Clock and LO components in 5G base stations

Clock and LO components in 5G base stations

Performance parameters and test solutions

Demands for excellent timing challenge clock and LO component designs for 5G base stations. By reference to IDT’s rf sampling clock generator / jitter attenuator and microwave synthesizer, learn more about performance parameters and test solutions for phase noise, timing alignment & delay adjustment as well as input monitoring, holdover and relocking.

5G Base Station Architecture: IDT 8V19N880 and IDT 8V97003
5G base station architecture including rf sampling clock generator/jitter attenuator and microwave synthesizer

Videos

Phase noise of local oscillators

Phase noise of local oscillators in 5G base stations

Phase noise performance of local oscillators is critical for up- and down-converters of 5G base station transceivers. See how to achieve excellent phase noise measurement results of IDT’s microwave synthesizer with low noise signal generator R&S SMA100B and phase noise analyzer R&S FSWP.

Timing alignment and delay adjustment of sampling clocks

Timing alignment and delay adjustment of sampling clocks in 5G base stations

ADC’s and DAC’s of 5G base station transceivers require excellent clock signals aligning time and adjusting delays. Learn how to verify the performance of IDT’s RF sampling clock generator / jitter attenuator with low noise signal generator R&S SMA100B and high-performance oscilloscope R&S RTP.

Clock input monitoring, holdover and relocking with sampling clocks

Clock input monitoring, holdover and relocking with sampling clocks in 5G base stations

Monitoring and relocking clock inputs are critical for the performance and the timing of 5G base station transceivers. See how to measure the relocking period parameters of IDT’s RF sampling clock generator / jitter attenuator with vector signal generator R&S SMW200A incl. phase noise profile option and high-performance spectrum and phase noise analyzer R&S FSWP.

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