OMNI-2.4GHz WiFi Antenna
MultiPolarized Omni-Directional WiFi Antenna

Product Overview
The Omni-2.4GHz WiFi Antenna is a low profile MultiPolarized antenna that can be easily mounted to drop ceiling tiles or solid surfaces without heavy brackets. Weighing less than 2 oz. the Omni-2.4GHz WiFi Antenna is ideal for deployments in hospitals, hotels, schools, and other commercial installations where omni-directional coverage is required. The exceptional effective hemispherical, MultiPolarized signal pattern provides improved wireless communication in “Real World” obstructed non-line-of-sight (NLOS) environments. For ultimate performance use MP Antenna technology to further improve connectivity, throughput and network performance on all wireless devices.
The OMNI-2.4GHz WiFi Antenna comes with a peel and stick adhesive surface mounting system for fast, simple installation and is also available in a stud mount version that is ideal for vehicle applications.
OMNI-2.4GHz WiFi Antenna
Part No: 08-ANT-0866-FACE (With Adhesive Surface Mounting Patch)
MSRP: $66.95
OMNI-2.4GHz WiFi Antenna
Part No: 08-ANT-0866-STUD (Dual Stud Mount)
MSRP: $72.95
Features
- MultiPolarized
- Obstruction Penetrating Send and Receive
- Enhanced Connectivity and Throughput
- Built In Spatial Diversity
- Effective Broad Pattern Coverage
- Low Profile, Light Weight Design
- M-POL™ Quality and Performance
- UV Stabilized Materials
- RoHS Compliant.
Applications
- 2.4 GHz ISM Band Applications
- 802.11b,g,n Wireless Systems
- Wireless Broadband Systems
- WiFi Access Point, Router, Bridge, CPE
- Building Penetration
- High Obstruction Deployments
- Vehicle WiFi and Mobile Installations
Physical Specifications
- Width: 5.5 in
- Height: 2 in
- Weight: 1.8 oz
- Construction: UV Stabilized Polymers
- Connector: SMA-Female
- Warranty: One Year Limited
Typical Performance
- Frequency Range: 2-3GHz
- Gain: 3dBi*
- VSWR: 1:1-1.2:1
- Polarization: MultiPolarized
- Power: 50 Watts Input
- Impedance: 50 ohms nominal
*With built in spatial and polarization diversity performance in obstructed environments is greater than that of standard antennas with similar or higher laboratory gains