With the rapid deployment of 5G networks, the performance requirements for communication equipment have also increased. As a professional distributor of electronic components, UCC INDU GmbH is pleased to introduce a breakthrough 5G base station core component -- INS5T8025 OCXO with DAPU technology. as a new benchmark of high-precision clock source, INS5T8025 not only meets the stringent requirements of the current 5G network, but also the evolution of future communication technology. requirements of the current 5G network, but also lays a solid foundation for the future evolution of communication technology.

In this context, the INS5T8025 OCXO launched by DAPU Technology provides a stable and reliable clock source solution for 5G base stations.

5G base station on the stringent requirements of the clock source

The high-speed data transmission and low-latency characteristics of 5G networks present unprecedented challenges for clock synchronisation: 

1.Frequency stability: 5G uses high-frequency band signals that are more sensitive to frequency shifts, requiring a clock source with extremely high stability.

2.Phase noise: Low phase noise is critical to ensure the quality of 5G signals, which directly affects the BER of the communication.

3.Fast start-up: Base station equipment needs to start up quickly to improve network availability, which puts requirements on the warm-up time of the clock source.

4.Low power consumption: As the number of base stations increases, reducing the power consumption of individual base stations becomes an important consideration for operators.

Advantages of the INS5T8025

The INS5T8025 is well suited to meet the needs of 5G base stations due to its outstanding performance characteristics.

1.High stability: The INS5T8025 maintains an excellent temperature stability of ±10ppb over a wide temperature range of -40°C to +85°C, ensuring stable transmission of 5G signals.

2.Low phase noise: At 10MHz frequency, the phase noise of 1Hz bias can reach -130dBc/Hz, which effectively reduces the BER and EVM of 5G signals.

3.Fast warm-up: The warm-up time is reduced to less than 60 seconds, which greatly improves the start-up efficiency of the 5G base station.

4.Low-power design: DAPU's unique low-power OCXO technology effectively reduces the overall power consumption of the 5G base station.

5.Compact size: 25.4 x 25.4 x 12.7mm, suitable for integration into densely deployed small 5G base stations.

Applications in 5G Networks

The INS5T8025 plays a number of important roles in 5G networks.

1.Time synchronisation: Provides an accurate time reference for 5G networks, supporting IEEE 1588 Precision Time Protocol (PTP) to ensure the synchronisation of network nodes. 

2.Frequency Reference: Provides stable frequency reference for RF module of 5G base station to ensure accurate signal generation and reception.

3.Carrier Aggregation: Supporting 5G carrier aggregation technology requires accurate synchronisation of signals in multiple frequency bands, which is guaranteed by the high stability of the INS5T8025.

4.MIMO technology support: 5G large-scale MIMO technology requires higher clock synchronisation, and the low phase noise characteristics of the INS5T8025 effectively support the implementation of this technology.

Conclusion

As a high-performance OCXO, the INS5T8025 provides a reliable clocking solution for 5G base stations through its excellent stability, low phase noise, fast warm-up and low power consumption. It not only meets the needs of current 5G networks, but also reserves performance space for the evolution of future network technologies. As 5G networks continue to evolve and optimise, high-precision clock sources such as the INS5T8025 will continue to play a key role in the communications infrastructure, driving mobile communications technology towards higher speeds and lower latency.

Want to learn more about the INS5T8025 or request a sample? Contact our sales team today for detailed specifications and information on product availability!


Disclaimer: The information provided on this page is for informational purposes only. We do not warrant the accuracy or completeness of the information and accept no liability for any loss or damage arising from the use of such information.

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