
Published On: Jun 2022
Published On: Jun 2022
The SAM embedded antenna system market is segmented based on by antenna type, connectivity, end use, and country. Based on antenna type, the SAM embedded antenna system market is segmented into PCB trace antenna, chip antenna, patch antenna, flexible printed circuit antenna, and others. The PCB trace antenna segment dominated the SAM embedded antenna system market in 2020 and flexible printed circuit antenna segment is expected to be fastest growing during forecast period. Based on connectivity, the SAM embedded antenna system market is segmented into GNSS/GPS, WiFi-Bluetooth, cellular, mmWave (5G), LPWAn, RFID, and UWB. The GNSS/GPS segment dominated the SAM embedded antenna system market in 2020 and mmWave (5G) segment is expected to be fastest growing during forecast period. Based on end use, the SAM embedded antenna system market is segmented into consumer electronics, communication, healthcare, aerospace & defense, industrial, automotive & transportation, and others. The consumer electronics segment dominated the SAM embedded antenna system market in 2020 and automotive & transportation segment is expected to be fastest growing during forecast period. Further, based on communication, SAM embedded antenna system market is segmented into datacom and telecom. Based on country, the SAM embedded antenna system market is segmented into Brazil, Argentina, and rest of SAM.
Antenova Ltd.; KYOCERA-AVX; Linx Technologies; Mitsubishi Electric Corporation; Molex, LLC (Koch Industries, Inc.); Taoglas; TE Connectivity Corporation; Walsin Technology Corporation; and Yageo Group are among the leading companies in the SAM embedded antenna system market. The companies are focused on adopting organic growth strategies such as product launches and expansions to sustain their position in the dynamic market. For instance, in 2020, Mitsubishi Electric Corporation announced that in collaboration with Japan's National Institute of Information and Communications Technology (NICT), it has developed technology for an extra-thin Ka-band (27 to 40 GHz) active electronically steered array antenna (AESA) to deliver high-speed inflight connectivity services via satellites at data rates beyond 100 Mbps.
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