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Omni-directional antenna MOXA ANT-LTE-ASM-02 SMA male 2 dBi, 0.8–2.6 GHz, 161 mm
MOXA ANT-LTE-ASM-02 is an omni-directional LTE antenna designed for broad-area cellular reception across key mobile bands. With a compact 161 mm length and lightweight construction, this antenna provides up to 2 dBi gain and operates across 0.8–2.6 GHz frequency range, making it compatible with common LTE bands used for 2G/3G/4G cellular communication. The antenna terminates in an SMA male connector and presents a 50 Ω impedance, allowing straightforward connection to many cellular modems, routers, and gateways. The product is supplied as a single unit and is intended for installations that require uniform coverage in all horizontal directions.
The omni-directional radiation pattern offers 360° horizontal coverage without the need for precise aiming, simplifying placement and installation. A 2 dBi maximum gain balances compact size with improved signal reception compared to a passive stub antenna. The wide frequency coverage (0.8, 0.9, 1.8, 2.1, 2.6 GHz) supports multiple carrier bands and roaming scenarios. Its SMA male connector and 50 Ω impedance ensure compatibility with standard cellular equipment. The compact form factor and low weight facilitate mounting on poles, enclosures, or near devices where space is limited.
Mount the antenna in a position with minimal obstructions to maximize omni-directional reception, such as on a mast, enclosure, or near the cellular device. Connect the SMA male connector to the corresponding SMA female antenna port on the modem, router or gateway; ensure the connector is hand-tightened to avoid damage. If used outdoors, place the antenna where it is protected from extreme mechanical stress and ensure any cable routing preserves waterproofing of connected equipment as required. After installation, verify signal levels and adjust placement if necessary to achieve the best link quality.
For reliable cellular performance, install the antenna vertically and clear of large metal objects that can detune the radiation pattern. When possible, test different mounting positions and elevations to find the optimal balance between signal strength and interference. Use an appropriate low-loss coaxial cable and, if required, surge protection for outdoor installations.
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