GuardianX 9 in 1 Antenna
Part No:
MA9909.A.002
Description:
1*Active GNSS with RG-174 & SMA(M)
8*Cellular MIMO with TGC-200 & SMA(M)
Features:
Low-profile Adhesive Mount Multi-antenna
1* GPS-GLONASS Antenna
8* Cellular MIMO
Worldwide 4G Bands
Covers 5G Band 71
IP67 Rated Waterproof Enclosure
Cables: 1M Low Loss TGC-200 and RG-174
Connectors: SMA(M)
Dimensions: 360 * 160 * 16.5mm
RoHS & REACH Compliant
SPE-19-8-131-A
1.
Introduction
3
2.
Specifications
4
3.
Active Antenna Characteristics
9
4.
Antenna Characteristics
15
5.
Radiation Patterns
20
6.
Mechanical Drawing
69
7.
Packaging
70
Changelog
71
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.
SPE-19-8-131-A
www.taoglas.com
2
1.
Introduction
1.
Introduction
1.
Introduction
1.
Introduction
1.
1.
1.
1.
Introduction
The Taoglas GuardianX MA9909 is a low profile heavy duty, fully IP67 rated waterproof, adhesive external
combination antenna. It combines 9 antenna elements into one enclosure, 1 GPS/GLONASS/Galileo, 8*
Cellular MIMO (698 to 960MHz/1710 to 2170MHz/ 2490 to 2690MHz/ 3300 to 3600MHz). The Taoglas
GuardianX has been designed as a low profile solution for several IoT and Automotive applications where
space is at a premium.
Introduction
This unique product delivers powerful worldwide 4G LTE MIMO antenna technology at
700MHz/800MHz/1700MHz/1800MHz/2600MHz and GNSS. This is an ideal external combination antenna
solution that is used where drilling a hole through the roof of a vehicle or a metal panel for an external
antenna is not feasible. The GuardianX can operate at band 71 a newly established 5G band at 600MHz.
Introduction
Typical applications include:
Passenger Bus / Rail / Air Applications.
Automotive and Heavy Equipment Vehicle Tracking and Telematics
Remote Asset and Pipeline Monitoring
HD Video over LTE
First Responder and Emergency Services
M2M Applications/IoT
Introduction
5G/4G applications demand high speed data uplink and downlink. High efficiency and high gain MIMO
antennas are necessary to achieve the required signal to noise ratio and throughput required to solve these
challenges. Taoglas also takes care to have high isolation between the two MIMO antennas to prevent selfinterference. Low loss cables are used to keep efficiency high over long cable lengths. In contrast, smaller
MIMO antennas with poorer quality thinner cables will have much reduced efficiency and isolation, which
would lead to a large drop in system throughput, increased number of drops, and may indeed not make a
system connection at all.
Cable length and connector types are customizable. Contact your regional Taoglas customer support team
for more information.
SPE-19-8-131-A
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3
2.
Specifications
3.
GNSS Frequency Bands Covered
AntennaL1 Characteristics2.
Specifications
L2
L5
L6
GPS/QZSS
1575.42MHz
1227.6MHz
1176.45MHz
1278.75MHz
■
□
□
□
L5R
L3PT
L2PT
1246MHz
L1CR
1575.42MHz
L1PT
1602MHz
□
□
□
■
■
E5a
1176.45MHz
E5b
1201.5MHz
E4
1215MHz
E3
1256MHz
E6
1278.75MHz
E2
1561MHz
L1
1575.42MHz
□
□
■
3. GLONASS
Antenna
Characteristics
1176.45MHz
1201.5MHz
Galileo
4.
Antenna□ Radiation
Patterns3.
Antenna
□
□
□
B1
Characteristics2.
BeiDou
1561MHz
3.
Compass
□
□
E5B(B2)/ E6(B3)
1268.56MHz
E2(B1)
1561MHz
□
□
Omnistar
1542.5MHz
WAAS/EGN OS
1575.42MHz
□
Antenna Characteristics2.
SBAS
3.
B3
Specifications
1268.52MHz
B2
1207.14MHz
Specifications
■
Antenna□ Characteristics
GNSS Electrical
4.
Frequency (MHz)
1575.42
1602
Antenna
Radiation Patterns3.Antenna
VSWR (max.)
2.0:1
Characteristics
Peak Gain at Zenith (dBic)
Axial Ratio (dB)
2.0:1
1.5
0
6
14
Polarization
RHCP
4.
Antenna
Radiation Patterns
Impedance
4.
Antenna Radiation Patterns3.Antenna
50Ω
Characteristics
4.
Antenna Radiation Patterns3.Antenna
Characteristics2.
SPE-19-8-131-A
Specifications
www.taoglas.com
4
LNA and Filter Electrical Properties
Frequency (MHz)
1575.42
1602
VSWR (max.)
2.0:1
2.0:1
Gain@1.8V (dBic)
25
25
Gain@3.0V (dBic)
31
31
Gain@5.5V (dBic)
34
34
Noise@1.8V (dB)
3
3
Noise@3.0V (dB)
3
3
Noise@5.5V (dB)
3.3
3.3
Power consumption@1.8V (mA)
5
Power consumption@3.0V (mA)
10
Power consumption@5.5V (mA)
23
Total Specification (Through Antenna, SAW Filter and LNA)
Frequency (MHz)
1575.42
1602
Gain@3V (dBic)
31 ± 3
30 ± 3
Output Impedance
SPE-19-8-131-A
50 Ω
www.taoglas.com
5
5G/4G Antenna
Frequency (MHz)
5G NR
Band 71
LTE700
617
~698
698
~824
GSM
5G NR Band
850/900 74, 75, 76
824
~960
1427
~1518
UMTS1 LTE2600
5G NR Band LTE5200/
77, 78, 79 Wi-Fi 5800
DCS
PCS
1710
~1880
1850
~1990
1920
~2170
2300
~2690
3300
~3500
5150
~5925
Efficiency (%)
MIMO 1
1m
35.41
42.11
44.33
18.89
52.83
48.11
47.82
43.25
10.60
16.05
MIMO 2
1m
13.76
30.02
24.81
25.80
54.18
59.28
59.20
34.24
20.71
9.52
MIMO 3
1m
36.90
42.56
42.53
27.82
57.08
54.93
53.95
32.99
17.13
12.53
MIMO 4
1m
27.71
32.84
29.33
41.72
43.61
36.50
34.63
40.21
13.29
9.87
MIMO 5
1m
30.28
31.92
30.10
43.43
48.18
40.97
38.80
42.42
14.18
9.94
MIMO 6
1m
35.45
43.01
45.05
29.32
60.41
59.52
58.29
38.87
16.88
11.95
MIMO 7
1m
13.41
30.93
27.21
25.04
57.83
61.70
62.69
36.90
21.87
9.96
MIMO 8
1m
41.17
44.90
49.33
20.44
53.31
52.45
51.09
44.85
10.88
15.73
Average Gain (dB)
MIMO 1
1m
-4.54
-3.76
-3.55
-7.25
-2.77
-3.18
-3.21
-3.66
-9.76
-8.12
MIMO 2
1m
-9.02
-5.30
-6.06
-5.91
-2.67
-2.28
-2.29
-4.67
-6.84
-10.24
MIMO 3
1m
-4.35
-3.72
-3.72
-5.66
-2.44
-2.60
-2.69
-4.84
-7.68
-9.09
MIMO 4
1m
-5.61
-4.84
-5.37
-3.80
-3.61
-4.39
-4.62
-3.96
-8.78
-10.15
MIMO 5
1m
-5.23
-4.96
-5.26
-3.63
-3.18
-3.89
-4.13
-3.73
-8.50
-10.07
MIMO 6
1m
-4.53
-3.67
-3.47
-5.43
-2.20
-2.26
-2.35
-4.14
-7.76
-9.30
MIMO 7
1m
-9.07
-5.14
-5.66
-6.05
-2.40
-2.11
-2.03
-4.35
-6.63
-10.07
MIMO 8
1m
-3.88
-3.49
-3.07
-6.90
-2.73
-2.81
-2.93
-3.52
-9.67
-8.19
Peak Gain (dBi)
MIMO 1
1m
-0.30
0.42
1.35
-3.07
2.56
1.99
1.46
1.26
-5.72
-1.93
MIMO 2
1m
-4.26
-1.30
-2.64
-0.30
1.04
1.29
2.33
0.59
-2.54
-4.93
MIMO 3
1m
-0.41
0.59
-0.15
-0.77
2.62
2.74
2.68
-0.55
-2.67
-3.38
MIMO 4
1m
0.04
0.52
-0.34
0.73
1.20
1.22
1.30
1.04
-2.90
-5.29
MIMO 5
1m
0.22
0.84
0.05
0.34
1.80
2.32
1.95
2.07
-2.48
-4.94
MIMO 6
1m
-0.83
0.62
0.13
-1.13
2.64
3.00
3.13
0.41
-3.08
-4.01
MIMO 7
1m
-4.11
-0.57
-2.04
-0.53
1.20
1.53
2.50
0.35
-2.66
-4.73
MIMO 8
1m
0.70
1.42
1.99
-2.78
2.49
2.19
1.55
1.24
-5.64
-1.87
Impedance
50 Ω
Polarization
Linear
Radiation Pattern
Omni
Max. input power
2W
SPE-19-8-131-A
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6
Mechanical
Dimension
360 * 160 * 16.5mm
Casing
PC
Cable
1M TGC200 for Cellular – Fully Customizable
1M RG174 for GNSS – Fully Customizable
Connector
Cellular 5G/4G: SMA-Plug – Fully Customizable
GNSS: SMA-Plug – Fully Customizable
Sealant
Rubber Stopper
Weight Including Cables
1060g
Environmental
Protection
IP67
Temperature Range
-40°C to 85°C
Humidity
Non-condensing 65°C 95% RH
Cable Pull
RG174 4KgF/ TGC200 9KgF
SPE-19-8-131-A
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7
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
77
3300 to 4200
78
3300 to 3800
4400 to 5000
79
*Covered bands represented as 20% efficiency, tested at 1m cable.
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8
3.
4.
Active Antenna Characteristics
3.1
Block Diagram (Active antenna)
Antenna Radiation Patterns3.Antenna
Characteristics
4.
Antenna Radiation Patterns
4.
Antenna Radiation Patterns3.Antenna
Characteristics
4.
Antenna Radiation Patterns3.Antenna
Characteristics
3.2
Passive Antenna Return Loss
4.
Antenna Radiation Patterns
4.
Antenna Radiation Patterns
4.
Antenna Radiation Patterns
4.
Antenna Radiation Patterns3.Antenna
Characteristics
4.
Antenna Radiation Patterns3.Antenna
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3.3
Passive Antenna Efficiency
3.4
Passive Antenna Average Gain
SPE-19-8-131-A
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3.5
Passive Antenna Peak Gain
3.6
Passive Antenna Axial Ratio (Zenith is at 0° )
SPE-19-8-131-A
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11
3.7
Active measurements
LNA Gain @ 3.0V
Noise Figure @ 3.0V
SPE-19-8-131-A
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12
3.8
GNSS Radiation Pattern
1575.42MHz
XY Plane
XZ Plane
X
Z
Y
SPE-19-8-131-A
YZ Plane
Z
X
Y
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13
1602MHz
XY Plane
XZ Plane
X
Z
Y
SPE-19-8-131-A
YZ Plane
Z
X
Y
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4.
4.
Antenna Characteristics
4.1
Return Loss
Antenna Radiation Patterns3.Antenna
Cellular MIMO
Characteristics
4.
Antenna Radiation Patterns
4.
Antenna Radiation Patterns3.Antenna
Characteristics
4.
Antenna Radiation Patterns3.Antenna
Characteristics
4.
Antenna Radiation Patterns
4.
Antenna Radiation Patterns
4.
Antenna Radiation Patterns
4.
Antenna Radiation Patterns3.Antenna
Characteristics
4.
Antenna Radiation Patterns3.Antenna
SPE-19-8-131-A
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15
4.2
Isolation
Cellular 1
Cellular 2
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16
Cellular 3 and Cellular 4
Cellular 5、Cellular 6 and Cellular 7
SPE-19-8-131-A
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17
4.3
Efficiency
Cellular MIMO
4.4
Average Gain
Cellular MIMO
SPE-19-8-131-A
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18
4.5
Peak Gain
Cellular MIMO
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19
5.
Radiation Patterns
4.
4.
5.1
Antenna Radiation Patterns
Test Setup
4.
Antenna Radiation Patterns
4.
Antenna Radiation Patterns
4.
Antenna Radiation Patterns
Y
4.
Antenna Radiation
X Patterns
Z
4.
Antenna Radiation Patterns
Free space
4.
Antenna Radiation Patterns
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20
5.2
Cellular MIMO1 Radiation Pattern
751MHz
XY Plane
XZ Plane
Z
Z
X
Y
SPE-19-8-131-A
YZ Plane
X
Y
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21
880MHz
XY Plane
XZ Plane
X
Z
Z
Y
SPE-19-8-131-A
YZ Plane
X
Y
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22
1805MHz
XY Plane
XZ Plane
Z
X
Y
SPE-19-8-131-A
YZ Plane
Z
X
Y
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1920MHz
XY Plane
XZ Plane
Z
Z
X
Y
SPE-19-8-131-A
YZ Plane
X
Y
www.taoglas.com
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1990MHz
XY Plane
X
Y
SPE-19-8-131-A
XZ Plane
YZ Plane
Z
Z
X
Y
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2500MHz
XY Plane
XZ Plane
Z
Z
X
Y
SPE-19-8-131-A
YZ Plane
X
Y
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5.3
Cellular MIMO2 Radiation Pattern
751MHz
XY Plane
XZ Plane
Z
X
Y
SPE-19-8-131-A
YZ Plane
Z
X
Y
www.taoglas.com
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880MHz
XY Plane
XZ Plane
X
Z
Y
SPE-19-8-131-A
YZ Plane
Z
X
Y
www.taoglas.com
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1805MHz
XY Plane
XZ Plane
X
Z
Z
Y
SPE-19-8-131-A
YZ Plane
X
Y
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1920MHz
XY Plane
XZ Plane
X
Z
Y
SPE-19-8-131-A
YZ Plane
Z
X
Y
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1990MHz
XY Plane
XZ Plane
X
Z
Y
SPE-19-8-131-A
YZ Plane
Z
X
Y
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2500MHz
XY Plane
XZ Plane
X
Z
Y
SPE-19-8-131-A
YZ Plane
Z
X
Y
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5.4
Cellular MIMO3 Radiation Pattern
751MHz
XY Plane
X
Y
SPE-19-8-131-A
XZ Plane
YZ Plane
Z
Z
X
Y
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880MHz
XY Plane
XZ Plane
Z
X
Y
SPE-19-8-131-A
YZ Plane
Z
X
Y
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1805MHz
XY Plane
XZ Plane
X
Z
Y
SPE-19-8-131-A
YZ Plane
Z
X
Y
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1920MHz
XY Plane
X
Y
SPE-19-8-131-A
XZ Plane
YZ Plane
Z
Z
X
Y
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1990MHz
XY Plane
XZ Plane
X
Z
Y
SPE-19-8-131-A
YZ Plane
Z
X
Y
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2500MHz
XY Plane
XZ Plane
Z
X
Y
SPE-19-8-131-A
YZ Plane
Z
X
Y
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5.5
Cellular MIMO4 Radiation Pattern
751MHz
XY Plane
XZ Plane
Z
Z
X
Y
SPE-19-8-131-A
YZ Plane
X
Y
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880MHz
XY Plane
XZ Plane
YZ Plane
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40
1805MHz
XY Plane
XZ Plane
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SPE-19-8-131-A
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41
1920MHz
XY Plane
XZ Plane
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SPE-19-8-131-A
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42
1990MHz
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SPE-19-8-131-A
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2500MHz
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XZ Plane
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5.6
Cellular MIMO5 Radiation Pattern
751MHz
XY Plane
XZ Plane
Z
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X
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SPE-19-8-131-A
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45
880MHz
XY Plane
XZ Plane
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SPE-19-8-131-A
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1805MHz
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YZ Plane
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1920MHz
XY Plane
XZ Plane
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48
1990MHz
XY Plane
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2500MHz
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5.7
Cellular MIMO6 Radiation Pattern
751MHz
XY Plane
XZ Plane
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51
880MHz
XY Plane
XZ Plane
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SPE-19-8-131-A
YZ Plane
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Y
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52
1805MHz
XY Plane
XZ Plane
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SPE-19-8-131-A
YZ Plane
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X
Y
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53
1920MHz
XY Plane
XZ Plane
X
Z
Y
SPE-19-8-131-A
YZ Plane
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X
Y
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54
1990MHz
XY Plane
XZ Plane
X
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Y
SPE-19-8-131-A
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2500MHz
XY Plane
XZ Plane
X
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Y
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5.8
Cellular MIMO7 Radiation Pattern
751MHz
XY Plane
XZ Plane
X
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Y
SPE-19-8-131-A
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57
880MHz
XY Plane
XZ Plane
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Y
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1805MHz
XY Plane
XZ Plane
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59
1920MHz
XY Plane
XZ Plane
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Y
SPE-19-8-131-A
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Y
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60
1990MHz
XY Plane
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2500MHz
XY Plane
XZ Plane
X
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SPE-19-8-131-A
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Y
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5.9
Cellular MIMO8 Radiation Pattern
751MHz
XY Plane
XZ Plane
X
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Y
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63
880MHz
XY Plane
XZ Plane
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Y
SPE-19-8-131-A
YZ Plane
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X
Y
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64
1805MHz
XY Plane
XZ Plane
X
Z
Y
SPE-19-8-131-A
YZ Plane
Z
X
Y
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65
1920MHz
XY Plane
XZ Plane
X
Z
Y
SPE-19-8-131-A
YZ Plane
Z
X
Y
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66
1990MHz
XY Plane
XZ Plane
X
Z
Y
SPE-19-8-131-A
YZ Plane
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X
Y
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2500MHz
XY Plane
XZ Plane
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Z
X
Y
SPE-19-8-131-A
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Y
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68
6.
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-19-8-131-A
Mechanical Drawing
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69
8.
7.
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.
Packaging5.
SPE-19-8-131-A
Mechanical Drawing
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70
Changelog for the datasheet
SPE-19-8-131 – MA9909.A.002
Revision: A (Original First Release)
Date:
Notes:
2019-10-08
Author:
Jack Conroy
Previous Revisions
SPE-19-8-131-A
www.taoglas.com
71
www.taoglas.com
©Taoglas
SPE-19-8-131-A
www.taoglas.com
72
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