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ZLS30383 bảng dữ liệu(PDF) 5 Page - Microsemi Corporation |
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ZLS30383 bảng dữ liệu(HTML) 5 Page - Microsemi Corporation |
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5 / 8 page ![]() ZL30791, ZL30795, ZL30793 Product Brief 5 Microsemi Confidential 4. Software Features The following figure shows the Time Synchronization Algorithm system environment. The subsections below list the features of the Time Synchronization Algorithm. Host Processor Transport Layer Protocols Microsemi ZLS30390 IEEE 1588-2008 Protocol Engine Microsemi ZLS30380 Time Sync Algorithm Microsemi PLL SyncE/ Stratum 3/ GNSS/ IEEE 1588 Microsemi Ethernet MAC & PHY (Timestamp) Operating System Application Layer Control, Configuration, Stats & Alarms Packet Network Clock PPS Timestamp Reference Clock 4.1 Time Synchronization Algorithm The Time Synchronization Algorithm is responsible to accurately synchronize the local clock to a selected Server. The Time Synchronization Algorithm is synchronizing the Client to the Server to meet a variety of specifications or applications related to frequency accuracy (FFO), frequency (MTIE, TDEV), phase (1 Hz or 1PPS) and time (UTC & GNSS/GPS). The Time Synchronization Algorithm can run on a variety of host processor architectures, whether embedded into an SoC or on a dedicated small scale CPU (such as Microsemi’s SmartFusion2 SoC FPGA). The Time Synchronization Algorithm will interconnect with a wide array of software-programmable clock generators (such as Microsemi’s Network Synchronizer PLLs), protocol engines (such as Microsemi’s ZLS30390 IEEE 1588-2008 Protocol Engine) and underlying Ethernet MACs and PHYs that perform hardware timestamping. 4.2 End Application Target Performance The Time Synchronization Algorithm is suitable for many end application targets, including: • Frequency offset accuracy performance for GSM, WCDMA-FDD, LTE-FDD femtocell, small cell (residential, urban, rural, enterprise), picocell and macrocell applications, with target performance less than ± 15 ppb • Frequency performance for ITU-T G.823 and G.824 synchronization interface, as well as G.8261 PNT EEC, PNT PEC and CES interface specifications • Phase Synchronization performance for WCDMA-TDD, Mobile WiMAX, TD-SCDMA, CDMA2000, LTE- TDD, LTE-A, LTE-A Pro and 5G NR femtocell, small cell (residential, urban, rural, enterprise), picocell and macrocell applications with target performance less than ± 1 s phase alignment • Time Synchronization for TAI, UTC-traceability and GNSS/GPS replacement 4.3 Packet Networks The Time Synchronization Algorithm is suitable for high performance over a variety of packet networks including: • ITU-T G.8261 Appendix VI • ITU-T G.8261.1 network limit compliant • ITU-T G.8271.1 network limit compliant without SyncE • ITU-T G.8271.2 network limit compliant |
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