Receiver Multicoupler - FM-RMC-1
Receiver Multicoupler
87.5-108MHz
VHF 6-Way Receiver Multicoupler
FM-RMC-1
The FM-RMC-1 is a broadband high performance receiver multicoupler (Rx Mux) for the FM broadcast frequency band.
This product can be used in narrowband or wideband FM radio receiver and FM rebroadcast systems to improve system
noise figure and signal quality, and to distribute received signals to multiple FM receivers or FM rebroadcast head-end
units. An integral FM bandpass preselector filter rejects high level out-of-band signals and protects the FM-RMC-1’s lownoise amplifier from overload. RF outputs are provided for up to six (6) FM receivers or FM rebroadcast head-end units
to be connected.
Features:
nIntegral
bandpass preselector filter rejects high level outof-band signals
nCompatible
signals
nLow
with both narrowband and wideband FM
Noise figure improves system performance
nSupports
signal distribution to up to six receivers or rebroadcast headends
nFull
Range AC Power Supply
nCompact
1RU 19” rack mountable shelf
Specifications
Model Number
FM-RMC-1
Frequency Range (translating and non-translating)
Antenna Input Return Loss
87.5 to 108MHz
≥ 15dB (87.5 - 108MHz)
O/P 1dB Compression Point
18 dBm (RF amplifier output)
IP3
36 dBm (RF amplifier output)
Noise Figure
≤ 4 dB
Amplifier Gain
15 dB ± 1 dB
Input BPF
Output to Output Isolation
Overall Conversion Gain
A/C Input Power
≤ -35 dB (@70 MHz) / ≤ -35 dB (@130 MHz)
≥ 25 dB typical
- 1 dB ± 1 dB
85V to 264V (full range)
Power Consumption
Approximately 6 VA
A/C Mains Fuse
1 Amp. (20mm type)
Cooling System
Connectors
Temperature Range
Convection
Input: ‘’N’ type Female Output: 6 x ‘BNC’ Female (Terminate unused
ports) A/C Mains: IEC
-10° C to +45° C / 14° F to 113° F
Relative Humidity
20% to 90% (non-condensing)
Operating Altitude
≤2500m / ≤8200ft above sea level
Mechanical Dimensions
Weight
Ordering information
FM-RMC-1
SP0000-6001-11
P-42171-1
483x350x44.4mm / 19x13.8x1in (1RU)
2.4kg / 5.28lbs (approx)
Description
VHF FM Receiver Multicoupler
BNC 50ohm Termination for unused RF output ports
Copyright RF Industries Pty Ltd 2015. Subject to change without notice.
1
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