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Draft Specification – Subject to Change DSP-16-08-065/A Page 1 of 28 DRAFT SPECIFICATION Part No. : MA9000.A.LBIWXYZCGHM.001 Product Name : MA9000 11in1 Adhesive Mount Guardian Antenna LTE MIMO + Wi-Fi MIMO + GNSS Features : 6*LTE MIMO Antennas (3x2 MIMO) 698-960MHz/1710-2170MHz/2490-2690MHz 4*MIMO Dual Band Wi-Fi Antenna (2x2 MIMO) 2400-2500MHz/4900-5850MHz Worldwide 4G Bands including 3G and 2G GPS/GLONASS 1575.42–1602MHz Active Patch IP67 Enclosure Dims: 540*185*35mm 1M cable (CFD-200-FR) with Fakra connectors as standard Custom Cables and Connectors Available RoHS Compliant
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1 Introduction
The MA9000 Guardian antenna is a low profile, heavy-duty, fully IP67 waterproof external M2M antenna for use in worldwide telematics applications which require best in class LTE and Wi-Fi performance. This unique product delivers powerful worldwide 4G LTE MIMO antenna technology at 700MHz/800MHz/1700MHz/1800MHz/2600MHz and dual band Wi -Fi. It uses Flame Retardant Cables making it ideal for Airline, Bus and Rail applications. Typical applications: - 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 LTE 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 self -interference. 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 sales office for support.
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2 Specification
LTE Band Class 20 8 3 1 40 7 Frequency MHz 791~862 880~960 1710~1880 1920~2170 2300~2400 2500~2690 Efficiency (%) LTE - Antenna 1 50 46 48 48 34 39 LTE - Antenna 2 37 24 43 35 44 50 LTE - Antenna 3 36 26 48 48 50 48 LTE - Antenna 7 38 27 47 39 43 48 LTE - Antenna 8 43 28 42 26 51 45 LTE - Antenna 9 56 47 58 45 38 39 Peak Gain (dBi) Wi-Fi Antenna Performance 2400MHz 2450MHz 2500MHz 5150MHz 5300MHz 5800MHz Efficiency (%) Wi-Fi - Antenna 4 57 52 59 - - - Wi-Fi - Antenna 5 45 39 46 38 46 37 Wi-Fi - Antenna 6 43 38 42 25 37 38 Wi-Fi - Antenna 10 53 53 56 - - - Peak Gain (dBi) Wi-Fi - Antenna 4 3.9 4.0 4.4 - - - Wi-Fi - Antenna 10 2.8 2.1 2.2 - - - Impedance 50Ω Polarization Linear VSWR < 3 (when measured with 100mm 1.37 cable) Cable 1 meter CFD-200-FR standard, fully customizable Connector Fakra standard, fully customizable
Draft Specification – Subject to Change DSP-16-08-065/A Page 4 of 28 GNSS Antenna Frequency GPS: 1575.42 ± 1.023MHz GLONASS: 1602 ± 5MHz Polarization RHCP Antenna Gain at Zenith (Ceramic Patch only) GPS: 1.5 dBi typ. @zenith GLONASS: +0 dBi typ. @zenith Total Antenna Gain at Zenith (Antenna+SAW+LNA+ Cable+Connector) GPS 1575.42MHz: 26 3dBi GLONASS 1602MHz: 27.5 3dBi Impedance 50Ω Output VSWR Max 2.0 MECHANICAL Connector Fakra Cable 1M CFD-200-FR ELECTRICAL Frequency 1574~1610MHz. Out of Band Attenuation 1592 140MHz 15dB min Output Impedance 50Ω Output VSWR 2.0 Max Pout at 1dB Gain -2 dBm Typ. Compression Point -6dBm Min LNA Gain, Power Consumption and Noise Figure Voltage LNA Gain (Typ) Power Consumption (Typ) Noise Figure (Typ) Min 1.8V 22dB 5mA 2.6dB Typ 3.0V 28dB 10mA 2.6dB Max 5.5V 31dB 23mA 2.9dB
Draft Specification – Subject to Change DSP-16-08-065/A Page 5 of 28 MECHANICAL Antenna Dimension 540*185*35mm Casing PC coated UV stabilized ABS Connector Fakra Cable 1M CFD-200-FR Weight(g) TBC Base and Thread TBC ENVIRONMENTAL Operation Temperature -40°C to +85°C Storage Temperature -40°C to +90°C Humidity Non-condensing 65°C 95% RH
2.1 GNSS
3 Test Set Up
New image to be included here. Figure 1. Left: S11 and VSWR test set up; Right: OTA test set up in Taoglas Ireland ETS-Lindgren Chamber connect to the antenna board.
4 Antenna Performance
4.1 Return Loss
Figure 2. Return Loss of Antenna 1, 2, 3 Figure 3. Return Loss of Antenna 7, 8, 9
4.2 VSWR
Figure 6. VSWR of the Antenna 1, 2, 3 Figure 7. VSWR of Antenna 7, 8, 9
4.3 Isolation
Figure 10. Isolation results between LTE antennas Figure 11. Isolation results between LTE antennas
4.4 Efficiency
Figure 14. Efficiency of Antennas 1, 2, 3
4.5 Peak Gain
Figure 18. Peak gain of Antenna 1, 2, 3 Figure 19. Peak gain of Antenna 7, 8, 9
4.6 Average Gain
Figure 22. Average gain of Antennas 1, 2, 3 Figure 23. Average gain of Antennas 7, 8, 9
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4.7 LNA Gain and Out Band Rejection @ 3V
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4.8 LNA Noise Figure @ 3V
Draft Specification – Subject to Change DSP-16-08-065/A Page 21 of 28 4.9 2D Radiation Patterns
4.9.1 Antenna 1
4.9.2 Antenna 2
4.9.3 Antenna 3
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4.9.4 Antenna 4
4.9.5 Antenna 5
4.9.6 Antenna 6
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4.9.7 Antenna 7
4.9.8 Antenna 8
4.9.9 Antenna 9
Draft Specification – Subject to Change DSP-16-08-065/A Page 24 of 28 4.10 2D Radiation Pattern for 1575.42MHz XZ & YZ Plane
Draft Specification – Subject to Change DSP-16-08-065/A Page 25 of 28 4.11 2D Radiation Pattern for 1602MHZ XZ & YZ Plane
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5 Mechanical Drawing
Currently under development
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6 Packing Information
Currently under development
Draft Specification – Subject to Change DSP-16-08-065/A Page 28 of 28 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.