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MA9908.A.001
ANTENNAS ADHESIVE MOUNT COMBO ANTEN
⚠️ Reference pricing provided. In case of supply shortages, we will connect you with our trusted procurement partners to ensure your project's continuity.
- Manufacturer: TAOGLAS / PARTNER STOCK
- Product type:
- SVHC: No SVHC (07-Nov-2024)
| Delivery and price | |
|---|---|
| Units per pack | 3 |
| Price | 275.94 € |
| Current stock | 10+ |
| Lead time | 30 days |
## **Specification**
Part No. : **MA9908.A.001** Product Name : GuardianX 1M 8in1 1*Active GNSS 4*LTE MIMO 3*WiFi MIMO Features : Low-profile Housing with Wall Mount 4* LTE MIMO 698 to 960MHz/1710 to 2170MHz/ 2490 to 2690MHz/ 3300 to 3600MHz 3* WIFI MIMO 2.4GHz/5.8 GHz 1* GPS-GLONASS- Antenna Worldwide 4G Bands including 3G and 2G IP67 Waterproof Enclosure Dims: 360mm * 160mm * 16.5mm 1M Low Loss TGC-200 and RG174 with SMA(M)/RPSMA(M) connectors Custom Cables and Connectors Available **RoHS Compliant**
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## **1. Introduction**
The Taoglas GuardianX MA9908.A.001 is a low profile heavy duty, fully IP67 waterproof external antenna. Combining 8 elements into one antenna, 1 GPS/GLONASS/Galileo, 4* LTE MIMO (698 to 960MHz/1710 to 2170MHz/ 2490 to 2690MHz/ 3300 to 3600MHz) and 3* Dual-band Wi-Fi MIMO 2.4-5.8GHz. This unique product delivers powerful worldwide 4G LTE MIMO antenna technology at 700MHz/800MHz/1700MHz/1800MHz/2600MHz and dual band Wi-Fi.
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
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**
|Frequency (MHz)|Frequency (MHz)|2400~2500|5150~5850|
|---|---|---|---|
|Efficiency (%)||||
|MIMO_1|1M|71.50|59.78|
|MIMO_2|1M|79.81|59.22|
|MIMO_3|1M|79.96|59.13|
|Average Gain (dBi)||||
|MIMO_1|1M|-1.46|-2.23|
|MIMO_2|1M|-0.98|-2.28|
|MIMO_3|1M|-0.97|-2.28|
|Peak Gain (dBi)||||
|MIMO_1|1M|4.08|3.47|
|MIMO_2|1M|4.53|4.47|
|MIMO_3||||
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|**2G/3G/4G MIMO Antenna**<br>~~|~~|**2G/3G/4G MIMO Antenna**<br>~~|~~|**2G/3G/4G MIMO Antenna**<br>~~|~~|**2G/3G/4G MIMO Antenna**<br>~~|~~|**2G/3G/4G MIMO Antenna**<br>~~|~~|**2G/3G/4G MIMO Antenna**<br>~~|~~|**2G/3G/4G MIMO Antenna**<br>~~|~~|**2G/3G/4G MIMO Antenna**<br>~~|~~|**2G/3G/4G MIMO Antenna**<br>~~|~~|
|---|---|---|---|---|---|---|---|---|
|Frequency (MHz)||LTE700|GSM850|GSM900|DCS|PCS|UMTS1|LTE2600|
|||698~824|824~894|880~960|1710~1880|1710~1880<br>1850~1990|1850~1990<br>1920~2170|1920~2170<br>2490~2690|
|**Efficiency (%)**<br>~~|~~|||||||||
|MIMO_1|1M|57.15|49.97|40.80|61.56|60.82|57.58|52.02|
|MIMO_2|1M|58.48|54.30|46.08|66.07|66.98|64.51|56.55|
|MIMO_3|1M|52.24|60.09|53.84|65.28|67.19|67.71|71.62|
|MIMO_4<br>1M<br>52.24<br>60.09<br>53.84<br>65.28<br>67.19<br>67.71<br>71.62<br>**Average Gain (dBi)**|||||||||
|MIMO_1|1M|-2.43|-3.01|-3.89|-2.11|-2.16|-2.40|-2.84|
|MIMO_2|1M|-2.33|-2.65|-3.36|-1.80|-1.74|-1.90|-2.48|
|MIMO_3|1M|-2.82|-2.21|-2.69|-1.85|-1.73|-1.69|-1.45|
|MIMO_4|1M|-2.82|-2.21|-2.69|-1.85|-1.73|-1.69|-1.45|
|**Peak Gain (dBi)**<br>~~|~~|||||||||
|MIMO_1|1M|1.41|1.53|1.04|3.17|3.54|3.91|4.23|
|MIMO_2|1M|1.29|1.90|1.67|4.07|4.07|4.15|5.10|
|MIMO_3|1M|2.17|2.51|2.44|3.32|3.32|3.59|5.63|
|MIMO_4|1M|2.17|2.51|2.44|3.32|3.32|3.59|5.63|
|Impedance|50 Ω||||||||
|Polarization|Linear||||||||
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|CERAMIC PATCH<br>~~eo~~|CERAMIC PATCH<br>~~eo~~|CERAMIC PATCH<br>~~eo~~|CERAMIC PATCH<br>~~eo~~|
|---|---|---|---|
|Frequency|1574~1610MHz|||
|Gain @ Zenith|1575.42MHz 1.5 dBic Typ. @ Zenith<br>1602MHz +0 dBic Typ. @ Zenith|||
|Gain at 90°with LNA|1575.42MHz: 31 ± 3dBic<br>1602MHz: 30 ± 3dBic|||
|Polarization|RHCP|||
|Axial Ratio|6.0dB max. @ 1575.42MHz Zenith<br>14.0dB max. @ 1602MHz Zenith|||
|Patch Dimension|25.1*25.1*4mm|||
|LNA<br>~~eee~~||||
|Frequency|1574~1610MHz|||
|Outer Band<br>Attenuation|1592±140MHz 15dB min.|||
|Output Impedance|50Ω|||
|Output VSWR|2.0 Max|||
|Pout at 1dB Gain<br>Compression point|Typ. -2dBm|||
||Min. -6dBm|||
|Input Voltage|Min:1.8V Typ. 3.0V Max:5V|||
|LNA Gain, Power Consumption and Noise Figure||||
|Input Voltage|Min:1.8V|Typ. 3.0V|Max: 5.5V|
|Total Gain @ Zenith|25dBic|31dBic|34dBic|
|Current Consumption|5mA|10mA|23mA|
|Noise Figure|3dB|3dB|3.3dB|
|Cable|3m RG174 standard, fully customizable|||
|Connector|SMA(M) standard, standard, fully customizable|||
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|Dimensions|360mm * 160mm * 16.5mm|
|---|---|
|Cable|1M TGC200 for LTE/WIFI – Fully Customizable<br>1M RG174 for GNSS – Fully Customizable|
|Connector|LTE_SMA-Plug – Fully Customizable<br>WIFI_RP-SMA-Plug – Fully Customizable<br>GNSS_SMA-Plug – Fully Customizable|
|Casing|UV Resistant PC|
|Sealant|Rubber Stopper|
|Weight|1250g|
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## **3. Antenna Characteristics**
## **3.1 Block Diagram (Active antenna)**
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## **3.1.1 Return Loss**
## **3.1.2 Out Band Rejection @3V**
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## **3.1.3 LNA Noise Figure and Gain @3V**
## **3.1.4 Efficiency**
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## **3.1.5 Average Gain**
## **3.1.6 Peak Gain**
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## **3.1.7 Axial Ratio**
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## **3.1.8 2D Radiation Patterns**
## **XY Plane**
## **ZX Plane**
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## **ZY Plane**
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## **3.1.9 3D Radiation Patterns**
## **1575.42MHz**
## **1602MHz**
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## **3.2 LTE & WIFI Antenna**
## **3.2.1 Return loss**
LTE
WIFI
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## **3.2.2 Isolation**
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WIFI
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## **3.2.3 Efficiency**
LTE
WIFI
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## **3.2.4 Average Gain**
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## **3.2.4.1 Peak Gain**
LTE
WIFI
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## **4. Antenna Radiation Patterns**
- **4.1 Antenna Setup (Antenna Test Setup in Anechoic Chamber)**
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## **4.2 2D Radiation Patterns**
## **4.2.1 LTE_MIMO1**
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## **4.2.2 LTE_MIMO2**
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## **4.2.3 LTE_MIMO3**
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## **4.2.4 LTE_MIMO4**
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## **4.2.5 WIFI_MIMO1**
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## **4.2.6 WIFI_MIMO2**
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## **4.2.7 WIFI_MIMO3**
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## **4.3 3D Radiation Patterns**
## **4.3.1 LTE_MIMO1**
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## **4.3.2 LTE_MIMO2**
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## **4.3.3 LTE_MIMO3**
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## **4.3.4 LTE_MIMO4**
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## **4.3.5 WIFI_MIMO1**
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## **4.3.6 WIFI_MIMO2**
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## **4.3.7 WIFI_MIMO3**
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Reproduction, use or disclosure to third parties without express permission is strictly prohibited.
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SPE-18-8-096/A/AW
Updated at June 9, 2026
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When a component is unavailable, discontinued or has an unacceptable lead time, we tap into our network of vetted European and Asian distributors to source what you need — without compromising on quality or traceability.
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We identify pin-to-pin, electrically equivalent substitutes that meet the same certifications (RoHS, AEC-Q100, REACH) as your original specification — validated against datasheets, not just part numbers. Often at a lower cost.
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