MA1130.A.LBICGT.002 TAOGLAS | Alldatasheet
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SPE-17-8-005/A/WY Page 1 of 30 SPECIFICATION PATENT PENDING Part No. : MA1130.A.LBICGT.002 Product Name : Raptor II - 6 in 1 Next Generation Dual Fin Permanent Mount External Antenna with GPS/GLONASS/BeiDou, LTE MIMO 1&2, Wi-Fi MIMO 1&2 and AM/FM Feature 2 x 4G/3G/2G MIMO Antenna (698~960MHz, 1710~2170MHz,2300~2700MHz ) 1 x GPS/GLONASS/BeiDou Antenna ( 1561/1575.42/1602MHz ) 2 x Wi-Fi 2.4GHz/5.8GHz MIMO Antenna MIMO2 antenna can be replaced by DSRC band 1 x AM/FM Antenna IP67 Waterproof Front End SAW Filter High Efficiency/Peak Gain Outdoor Antenna SMA(M) and RP-SMA(M) Connectors as standard (Fakra Optional) 0.3m RG-316 Cable as standard RoHS Compliant
SPE-17-8-005/A/WY Page 2 of 30 1. Introduction The Raptor II MA1130.A is a 6in1 next generation, dual fin, permanent screw mount antenna for vehicle roof applications. It is fully IP67 waterproof with a distinct quality dual fin high gloss finish housing that has passed highest automotive hardness testing levels to help prevent scratching. The 6 separate antennas inside support frequency bands in LTE, GPS/GLONASS/BeiDou, Wi-Fi, 4G/3G/2G and AM/FM radio. This outstanding, patent pending , antenna delivers powerful MIMO antenna technology for LTE , Wi-Fi 2.4/5.8GHz 802.11n and the emerging 802.11ac, plus a high gain omnidirectional DSRC (V2V/V2X) 5.9GHz antenna, and an optimized GPS/GLONASS/BeiDou patch antenna for location. The LTE antennas also include backward compatibility to work at most worldwide 2G and 3G bands. Applications include: - Next generation OEM car connectivity - Multimedia, navigation and telematics systems - V2V and V2X applications - Fleet management - Real-time HD video streaming - E-Call Examples of new uses that require such a highly sophisticated antenna are real-time streaming applications that demand high speed video uplink and downlink into the cabin of the car. These challenges are resolved by the highly efficient, high gain MIMO antennas, with high isolation, which is necessary to achieve the required signal to noise ratio and throughput.
SPE-17-8-005/A/WY Page 3 of 30 The Raptor II can also be customized for your particular wireless application and frequency band, subject to NRE and MOQ. The six standard cables are .3m RG-316, terminating in SMA(M) for GNSS, LTE MIMO 1&2, AM/FM, DSRC and RP SMA(M) for Wi-Fi. Cable length and connector types are customizable. For short cable runs up to 1 meter, RG174 can be used. For longer cable runs it is recommended to use low loss CFD200 cable extensions. Contact your regional Taoglas sales office for support.
SPE-17-8-005/A/WY Page 4 of 30 2. Specification Table 4G/3G/2G MIMO Band LTE 700 GSM 850 GSM 900 DCS PCS UMTS1 LTE 2600 Frequency (MHz) 698-824 824-894 880-960 1710-1880 1850-1990 1920-2170 2500-2690 MIMO 1 Average Gain Return loss (dB) * <-6 <-6 <-4 <-5 <-10 <-10 <-8 MIMO 2 Average Gain Return loss (dB) * <-6 <-6 <-4 <-5 <-10 <-10 <-8 Polarization Linear Impedance 50Ω Cable 30cm RG-316 standard, fully customizable Connector SMA Male Straight, fully customizable
SPE-17-8-005/A/WY Page 5 of 30 2.4GHz/5.8GHz MIMO Frequency (GHz) 2.4~2.5 5.15~5.85 MIMO 1 Peak Gain (dBi) * 3.43 2.92 Average Gain (dBi) * -4.38 -4.23 Efficiency (%)* 36.57 37.75 Return loss (dB) * <-10 <-6 MIMO 2 Peak Gain (dBi) * 6.81 6.37 Average Gain (dBi) * -2.86 -3.65 Efficiency (%)* 52.66 44.19 Return loss (dB) * <-10 <-6 Polarization Linear Impedance 50Ω Cable 30cm RG-316 standard, fully customizable Connector SMA Male RP Straight, fully customizable DSRC Frequency (GHz) 5.850~5.925 Peak Gain (dBi) * 6.6 Average Gain (dBi) * -3.81 Efficiency (%)* 41.69 Return loss (dB) * <-10 Polarization Linear Impedance 50Ω Cable 30cm RG-316 standard, fully customizable Connector SMA Male Straight, fully customizable
SPE-17-8-005/A/WY Page 6 of 30 GPS/GLONASS/BeiDou Center Frequency fc BeiDou:1561.098 ± 2MH GPS:1575.42±3 MHz GLONASS:1602±0.
5 MHz
VSWR(@Center Frequency) < 2 Polarization RHCP Impedance 50Ω Antenna size 25*25*4mm Cable 30cm RG-316 standard, fully customizable Connector SMA Male Straight, fully customizable Frequency 1558~1610MHz Gain @3V 28 dB typical DC Power Input 3V Noise Figure @3V 2.8dB Power Consumption @3V 10 mA MECHANICAL Antenna Dimensions 176.2*84.5*70.8mm ( L*W*H ) Housing PC Waterproof IP67 Base Aluminum Thread diameter M20 x 1.5P Nut Nickel Plated Steel ENVIRONMENTAL Operation Temperature -40°C to 85°C Storage Temperature -40°C to 90°C Humidity Non-condensing 65°C 95% RH * All measurements were conducted with 30cm cable length
SPE-17-8-005/A/WY Page 7 of 30 3. LTE MIMO 3.1. LTE MIMO1 and 2 Characteristics 3.1.1. Return Loss on 30*30cm GND 3.1.2. Efficiency on 30*30cm GND 100 600 800 1000 1200 1400 1600 1800 2000 2200 2400 2600 2800 3000 Efficiency [%] Frequency [MHz] LTE MIMO 1 on 30x30cm ground plane LTE MIMO 2 on 30x30cm ground plane
SPE-17-8-005/A/WY Page 8 of 30 3.1.3. Peak Gain on 30*30cm GND 3.1.4. Average Gain on 30*30cm GND 600 800 1000 1200 1400 1600 1800 2000 2200 2400 2600 2800 3000 Peak Gain [dBi] Frequency [MHz] LTE MIMO 1 on 30x30cm ground plane LTE MIMO 2 on 30x30cm ground plane 600 800 1000 1200 1400 1600 1800 2000 2200 2400 2600 2800 3000 Aver Gain [dB] Frequency [MHz] LTE MIMO 1 on 30x30cm ground plane LTE MIMO 2 on 30x30cm ground plane
SPE-17-8-005/A/WY Page 9 of 30 3.2. LTE Characteristics with different cable length 3.2.1. MIMO 1 Efficiency 3.2.2. MIMO 1 Peak Gain
SPE-17-8-005/A/WY Page 10 of 30 3.2.3. MIMO 1 Average Gain 3.2.4. MIMO 2 Efficiency
SPE-17-8-005/A/WY Page 11 of 30 3.2.5. MIMO 2 Peak Gain 3.2.6. MIMO 2 Average Gain
SPE-17-8-005/A/WY Page 12 of 30 3.3. 3D Radiation Pattern X Z Y
SPE-17-8-005/A/WY Page 13 of 30 3.3.1. LTE MIMO1 3D Radiation Pattern @756MHz @880MHz @1710MHz @824MHz @960MHz @1880MHz
SPE-17-8-005/A/WY Page 14 of 30 @1990MHz @2300MHz @2500MHz @2170MHz @2290MHz
SPE-17-8-005/A/WY Page 15 of 30 3.3.2. LTE MIMO2 3D Radiation Pattern @1710MHz @1880MHz @880MHz @960MHz @824MHz @756MHz
SPE-17-8-005/A/WY Page 16 of 30 @1990MHz @2170MHz @2500MHz @2300MHz @2690MHz
SPE-17-8-005/A/WY Page 17 of 30 4. Wi-Fi 2.4/5.8GHz 4.1. Wi-Fi 2.4/5.8GHz Characteristics 4.1.1. Return Loss on 30*30cm GND 4.1.2. Isolation on 30*30cm GND
SPE-17-8-005/A/WY Page 18 of 30 4.1.3. Average Gain on 30*30cm GND 4.1.4. Peak Gain on 30*30cm GND
SPE-17-8-005/A/WY Page 19 of 30 4.1.5. Efficiency on 30*30cm GND 4.2. Wi-Fi Characteristics with different cable length 4.2.1. Average Gain
SPE-17-8-005/A/WY Page 20 of 30 4.2.2. Peak Gain 4.2.3. Efficiency
SPE-17-8-005/A/WY Page 21 of 30 4.3. 3D Radiation Patterns X Z Y
SPE-17-8-005/A/WY Page 22 of 30 @2450MHz @5550MHz
SPE-17-8-005/A/WY Page 23 of 30 @2450MHz @5550MHz
SPE-17-8-005/A/WY Page 24 of 30 5. DSRC 5.9GHz 5.1. DSRC 5.9GHz Characteristics 5.1.1. Average Gain on 50*50cm GND 5.1.2. Peak Gain on 50*50cm GND
SPE-17-8-005/A/WY Page 25 of 30 5.1.3. Efficiency on 50*50cm GND 5.2. DSRC Characteristics with different cable length 5.2.1. Average Gain
SPE-17-8-005/A/WY Page 26 of 30 5.2.2. Peak Gain 5.2.3. Efficiency
SPE-17-8-005/A/WY Page 27 of 30 6. Drawing
SPE-17-8-005/A/WY Page 28 of 30
SPE-17-8-005/A/WY Page 29 of 30 7. Packaging
SPE-17-8-005/A/WY Page 30 of 30 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.