Maximus
Part No:
FXUB66.07.0150C
Description:
Flexible Wide Band 5G/4G Antenna 600-6000MHz
Features:
Ground Plane Independent
600-6000MHz Wideband
5G/4G fully Operational on all Sub-6GHz bands
Efficiencies up to 80% on all cellular bands (600-6000MHz
120.4x50.4x0.2 mm size
Connector: I-PEX MHF®I U.FL Compatible
Cable: 150mm of Ø1.37
CE Certified
RoHS & REACH Compliant
US Patent #9257747
SPE-12-8-040-J
1.
Introduction
3
2.
Specifications
4
3.
Antenna Characteristics
6
4.
2D Radiation Patterns
9
5.
Mechanical Drawing
18
6.
Packaging
19
Changelog
20
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.
US Patent #9257747
SPE-12-8-040-J
www.taoglas.com
2
1.
Introduction
1.
Introduction
1.
Introduction
1.
Introduction
Maximus FXUB66 flexible wideband antenna has been designed to cover all working frequencies in
1.The patented
Introduction
the 600-6000 MHz spectrum, including all Cellular(5G/4G/3G/2G), NB-IoT, Cat-M, Wi-Fi, ISM and GNSS bands. Its
use in a device improves substantially the radiated power and sensitivity, and enables the highest throughput
rates of today's broadband devices.
is delivered with a flexible body with ground breaking high efficiencies on all bands, ground-plane
1.The antenna
Introduction
independent, with a cable and connector for easy installation. It is made of durable flexible polymer, with a peak
gain of 5dBi, an efficiency of more than 60% across all cellular bands and is designed to be mounted directly onto
a plastic or glass enclosure / cover.
1.At 120.4x50.4x0.2mm,
Introduction
the antenna is ultra thin. It is assembled by a simple “peel and stick” process, attaching
securely to non-metal surfaces via 3M adhesive. It enables designers to use only one antenna that covers all
frequencies and future proofs device design for 5G and 4G globally. It is also the ideal antenna to fit in devices
that are being retrofitted with wireless functionality, as it will cover non cellular applications such as 868, 915MHz
or Zigbee applications. Its inherently wide bandwidth is more resistant to detuning than traditional small but
narrow-band legacy antennas.
1.
Introduction
The Maximus antenna has a unique hybrid design. Within one antenna structure the electromagnetic waves travel
in two predominant propagation modes - one for lower frequencies, (e.g. 5G/4G at 600 MHz) and the other for
higher 5G/4G and Wi-Fi frequencies up to 6GHz.
It is an ideal choice for any device maker that needs to keep manufacturing costs down over the lifetime of a
product, as the same antenna can be used if the radio module is upgraded to work on a different frequency band.
Cables and Connectors are fully customizable, subject to MOQ, for further information please contact your
regional Taoglas Customer support team.
US Patent #9257747
SPE-12-8-040-J
www.taoglas.com
3
2.
Specifications
3.
Antenna Characteristics2.
Frequency
(MHz)
3.
600-960
13901435
1575.42
Antenna
Characteristics
2mm ABS
0.2dBi
2.5dBi
4.1dBi
Specifications
Electrical
17101990
17552170
24002500
25002700
33003800
48006000
2.8dBi
2.6dBi
3.5dBi
4.8dBi
-2dB
-1.8dB
-1.8dB
-2.4dB
Peak Gain (dBi)
2dBi
1.6dBi
Average Gain (dB)
2mm ABS
4.
-2.7dB
-2.6dB
-1.3dB
-2.1dB
-2.5dB
Antenna Radiation Patterns3.Max
Antenna
VSWR
2mm ABS
3.5:1
3.5:1
1.1:1
3:1
3.3:1
2.2:1
2:1
2.2:1
3:1
2mm ABS
-5dB
-5dB
-20dB
-6dB
-5.5dB
-7dB
-10dB
-7dB
-6dB
65%
66%
57%
Characteristics2.
Specifications
Max Return Loss(dB)
Efficiency
3.
3.
Antenna
60%Characteristics2.
48%
73%
2mm ABS
Specifications
56%
63%
61%
Impedance
50Ω
Polarization
Linear
Antenna
Radiation PatternCharacteristics
Omni-Directional
Input Power
5W
Mechanical
4.
Antenna
Dimensions Radiation Patterns3.Antenna
120.4 x 50.4 x 0.2 mm
Material
Characteristics
4.
4.
Flexible Polymer
Cable
150mm of Ø1.37 (Fully customizable)
Connector
I-PEX MHF® I U.FL Compatible(Fully customizable)
Antenna Radiation PatternsEnvironmental
Operating Temperature
-40°C to 85°C
Storage Temperature
-40°C to 85°C
RoHS Compliant
Yes
Antenna Radiation Patterns3.Antenna
Characteristics
4.
Antenna Radiation Patterns3.Antenna
US Patent #9257747
Characteristics2.
SPE-12-8-040-J
Specifications
www.taoglas.com
4
5G/4G Bands
Band Number
5GNR / FR1 / LTE / LTE-Advanced / WCDMA / HSPA / HSPA+ / TD-SCDMA
Uplink
Downlink
1
UL: 1920 to 1980
DL: 2110 to 2170
2
UL: 1850 to 1910
DL: 1930 to 1990
3
UL: 1710 to 1785
DL: 1805 to 1880
4
UL: 1710 to 1755
DL: 2110 to 2155
5
UL: 824 to 849
DL: 869 to 894
7
UL: 2500 to 2570
DL:2620 to 2690
8
UL: 880 to 915
DL: 925 to 960
9
UL: 1749.9 to 1784.9
DL: 1844.9 to 1879.9
11
UL: 1427.9 to 1447.9
DL: 1475.9 to 1495.9
12
UL: 699 to 716
DL: 729 to 746
13
UL: 777 to 787
DL: 746 to 756
14
UL: 788 to 798
DL: 758 to 768
17
UL: 704 to 716
DL: 734 to 746
18
UL: 815 to 830
DL: 860 to 875
19
UL: 830 to 845
DL: 875 to 890
20
UL: 832 to 862
DL: 791 to 821
21
UL: 1447.9 to 1462.9
DL: 1495.9 to 1510.9
22
UL: 3410 to 3490
DL: 3510 to 3590
23
UL:2000 to 2020
DL: 2180 to 2200
24
UL:1625.5 to 1660.5
DL: 1525 to 1559
25
UL: 1850 to 1915
DL: 1930 to 1995
26
UL: 814 to 849
DL: 859 to 894
27
UL: 807 to 824
DL: 852 to 869
28
UL: 703 to 748
DL: 758 to 803
29
UL: -
DL: 717 to 728
30
UL: 2305 to 2315
DL: 2350 to 2360
31
UL: 452.5 to 457.5
DL: 462.5 to 467.5
32
UL: -
DL: 1452 - 1496
35
1850 to 1910
38
2570 to 2620
39
1880 to 1920
40
2300 to 2400
41
2496 to 2690
42
3400 to 3600
43
3600 to 3800
3550 to 3700
48
66
UL: 1710-1780
DL: 2110-2200
71
617 to 698
74/75/76
1427 to 1518
78
3300 to 3800
79
4400 to 5000
85
698-716
728-746
Covered
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
US Patent #9257747
SPE-12-8-040-J
www.taoglas.com
5
3.
4.
Antenna Characteristics
3.1
Return Loss
Antenna Radiation Patterns3.Antenna
Characteristics
0
-5
Return Loss (dB)
-10
4.
Antenna Radiation Patterns
-15
-20
-25
4.
Antenna Radiation Patterns3.Antenna
-30
-35
Characteristics
FXUB66
-40
600 900 1200 1500 1800 2100 2400 2700 3000 3300 3600 3900 4200 4500 4800 5100 5400 5700 6000
Frequency [MHz]
4.
Antenna Radiation Patterns3.Antenna
Characteristics
3.2
VSWR
7
4.
6
Antenna Radiation Patterns
VSWR
5
4.
4
3
Antenna Radiation Patterns
2
4.
1
Antenna Radiation Patterns
FXUB66
0
600 900 1200 1500 1800 2100 2400 2700 3000 3300 3600 3900 4200 4500 4800 5100 5400 5700 6000
Frequency [MHz]
4.
Antenna Radiation Patterns3.Antenna
Characteristics
US Patent #9257747
4.
Antenna Radiation Patterns3.Antenna
SPE-12-8-040-J
www.taoglas.com
6
3.3
Efficiency
100
90
80
Efficiency (%)
70
60
50
40
30
20
10
0
600 900 1200 1500 1800 2100 2400 2700 3000 3300 3600 3900 4200 4500 4800 5100 5400 5700 6000
Frequency (MHz)
3.4
Peak Gain
7
6
5
4
Peak gain (dBi)
3
2
1
0
-1
-2
-3
-4
-5
600 900 1200 1500 1800 2100 2400 2700 3000 3300 3600 3900 4200 4500 4800 5100 5400 5700 6000
Frequency (MHz)
US Patent #9257747
SPE-12-8-040-J
www.taoglas.com
7
3.5
Average Gain
0
-0.5
-1
-1.5
Average gain (dB)
-2
-2.5
-3
-3.5
-4
-4.5
-5
-5.5
-6
600 900 1200 1500 1800 2100 2400 2700 3000 3300 3600 3900 4200 4500 4800 5100 5400 5700 6000
Frequency (MHz)
US Patent #9257747
SPE-12-8-040-J
www.taoglas.com
8
4.
2D Radiation Patterns
4.
4.
Antenna Radiation Patterns
4.
Antenna Radiation Patterns
4.
Antenna Radiation Patterns
4.
Antenna Radiation Patterns
4.
Antenna Radiation Patterns
4.
Antenna Radiation Patterns
4.1
Test Setup
On 2mm ABS
4.
Antenna Radiation Patterns
US Patent #9257747
SPE-12-8-040-J
www.taoglas.com
9
XY Plane
US Patent #9257747
SPE-12-8-040-J
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10
US Patent #9257747
SPE-12-8-040-J
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11
XZ Plane
US Patent #9257747
SPE-12-8-040-J
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12
US Patent #9257747
SPE-12-8-040-J
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13
US Patent #9257747
SPE-12-8-040-J
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14
YZ Plane
US Patent #9257747
SPE-12-8-040-J
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15
US Patent #9257747
SPE-12-8-040-J
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16
US Patent #9257747
SPE-12-8-040-J
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17
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.
US Patent #9257747
Packaging5.
SPE-12-8-040-J
Mechanical Drawing
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18
6.
Packaging
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.
US Patent #9257747
Packaging5.
SPE-12-8-040-J
Mechanical Drawing
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19
Changelog for the datasheet
SPE-12-8-040 – FXUB66.07.0150C
Revision: J (Current Version)
Date:
Changes:
Changes Made by:
2020-10-20
Updated Data
Jack Conroy
Previous Revisions
Revision: D
Revision: I
Date:
Changes:
Changes Made by:
2019-03-26
New data added
Jack Conroy
Revision: H
Date:
Changes:
Changes Made by:
Changes Made by:
Jack Conroy
Changes Made by:
Aine Doyle
Date:
Changes:
Changes Made by:
2012-09-20
Packaging Details Updated
Aine Doyle
Revision: B
2016-06-10
Patent No. Added
Aine Doyle
Revision: F
Date:
Changes:
Changes Made by:
2012-09-27
Packaging Details Updated
Revision: C
2019-03-26
Data and Template Amended
Revision: G
Date:
Changes:
Date:
Changes:
Date:
Changes:
Changes Made by:
2012-09-10
Packaging Details Updated
Aine Doyle
Revision: A (Original First Release)
2014-02-12
Drawing and photo amended
Aine Doyle
Date:
Notes:
2012-04-24
Author:
Aine Doyle
Revision: E
Date:
Changes:
Changes Made by:
2012-10-02
Packaging Details Updated
Aine Doyle
US Patent #9257747
SPE-12-8-040-J
www.taoglas.com
20
www.taoglas.com
© Taoglas
US Patent #9257747
SPE-12-8-040-J
www.taoglas.com
21
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