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MA310.A.LB.003
Combo Antenna, 2.49GHz to 2.69GHz, -4.19dBi Gain, 50ohm, Vertical Polarisation, Magnetic/Adhesive
⚠️ 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
- Product type:
- Antenna Type:Combo; Frequency Min:2.49GHz; Frequency Max:2.69GHz; Antenna Mounting:Magnetic / Adhesive; Gain:-4.19dBi; VSWR:-; Input Power:-; Input Impedance:50ohm; Antenna Polarisa
- Gain: -4.19dBi
- SVHC: To Be Advised
- VSWR: -
- Input Power: -
- Antenna Type: Combo
- Frequency Max: 2.69GHz
- Frequency Min: 2.49GHz
- Product Range: -
- Input Impedance: 50ohm
- Antenna Mounting: Magnetic / Adhesive
- Antenna Polarisation: Vertical
| Delivery and price | |
|---|---|
| Units per pack | 50 |
| Price | 38.75 € |
| Current stock | 10+ |
| Lead time | 30 days |
## **SPECIFICATION** Part No. : **MA310.A.LB.003** Product Name : Magnet Mount GPS/GLONASS-SMA(M) 4G LTE/Cellular-SMA(M) 3M CFD-200 Features : 1*LTE Antenna 1*Active GNSS Antenna - GPS L1 and GLONASS L1 Permanent (Screw) Mounting IP67 Rated Enclosure LTE: 3M TGC-200 Cable and SMA(M)ST Connector GNSS: 3M RG-174 Cable and SMA(M)ST Connector Dims: mm **RoHS Compliant** Page 1 of 42 SPE-18-8-089/A/AW ## **1. Introduction** The MA310 antenna is a combination small form factor high performance GPS/GLONASS and Penta-band Cellular (GSM/GPRS/CDMA/ PCS/DCS/ WCDMA/UMTS) antenna to simplify AVL or Fleet management antenna systems worldwide. It comes with magnetic mount as standard. An internal O-ring meets stringent IP-67 waterproof standards. With the strongest GPS/GLONASS and Cellular antenna design team in the industry and rigorous testing Taoglas offers guaranteed performance with your system and your environment. The standard version comes with 3 metres RG174 cable and SMA(M) connectors for both GPS/GLONASS and TGC-200 for Cellular feeds. Cables and connectors are customizable upon requests. ## **Features** ## **GPS/GLONASS** - High LNA Gain up to 31 dB - Antenna Gain 28 ± 2 dB - Miniaturized to 56.2 x 16.8 mm - Low Noise Figure 2.8 dB typ. for GPS - 3.2 dB typ. for GLONASS - Ultra-Low Power Consumption 7~10mA typ. ( at 3.3V DC) ## **Cellular** - Advanced penta-band cellular antenna - (GSM/GPRS/CDMA/PCS/DCS/WCDMA/UMTS/HSPA) - GSM850: 824~896MHz, GSM900: 880~960MHz, - DCS: 1710~1880MHz, DCS: 1850~1990MHz - UMTS/WCDMA/HSPA: 1920~2170MHz ## **Other** - IP67 Water Resistant due to Internal O-Ring Structure - Quality textured covert design. Low profile. - ABS housing - Optional cables and connectors Page 2 of 42 SPE-18-8-089/A/AW ## ROHS Compliant ## **2. Specification** |**LTE Antenna**|**LTE Antenna**|**LTE Antenna**|**LTE Antenna**|**LTE Antenna**|**LTE Antenna**|**LTE Antenna**|**LTE Antenna**|**LTE Antenna**| |---|---|---|---|---|---|---|---|---| |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>~~|~~||||||||| |Free Space|0.3M|24.98|63.74|66.67|50.46|60.06|58.44|40.03| ||1M|23.74|60.87|63.66|46.01|54.76|53.84|36.51| ||2M|22.15|55.72|58.06|41.00|48.41|47.18|31.73| ||3M|20.44|51.81|54.05|36.44|42.61|41.71|27.66| |On 30x30cm<br>Ground Plane<br>~~LO~~|0.3M|36.38|53.95|41.12|61.58|58.88|53.86|47.87| ||1M|34.52|51.52|39.26|56.16|53.70|49.62|43.66| ||2M|32.22|47.22|35.81|50.05|47.49|43.48|37.74| ||3M<br>~~LO~~|29.79<br>~~LO~~|43.85<br>~~LO~~|33.35<br>~~LO~~|44.50<br>~~LO~~|41.79<br>~~LO~~|38.45<br>~~LO~~|32.64<br>~~LO~~| |**Average Gain (dB)**<br>~~LO~~||||||||| |Free Space|0.3M|-6.02|-1.96|-1.76|-2.97|-2.21|-2.33|-3.98| ||1M|-6.25|-2.16|-1.96|-3.37|-2.62|-2.69|-4.38| ||2M|-6.55|-2.54|-2.36|-3.87|-3.15|-3.26|-4.99| ||3M|-6.89|-2.86|-2.67|-4.38|-3.71|-3.80|-5.58| |On 30x30cm<br>Ground Plane|0.3M|-4.39|-2.68|-3.86|-2.11|-2.30|-2.69|-3.20| ||1M|-4.62|-2.88|-4.06|-2.51|-2.70|-3.04|-3.60| ||2M|-4.92|-3.26|-4.46|-3.01|-3.23|-3.62|-4.23| ||3M|-5.26|-3.58|-4.77|-3.52|-3.79|-4.15|-4.86| |**Peak Gain (dBi)**<br>~~|~~||||||||| |Free Space|0.3M|-4.01|-1.14|-1.31|-2.33|-1.71|-1.71|-2.69| ||1M|-4.21|-1.34|-1.51|-2.73|-2.11|-2.11|-3.09| ||2M|-4.51|-1.74|-1.91|-3.23|-2.71|-2.71|-3.69| ||3M|-4.91|-2.04|-2.21|-3.83|-3.21|-3.21|-4.19| |On 30x30cm<br>Ground Plane|0.3M|-3.13|-2.43|-2.81|-1.62|-2.10|-2.10|-2.76| ||1M|-3.33|-2.63|-3.01|-2.02|-2.50|-2.50|-3.16| ||2M|-3.63|-3.03|-3.41|-2.52|-3.10|-3.10|-3.86| ||3M|-4.03|-3.33|-3.71|-3.02|-3.60|-3.60|-4.46| |Impedance|50 Ω|||||||| |Return loss|< -3 dB|||||||| |Polarization|Vertical|||||||| SPE-18-8-089/A/AW Page 3 of 42 |**GNSS ELECTRICAL**<br>~~LSS~~<br>~~eee~~|**GNSS ELECTRICAL**<br>~~LSS~~<br>~~eee~~|**GNSS ELECTRICAL**<br>~~LSS~~<br>~~eee~~|**GNSS ELECTRICAL**<br>~~LSS~~<br>~~eee~~| |---|---|---|---| |Frequency<br>~~LSS~~|GPS L1: 1575.42 MHz ± 1.023 MHz<br>GLONASS L1: 1602 MHz ± 1.023 MHz<br>~~LSS~~<br>~~eee~~||| |Bandwidth -<br>Return Loss <-10 dB|6 MHz min||| |Return loss (GPS L1<br>GLONASS L1)|< -10 dB||| |Passive Gain at Zenith<br>(GPS L1 and<br>GLONASS L1)|+1.0 dBic typ.||| |Polarization|RHCP||| |Impedance|50 Ω||| |LNA Out-band<br>Attenuation|fo = 1575.42MHz<br>fo ± 30 MHz 5dB Min.<br>fo ± 50 MHz 20dB Min.<br>fo ± 100 MHz 25dB Min.||| |Input Voltage|Min:1.8V|Typ. 3.0V|Max: 5.5V| |Total Gain @ Zenith|25dBic|27dBic|29dBic| |Current Consumption|6mA|12mA|30mA| |Noise Figure|3.5dB|3.5dB|3.7dB| Page 4 of 42 SPE-18-8-089/A/AW |**MECHANICAL**<br>~~eee)~~|**MECHANICAL**<br>~~eee)~~| |---|---| |Dimensions|Φ 77*21mm| |Cable|LTE: 3000mm TGC-200<br>GNSS: 3000mm RG-174| |Connector|LTE: SMA(M)<br>GNSS: SMA(M)| |Casing|PC+ABS| |Adhesive|3M 9448HK + CR4305| |Sealant|Rubber Stopper| |Weight|g| |**ENVIRONMENTAL**<br>~~eee)~~|| |Protection|IP67| |Corrosion|5% NaCl for 96hrs - Nickel plated steel base and thread| |Temperature Range|-40°C to +85°C| |Thermal Shock|100 cycles -40°C to +85°C| |Humidity|Non-condensing 65°C 95% RH| |Shock (Drop Test)|1m drop on concrete 6 axes| |Cable Pull|8 Kgf| |Recommended MountingTorque|N∙m| |Maximum MountingTorque|N∙m| Page 5 of 42 SPE-18-8-089/A/AW ## **3. Antenna Characteristics** ## **3.1. LTE Antennas** ## **3.1.1. Return Loss – LTE** ## **3.1.2. Efficiency – LTE** SPE-18-8-089/A/AW Page 6 of 42 ## **3.1.3. Average Gain – LTE** ## **3.1.4. Peak Gain – LTE** Page 7 of 42 SPE-18-8-089/A/AW ## **3.2. GNSS Antenna** ## **3.2.1. Block Diagram (Active antenna)** ## **3.2.2. Return Loss – GNSS Antenna** **==> picture [445 x 244] intentionally omitted <==** **----- Start of picture text -----**<br> 0<br>-5<br>-10<br>-15<br>-20<br>-25<br>-30<br>-35<br>-40<br>1400 1450 1500 1550 1600 1650 1700 (MHz)<br>(dB)<br>**----- End of picture text -----**<br> SPE-18-8-089/A/AW Page 8 of 42 ## **3.2.3. Impedance – GNSS Antenna** ## **3.2.4. Efficiency – GNSS Antenna (passive** ## **measurement)** **==> picture [446 x 245] intentionally omitted <==** **----- Start of picture text -----**<br> 90<br>(] ] i]<br>t ' t<br>(] ] i]<br>80 t ] i]<br>(] ] i]<br>i) ' i]<br>(] ] i]<br>70 ‘ i]<br>(]<br>t i] i]<br>i) ] i]<br>60 ( i ] i]<br>i] i] i]<br>(] ] i]<br>50 i] 1] i]<br>i) i] i]<br>i) i] i]<br>() ] ]<br>40 i) i] i]<br>i) i] i]<br>(] i] i]<br>i] i] i]<br>i] ] i]<br>30 t i] i]<br>(] ] i]<br>t i] t<br>(] ] i]<br>20 t 1 t<br>(] ] i]<br>t ' t<br>(] ] i]<br>10 1 1 t<br>(] ] i]<br>' 1 i]<br>(] ] i]<br>0<br>1400 1450 1500 1550 1600 1650 1700 (MHz)<br>(%)<br>**----- End of picture text -----**<br> Page 9 of 42 SPE-18-8-089/A/AW ## **3.2.5. Average Gain – GNSS Antenna (passive measurement)** **==> picture [440 x 245] intentionally omitted <==** **----- Start of picture text -----**<br> 5<br>0<br>-5<br>-10<br>1400 1450 1500 1550 1600 1650 1700 (MHz)<br>(dB)<br>**----- End of picture text -----**<br> - **3.2.6. Peak Gain – GNSS Antenna (passive** ## **measurement)** **==> picture [443 x 247] intentionally omitted <==** **----- Start of picture text -----**<br> 10<br>5<br>0<br>-5<br>1400 1450 1500 1550 1600 1650 1700 (MHz)<br>(dBi)<br>**----- End of picture text -----**<br> Page 10 of 42 SPE-18-8-089/A/AW ## **3.2.7. Axial Ratio – GNSS Antenna (Zenith is at 0** ° **)** ## **Axial Ratio at GPS L1 (1575.42 MHz)** ## **Axial Ratio at GLONASS L1 (1602 MHz)** Page 11 of 42 SPE-18-8-089/A/AW ## **3.2.8. GNSS Antenna Active Measurements** ## **LNA Gain @ 3.0V** **LNA Gain and Noise Figure @ 3.0V** Page 12 of 42 SPE-18-8-089/A/AW ## **4. Antenna Radiation Patterns** ## **4.1 Antenna Setup** ## **Free Space** **On 30*30cm GND** **==> picture [51 x 358] intentionally omitted <==** **----- Start of picture text -----**<br> Y<br>X<br>Z<br>Y<br>X<br>Z<br>**----- End of picture text -----**<br> Page 13 of 42 SPE-18-8-089/A/AW ## **4.2 2D Radiation Patterns** ## **4.2.1 LTE_Free Space** ## **XY Plane** ## **X** **==> picture [360 x 567] intentionally omitted <==** **----- Start of picture text -----**<br> 0<br>10<br>330 30<br>0<br>-10<br>300 60<br>-20<br>-30<br>270 -40 90 Y<br>240 120<br>617MHz<br>704MHz<br>210 150<br>751MHz<br>180 (dBi) 824MHz<br>X<br>0<br>10<br>330 30<br>0<br>-10<br>300 60<br>-20<br>-30<br>270 -40 90 Y<br>240 120<br>960MHz<br>1710MHz<br>210 150<br>1850MHz<br>180 (dBi) 1990MHz<br>X<br>0<br>10<br>330 30<br>0<br>-10<br>300 60<br>-20<br>-30<br>270 -40 90 Y<br>240 120<br>2170MHz<br>210 150<br>180 (dBi) 2500MHz<br>**----- End of picture text -----**<br> Page 14 of 42 SPE-18-8-089/A/AW **==> picture [360 x 183] intentionally omitted <==** **----- Start of picture text -----**<br> X<br>0<br>10<br>330 30<br>0<br>-10<br>300 60<br>-20<br>-30<br>270 -40 90 Y<br>240 120<br>2690MHz<br>210 150 3300MHz<br>180 (dBi) 3400MHz<br>**----- End of picture text -----**<br> **==> picture [218 x 185] intentionally omitted <==** **----- Start of picture text -----**<br> X<br>0<br>10<br>330 30<br>0<br>-10<br>300 60<br>-20<br>-30<br>270 -40 90 Y<br>240 120<br>210 150<br>180 (dBi)<br>**----- End of picture text -----**<br> 5150MHz 5550MHz 5925MHz Page 15 of 42 SPE-18-8-089/A/AW ## **XZ Plane** **==> picture [343 x 181] intentionally omitted <==** **----- Start of picture text -----**<br> Z<br>0<br>10<br>330 30<br>0<br>-10<br>300 60<br>-20<br>-30<br>270 -40 90 X<br>240 120<br>617MHz<br>704MHz<br>210 150<br>751MHz<br>180 (dBi) 824MHz<br>**----- End of picture text -----**<br> **==> picture [360 x 384] intentionally omitted <==** **----- Start of picture text -----**<br> Z<br>0<br>10<br>330 30<br>0<br>-10<br>300 a -~~ a 60<br>-20<br>-30<br>270 -40 90 X<br>240 120<br>960MHz<br>1710MHz<br>210 150<br>1850MHz<br>180 (dBi) 1990MHz<br>Z<br>0<br>10<br>330 30<br>0<br>-10<br>300 60<br>-20<br>-30<br>270 -40 90 X<br>240 120<br>2170MHz<br>WT 7<br>210 150<br>180 (dBi) 2500MHz<br>**----- End of picture text -----**<br> SPE-18-8-089/A/AW Page 16 of 42 **==> picture [360 x 412] intentionally omitted <==** **----- Start of picture text -----**<br> Z<br>0<br>10<br>330 30<br>0<br>-10<br>300 60<br>-20<br>-30<br>270 -40 90 X<br>240 120<br>2690MHz<br>210 150 3300MHz<br>180 (dBi) 3400MHz<br>Z<br>0<br>10<br>330 30<br>0<br>-10<br>300 60<br>-20<br>-30<br>270 -40 90 X<br>240 120<br>5150MHz<br>210 150 5550MHz<br>180 (dBi) 5925MHz<br>**----- End of picture text -----**<br> Page 17 of 42 SPE-18-8-089/A/AW ## **YZ Plane** **==> picture [360 x 608] intentionally omitted <==** **----- Start of picture text -----**<br> Z<br>0<br>10<br>330 30<br>0<br>-10<br>300 60<br>-20<br>-30<br>270 -40 90 Y<br>240 | \ - 120<br>617MHz<br>704MHz<br>210 150<br>751MHz<br>180 (dBi) 824MHz<br>Z<br>0<br>10<br>330 30<br>0<br>-10<br>300 60<br>-20<br>-30<br>270 -40 90 Y<br>240 120<br>960MHz<br>1710MHz<br>210 150<br>1850MHz<br>180 (dBi) 1990MHz<br>Z<br>0<br>10<br>330 30<br>0<br>-10<br>300 60<br>-20<br>-30<br>270 -40 90 Y<br>240 120<br>2170MHz<br>210 150<br>180 (dBi) 2500MHz<br>**----- End of picture text -----**<br> SPE-18-8-089/A/AW Page 18 of 42 **==> picture [403 x 430] intentionally omitted <==** **----- Start of picture text -----**<br> Z<br>0<br>10<br>330 30<br>0<br>-10<br>300 60<br>-20<br>-30<br>270 -40 90 Y<br>240 | () || 120<br>2690MHz<br>—a<br>210 150 3300MHz<br>180 (dBi) 3400MHz<br>Z<br>0<br>10<br>330 30<br>0<br>-10<br>300 60<br>-20<br>-30<br>aG2<br>270 -40 > ie 90 Y<br>240 120<br>5150MHz<br>210 150 5550MHz<br>180 (dBi) 5925MHz<br>**----- End of picture text -----**<br> Page 19 of 42 SPE-18-8-089/A/AW ## **4.2.2 LTE_On 30x30cm GND** ## **XY Plane** **==> picture [360 x 582] intentionally omitted <==** **----- Start of picture text -----**<br> X<br>0<br>10<br>330 30<br>0<br>-10<br>300 60<br>-20<br>-30<br>270 -40 90 Y<br>240 120<br>617MHz<br>704MHz<br>210 150<br>751MHz<br>180 (dBi) 824MHz<br>X<br>0<br>10<br>330 30<br>0<br>-10<br>300 60<br>-20<br>-30<br>270 -40 90 Y<br>240 120<br>960MHz<br>1710MHz<br>210 150<br>1850MHz<br>180 (dBi) 1990MHz<br>X<br>0<br>10<br>330 30<br>0<br>-10<br>300 60<br>-20<br>-30<br>270 -40 90 Y<br>240 120<br>2170MHz<br>210 150<br>180 (dBi) 2500MHz<br>**----- End of picture text -----**<br> Page 20 of 42 SPE-18-8-089/A/AW **==> picture [360 x 182] intentionally omitted <==** **----- Start of picture text -----**<br> X<br>0<br>10<br>330 30<br>0<br>-10<br>300 60<br>-20<br>-30<br>270 -40 90 Y<br>240 120<br>2690MHz<br>210 150 3300MHz<br>180 (dBi) 3400MHz<br>**----- End of picture text -----**<br> **==> picture [355 x 180] intentionally omitted <==** **----- Start of picture text -----**<br> X<br>0<br>10<br>330 30<br>0<br>-10<br>300 60<br>-20<br>-30<br>270 -40 90 Y<br>240 120<br>5150MHz<br>210 150 5550MHz<br>180 (dBi) 5925MHz<br>**----- End of picture text -----**<br> Page 21 of 42 SPE-18-8-089/A/AW ## **XZ Plane** **==> picture [360 x 606] intentionally omitted <==** **----- Start of picture text -----**<br> Z<br>0<br>10<br>330 30<br>0<br>-10<br>300 60<br>-20<br>-30<br>270 -40 90 X<br>240 120<br>617MHz<br>704MHz<br>210 150<br>751MHz<br>180 (dBi) aGala=D 824MHz<br>Z<br>0<br>10<br>330 30<br>0<br>-10<br>300 60<br>-20<br>-30<br>270 -40 90 X<br>240 120<br>960MHz<br>1710MHz<br>210 150<br>1850MHz<br>180 (dBi) aGla=D> 1990MHz<br>Z<br>0<br>10<br>330 30<br>0<br>-10<br>300 60<br>-20<br>-30<br>270 -40 90 X<br>240 120<br>2170MHz<br>SF ~<br>210 150<br>180 (dBi) 2500MHz<br>**----- End of picture text -----**<br> SPE-18-8-089/A/AW Page 22 of 42 **==> picture [360 x 381] intentionally omitted <==** **----- Start of picture text -----**<br> Z<br>0<br>10<br>330 30<br>0<br>-10<br>300 60<br>-20<br>-30<br>270 -40 90 X<br>240 120<br>2690MHz<br>210 150 3300MHz<br>180 (dBi) 3400MHz<br>Z<br>0<br>10<br>330 30<br>0<br>-10<br>300 60<br>fm -20<br>-30<br>270 -40 90 X<br>240 120<br>5150MHz<br>210 150 5550MHz<br>180 (dBi) 5925MHz<br>**----- End of picture text -----**<br> Page 23 of 42 SPE-18-8-089/A/AW ## **YZ Plane** **==> picture [360 x 582] intentionally omitted <==** **----- Start of picture text -----**<br> Z<br>0<br>10<br>330 30<br>0<br>300 /wa -10 —. ~~ SS NX\ 60<br>/ -20 a \ \<br>-30<br>270 -40 90 Y<br>240 120<br>\\ +—|—_+ y,/ a=» 617MHz<br>704MHz<br>210 150<br>751MHz<br>180 (dBi) a=» 824MHz<br>Z<br>0<br>10<br>330 30<br>0<br>300 //wa -10 Pie~—NX\ 60<br>-20<br>Y4Ma Ww Da \ \<br>-30<br>270 -40 90 Y<br>240 \ \\ Wwe y ba / 120<br>\ Ne 7 a a=» 960MHz<br>1710MHz<br>210 150<br>1850MHz<br>180 (dBi) a=» 1990MHz<br>Z<br>0<br>10<br>330 30<br>300 L/wa -10 aH 0 WwNX\ 60<br>J A ~ N N \<br>-20<br>-30<br>270 -40 90 Y<br>240 120<br>\ ~~ — ~ G74 J<br>\ \Y ~~ / 2170MHz<br>210 NS - _ [YY] 150<br>180 1 (dBi) 2500MHz<br>**----- End of picture text -----**<br> SPE-18-8-089/A/AW Page 24 of 42 **==> picture [360 x 406] intentionally omitted <==** **----- Start of picture text -----**<br> Z<br>0<br>10<br>330 30<br>0<br>-10<br>300 60<br>-20<br>-30<br>270 -40 90 Y<br>240 120<br>2690MHz<br>210 150 3300MHz<br>180 (dBi) 3400MHz<br>Z<br>0<br>10<br>330 30<br>0<br>-10<br>300 60<br>-20<br>-30<br>270 -40 90 Y<br>240 120<br>5150MHz<br>210 150 5550MHz<br>180 (dBi) 5925MHz<br>**----- End of picture text -----**<br> Page 25 of 42 SPE-18-8-089/A/AW ## **4.2.3 GNSS** **==> picture [454 x 190] intentionally omitted <==** **----- Start of picture text -----**<br> XY Plane<br>X<br>0<br>10<br>330 30<br>0<br>-10<br>300 60<br>-20<br>-30<br>270 -40 90 Y<br>240 120<br>1561MHz<br>210 150<br>1575.42MHz<br>180 (dBi) 1602MHz<br>**----- End of picture text -----**<br> ## **XZ Plane** **==> picture [356 x 183] intentionally omitted <==** **----- Start of picture text -----**<br> X<br>0<br>10<br>330 30<br>0<br>-10<br>300 60<br>-20<br>-30<br>270 -40 90 Z<br>240 120<br>1561MHz<br>210 150 1575.42MHz<br>180 (dBi) 1602MHz<br>**----- End of picture text -----**<br> Page 26 of 42 SPE-18-8-089/A/AW ## **YZ Plane** **==> picture [355 x 182] intentionally omitted <==** **----- Start of picture text -----**<br> Y<br>0<br>10<br>330 30<br>0<br>-10<br>300 60<br>-20<br>-30<br>270 -40 90 Z<br>240 120<br>1561MHz<br>210 150<br>1575.42MHz<br>180 (dBi) Ga=D 1602MHz<br>**----- End of picture text -----**<br> Page 27 of 42 SPE-18-8-089/A/AW ## **3D Radiation Patterns** ## **4.2.4 LTE** Page 28 of 42 SPE-18-8-089/A/AW SPE-18-8-089/A/AW Page 29 of 42 SPE-18-8-089/A/AW Page 30 of 42 SPE-18-8-089/A/AW Page 31 of 42 SPE-18-8-089/A/AW Page 32 of 42 SPE-18-8-089/A/AW Page 33 of 42 ## **4.1.1 GNSS** Page 34 of 42 SPE-18-8-089/A/AW ## **5. Mechanical Drawing (Unit: mm)** Page 35 of 42 SPE-18-8-089/A/AW ## **6. Packaging** Packaging has been requested, will update when received. Page 36 of 42 SPE-18-8-089/A/AW ## **7. Application Note** The MA173.A.LBC.001 antenna performance with different cable lengths is shown below. ## **7.1. Return Loss** **Return Loss – LTE Antenna (Free Space)** Page 37 of 42 SPE-18-8-089/A/AW **Return Loss – LTE Antenna (On 30*30cm GND)** ## **7.2. Efficiency** **Efficiency – LTE Antenna (Free Space)** Page 38 of 42 SPE-18-8-089/A/AW ## **Efficiency – LTE Antenna (On 30*30 GND)** ## **7.3. Average Gain** **Average Gain – LTE Antenna (Free Space)** SPE-18-8-089/A/AW Page 39 of 42 **Average Gain – LTE Antenna (On 30*30cm GND)** ## **7.4. Peak Gain** **Peak Gain – LTE Antenna (Free Space)** Page 40 of 42 SPE-18-8-089/A/AW ## **Peak Gain – LTE Antenna (On 30*30cm GND)** Page 41 of 42 SPE-18-8-089/A/AW 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. Page 42 of 42 SPE-18-8-089/A/AW
Updated at June 9, 2026
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Novapart is a B2B electronic component broker specialising in stock shortages and cost reduction. We source hard-to-find parts and identify compliant alternatives across a catalogue of 410,000+ components from 500+ manufacturers.
Learn more →Stock Shortage Specialist
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.
Request a quote →Compliant Alternatives
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.
BOM Analysis service →