5 dBd

  • 876F-70-2HBSP40DF1/2

    Frequency Range: 215-225 MHz
    Gain: 5.0 (5.2 @ 220 MHz) dBd
    The 876F-70-2HBSP40DF1/2 Black Anodized Heavy Duty Dual Exposed Dipole is well suited for multicoupled RF system. It has an extremely rugged design for use in severe environmental conditions. It has internal cabling and a fix dipole-to-mast spacing. This antenna is a special version of the 876F-70 with increased spacing between the two antennas, giving an isolation of 40 dB. It’s heavy duty and Low PIM design. Our antennas can be configured for side mount or top mount. This antenna is configured for side mount. The 1/2 wave pattern spacing version offer bidirectional pattern with more than 5 dBd Gain at 220 MHz. The 1/4 wave and 3/8 wave versions of the antenna are also available. DOWNLOAD PDF  
  • 792-70-P-1/2 Low PIM Enclosed Dipole

    Frequency Range: 746-960 MHz
    Gain: 5 dBd
    Ideal for trunking or cellular applications
    • This antenna is offered in an offset pattern, 1/2 wave versions.
    • Each antenna is also available in an offset pattern, 1/4 wave versions.
    • Broadband antennas are ideal for trunking or cellular applications.
    • Weatherproof radome to ensure continuous service during severe environmental conditions.
    • Versions with 3, 6, and 9-degree downtilt are also available.
    This antenna is Low-PIM (-150 dBc; two 20W carriers). DOWNLOAD PDF DOWNLOAD DIGITAL PATTERNS
  • 792-70-P-1/4 Low PIM Enclosed Dipole

    Frequency Range: 746-960 MHz
    Gain: 5 dBd
    Ideal for trunking or cellular applications
    • This antenna is offered in an offset pattern, 1/4 wave versions.
    • Each antenna is also available in an offset pattern, 1/2 wave versions.
    • Broadband antennas are ideal for trunking or cellular applications.
    • Weatherproof radome to ensure continuous service during severe environmental conditions.
    • Versions with 3, 6, and 9-degree downtilt are also available.
    This antenna is Low-PIM (-150 dBc; two 20W carriers). DOWNLOAD PDF DOWNLOAD DIGITAL PATTERNS