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I-ATP5-698/2700M
Indoor Panel MIMO Antenna 698-2700 MHz

Rev : C | Rev date : 11 Dec 2017
This indoor panel antenna is designed for broadband in-building MIMO distribution of modern wireless communication systems as LTE, GSM, CDMA, PCS, 3G, WiFi, WLAN services. The antenna ensures highest performance for in-building passive DAS MIMO applications avoiding passive intermodulation products due to the PIM optimized design.
The antenna is constructed from lightweight materials ideal for easy ceiling mounting. The low profile and off-white radome blends easily into most building aesthetics with minimum visual impact.

FEATURES / BENEFITS

  • Wideband panel antenna supporting all wireless services in the frequency bands 698-960/1710-2700MHz
  • Ideal for 4G LTE multi-band MIMO applications
  • Low return loss, High gain, Stable performance.
  • PIM optimized antenna design (150dBc @2x20W)
  • Aesthetical visual appearance, compact and light weight
  • Low loss pigtail with N female connector


I-ATP5-698/2700M

Technical features

General Specifications

Product TypePanel Antenna
Techn. ApplicationIndoor

Mechanical Specifications

Number of Input Ports2
ConnectorsN female
Connector Cable mm (in)200 (7.9)
Mounting Hardware includedWall bracket, screws
Height (Less Connectors) mm (in)305 (12)
Width (Less Connectors) mm (in)190 (7.48)
Length (Less Connectors) mm (in)65 (2.56)
Weight kg (lb)0.9 (1.98)

Electrical Specifications

Frequency MHz 698 - 806 806 - 960 1710 - 2700
Gain, typ. dBi 6.5 ± 1.0 7.0 ± 1.0 7.5 ± 1.0
max. VSWR 2.0 2.0 1.8
Beam width, Vertical, typ. ° 68 60 65
Beam width, Horizontal, typ. ° 78 73 73
Impedance, OhmΩ50
Polarization± 45°
Intermodulation (IM3)-150dBc (2x43dBm)
Total Input Power max. W50

Material

Radome MaterialABS
Radome ColorWhite (RAL9003)

Temperature Specifications

Operation Temperature °C (°F)-40 to 55 (-40 to 131 )

Testing and Environmental

Environmental ClassIndoor

External Document Links

Notes

Isolation between horizontal and vertical polarization > 20 dB,  > 23 dB @ 1710 - 2700 MHz