
If PumpY Spd < 12000 rpm
PCS
Lab:TCS:Thermal Load Reduction
Thermal Load Reduction
‘Auto Thermal Load Shed’
cmd Enable – Ena
√Auto Thermal Load Shed – Ena
18 JUL 00
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CHLMKNEQCZ JKC IME;B@ J@K@EFYR@HCZ H;LILI= EIHMNK; A(B =H@SH@D
LCLM@GV M@KGIK@>NFCKI=;HCZ H; K;HHCP XM;J;P EETCS) - WARN
JK@?NJK@A?@HC@
(EMER/4A-ALL/FIN)
KljZgbpZ 1 ba 3
1. IJH<?JD: KDHJHKLB J:;HLU GH<H=H HKGH<GH=H G:KHK:
Ijb \uiheg_gbb wlhc ijhp_^mju gZkhk ; >; $ beb %@ y\ey_lky ghkhkhf knhjfbjh\Z\rbf
i_j\hgZqZevgh_ khh[s_gb_ h[ hldZa_ gZkhkZ GZkhk < >< % beb $@ y\ey_lky ghkhkhf
dhlhjuc ijh]jZffgh_ h[_ki_q_gb_ ihiulZehkv \dexqblv \uihegyy Ze]hjblf i_j_dexq_gby
gZkhkZ ^ey \uy\e_gby ehdZebaZpbb b mkljZg_gby hldZaZ
?keb ^ZggZy ijhp_^mjZ \uihegy_lky ^h jZkdhgk_j\Zpbb fh^mey /DE lh g_ \uihegylv dhfZg^u
beb ijh\_jdm l_e_f_ljbb k\yaZggu_ k we_f_glZfb fh^mey /DE
PCS
P6: TCS
P6: EETCS Overview
‘EETCS PFCS LoopA(B)’
?keb PumpY Spd (Cdhjhklv jZ[hlu gZkhkZ < ! h[fbg
I_j_clb d rZ]m H`b^Zlv ke_^mxs_]h khh[s_gby
Caution – ‘EEATCS LoopA(B) PFCS Pump Y Failure –P6¶ HldZa gZkhkZ < ih^kbkl_fu
mijZ\e_gby gZkhkhf b jZkoh^hf 3)&6 dhglmjZ :< kbkl_fu EEATCS)
PCS
Lab: TCS: Thermal Load Reduction
Thermal Load Reduction
‘Auto Thermal Load Shed’
cmd Inhibit – $UP Ih^]hlh\blv [ehdbjh\dm
cmd Inhibit – ,QK AZ[ehdbjh\Zlv
√Auto Thermal Load Shed Inhibit – Inh (√:\lhfZlbq_kdbc k[jhk l_ieh\hc gZ]jmadb ih mkeh\byf
l_ieh\h]h j_`bfZ - AZ[ehdbjh\Zg
PCS
P6: TCS: Loop A(B) PFCS
LoopA(B) PFCS Nominal Commands
‘EETCS LoopA(B) PFCS’
‘PumpY’
cmd – 2Q <dexqblv
√PumpY – On (√GZkhk Y – <de)
?keb PumpY Spd Kdhjhklv jZ[hlu gZkhkZ Y h[fbg
PCS
Lab:TCS:Thermal Load Reduction
Thermal Load Reduction
‘Auto Thermal Load Shed’
cmd Enable – Ena (JZa[ehdbjh\Zlv)
√Auto Thermal Load Shed – Ena (√:\lhfZlbq_kdbc k[jhk l_ieh\hc gZ]jmadb ih mkeh\byf
l_ieh\h]h j_`bfZ - JZa[ehdbjh\Zg
BXE R 119
6643R
2.801 EETCS LOOP A(B) PUMP SWITCHOVER FAILED CHECKLIST WARN
(EMER/4A - ALL/FIN)
PCS
Page 2 of 3 pages
P6: TCS:Loop A(B) PFCS
LoopA(B) PFCS Nominal Commands
‘EETCS LoopA(B) PFCS’
sel RPCM 4B(2B) A RPC 04
RPCM 4B(2B) A RPC 04
cmd RPC Position – Open
√RPC Position – Open
PCS
P6: TCS: Loop A(B) Line Heater (select either icon)
LoopA(B) Line Heater Commands
‘EETCS LoopA(B) PFCS’
‘Ln Htr1’
√RPC Posn – Op
‘Ln Htr2’
√RPC Posn – Op
Go to {3.107 EETCS LOOP A(B) PUMP SWITCHOVER FAILED}, block
12 (SODF: TCS: MALFUNCTION: EETCS) >>
Go to {3.107 EETCS LOOP A(B) PUMP SWITCHOVER FAILED}, block
19 (SODF: TCS: MALFUNCTION: EETCS) >>
PCS
2. VERIFYING FAILED PUMP WAS SUCCESSFULLY COMMANDED OFF
P6: TCS: Loop A(B) PFCS
LoopA(B) PFCS Nominal Commands
‘EETCS LoopA(B) PFCS’
If PumpX Spd < 1000 rpm
Transient message. The pump speed for both pumps satisfies the
command response limit checks.
Go to {3.107 EETCS LOOP A(B) PUMP SWITCHOVER FAILED}, block
12 (SODF: TCS: MALFUNCTION: EETCS) >>
‘PumpX’
cmd – Off
√PumpX – Off
18 JUL 00
120
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CHLMKNEQCZ JKC IME;B@ J@K@EFYR@HCZ H;LILI= EIHMNK; A(B =H@SH@D
LCLM@GV M@KGIK@>NFCKI=;HCZ H; K;HHCP XM;J;P EETCS) - WARN
JK@?NJK@A?@HC@
(EMER/4A-ALL/FIN)
PCS
KljZgbpZ 2 ba 3
P6: TCS: Loop A(B) PFCS
LoopA(B) PFCS Nominal Commands
‘EETCS LoopA(B) PFCS’
\u[jZlv RPCM 4B(2B) A RPC 04
RPCM 4B(2B) A RPC 04
cmd RPC Position – Open Iheh`_gb_ ^bklZgpbhggh]h dhgljhee_jZ iblZgby RPC) -
JZahfdgmlv
√RPC Position – Open (√Iheh`_gb_ ^bklZgpbhggh]h dhgljhee_jZ iblZgby RPC) - JZahfdgmlv
PCS
P6: TCS: Loop A(B) Line Heater
LoopA(B) Line Heater Commands
‘EETCS LoopA(B) PFCS’
\u[jZlv ex[mx ibdlh]jZffm
GZ]j_\Zl_ev fZ]bkljZeb µ/Q +WU¶ √RPC Posn – Op (√Iheh`_gb_ RPC - JZahfdgml
GZ]j_\Zl_ev fZ]bkljZeb µ/Q +WU¶ √RPC Posn – Op (√Iheh`_gb_ RPC - JZahfdgml
I_j_clb d ijhp_^mj_ {3.107 EETCS LOOP A(B) PUMP SWITCHOVER FAILED} [ehd 62')
TCS: MALFUNCTION: EETCS)
>>
I_j_clb d ijhp_^mj_ {3.107 EETCS LOOP A(B) PUMP SWITCHOVER FAILED} [ehd 62')
TCS: MALFUNCTION: EETCS)
PCS
>>
2. IJH<?JD: MKI?RGH=H <UIHEG?GBY DHF:G>U G: HLDEXQ?GB? HLD:A:<R?=H G:KHK:
P6: TCS: Loop A(B) PFCS
LoopA(B) PFCS Nominal Commands
‘EETCS LoopA(B) PFCS’
?keb PumpX Spd (Cdhjhklv jZ[hlu gZkhkZ X h[fbg
G_mklhcqb\h_ khh[s_gb_ Kdhjhklv jZ[hlu h[hbo gZkhkh\ gZoh^blky \ ij_^_eZo ijh\_jhd
ij_^gZagZq_gguo ^ey ih^l\_j`^_gby \uiheg_gby dhfZg^u
I_j_clb d ijhp_^mj_ {3.107 EETCS LOOP A(B) PUMP SWITCHOVER FAILED} [ehd SODF:
TCS: MALFUNCTION: EETCS) >>
‘PumpX’
cmd – 2II Hldexqblv
√PumpX – Off (√GZkhk O - Hlde
BXE R 121
6643R
2.801 EETCS LOOP A(B) PUMP SWITCHOVER FAILED CHECKLIST WARN
(EMER/4A - ALL/FIN)
Page 3 of 3 pages
If PumpX Spd > 1000 rpm
Go to {3.107 EETCS LOOP A(B) PUMP SWITCHOVER FAILED},
block 7 (SODF: TCS: MALFUNCTION: EETCS) >>
Go to {3.107 EETCS LOOP A(B) PUMP SWITCHOVER FAILED},
block 10 (SODF: TCS: MALFUNCTION: EETCS) >>
18 JUL 00
122
6643.doc
CHLMKNEQCZ JKC IME;B@ J@K@EFYR@HCZ H;LILI= EIHMNK; A(B =H@SH@D
LCLM@GV M@KGIK@>NFCKI=;HCZ H; K;HHCP XM;J;P EETCS) - WARN
JK@?NJK@A?@HC@
(EMER/4A-ALL/FIN)
KljZgbpZ 3 ba 3
?keb PumpX Spd Kdhjhklv jZ[hlu gZkhkZ X ! h[fbg
I_j_clb d ijhp_^mj_ {3.107 EETCS LOOP A(B) PUMP SWITCHOVER FAILED} [ehd SODF:
TCS: MALFUNCTION: EETCS) >>
I_j_clb d ijhp_^mj_ {3.107 EETCS LOOP A(B) PUMP SWITCHOVER FAILED} [ehd SODF:
TCS: MALFUNCTION: EETCS) >>
BXE R 123
6643R
2.802 EETCS LOOP A(B) SAFING CHECKLIST - WARN
(EMER/4A - ALL/FIN)
Page 1 of 2 pages
1. REMOVING POWER FROM LOOP A(B) PFCS
NOTE
Loss of communication with RPCM 4B(2B) A, or other failures,
will result in the inability to command RPCs in steps 1 and 2.
PCS
P6: TCS: Loop A(B) PFCS
Loop A(B) PFCS Nominal Commands
sel – RPCM 4B(2B) A RPC 04
RPCM 4B(2B) A RPC 04
cmd RPC Position – Open (√ − Op)
2. REMOVING POWER FROM LOOP A(B) LINE HEATERS
NOTE
If line heater RPC open commands are not successful,
proceed with next step. Thermostats should protect hardware
from damage. Opening these RPCs is done as a precaution.
PCS
P6: TCS: Loop A(B) Line Heater Icon (select either icon)
Loop A(B) Line Heater Commands
‘EETCS Loop A(B) PFCS’
(mid-section of display)
‘Ln Htr1’
If RPC Posn – Cl
sel RPCM 4B(2B) A RPC 05
RPCM 4B(2B) A RPC 05
‘RPC Position’
cmd – Open (√RPC Position – Op)
‘Ln Htr2’
If RPC Posn – Cl
sel RPCM 4B(2B) A RPC 06
RPCM 4B(2B) A RPC 06
‘RPC Position’
cmd – Open (√RPC Position – Op)
NOTE
System has been safed temporarily.
20 JUL 00
124
7879.doc
CHLMKNEQCZJIJKC=@?@HCY=<@BIJ;LHI@LILMIZHC@EIHMNK;A(B)
=H@SH@DLCLM@GVM@KGIK@>NFCKI=;HCZH;K;HH@GXM;J@EETCS) – WARN
JK@?NJK@A?@HC@
(EMER/4A – ALL/FIN)
KljZgbpZ1ba
1.
H;?KLHQB<:GB? IH>KBKL?FU MIJ:<E?GBY G:KHKHF B J:KOH>HF 3)&6
DHGLMJ: $%
IJBF?Q:GB?
Ihl_jy k\yab k [ehdhf ^bklZgpbhgguo dhgljhee_jh\ iblZgby 53&0 dZgZeZ
%% $ beb ^jm]b_ hldZau ijb\_^ml d g_\hafh`ghklb \u^Zqb dhfZg^ gZ
^bklZgpbhggu_ dhgljhee_ju iblZgby 53& \ rZ]Zo b PCS
P6: TCS: Loop A(B) PFCS
Loop A(B) PFCS Nominal Commands
\u[jZlv – RPCM 4B(2B) A RPC 04
RPCM 4B(2B) A RPC 04
cmd RPC Position– 2SHQ Iheh`_gb_ 53& – JZahfdgmlv √ - 2S JZahfdgml
2.
H;?KLHQB<:GB? G:=J?<:L?E?C F:=BKLJ:EB DHGLMJ: $%
IJBF?Q:GB?
?keb dhfZg^u gZ jZafudZgb_ ^bklZgpbhgguo dhgljhee_jh\ iblZgby
gZ]j_\Zl_e_c fZ]bkljZeb g_ ijhreb i_j_clb d ke_^mxs_fm rZ]m
L_jfhklZlu ^he`gu h[_ki_qblv aZsblm h[hjm^h\Zgby hl ih\j_`^_gby
JZafudZgb_ wlbo dhgljhee_jh\ \uihegy_lky dZd f_jZ ij_^hklhjh`ghklb
PCS
\u[jZlv ex[mx ibdlh]jZffm
3 7&6 /RRS $% /LQH +HDWHU ,FRQ Loop A(B) Line Heater Commands
‘EETCS Loop A(B) PFCS’
kj_^gyy qZklv ^bkie_y
GZ]j_\Zl_ev fZ]bkljZeb µ/Q +WU¶ ?keb 53& 3RVQ – &O Iheh`_gb_ 53&– AZfdgml
\u[jZlv 53&0 %% $ 53& RPCM 4B(2B) A RPC 05
‘RPC Position’
cmd – Open JZahfdgmlv √RPC Position – Op (√Iheh`_gb_ 53& – JZahfdgml
GZ]j_\Zl_ev fZ]bkljZeb µ/Q +WU¶ ?keb RPC Posn – Cl Iheh`_gb_ 53&– AZfdgml
\u[jZlv 53&0 %% $ 53& RPCM 4B(2B) A RPC 06
‘RPC Position’
cmd– 2SHQ JZahfdgmlv √RPC Position – Op (√Iheh`_gb_ 53& – JZahfdgml
IJBF?Q:GB?
Kbkl_fZ \j_f_ggh ijb\_^_gZ \ [_ahiZkgh_ khklhygb_
20 BXE 00
R 125
7879R
2.802 EETCS LOOP A(B) SAFING CHECKLIST - WARN
(EMER/4A - ALL/FIN)
Page 2 of 2 pages
3. CONTACTING MCC-H
Notify MCC-H of emergency condition and corrective steps taken as soon
as possible.
With one EETCS loop shut down there is no heat being rejected from the
associated IFHX. Lab Module equipment may begin to overheat in
approximately 1.5 hours. If no communication with MCC-H is possible
for this period of time, go to {2.105 EETCS LOOP A(B) PFCS
SHUTDOWN}, steps 1 and 4 (SODF: TCS: NOMINAL: EETCS).
20 JUL 00
126
7879.doc
CHLMKNEQCZJIJKC=@?@HCY=<@BIJ;LHI@LILMIZHC@EIHMNK;A(B)
=H@SH@DLCLM@GVM@KGIK@>NFCKI=;HCZH;K;HH@GXM;J@EETCS) – WARN
JK@?NJK@A?@HC@
(EMER/4A – ALL/FIN)
KljZgbpZ2ba
3.
K<YA:LVKY K QNJ-P
Khh[sblv QNJ-P h[ Z\Zjbcghf khklhygbb b ij_^ijbgyluo dhjj_dlbjmxsbo rZ]Zo [_a
ijhf_^e_gby
Ijb hldexq_gbb h^gh]h dhglmjZ kbkl_fu ((7&6 g_ [m^_l hkms_kl\eylvky hl\h^ l_ieZ
khhl\_lkl\mxsbf bgl_jn_ckguf l_iehh[f_ggbdhf ,)+; H[hjm^h\Zgb_ fh^mey /DE fh`_l
gZqZlv i_j_]j_\Zlvky ijbf_jgh q_j_a qZkZ ?keb k\yav k QNJ-P g_\hafh`gZ \ wlhl i_jbh^
\j_f_gb – i_j_clb d \uiheg_gbx ijhp_^mju {2.105 EETCS LOOP A(B) PFCS SHUTDOWN},
rZ]b b 62') 7&6 NOMINAL: EETCS).
20 BXE 00
R 127
7879R
2.803 LAB IATCS LEAK AUTO ISOLATION INHIBITED - WARN
(EMER/5A - ALL/FIN)
PCS
Page 1 of 1 page
1. VERIFYING ITCS MODE
Lab: TCS
IATCS Overview
‘Status’
If MTL Leak Rcvy – Inh and LTL Leak Rcvy – Inh
sel Software
Software Commands
cmd IATCS Mode Dual – Arm
√Arm Status – Dual Armed
cmd IATCS Mode Dual – Dual
Expect Caution ‘Lab LTL, MTL SFCA Uncontrolled DP-Lab’
Wait until IATCS Mode – Dual (May take up to 150 sec.)
PCS
2. RESETTING ACCUMULATOR THRESHOLDS
Lab: TCS
IATCS Overview
‘PPA’
Record LTL and MTL Average Accumulator Quantities:
PCS
LTL Avg Accum Qty:
%
MTL Avg Accum Qty:
%
Lab: TCS: Software: Software Additional Commands
Software Additional Commands
‘Leak Recovery IATCS’
cmd Set Contingency Leak Limits – Set
Go to {3.202 LAB IATCS LEAK AUTO ISOLATION}, block 9 (SODF:
TCS: MALFUNCTION: IATCS) >>
11 JUL 00
128
7916.doc
2.803 <FIECKI=E; ;=MIG;MCR@LEID CBIFZQCC NM@REC CB =HNMK@HH@D ;EMC=HID
LCLM@GV M@KGIK@>NFCKI=;HCZ IATCS GI?NFZ LAB – WARN JK@?NJK@A?@HC@
(EMER/5A - ALL/FIN)
KljZgbpZ 1 ba 1
PCS
1. IJH<?JD: J?@BF: <GMLJ?GG?C KBKL?FU L?JFHJ?=MEBJH<:GBY ITCS)
Lab: TCS
IATCS Overview
‘Status’
?keb MTL Leak Rcvy <hkklZgh\e_gb_ ijb ml_qd_ \ kj_^g_l_fi_jZlmjghf dhglmj_ – Inh
AZ[ehdbjh\Zgh b LTL Leak Rcvy <hkklZgh\e_gb_ ijb ml_qd_ \ gbadhl_fi_jZlmjghf
dhglmj_ – Inh AZ[ehdbjh\Zgh
\u[jZlv Software Ijh]jZffgh_ h[_ki_q_gb_
Software Commands
cmd IATCS Mode Dual – Arm Ih^]hlh\blv ^\modhglmjguc j_`bf kbkl_fu IATCS)
√Arm Status– Dual Armed (√Khklhygb_ ih^]hlh\db – >\modhglmjguc j_`bf ih^]hlh\e_g
cmd IATCS Mode Dual – Dual I_j_\_klb \ ^\modhglmjguc j_`bf kbkl_fm IATCS)
H`b^Zlv ihy\e_gb_ khh[s_gby Caution ‘Lab LTL, MTL SFCA Uncontrolled DP-Lab’
G_dhgljhebjm_fuc i_j_iZ^ ^Z\e_gby \ Z]j_]Zl_ mijZ\e_gby ihlhdhf SFCA)
gbadhl_fi_jZlmjgh]h LTL kj_^g_l_fi_jZlmjgh]h MTL dhglmjh\ – fh^mev Lab)
<u`^Zlv ihdZ IATCS Mode J_`bf \gmlj_gg_c Zdlb\ghc kbkl_fu l_jfhj_]mebjh\Zgby –
Dual >\modhglmjguc Fh`_l aZgylv \j_f_gb ^h k
PCS
2. A:>:GB? IHJH=H< MKL:<HD >EY DHFI?GK:LHJ: L?IEHGHKBL?EY
Lab: TCS
IATCS Overview
‘PPA’
AZj_]bkljbjh\Zlv kj_^gbc mjh\_gv l_iehghkbl_ey \ dhfi_gkZlhj_ gbadhl_fi_jZlmjgh]h
(LTL b kj_^g_l_fi_jZlmjgh]h MTL dhglmjh\
PCS
LTL Avg Accum Qty Kj mjh\_gv l_ie \ dhfi_gkZlhj_ dhglmjZ LTL):
%
MTL Avg Accum Qty Kj mjh\_gv l_ie \ dhfi_gkZlhj_ dhglmjZ MTL):
%
Lab: TCS: Software: Software Additional Commands
Software Additional Commands
‘Leak Recovery IATCS’
cmd Set Contingency Leak Limits – Set AZ^Zlv g_rlZlgu_ mklZ\db ih jZaf_jZf ml_qdb
I_j_clb d ijhp_^mj_ {3.202 LAB IATCS LEAK AUTO ISOLATION}, [ehd 9 (SODF: TCS:
MALFUNCTION: IATCS) >>
11 BXE 00
R 129
7916R
2.804 LAB IATCS LEAK ISOLATION FAILED - WARN
(EMER/5A - ALL/FIN)
Page 1 of 1 page
CAUTION
1. Software will erroneously perform near complete LAB
shutdown unless Thermal Load Shed is inhibited.
2. Expect the following possible Warning message:
‘Thermal Safing LTL(MTL) Partial Load
Shed Timer Started’
PCS
1. INHIBITING AUTO THERMAL LOAD SHED
Lab: TCS: Thermal Load Reduction
Thermal Load Reduction
cmd Auto Thermal Load Shed Inhibit – Arm (√ − X)
cmd Auto Thermal Load Shed Inhibit – Inh
√Auto Thermal Load Shed – Inh
Expect Warning ‘Thermal Safing Load Shed Inhibited – LAB’ followed
by possible Warning –
‘Thermal Safing Lab LTL Complete Load Shed Timer Started’ and
‘Thermal Safing Lab MTL Complete Timer Started’
CAUTION
Both IATCS Loops are leaking. The following
malfunction procedure must be performed
immediately.
Go to {2.804 LAB IATCS LEAK ISOLATION FAILED} (SODF: TCS:
MALFUNCTION: IATCS) >>
06 JUL 00
130
7915.doc
IME;BCBIFZQCCNM@RECCB=HNMK@HH@D;EMC=HIDLCLM@GV
M@KGIK@>NFCKI=;HCZIATCSGI?NFZLAB – WARNJK@?NJK@A?@HC@
(EMER/5A-ALL/FIN)
KljZgbpZ 1 ba 1
=HCG;HC@!
1. Ijh]jZffgh_ h[_ki_q_gb_ hrb[hqgh \uihegbl ihqlb ihegh_
hldexq_gb_ fh^mey LAB _keb lhevdh k[jhk gZ]jmadb ih mkeh\byf
l_ieh\h]h j_`bfZ g_ [m^_l aZ[ehdbjh\Zg
2. H`b^Zcl_ \hafh`gh]h ihy\e_gby ke_^mxs_]h ij_^mij_^bl_evgh]h
khh[s_gby
‘Thermal Safing LTL(MTL) Partial Load Shed Timer Started’
<dexq_g lZcf_j ^ey qZklbqgh]h k[jhkZ gZ]jmadb ijb
ijb\_^_gbb gbadhl_fi_jZlmjgh]h LTL kj_^g_l_fi_jZlmjgh]h
(MTL dhglmjh\ \ [_ahiZkgh_ khklhygb_ ih mkeh\byf l_ieh\h]h
j_`bfZ
1. ;EHDBJH<D: :<LHF:LBQ?KDH=H K;JHK: G:=JMADB IH MKEH<BYF
L?IEH<H=H J?@BF:
PCS
Lab: TCS: Thermal Load Reduction
Thermal Load Reduction
cmd Auto Thermal Load Shed Inhibit – Arm (√ - X Ih^]hlh\blv [ehdbjh\dm
Z\lhfZlbq_kdh]h k[jhkZ gZ]jmadb ih mkeh\byf l_ieh\h]h j_`bfZ √ - X))
cmd Auto Thermal Load Shed Inhibit – Inh ;ehdbjh\Zlv Z\lhfZlbq_kdbc k[jhk
gZ]jmadb ih mkeh\byf l_ieh\h]h j_`bfZ
√Auto Thermal Load Shed– Inh (√:\lhfZlbq_kdbc k[jhk gZ]jmadb ih mkeh\byf
l_ieh\h]h j_`bfZ – AZ[ehdbjh\Zg
H`b^Zcl_ ihy\e_gb_ ij_^mij_^bl_evgh]h khh[s_gby ‘Thermal Safing Load Shed
Inhibited – LAB’ ;ehdbjh\Zg k[jhk gZ]jmadb ijb ijb\_^_gbb \ [_ahiZkgh_
khklhygb_ ih mkeh\byf l_ieh\h]h j_`bfZ – fh^mev LAB ke_^hf aZ wlbf
\hafh`gh ij_^mij_`^_gb_ –
‘Thermal Safing Lab LTL Complete Load Shed Timer Started’ <dexq_g lZcf_j ^ey
ihegh]h k[jhkZ gZ]jmadb ijb ijb\_^_gbb dhglmjZ LTL fh^mey Lab \ [_ahiZkgh_
khklhygb_ ih mkeh\byf l_ieh\h]h j_`bfZ b
‘Thermal Safing Lab MTL Complete Timer Started’ <dexq_g lZcf_j ^ey ihegh]h
k[jhkZ gZ]jmadb ijb ijb\_^_gbb dhglmjZ MTL fh^mey Lab \ [_ahiZkgh_ khklhygb_
ih mkeh\byf l_ieh\h]h j_`bfZ
=HCG;HC@!
< h[hbo dhglmjZo IATCS _klv ml_qdZ. Gb`_ke_^mxsZy
ijhp_^mjZ ih mkljZg_gbx g_bkijZ\ghklb ^he`gZ [ulv
\uiheg_gZ g_f_^e_ggh
I_j_clb d ijhp_^mj_ {2.804 LAB IATCS LEAK ISOLATION FAILED} (SODF: TCS:
MALFUNCTION: IATCS) >>
BXE R 131
7915R
2.805 LAB IATCS MODE UNKNOWN - WARN
(EMER/5A - ALL/FIN)
Page 1 of 2 pages
1. INHIBITING THERMAL LOAD SHED, IF REQUIRED
If any Warning Messages, ‘Thermal Safing Load Shed X Timer Started’
messages received
PCS
LAB:TCS:Thermal Load Reduction
Thermal Load Reduction
‘Auto Thermal Load Shed’
cmd Inhibit − Arm (√-X)
cmd Inhibit − Inh
√Auto Thermal Load Shed – Inh
Expect ‘Thermal Safing Load Shed Inhibited’ messages after the load
shed timers reach zero.
2. DETERMINING TRIGGER CONDITION
CAUTION
The TCS steps in the appropriate EPS SSR must be
performed within 30 minutes to prevent damage to
critical avionics due to loss of cooling.
If the only RPCM loss of communication message is ‘RPCM LAS62B A
(LAP61B A) Loss of Comm – LAB’
Translate to rack LAB1S6(LAB1P6) and listen to the rack.
If there is no pump sound coming from rack LAB1S6(LAB1P6), then
RPCM LAS62B A(LAP61B A) is not providing power to downstream
loads.
Go to {4.259 SSR POWER BUS LOSS: RPCM LAS62B A} or
{4.257 SSR POWER BUS LOSS: RPCM LAP61B A} (SODF:
EPS: CORRECTIVE: SECONDARY POWER SYSTEM) >>
If there is a pump sound coming from rack, RPCM LAS62B A(LAP61B
A) is still providing power, only has loss of comm.
Go to {3.204 RPCM LOSS OF COMM} (SODF: EPS:
MALFUNCTION: SECONDARY POWER SYSTEM) >>
If the only RPCM Loss of communication messages are ‘RPCM LA2B
F(LA1B D) Loss of Comm - LAB’ and ‘RPCM LAS62B A(LAP61B A)
Loss of Comm - LAB’
RPCM LA2B F(LA1B D) is not providing power to downstream loads.
~
26 JUL 00
132
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K@ACGK;<IMV=HNMK@HH@D;EMC=HIDLCLM@GVM@KGIK@>NFCKI=;HCZ
(IATCSGI?NFZLABH@CB=@LM@H– WARNJK@?NJK@A?@HC@
(EMER/5A-ALL/FIN)
KljZgbpZ 1 ba 1
1. ;EHDBJH<D: K;JHK: G:=JMADB IH MKEH<BYF L?IEH<H=H J?@BF: IJB
G?H;OH>BFHKLB
Ijb ihemq_gbb ex[h]h ij_^mij_^bl_evgh]h khh[s_gby ‘Thermal Safing Load Shed X Timer
Started’ <dexq_g lZcf_j ^ey O k[jhkZ gZ]jmadb ijb ijb\_^_gbb \ [_ahiZkgh_ khklhygb_ ih
mkeh\byf l_ieh\h]h j_`bfZ
PCS
LAB:TCS:Thermal Load Reduction
Thermal Load Reduction
‘Auto Thermal Load Shed’
cmd Inhibit Arm (√X Ih^]hlh\blv [ehdbjh\dm √X)
cmd Inhibit Inh AZ[ehdbjh\Zlv
√Auto Thermal Load Shed – Inh :\lhfZlbq_kdbc k[jhk gZ]jmadb ih mkeh\byf l_ieh\h]h
j_`bfZ – AZ[ehdbjh\Zg
H`b^Zlv ihy\e_gby khh[s_gbc ‘Thermal Safing Load Shed Inhibited¶ K[jhk gZ]jmadb ih
mkeh\byf l_ieh\h]h j_`bfZ ijb ijb\_^_gbb \ [_ahiZkgh_ khklhygb_ aZ[ehdbjh\Zg ihke_
lh]h dZd agZq_gb_ gZ lZcf_j_ ^ey k[jhkZ gZ]jmadb [m^_l jZ\gh gmex
2. HIJ?>?E?GB? KHKLHYGBY BKLHQGBD: KHH;S?GBY
=HCG;HC@
RZ]b ijhp_^mju ^ey kbkl_fu l_jfhj_]mebjh\Zgby \ khhl\_lkl\mxs_f
jZa^_e_ ih \hkklZgh\e_gbx kbkl_fu we_dljhiblZgby EPS SSR) ^he`gu
[ulv \uiheg_gu \ l_q_gbb fbgml k p_evx ij_^hl\jZs_gby
ih\j_`^_gby djblbq_kdb \Z`ghc ZiiZjZlmju \ k\yab k ihl_j_c
\hafh`ghklb hoeZ`^_gby
?keb _^bgkl\_gguf khh[s_gb_f h ihl_j_ k\yab k [ehdhf ^bklZgpbhgguo dhgljhee_jh\
iblZgby RPCM y\ey_lky ‘RPCM LAS62B A (LAP61B A) Loss of Comm – LAB’ Ihl_jy
k\yab k [ehdhf ^bklZgpbhgguo dhgljhee_jh\ iblZgby klhcdb LAS62B A (LAP61B A) – fh^mev
LAB), lh]^Z
I_j_f_klblvky d klhcd_ LAB1S6(LAB1P6) b ijbkemrZlvky d klhcd_
?keb hl klhcdb LAB1S6(LAB1P6) g_ bkoh^bl a\md jZ[hlZxs_]h gZkhkZ
lh]^Z RPCM LAS62B A(LAP61B A) g_ ih^Z_l iblZgb_ gZ jZkiheh`_ggh_ ^Ze__ ih p_ib
h[hjm^h\Zgb_
I_j_clb d ijhp_^mj_ {4.259 SSR POWER BUSS LOSS: RPCM LAS62B A} eb[h {4.257
SSR POWER BUSS LOSS: RPCM LAP61B A} (SODF: EPS: CORRECTIVE:
SECONDARY POWER SYSTEM), beb `_
~ ?keb keur_g a\md jZ[hlZxs_]h gZkhkZ lh]^Z RPCM LAS62B A(LAP61B A) ihij_`g_fm ih^Z_l iblZgb_ gh ihl_jygZ lhevdh k\yav
I_j_clb d ijhp_^mj_ {3.204 RPCM LOSS OF COMM} (SODF: EPS: MALFUNCTION:
SECONDARY POWER SYSTEM).
15 BXE 00
R 133
8790R
2.805 LAB IATCS MODE UNKNOWN - WARN
(EMER/5A - ALL/FIN)
Page 2 of 2 pages
~
Go to {4.237 SSR POWER BUS LOSS: RPCM LA2B_F} or {4.225
SSR POWER BUS LOSS: RPCM LA1B_D}, (SODF: EPS:
CORRECTIVE: SECONDARY POWER SYSTEM) >>
If multiple Caution ‘RPCM LA2B X (LA1B X) Loss of Comm - LAB’
messages received
DDCU LA2B (LA1B) is not providing power to downstream loads.
Perform {4.231 SSR POWER BUS LOSS: RPCM LA2B} or {4.221
SSR POWER BUS LOSS: RPCM LA1B} (SODF: EPS:
CORRECTIVE: SECONDARY POWER SYSTEM), then:
√MCC-H for necessary reconfiguration
26 JUL 00
134
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K@ACGK;<IMV=HNMK@HH@D;EMC=HIDLCLM@GVM@KGIK@>NFCKI=;HCZ
(IATCSGI?NFZLABH@CB=@LM@H– WARNJK@?NJK@A?@HC@
(EMER/5A-ALL/FIN)
KljZgbpZ 2 ba 2
?keb _^bgkl\_gguf khh[s_gb_f h ihl_j_ k\yab k [ehdhf ^bklZgpbhgguo dhgljhee_jh\
iblZgby (RPCM) y\ey_lky ‘RPCM LA2B F(LA1B D) Loss of Comm – LAB’ (Ihl_jy k\yab k
[ehdhf ^bklZgpbhgguo dhgljhee_jh\ iblZgby klcdb LA2B F(LA1B D) – fh^mev LAB) b
‘RPCM LAS62B A(LAP61B A) Loss of Comm-LAB’ (Ihl_jy k\yab k [ehdhf ^bklZgpbhggh]h
dhgljhee_jZ iblZgby klhcdb LAS62B A(LAP61B A) – fh^mev LAB)
RPCM LA2B F(LA1B D) g_ ih^Z_l iblZgb_ gZ jZkiheh`_ggh_ ^Ze__ ih p_ib
h[hjm^h\Zgb_
.
I_j_clb d ijhp_^mj_ {4.237 SSR POWER BUS LOSS: RPCM LA2B_F} eb[h {4.225 SSR
POWER BUS LOSS: RPCM LA1B_D} (SODF: EPS: CORRECTIVE: SECONDARY
POWER SYSTEM), aZl_f:
?keb ihy\ey_lky jy^ khh[s_gbc deZkkZ Caution Hih\_s_gb_ ‘RPCM LA2B X (LA1B X) Loss
of Comm – LAB’ Ihl_jy k\yab k [ehdhf ^bklZgpbhgguo dhgljhee_jh\ iblZgby klhcdb LA2B
X (LA1B X) – fh^mev LAB):
DDCU Ij_h[jZah\Zl_ev ihklhyggh]h lhdZ LA2B X(LA1B X) g_ ih^Z_l iblZgb_ gZ
jZkiheh`_ggh_ ^Ze__ ih p_ib h[hjm^h\Zgb_
I_j_clb d ijhp_^mj_ {4.231 SSR POWER BUS LOSS: RPCM LA2B} eb[h {4.221 SSR
POWER BUS LOSS: RPCM LA1B} (SODF: EPS: CORRECTIVE: SECONDARY POWER
SYSTEM); beb `_
?jiNB - P ^ey g_h[oh^bfhc j_dhgnb]mjZpbb
15 BXE 00
R 135
8790R
2.806 LAB LTL(MTL) IFHX NH3 UNDERTEMP RESPONSE FAILED - WARN
(EMER/5A - ALL/FIN)
PCS
Page 1 of 2 pages
1. CHECKING CAUTION AND WARNING SUMMARY
CW Summ
Caution & Warning Summary
If both warning messages ‘LAB LTL(MTL) IFHX NH3 In Temp Low Bypass Failed-Lab’ (event code 63(151)) and ‘EEATCS Loop A(B)
PFCS Outlet Temp Low Safing Failed-P6’ (event code 1271(1272))
have been posted, then both legs of NH3 Undertemp freeze protection
FDIRs were unsuccessful, a real NH3 Undertemp event exists, and
immediate action is required.
Go to step 2.
If only warning message ‘EEATCS Loop A(B) PFCS Outlet Temp Low
Safing Failed-P6’ (event code 1271(1272)) has been issued, then
system is in a safe configuration.
Go to {3.310 LAB LTL(MTL) IFHX NH3 UNDERTEMP RESPONSE
FAILED}, block 1 (SODF: TCS: MALFUNCTION: IATCS), then:
If only warning message ‘LAB LTL(MTL) IFHX NH3 In Temp Low Bypass Failed-Lab’ (event code 63(151)) has been issued, then system
is in a safe configuration.
Go to {3.310 LAB LTL(MTL) IFHX NH3 UNDERTEMP RESPONSE
FAILED}, block 1 (SODF: TCS: MALFUNCTION: IATCS).
PCS
2. OPENING EETCS LOOP A(B) PFCS RPC POSITIONS
P6: TCS: Loop A(B) PFCS
LoopA(B) PFCS Nominal Commands
‘EETCS LoopA(B) PFCS’
If RPC Posn − CI
sel RPCM 4B(2B) A RPC 04
RPCM 4B(2B) A RPC 04
‘RPC Position’
cmd − Op
√RPC Position − Op
20 JUL 00
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IME;BJKCJKIQ@?NK@=ILLM;HI=F@HCZJIJIHCA@HHIDM@GJ@K;MNK@
;GGC;RHI>INHM@JFIHILCM@FZCHM@KO@DLHI>IM@JFII<G@HHCE;IFHX)
HCBEIM@GJ@K;MNKHI>ILTLLK@?H@M@GJ@K;MNKHI>IMTLEIHMNK;GI?NFZ
LAB – WARNJK@?NJK@A?@HC@
(EMER/5A-ALL/FIN)
KljZgbpZ 1 ba 1
1. IJH<?JD: K<H>GHC BGNHJF:PBB KBKL?FU :<:JBCGH-IJ?>MIJ?>BL?EVGHC
KB=G:EBA:PBB
PCS
CW Summ
Caution & Warning Summary
Ijb ihy\e_gbb h[hbo ij_^mij_^bl_evguo khh[s_gbc ‘LAB LTL(MTL) IFHX NH3 In Temp
Low – Bypass Failed-Lab’ Ihgb`_ggZy l_fi_jZlmjZ ZfbZqgh]h NH3 l_iehghkbl_ey gZ
\oh^_ bgl_jn_ckgh]h l_iehh[f_ggbdZ dhglmjZ LTL(MTL) fh^mey LAB – hldZa ijb i_j_\h^_
gZ h[\h^gmx ebgbx – fh^mev Lab) (dh^ kh[ulby 63(151)) b ‘EEATCS Loop A(B) PFCS
Outlet Temp Low Safing Failed-P6’ HldZa ijb\_^_gby \ [_ahiZkgh_ khklhygb_ ijb
ihgb`_gghc l_fi_jZlmj_ gZ \uoh^_ ih^kbkl_fu mijZ\e_gby gZkhkhf b jZkoh^hf PFCS)
dhglmjZ :< \g_rg_c Zdlb\ghc kbkl_fu l_jfhj_]mebjh\Zgby gZ jZggbo wlZiZo EEATCS)P6) (dh^ kh[ulby 1271(1272 lh]^Z \uy\e_gb_ ehdZebaZpby b mkljZg_gb_ hldZah\ FDIR)
ih aZsbl_ hl aZfhjZ`b\Zgby ijb ihgb`_gghc l_fi_jZlmj_ h[_bo mqZkldh\ kbkl_fu
ZfbZqgh]h l_iehghkbl_ey NH3 [ueh [_amki_rguf b kms_kl\m_l ^_ckl\bl_evgh_
ihgb`_gb_ l_fi_jZlmju NH3 b ^he`gu [ulv ij_^ijbgylu g_aZf_^ebl_evgu_ ^_ckl\by
I_j_clb d rZ]m 2.
Ijb ihy\e_gbb lhevdh ij_^mij_^bl_evgh]h khh[s_gby ‘EEATCS Loop A(B) PFCS Outlet
Temp Low Safing Failed-P6’ HldZa ijb\_^_gby \ [_ahiZkgh_ khklhygb_ ijb ihgb`_gghc
l_fi_jZlmj_ gZ \uoh^_ PFCS dhglmjZ :< kbkl_fu EEATCS-P6) (dh^ kh[ulby 1271(1272)),
lh]^Z kbkl_fZ gZoh^blky \ [_ahiZkghc dhgnb]mjZpbb
I_j_clb d ijhp_^mj_ {3.310 LAB LTL(MTL) IFHX NH3 UNDERTEMP RESPONSE
FAILED} [ehd SODF: TCS: MALFUNCTION: IATCS aZl_f
Ijb ihy\e_gbb lhevdh ij_^mij_^bl_evgh]h khh[s_gby ‘LAB LTL(MTL) IFHX NH3 In Temp
Low – Bypass Failed-Lab’ Ihgb`_ggZy l_fi_jZlmjZ ZfbZqgh]h l_iehghkbl_ey NH3gZ
\oh^_ bgl_jn_ckgh]h l_iehh[f_ggbdZ dhglmjZ LTL(MTL) fh^mey Lab – hldZa ijb i_j_\h^_
gZ h[\h^gmx ebgbx – fh^mev Lab) (dh^ kh[ulby 63(151)) lh]^Z kbkl_fZ gZoh^blky \
[_ahiZkghc dhgnb]mjZpbb
I_j_clb d ijhp_^mj_ {3.310 LAB LTL(MTL) IFHX NH3 UNDERTEMP RESPONSE
FAILED} [ehd SODF: TCS: MALFUNCTION: IATCS).
PCS
2. J:AFUD:GB? >BKL:GPBHGGUO DHGLJHEE?JH< IBL:GBY RPC IH>KBKL?FU
PFCS DHGLMJ: A(B KBKL?FU EETCS
P6: TCS: Loop A(B) PFCS
LoopA(B) PFCS Nominal Commands
‘EETCS LoopA(B) PFCS’
?keb RPC Posn– Cl Iheh`_gb_ RPC - AZfdgml
\u[jZlv RPCM 4B(2B) A RPC 04
RPCM 4B(2B) A RPC 04
‘RPC Position’
cmd – Op JZahfdgmlv
√RPC Position – Op Iheh`_gb_ RPC - JZahfdgml
BXE R 137
8531R
2.806 LAB LTL(MTL) IFHX NH3 UNDERTEMP RESPONSE FAILED - WARN
(EMER/5A - ALL/FIN)
PCS
Page 2 of 2 pages
3. OPENING EETCS LOOP A(B) PFCS LINE HEATER RPC POSITIONS
P6: TCS: Loop A(B) Line Heater icon
LoopA(B) Line Heater Commands
‘EETCS LoopA(B) PFCS’
‘Ln Htr1’
If RPC Posn − CI
sel RPCM 4B(2B) A RPC 05
RPCM 4B(2B) A RPC 05
‘RPC Position’
cmd − Op
√RPC Position − Op
‘Ln Htr2’
If RPC Posn − CI
sel RPCM 4B(2B) A RPC 06
RPCM 4B(2B) A RPC 06
‘RPC Position’
cmd − Op
√RPC Position − Op
NOTE
Line Heaters must be turned off (RPC − Op) within 2 minutes of
shutting down the PFCS or insulation damage could occur.
This RPC open command is sent as a precaution only. The
Heaters’ thermostat will remove power from the Heaters when
the temperature reaches the thermostat upper limit.
Go to {3.310 LAB LTL(MTL) IFHX NH3 UNDERTEMP RESPONSE
FAILED}, block 10 (SODF: TCS: MALFUNCTION: IATCS).
20 JUL 00
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IME;BJKCJKIQ@?NK@=ILLM;HI=F@HCZJIJIHCA@HHIDM@GJ@K;MNK@
;GGC;RHI>INHM@JFIHILCM@FZCHM@KO@DLHI>IM@JFII<G@HHCE;IFHX)
HCBEIM@GJ@K;MNKHI>ILTLLK@?H@M@GJ@K;MNKHI>IMTLEIHMNK;GI?NFZ
LAB – WARNJK@?NJK@A?@HC@
(EMER/5A-ALL/FIN)
PCS
KljZgbpZ 2 ba 2
3. J:AFUD:GB? >BKL:GPBHGGUO DHGLJHEE?JH< IBL:GBY RPC G:=J?<:L?E?C
F:=BKLJ:EB IH>KBKL?FU PFCS DHGLMJ: A(B KBKL?FU EETCS
P6: TCS: LoopA(B) Line Heater icon Ibdlh]jZffZ gZ]j_\Zl_e_c fZ]bkljZeb
LoopA(B) Line Heater Commands
‘EETCS LoopA(B) PFCS’
‘Ln Htr1’
?keb RPC Posn – Cl Iheh`_gb_ RPC - AZfdgml
\u[jZlv RPCM 4B(2B) A RPC 05
RPCM 4B(2B) A RPC 05
‘RPC Position’
cmd – Op (JZahfdgmlv)
√RPC Position – Op (Iheh`_gb_ RPC - JZahfdgml)
‘Ln Htr2’
?keb RPC Posn – Cl Iheh`_gb_ RPC - AZfdgml
\u[jZlv RPCM 4B(2B) A RPC 06
RPCM 4B(2B) A RPC 06
‘RPC Position’
cmd – Op JZahfdgmlv
√RPC Position – Op Iheh`_gb_ RPC - JZahfdgml
IJBF?Q:GB?
GZ]j_\Zl_eb fZ]bkljZeb ^he`gu [ulv hldexq_gu RPC – JZahfdgml \ l_q_gb_
fbgml ihke_ hldexq_gby PFCS beb `_ ijhbahc^_l ih\j_`^_gb_ baheypbb
DhfZg^Z gZ jZafudZgb_ RPC \u^Z_lky lhevdh dZd f_jZ ij_^hklhjh`ghklb
L_jfhklZl gZ]j_\Zl_e_c h[_klhqbl gZ]j_\Zl_eb dh]^Z l_fi_jZlmjZ ^hklb]g_l
\_jog_]h ij_^_eZ gZ l_jfhklZl_
I_j_clb d ijhp_^mj_ {3.310 LAB LTL(MTL) IFHX NH3 UNDERTEMP RESPONSE FAILED},
[ehd 10 (SODF: TCS: MALFUNCTION: IATCS).
BXE R 139
8531R
2.807 LAB LTL(MTL) LEAK SHUTDOWN INHIBITED - WARN
(EMER/5A - ALL/FIN)
PCS
Page 1 of 1 page
1. VERIFYING LOOP LEAK
Lab: TCS
IATCS Overview
On MCC-H GO, proceed to step 2
-ORWhen LTL(MTL) Avg Accum Qty < 20 %
PCS
2. REDUCING PUMP SPEED
Lab: TCS: LTL(MTL) PPA
LTL(MTL) PPA Commands
‘Set Pump Speed’
input
cmd
input
cmd
PCS
Arm − 0 rpm
Arm − Arm (√ - X)
Set − 0 rpm
Set − Set
LAB: TCS
IATCS Overview
‘PPA’
Verify LTL(MTL) Pmp Spd − 0 ± 1250 rpm
PCS
3. DEPRESSING ACCUMULATOR
Lab: TCS: LTL(MTL) PPA: LTL(MTL) NIA Commands
LTL(MTL) NIA Commands
cmd LTL(MTL) NIA Depress − Depress
CAUTION
Leak Safing procedure must be performed
immediately to prevent LAB critical avionics
from overheating.
Go to {3.206 LAB LTL LEAK SAFING}, block 3 or {3.219 LAB MTL LEAK
SAFING}, block 3 (SODF: TCS: MALFUNCTION: IATCS) >>
20 JUL 00
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7914.doc
<FIECKI=E;IMEFYR@HCZHCBEIM@GJ@K;MNKHI>ILTL)
LK@?H@M@GJ@K;MNKHI>IMTLEIHMNKI=GI?NFZLABJKCNM@RE@– WARN
JK@?NJK@A?@HC@
(EMER/5A-ALL/FIN)
KljZgbpZ 1 ba 1
PCS
1. IJH<?JD: ML?QDB BA DHGLMJ:
Lab: TCS
IATCS Overview
JiNB-P – ijbklmiblv d \uiheg_gbx rZ]Z BEB
Dh]^Z LTL(MTL) Avg Accum Qty Kj_^gbc mjh\_gv l_iehghkbl_ey \
dhfi_gkZlhj_ dhglmjZ LTL(MTL) < 20%)
PCS
2. MF?GVR?GB? KDHJHKLB J:;HLU G:KHK:
Lab: TCS: LTL(MTL) PPA
LTL(MTL) PPA Commands
‘Set Pump Speed’
\\_klb Arm Ih^]hlh\blv - h[fbg
cmd Arm - Arm (√ - X JZa[ehdbjh\Zlv ih^]hlh\dm √ - X))
\\_klb Set AZ^Zlv mklZ\dm - h[fbg
cmd Set – Set AZ^Zlv mklZ\dm
PCS
Lab: TCS
IATCS Overview
‘PPA’
Ijh\_jblv LTL(MTL) Pmp Spd kdhjhklv jZ[hlu gZkhkZ dhglmjZ LTL(MTL)) - 0 ±
h[fbg
PCS
3. KGB@?GB? >:<E?GBY DHFI?GK:LHJ:
Lab: TCS: LTL(MTL) PPA: LTL(MTL) NIA Commands
LTL(MTL) NIA Commands
cmd LTL(MTL) NIA Depress – Depress (Kgbablv ^Z\e_gb_ bgl_jn_ckgh]h [ehdZ
Zahlghc kbkl_fu (NIA) \ dhglmj_ LTL(MTL))
=HCG;HC@
Ml_qdZ hklZgh\e_gZ iml_f hldexq_gby gZkhkZ b
kgb`_gb_f ^Z\e_gby \ dhglmj_ h^gZdh ijhp_^mjZ
ih ijb\_^_gbx \ [_ahiZkgh_ khklhygb_ ijb ml_qd_
^he`gZ \uihegylvky g_aZf_^ebl_evgh k p_evx
ij_^hl\jZs_gby i_j_]j_\Z djblbq_kdb \Z`ghc
ZiiZjZlmju fh^mey LAB.
I_j_clb d ijhp_^mj_ {3.206 LAB LTL LEAK SAFING} [ehd beb {3.219 LAB MTL
LEAK SAFING} [ehd SODF: TCS: MALFUNCTION: IATCS) >>
BXE R 141
7914R
2.808 THERMAL SAFING LTL(MTL) IFHX NH3 LEAK DETECTED - WARN
(EMER/5A - ALL/FIN)
Page 1 of 3 pages
NOTE
1. Expect the following Warning messages, no action
required at this time:
‘Thermal Safing IATCS Reconfig Action
Inhibited’
‘Thermal Safing LTL, MTL Partial Load Shed
Timer Started’
2. Expect the following possible Caution level messages,
no action required at this time:
‘Thermal Safing LTL, MTL Partial Load Shed
Started’
PCS
1. DETERMINING IF NH3 LEAK IS REAL AND ACTIONS REQUIRED
LAB: TCS
IATCS Overview
‘PPA’
If LTL(MTL) Pmp In Press > 413.7 kPa (60 psia) or NH3 odor in Cabin
NH3 is leaking across an IFHX
WARNING
1. Toxic NH3 will likely enter the cabin through
LTL(MTL) PPA Gas Trap.
2. Flight crew is NOT to open racks LAP6 or
LAS6 to avoid possible contact with NH3.
Perform {1.701 TOXIC RELEASE RESPONSE - EMER}, for level 4
(SODF: EMER: EMERGENCY PROCEDURES: TOXIC
ATMOSPHERE), then:
NOTE
If MCC-H has communication with station, MCC-H
will continue working this procedure while crew is
egressing and isolating the LAB module.
PCS
LAB: TCS: Software
Software Commands
‘IATCS’
cmd Fail Rcvy Inhibit – Arm
√Fail Rcvy Inhibit Arm – X
cmd Fail Rcvy Inhibit − Inh
√Fail Rcvy − Inh
20 JUL 00
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I<H;KNA@H; NM@RE; ;GGC;RHI>I M@JFIHILCM@FZ NH CHM@KO@DLHI>I
M@JFII<G@HHCE; IFHX HCBEIM@GJ@K;MNKHI>I LTLLK@?H@M@GJ@K;MNKHI>I MTL))
EIHMNKI= JKC JKC=@?@HCC LCLM@GV = <@BIJ;LHI@ LILMIZHC@ JI NLFI=CZG
M@JFI=I>I K@ACG; – WARN JK@?NJK@A?@HC@
(EMER/5A-ALL/FIN)
KljZgbpZ 1 ba 1
1.
2.
IJBF?Q:GB?
H`b^Zlv ihy\e_gby ke_^mxsbo ij_^mij_^bl_evguo khh[s_gbc \ wlh \j_fy
gbdZdbo ^_ckl\bc ij_^ijbgbfZlv g_ lj_[m_lky
‘Thermal Safing IATCS Reconfig Action Inhibited’ J_dhgnb]mjZpby ijb
ijb\_^_gbb \ [_ahiZkgh_ khklhygb_ ih mkeh\byf l_ieh\h]h j_`bfZ
\gmlj_gg_c Zdlb\ghc kbkl_fu l_jfhj_]mebjh\Zgby IATCS)
aZ[ehdbjh\ZgZ
‘Thermal Safing LTL, MTL Partial Load Shed Timer Started’ <dexq_g
lZcf_j ^ey qZklbqgh]h k[jhkZ gZ]jmadb ijb ijb\_^_gbb dhglmjZ LTL, MTL
\ [_ahiZkgh_ khklhygb_ ih mkeh\byf l_ieh\h]h j_`bfZ
H`b^Zlv ihy\e_gby ke_^mxsbo \hafh`guo khh[s_gbc mjh\gy Caution
Hih\_s_gb_, \ wlh \j_fy gbdZdbo ^_ckl\bc ij_^ijbgbfZlv g_ lj_[m_lky:
‘Thermal Safing LTL, MTL Partial Load Shed Started’ GZqZlh qZklbqgh_
hldexq_gb_ gZ]jmadb ijb ijb\_^_gbb \ [_ahiZkgh_ khklhygb_ dhglmjh\
LTL, MTL ih mkeh\byf l_ieh\h]h j_`bfZ
1. IH>L<?J@>?GB? ML?QDB :FFB:QGH=H L?IEHGHKBL?EY NH B G?H;OH>BFU?
>?CKL<BY
PCS
LAB: TCS
IATCS Overview
‘PPA’
?keb LTL(MTL) Pmp In Press >Z\e_gb_ \ LTL(MTL gZ \oh^_ \ gZkhk ! dIZ nmgld\
^xcf Z[k beb bf__lky aZiZo ZffbZdZ NH \ dZ[bg_
Bf__lky ml_qdZ NH \ bgl_jn_ckghf l_iehh[f_ggbd_ IFHX)
=HCG;HC@!
1.
Lhdkbqguc ZffbZd NH \_jhylgh ijhgbdg_l \ dZ[bgm q_j_a
]Zahmeh\bl_ev gZkhkgh]h Z]j_]ZlZ dhglmjh\ LTL(MTL).
2.
WdbiZ`m gZ [hjlm G?EVAY hldju\Zlv klhcdb /$3 beb /$6 \h
ba[_`Zgb_ \hafh`gh]h dhglZdlZ k ZffbZdhf 1+
<uihegblv ijhp_^mjm {1.701 TOXIC RELEASE RESPONSE - EMER}, ^ey mjh\gy 4 (SODF:
EMER: EMERGENCY PROCEDURES: TOXIC ATMOSPHERE), aZl_f:
IJBF?Q:GB?
?keb mklZgh\e_gZ k\yav QNJ-P kh klZgpb_c QNJ-P ijh^he`bl jZ[hlm ih
^Zgghc ijhp_^mjhc ihdZ wdbiZ` \uoh^bl b \uihegy_l ijhp_^mjm ³TOXIC
RELEASE RESPONSE”.
PCS
LAB: TCS: Software
Software Commands
‘IATCS’
cmd Fail Rcvy Inhibit – $UP Ih^]hlh\blv [ehdbjh\dm \hkklZgh\e_gby ijb hldZa_
√Fail Rcvy Inhibit Arm – X (√Ih^]hlh\dZ [ehdbjh\db \hkklZgh\e_gby ijb hldZa_ – O
cmd Fail Rcvy Inhibit – Inh ;ehdbjh\Zlv \hklZgh\e_gb_ ijb hldZa_
√Fail Rcvy – Inh (√<hkklZgh\e_gb_ ijb hldZa_ – AZ[ehdbjh\Zgh
06 BXE 00
R 143
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2.808 THERMAL SAFING LTL(MTL) IFHX NH3 LEAK DETECTED - WARN
(EMER/5A - ALL/FIN)
PCS
Page 2 of 3 pages
LAB: TCS
IATCS Overview
‘Status’
If IATCS Mode – Single LT(MT)
NOTE
1. Both loops are contaminated with ammonium hydroxide.
The LAB must now be configured to allow isolation of the
affected IFHX and provide cooling to critical avionics. The
NH3 loop associated with the non-leaking IFHX will continue
to provide cooling for the Station. LAB reconfiguration may
be necessary after identifying which NH3 loop is affected by
the leaking IFHX. The leaking IFHX will always be placed in
the Bypass configuration.
2. If the leak is isolated to the MTL IFHX, critical avionics
cooling takes precedence over NH3 contamination on both
loops; therefore, the ITCS will remain in Single mode with the
non-leaking HX providing cooling.
sel LTL, MTL IFHX: IFHX Safing
IFHX Safing
cmd LTL,MTL IFHX Leak Resp Inhibit – Arm
√LTL,MTL IFHX Leak Resp Inhibit Arm – X
cmd LTL,MTL IFHX Leak Resp Inhibit – Inh
√LTL,MTL IFHX Leak Resp - Inh
Crew is safe, the ITCS is in a semi-stable configuration, and
MCC-H will continue to work this procedure.
Go to {3.226 THERMAL SAFING LTL(MTL) IFHX NH3 LEAK
DETECTED}, block 1 (SODF: TCS: MALFUNCTION: IATCS) >>
If IATCS Mode is not Single LT(MT)
Crew is safe, the ITCS is in a semi-stable configuration, and
MCC-H will continue to work this procedure.
Go to {3.226 THERMAL SAFING LTL(MTL) IFHX NH3 LEAK
DETECTED}, block 20 (SODF: TCS: MALFUNCTION: IATCS)
>>
20 JUL 00
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I<H;KNA@H; NM@RE; ;GGC;RHI>I M@JFIHILCM@FZ NH CHM@KO@DLHI>I
M@JFII<G@HHCE; IFHX HCBEIM@GJ@K;MNKHI>I LTLLK@?H@M@GJ@K;MNKHI>I MTL))
EIHMNKI= JKC JKC=@?@HCC LCLM@GV = <@BIJ;LHI@ LILMIZHC@ JI NLFI=CZG
M@JFI=I>I K@ACG; – WARN JK@?NJK@A?@HC@
(EMER/5A-ALL/FIN)
KljZgbpZ 2 ba 2
PCS
LAB: TCS
IATCS Overview
‘Status’
?keb IATCS Mode – Single LT(MT J_`bf \gmlj_gg_c Zdlb\ghc kbkl_fu
l_jfhj_]mebjh\Zgby – H^ghdhglmjguc gbadhl_fi_jZlmjguc kj_^g_l_fi_jZlmjguc
1.
2.
IJBF?Q:GB?
H[Z dhglmjZ aZ]jyag_gu ]b^jhdkb^hf Zffhgby L_i_jv fh^mev LAB ^he`_g [ulv
kdhgnb]mjbjh\Zg lZdbf h[jZahf dhlhjuc iha\hebl bahebjh\Zlv g_bkijZ\guc
bgl_jn_ckguc l_iehh[f_ggbd b h[_ki_qblv hoeZ`^_gb_ djblbq_kdb \Z`ghc
ZiiZjZlmju Dhglmj ZffbZqgh]h l_iehghkbl_ey NH3 k\yaZgguc k bkijZ\guf
bgl_jn_ckguf l_iehh[f_ggbdhf IFHX ijh^he`bl h[_ki_q_gb_ hoeZ`^_gby
h[hjm^h\Zgby klZgpbb Ihke_ hij_^_e_gby dhglmjZ NH ih\j_`^_ggh]h \
j_amevlZl_ ml_qdb \ bgl_jn_ckghf l_iehh[f_ggbd_ fh`_l ihlj_[h\Zlvky
j_dhgnb]mjZpby fh^mey LAB. G_bkijZ\guc bgl_jn_ckguc l_iehh[f_ggbd \k_]^Z
i_j_\h^blky \ h[\h^gmx dhgnb]mjZpbx
?keb ml_qdZ ehdZebah\ZgZ gZ mjh\g_ bgl_jn_ckgh]h l_iehh[f_ggbdZ IFHX)
kj_^g_l_fi_jZlmjgh]h dhglmjZ MTL lh ijbhjbl_lghc aZ^Zq_c y\ey_lky
hoeZ`^_gb_ [hjlh\hc ZiiZjZlmju \ kjZ\g_gbb k aZ]jyag_gb_f NH h[hbo
dhglmjh\ lZdbf h[jZahf \gmlj_gyy kbkl_fZ l_jfhj_]mebjh\Zgby ITCS)
hklZg_lky \ j_`bf_ h^gh]h dhglmjZ k h[ki_qb\Zxsbf hoeZ`^_gb_ bkijZ\guf
bgl_jn_ckguf l_iehh[f_ggbdhf
\u[jZlv LTL,MTL IFHX: IFHX Safing
IFHX Safing
cmd LTL,MTL IFHX Leak Resp Inhibit – Arm (Ih^]hlh\blv [ehdbjh\dm iZjbjh\Zgby
ml_qdb ba bgl_jn_ckgh]h l_iehh[f_ggbdZ dhglmjh\ LTL, MTL)
√LTL,MTL IFHX Leak Resp Inhibit Arm – X (√Ih^]hlh\dZ [ehdbjh\db iZjbjh\Zgby
ml_qdb ba bgl_jn_ckgh]h l_iehh[f_ggbdZ dhglmjh\ LTL, MTL – X)
cmd LTL,MTL IFHX Leak Resp Inhibit – Inh (;ehdbjh\Zlv iZjbjh\Zgb_ ml_qdb ba
bgl_jn_ckgh]h l_iehh[f_ggbdZ dhglmjh\ LTL, MTL)
√LTL,MTL IFHX Leak Resp – Inh (√IZjbjh\Zgb_ ml_qdb ba bgl_jn_ckgh]h
l_iehh[f_ggbdZ dhglmjh\ LTL,MTL - AZ[ehdbjh\Zgh
WdbiZ` \ [_ahiZkghklb QNJ-P ijh^he`bl jZ[hlm ih ijhp_^mj_
I_j_clb d ijhp_^mj_ {3.226 THERMAL SAFING LTL(MTL) IFHX NH3 LEAK
DETECTED} [ehd SODF: TCS: MALFUNCTION: IATCS) >>
?keb IATCS mode J_`bf kbkl_fu ,$7&6 - g_ Single /707 h^ghdhglmjguc
gbadhl_fi_jZlmjguc kj_^g_l_fi_jZlmjguc
WdbiZ` \ [_ahiZkghklb QNJ-P ijh^he`bl jZ[hlm ih ^Zgghc ijhp_^mj_.
I_j_clb d ijhp_^mj_ {3.226 THERMAL SAFING LTL(MTL) IFHX NH3 LEAK
DETECTED}, [ehd SODF: TCS: MALFUNCTION: IATCS) >>
06 BXE 00
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2.808 THERMAL SAFING LTL(MTL) IFHX NH3 LEAK DETECTED - WARN
(EMER/5A - ALL/FIN)
Page 3 of 3 pages
2. RECONFIGURING SYSTEM TO AN OPERATING CONDITION
The Warning ‘Thermal Safing LTL(MTL) IFHX Leak Detected’ message
was not triggered by an IFHX leaking into the IATCS loops.
The following steps will determine cause for alarm and reconfigure the
system back to an operating condition.
‘Status’
If IATCS Mode - Dual
Go to {3.226 THERMAL SAFING LTL(MTL) IFHX NH3 LEAK
DETECTED}, block 30 (SODF: TCS: MALFUNCTION: IATCS) >>
If IATCS Mode is not Dual
Go to {3.226 THERMAL SAFING LTL(MTL) IFHX NH3 LEAK
DETECTED}, block 25 (SODF: TCS: MALFUNCTION: IATCS) >>
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3851.doc
I<H;KNA@H; NM@RE; ;GGC;RHI>I M@JFIHILCM@FZ NH CHM@KO@DLHI>I
M@JFII<G@HHCE; IFHX HCBEIM@GJ@K;MNKHI>I LTLLK@?H@M@GJ@K;MNKHI>I MTL))
EIHMNKI= JKC JKC=@?@HCC LCLM@GV = <@BIJ;LHI@ LILMIZHC@ JI NLFI=CZG
M@JFI=I>I K@ACG; – WARN JK@?NJK@A?@HC@
(EMER/5A-ALL/FIN)
KljZgbpZ 3 ba 3
2. J?DHGNB=MJ:PBY KBKL?FU < J:;HQ?? KHKLHYGB?
Ij_^mij_^bl_evgh_ khh[s_gb_ ‘Thermal Safing LTL(MTL) IFHX Leak Detected’
H[gZjm`_gZ ml_qdZ \ bgl_jn_ckghf l_iehh[f_ggbd_ dhglmjh\ LTL(MTL ijb ijb\_^_gbb
kbkl_fu \ [_ahiZkgh_ khklhygb_ ih l_ieh\hfm j_`bfm g_ ihy\behkv \ j_amevlZl_ ml_qdb
ba bgl_jn_ckgh]h l_iehh[f_ggbdZ \ dhglmj \gmlj_gg_c Zdlb\ghc kbkl_fu
l_jfhj_]mebjh\Zgby IATCS).
Ke_^mxsb_ rZ]b hij_^_eyl ijbqbgm kb]gZeZ lj_\h]b b j_dhgnb]mjbjmxl kbkl_fm h[jZlgh \
jZ[hq__ khklhygb_
‘Status’
?keb IATCS Mode – Dual (J_`bf kbkl_fu IATCS – >\modhglmjguc )
I_j_clb d ijhp_^mj_ {3.226 THERMAL SAFING LTL(MTL) IFHX NH3 LEAK
DETECTED}, [ehd 30 (SODF: TCS: MALFUNCTION: IATCS) >>
?keb IATCS Mode is Not Dual (J_`bf kbkl_fu IATCS – G_ ^\modhglmjguc)
I_j_clb d ijhp_^mj_ {3.226 THERMAL SAFING LTL(MTL) IFHX NH3 LEAK
DETECTED}, [ehd SODF: TCS: MALFUNCTION: IATCS) >>
06 BXE 00
R 147
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