4G LTE Wide Band Flex MIMO Antenna
698-3000MHz
Part No:
FXUB70.A.07.C.001
Description
FXUB70 Wide-band MIMO LTE Antenna
Features:
Patent Pending
Covers 4G LTE, 3G HSPA, 2G GSM/GPRS/CDMA
Ground Plane Independent
Covering: 698-3000MHz
5 dBi Peak Gain
Dimensions: 182mm *21mm *0.2mm
Cable : 150mm Ø1.37mm
Connector: IPEX MHFI
RoHS & Reach Compliant
1.
Introduction
2
2.
Specification
3
3.
Antenna Characteristics
5
4.
Radiation Patterns
9
5.
Mechanical Drawing
24
6.
Packaging
25
Changelog
27
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.
1
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1.
Introduction
The patent pending FXUB70 LTE Wide-band flexible wideband antenna has been designed to cover all
working frequencies in the 698-3000 MHz spectrum, covering all Cellular, 2.4GHz Wi-Fi, ISM and AGPS. The
antenna is delivered with a flexible body with excellent efficiencies on all bands, ground independent, with
cable and connector for easy installation.
The FXUB70 flexible polymer antenna, at 182*21*0.2mm, is ultra-thin and truly wideband with high
efficiencies across the bands. It is assembled by a simple “peel and stick” process, attaching securely to nonmetal surfaces via 3M 467 automotive approved adhesive. It enables designers to use only one antenna that
covers all common frequencies for LTE and 4G globally.
The FXUB70 antenna is a durable flexible polymer antenna that has a peak gain of 5dBi, an efficiency of more
than 45% across the bands and is designed to be mounted directly onto plastic. It is an ideal choice for any
device maker that needs to keep manufacturing costs down over the lifetime of a product. It is ground plane
independent and delivered with a cable and connector for easy connecting to the wireless module or
customer PCB. Like all such antennas, care should be taken to mount the antenna at least 10mm from metal
components or surfaces, and ideally 20mm for best radiation efficiency.
Cables and Connectors are customizable. If cable routing is not convenient on this antenna, the alternative
FXUB71 is recommended.
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2.
Specification
LTE Electrical
Frequency
Average Gain
Measurement Efficiency (%)
(MHz)
(dB)
Band
4G/3G_1
Peak Gain
(dBi)
MIMO 1
57.2
-2.43
3.08
MIMO 2
50.9
-2.93
2.80
MIMO 1
31.3
-5.04
1.33
MIMO 2
43.2
-3.65
0.92
MIMO 1
40.5
-3.93
1.77
MIMO 2
52.5
-2.80
2.08
MIMO 1
36.9
-4.33
1.77
MIMO 2
45.8
-3.39
2.27
MIMO 1
59.3
-2.27
2.65
MIMO 2
63.7
-1.96
4.03
MIMO 1
50.0
-3.01
2.67
MIMO 2
57.8
-2.38
3.08
MIMO 1
48.2
-3.17
2.67
MIMO 2
58.5
-2.33
2.85
Impedance
Polarization
Radiation
Pattern
Max. input
power
50 Ω
Linear
Omni
2W
698-960
4G/3G_7
1575-1602
4G/3G_2
1710-1990
4G/3G_6
1755-2170
4G/3G_3
2305-2360
4G/3G_4
2400-2500
4G/3G_5
2500-2690
Mechanical
Dimensions
182*21*0.2 mm
Material
Flexible Polymer
Connector
U.FL
Cable
1.37 mm mini coax with 150 mm
Environmental
Operation Temperature
-40°C to +85°C
Storage Temperature
-40°C to +85°C
Relative Humidity
40% to 95%
RoHs & REACH Compliant
Yes
All results were obtained with the FXUB70 mounted on a piece of 3mm ABS (210x297)mm
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5G/4G Bands
Band Number
B1
B2
B3
B4
B5
B7
B8
B9*
B11
B12
B13
B14
B17
B18
B19
B20
B21
B22*
B23*
B24
B25
B26
B27*
B28
B29
B30
B31
B32
B34
B35
B36
B37
B38
B39
B40
B41
B42
B43
B45
B46
B47
B48
B49
B50
B51
B52
B53
B65
B66
B68
B69
B70
B71
B72
B73
B74
B75
B76
B77
B78
B79
B85
B87
B88
5GNR / FR1 / LTE / LTE-Advanced / WCDMA / HSPA / HSPA+ / TD-SCDMA
Uplink
Downlink
1920 to 1980
1850 to 1910
1710 to 1785
1710 to 1755
824 to 849
2500 to 2570
880 to 915
1749.9 to 1784.9
1427.9 to 1447.9
699 to 716
777 to 787
788 to 798
704 to 716
815 to 830
830 to 845
832 to 862
1447.9 to 1462.9
3410 to 3490
2000 to 2020
1626.5 to 1660.5
1850 to 1915
814 to 849
807 to 824
703 to 748
2110 to 2170
1930 to 1990
1805 to 1880
2110 to 2155
869 to 894
2620 to 2690
925 to 960
1844.9 to 1879.9
1475.9 to 1495.9
729 to 746
746 to 756
758 to 768
734 to 746
860 to 875
875 to 890
791 to 821
1495.9 to 1510.9
3510 to 3590
2180 to 2200
1525 to 1559
1930 to 1995
859 to 894
852 to 869
758 to 803
717 to 728
2305 to 2315
452.5 to 457.5
2350 to 2360
462.5 to 467.5
1452 to 1496
2010 to 2025
1850 to 1910
1930 to 1990
1910 to 1930
2570 to 2620
1880 to 1920
2300 to 2400
2496 to 2690
3400 to 3600
3600 to 3800
1447 to 1467
5150 to 5925
5855 to 5925
3550 to 3700
3550 to 3700
1432 to 1517
1427 to 1432
3300 to 3400
2483.5 to 2495
1920 to 2010
1710 to 1780
698 to 728
2110 to 2200
2110 to 2200
753 to 783
2570 to 2620
1695 to 1710
663 to 698
451 to 456
450 to 455
1427 to 1470
1995 to 2020
617 to 652
461 to 466
460 to 465
1475 to 1518
1432 to 1517
1427 to 1432
3300 to 4200
3300 to 3800
4400 to 5000
698 to 716
410 to 415
412 to 417
728 to 746
420 to 425
422 to 427
FXUB70_MIMO1_Chamber_3m FXUB70_MIMO2_Chamber_3m
mABS
mABS
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
✓
4
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3.
Antenna Characteristics
3.1
Test Setup
FXUB70 Port 2 Setup
FXUB70 Port 1 Setup
5
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3.2
Return Loss
3.3
VSWR
6
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3.4
Isolation
3.5
Efficiency
7
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3.6
Average Gain
3.7
Peak Gain
8
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4.
Radiation Patterns
4.1
Test Setup
FXUB70 Port 2 Setup
FXUB70 Port 1 Setup
9
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4.2
FXUB70_MIMO1_3mmABS - Patterns at 829 MHz
XZ Plane
YZ Plane
XY Plane
10
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4.3
FXUB70_MIMO2_3mmABS - Patterns at 829 MHz
XZ Plane
YZ Plane
XY Plane
11
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4.4
FXUB70_MIMO1_3mmABS - Patterns at 1589 MHz
XZ Plane
YZ Plane
XY Plane
12
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4.5
FXUB70_MIMO2_3mmABS - Patterns at 1589 MHz
XZ Plane
YZ Plane
XY Plane
13
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4.6
FXUB70_MIMO1_3mmABS - Patterns at 1850 MHz
XZ Plane
YZ Plane
XY Plane
14
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4.7
FXUB70_MIMO2_3mmABS - Patterns at 1850 MHz
XZ Plane
YZ Plane
XY Plane
15
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4.8
FXUB70_MIMO1_3mmABS - Patterns at 1963 MHz
XZ Plane
YZ Plane
XY Plane
16
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4.9
FXUB70_MIMO2_3mmABS - Patterns at 1963 MHz
XZ Plane
YZ Plane
XY Plane
17
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4.10
FXUB70_MIMO1_3mmABS - Patterns at 2333 MHz
XZ Plane
YZ Plane
XY Plane
18
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4.11
FXUB70_MIMO2_3mmABS - Patterns at 2333 MHz
XZ Plane
YZ Plane
XY Plane
19
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4.12
FXUB70_MIMO1_3mmABS - Patterns at 2450 MHz
XZ Plane
YZ Plane
XY Plane
20
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4.13
FXUB70_MIMO2_3mmABS - Patterns at 2450 MHz
XZ Plane
YZ Plane
XY Plane
21
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4.14
FXUB70_MIMO1_Chamber_3mmABS Patterns at 2595 MHz
XZ Plane
YZ Plane
XY Plane
22
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4.15
FXUB70_MIMO2_3mmABS - Patterns at 2595 MHz
XZ Plane
YZ Plane
XY Plane
23
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5.
Mechanical Drawing
24
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6.
Packaging
25
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Changelog for the datasheet
SPE-14-8-056 – FXUB70.A.07.C.001
Revision: I
Date:
Notes:
Author:
2022-11-02
Full Datasheet update
Evan Murphy
Previous Revisions
Revision: H
Revision: C
Date:
Notes:
Author:
2019-11-15
Reference ECR-18-8-259
Date:
Notes:
Technical Writer
Revision: G
Author:
Technical Writer
Revision: B
Date:
Notes:
Author:
2017-05-07
Technical Writer
Revision: F
Date:
Notes:
Author:
2014-08-25
Changed cable routing.
Aine Doyle
Revision: A (Original First Release)
Date:
Notes:
Author:
2017-09-06
Peter Monahan
Date:
Notes:
Author:
2014-05-29
Technical Writer
Revision: E
Date:
Notes:
Author:
Technical Writer
Revision: D
Date:
Notes:
Author:
Technical Writer
26
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