TM 1-1510-218-10
(8)
IAS
Indicator
. Illuminates when airspeed
hold mode is selected.
(9)
AP DISC
Indicator.
Illuminates when
autopilot is disengaged.
(10)
BACK LOC
Indicator
. Illuminates when
back-course mode is selected.
(11)
GS
CAP
Indicator
. Illuminates when
glideslope is captured.
(12)
NAV CAP
Indicator
. VOR-I or VOR-2
selected illuminates when selected radial is captured.
VLF selected illuminates when VLF is coupled to the
flight director.
h. Autopilot Modes of Operation.
(1) Attitude Mode.
The autopilot is in the
attitude mode when the
ENG / DIS
switch, autopilot
mode selector panel, is in the
ENG
position and no
mode selector switches (
HDG
,
NAV
, etc.), have been
selected. Refer to Figure 3A-19. The autopilot will fly
the aircraft and accept pitch and roll rate commands
from the autopilot pitch-turn panel, Figure 3A-20.
(2) Guidance Mode.
When the autopilot is in
the attitude mode and a mode selector switch,
HDG
,
NAV
, etc., is pressed, the autopilot is coupled to the
flight director and accepts steering commands from
the computer. Depending on which mode selector
switch on the autopilot mode selector control panel is
pressed, autopilot operation can be described by the
following sub-guidance modes.
(a) Heading Mode.
When the HDG
mode is selected on the autopilot mode selector panel
with the autopilot engaged, the autopilot will fly the
aircraft to the heading, and then maintain the heading
under the heading marker on the pilot's horizontal
situation indicator.
(b) Navigation Mode.
When the NAV
mode is selected on the autopilot mode selector panel,
the system initially switches to the NAV ARM heading-
hold submode, as shown by illumination of the
NAV
ARM
and
HDG
indicators on the autopilot/ flight
director annunciator panel. The autopilot will then
command the aircraft to follow the heading under the
heading marker on the pilot's horizontal situation
indicator, with the heading marker set to produce the
desired VOR or localizer intercept angle. The flight
computer will compute a capture point based on
deviation from desired radio beam, the rate at which
the aircraft is approaching this beam, and the course
intercept angle. When beam capture occurs, the
HDG
and
NAV ARM
indicator lamps on the autopilot/flight
director annunciator panel will extinguish and the
NAV
CAP
lamp will illuminate. The autopilot will then track
the selected radio course with automatic crosswind
correction.
(c)
Navigation Mode (With Linear
Deviation).
The system features linearized VOR
deviation when a VORTAC is being used. A
LIN DEV
light on the autopilot annunciator will illuminate to
indicate operation. The lateral deviation bar indicates
the distance in nautical miles from the selected radial
regardless of how close the aircraft is to the ground
station. Linear deviation measures the aircraft's
displacement in nautical miles from the selected
course rather than degrees of displacement
associated with normal VOR navigation. Linear
deviation permits flying parallel to any selected course
by maintaining the appropriate needle deflection on
the horizontal situation indicator. When the
LIN DEV
light is on, the flight director system is obtaining
distance data from the DME and bearing from the
VOR-1 receiver. Linear deviation operates only when
DME is on NAV 1 receiver and is displayed on pilot's
indicator only. For en route operation in the NAV
mode, full-scale deflection of the lateral deviation bar
equals 10 miles from the selected radial. For VOR
approach operation, the APPR mode should be
selected. This provides linear deviation with the
sensitivity limits of the computer increased so that full-
scale deflection of the lateral deviation bar equals
1 mile from the selected radial. APPR mode should be
selected when within 10 miles of the final approach fix.
Capture is the same as in the NAV mode.
NOTE
Failure to select APPR for VORTAC or
VOR/DME instrument approaches when
using linear deviation may result in not
meeting obstruction clearance criteria.
(d) Backcourse Mode.
When BACK
LOC mode is selected on the autopilot mode selector
panel, localizer capture is the same as in a front-
course approach in NAV or APPR mode. Glideslope
is inhibited during a backcourse approach. The HSI
must be set to the front-course heading so that lateral
deviation will be directional.
(e) Approach Mode.
When APPR mode
is selected on the autopilot mode selector panel,
localizer capture is the same as in the NAV mode but
glideslope arm and capture functions are also
provided. When the APPR mode is selected, the
NAV
ARM
annunciator lamp will illuminate, indicating that
the system is armed for localizer capture. As the
aircraft approaches the localizer beam, the
NAV CAP
annunciator lamp will illuminate. Once the localizer is
being tracked, the
GS ARM
annunciator lamp will
3A-34
Содержание C-12C
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Страница 21: ...TM 1 1510 218 10 Figure 2 2 Typical General Interior Arrangement 2 5 ...
Страница 22: ...TM 1 1510 218 10 Figure 2 3 Principal Dimensions C Sheet 1 of 2 2 6 ...
Страница 23: ...TM 1 1510 218 10 2 7 Figure 2 3 Principal Dimensions D T Sheet 2 of 2 ...
Страница 37: ...TM 1 1510 218 10 2 21 Figure 2 9 Control Pedestal D2 Sheet 1 of 3 ...
Страница 38: ...TM 1 1510 218 10 Figure 2 9 Control Pedestal T1 Sheet 2 of 3 2 22 ...
Страница 39: ...TM 1 1510 218 10 2 23 Figure 2 9 Control Pedestal T2 Sheet 3 of 3 ...
Страница 43: ...TM 1 1510 218 10 Figure 2 12 Cabin Door and Cabin Emergency Hatch D T 2 27 ...
Страница 51: ...TM 1 1510 218 10 Figure 2 15 Overhead Control Panel C D T1 Sheet 1 of 2 2 35 ...
Страница 52: ...TM 1 1510 218 10 Figure 2 15 Overhead Control Panel T2 Sheet 2 of 2 2 36 ...
Страница 54: ...TM 1 1510 218 10 Figure 2 16 Overhead Circuit Breaker Panel C Sheet 1 of 4 2 38 ...
Страница 55: ...TM 1 1510 218 10 Figure 2 16 Overhead Circuit Breaker Panel D1 Sheet 2 of 4 2 39 ...
Страница 56: ...TM 1 1510 218 10 2 40 Figure 2 16 Overhead Circuit Breaker Panel D2 Sheet 3 of 4 ...
Страница 57: ...TM 1 1510 218 10 Figure 2 16 Overhead Circuit Breaker Panel T1 Sheet 4 of 4 2 41 ...
Страница 59: ...TM 1 1510 218 10 2 43 Figure 2 17 Instrument Panel C D1 Sheet 1 of 4 ...
Страница 60: ...TM 1 1510 218 10 2 44 Figure 2 17 Instrument Panel D2 Sheet 2 of 4 ...
Страница 61: ...TM 1 1510 218 10 2 45 Figure 2 17 Instrument Panel T1 Sheet 3 of 4 ...
Страница 62: ...TM 1 1510 218 10 Figure 2 17 Instrument Panel T2 Sheet 4 of 4 2 46 ...
Страница 69: ...TM 1 1510 218 10 2 53 Figure 2 18 Fuel System ...
Страница 75: ...TM 1 1510 218 10 2 59 Figure 2 20 Gravity Feed Fuel Flow ...
Страница 76: ...TM 1 1510 218 10 2 60 Figure 2 21 Crossfeed Fuel Flow ...
Страница 97: ...TM 1 1510 218 10 Figure 2 24 Oxygen System Servicing Pressure Chart 2 81 ...
Страница 102: ...TM 1 1510 218 10 Figure 2 25 Oxygen System C Sheet 1 of 2 2 86 ...
Страница 103: ...TM 1 1510 218 10 Figure 2 25 Oxygen System D T Sheet 2 of 2 2 87 ...
Страница 106: ...TM 1 1510 218 10 2 90 Figure 2 26 Environmental System ...
Страница 110: ...TM 1 1510 218 10 Figure 2 27 DC Electrical System Schematic C D1 2 94 ...
Страница 114: ...TM 1 1510 218 10 Figure 2 28 DC Electrical System Schematic D2 T1 Sheet 1 of 2 2 98 ...
Страница 115: ...TM 1 1510 218 10 Figure 2 28 DC Electrical System Schematic T2 Sheet 2 of 2 2 99 ...
Страница 126: ...TM 1 1510 218 10 Figure 2 29 AC Electrical System Schematic Diagram D2 Sheet 2 of 3 2 110 ...
Страница 127: ...TM 1 1510 218 10 Figure 2 29 AC Electrical System Schematic Diagram T Sheet 3 of 3 2 111 ...
Страница 133: ...TM 1 1510 218 10 Figure 2 31 Pitot and Static System 2 117 ...
Страница 153: ...TM 1 1510 218 10 Figure 2 34 Mooring 2 137 2 138 blank ...
Страница 154: ... ...
Страница 290: ......
Страница 376: ...TM 1 1510 218 10 Figure 3C 7 ADI Pitch Scale 3C 22 ...
Страница 387: ...TM 1 1510 218 10 Figure 3C 12 Map ARC Format Figure 3C 13 Map Symbols 3C 33 ...
Страница 448: ...TM 1 1510 218 10 Figure 3C 38 Lateral To To Course Transitions with Automatic Sequencing 3C 94 ...
Страница 449: ...TM 1 1510 218 10 3C 95 Figure 3C 39 Lateral Course Edit ...
Страница 465: ...TM 1 1510 218 10 Figure 3C 56 Entry and Display of VNAV Parameters 3C 111 ...
Страница 473: ...TM 1 1510 218 10 Figure 3C 64 Alternate Flight Plan Schedule 3C 119 ...
Страница 484: ...TM 1 1510 218 10 Figure 3C 75 Parallel Entry Into a Holding Pattern 3C 130 ...
Страница 506: ...TM 1 1510 218 10 Figure 3C 99 MFP Geometry Definitions 3C 152 ...
Страница 515: ...TM 1 1520 218 10 10 Figure 3C 108 FROM TO Options for the Data Page Examples Only 3C 161 ...
Страница 517: ...TM 1 1520 218 10 3C 163 Figure 3C 110 Data For Option 1 Figure 3C 111 Data For Option 2 ...
Страница 518: ...TM 1 1520 218 10 3C 164 Figure 3C 112 Data For Option 3 Figure 3C 113 Data For Option 4 ...
Страница 519: ...TM 1 1520 218 10 3C 165 Figure 3C 114 Data For Option 4 Via Flight Plan Figure 3C 115 Data For Option 5 ...
Страница 574: ... ...
Страница 576: ... ...
Страница 578: ...TM 1 1510 218 10 Figure 5 1 Instrument Markings and Operating Limits C D Sheet 1 of 7 5 2 ...
Страница 579: ...TM 1 1510 218 10 5 3 Figure 5 1 Instrument Markings and Operating Limits C D Sheet 2 of 7 ...
Страница 580: ...TM 1 1510 218 10 R G R R R R G q q q q Figure 5 1 Instrument Markings and Operating Limits T1 T2 Sheet 3 of 7 5 4 ...
Страница 581: ...TM 1 1510 218 10 G R R R R G G Y G R 49 Figure 5 1 Instrument Markings and Operating Limits T1 T2 Sheet 4 of 7 5 5 ...
Страница 582: ...TM 1 1510 218 10 Figure 5 1 Instrument Markings and Operating Limits Sheet 5 of 7 5 6 ...
Страница 583: ...TM 1 1510 218 10 Figure 5 1 Instrument Markings and Operating Limits Sheet 6 of 7 5 7 ...
Страница 599: ...TM 1 1520 218 10 Figure 6 2 Fuel Moment Chart 6 5 ...
Страница 601: ...TM 1 1520 218 10 Figure 6 3 Baggage Moment 6 7 ...
Страница 602: ...TM 1 1520 218 10 Figure 6 4 Personnel Moments 6 8 ...
Страница 603: ...TM 1 1520 218 10 Figure 6 5 Cargo Moment C D1 T1 1 of 2 6 9 ...
Страница 604: ...TM 1 1520 218 10 Figure 6 5 Cargo Moment T2 2 of 2 6 10 ...
Страница 606: ...TM 1 1520 218 10 Figure 6 6 Cargo Loading C D T1 1 of 2 6 12 ...
Страница 607: ...TM 1 1520 218 10 6 13 Figure 6 6 Cargo Loading T2 2 of 2 ...
Страница 608: ...TM 1 1520 218 10 6 14 Figure 6 7 Center of Gravity Limitations ...
Страница 609: ...TM 1 1520 218 10 6 15 Figure 6 8 Center of Gravity Limitations Above 12 500 ...
Страница 610: ...TM 1 1520 218 10 6 16 Figure 6 9 Cargo Restraint and Tiedown Method ...
Страница 612: ... ...
Страница 621: ...TM 1 1510 218 10 Figure 7 5 Takeoff Performance Planning Tabulations Flaps 0 7 9 ...
Страница 622: ...TM 1 1510 218 10 Figure 7 6 Takeoff Performance Planning Tabulations Flaps 0 7 10 ...
Страница 623: ...TM 1 1510 218 10 Figure 7 7 Takeoff Performance Planning Tabulations Flaps 40 7 11 ...
Страница 624: ...TM 1 1510 218 10 Figure 7 8 Takeoff Performance Planning Tabulations Flaps 40 7 12 ...
Страница 625: ...TM 1 1510 218 10 Figure 7 9 Stall Speeds Power Idle 7 13 ...
Страница 626: ...TM 1 1510 218 10 Figure 7 10 Temperature Conversion Correction for Compressibility 7 14 ...
Страница 627: ...TM 1 1510 218 10 Figure 7 11 ISA Conversion 7 15 ...
Страница 628: ...TM 1 1510 218 10 Figure 7 12 Altimeter Position Error Correction Normal System 7 16 ...
Страница 629: ...TM 1 1510 218 10 Figure 7 13 Airspeed Calibration Normal System Ground Roll 7 17 ...
Страница 632: ...TM 1 1510 218 10 Figure 7 16 Minimum Take Off Power at 2000 RPM Ice Vanes Retracted 65 Knots 7 20 ...
Страница 633: ...TM 1 1510 218 10 Figure 7 17 Minimum Take Off Power at 2000 RPM Ice Vanes Extended 65 Knots 7 21 ...
Страница 634: ...TM 1 1510 218 10 Figure 7 18 Takeoff Distance Flaps 0 7 22 ...
Страница 635: ...TM 1 1510 218 10 Figure 7 19 Accelerate Stop Distance Flaps 0 7 23 ...
Страница 636: ...TM 1 1510 218 10 Figure 7 20 Accelerate Go Distance Flaps 0 7 24 ...
Страница 637: ...TM 1 1510 218 10 Figure 7 21 Takeoff Distance Flaps 40 7 25 ...
Страница 638: ...TM 1 1510 218 10 Figure 7 22 Accelerate Stop Distance Flaps 40 7 26 ...
Страница 639: ...TM 1 1510 218 10 Figure 7 23 Accelerate Go Distance Flaps 40 7 27 ...
Страница 640: ...TM 1 1510 218 10 Figure 7 24 Line Speed Check During Takeoff Ground Run 7 28 ...
Страница 641: ...TM 1 1510 218 10 Figure 7 25 Climb Two Engines Flaps 0 7 29 ...
Страница 642: ...TM 1 1510 218 10 Figure 7 26 Climb Two Engines Flaps 40 7 30 ...
Страница 643: ...TM 1 1510 218 10 Figure 7 27 Climb One Engine Inoperative 7 31 ...
Страница 644: ...TM 1 1510 218 10 Figure 7 28 Time Fuel Distance to Cruise Climb 7 32 ...
Страница 645: ...TM 1 1510 218 10 Figure 7 29 Service Ceiling One Engine Inoperative 7 33 ...
Страница 646: ...TM 1 1510 218 10 Figure 7 30 Landing Distance Without Propeller Reversing Flaps 100 7 34 ...
Страница 647: ...TM 1 1510 218 10 Figure 7 31 Landing Distance Without Propeller Reversing Flaps 40 7 35 ...
Страница 648: ...TM 1 1510 218 10 Figure 7 32 Landing Distance Without Propeller Reversing Flaps 0 7 36 ...
Страница 649: ...TM 1 1510 218 10 Figure 7 33 Landing Distance With Propeller Reversing Flaps 100 7 37 ...
Страница 650: ...TM 1 1510 218 10 Figure 7 34 Landing Distance With Propeller Reversing Flaps 40 7 38 ...
Страница 651: ...TM 1 1510 218 10 Figure 7 35 Landing Distance With Propeller Reversing Flaps 0 7 39 ...
Страница 652: ...TM 1 1510 218 10 Figure 7 36 Stopping Distance Factors 7 40 ...
Страница 653: ...TM 1 1510 218 10 Figure 7 37 Cabin Altitude for Various Airplane Altitudes 7 41 ...
Страница 662: ...TM 1 1510 218 10 Figure 7 46 Recommended Cruise Speeds 1700 RPM 7 50 ...
Страница 663: ...TM 1 1510 218 10 Figure 7 47 Recommended Cruise Power 1700 RPM 7 51 ...
Страница 664: ...TM 1 1510 218 10 Figure 7 48 Fuel Flow at Recommended Cruise Power 1700 RPM 7 52 ...
Страница 673: ...TM 1 1510 218 10 Figure 7 57 Recommended Cruise Speeds 1800 RPM 7 61 ...
Страница 674: ...TM 1 1510 218 10 Figure 7 58 Recommended Cruise Power 1800 RPM 7 62 ...
Страница 675: ...TM 1 1510 218 10 Figure 7 59 Fuel Flow at Recommended Cruise Power 1800 RPM 7 63 ...
Страница 684: ...TM 1 1510 218 10 Figure 7 68 Maximum Cruise Speeds 1900 RPM 7 72 ...
Страница 685: ...TM 1 1510 218 10 Figure 7 69 Maximum Cruise Power 1900 PRM 7 73 ...
Страница 686: ...TM 1 1510 218 10 Figure 7 70 Fuel Flow at Maximum Cruise Power 1900 RPM 7 74 ...
Страница 687: ...TM 1 1510 218 10 Figure 7 71 Maximum Range Power 1700 RPM ISA 30 C 7 75 ...
Страница 688: ...TM 1 1510 218 10 Figure 7 72 Maximum Range Power 1700 RPM ISA 20 C 7 76 ...
Страница 689: ...TM 1 1510 218 10 Figure 7 73 Maximum Range Power 1700 RPM ISA 10 C 7 77 ...
Страница 690: ...TM 1 1510 218 10 Figure 7 74 Maximum Range Power 1700 RPM ISA 7 78 ...
Страница 691: ...TM 1 1510 218 10 Figure 7 75 Maximum Range Power 1700 RPM ISA 10 C 7 79 ...
Страница 692: ...TM 1 1510 218 10 Figure 7 76 Maximum Range Power 1700 RPM ISA 20 C 7 80 ...
Страница 693: ...TM 1 1510 218 10 Figure 7 77 Maximum Range Power 1700 RPM ISA 30 C 7 81 ...
Страница 694: ...TM 1 1510 218 10 Figure 7 78 Maximum Range Power 1700 RPM ISA 37 C 7 82 ...
Страница 711: ...TM 1 1510 218 10 7A 9 Figure 7A 5 Airspeed Calibration Normal System Takeoff Ground Roll ...
Страница 712: ...TM 1 1510 218 10 7A 10 Figure 7A 6 Airspeed Calibration Normal System ...
Страница 713: ...TM 1 1510 218 10 7A 11 Figure 7A 7 Altimeter Correction Normal System ...
Страница 714: ...TM 1 1510 218 10 7A 12 Figure 7A 8 Airspeed Calibration Alternate System ...
Страница 715: ...TM 1 1510 218 10 7A 13 Figure 7A 9 Altimeter Correction Alternate System ...
Страница 716: ...TM 1 1510 218 10 7A 14 Figure 7A 10 Indicated Outside Air Temperature Correction ISA ...
Страница 717: ...TM 1 1510 218 10 7A 15 Figure 7A 11 ISA Conversion ...
Страница 718: ...TM 1 1510 218 10 7A 16 Figure 7A 12 Fahrenheit to Celsius Temperature Conversion ...
Страница 719: ...TM 1 1510 218 10 7A 17 Figure 7A 13 Stall Speeds Power Idle ...
Страница 720: ...TM 1 1510 218 10 7A 18 Figure 7A 14 Cabin Altitude for Various Airplane Altitudes ...
Страница 723: ...TM 1 1510 218 10 7A 21 Figure 7A 17 Minimum Takeoff Power at 2000 RPM With Ice Vanes Retracted 65 Knots ...
Страница 724: ...TM 1 1510 218 10 7A 22 Figure 7A 18 Minimum Takeoff Power With Ice Vanes Extended 65 Knots ...
Страница 725: ...TM 1 1510 218 10 7A 23 Figure 7A 19 Takeoff Flight Path ...
Страница 726: ...TM 1 1510 218 10 7A 24 Figure 7A 20 Wind Component ...
Страница 727: ...TM 1 1510 218 10 7A 25 Figure 7A 21 Take Off Distance Flaps UP ...
Страница 728: ...TM 1 1510 218 10 7A 26 Figure 7A 22 Accelerate Stop Flaps UP ...
Страница 729: ...TM 1 1510 218 10 7A 27 Figure 7A 23 Accelerate Go Flaps UP ...
Страница 730: ...TM 1 1510 218 10 7A 28 Figure 7A 24 Net Gradient of Climb Flaps UP ...
Страница 731: ...TM 1 1510 218 10 7A 29 Figure 7A 25 Take off Distance Flaps APPROACH ...
Страница 732: ...TM 1 1510 218 10 7A 30 Figure 7A 26 Accelerate Stop Flaps APPROACH ...
Страница 733: ...TM 1 1510 218 10 7A 31 Figure 7A 27 Accelerate Go Flaps APPROACH ...
Страница 734: ...TM 1 1510 218 10 7A 32 Figure 7A 28 Net Gradient of Climb Flaps APPROACH ...
Страница 735: ...TM 1 1510 218 10 7A 33 Figure 7A 29 Climb Two Engines Flaps UP ...
Страница 736: ...TM 1 1510 218 10 7A 34 Figure 7A 30 Climb Two Engines Flaps APPROACH ...
Страница 737: ...TM 1 1510 218 10 7A 35 Figure 7A 31 Climb One Engine Inoperative ...
Страница 738: ...TM 1 1510 218 10 7A 36 Figure 7A 32 Service Ceiling One Engine Inoperative ...
Страница 739: ...TM 1 1510 218 10 7A 37 Figure 7A 33 Time Fuel and Distance to Climb ...
Страница 748: ...TM 1 1510 218 10 7A 46 Figure 7A 42 Normal Cruise Speeds 1700 RPM ...
Страница 749: ...TM 1 1510 218 10 7A 47 Figure 7A 43 Normal Cruise Power 1700 RPM ...
Страница 750: ...TM 1 1510 218 10 7A 48 Figure 7A 44 Fuel Flow At Normal Cruise Power 1700 RPM ...
Страница 751: ...TM 1 1510 218 10 7A 49 Figure 7A 45 Range Profile Normal Cruise Power 1700 RPM ...
Страница 760: ...TM 1 1510 218 10 Figure 7A 54 Maximum Cruise Speeds 1700 RPM 7A 58 ...
Страница 761: ...TM 1 1510 218 10 Figure 7A 55 Maximum Cruise Power 1700 RPM 7A 59 ...
Страница 762: ...TM 1 1510 218 10 Figure 7A 56 Fuel Flow At Maximum Cruise Power 1700 RPM 7A 60 ...
Страница 763: ...TM 1 1510 218 10 Figure 7A 57 Range Profile Maximum Cruise Power 1700 RPM 7A 61 ...
Страница 772: ...TM 1 1510 218 10 Figure 7A 66 Normal Cruise Speeds 1800 RPM 7A 70 ...
Страница 773: ...TM 1 1510 218 10 Figure 7A 67 Normal Cruise Power 1800 RPM 7A 71 ...
Страница 774: ...TM 1 1510 218 10 Figure 7A 68 Fuel Flow at Normal Cruise Power 1800 RPM 7A 72 ...
Страница 775: ...TM 1 1510 218 10 Figure 7A 69 Range Profile Normal Cruise Power 1800 RPM 7A 73 ...
Страница 784: ...TM 1 1510 218 10 Figure 7A 78 Maximum Cruise Speeds 1800 RPM 7A 82 ...
Страница 785: ...TM 1 1510 218 10 Figure 7A 79 Maximum Cruise Power 1800 RPM 7A 83 ...
Страница 786: ...TM 1 1510 218 10 7A 84 Figure 7A 80 Fuel Flow At Maximum Cruise Power 1800 RPM ...
Страница 787: ...TM 1 1510 218 10 Figure 7A 81 Range Profile Maximum Cruise Power 1800 RPM 7A 85 ...
Страница 804: ...TM 1 1510 218 10 Figure 7A 90 Range Profile Maximum Range Power 1700 RPM 7A 102 ...
Страница 805: ...TM 1 1510 218 10 Figure 7A 91 Range Profile Full Main and Auxiliary Tanks 7A 103 ...
Страница 806: ...TM 1 1510 218 10 Figure 7A 92 Endurance Profile Full Main and Auxiliary Tanks 7A 104 ...
Страница 807: ...TM 1 1510 218 10 Figure 7A 93 Range Profile Full Main Tanks 7A 105 ...
Страница 808: ...TM 1 1510 218 10 Figure 7A 94 Endurance Profile Full Main Tanks 7A 106 ...
Страница 817: ...TM 1 1510 218 10 Figure 7A 103 Pressurization Controller Setting for Landing 7A 115 ...
Страница 818: ...TM 1 1510 218 10 Figure 7A 104 Holding Time 7A 116 ...
Страница 819: ...TM 1 1510 218 10 Figure 7A 105 Time Fuel and Distance to Descend 7A 117 ...
Страница 820: ...TM 1 1510 218 10 Figure 7A 106 Climb Balked Landing 7A 118 ...
Страница 821: ...TM 1 1510 218 10 Figure 7A 107 Normal Landing Distance Without Propeller Reversing Flaps DOWN 7A 119 ...
Страница 822: ...TM 1 1510 218 10 7A 120 Figure 7A 108 Landing Distance Without Propeller Reversing Flaps UP ...
Страница 823: ...TM 1 1510 218 10 7A 121 Figure 7A 109 Landing Distance With Propeller Reversing Flaps DOWN ...
Страница 824: ...TM 1 1510 218 10 7A 122 Figure 7A 110 Landing Distance With Propeller Reversing Flaps UP ...
Страница 825: ...TM 1 1510 218 10 7A 123 7A 124 blank Figure 7A 111 Stopping Distance Factors ...
Страница 826: ... ...
Страница 853: ...TM 1 1510 218 10 8 27 Figure 8 2 Stall Speed ...
Страница 883: ...TM 1 1510 218 10 8A 23 Figure 8A 3 Figure Stall Speeds Power Idle ...
Страница 892: ...TM 1 1510 218 10 9 2 Figure 9 1 Emergency Exits and Equipment ...
Страница 896: ...TM 1 1510 218 10 9 6 Figure 9 2 Maximum Glide Distance ...
Страница 907: ...TM 1 1510 218 10 9 17 Figure 9 3 Emergency Body Positions Figure 9 4 Wing Swell Ditch Heading Evaluation ...
Страница 910: ... ...
Страница 912: ... ...
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Страница 942: ......
Страница 948: ... PIN 0 000 ...