L001268-02
RF Antenna, 3.3GHz to 3.8GHz, 6dBi, 50ohm, 20W, 2 VSWR, Linear, Stud Mount / SMA Connector
- Manufacturer: TE CONNECTIVITY
- Product type:
- Gain: 6dBi
- SVHC: No SVHC (25-Jun-2025)
- VSWR: 2
- Input Power: 20W
- Antenna Type: 4G / 5G / Cellular / Dome / GNSS / IoT / LTE / Puck / TN / NTN / MIMO / WiFi
- Frequency Max: 3.8GHz
- Frequency Min: 3.3GHz
- Product Range: -
- Input Impedance: 50ohm
- Antenna Mounting: Stud Mount / SMA Connector
- Antenna Polarisation: Linear
| Delivery and price | |
|---|---|
| Units per pack | 50 |
| Price | 49.95 € |
| Current stock | 200+ |
| Lead time | 30 days |
## TN & NTN Dual-Mode Antenna Satellite IoT Direct to Device Ready
## Direct Mount Ground Plane Independent Antenna
## Covering 4G/5G/Satellite Band 25, Wi-Fi & GNSS
## **Satellite IoT D2D Ready** CD
The L001268 direct to device (D2D) antenna family has two variants offering two 4G/5G/Satellite Band 25 cellular ports with an optional GNSS port in a compact form factor.
The cellular bands operate in dual mode, being capable of communication with both satellites and terrestrial cellular base stations. As a ground plane independent antenna, this antenna can operate on both metallic and nonmetallic surfaces. This feature combined with an IP67 rating makes this antenna an ideal solution for a broad range of IoT applications in both indoor and outdoor environments.
## SATELLITE IOT D2D COMMUNICATIONS
Low Earth Orbit (LEO) satellites, positioned a few hundred miles (km) above Earth, orbit rapidly and are ideal for IoT networks. A LEO satellite constellation can now support low data rate communications through specific LTE frequencies. Future upgrades are expected to support higher data rates and voicegrade services capable of calls or sending small files.
- Dual-mode capable - Supporting Terrestrial Networks (TN) and Non-Terrestrial Networks (NTN) from a single antenna
- 698-3800 MHz terrestrial cellular coverage
- Band 25 (1900 MHz) cellular satellite coverage
- Testing available for other/future cellular satellite D2D frequency bands used by various network providers
- Enabling dual-mode communications via IoT devices
- Prioritizing terrestrial networks but capable of automatically switching to satellite when the signal is weak or unavailable
## REFERENCE SIGNAL RECEIVED POWER (RSRP) VALUES
The L001268-02 antenna was live-tested for receive signal strength. Data encompasses multiple satellite pass-overs, showing signal strength variation; exceeding the -120 dBm minimum for IoT devices.
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-100<br>-102<br>-104<br>-106<br>-108<br>-110<br>-112<br>-114<br>-116<br>-118<br>-120<br>1 2 3 4 5 6 7 8 9<br>Data Point<br>RSRP (dBm)<br>**----- End of picture text -----**<br>
An RSRP value of -120 dBm is generally the recognized minimum requirement suitable for SMS connectivity.
RSRP can be susceptible to fluctuations for a variety of reasons. These can include: satellite elevation angle: antenna radiation patterns; solar flares; atmospheric conditions, and more.
DIGITAL DATA NETWORKS / L001268 DIRECT TO DEVICE DUAL-MODE SATELLITE IOT ANTENNA
## FEATURES AND BENEFITS
## APPLICATIONS
- Validated for use on satcom D2D networks
- Dual-Mode TN and NTN capable
- MIMO 4G/5G cellular with optional GNSS from a single antenna
- Supports CAT-M, CAT-1 to CAT-4, and NB-IoT
- Suitable for mounting on a variety of surfaces
- Radome is paintable using commonly available spray paints (must not contain metal)
- Ground plane independent, low profile, rugged and less prone to vandalizing
- Non-Terrestrial and Terrestrial Networks
- Satellite IoT D2D (Direct to Device) applications
- IoT endpoints
- Digital display and signage
- EV charging
- Smart lockers and storage
- Ticketing systems
- Smart terminals
- Data monitoring
|ELECTRICAL SPECIFICATION|ELECTRICAL SPECIFICATION|ELECTRICAL SPECIFICATION|ELECTRICAL SPECIFICATION|ELECTRICAL SPECIFICATION|
|---|---|---|---|---|
||4G/5G Cellular||||
|Operating Frequency (MHz)|698-760|760-960|1690-2690|3300-3800|
|Free Space Performance|||||
|VSWR - Typical|<2.0:1|<1.75:1|<2.0:1|<2.0:1|
|Efciency (%) Average|>40|>40|>55|>40|
|Peak Gain (dBi)|2.0|2.8|3.0|3.0|
|On Metallic Ground Plane Performance|||||
|VSWR - Typical|<3.5:1|<2.5:1|<2.0:1|<2.0:1|
|Efciency (%) Average|>40|>40|>50|>35|
|Peak Gain (dBi)|2.0|2.9|4.8|6.0|
||||||
|Isolation Between Cellular Elements (dB)|>-10||||
|Input Max Power (W)|20||||
|Polarization|Linear||||
|Azimuth Beamwidth|360 °, Omnidirectional||||
Measured with a 3.3 ft (1 m) cable, with and without a 2 ft (0.6m) diameter ground plane
|ELECTRICAL SPECIFICATION - GNSS|ELECTRICAL SPECIFICATION - GNSS|
|---|---|
|Frequency (MHz)|1559-1606|
|Passive Antenna Gain (dBi)|3.0|
|LNA Gain @ Room Temperature (dB)|26±3|
|Noise Figure @ Room Temperature (dB)|< 2.8|
|Max VSWR @ Room Temperature|< 2.0:1|
|Polarization|RHCP|
|Nominal Impedance (ohm)|50|
|Operating Supply Voltage (Vdc)|2.5-7.0|
|Current Consumption, Max @ room temp. (mA)|11.5 @ 3.0V|
|Out-of-band Signal Rejection, Min @ room temp. (dBc)|80 @ 1 – 1525 MHz<br>80 @ 1428 – 2700 MHz<br>70 @ 4900 – 5800 MHz|
DIGITAL DATA NETWORKS / L001268 DIRECT TO DEVICE DUAL-MODE SATELLITE IOT ANTENNA
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## MECHANICAL SPECIFICATION
|MECHANICAL SPECIFICATION|MECHANICAL SPECIFICATION|
|---|---|
|Dimensions – L x W x H – mm (in.)|150 x 45 x 50 (5.90 x 1.77 x 1.97)|
|Weight – g (oz.)|2 Port - 173 (6.10)<br>3 Port - 199 (7.02)|
|Mounting|M16 Stud|
|Radome|ASA (Black)|
|Cable|RG174 (3.3 feet / 1m)|
|Connector|Cellular - SMA, GNSS - SMA|
|ENVIRONMENTAL SPECIFICATION|ENVIRONMENTAL SPECIFICATION|
|---|---|
|Operating Temperature – °C (°F)|-40 to +85°C (-40 to +185°F)|
|Storage Temperature – °C (°F)|-40 to +85°C (-40 to +185°F)|
|Ingress Protection (IP Rating)|IP67|
|Material Substance Compliance|RoHS Compliant<br>CE & UKCA Compliant|
|PART NUMBER|PORT COUNT|FREQUENCY COVERAGE|CONNECTOR|
|---|---|---|---|
|L001268-01|2|4G/5G Cellular x 2 - 698 - 3800 MHz|SMA Female x 2|
|L001268-02|3|4G/5G Cellular x 2 - 698 - 3800 MHz<br>GNSS x 1 - 1559-1606 MHz|SMA Female x 2<br>SMA Female x 1|
## GLOBAL 4G/5G CELLULAR COVERAGE
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RF BANDS FREQUENCY<br>12, 13, 14, 17, 28, 29, 44, 67, 68, 85<br>698-806 MHz<br>N12, N14, N28, N29, N83<br>5, 6, 8, 18, 19, 20, 26, 27<br>807-960 MHz<br>N5, N8, N18, N20, N81, N82, N89, N91, N92, N93, N94<br>1, 2, 3, 4, 9, 10, 15, 16, 23, 25, 33, 34, 35, 36, 37, 39, 65, 66, 70<br>1690-2200 MHz<br>N34, N39, N65, N66, N70, N80, N84, N86, N95<br>7, 30, 38, 40, 41,69 N30,<br>2200-2700 MHz<br>N38, N40, N41, N90<br>22, 42, 43, 48<br>3300-3800 MHz<br>N48, N78<br>**----- End of picture text -----**<br>
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## MECHANICAL DRAWINGS
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50.00 mm (1.97 in.) ± 0.5 mm (0.02 in.)<br>4.00 mm (0.16 in.)<br>i<br>1000 mm (39.37 in.) ± 25 mm (0.98 in.)<br>Heat Shrink Tube Indentification<br>Cellular 1 Cellular 2 GNSS<br>L001268-01 Yellow Yellow -<br>a a eeee<br>L001268-02 Yellow Yellow White<br>Scale 1:1<br>aa<br>150.00 mm (5.91 in.) ± 0.3 mm (0.01 in.)<br>Scale 1:1<br>45.00 mm (1.77 in.) ± 0.3 mm (0.01 in.)<br>**----- End of picture text -----**<br>
DIGITAL DATA NETWORKS / L001268 DIRECT TO DEVICE DUAL-MODE SATELLITE IOT ANTENNA
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## RADIATION PATTERNS - 4G/5G CELLULAR
## **Key**
4G/5G Cellular Port 1 Measured in Free Space 4G/5G Cellular Port 1 Measured with Ground Plane
4G/5G Cellular Port 2 Measured in Free Space 4G/5G Cellular Port 2 Measured with Ground Plane
**Note -** A label on the antenna base indicates the direction of 0° for ease of orientation and placement.
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Radiation Patterns at 698 MHz<br>Azimuth Plane Phi 0° Plane Phi 90° Plane<br>90 0 0<br>5 5 5<br>120 0 60 330 0 30 330 0 30<br>-5 -5 -5<br>-10 -10 -10<br>150 -15 30 300 -15 60 300 -15 60<br>-20 -20 -20<br>-25 -25 -25<br>-30 -30 -30<br>180 -35 0 270 -35 90 270 -35 90<br>210 330 240 120 240 120<br>240 300 210 150 210 150<br>270 180 180<br>Rad iat ion Patte rns at 750 MHz<br>Azimuth Plane Phi 0° Plane Phi 90° Plane<br>90 0 0<br>5 5 5<br>120 0 60 330 0 30 330 0 30<br>-5 -5 -5<br>-10 -10 -10<br>150 -15 30 300 -15 60 300 -15 60<br>-20 -20 -20<br>-25 -25 -25<br>-30 -30 -30<br>180 -35 0 270 -35 90 270 -35 90<br>210 330 240 120 240 120<br>240 300 210 150 210 150<br>270 180 180<br>Ra dia tion Patt ern at 850 MHz<br>Azimuth Plane Phi 0° Plane Phi 90° Plane<br>90 0 0<br>5 5 5<br>120 0 60 330 0 30 330 0 30<br>-5 -5 -5<br>-10 -10 -10<br>150 -15 30 300 -15 60 300 -15 60<br>-20 -20 -20<br>-25 -25 -25<br>-30 -30 -30<br>180 -35 0 270 -35 90 270 -35 90<br>210 330 240 120 240 120<br>240 300 210 150 210 150<br>270 180 180<br>**----- End of picture text -----**<br>
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Radiation Pattern at 960 MHz<br>Azimuth Plane Phi 0° Plane Phi 90° Plane<br>90 0 0<br>5 5 5<br>120 0 60 330 0 30 330 0 30<br>-5 -5 -5<br>-10 -10 -10<br>150 -15 30 300 -15 60 300 -15 60<br>-20 -20 -20<br>-25 -25 -25<br>-30 -30 -30<br>180 -35 0 270 -35 90 270 -35 90<br>210 330 240 120 240 120<br>240 300 210 150 210 150<br>270 180 180<br>**----- End of picture text -----**<br>
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Radiation Pattern at 1690 MHz<br>Azimuth Plane Phi 0° Plane Phi 90° Plane<br>90 0 0<br>5 5 5<br>120 0 60 330 0 30 330 0 30<br>-5 -5 -5<br>-10 -10 -10<br>150 -15 30 300 -15 60 300 -15 60<br>-20 -20 -20<br>-25 -25 -25<br>-30 -30 -30<br>180 -35 0 270 -35 90 270 -35 90<br>210 330 240 120 240 120<br>240 300 210 150 210 150<br>270 180 180<br>**----- End of picture text -----**<br>
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Radiation Pattern at 1800 MHz<br>Azimuth Plane Phi 0° Plane Phi 90° Plane<br>90 0 0<br>5 5 5<br>120 0 60 330 0 30 330 0 30<br>-5 -5 -5<br>-10 -10 -10<br>150 -15 30 300 -15 60 300 -15 60<br>-20 -20 -20<br>-25 -25 -25<br>-30 -30 -30<br>180 -35 0 270 -35 90 270 -35 90<br>210 330 240 120 240 120<br>240 300 210 150 210 150<br>270 180 180<br>**----- End of picture text -----**<br>
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Radiation Pattern at 1900 MHz<br>Azimuth Plane Phi 0° Plane Phi 90° Plane<br>90 0 0<br>5 5 5<br>120 0 60 330 0 30 330 0 30<br>-5 -5 -5<br>-10 -10 -10<br>150 -15 30 300 -15 60 300 -15 60<br>-20 -20 -20<br>-25 -25 -25<br>-30 -30 -30<br>180 -35 0 270 -35 90 270 -35 90<br>210 330 240 120 240 120<br>240 300 210 150 210 150<br>270 180 180<br>**----- End of picture text -----**<br>
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Radiation Pattern at 2100 MHz<br>Azimuth Plane Phi 0° Plane Phi 90° Plane<br>90 0 0<br>5 5 5<br>120 0 60 330 0 30 330 0 30<br>-5 -5 -5<br>-10 -10 -10<br>150 -15 30 300 -15 60 300 -15 60<br>-20 -20 -20<br>-25 -25 -25<br>-30 -30 -30<br>180 -35 0 270 -35 90 270 -35 90<br>210 330 240 120 240 120<br>240 300 210 150 210 150<br>270 180 180<br>**----- End of picture text -----**<br>
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Radiation Pattern at 2200 MHz<br>Azimuth Plane Phi 0° Plane Phi 90° Plane<br>90 0 0<br>5 5 5<br>120 0 60 330 0 30 330 0 30<br>-5 -5 -5<br>-10 -10 -10<br>150 -15 30 300 -15 60 300 -15 60<br>-20 -20 -20<br>-25 -25 -25<br>-30 -30 -30<br>180 -35 0 270 -35 90 270 -35 90<br>210 330 240 120 240 120<br>240 300 210 150 210 150<br>270 180 180<br>**----- End of picture text -----**<br>
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Radiation Pattern at 2300 MHz<br>Azimuth Plane Phi 0° Plane Phi 90° Plane<br>90 0 0<br>5 5 5<br>120 0 60 330 0 30 330 0 30<br>-5 -5 -5<br>-10 -10 -10<br>150 -15 30 300 -15 60 300 -15 60<br>-20 -20 -20<br>-25 -25 -25<br>-30 -30 -30<br>180 -35 0 270 -35 90 270 -35 90<br>210 330 240 120 240 120<br>240 300 210 150 210 150<br>270 180 180<br>**----- End of picture text -----**<br>
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Radiation Pattern at 2500 MHz<br>Azimuth Plane Phi 0° Plane Phi 90° Plane<br>90 0 0<br>5 5 5<br>120 0 60 330 0 30 330 0 30<br>-5 -5 -5<br>-10 -10 -10<br>150 -15 30 300 -15 60 300 -15 60<br>-20 -20 -20<br>-25 -25 -25<br>-30 -30 -30<br>180 -35 0 270 -35 90 270 -35 90<br>210 330 240 120 240 120<br>240 300 210 150 210 150<br>270 180 180<br>**----- End of picture text -----**<br>
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Radiation Pattern at 2600 MHz<br>Azimuth Plane Phi 0° Plane Phi 90° Plane<br>90 0 0<br>5 5 5<br>120 0 60 330 0 30 330 0 30<br>-5 -5 -5<br>-10 -10 -10<br>150 -15 30 300 -15 60 300 -15 60<br>-20 -20 -20<br>-25 -25 -25<br>-30 -30 -30<br>180 -35 0 270 -35 90 270 -35 90<br>210 330 240 120 240 120<br>240 300 210 150 210 150<br>270 180 180<br>**----- End of picture text -----**<br>
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Radiation Pattern at 2690 MHz<br>Azimuth Plane Phi 0° Plane Phi 90° Plane<br>90 0 0<br>5 5 5<br>120 0 60 330 0 30 330 0 30<br>-5 -5 -5<br>-10 -10 -10<br>150 -15 30 300 -15 60 300 -15 60<br>-20 -20 -20<br>-25 -25 -25<br>-30 -30 -30<br>180 -35 0 270 -35 90 270 -35 90<br>210 330 240 120 240 120<br>240 300 210 150 210 150<br>270 180 180<br>**----- End of picture text -----**<br>
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Radiation Pattern at 3300 MHz<br>Azimuth Plane Phi 0° Plane Phi 90° Plane<br>90 0 0<br>5 5 5<br>120 0 60 330 0 30 330 0 30<br>-5 -5 -5<br>-10 -10 -10<br>150 -15 30 300 -15 60 300 -15 60<br>-20 -20 -20<br>-25 -25 -25<br>-30 -30 -30<br>180 -35 0 270 -35 90 270 -35 90<br>210 330 240 120 240 120<br>240 300 210 150 210 150<br>270 180 180<br>**----- End of picture text -----**<br>
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Radiation Pattern at 3500 MHz<br>Azimuth Plane Phi 0° Plane Phi 90° Plane<br>90 0 0<br>5 5 5<br>120 0 60 330 0 30 330 0 30<br>-5 -5 -5<br>-10 -10 -10<br>150 -15 30 300 -15 60 300 -15 60<br>-20 -20 -20<br>-25 -25 -25<br>-30 -30 -30<br>180 -35 0 270 -35 90 270 -35 90<br>210 330 240 120 240 120<br>240 300 210 150 210 150<br>270 180 180<br>**----- End of picture text -----**<br>
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Radiation Pattern at 3800 MHz<br>Azimuth Plane Phi 0° Plane Phi 90° Plane<br>90 0 0<br>5 5 5<br>120 0 60 330 0 30 330 0 30<br>-5 -5 -5<br>-10 -10 -10<br>150 -15 30 300 -15 60 300 -15 60<br>-20 -20 -20<br>-25 -25 -25<br>-30 -30 -30<br>180 -35 0 270 -35 90 270 -35 90<br>210 330 240 120 240 x Wey y 120<br>My SON<br>240 HITTmitWoe 300 210 ZPOTTITN SS 150 210 Ui i Se 150<br>270 180 180<br>**----- End of picture text -----**<br>
## PACKING INFORMATION
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5 PCS x 2<br>Grid - 10PCS/Layer glee |<br>1 PCS/Bubble Pack ee ee<br>Carton = 50 PCS<br>1<br>Waterproof Bag<br>O Sb<br>CS << 5 Layers ee 6<br>Q <b<br>Pallet - 1200x1000mm<br>10 PCS/Layer x 5 Carton x 6 PCS - 4 Layers<br>=50 PCS/Carton Total - 1200 PCS Antenna<br>**----- End of picture text -----**<br>
DIGITAL DATA NETWORKS / L001268 DIRECT TO DEVICE DUAL-MODE SATELLITE IOT ANTENNA
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## TE TECHNICAL SUPPORT CENTER
|TE TECHNICAL|SUPPORT CENTER|
|---|---|
|USA:|+1 (800) 522-6752|
|Canada:|+1 (905) 475-6222|
|Mexico:|+52 (0) 55-1106-0800|
|Latin/S. America:|+54 (0) 11-4733-2200|
|Germany:|+49 (0) 6251-133-1999|
|UK:|+44 (0) 800-267666|
|France:|+33 (0) 1-3420-8686|
|Netherlands:|+31 (0) 73-6246-999|
|China:|+86 (0) 400-820-6015|
## te.com
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While TE has made every reasonable effort to ensure the accuracy of the information in this document, TE does not guarantee that it is error-free, nor does TE make any other representation, warranty or guarantee that the information is accurate, complete, correct, reliable or current. TE reserves the right to make any adjustments to the information contained herein at any time without notice. TE EXPRESSLY DISCLAIMS ALL IMPLIED WARRANTIES REGARDING THE INFORMATION CONTAINED HEREIN, INCLUDING, BUT NOT LIMITED TO, ANY IMPLIED WARRANTIES OF MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE. In no event will TE be liable for any direct, indirect, incidental, special or consequential damages arising from or related to recipient’s use of the information. It is the sole responsibility of recipient of this information to verify the results of this information using their engineering and product environment. Recipient assumes any and all risks associated with the use of the information. Antenna performance may vary. TE is a component manufacturer, and customer and/or end-user is responsible for all end-use compliance and regulatory requirements. ©2025 TE Connectivity. All Rights Reserved.
08/25 Original
DIGITAL DATA NETWORKS / L001268 DIRECT TO DEVICE DUAL-MODE SATELLITE IOT ANTENNA
Updated at June 9, 2026
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