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  • KP Performance Two 3 GHz 65° ±45 Degree Slant 18dBi in One Shell Orientated as 90° Sectors

KP Performance Two 3 GHz 65° ±45 Degree Slant 18dBi in One Shell Orientated as 90° Sectors

US$‎534.99 US$‎543.00
  • SKU: KP-3S3S-65SA
  • Manufacturer: KP Performance
  • Data Sheet: Download
  • Availability: Open chat or call us for stock statusEmail me when this product is in stock!
US$‎534.99 US$‎543.00

Specifications KP-3S3S-65SA

Frequency Range:3.3 GHz to 3.8 GHz
Polarization Type:45 Deg. Slant
Gain:17 dBi
Vertical Beamwidth:
Horizontal Beamwidth:65°
Electrical Downtilt:3.5°
F/B Ratio:30 dB
Cross Polar Ratio:25 dB
Port Isolation:25 dB
Connector Type:4 x 7/16 DIN Female

KP Performance KP-3S3S-65SA

3 GHz ±45 Deg. Slant + 3 GHz ±45 Deg. Slant Combo 65 Deg. Sector Antenna Side Angle Alignment (Two Sectors In One Shell That Cover 180 Deg.)

The KP-3S3S-65SA is a 4-port sector antenna that features two 3 GHz antennas in one radome. Two 3 GHz ±45° slant polarization antennas are integrated into a single radome enclosure with each internal antenna fed via its own individual connectors. The two 65° sectors in a single radome are angled to cover 180° - two ports point to -45° and two ports point to +45°. Using two of the KP-3S3S-65SA antennas is a direct replacement for using 4 single 65° sectors to cover 360° in a frequency-reuse two scenario (ABAB). This 3 GHz dual sector antenna simultaneously reduces tower space, maximizes coverage and minimizes interference with its high gain and slant dual polarization performance.

The KP-3S3S-65SA sector antenna offers 17.0 dBi gain and a front-back ratio as high as 35 dB. This sector antenna utilizes four 7/16 DIN connectors and operates in the popular frequency range of 3.3 GHz to 3.8 GHz and delivers VSWR of 1.7:1. Cables not included. To purchase compatible 7/16 DIN to Type-N cables for this antenna.


  • 4-port sector antenna, 3300-3800 MHz, 65° HPBW, 3.5° fixed electrical downtilt
  • Two 65°sectors in a single radome cover 180°
  • Two antennas provide 360° coverage and reduce tower space
  • High gain and slant dual polarization
  • Simultaneously maximize coverage and minimize interference