RFI CD8294 3G / 4G / 5G LTE 5DBi COLLINEAR ANTENNA (698-3800 MHz), 5M, SMA(M)
CD8294
The new CD8200 Series 5G LTE antennas cover the 4G LTE bands (698-960 MHz, 1710-2170 MHz, and 2300-2700 MHz) and now the new 5G LTE band (3400-3800 MHz).
It is ideal for use with cellular modems & active repeaters, especially when signal is poor.
The outstanding performance of the CD8200 series lies in the use of the patented Meander™ radiating elements. These Meander™ circuits are coupled together to deliver extraordinary consistency in gain, coverage pattern and bandwidth. The result is a unique antenna able to operate across all mobile phone networks globally, housed in the one unit.
It is ideal for use with cellular modems & active repeaters, especially when signal is poor.
The outstanding performance of the CD8200 series lies in the use of the patented Meander™ radiating elements. These Meander™ circuits are coupled together to deliver extraordinary consistency in gain, coverage pattern and bandwidth. The result is a unique antenna able to operate across all mobile phone networks globally, housed in the one unit.
Ideal for applications Cel-Fi GO, automation, vending, traffic, security & much more.
Another Quality RFI Product.
Features
- Patented PCB based collinear design offering the ultimate in pattern and gain stability.
- Ideal for new 5G LTE networks with true multi-band coverage.
- High gain across all bands making it suiting fringe and rural applications.
Specs
- Band: 3G / 4G / 5G LTE
- Frequency Range: 698 - 960, 1710 - 2170, 2300 - 2700, 3400 - 3800
- Nominal Gain Dbi: 6.5 / 5.5 / 4.5 / 5.5
- VSWR: <2.5:1
- Tuned bandwidth: Full
- Horizontal Beamwidth: Omni-directional
- Nominal impedance: 50 Ohms
- Power: 10 Watts
- Polarisation: Vertical
- Cable Type: RG58
- Cable And Connector: 5m of RG58 (9006) cable terminated with SMA male connector
- Connector: SMA(M)
- Whip Material: Fibreglass
- Whip Length: 571mm
- Radome Diameter: 15.6mm
- Mounting area: 13-16mm diameter hole
- IP Rating: IP65
- Packaging: Poly Bag
- Brand: RFI