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dress and abrasions. High-current wires may be physically jolted
from their positions by current surges at turn-on.
RF cables rarely give trouble, but should be checked for tight
connection. Inspect for signs of cables being pinched at sliding
assemblies (exciter and slave controllers).
5.8
Inspect MOVs
Periodically visually inspect all MOVs to ensure proper transient
protection. Replace if any damage is suspected, especially after
thunderstorms.
5.9
Recommended Test Equipment
See Table 5-3.
5.10
Annual and Leap Year Clock Adjustment
The 24-hour clock/calendar function in the transmitter needs to
be set to the new year annually.
The calendar does not recognize Feb 29. In a leap year, the date
advances to March 1 on that date and must be reset to March 1
the following day.
Use the Enter Time and Date selection in the front panel SETUP
menu to display the TIME AND DATE ENTRY SCREEN. The
procedure for using this screen to set the date and time may be
found in Section III of this technical manual.
5.11
RF Power Measurements
5.11.1
Through-Line Meters
Through-line wattmeters of known accuracy are acceptable for
power measurements. However, once calibrated, the line section,
sensing element, and meter must be used together as a set. The
meter range should be chosen so that the measurement falls in
the upper third of the scale movement. Different power range
elements may be required for aural or individual visual PA
measurements.
5.11.2
Calorimetric Measurements
Three measurements are required to use a water-cooled cal-
orimetric RF load to determine average power: flow rate through
the load in gallons per minute (G.P.M.), and water temperatures
in degrees Celsius at the calorimeter inlet (T
in
) and outlet (T
out
).
If water is used to cool the load, the following formula applies:
P
average
(kW)= 0.264 x (T
out
-T
in
) x G.P.M.
CAUTION
The factor 0.264 in the above formula applies only if water is used as the
coolant in the load. If a glycol coolant mixture is used, consult the glycol
supplier to obtain the correct specific gravity factor based on their coolant
formulation.
The formula listed in paragraph 5.11.3 for your transmitter
system can then be used to convert the resulting average power
figure to a peak-of-sync power level.
Vestigial Sideband Demodulator Tektronix 1450 or Equivalent
Option 1 37 MHz IF, NTSC CCIR-M (USA and others)
Option 2 38.9 MHz IF, CCIR-G, PAL
Tektronix Sideband Analyzer
Consisting of:
1405 Sideband Adaptor
2710, 490, or 2750 Spectrum Analyzer
Tektronix 1910 Signal Generator or equivalent
Tektronix 1780 Video Measurement Set
Aural Stereo Generator, Orban 8182A ro equivalent
Aural Demodulator Tektronix 751, TFT-850, or equivalent for
stereo
Time & Frequency Technology 701, 702, or equivalent for
monaural
A method of measuring transmitter frequency with two
sources. (Frequency Counter,
Frequency Counter on De-
modulator, Outside Frequency Measuring Service.)
Audio Oscillator and Distortion Analyzer (Sound Technology
1710A or equivalent).
Boonton 92C RF Voltmeter with 50 ohm adaptor
Asaca 201-1 Envelope Delay Measuring Set
Scope Camera
Various RF Adaptors and Connectors
Type N plug to BNC jack
Type BNC plug to Subminiax Plug
Type BNC plug to Subminiax Jack
Type BNC barrel
Bird Model 43 Wattmeter with elements from 1W to 1000W
Adaptor 1 5/8" coax to N connector
Manometer Dwyer model 40-1 (range 0.1-0-1.0"WC) or equal
Tee kit Dwyer A-604T or equal
Fluke Multimeter and Style C Current Probe
Table 5-3. Recommended Test Equipment
5-4
888-2365-001
Rev. B: 1/11/1999
WARNING: Disconnect primary power prior to servicing.
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