Innovative
Technology
for a
Connected
World
Near Field Antennas
RFID UHF
UHF NEAR FIELD ANTENNAS OFFER IMPROVED PERFORMANCE
Laird Technologies’ RFID UHF near field antennas offer improved performance over many UHF
near field antennas. Designed using proprietary software optimization tools, these antennas
provide uniform field strength across their entire aperture. There are no hot-spots or dead-spots,
ensuring reliable tag reading no matter where the tag is placed on the antenna surface.
The design is also much less susceptible to detuning in the proximity of metallic objects,
or when a large number of tags are placed on the antenna for reading.
Two configurations of the product are available. One is a dual port configuration that utilizes
polarization diversity, in order to provide operation in a dual mono-static mode. This antenna is
ideal for use with multi-port readers. The other configuration is a single port antenna with circular
polarization that can be used with either a single or multi-port reader.
Each configuration is available with a choice of either side-entry or bottom-entry coaxial feed.
Every model is available in a choice of two frequency ranges: 865 to 870 MHz, or 902 to 928 MHz.
FEATURES
•
Circular or dual polarization versions
• Choice of side-entry or bottom-entry coax feed
• Choice of 856 to 870 MHz or 902 to 928 MHz
• Uniform field strength across entire
antenna surface
• Immune to detuning in the proximity of metal
Specifications
Frequency
Gain
Polarization
VSWR
Impedance
Cable
RF connector
Power rating
Cable length
Dimensions
Mounting
Weight
Operating Temp
MARKETS
• Retail POS
• Kiosks
• Pharmacies
• Incoming inspection
• Tag writing
• Industrial plants
• Choice of coaxial feed length and connector type • Hospitals
865 to 868 MHz or 902 to 928 MHz
6 dBi maximum
Left hand circular (one port) or dual slant 45 degree (dual port)
1.5:1
50 ohms
Side-entry, or bottom-entry
SMA, others available
1W continuous, 10 W peak
72 inch (283 mm), other lengths available
261 x 261 x 65.9 mm
On top of flat surface, underneath flat surface, in cut-out hole
1.40 kg
-20°C to +60°C
global
solutions:
local
support
Americas: +1.847 839.6907
IAS-AmericasEastSales@lairdtech.com
Europe: +1.32.80.7866.12
IAS-EUSales@lairdtech.com
Asia: +1.65.6.243.8022
IAS-AsiaSales@lairdtech.com
TM
www.lairdtech.com
Innovative
Technology
for a
Connected
World
Near Field Antennas
RFID UHF
SYSTEM ORDERING INFORMATION
PNL86506BC
PNL86506SC
PNS86506BC
PNS86506SC
PNL90206BC
PNL90206SC
PNS90206BC
PNS90206SC
865-868 MHz, LHCP, bottom-entry coax
865-868 MHz, LHCP, side-entry coax
865-868 MHz, Dual slant 45 degrees, bottom-entry coax
865-868 MHz, Dual slant 45 degrees, side-entry coax
902-928 MHz MHz, LHCP, bottom-entry coax
902-928 MHz MHz, LHCP, side-entry coax
902-928 MHz, Dual slant 45 degrees, bottom-entry coax
902-928 MHz, Dual slant 45 degrees, side-entry coax
ANT-DS-RFID-NEAR-FIELD 0311
Any information furnished by Laird Technologies, Inc. and its agents is believed to be accurate and reliable. All specifications are subject to change without notice. Responsibility for the use and application of Laird
Technologies materials rests with the end user, since Laird Technologies and its agents cannot be aware of all potential uses. Laird Technologies makes no warranties as to the fitness, merchantability or suitability
of any Laird Technologies materials or products for any specific or general uses. Laird Technologies shall not be liable for incidental or consequential damages of any kind. All Laird Technologies products are sold
pursuant to the Laird Technologies’ Terms and Conditions of sale in effect from time to time, a copy of which will be furnished upon request. © Copyright 2011 Laird Technologies, Inc. All Rights Reserved. Laird,
Laird Technologies, the Laird Technologies Logo, and other marks are trade marks or registered trade marks of Laird Technologies, Inc. or an affiliate company thereof. Other product or service names may be the
property of third parties. Nothing herein provides a license under any Laird Technologies or any third party intellectual property rights.