MARS 2.4-2.5 & 5.1-5.9 GHz Dual Polarization and Dual Band Antenna provides a stable and efficient performance with 5-8 dBi of gain and cost-effective solution for large scale applications and systems such as 802.11, Point To Multi Point, WLAN access points, mesh Networks, ISM, WiMAX and more.
The Elevation Patterns without any deviation from the horizon in full band.
MARS MA-WO21-DP9 is a Dual Polarization OMNI Directional Antenna covering 1980-2300 MHz providing a stable and efficient performance with 9dBi of gain.
The Elevation Patterns without any deviation from the horizon in full band
MARS 120° Dual Polarization Base Station Antenna with 10±1 dBi of gain is light-weight yet has a robust and durable construction.
Antenna Features:
Applicable Applications:
ISM applications
MARS Dual Band Sector antenna provides coverage of 2.3 to 2.7 GHz & 4.9 to 6.1 GHz in a single antenna radome.
Additional Features:
See Ordering Options tab below for details on:
MARS Dual Band Sector antenna provides coverage of 2.3 to 2.7 GHz & 4.9 to 6.1 GHz in a single antenna radome.
Additional Features:
See Ordering Options tab below for details on:
MARS Dual Band Sector antenna provides coverage of 2.3 to 2.7 GHz & 4.9 to 6.1 GHz in a single antenna radome.
Additional Features:
Simultaneous coverage of LTE, 802.11 a, b, g, e, n, WiMAX & 4.9 GHz Public Safety Bands.
Light weight and durable construction.
UV protected radome made of plastic.
See Ordering Options tab below for details on:
Antenna Features:
Applicable Applications:
See Ordering Options tab below for details on:
MARS 120° Base Station Antenna with 14.5 dBi of gain is light-weight yet has a robust and durable construction. Available also for heavy duty.
Antenna Features:
Applicable Applications:
See Ordering Options tab below for details on:
MARS 120° Base Station Antenna has a lightweight and durable construction.
Additional Features:
Applications:
See Ordering Options tab below for details on:
Antenna Features:
Applicable Applications:
See Ordering Options tab below for details on: