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Application Notes for R&S®ATS1000

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Identifying defective single elements in antenna arrays

Fault identification in single elements of antenna arrays by scanning in near-field range and applying the near-field to far-field transformation method. Identifying defective single elements, antenna arrays, fault identification in single elements of antenna arrays, scanning in near-field range, applying the near-field to far-field transformation method Fault identification in single elements of antenna

OTA characterization of phased array antennas and antenna in package (AIP)

With its small footprint, the R&S®ATS1000 antenna test system is the ideal direct far-field OTA system to test phased array antennas. The system tests and optimizes the radiation characteristics of any modules using the AiP technology from 18 GHz to 87 GHz. ATS1000, AMS32, 5G, antenna OTA characterization of phased array antennas and antenna in package (AIP) Your task AiP will give customers an advantage

ATS1000: Passive Antenna Measurement and Nearfield - Farfield Transformation

Alexander Naehring 1MA304 This application note describes how to measure the antenna pattern of a mm-Wave device in the R&S®ATS1000 shielded chamber. This includes the required calibration of the measurement setup and a possible near field to far field transformation when measuring larger devices. ATS1000, OTA, 5G, mmWave, millimeter wave, antenna measurement, shielded chamber, pattern measurement

The challenge of testing 5G antenna performance

Rohde & Schwarz presents the R&S ® ATS1000 antenna test system, a highly accurate solution for testing 5G antennas up to mmWave frequencies in a mobile shielded chamber. Application Card, ATS1000, 5G The challenge of testing 5G antenna performance Your task What is different when testing 5G antennas? The wide frequency range, the greater number of antenna elements and the lack of conventional external

LTE UE receiver performance measurements

Heinz Mellein 1ST001 LTE user equipment (UE) receiver performance has significant impact to cellular radio network coverage and capacity. It determines the maximum data throughput across the air interface between the LTE base station (eNB, evolved node B) and the mobile network subscriber UE, thus it determines the total capacity across the air interface. Therefore, it is one of the most important

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