MA950.W.A.LBICG.005.WM [TAOGLAS]

Guardian 5in1 Wall Mount Antenna 2*LTE2*Wi-FiGNSS;
MA950.W.A.LBICG.005.WM
型号: MA950.W.A.LBICG.005.WM
厂家: Taoglas    Taoglas
描述:

Guardian 5in1 Wall Mount Antenna 2*LTE2*Wi-FiGNSS

LTE
文件: 总137页 (文件大小:12222K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
Specification  
PATENT PENDING  
Part No.  
:
MA950.W.A.LBICG.005.wm  
Product Name :  
Guardian 5in1 Wall Mount Antenna  
2*LTE+2*Wi-Fi+GNSS  
Low-profile Housing  
Features  
:
2* LTE MIMO 698-960MHz/1710-2170MHz/  
2490-2690MHz/ 3300-3600MHz  
2* Wi-Fi MIMO 2.4GHz/5.8GHz  
1* GPS-GLONASS-GALILEO-BeiDou Antenna  
Worldwide 4G Bands including 3G and 2G  
IP67 Waterproof Enclosure  
Dims: 146*134*20mm  
Cables: 1M Low Loss KSR200-P and RG174  
Connectors: SMA(M)/RP-SMA(M)  
Cables and Connectors Customizable  
RoHS Compliant  
SPE-18-8-024/A Page 1 of 137  
1. Introduction  
The MA950 Guardian is a next generation combination antenna. The first panel antenna  
worldwide designed for IoT Gateway and Router devices. It is a low profile 5in1 wall  
mount antenna. This heavy-duty, fully IP67 waterproof external M2M antenna can be  
used by RF professionals in IoT Gateway and Routers, HD Video Streaming,  
Transportation and Remote Monitoring Applications  
This antenna delivers powerful MIMO antenna technology for worldwide 4G LTE bands  
at 698-960MHz/1710-2170MHz/2490-2690MHz/3300-3600MHz bands, dual-band  
2.4/5.8GHz Wi-Fi, plus GPS-GLONASS-GALILEO-BeiDou for location accuracy. It  
enables designers to cover a wide range of technologies by installing a single antenna.  
4G wireless 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 among these antennas to prevent self-interference. Low loss cables  
are used to keep efficiency high over long cable lengths.  
The GPS-GLONASS-GALILEO-BeiDou active antenna has been carefully designed for  
excellent performance across all GNSS bands, leading to higher location accuracy and  
stability of tracking in urban environments.  
The housing is IP67 waterproof and comes with a wall mount bracket. The antenna can  
be mounted internally or externally on a vehicle. The MA950 comes with 1 meter, low  
loss KSR-200P coaxial cables for the LTE and Wi-Fi antennas, and RG174 coaxial cable  
for the GNSS antenna as standard. Customized cables and connector versions are also  
available.  
SPE-18-8-024/A Page 2 of 137  
2. Specification  
GPS-GLONASS-GALILEO-BeiDou  
GPS/GALILEO:1575.42±1.023MHz  
Center Frequency  
BeiDou:1561.098±2.046MHz  
GLONASS:1602±5MHz  
GPS/GALILEO: 48%  
GLONASS: 57%  
Passive Antenna Efficiency  
(without cable loss)  
BeiDou: 63%  
GPS/GALILEO: -3.13dBi  
GLONASS: -2.39dBi  
BeiDou: -1.97dBi  
Passive Antenna Average  
Gain (without cable loss)  
GPS/GALILEO: 1.98dBi  
GLONASS: 3.01dBi  
BeiDou: 3dBi  
Passive Antenna Peak Gain  
(without cable loss)  
VSWR  
3:1 Max  
Impedance  
50Ω  
GPS/GALILEO:<14.02  
GLONASS:<5.9  
BeiDou:<9.7  
Axial Ratio  
Polarization  
Cable  
RHCP  
1 meter RG174 standard, fully customizable  
SMA(M) standard, fully customizable  
Connector  
LNA and Filter Electrical Properties  
GPS/GALILEO:1575.42±1.023MHz  
GLONASS:1602±5MHz  
Center Frequency  
BeiDou: 1561.098±2.046MHz  
Output Impedance  
VSWR  
50Ω  
< 2:1  
Return Loss  
10dB Min.  
LNA  
Gain(Typ)  
28dB  
Current Draw(mA)  
Noise  
Figure(Typ)  
1.13dB  
Voltage  
Typ  
LNA Gain, Current Draw, and  
Noise Figure@GPS  
Min 1.8V  
Typ 3.0V  
Max 5.5V  
7.9mA  
30dB  
9.0mA  
1.13dB  
33dB  
9.9mA  
1.14dB  
Total Specification (Through Antenna, SAW Filter, and LNA)  
Frequency  
1561.098±2.046MHz  
1575.42±1.023MHz  
1575.42MHz:28±3dBi  
50Ω  
1602±5MHz  
1602MHz:28±  
3dBi  
Gain@3V  
1561MHz:28±3dBi  
Output Impedance  
SPE-18-8-024/A Page 3 of 137  
4G/3G/2G LTE Antenna  
LTE230 LTE260 LTE350  
LTE700 LTE800 GSM850 GSM900 DCS  
PCS  
UMTS1  
1920  
0
0
0
Frequency (MHz)  
698~80 703~80 824~89 880~96 1710  
1850  
2305  
2490  
3300  
3
3
4
0
~1880 ~1990 ~2170 ~2360 ~2690 ~3600  
Efficiency (%)  
Free  
ABS  
Glass  
Metal  
Wall  
50.82  
68.31  
67.99  
42.12  
67.97  
54.13  
71.74  
64.53  
55.62  
61.91  
55.85  
69.61  
67.37  
51.55  
70.42  
58.97  
66.05  
55.70  
63.13  
48.38  
41.29  
61.27  
62.94  
58.33  
66.80  
48.65  
58.58  
45.22  
56.59  
52.88  
66.47  
66.31  
66.89  
39.49  
63.91  
61.54  
63.18  
64.94  
32.14  
58.00  
70.19  
70.86  
71.80  
47.20  
64.94  
68.31  
69.29  
67.87  
40.89  
56.47  
71.51  
70.00  
69.58  
47.71  
63.35  
68.39  
69.23  
65.86  
43.97  
56.36  
49.20  
50.61  
51.00  
44.36  
50.37  
54.62  
53.95  
50.05  
54.22  
54.68  
50.92  
51.88  
52.83  
44.85  
51.49  
52.55  
54.95  
51.77  
52.90  
48.72  
MIMO_1  
Free  
ABS  
MIMO_2 Glass  
Metal  
Wall  
Average Gain (dBi)  
Free  
-2.96  
-1.68  
-1.73  
-3.94  
-1.70  
-2.72  
-1.47  
-1.93  
-2.61  
-2.09  
-2.62  
-1.59  
-1.73  
-2.88  
-1.53  
-2.32  
-1.81  
-2.56  
-2.00  
-3.15  
-3.85  
-2.13  
-2.02  
-2.37  
-1.76  
-3.17  
-2.33  
-3.46  
-2.50  
-2.79  
-1.78  
-1.79  
-1.75  
-4.07  
-1.95  
-2.11  
-2.00  
-1.88  
-4.95  
-2.37  
-1.54  
-1.50  
-1.44  
-3.27  
-1.88  
-1.66  
-1.59  
-1.68  
-3.90  
-2.48  
-1.46  
-1.55  
-1.58  
-3.23  
-1.99  
-1.66  
-1.60  
-1.82  
-3.59  
-2.50  
-3.12  
-3.00  
-2.96  
-3.57  
-3.00  
-2.65  
-2.71  
-3.04  
-2.67  
-2.63  
-2.96  
-2.87  
-2.79  
-3.51  
-2.89  
-2.83  
-2.63  
-2.87  
-2.77  
-3.15  
ABS  
MIMO_1 Glass  
Metal  
Wall  
Free  
ABS  
Glass  
Metal  
Wall  
MIMO_2  
Peak Gain (dBi)  
Free  
ABS  
Glass  
Metal  
Wall  
Free  
ABS  
Glass  
Metal  
Wall  
3.18  
4.65  
3.71  
5.09  
4.74  
5.83  
4.33  
3.02  
3.54  
3.21  
3.60  
4.00  
3.92  
3.10  
4.97  
3.66  
4.52  
3.14  
3.11  
1.77  
2.14  
3.45  
4.35  
4.73  
3.67  
2.57  
4.41  
1.36  
3.33  
2.15  
3.98  
5.24  
5.28  
4.50  
5.44  
3.78  
4.34  
4.99  
3.12  
5.49  
4.37  
6.05  
6.16  
4.96  
4.84  
4.01  
4.73  
5.89  
4.36  
5.49  
4.37  
6.05  
7.67  
5.69  
4.84  
4.01  
5.69  
6.02  
5.02  
7.20  
3.70  
4.69  
5.34  
6.02  
5.08  
3.87  
5.64  
6.18  
7.16  
6.10  
4.49  
3.18  
3.87  
4.96  
3.75  
3.97  
5.42  
4.42  
4.95  
4.74  
MIMO_1  
MIMO_2  
Impedance  
Polarization  
VSWR  
50Ω  
Linear  
< 3  
Cable  
Connector  
1 meter KSR200-P standard, fully customizable  
SMA(M) standard, fully customizable  
SPE-18-8-024/A Page 4 of 137  
ELECTRICAL  
2400~2500  
4900~5850  
Frequency (MHz)  
Efficiency (%)  
Free space  
57.73  
53.59  
53.98  
51.80  
61.02  
44.09  
46.34  
40.79  
45.58  
50.62  
48.06  
49.42  
47.16  
46.70  
46.29  
47.04  
46.79  
46.88  
45.59  
43.60  
ABS  
Glass  
Metal  
Wall  
MIMO_1  
MIMO_2  
Free space  
ABS  
Glass  
Metal  
Wall  
Average Gain (dBi)  
Free space  
-2.39  
-2.71  
-2.68  
-2.86  
-2.15  
-3.57  
-3.37  
-3.91  
-3.45  
-2.96  
-3.25  
-3.13  
-3.36  
-3.44  
-3.42  
-3.33  
-3.36  
-3.35  
-3.52  
-3.67  
ABS  
Glass  
Metal  
Wall  
MIMO_1  
MIMO_2  
Free space  
ABS  
Glass  
Metal  
Wall  
Peak Gain (dBi)  
Free space  
ABS  
4.35  
5.34  
2.99  
5.22  
5.47  
2.94  
2.18  
3.75  
6.02  
3.23  
4.84  
5.18  
5.03  
5.98  
5.77  
5.70  
5.43  
7.07  
6.76  
5.97  
MIMO_1  
MIMO_2  
Glass  
Metal  
Wall  
Free space  
ABS  
Glass  
Metal  
Wall  
Impedance  
Polarization  
50Ω  
Linear  
VSWR  
Cable  
< 3  
1 meter KSR200-P standard, fully customizable  
RP-SMA(M) standard, fully customizable  
Connector  
SPE-18-8-024/A Page 5 of 137  
MECHANICAL  
Antenna Dimensions  
146*134*20mm  
Casing  
ASA  
640g  
IP67  
Weight (including cable)  
Ingress Protection Rating  
ENVIRONMENTAL  
Operation Temperature  
Storage Temperature  
Humidity  
-40°C to 85°C  
-40°C to 90°C  
Non-condensing 65°C 95% RH  
SPE-18-8-024/A Page 6 of 137  
2.1. LTE Bands Covered while on metal Ground Plane  
LTE BANDS  
Band Number  
LTE / LTE-Advanced / WCDMA / HSPA / HSPA+ / TD-SCDMA  
Uplink  
UL: 1920 to 1980  
UL: 1850 to 1910  
UL: 1710 to 1785  
UL: 1710 to 1755  
UL: 824 to 849  
UL: 2500 to 2570  
UL: 880 to 915  
UL: 1749.9 to 1784.9  
UL: 1427.9 to 1447.9  
UL: 699 to 716  
UL: 777 to 787  
UL: 788 to 798  
UL: 704 to 716  
UL: 815 to 830  
UL: 830 to 845  
UL: 832 to 862  
UL: 1447.9 to 1462.9  
UL: 3410 to 3490  
UL:2000 to 2020  
UL:1625.5 to 1660.5  
UL: 1850 to 1915  
UL: 814 to 849  
UL: 807 to 824  
UL: 703 to 748  
UL: -  
Downlink  
MIMO 1  
MIMO 2  
1
DL: 2110 to 2170  
2
DL: 1930 to 1990  
3
DL: 1805 to 1880  
4
DL: 2110 to 2155  
5
DL: 869 to 894  
7
DL:2620 to 2690  
8
DL: 925 to 960  
9
DL: 1844.9 to 1879.9  
DL: 1475.9 to 1495.9  
DL: 729 to 746  
11  
12  
13  
14  
17  
18  
19  
20  
21  
22  
23  
24  
25  
26  
27  
28  
29  
30  
31  
32  
35  
38  
39  
40  
41  
42  
43  
DL: 746 to 756  
DL: 758 to 768  
DL: 734 to 746 (LTE only)  
DL: 860 to 875 (LTE only)  
DL: 875 to 890  
DL: 791 to 821  
DL: 1495.9 to 1510.9  
DL: 3510 to 3590  
DL: 2180 to 2200 (LTE  
DL: 1525 to 1559 (LTE  
DL: 1930 to 1995  
DL: 859 to 894  
DL: 852 to 869 (LTE only)  
DL: 758 to 803 (LTE only)  
DL: 717 to 728 (LTE only)  
DL: 2350 to 2360 (LTE  
DL: 462.5 to 467.5 (LTE  
DL: 1452 - 1496  
UL: 2305 to 2315  
UL: 452.5 to 457.5  
UL: -  
1850 to 1910  
2570 to 2620  
1880 to 1920  
2300 to 2400  
2496 to 2690  
3400 to 3600  
3600 to 3800  
*Covered bands represent an efficiency greater than 20%  
SPE-18-8-024/A Page 7 of 137  
2.2. LTE Bands Covered in Free Space  
LTE BANDS  
Band Number  
LTE / LTE-Advanced / WCDMA / HSPA / HSPA+ / TD-SCDMA  
Uplink  
UL: 1920 to 1980  
UL: 1850 to 1910  
UL: 1710 to 1785  
UL: 1710 to 1755  
UL: 824 to 849  
UL: 2500 to 2570  
UL: 880 to 915  
UL: 1749.9 to 1784.9  
UL: 1427.9 to 1447.9  
UL: 699 to 716  
UL: 777 to 787  
UL: 788 to 798  
UL: 704 to 716  
UL: 815 to 830  
UL: 830 to 845  
UL: 832 to 862  
UL: 1447.9 to 1462.9  
UL: 3410 to 3490  
UL:2000 to 2020  
UL:1625.5 to 1660.5  
UL: 1850 to 1915  
UL: 814 to 849  
UL: 807 to 824  
UL: 703 to 748  
UL: -  
Downlink  
MIMO 1  
MIMO 2  
1
DL: 2110 to 2170  
2
DL: 1930 to 1990  
3
DL: 1805 to 1880  
4
DL: 2110 to 2155  
5
DL: 869 to 894  
7
DL:2620 to 2690  
8
DL: 925 to 960  
9
DL: 1844.9 to 1879.9  
DL: 1475.9 to 1495.9  
DL: 729 to 746  
11  
12  
13  
14  
17  
18  
19  
20  
21  
22  
23  
24  
25  
26  
27  
28  
29  
30  
31  
32  
35  
38  
39  
40  
41  
42  
43  
DL: 746 to 756  
DL: 758 to 768  
DL: 734 to 746 (LTE only)  
DL: 860 to 875 (LTE only)  
DL: 875 to 890  
DL: 791 to 821  
DL: 1495.9 to 1510.9  
DL: 3510 to 3590  
DL: 2180 to 2200 (LTE  
DL: 1525 to 1559 (LTE  
DL: 1930 to 1995  
DL: 859 to 894  
DL: 852 to 869 (LTE only)  
DL: 758 to 803 (LTE only)  
DL: 717 to 728 (LTE only)  
DL: 2350 to 2360 (LTE  
DL: 462.5 to 467.5 (LTE  
DL: 1452 - 1496  
UL: 2305 to 2315  
UL: 452.5 to 457.5  
UL: -  
1850 to 1910  
2570 to 2620  
1880 to 1920  
2300 to 2400  
2496 to 2690  
3400 to 3600  
3600 to 3800  
*Covered bands represent an efficiency greater than 20%  
SPE-18-8-024/A Page 8 of 137  
3. Antenna Characteristics  
3.1. GPS-GLONASS-GALILEO-BeiDou  
3.1.1. Block Diagram (Active antenna)  
SPE-18-8-024/A Page 9 of 137  
3.1.2. Test Setup  
3.1.3. GPS-GLONASS-GALILEO-BeiDou Return Loss (Passive antenna)  
SPE-18-8-024/A Page 10 of 137  
3.1.4. GPS-GLONASS-GALILEO-BeiDou Smith Chart (Passive antenna)  
3.1.5. GPS-GLONASS-GALILEO-BeiDou Efficiency (Passive antenna)  
SPE-18-8-024/A Page 11 of 137  
3.1.6. GPS-GLONASS-GALILEO-BeiDou Peak Gain (Passive antenna)  
3.1.7. GPS-GLONASS-GAILEO-BeiDou Average Gain (Passive antenna)  
SPE-18-8-024/A Page 12 of 137  
3.1.8. GPS-GLONASS-GALILEO-BeiDou Radiation Pattern (Passive antenna)  
2D Radiation Pattern  
X
Y
Z
Z
X
Y
SPE-18-8-024/A Page 13 of 137  
3.1.9. 3D Radiation Pattern (Passive antenna)  
1561MHz  
1575.42MHz  
1602MHz  
SPE-18-8-024/A Page 14 of 137  
3.1.10. Axial Ratio (Passive antenna)  
1561MHz  
1575.42MHz  
1602MHz  
SPE-18-8-024/A Page 15 of 137  
3.1.11. GPS-GLONASS-GALILEO-BeiDou LNA Gain and Noise Figure (Active  
antenna)  
LNA Gain@3.0V  
LNA Noise Figure @3.0V  
SPE-18-8-024/A Page 16 of 137  
3.2. LTE MIMO/Wi-Fi MIMO Antenna  
3.2.1. Test Setup  
Glass  
ABS  
Free space  
Wall  
Metal  
SPE-18-8-024/A Page 17 of 137  
3.2.2. LTE 1 Antenna Return Loss  
Performance in different environments with 1 meter cable length  
3.2.3. LTE 2 Antenna Return Loss  
Performance in different environments with 1 meter cable length  
SPE-18-8-024/A Page 18 of 137  
3.2.4. LTE Envelope Correlation Coefficient  
Performance in different environments with 1 meter cable length  
3.2.5. LTE 1 Antenna Efficiency  
Performance in different environments with 1 meter cable length  
SPE-18-8-024/A Page 19 of 137  
3.2.6. LTE 2 Antenna Efficiency  
Performance in different environments with 1 meter cable length  
3.2.7. LTE 1 Antenna Average Gain  
Performance in different environments with 1 meter cable length  
SPE-18-8-024/A Page 20 of 137  
3.2.8. LTE 2 Antenna Average Gain  
Performance in different environments with 1 meter cable length  
3.2.9. LTE 1 Antenna Peak Gain  
Performance in different environments with 1 meter cable length  
SPE-18-8-024/A Page 21 of 137  
3.2.10. LTE 2 Antenna Peak Gain  
Performance in different environments with 1 meter cable length  
3.2.11. Wi-Fi 1 Antenna Return Loss  
Performance in different environments with 1 meter cable length  
SPE-18-8-024/A Page 22 of 137  
3.2.12. Wi-Fi 2 Antenna Return Loss  
Performance in different environments with 1 meter cable length  
3.2.13. Wi-Fi Envelope Correlation Coefficient  
Performance in different environments with 1 meter cable length  
SPE-18-8-024/A Page 23 of 137  
3.2.14. Wi-Fi 1 Antenna Efficiency  
Performance in different environments with 1 meter cable length  
3.2.15. Wi-Fi 2 Antenna Efficiency  
Performance in different environments with 1 meter cable length  
SPE-18-8-024/A Page 24 of 137  
3.2.16. Wi-Fi 1 Antenna Average Gain  
Performance in different environments with 1 meter cable length  
3.2.17. Wi-Fi 2 Antenna Average Gain  
Performance in different environments with 1 meter cable length  
SPE-18-8-024/A Page 25 of 137  
3.2.18. Wi-Fi 1 Antenna Peak Gain  
Performance in different environments with 1 meter cable length  
3.2.19. Wi-Fi 2 Antenna Peak Gain  
Performance in different environments with 1 meter cable length  
SPE-18-8-024/A Page 26 of 137  
3.2.20. Test Setup for Antenna Radiation Pattern  
Y
X
Z
In free space  
SPE-18-8-024/A Page 27 of 137  
3.2.20 2D Radiation Pattern (LTE MIMO1 with 1M cable length in free space)  
XY Plane  
SPE-18-8-024/A Page 28 of 137  
XZ Plane  
SPE-18-8-024/A Page 29 of 137  
YZ Plane  
SPE-18-8-024/A Page 30 of 137  
3.2.21. 3D Radiation Pattern (LTE MIMO1 with 1M cable length in free space)  
960MHz  
704MHz  
1710MHz  
2170MHz  
2690MHz  
3500MHz  
SPE-18-8-024/A Page 31 of 137  
3.2.22. 2D Radiation Pattern (LTE MIMO2 with 1M cable length in free space)  
XY Plane  
SPE-18-8-024/A Page 32 of 137  
XZ Plane  
SPE-18-8-024/A Page 33 of 137  
YZ Plane  
SPE-18-8-024/A Page 34 of 137  
3.2.23. 3D Radiation Pattern (LTE MIMO2 with 1M cable length in free space)  
960MHz  
704MHz  
2170MHz  
1710MHz  
2690MHz  
3500MHz  
SPE-18-8-024/A Page 35 of 137  
2D Radiation Pattern (Wi-Fi MIMO1 with 1M cable length in free space)  
XY Plane  
XZ Plane  
YZ Plane  
SPE-18-8-024/A Page 36 of 137  
3.2.24. 3D Radiation Pattern (Wi-Fi MIMO1 with 1M cable length in free  
space)  
2450MHz  
5550MHz  
SPE-18-8-024/A Page 37 of 137  
3.2.25. 2D Radiation Pattern (Wi-Fi MIMO2 with 3M cable length in free  
space)  
XY Plane  
XZ Plane  
YZ Plane  
SPE-18-8-024/A Page 38 of 137  
3.2.26. 3D Radiation Pattern (Wi-Fi MIMO2 with 1M cable length in free  
space)  
2450MHz  
5550MHz  
SPE-18-8-024/A Page 39 of 137  
3.2.27. Test Setup for Antenna Radiation Pattern  
Y
X
Z
On the ABS  
SPE-18-8-024/A Page 40 of 137  
3.2.28. 2D Radiation Pattern (LTE MIMO1 with 1M cable length on ABS)  
XY Plane  
SPE-18-8-024/A Page 41 of 137  
XZ Plane  
SPE-18-8-024/A Page 42 of 137  
YZ Plane  
SPE-18-8-024/A Page 43 of 137  
3.2.29. 3D Radiation Pattern (LTE MIMO1 with 1M cable length on ABS)  
704MHz  
960MHz  
2170MHz  
1710MHz  
3500MHz  
2690MHz  
SPE-18-8-024/A Page 44 of 137  
3.2.30. 2D Radiation Pattern (LTE MIMO2 with 1M cable length on ABS)  
XY Plane  
SPE-18-8-024/A Page 45 of 137  
XZ Plane  
SPE-18-8-024/A Page 46 of 137  
YZ Plane  
SPE-18-8-024/A Page 47 of 137  
3.2.31. 3D Radiation Pattern (LTE MIMO2 with 1M cable length on ABS)  
704MHz  
960MHz  
2170MHz  
1710MHz  
2690MHz  
3500MHz  
SPE-18-8-024/A Page 48 of 137  
3.2.32. 2D Radiation Pattern (Wi-Fi MIMO1 with 1M cable length on ABS)  
XY Plane  
XZ Plane  
YZ Plane  
SPE-18-8-024/A Page 49 of 137  
3.2.33. 3D Radiation Pattern (Wi-Fi MIMO1 with 1M cable length on ABS)  
2450MHz  
5550MHz  
SPE-18-8-024/A Page 50 of 137  
3.2.34. 2D Radiation Pattern (Wi-Fi MIMO2 with 3M cable length on ABS)  
XY Plane  
XZ Plane  
YZ Plane  
SPE-18-8-024/A Page 51 of 137  
3.2.35. 3D Radiation Pattern (Wi-Fi MIMO2 with 1M cable length on ABS)  
5550MHz  
2450MHz  
3.2.36. Test Setup for Antenna Radiation Pattern  
Y
X
Z
On glass  
SPE-18-8-024/A Page 52 of 137  
3.2.37. 2D Radiation Pattern (LTE MIMO1 with 1M cable length on glass)  
XY Plane  
SPE-18-8-024/A Page 53 of 137  
XZ Plane  
SPE-18-8-024/A Page 54 of 137  
YZ Plane  
SPE-18-8-024/A Page 55 of 137  
3.2.38. 3D Radiation Pattern (LTE MIMO1 with 1M cable length o glass)  
704MHz  
960MHz  
2170MHz  
1710MHz  
2690MHz  
3500MHz  
SPE-18-8-024/A Page 56 of 137  
3.2.39. 2D Radiation Pattern (LTE MIMO2 with 1M cable length on glass)  
XY Plane  
SPE-18-8-024/A Page 57 of 137  
XZ Plane  
SPE-18-8-024/A Page 58 of 137  
YZ Plane  
SPE-18-8-024/A Page 59 of 137  
3.2.40. 3D Radiation Pattern (LTE MIMO2 with 1M cable length on glass)  
704MHz  
1710MHz  
2690MHz  
960MHz  
2170MHz  
3500MHz  
SPE-18-8-024/A Page 60 of 137  
3.2.41. 2D Radiation Pattern (Wi-Fi MIMO1 with 1M cable length on glass)  
XY Plane  
XZ Plane  
YZ Plane  
SPE-18-8-024/A Page 61 of 137  
3.2.42. 3D Radiation Pattern (Wi-Fi MIMO1 with 1M cable length on glass)  
2450MHz  
5550MHz  
SPE-18-8-024/A Page 62 of 137  
3.2.43. 2D Radiation Pattern (Wi-Fi MIMO2 with 3M cable length on glass)  
XY Plane  
XZ Plane  
YZ Plane  
SPE-18-8-024/A Page 63 of 137  
3.2.44. 3D Radiation Pattern (Wi-Fi MIMO2 with 1M cable length on glass)  
5550MHz  
2450MHz  
3.2.45. Test Setup for Antenna Radiation Pattern  
Y
X
Z
On metal  
SPE-18-8-024/A Page 64 of 137  
3.2.46. 2D Radiation Pattern (LTE MIMO1 with 1M cable length on metal)  
XY Plane  
SPE-18-8-024/A Page 65 of 137  
XZ Plane  
SPE-18-8-024/A Page 66 of 137  
YZ Plane  
SPE-18-8-024/A Page 67 of 137  
3.2.47. 3D Radiation Pattern (LTE MIMO1 with 1M cable length on metal)  
960MHz  
704MHz  
1710MHz  
2170MHz  
2690MHz  
3500MHz  
SPE-18-8-024/A Page 68 of 137  
3.2.48. 2D Radiation Pattern (LTE MIMO2 with 1M cable length on metal)  
XY Plane  
SPE-18-8-024/A Page 69 of 137  
XZ Plane  
SPE-18-8-024/A Page 70 of 137  
YZ Plane  
SPE-18-8-024/A Page 71 of 137  
3.2.49. 3D Radiation Pattern (LTE MIMO2 with 1M cable length on metal)  
704MHz  
960MHz  
2170MHz  
1710MHz  
2690MHz  
3500MHz  
SPE-18-8-024/A Page 72 of 137  
3.2.50. 2D Radiation Pattern (Wi-Fi MIMO1 with 1M cable length on metal)  
XY Plane  
XZ Plane  
YZ Plane  
SPE-18-8-024/A Page 73 of 137  
3.2.51. 3D Radiation Pattern (Wi-Fi MIMO1 with 1M cable length on metal)  
2450MHz  
5550MHz  
SPE-18-8-024/A Page 74 of 137  
3.2.52. 2D Radiation Pattern (Wi-Fi MIMO2 with 3M cable length on metal)  
XY Plane  
XZ Plane  
YZ Plane  
SPE-18-8-024/A Page 75 of 137  
3.2.53. 3D Radiation Pattern (Wi-Fi MIMO2 with 1M cable length on metal)  
5550MHz  
2450MHz  
3.2.54. Test Setup for Antenna Radiation Pattern  
Y
X
Z
On the Wall  
SPE-18-8-024/A Page 76 of 137  
3.2.55. 2D Radiation Pattern (LTE MIMO1 with 1M cable length on the wall)  
XY Plane  
SPE-18-8-024/A Page 77 of 137  
XZ Plane  
SPE-18-8-024/A Page 78 of 137  
YZ Plane  
SPE-18-8-024/A Page 79 of 137  
3.2.56. 3D Radiation Pattern (LTE MIMO1 with 1M cable length on the wall)  
704MHz  
1710MHz  
2690MHz  
960MHz  
2170MHz  
3500MHz  
SPE-18-8-024/A Page 80 of 137  
3.2.57. 2D Radiation Pattern (LTE MIMO2 with 1M cable length on the wall)  
XY Plane  
SPE-18-8-024/A Page 81 of 137  
XZ Plane  
SPE-18-8-024/A Page 82 of 137  
YZ Plane  
SPE-18-8-024/A Page 83 of 137  
3.2.58. 3D Radiation Pattern (LTE MIMO2 with 1M cable length on the wall)  
704MHz  
960MHz  
1710MHz  
2170MHz  
3500MHz  
2690MHz  
SPE-18-8-024/A Page 84 of 137  
3.2.59. 2D Radiation Pattern (Wi-Fi MIMO1 with 1M cable length in free  
space)  
XY Plane  
XZ Plane  
YZ Plane  
SPE-18-8-024/A Page 85 of 137  
3.2.61 3D Radiation Pattern (Wi-Fi MIMO1 with 1M cable length in free  
space)  
2450MHz  
5550MHz  
SPE-18-8-024/A Page 86 of 137  
3.2.60. 2D Radiation Pattern (Wi-Fi MIMO2 with 3M cable length in free  
space)  
XY Plane  
XZ Plane  
YZ Plane  
SPE-18-8-024/A Page 87 of 137  
3.2.61. 3D Radiation Pattern (Wi-Fi MIMO2 with 1M cable length in free  
space)  
2450MHz  
5550MHz  
SPE-18-8-024/A Page 88 of 137  
4. Mechanical Drawing (Unit: mm)  
SPE-18-8-024/A Page 89 of 137  
5. Packaging  
SPE-18-8-024/A Page 90 of 137  
6. Application Note  
The MA950 antenna performance with different cable lengths is shown below.  
6.1. In free space (LTE)  
6.1.1. Return Loss (LTE MIMO 1)  
6.1.2. Return Loss (LTE MIMO 2)  
SPE-18-8-024/A Page 91 of 137  
6.1.3. Isolation (LTE antenna)  
6.1.4. Efficiency (LTE MIMO 1)  
SPE-18-8-024/A Page 92 of 137  
6.1.5. Efficiency (LTE MIMO 2)  
6.1.6. Average Gain (LTE MIMO 1)  
SPE-18-8-024/A Page 93 of 137  
6.1.7. Average Gain (LTE MIMO 2)  
6.1.8. Peak Gain (LTE MIMO 1)  
SPE-18-8-024/A Page 94 of 137  
6.1.9. Peak Gain (LTE MIMO 2)  
6.2. In free space (Wi-Fi)  
6.2.1. Return Loss (Wi-Fi MIMO 1)  
SPE-18-8-024/A Page 95 of 137  
6.2.2. Return Loss (Wi-Fi MIMO 2)  
6.2.3. Isolation (Wi-Fi)  
SPE-18-8-024/A Page 96 of 137  
6.2.4. Efficiency (Wi-Fi MIMO 1)  
6.2.5. Efficiency (Wi-Fi MIMO 2)  
SPE-18-8-024/A Page 97 of 137  
6.2.6. Average Gain (Wi-Fi MIMO 1)  
6.2.7. Average Gain (Wi-Fi MIMO 2)  
SPE-18-8-024/A Page 98 of 137  
6.2.8. Peak Gain (Wi-Fi MIMO 1)  
6.2.9. Peak Gain (Wi-Fi MIMO 2)  
SPE-18-8-024/A Page 99 of 137  
6.3. On the ABS (LTE)  
6.3.1. Return Loss (LTE MIMO 1)  
6.3.2. Return Loss (LTE MIMO 2)  
SPE-18-8-024/A Page 100 of 137  
6.3.3. Isolation (LTE antenna)  
6.3.4. Efficiency (LTE MIMO 1)  
SPE-18-8-024/A Page 101 of 137  
6.3.5. Efficiency (LTE MIMO 2)  
6.3.6. Average Gain (LTE MIMO 1)  
SPE-18-8-024/A Page 102 of 137  
6.3.7. Average Gain (LTE MIMO 2)  
6.3.8. Peak Gain (LTE MIMO 1)  
SPE-18-8-024/A Page 103 of 137  
6.3.9. Peak Gain (LTE MIMO 2)  
6.4. On ABS (Wi-Fi)  
6.4.1. Return Loss (Wi-Fi MIMO 1)  
SPE-18-8-024/A Page 104 of 137  
6.4.2. Return Loss (Wi-Fi MIMO 2)  
6.4.3. Isolation (Wi-Fi)  
SPE-18-8-024/A Page 105 of 137  
6.4.4. Efficiency (Wi-Fi MIMO 1)  
6.4.5. Efficiency (Wi-Fi MIMO 2)  
SPE-18-8-024/A Page 106 of 137  
6.4.6. Average Gain (Wi-Fi MIMO 1)  
6.4.7. Average Gain (Wi-Fi MIMO 2)  
SPE-18-8-024/A Page 107 of 137  
6.4.8. Peak Gain (Wi-Fi MIMO 1)  
6.4.9. Peak Gain (Wi-Fi MIMO 2)  
SPE-18-8-024/A Page 108 of 137  
6.5. On glass (LTE)  
6.5.1. Return Loss (LTE MIMO 1)  
6.5.2. Return Loss (LTE MIMO 2)  
SPE-18-8-024/A Page 109 of 137  
6.5.3. Isolation (LTE antenna)  
6.5.4. Efficiency (LTE MIMO 1)  
SPE-18-8-024/A Page 110 of 137  
6.5.5. Efficiency (LTE MIMO 2)  
6.5.6. Average Gain (LTE MIMO 1)  
SPE-18-8-024/A Page 111 of 137  
6.5.7. Average Gain (LTE MIMO 2)  
6.5.8. Peak Gain (LTE MIMO 1)  
SPE-18-8-024/A Page 112 of 137  
6.5.9. Peak Gain (LTE MIMO 2)  
6.6. On glass (Wi-Fi)  
6.6.1. Return Loss (Wi-Fi MIMO 1)  
SPE-18-8-024/A Page 113 of 137  
6.6.2. Return Loss (Wi-Fi MIMO 2)  
6.6.3. Isolation (Wi-Fi)  
SPE-18-8-024/A Page 114 of 137  
6.6.4. Efficiency (Wi-Fi MIMO 1)  
6.6.5. Efficiency (Wi-Fi MIMO 2)  
SPE-18-8-024/A Page 115 of 137  
6.6.6. Average Gain (Wi-Fi MIMO 1)  
6.6.7. Average Gain (Wi-Fi MIMO 2)  
SPE-18-8-024/A Page 116 of 137  
6.6.8. Peak Gain (Wi-Fi MIMO 1)  
6.6.9. Peak Gain (Wi-Fi MIMO 2)  
SPE-18-8-024/A Page 117 of 137  
6.7. On metal (LTE)  
6.7.1. Return Loss (LTE MIMO 1)  
6.7.2. Return Loss (LTE MIMO 2)  
SPE-18-8-024/A Page 118 of 137  
6.7.3. Isolation (LTE antenna)  
6.7.4. Efficiency (LTE MIMO 1)  
SPE-18-8-024/A Page 119 of 137  
6.7.5. Efficiency (LTE MIMO 2)  
6.7.6. Average Gain (LTE MIMO 1)  
SPE-18-8-024/A Page 120 of 137  
6.7.7. Average Gain (LTE MIMO 2)  
6.7.8. Peak Gain (LTE MIMO 1)  
SPE-18-8-024/A Page 121 of 137  
6.7.9. Peak Gain (LTE MIMO 2)  
6.8. On metal (Wi-Fi)  
6.8.1. Return Loss (Wi-Fi MIMO 1)  
SPE-18-8-024/A Page 122 of 137  
6.8.2. Return Loss (Wi-Fi MIMO 2)  
6.8.3. Isolation (Wi-Fi)  
SPE-18-8-024/A Page 123 of 137  
6.8.4. Efficiency (Wi-Fi MIMO 1)  
6.8.5. Efficiency (Wi-Fi MIMO 2)  
SPE-18-8-024/A Page 124 of 137  
6.8.6. Average Gain (Wi-Fi MIMO 1)  
6.8.7. Average Gain (Wi-Fi MIMO 2)  
SPE-18-8-024/A Page 125 of 137  
6.8.8. Peak Gain (Wi-Fi MIMO 1)  
6.8.9. Peak Gain (Wi-Fi MIMO 2)  
SPE-18-8-024/A Page 126 of 137  
6.9. On the wall (LTE)  
6.9.1. Return Loss (LTE MIMO 1)  
6.9.2. Return Loss (LTE MIMO 2)  
SPE-18-8-024/A Page 127 of 137  
6.9.3. Isolation (LTE antenna)  
6.9.4. Efficiency (LTE MIMO 1)  
SPE-18-8-024/A Page 128 of 137  
6.9.5. Efficiency (LTE MIMO 2)  
6.9.6. Average Gain (LTE MIMO 1)  
SPE-18-8-024/A Page 129 of 137  
6.9.7. Average Gain (LTE MIMO 2)  
6.9.8. Peak Gain (LTE MIMO 1)  
SPE-18-8-024/A Page 130 of 137  
6.9.9. Peak Gain (LTE MIMO 2)  
6.10. On the wall (Wi-Fi)  
6.10.1. Return Loss (Wi-Fi MIMO 1)  
SPE-18-8-024/A Page 131 of 137  
6.10.2. Return Loss (Wi-Fi MIMO 2)  
6.10.3. Isolation (Wi-Fi)  
SPE-18-8-024/A Page 132 of 137  
6.10.4. Efficiency (Wi-Fi MIMO 1)  
6.10.5. Efficiency (Wi-Fi MIMO 2)  
SPE-18-8-024/A Page 133 of 137  
6.10.6. Average Gain (Wi-Fi MIMO 1)  
6.10.7. Average Gain (Wi-Fi MIMO 2)  
SPE-18-8-024/A Page 134 of 137  
6.10.8. Peak Gain (Wi-Fi MIMO 1)  
6.10.9. Peak Gain (Wi-Fi MIMO 2)  
SPE-18-8-024/A Page 135 of 137  
7. Installation Instructions  
SPE-18-8-024/A Page 136 of 137  
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.  
Copyright © Taoglas Ltd.  
SPE-18-8-024/A Page 137 of 137  

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