Part No:
FXP522.A.07.A.001
Description:
Venti Flex PCB Wi-Fi MIMO 2.4/5.8/7.1GHz Antenna with 2 ports
with Wi-Fi 6 frequency bands included
Features:
Covers Extended Wi-Fi Frequencies of 2.4-2.5GHz, 5-7.125GHz
Flex PCB MIMO Antenna
Adhesive Tape for ease of installation
Dimensions: 80*20*0.2mm
Cables: 100mm of Ø1.37mm
Connectors: I-PEX MHF® I (U.FL Compatible)
RoHS & Reach Compliant
SPE-14-8-029-F
1.
Introduction
3
2.
Specifications
5
3.
Antenna Characteristics
6
4.
Radiation Patterns
9
5.
Mechanical Drawing
11
6.
Packaging
12
Changelog
13
Taoglas makes no warranties based on the accuracy or completeness of the contents of this document and reserves the right to
make changes to specifications and product descriptions at any time without notice. Taoglas reserves all rights to this document and
the information contained herein. Reproduction, use or disclosure to third parties without express permission is strictly prohibited.
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2
1.
Introduction
1.
Introduction
1.
Introduction
1.
Introduction
1.
1.
1.
1.
Introduction
The FXP522 Venti antenna is a 2* MIMO, flexible embedded monopole type antenna designed to be used
inside high speed devices on modern Wi-Fi networks, including new Wi-Fi 6 and extended Wi-Fi networks.
Applications
- High speed HD video streaming
- High capacity mass transit communication networks
Introduction
Omni-directional, the antenna has excellent efficiency and isolation performance for Wi-Fi applications. With
a thickness of only 0.15mm, the FXP.522 is an ideal solution for maintaining high performance while fitting
into narrow spaces such as plastic enclosures for routers, gateways, set-top boxes and other Wi-Fi
applications. the FXP.522 was specifically tuned on ABS plastic, ensuring reliable performance on PC and ABS
housings.
Introduction
Introduction
The antenna has been designed on a flexible polymer with a rectangular form-factor and cable connection
for an easy installation. The antenna comes with double-sided 3M tape for easy "peel and stick" mounting.
The antenna cables feature IPEX MHF(U.FL) connectors for easy installation.
In order to comply with some module FCC requirements, peak gain can be reduced by using longer cable
lengths or when tested in actual device environment.
Many module manufacturers specify peak gain limits for any antennas that are to be connected to that
module. Those peak gain limits are based on free-space conditions. In practice, the peak gain of an antenna
tested in free-space can degrade by at least 1 or 2dBi when put inside a device. So ideally you should go for
a slightly higher peak gain antenna than mentioned on the module specification to compensate for this effect,
giving you better performance.
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3
Upon testing of any of our antennas with your device and a selection of appropriate layout, integration
technique, or cable, Taoglas can make sure any of our antennas’ peak gain will be below the peak gain limits.
Taoglas can then issue a specification and/or report for the selected antenna in your device that will clearly
show it complying with the peak gain limits, so you can be assured you are meeting regulatory requirements
for that module.
For example, a module manufacturer may state that the antenna must have less than 2dBi peak gain, but
you don’t need to select an embedded antenna that has a peak gain of less than 2dBi in free-space. This will
give you a less optimized solution. It is better to go for a slightly higher free-space peak gain of 3dBi or more
if available. Once that antenna gets integrated into your device, performance will degrade below this 2dBi
peak gain due to the effects of GND plane, surrounding components, and device housing. If you want to be
absolutely sure, contact Taoglas and we will test. Choosing a Taoglas antenna with a higher peak gain than
what is specified by the module manufacturer and enlisting our help will ensure you are getting the best
performance possible without exceeding the peak gain limits. Customized cable lengths and connector
versions can be supplied Contact a Taoglas regional support center for support.
SPE-14-8-112-D
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4
2.
Specifications
3.
Antenna Characteristics2.
Frequency
(MHz)
Band
5.8GHz Wi-Fi
Specifications
Efficiency
Average Gain
Peak Gain
(%)
(dB)
(dBi)
Port 1
62
-2.1
2.5
Port 2
60
-2.2
2.5
Port 1
65
-1.9
6.1
Setup
2400~2500 Characteristics
3.2.4GHz Wi-Fi
Antenna
4.
Electrical
Impedance
Max Power
Input
Polarization
Radiation Pattern
50Ω
2W
Linear
Omnidirectional
5150~5850
Port 2
65
-1.8
6
Antenna Radiation
Patterns3.
Antenna
Port 1
49
-3.3
Characteristics2.
Specifications
7.1GHz Wi-Fi 6 5925~7125
Port 2
42
-4
8
6.4
Mechanical
3.
Antenna
Dimensions Characteristics2.
Specifications
80mm X 20mm X 0.1mm
Antenna Body Material
3.
4.
Polymer
Cable
Antenna
Characteristics
2* Black 1.37mm Coaxial Cable
Cable Length
100mm
Connector
IPEX MHFHT
Weight
8g
Antenna Radiation Patterns3.Antenna
Characteristics
Environmental
Temperature Range
-40°C to 85°C
4.
Humidity
Antenna
Radiation Patterns
4.
Antenna Radiation Patterns3.Antenna
Non-condensing 65°C 95% RH
Characteristics
4.
Antenna Radiation Patterns3.Antenna
Characteristics2.
SPE-14-8-112-D
Specifications
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5
3.
Antenna Characteristics
3.1
4.
Return Loss
Antenna Radiation Patterns3.Antenna
0.00
Characteristics
4.
4.
Return Loss [dB]
-5.00
Antenna
Radiation Patterns
-10.00
-15.00
Antenna Radiation Patterns3.Antenna
-20.00
Characteristics
Right Port
-25.00
Left Port
-30.00
2000
4.
3000 3500
4000 4500 Antenna
5000 5500
Antenna2500
Radiation
Patterns3.
6000
6500
7000
7500
8000
Frequency [MHz]
Characteristics
3.2
4.
VSWR
Antenna Radiation Patterns
10.00
4.
9.00
Left Port
8.00
Right Port
Antenna
Radiation Patterns
7.00
4.
VSWR
6.00
5.00
4.00
Antenna
Radiation Patterns
3.00
2.00
4.
1.00
Antenna
Radiation Patterns3.Antenna
0.00
2000
2500
Characteristics
4.
3000
3500
4000
4500 5000 5500
Frequency [MHz]
Antenna Radiation Patterns3.Antenna
SPE-14-8-112-D
6000
6500
7000
7500
8000
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6
3.3
Efficiency
100
90
Left Port
80
Right Port
Efficiency [%]
70
60
50
40
30
20
10
0
2000
3.4
2500
3000
3500
4000
4500 5000 5500
Frequency [MHz]
6000
6500
7000
7500
8000
Peak Gain
10
9
8
7
Gain [dBi]
6
5
4
3
2
1
0
-1
-2
-3
-4
-5
2000
SPE-14-8-112-D
Left Port
Right Port
2500
3000
3500
4000
4500 5000 5500
Frequency [MHz]
6000
6500
7000
7500
8000
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7
3.5
Average Gain
0
-1
-2
Average Gain [dB]
-3
-4
-5
-6
-7
-8
Left Port
-9
Right Port
-10
2000
SPE-14-8-112-D
2500
3000
3500
4000
4500 5000 5500
Frequency [MHz]
6000
6500
7000
7500
8000
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8
4.
Radiation Patterns
4.
4.
4.
4.1
Antenna Radiation Patterns
Test Setup – 2mm ABS
Antenna Radiation Patterns
Y
4.
Antenna Radiation Patterns
X
Z
4.
Antenna Radiation Patterns
4.
Antenna Radiation Patterns
4.
Antenna Radiation Patterns
4.
Antenna Radiation Patterns
SPE-14-8-112-D
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9
4.2
842MHz 3D and 2D Radiation Patterns
Port 1
XY Plane
XZ Plane
YZ Plane
Port 2
XY Plane
SPE-14-8-112-D
XZ Plane
YZ Plane
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10
5.
Mechanical Drawing (Units: mm)
6.
Packaging5.
6.
Packaging
7.
Application Note6. Packaging5.
Mechanical Drawing
Mechanical
Drawing
6.
Packaging5.
Mechanical Drawing
6.
Packaging
7.
Application Note6. Packaging
7.
Application Note
7.
Application Note6. Packaging
7.
Application Note6. Packaging5.
Mechanical
Drawing
6.
Packaging5.
SPE-14-8-112-D
Mechanical Drawing
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11
6.
Packaging
10 pcs per small PE Bag
6.
Packaging5.
Mechanical Drawing
6.
Packaging
7.
Application Note6. Packaging5.
Mechanical
Drawing
6.
Packaging5.
Mechanical Drawing
6.
Packaging
7.
Application Note6. Packaging
7.
Application Note
7.
Application Note6. Packaging
7.
Application Note6. Packaging5.
Mechanical
Drawing
6.
Packaging5.
SPE-14-8-112-D
Mechanical Drawing
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12
Changelog for the datasheet
SPE-14-8-112 – FXP522.A.07.A.001
Revision: D (Current Version)
Date:
Changes:
Changes Made by:
2020-07-01
Updated to Include Wi-Fi 6
Jack Conroy
Previous Revisions
Revision: C
Date:
Changes:
Changes Made by:
2015-08-24
Amended Note Gain
Aine Doyle
Revision: B
Date:
Changes:
Changes Made by:
2015-01-14
Updated Intro
Aine Doyle
Revision: A (Original First Release)
Date:
2014-10-24
Notes:
Author:
SPE-14-8-112-D
Technical Writer
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13
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SPE-14-8-112-D
© Taoglas 14
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