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时间:2011-03-20 12:17来源:蓝天飞行翻译 作者:admin
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PLUG PLUG
KINGS KA-59-29 KINGS KA-59-29

RG-141/U OR EQUIV (20 FEET)

TEST CABLE REQUIRED TO CHECK CAPTURE ANTENNA RF CABLE SEGMENT BETWEEN NOSE GEAR DOOR AND STATION 361 DISCONNECT
VOR/ILS Glide Slope Antenna System Test Cable
Figure 102


EFFECTIVITY ALL

799 Page 114
34-31-12

Sep 25/94
 E47778

 

 A.  Install nose gear door locks.
 WARNING:_______REFER TO 32-00-30 FOR LOCK INSTALLATION PROCEDURE. RAPID ACTION OF DOORS MAY INJURE PERSONNEL OR DAMAGE EQUIPMENT IF LOCKS ARE NOT PROPERLY INSTALLED.
 B.  Provide electrical power (Ref 24-22-00).
 C.  Verify that appropriate circuit breakers on panels P7, P12 and P126 are closed.
 D.  Set captain's and first officer's VHF NAV control panel frequency selectors to authorized localizer test frequency.
 E.  Set the RADIO/INS switch to RADIO and the VOR/ILS transfer switch to NORMAL position (captain on No. 1 and F/O on No. 2 system).
 F.  Install aluminum foil tape over the glide slope antennas which are not under test or disconnect the parallel rf runs not under test at the station 400 hybrid coupler(s).
 G.  Position signal generator on the ground approximately 75 feet from the airplane per Fig. 101.
 NOTE: When checking the capture antennas, be sure that the vertical
____ position of the signal generator is the same for testing both the left and right door antennas. For example, DO NOT set the generator on the ground for one side and in the back of a truck for the other.
 H.  Setup signal generator to transmit an on-course glide slope test signal with the correct polarization for the antenna being checked (Fig. 101). The track antenna requires a horizontally polarized test signal and the capture antenna requires a vertically polarized test signal. On airplanes with the glide slope capture antenna installed in the nose radome a horizontally polarized test signal is required.
 NOTE: The area within 100 feet of the signal generator must be free of
____ metallic objects such as aero stands, service carts, trucks, buildings or other obstructions. Otherwise, the compared test values will be out of tolerance as shown in Fig. 101 by the typical field strength variations to be expected when testing an antenna system with nearby obstructions.

 EFFECTIVITY

 
 ALL  03 Page 118  Sep 25/9434-31-12

DISCONNECT STATION 360  P W1229-RN4329  J  W1235-RN4329  DB405A  1  RN4007 W1313- B  RN4007 WO15-
IN  DB405B  J  P  A1 
B561  DB561  D3205  DB405C  2  D1039  DB62B  G/S ANT IN 
TRACK ANTENNA  A  DB405D  3  5  DB405D 
RIGHT AFT NOSE WHEEL WELL DOOR  DB405D  4 
3W1191-RN4007  C  RN4007 W1237- COXAIAL  1  DB405D  NO.2 GS  DM809  36  (E1-3) MN EQPT CTR B62 VOR/ILS RCVR NO.2 
P  J  RELAY  2  DB405D  28V DC 
D5586  3  S1182  GEAR UP 
GS 2 ANT  VOR/LOC TEST INHIBIT 
2 GND  B405 GS ANT SW  COAXIAL  M809 ALT LDG LOGIC UNIT 
1 28V DC 3 GND  DIM AND TEST TO MASTER  (P32) STA 400, WL 190, LBL30  (P2) TEST SW RELAY  STA 400, WL 173, RBL 29  DB195C  13  AFCS VOR/LOC 
ILS OR LAND 
L2152 G/S 2  MODE AND 
ANT ANN (P2)  A, B, OR C, 
IN CMD 
B195 AFC ACC BOX 
DB66B  (E1-5) MN EQPT CTR 
B66 
GS  A  B 
ANT CAPTURE  B559 TRACK ANTENNA  DB559A  P  J  W1323-RN7007  J  W113-RN7007 P  A1 
STA 140  2  2  W919-RN7007  G/S ANT IN 
WL 192.5 BL 0  RN7007 W1321- D3263  1  D1019  DB301B 
DB66A RADOME NOSE  DISCONNECT STATION 360  RN3007 W1227- P A  W1231-RN3007 J  1  RN3007 W1061- DB554A  (P31) STA 400, WL 179, LBL 30 B554 GS ANT HYBRID DB554D 1  MN EQPT CTR (E1-2) RCVR NO. 3 B301 VOR/ILS 
DB559  D3203  DB554C 
B559 TRACK ANTENNA  WN1311- 1  B 
3W1189-RN3329  LEFT AFT NOSE WHEEL WELL DOOR  W1233-RN3329  DB404A  1  IN  DB404B  RN3329  W1311-RN3007  J  P  A1 
P  J  DB404C  2  2  G/S ANT IN 
D2964  DB61B 
3D5585  DB404D  3  5  DB404D  W013-RN3007 
D  DB404D  4 
B61 VOR/ILS RCVR NO.1 
COXAIAL  1  DB404D  NO.1 GS  DM93  35  (E1-2) MN EQPT CTR 
 
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