G21BW301111 [TAOGLAS]
G21.W Hercules Gen.II Penta Band Cellular Antenna;型号: | G21BW301111 |
厂家: | Taoglas |
描述: | G21.W Hercules Gen.II Penta Band Cellular Antenna |
文件: | 总21页 (文件大小:1186K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
SPECIFICATION
G21.W White Hercules Gen II Penta Band Cellular Antenna
Part No.
:
:
G21.B.W.301111
G21.W Hercules Gen.II Penta Band Cellular Antenna
Screw-mount (Permanent mount)- White Version
GSM/GPRS/CDMA/EVDO/UMTS/HSPA/WCDMA
850/900/1800/1900/2100 MHz
Product Name
Low profile - Height 29mm and diameter 49mm
Heavy duty screw mount
Features
:
UV and Vandal resistant White ABS housing
IP67 & IP69K – No ingress of dust and no water
ingress permitted from powerful pressure jets in all
directions and no performance degradation
Standard is 3M Cable RG174 SMA(M)-Customizable
ROHS Compliant
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1. INTRODUCTION
The G21.W (Generation II) Hercules is a high performance steel thread-mount Penta-
band cellular antenna for external use on vehicles and outdoor assets worldwide. Omni-
directional high gain across all bands ensures constant reception and transmission.
Durable UV resistant ABS housing is resistant to vandalism and direct attack. At only 29
mm height it complies with the latest EU height restrictions directives for roof-mounted
objects, with a diameter of 49 mm. Designed to not catch on tree-branches. This
antenna can be mounted on metal structures.
2. SPECIFICATION
ELECTRICAL CELLULAR
Standard
Band (MHz)
Frequency (MHz)
Return Loss (dB)
0.3
AMPS
850
GSM
900
DCS
PCS
3G
1800
1900
2100
824-896
880-960
1710-1880 1850-1990
1920 –2170
-6.0
-7.8
-5.2
-8.7
-6.1
-6.2
-5.8
1.0
-11.4
-15.3
-13.7
Cable
length
2.0
-8.1
-9.3
-16.5
-20.3
-19.5
(meter)
3.0
5.0
-11.0
-11.8
-12.4
-13.6
-17.5
-17.6
-18.3
-17.8
-18.1
-17.8
Efficiency (%)
0.3
1.0
2.0
3.0
5.0
51.1
29.4
24.3
24.6
17.1
41.4
40.2
27.5
27.6
16.4
38.0
42.2
28.4
22.0
15.7
46.5
43.4
20.2
17.8
15.0
32.3
29.9
19.6
15.0
12.0
Cable
length
(meter)
Gain (dBi)
0.3
1.0
2.0
3.0
5.0
1.8
1.0
0.9
0.8
-1.0
0.8
2.2
1.8
0.9
-0.5
1.3
0.6
3.9
1.6
1.5
-0.3
-1.1
-2.2
-4.3
Cable
length
(meter)
0.2
-0.7
-1.1
-4.2
-1.0
-4.5
Polarization
Linear
Impedance
Max Input Power
VSWR
50 ohms
10 watts
<3.5:1
*Note: The return loss, efficiency and gain in the above table, were measured on 30x30 cm
metal plate with RG174 cable. For a specific case performance refers to the below plots.
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MECHANICAL
Height = 29 mm and Diameter = 49mm
Dimensions
Cable
3M RG174 – Fully Customizable
SMA-Male – Fully Customizable
White UV Resistant ABS
Connector
Casing
Base and Thread
Thread Diameter
Weather proof gasket
Sealant
Nickel plated steel
18 mm
CR4305 foam with 3M9448B double-side adhesive
Rubber Stopper
ENVIRONMENTAL
Protection
Corrosion
IP67 & IP69K
5% NaCl for 96hrs - Nickel plated steel base and thread
Temperature Range
Thermal Shock
Humidity
-40°C to +85°C
100 cycles -40°C to +85°C
Non-condensing 65°C 95% RH
1m drop on concrete 6 axes
8 Kgf
Shock (Drop Test)
Cable Pull
Recommended Mounting Torque
Maximum Mounting Torque
95Nm
135Nm
*Note: Specifications may be subject to
change
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3. TEST SET UP
Y
Figure 1. G21 Antenna test set up in free space, 30x30 cm metal plate and 60x60 cm
metal plate, R&SZVL6 VNA (left) and R&S4100 CTIA 3D Chamber (Right).
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4. ANTENNA PARAMETERS
4.1 Return Loss
Figure 2. Return Loss of G21 Hercules antenna in free space
Figure 3. Return loss of G21 Hercules antenna on 30 cm metal plate.
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Figure 4. Return loss of G21 Hercules antenna on 60 cm metal plate.
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4.2 Efficiency
Figure 5. Efficiency of G21 Hercules antenna in free space
Figure 6. Efficiency of G21 Hercules antenna on 30 cm metal plate.
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Figure 7. Efficiency of G21 Hercules antenna on 60 cm metal plate.
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4.3 Gain
Figure 8. Gain of G21 Hercules antenna in free space.
Figure 9. Gain of G21 Hercules antenna on 30 cm metal plate.
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Figure 10. Gain of G21 Hercules antenna on 60 cm metal plate.
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5. Radiation Pattern
5.1 Radiation Patterns (Free Space)
Figure 11. Radiation pattern at 849 MHz, Figure 1 as reference (dB),
with 2 m RG174 cable and free space
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Figure 12. Radiation pattern at 915 MHz, Figure 1 as reference (dB),
with 2 m RG174 cable and free space.
Figure 13. Radiation pattern at 1805 MHz, Figure 1 as reference (dB),
with 2 m RG174 cable and free space.
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Figure 14. Radiation pattern at 1910 MHz, Figure 1 as reference (dB),
with 2 m RG174 cable and free space.
Figure 15. Radiation pattern at 2110 MHz, Figure 1 as reference (dB),
with 2 m RG174 cable and free space.
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5.2 Radiation Patterns (300*300mm Ground Plane)
Figure 16. Radiation pattern at 849 MHz, Figure 1 as reference (dB),
with 2 m RG174 cable and 30x30 cm metal plate.
Figure 17. Radiation pattern at 915 MHz, Figure 1 as reference (dB),
with 2 m RG174 cable and 30x30 cm metal plate.
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Figure 18. Radiation pattern at 1805 MHz, Figure 1 as reference (dB),
with 2 m RG174 cable and 30x30 cm metal plate.
Figure 19. Radiation pattern at 1910 MHz, Figure 1 as reference (dB),
with 2 m RG174 cable and 30x30 cm metal plate.
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Figure 20. Radiation pattern at 2110 MHz, Figure 1 as reference (dB),
with 2 m RG174 cable and 30x30 cm metal plate.
5.3 Radiation Patterns (600*600mm Ground Plane)
Figure 21. Radiation pattern at 849 MHz, Figure 1 as reference (dB),
with 2 m RG174 cable and 60x60 cm metal plate.
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Figure 22. Radiation pattern at 915 MHz, Figure 1 as reference (dB),
with 2 m RG174 cable and 60x60 cm metal plate.
Figure 23. Radiation pattern at 1805 MHz, Figure 1 as reference (dB),
with 2 m RG174 cable and 60x60 cm metal plate.
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Figure 24. Radiation pattern at 1910 MHz, Figure 1 as reference (dB),
with 2 m RG174 cable and 60x60 cm metal plate.
Figure 25. Radiation pattern at 2110 MHz, Figure 1 as reference (dB),
with 2 m RG174 cable and 60x60 cm metal plate.
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6. MECHANICAL DRAWINGS
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7. Installation
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8. Packaging
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