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customer information
Name
Date
Street
Organization
City
Telephone
State/Province
Facsimile
Zip Code
Project
Country
Revision
E-mail
system configuration information
Hot-Standby
Unprotected
Frequency Diversity
1+1
2+1
Other Configurations
Terminal Radio Manufacturer
Terminal Radio Model
Traffic Capacity
Frequency Band ( GHz )
1.5 to 11 GHz
RF Channel Bandwidth ( MHz )
Typically 800 kHz to 40 MHz
Frequency Diversity Spacing ( MHz )
If Frequency Diversity is used
Location Names
Term. A
Rptr.
Term. B
Path Length Source
Coordinate method
( please choose Coordinate Method or Direct Entry Method below )
Site Latitude : ( DDD MM SS or DDD.dddddd )
Term. A
Rptr.
Term. B
Site Longitude : ( DDD MM SS or DDD.dddddd )
Term. A
Rptr.
Term. B
Site Elevation : ( ft / mtr )
–
ft
mtr
Term. A
Rptr.
Term. B
Direct Entry method
Path Length (Mi / km ) –
Mi
km
Terminal A to Repeater
Terminal B to Repeater
Radio Frequencies
Transmit Frequency (MHz)
Terminal Radio A
Terminal Radio B
Antenna Size and Type ( ft / mtr ) –
ft
mtr
Term. A
Rptr A.
Rptr B.
Term. B
Feeder Length ( ft / mtr ) –
ft
mtr
Term. A
Rptr A.
Rptr B.
Term. B
Feed Point Separation ( ft / mtr ) –
ft
mtr
Repeater Antennas
Transmit Branching Loss( dB ) –
Terminal A
Terminal B
Receive Branching Loss ( dB ) –
Terminal A
Terminal B
radio and reliability information
Anolog
Digital
Modulation Type
FM
FSK
4 FSK
MSK
QPSK
OQPSK
4 PSK
8 PSK
4 QAM
16QAM
32QAM
64QAM
128QAM
256QAM
32TCM
64TCM
128TCM
9QPRS/QPR3
25QPRS/QPR5
49QPRS/QPR5
81QPRS/QPR7
C-OFDM/QPSK
C-OFDM/16QAM
Other
Other Modulation
Transmit Power ( dBm ) –
Terminal A
Terminal B
Receiver Threshold ( dBm ) ( dBm ) –
Terminal A
Terminal B
Receiver Noise Figure ( dBm ) –
Terminal A
Terminal B
Dispersive Fade Margin ( dBm ) –
Terminal A
Terminal B
One Way Path Objective ( % ) –
Terminal A
Terminal B
Remarks
terrain and climate conditions
Describe
Terrain roughness, ( W ) –
ft
mtr
(Example:
W
is the standard deviation of periodic height samples from the path profile. Typical
W
, ( ft ) values are:
Flat, Over-Water = 29; Average Terrain = 50; Mountainous = 85
)
Mean temperature, degrees ( F / C ) –
F
C
Mean Temperature-
power system configuration
Is commercial AC power available at the repeater site? ( Yes / No ) –
Y
N
Is Solar Electric (PV) power desired at the repeater site? ( Yes / No ) –
Y
N
Weather conditions and available sunlight affect solar power designs. Solar Electric power systems are normally designed for 7 to 10 days of autonomy (little or no sunlight). Please describe the repeater site weather conditions and any special considerations.
Describe
Lowest Temperature over a 24-Hour Period ( F / C ) –
F
C
(for battery selection)
Repeater Site low battery temperature