L000434-04

Heilind Number:AMPL000434-04
Manufacturer:TE Connectivity
Manufacturer Number:L000434-04
Datasheet:Manual/User Guide
ECAD Model:
3D Model

Description:

Dome/Puck Antenna, Multi Band, Wi-Fi / Vehicular / 5G, External Mount, Stud, SMA / RP-SMA, Omnidirectional, Multiple Ports, Gain > 6 dBi

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Specifications

AttributeValue
Product Category:
Manufacturer:TE Connectivity
Manufacturer Part Number:TE Connectivity L000434-04
IP Rating:IP67
Impedance:50 Ω
Polarization:Linear
Protocol:802.11a, 802.11ac, 802.11ad, 802.11ax, 802.11b, 802.11g, 802.11n, Bluetooth, EU Triband, GPS, LTE, UMTS, US Dual Band, WCDMA, ZigBee
Mounting Style:Stud
VSWR:2:1
Antenna Type:Dome
Antenna Termination Type:RP-SMA, SMA
Application:5G, Cellular, GNSS, LTE, Vehicular, Wi-Fi
Band Type:Multi Band
Center Frequency:1387 MHz, 2450 MHz, 3871 MHz, 4762.5 MHz
Directionality:Omnidirectional
Frequency Range:1164 - 1610 MHz, 2400 - 2500 MHz, 2400 - 7125 MHz, 617 - 7125 MHz
Gain:28 dB, 7.9 dB, 8 dB, 9 dB
SKU:AMPL000434-04

Detailed Description

Enhance your connectivity with this high-performance Dome/Puck Antenna, designed for seamless integration in diverse environments. Featuring a gain ranging from 7.9 dB to 28 dB, this multi-band antenna is optimized for ZigBee, GPS, Bluetooth, LTE, UMTS, and various Wi-Fi standards including 802.11a/ac/ad/ax/b/g/n. With EU Triband and US Dual Band compatibility, it ensures reliable signal reception across different regions. Its omnidirectional design and linear polarization guarantee consistent coverage, while the IP67 rating ensures durability in outdoor settings. Mountable via a convenient stud attachment, it offers versatile installation options. The antenna operates within multiple frequency ranges, from 1164 MHz to 7125 MHz, catering to a wide range of applications including 5G, cellular, GNSS, LTE, and vehicular communication. The SMA/RP-SMA termination and 50 Ω impedance further enhance its compatibility and performance. Ideal for demanding connectivity needs, this antenna is a valuable addition to any setup requiring robust and efficient signal reception.