OC24005FNM - Laird OC24005FNM Vertically Polarized Omni Antenna

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Laird OC24005FNM Vertically Polarized Omni Antenna OC24005FNM
Laird OC24005FNM Vertically Polarized Omni Antenna OC24005FNM
Laird OC24005FNM Vertically Polarized Omni Antenna

Laird OC24005FNM Vertically Polarized Omni Antenna

SKU: OC24005FNM
|
Weight: 1 lbs.

Part Type Antenna
Interface Coaxial
Environment Indoor/Outdoor
Gain 5 dBi
Minimum Order Quantity 11

Product Highlights

Laird OC24005FNM: Vertically Polarized Omni Antenna, 2400-2500 MHz, 5 dBi Gain with N male connector MNF# OC24005FNM

Laird Omnidirectional Basestation Antennas

Laird Omnidirectional base station antennas are collinear designs enclosed in a high density fiberglass, which is covered with a protective ultraviolet inhibiting coating. The radiating elements are made from high efficiency copper and are carefully phased to provide maximum gain in the horizontal plane. The mounting sleeves are tuned to eliminate RF currents from the transmission line, resulting in a "cold" sleeve allowing great freedom in mounting. This high quality and well-focused beam provides the highest gain and best efficiency.


OC24005FNM is a 2400- 2500 MHz omnidirectional, collinear, vertically polarized array especially designed to compliment interior or exterior mounted wireless network systems.

***This item is subject to an MOQ of 11 pcs***


Specifications

SKU OC24005FNM
Manufacturer Part Number OC24005FNM
Manufacturer Laird
Antenna Category WiFi (2.4 & 5.0 GHz)
Working Frequency 2400-2500 MHz
Directional or Omni Omnidirectional
Impedance 50Ω
Max Input Power (W) 50
VSWR: < X: 1 1.7:1
Operating Temp (celsius) -30°C to +70°C
Mount Style Connector Fixed or Mast Mount Kit (Upright/Inverted Orientations)
Color White
Ground Plane Required No
Product Condition New

An integrated RF connector is imbedded in the antenna base cap for direct AP mounting. Special venting permits either upright or inverted orientation in outdoor locations. The antenna may also be pole mounted when separation from the AP is required for optimum positioning.